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Chris Lattner084a1b52009-11-09 22:57:59 +00001//===- InstructionSimplify.cpp - Fold instruction operands ----------------===//
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 routines for folding instructions into simpler forms
Duncan Sandsa0219882010-11-23 10:50:08 +000011// that do not require creating new instructions. This does constant folding
12// ("add i32 1, 1" -> "2") but can also handle non-constant operands, either
13// returning a constant ("and i32 %x, 0" -> "0") or an already existing value
Duncan Sandsed6d6c32010-12-20 14:47:04 +000014// ("and i32 %x, %x" -> "%x"). All operands are assumed to have already been
15// simplified: This is usually true and assuming it simplifies the logic (if
16// they have not been simplified then results are correct but maybe suboptimal).
Chris Lattner084a1b52009-11-09 22:57:59 +000017//
18//===----------------------------------------------------------------------===//
19
20#include "llvm/Analysis/InstructionSimplify.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000021#include "llvm/ADT/SetVector.h"
22#include "llvm/ADT/Statistic.h"
Hal Finkelafcd8db2014-12-01 23:38:06 +000023#include "llvm/Analysis/AliasAnalysis.h"
Daniel Berlin4d0fe642017-04-28 19:55:38 +000024#include "llvm/Analysis/AssumptionCache.h"
Anna Thomas43d7e1c2016-05-03 14:58:21 +000025#include "llvm/Analysis/CaptureTracking.h"
Chris Lattner084a1b52009-11-09 22:57:59 +000026#include "llvm/Analysis/ConstantFolding.h"
Daniel Berlin4d0fe642017-04-28 19:55:38 +000027#include "llvm/Analysis/LoopAnalysisManager.h"
Dan Gohmanb3e2d3a2013-02-01 00:11:13 +000028#include "llvm/Analysis/MemoryBuiltins.h"
Sanjay Patel54656ca2017-02-06 18:26:06 +000029#include "llvm/Analysis/OptimizationDiagnosticInfo.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000030#include "llvm/Analysis/ValueTracking.h"
David Majnemer599ca442015-07-13 01:15:53 +000031#include "llvm/Analysis/VectorUtils.h"
Chandler Carruth8cd041e2014-03-04 12:24:34 +000032#include "llvm/IR/ConstantRange.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000033#include "llvm/IR/DataLayout.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000034#include "llvm/IR/Dominators.h"
Chandler Carruth03eb0de2014-03-04 10:40:04 +000035#include "llvm/IR/GetElementPtrTypeIterator.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000036#include "llvm/IR/GlobalAlias.h"
37#include "llvm/IR/Operator.h"
Chandler Carruth820a9082014-03-04 11:08:18 +000038#include "llvm/IR/PatternMatch.h"
Chandler Carruth4220e9c2014-03-04 11:17:44 +000039#include "llvm/IR/ValueHandle.h"
Craig Topperb45eabc2017-04-26 16:39:58 +000040#include "llvm/Support/KnownBits.h"
Hal Finkelafcd8db2014-12-01 23:38:06 +000041#include <algorithm>
Chris Lattner084a1b52009-11-09 22:57:59 +000042using namespace llvm;
Chris Lattnera71e9d62009-11-10 00:55:12 +000043using namespace llvm::PatternMatch;
Chris Lattner084a1b52009-11-09 22:57:59 +000044
Chandler Carruthf1221bd2014-04-22 02:48:03 +000045#define DEBUG_TYPE "instsimplify"
46
Chris Lattner9e4aa022011-02-09 17:15:04 +000047enum { RecursionLimit = 3 };
Duncan Sandsf3b1bf12010-11-10 18:23:01 +000048
Duncan Sands3547d2e2010-12-22 09:40:51 +000049STATISTIC(NumExpand, "Number of expansions");
Duncan Sands3547d2e2010-12-22 09:40:51 +000050STATISTIC(NumReassoc, "Number of reassociations");
51
Daniel Berlin5e3fcb12017-04-26 04:09:56 +000052static Value *SimplifyAndInst(Value *, Value *, const SimplifyQuery &, unsigned);
53static Value *SimplifyBinOp(unsigned, Value *, Value *, const SimplifyQuery &,
Chad Rosierc24b86f2011-12-01 03:08:23 +000054 unsigned);
Michael Zolotukhin4e8598e2015-02-06 20:02:51 +000055static Value *SimplifyFPBinOp(unsigned, Value *, Value *, const FastMathFlags &,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +000056 const SimplifyQuery &, unsigned);
57static Value *SimplifyCmpInst(unsigned, Value *, Value *, const SimplifyQuery &,
Chad Rosierc24b86f2011-12-01 03:08:23 +000058 unsigned);
Sanjay Patel9d5b5e32016-12-03 18:03:53 +000059static Value *SimplifyICmpInst(unsigned Predicate, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +000060 const SimplifyQuery &Q, unsigned MaxRecurse);
61static Value *SimplifyOrInst(Value *, Value *, const SimplifyQuery &, unsigned);
62static Value *SimplifyXorInst(Value *, Value *, const SimplifyQuery &, unsigned);
David Majnemer6774d612016-07-26 17:58:05 +000063static Value *SimplifyCastInst(unsigned, Value *, Type *,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +000064 const SimplifyQuery &, unsigned);
Duncan Sands5ffc2982010-11-16 12:16:38 +000065
Sanjay Patel35ed2412017-04-16 17:43:11 +000066/// For a boolean type or a vector of boolean type, return false or a vector
67/// with every element false.
Duncan Sandsc1c92712011-07-26 15:03:53 +000068static Constant *getFalse(Type *Ty) {
Sanjay Patel35ed2412017-04-16 17:43:11 +000069 return ConstantInt::getFalse(Ty);
Duncan Sandsc1c92712011-07-26 15:03:53 +000070}
71
Sanjay Patel35ed2412017-04-16 17:43:11 +000072/// For a boolean type or a vector of boolean type, return true or a vector
73/// with every element true.
Duncan Sandsc1c92712011-07-26 15:03:53 +000074static Constant *getTrue(Type *Ty) {
Sanjay Patel35ed2412017-04-16 17:43:11 +000075 return ConstantInt::getTrue(Ty);
Duncan Sandsc1c92712011-07-26 15:03:53 +000076}
77
Duncan Sands3d5692a2011-10-30 19:56:36 +000078/// isSameCompare - Is V equivalent to the comparison "LHS Pred RHS"?
79static bool isSameCompare(Value *V, CmpInst::Predicate Pred, Value *LHS,
80 Value *RHS) {
81 CmpInst *Cmp = dyn_cast<CmpInst>(V);
82 if (!Cmp)
83 return false;
84 CmpInst::Predicate CPred = Cmp->getPredicate();
85 Value *CLHS = Cmp->getOperand(0), *CRHS = Cmp->getOperand(1);
86 if (CPred == Pred && CLHS == LHS && CRHS == RHS)
87 return true;
88 return CPred == CmpInst::getSwappedPredicate(Pred) && CLHS == RHS &&
89 CRHS == LHS;
90}
91
Sanjay Patel472cc782016-01-11 22:14:42 +000092/// Does the given value dominate the specified phi node?
Duncan Sands5ffc2982010-11-16 12:16:38 +000093static bool ValueDominatesPHI(Value *V, PHINode *P, const DominatorTree *DT) {
94 Instruction *I = dyn_cast<Instruction>(V);
95 if (!I)
96 // Arguments and constants dominate all instructions.
97 return true;
98
Chandler Carruth3ffccb32012-03-21 10:58:47 +000099 // If we are processing instructions (and/or basic blocks) that have not been
100 // fully added to a function, the parent nodes may still be null. Simply
101 // return the conservative answer in these cases.
102 if (!I->getParent() || !P->getParent() || !I->getParent()->getParent())
103 return false;
104
Duncan Sands5ffc2982010-11-16 12:16:38 +0000105 // If we have a DominatorTree then do a precise test.
Daniel Berlin71ff6632017-05-31 01:47:24 +0000106 if (DT)
Eli Friedmanc8cbd062012-03-13 01:06:07 +0000107 return DT->dominates(I, P);
Duncan Sands5ffc2982010-11-16 12:16:38 +0000108
David Majnemer8a1c45d2015-12-12 05:38:55 +0000109 // Otherwise, if the instruction is in the entry block and is not an invoke,
110 // then it obviously dominates all phi nodes.
Duncan Sands5ffc2982010-11-16 12:16:38 +0000111 if (I->getParent() == &I->getParent()->getParent()->getEntryBlock() &&
David Majnemer8a1c45d2015-12-12 05:38:55 +0000112 !isa<InvokeInst>(I))
Duncan Sands5ffc2982010-11-16 12:16:38 +0000113 return true;
114
115 return false;
116}
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000117
Sanjay Patel472cc782016-01-11 22:14:42 +0000118/// Simplify "A op (B op' C)" by distributing op over op', turning it into
119/// "(A op B) op' (A op C)". Here "op" is given by Opcode and "op'" is
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000120/// given by OpcodeToExpand, while "A" corresponds to LHS and "B op' C" to RHS.
121/// Also performs the transform "(A op' B) op C" -> "(A op C) op' (B op C)".
122/// Returns the simplified value, or null if no simplification was performed.
Craig Topper60dd9cd2017-04-07 05:57:51 +0000123static Value *ExpandBinOp(Instruction::BinaryOps Opcode, Value *LHS, Value *RHS,
Craig Topper9c913bf2017-05-19 16:56:53 +0000124 Instruction::BinaryOps OpcodeToExpand,
125 const SimplifyQuery &Q, unsigned MaxRecurse) {
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000126 // Recursion is always used, so bail out at once if we already hit the limit.
127 if (!MaxRecurse--)
Craig Topper9f008862014-04-15 04:59:12 +0000128 return nullptr;
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000129
130 // Check whether the expression has the form "(A op' B) op C".
131 if (BinaryOperator *Op0 = dyn_cast<BinaryOperator>(LHS))
132 if (Op0->getOpcode() == OpcodeToExpand) {
133 // It does! Try turning it into "(A op C) op' (B op C)".
134 Value *A = Op0->getOperand(0), *B = Op0->getOperand(1), *C = RHS;
135 // Do "A op C" and "B op C" both simplify?
Duncan Sandsb8cee002012-03-13 11:42:19 +0000136 if (Value *L = SimplifyBinOp(Opcode, A, C, Q, MaxRecurse))
137 if (Value *R = SimplifyBinOp(Opcode, B, C, Q, MaxRecurse)) {
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000138 // They do! Return "L op' R" if it simplifies or is already available.
139 // If "L op' R" equals "A op' B" then "L op' R" is just the LHS.
Duncan Sands772749a2011-01-01 20:08:02 +0000140 if ((L == A && R == B) || (Instruction::isCommutative(OpcodeToExpand)
141 && L == B && R == A)) {
Duncan Sands3547d2e2010-12-22 09:40:51 +0000142 ++NumExpand;
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000143 return LHS;
Duncan Sands3547d2e2010-12-22 09:40:51 +0000144 }
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000145 // Otherwise return "L op' R" if it simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000146 if (Value *V = SimplifyBinOp(OpcodeToExpand, L, R, Q, MaxRecurse)) {
Duncan Sands3547d2e2010-12-22 09:40:51 +0000147 ++NumExpand;
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000148 return V;
Duncan Sands3547d2e2010-12-22 09:40:51 +0000149 }
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000150 }
151 }
152
153 // Check whether the expression has the form "A op (B op' C)".
154 if (BinaryOperator *Op1 = dyn_cast<BinaryOperator>(RHS))
155 if (Op1->getOpcode() == OpcodeToExpand) {
156 // It does! Try turning it into "(A op B) op' (A op C)".
157 Value *A = LHS, *B = Op1->getOperand(0), *C = Op1->getOperand(1);
158 // Do "A op B" and "A op C" both simplify?
Duncan Sandsb8cee002012-03-13 11:42:19 +0000159 if (Value *L = SimplifyBinOp(Opcode, A, B, Q, MaxRecurse))
160 if (Value *R = SimplifyBinOp(Opcode, A, C, Q, MaxRecurse)) {
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000161 // They do! Return "L op' R" if it simplifies or is already available.
162 // If "L op' R" equals "B op' C" then "L op' R" is just the RHS.
Duncan Sands772749a2011-01-01 20:08:02 +0000163 if ((L == B && R == C) || (Instruction::isCommutative(OpcodeToExpand)
164 && L == C && R == B)) {
Duncan Sands3547d2e2010-12-22 09:40:51 +0000165 ++NumExpand;
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000166 return RHS;
Duncan Sands3547d2e2010-12-22 09:40:51 +0000167 }
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000168 // Otherwise return "L op' R" if it simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000169 if (Value *V = SimplifyBinOp(OpcodeToExpand, L, R, Q, MaxRecurse)) {
Duncan Sands3547d2e2010-12-22 09:40:51 +0000170 ++NumExpand;
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000171 return V;
Duncan Sands3547d2e2010-12-22 09:40:51 +0000172 }
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000173 }
174 }
175
Craig Topper9f008862014-04-15 04:59:12 +0000176 return nullptr;
Duncan Sandsee3ec6e2010-12-21 13:32:22 +0000177}
178
Sanjay Patel472cc782016-01-11 22:14:42 +0000179/// Generic simplifications for associative binary operations.
180/// Returns the simpler value, or null if none was found.
Craig Topper60dd9cd2017-04-07 05:57:51 +0000181static Value *SimplifyAssociativeBinOp(Instruction::BinaryOps Opcode,
Craig Topper9c913bf2017-05-19 16:56:53 +0000182 Value *LHS, Value *RHS,
183 const SimplifyQuery &Q,
Craig Topper60dd9cd2017-04-07 05:57:51 +0000184 unsigned MaxRecurse) {
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000185 assert(Instruction::isAssociative(Opcode) && "Not an associative operation!");
186
187 // Recursion is always used, so bail out at once if we already hit the limit.
188 if (!MaxRecurse--)
Craig Topper9f008862014-04-15 04:59:12 +0000189 return nullptr;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000190
191 BinaryOperator *Op0 = dyn_cast<BinaryOperator>(LHS);
192 BinaryOperator *Op1 = dyn_cast<BinaryOperator>(RHS);
193
194 // Transform: "(A op B) op C" ==> "A op (B op C)" if it simplifies completely.
195 if (Op0 && Op0->getOpcode() == Opcode) {
196 Value *A = Op0->getOperand(0);
197 Value *B = Op0->getOperand(1);
198 Value *C = RHS;
199
200 // Does "B op C" simplify?
Duncan Sandsb8cee002012-03-13 11:42:19 +0000201 if (Value *V = SimplifyBinOp(Opcode, B, C, Q, MaxRecurse)) {
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000202 // It does! Return "A op V" if it simplifies or is already available.
203 // If V equals B then "A op V" is just the LHS.
Duncan Sands772749a2011-01-01 20:08:02 +0000204 if (V == B) return LHS;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000205 // Otherwise return "A op V" if it simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000206 if (Value *W = SimplifyBinOp(Opcode, A, V, Q, MaxRecurse)) {
Duncan Sands3547d2e2010-12-22 09:40:51 +0000207 ++NumReassoc;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000208 return W;
Duncan Sands3547d2e2010-12-22 09:40:51 +0000209 }
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000210 }
211 }
212
213 // Transform: "A op (B op C)" ==> "(A op B) op C" if it simplifies completely.
214 if (Op1 && Op1->getOpcode() == Opcode) {
215 Value *A = LHS;
216 Value *B = Op1->getOperand(0);
217 Value *C = Op1->getOperand(1);
218
219 // Does "A op B" simplify?
Duncan Sandsb8cee002012-03-13 11:42:19 +0000220 if (Value *V = SimplifyBinOp(Opcode, A, B, Q, MaxRecurse)) {
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000221 // It does! Return "V op C" if it simplifies or is already available.
222 // If V equals B then "V op C" is just the RHS.
Duncan Sands772749a2011-01-01 20:08:02 +0000223 if (V == B) return RHS;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000224 // Otherwise return "V op C" if it simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000225 if (Value *W = SimplifyBinOp(Opcode, V, C, Q, MaxRecurse)) {
Duncan Sands3547d2e2010-12-22 09:40:51 +0000226 ++NumReassoc;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000227 return W;
Duncan Sands3547d2e2010-12-22 09:40:51 +0000228 }
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000229 }
230 }
231
232 // The remaining transforms require commutativity as well as associativity.
233 if (!Instruction::isCommutative(Opcode))
Craig Topper9f008862014-04-15 04:59:12 +0000234 return nullptr;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000235
236 // Transform: "(A op B) op C" ==> "(C op A) op B" if it simplifies completely.
237 if (Op0 && Op0->getOpcode() == Opcode) {
238 Value *A = Op0->getOperand(0);
239 Value *B = Op0->getOperand(1);
240 Value *C = RHS;
241
242 // Does "C op A" simplify?
Duncan Sandsb8cee002012-03-13 11:42:19 +0000243 if (Value *V = SimplifyBinOp(Opcode, C, A, Q, MaxRecurse)) {
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000244 // It does! Return "V op B" if it simplifies or is already available.
245 // If V equals A then "V op B" is just the LHS.
Duncan Sands772749a2011-01-01 20:08:02 +0000246 if (V == A) return LHS;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000247 // Otherwise return "V op B" if it simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000248 if (Value *W = SimplifyBinOp(Opcode, V, B, Q, MaxRecurse)) {
Duncan Sands3547d2e2010-12-22 09:40:51 +0000249 ++NumReassoc;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000250 return W;
Duncan Sands3547d2e2010-12-22 09:40:51 +0000251 }
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000252 }
253 }
254
255 // Transform: "A op (B op C)" ==> "B op (C op A)" if it simplifies completely.
256 if (Op1 && Op1->getOpcode() == Opcode) {
257 Value *A = LHS;
258 Value *B = Op1->getOperand(0);
259 Value *C = Op1->getOperand(1);
260
261 // Does "C op A" simplify?
Duncan Sandsb8cee002012-03-13 11:42:19 +0000262 if (Value *V = SimplifyBinOp(Opcode, C, A, Q, MaxRecurse)) {
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000263 // It does! Return "B op V" if it simplifies or is already available.
264 // If V equals C then "B op V" is just the RHS.
Duncan Sands772749a2011-01-01 20:08:02 +0000265 if (V == C) return RHS;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000266 // Otherwise return "B op V" if it simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000267 if (Value *W = SimplifyBinOp(Opcode, B, V, Q, MaxRecurse)) {
Duncan Sands3547d2e2010-12-22 09:40:51 +0000268 ++NumReassoc;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000269 return W;
Duncan Sands3547d2e2010-12-22 09:40:51 +0000270 }
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000271 }
272 }
273
Craig Topper9f008862014-04-15 04:59:12 +0000274 return nullptr;
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000275}
276
Sanjay Patel472cc782016-01-11 22:14:42 +0000277/// In the case of a binary operation with a select instruction as an operand,
278/// try to simplify the binop by seeing whether evaluating it on both branches
279/// of the select results in the same value. Returns the common value if so,
280/// otherwise returns null.
Craig Topper60dd9cd2017-04-07 05:57:51 +0000281static Value *ThreadBinOpOverSelect(Instruction::BinaryOps Opcode, Value *LHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000282 Value *RHS, const SimplifyQuery &Q,
Craig Topper60dd9cd2017-04-07 05:57:51 +0000283 unsigned MaxRecurse) {
Duncan Sandsf64e6902010-12-21 09:09:15 +0000284 // Recursion is always used, so bail out at once if we already hit the limit.
285 if (!MaxRecurse--)
Craig Topper9f008862014-04-15 04:59:12 +0000286 return nullptr;
Duncan Sandsf64e6902010-12-21 09:09:15 +0000287
Duncan Sandsb0579e92010-11-10 13:00:08 +0000288 SelectInst *SI;
289 if (isa<SelectInst>(LHS)) {
290 SI = cast<SelectInst>(LHS);
291 } else {
292 assert(isa<SelectInst>(RHS) && "No select instruction operand!");
293 SI = cast<SelectInst>(RHS);
294 }
295
296 // Evaluate the BinOp on the true and false branches of the select.
297 Value *TV;
298 Value *FV;
299 if (SI == LHS) {
Duncan Sandsb8cee002012-03-13 11:42:19 +0000300 TV = SimplifyBinOp(Opcode, SI->getTrueValue(), RHS, Q, MaxRecurse);
301 FV = SimplifyBinOp(Opcode, SI->getFalseValue(), RHS, Q, MaxRecurse);
Duncan Sandsb0579e92010-11-10 13:00:08 +0000302 } else {
Duncan Sandsb8cee002012-03-13 11:42:19 +0000303 TV = SimplifyBinOp(Opcode, LHS, SI->getTrueValue(), Q, MaxRecurse);
304 FV = SimplifyBinOp(Opcode, LHS, SI->getFalseValue(), Q, MaxRecurse);
Duncan Sandsb0579e92010-11-10 13:00:08 +0000305 }
306
Duncan Sandse3c53952011-01-01 16:12:09 +0000307 // If they simplified to the same value, then return the common value.
Duncan Sands772749a2011-01-01 20:08:02 +0000308 // If they both failed to simplify then return null.
309 if (TV == FV)
Duncan Sandsb0579e92010-11-10 13:00:08 +0000310 return TV;
311
312 // If one branch simplified to undef, return the other one.
313 if (TV && isa<UndefValue>(TV))
314 return FV;
315 if (FV && isa<UndefValue>(FV))
316 return TV;
317
318 // If applying the operation did not change the true and false select values,
319 // then the result of the binop is the select itself.
Duncan Sands772749a2011-01-01 20:08:02 +0000320 if (TV == SI->getTrueValue() && FV == SI->getFalseValue())
Duncan Sandsb0579e92010-11-10 13:00:08 +0000321 return SI;
322
323 // If one branch simplified and the other did not, and the simplified
324 // value is equal to the unsimplified one, return the simplified value.
325 // For example, select (cond, X, X & Z) & Z -> X & Z.
326 if ((FV && !TV) || (TV && !FV)) {
327 // Check that the simplified value has the form "X op Y" where "op" is the
328 // same as the original operation.
329 Instruction *Simplified = dyn_cast<Instruction>(FV ? FV : TV);
330 if (Simplified && Simplified->getOpcode() == Opcode) {
331 // The value that didn't simplify is "UnsimplifiedLHS op UnsimplifiedRHS".
332 // We already know that "op" is the same as for the simplified value. See
333 // if the operands match too. If so, return the simplified value.
334 Value *UnsimplifiedBranch = FV ? SI->getTrueValue() : SI->getFalseValue();
335 Value *UnsimplifiedLHS = SI == LHS ? UnsimplifiedBranch : LHS;
336 Value *UnsimplifiedRHS = SI == LHS ? RHS : UnsimplifiedBranch;
Duncan Sands772749a2011-01-01 20:08:02 +0000337 if (Simplified->getOperand(0) == UnsimplifiedLHS &&
338 Simplified->getOperand(1) == UnsimplifiedRHS)
Duncan Sandsb0579e92010-11-10 13:00:08 +0000339 return Simplified;
340 if (Simplified->isCommutative() &&
Duncan Sands772749a2011-01-01 20:08:02 +0000341 Simplified->getOperand(1) == UnsimplifiedLHS &&
342 Simplified->getOperand(0) == UnsimplifiedRHS)
Duncan Sandsb0579e92010-11-10 13:00:08 +0000343 return Simplified;
344 }
345 }
346
Craig Topper9f008862014-04-15 04:59:12 +0000347 return nullptr;
Duncan Sandsb0579e92010-11-10 13:00:08 +0000348}
349
Sanjay Patel472cc782016-01-11 22:14:42 +0000350/// In the case of a comparison with a select instruction, try to simplify the
351/// comparison by seeing whether both branches of the select result in the same
352/// value. Returns the common value if so, otherwise returns null.
Duncan Sandsb0579e92010-11-10 13:00:08 +0000353static Value *ThreadCmpOverSelect(CmpInst::Predicate Pred, Value *LHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000354 Value *RHS, const SimplifyQuery &Q,
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000355 unsigned MaxRecurse) {
Duncan Sandsf64e6902010-12-21 09:09:15 +0000356 // Recursion is always used, so bail out at once if we already hit the limit.
357 if (!MaxRecurse--)
Craig Topper9f008862014-04-15 04:59:12 +0000358 return nullptr;
Duncan Sandsf64e6902010-12-21 09:09:15 +0000359
Duncan Sandsb0579e92010-11-10 13:00:08 +0000360 // Make sure the select is on the LHS.
361 if (!isa<SelectInst>(LHS)) {
362 std::swap(LHS, RHS);
363 Pred = CmpInst::getSwappedPredicate(Pred);
364 }
365 assert(isa<SelectInst>(LHS) && "Not comparing with a select instruction!");
366 SelectInst *SI = cast<SelectInst>(LHS);
Duncan Sands3d5692a2011-10-30 19:56:36 +0000367 Value *Cond = SI->getCondition();
368 Value *TV = SI->getTrueValue();
369 Value *FV = SI->getFalseValue();
Duncan Sandsb0579e92010-11-10 13:00:08 +0000370
Duncan Sands06504022011-02-03 09:37:39 +0000371 // Now that we have "cmp select(Cond, TV, FV), RHS", analyse it.
Duncan Sandsb0579e92010-11-10 13:00:08 +0000372 // Does "cmp TV, RHS" simplify?
Duncan Sandsb8cee002012-03-13 11:42:19 +0000373 Value *TCmp = SimplifyCmpInst(Pred, TV, RHS, Q, MaxRecurse);
Duncan Sands3d5692a2011-10-30 19:56:36 +0000374 if (TCmp == Cond) {
375 // It not only simplified, it simplified to the select condition. Replace
376 // it with 'true'.
377 TCmp = getTrue(Cond->getType());
378 } else if (!TCmp) {
379 // It didn't simplify. However if "cmp TV, RHS" is equal to the select
380 // condition then we can replace it with 'true'. Otherwise give up.
381 if (!isSameCompare(Cond, Pred, TV, RHS))
Craig Topper9f008862014-04-15 04:59:12 +0000382 return nullptr;
Duncan Sands3d5692a2011-10-30 19:56:36 +0000383 TCmp = getTrue(Cond->getType());
Duncan Sands06504022011-02-03 09:37:39 +0000384 }
385
Duncan Sands3d5692a2011-10-30 19:56:36 +0000386 // Does "cmp FV, RHS" simplify?
Duncan Sandsb8cee002012-03-13 11:42:19 +0000387 Value *FCmp = SimplifyCmpInst(Pred, FV, RHS, Q, MaxRecurse);
Duncan Sands3d5692a2011-10-30 19:56:36 +0000388 if (FCmp == Cond) {
389 // It not only simplified, it simplified to the select condition. Replace
390 // it with 'false'.
391 FCmp = getFalse(Cond->getType());
392 } else if (!FCmp) {
393 // It didn't simplify. However if "cmp FV, RHS" is equal to the select
394 // condition then we can replace it with 'false'. Otherwise give up.
395 if (!isSameCompare(Cond, Pred, FV, RHS))
Craig Topper9f008862014-04-15 04:59:12 +0000396 return nullptr;
Duncan Sands3d5692a2011-10-30 19:56:36 +0000397 FCmp = getFalse(Cond->getType());
398 }
399
400 // If both sides simplified to the same value, then use it as the result of
401 // the original comparison.
402 if (TCmp == FCmp)
403 return TCmp;
Duncan Sands26641d72012-02-10 14:31:24 +0000404
405 // The remaining cases only make sense if the select condition has the same
406 // type as the result of the comparison, so bail out if this is not so.
407 if (Cond->getType()->isVectorTy() != RHS->getType()->isVectorTy())
Craig Topper9f008862014-04-15 04:59:12 +0000408 return nullptr;
Duncan Sands3d5692a2011-10-30 19:56:36 +0000409 // If the false value simplified to false, then the result of the compare
410 // is equal to "Cond && TCmp". This also catches the case when the false
411 // value simplified to false and the true value to true, returning "Cond".
412 if (match(FCmp, m_Zero()))
Duncan Sandsb8cee002012-03-13 11:42:19 +0000413 if (Value *V = SimplifyAndInst(Cond, TCmp, Q, MaxRecurse))
Duncan Sands3d5692a2011-10-30 19:56:36 +0000414 return V;
415 // If the true value simplified to true, then the result of the compare
416 // is equal to "Cond || FCmp".
417 if (match(TCmp, m_One()))
Duncan Sandsb8cee002012-03-13 11:42:19 +0000418 if (Value *V = SimplifyOrInst(Cond, FCmp, Q, MaxRecurse))
Duncan Sands3d5692a2011-10-30 19:56:36 +0000419 return V;
420 // Finally, if the false value simplified to true and the true value to
421 // false, then the result of the compare is equal to "!Cond".
422 if (match(FCmp, m_One()) && match(TCmp, m_Zero()))
423 if (Value *V =
424 SimplifyXorInst(Cond, Constant::getAllOnesValue(Cond->getType()),
Duncan Sandsb8cee002012-03-13 11:42:19 +0000425 Q, MaxRecurse))
Duncan Sands3d5692a2011-10-30 19:56:36 +0000426 return V;
427
Craig Topper9f008862014-04-15 04:59:12 +0000428 return nullptr;
Duncan Sandsb0579e92010-11-10 13:00:08 +0000429}
430
Sanjay Patel472cc782016-01-11 22:14:42 +0000431/// In the case of a binary operation with an operand that is a PHI instruction,
432/// try to simplify the binop by seeing whether evaluating it on the incoming
433/// phi values yields the same result for every value. If so returns the common
434/// value, otherwise returns null.
Craig Topper60dd9cd2017-04-07 05:57:51 +0000435static Value *ThreadBinOpOverPHI(Instruction::BinaryOps Opcode, Value *LHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000436 Value *RHS, const SimplifyQuery &Q,
Craig Topper60dd9cd2017-04-07 05:57:51 +0000437 unsigned MaxRecurse) {
Duncan Sandsf64e6902010-12-21 09:09:15 +0000438 // Recursion is always used, so bail out at once if we already hit the limit.
439 if (!MaxRecurse--)
Craig Topper9f008862014-04-15 04:59:12 +0000440 return nullptr;
Duncan Sandsf64e6902010-12-21 09:09:15 +0000441
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000442 PHINode *PI;
443 if (isa<PHINode>(LHS)) {
444 PI = cast<PHINode>(LHS);
Duncan Sands5ffc2982010-11-16 12:16:38 +0000445 // Bail out if RHS and the phi may be mutually interdependent due to a loop.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000446 if (!ValueDominatesPHI(RHS, PI, Q.DT))
Craig Topper9f008862014-04-15 04:59:12 +0000447 return nullptr;
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000448 } else {
449 assert(isa<PHINode>(RHS) && "No PHI instruction operand!");
450 PI = cast<PHINode>(RHS);
Duncan Sands5ffc2982010-11-16 12:16:38 +0000451 // Bail out if LHS and the phi may be mutually interdependent due to a loop.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000452 if (!ValueDominatesPHI(LHS, PI, Q.DT))
Craig Topper9f008862014-04-15 04:59:12 +0000453 return nullptr;
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000454 }
455
456 // Evaluate the BinOp on the incoming phi values.
Craig Topper9f008862014-04-15 04:59:12 +0000457 Value *CommonValue = nullptr;
Pete Cooper833f34d2015-05-12 20:05:31 +0000458 for (Value *Incoming : PI->incoming_values()) {
Duncan Sands7412f6e2010-11-17 04:30:22 +0000459 // If the incoming value is the phi node itself, it can safely be skipped.
Duncan Sandsf12ba1d2010-11-15 17:52:45 +0000460 if (Incoming == PI) continue;
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000461 Value *V = PI == LHS ?
Duncan Sandsb8cee002012-03-13 11:42:19 +0000462 SimplifyBinOp(Opcode, Incoming, RHS, Q, MaxRecurse) :
463 SimplifyBinOp(Opcode, LHS, Incoming, Q, MaxRecurse);
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000464 // If the operation failed to simplify, or simplified to a different value
465 // to previously, then give up.
466 if (!V || (CommonValue && V != CommonValue))
Craig Topper9f008862014-04-15 04:59:12 +0000467 return nullptr;
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000468 CommonValue = V;
469 }
470
471 return CommonValue;
472}
473
Sanjay Patel472cc782016-01-11 22:14:42 +0000474/// In the case of a comparison with a PHI instruction, try to simplify the
475/// comparison by seeing whether comparing with all of the incoming phi values
476/// yields the same result every time. If so returns the common result,
477/// otherwise returns null.
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000478static Value *ThreadCmpOverPHI(CmpInst::Predicate Pred, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000479 const SimplifyQuery &Q, unsigned MaxRecurse) {
Duncan Sandsf64e6902010-12-21 09:09:15 +0000480 // Recursion is always used, so bail out at once if we already hit the limit.
481 if (!MaxRecurse--)
Craig Topper9f008862014-04-15 04:59:12 +0000482 return nullptr;
Duncan Sandsf64e6902010-12-21 09:09:15 +0000483
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000484 // Make sure the phi is on the LHS.
485 if (!isa<PHINode>(LHS)) {
486 std::swap(LHS, RHS);
487 Pred = CmpInst::getSwappedPredicate(Pred);
488 }
489 assert(isa<PHINode>(LHS) && "Not comparing with a phi instruction!");
490 PHINode *PI = cast<PHINode>(LHS);
491
Duncan Sands5ffc2982010-11-16 12:16:38 +0000492 // Bail out if RHS and the phi may be mutually interdependent due to a loop.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000493 if (!ValueDominatesPHI(RHS, PI, Q.DT))
Craig Topper9f008862014-04-15 04:59:12 +0000494 return nullptr;
Duncan Sands5ffc2982010-11-16 12:16:38 +0000495
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000496 // Evaluate the BinOp on the incoming phi values.
Craig Topper9f008862014-04-15 04:59:12 +0000497 Value *CommonValue = nullptr;
Pete Cooper833f34d2015-05-12 20:05:31 +0000498 for (Value *Incoming : PI->incoming_values()) {
Duncan Sands7412f6e2010-11-17 04:30:22 +0000499 // If the incoming value is the phi node itself, it can safely be skipped.
Duncan Sandsf12ba1d2010-11-15 17:52:45 +0000500 if (Incoming == PI) continue;
Duncan Sandsb8cee002012-03-13 11:42:19 +0000501 Value *V = SimplifyCmpInst(Pred, Incoming, RHS, Q, MaxRecurse);
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000502 // If the operation failed to simplify, or simplified to a different value
503 // to previously, then give up.
504 if (!V || (CommonValue && V != CommonValue))
Craig Topper9f008862014-04-15 04:59:12 +0000505 return nullptr;
Duncan Sandsf3b1bf12010-11-10 18:23:01 +0000506 CommonValue = V;
507 }
508
509 return CommonValue;
510}
511
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +0000512static Constant *foldOrCommuteConstant(Instruction::BinaryOps Opcode,
513 Value *&Op0, Value *&Op1,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000514 const SimplifyQuery &Q) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +0000515 if (auto *CLHS = dyn_cast<Constant>(Op0)) {
516 if (auto *CRHS = dyn_cast<Constant>(Op1))
517 return ConstantFoldBinaryOpOperands(Opcode, CLHS, CRHS, Q.DL);
518
519 // Canonicalize the constant to the RHS if this is a commutative operation.
520 if (Instruction::isCommutative(Opcode))
521 std::swap(Op0, Op1);
522 }
523 return nullptr;
524}
525
Sanjay Patel472cc782016-01-11 22:14:42 +0000526/// Given operands for an Add, see if we can fold the result.
527/// If not, this returns null.
Duncan Sandsed6d6c32010-12-20 14:47:04 +0000528static Value *SimplifyAddInst(Value *Op0, Value *Op1, bool isNSW, bool isNUW,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000529 const SimplifyQuery &Q, unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +0000530 if (Constant *C = foldOrCommuteConstant(Instruction::Add, Op0, Op1, Q))
531 return C;
Duncan Sands7e800d62010-11-14 11:23:23 +0000532
Duncan Sands0a2c41682010-12-15 14:07:39 +0000533 // X + undef -> undef
Duncan Sandsa29ea9a2011-02-01 09:06:20 +0000534 if (match(Op1, m_Undef()))
Duncan Sands0a2c41682010-12-15 14:07:39 +0000535 return Op1;
Duncan Sands7e800d62010-11-14 11:23:23 +0000536
Duncan Sands0a2c41682010-12-15 14:07:39 +0000537 // X + 0 -> X
538 if (match(Op1, m_Zero()))
539 return Op0;
Duncan Sands7e800d62010-11-14 11:23:23 +0000540
Duncan Sands0a2c41682010-12-15 14:07:39 +0000541 // X + (Y - X) -> Y
542 // (Y - X) + X -> Y
Duncan Sandsed6d6c32010-12-20 14:47:04 +0000543 // Eg: X + -X -> 0
Craig Topper9f008862014-04-15 04:59:12 +0000544 Value *Y = nullptr;
Duncan Sands772749a2011-01-01 20:08:02 +0000545 if (match(Op1, m_Sub(m_Value(Y), m_Specific(Op0))) ||
546 match(Op0, m_Sub(m_Value(Y), m_Specific(Op1))))
Duncan Sands0a2c41682010-12-15 14:07:39 +0000547 return Y;
548
549 // X + ~X -> -1 since ~X = -X-1
Sanjay Patelfe672552017-02-18 21:59:09 +0000550 Type *Ty = Op0->getType();
Duncan Sands772749a2011-01-01 20:08:02 +0000551 if (match(Op0, m_Not(m_Specific(Op1))) ||
552 match(Op1, m_Not(m_Specific(Op0))))
Sanjay Patelfe672552017-02-18 21:59:09 +0000553 return Constant::getAllOnesValue(Ty);
554
Craig Topperbcfd2d12017-04-20 16:56:25 +0000555 // add nsw/nuw (xor Y, signmask), signmask --> Y
Sanjay Patelfe672552017-02-18 21:59:09 +0000556 // The no-wrapping add guarantees that the top bit will be set by the add.
557 // Therefore, the xor must be clearing the already set sign bit of Y.
Craig Topperbcfd2d12017-04-20 16:56:25 +0000558 if ((isNSW || isNUW) && match(Op1, m_SignMask()) &&
559 match(Op0, m_Xor(m_Value(Y), m_SignMask())))
Sanjay Patelfe672552017-02-18 21:59:09 +0000560 return Y;
Duncan Sandsb238de02010-11-19 09:20:39 +0000561
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000562 /// i1 add -> xor.
Craig Topperfde47232017-07-09 07:04:03 +0000563 if (MaxRecurse && Op0->getType()->isIntOrIntVectorTy(1))
Duncan Sandsb8cee002012-03-13 11:42:19 +0000564 if (Value *V = SimplifyXorInst(Op0, Op1, Q, MaxRecurse-1))
Duncan Sandsfecc6422010-12-21 15:03:43 +0000565 return V;
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000566
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000567 // Try some generic simplifications for associative operations.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000568 if (Value *V = SimplifyAssociativeBinOp(Instruction::Add, Op0, Op1, Q,
Duncan Sands6c7a52c2010-12-21 08:49:00 +0000569 MaxRecurse))
570 return V;
571
Duncan Sandsb238de02010-11-19 09:20:39 +0000572 // Threading Add over selects and phi nodes is pointless, so don't bother.
573 // Threading over the select in "A + select(cond, B, C)" means evaluating
574 // "A+B" and "A+C" and seeing if they are equal; but they are equal if and
575 // only if B and C are equal. If B and C are equal then (since we assume
576 // that operands have already been simplified) "select(cond, B, C)" should
577 // have been simplified to the common value of B and C already. Analysing
578 // "A+B" and "A+C" thus gains nothing, but costs compile time. Similarly
579 // for threading over phi nodes.
580
Craig Topper9f008862014-04-15 04:59:12 +0000581 return nullptr;
Chris Lattner3d9823b2009-11-27 17:42:22 +0000582}
583
Duncan Sandsed6d6c32010-12-20 14:47:04 +0000584Value *llvm::SimplifyAddInst(Value *Op0, Value *Op1, bool isNSW, bool isNUW,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000585 const SimplifyQuery &Query) {
586 return ::SimplifyAddInst(Op0, Op1, isNSW, isNUW, Query, RecursionLimit);
587}
588
Chandler Carrutha0796552012-03-12 11:19:31 +0000589/// \brief Compute the base pointer and cumulative constant offsets for V.
590///
591/// This strips all constant offsets off of V, leaving it the base pointer, and
592/// accumulates the total constant offset applied in the returned constant. It
593/// returns 0 if V is not a pointer, and returns the constant '0' if there are
594/// no constant offsets applied.
Dan Gohman36fa8392013-01-31 02:45:26 +0000595///
596/// This is very similar to GetPointerBaseWithConstantOffset except it doesn't
597/// follow non-inbounds geps. This allows it to remain usable for icmp ult/etc.
598/// folding.
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000599static Constant *stripAndComputeConstantOffsets(const DataLayout &DL, Value *&V,
Benjamin Kramer942dfe62013-09-23 14:16:38 +0000600 bool AllowNonInbounds = false) {
Craig Topper95d23472017-07-09 07:04:00 +0000601 assert(V->getType()->isPtrOrPtrVectorTy());
Chandler Carrutha0796552012-03-12 11:19:31 +0000602
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000603 Type *IntPtrTy = DL.getIntPtrType(V->getType())->getScalarType();
Matt Arsenault2f9cce22013-08-03 01:03:12 +0000604 APInt Offset = APInt::getNullValue(IntPtrTy->getIntegerBitWidth());
Chandler Carrutha0796552012-03-12 11:19:31 +0000605
606 // Even though we don't look through PHI nodes, we could be called on an
607 // instruction in an unreachable block, which may be on a cycle.
608 SmallPtrSet<Value *, 4> Visited;
609 Visited.insert(V);
610 do {
611 if (GEPOperator *GEP = dyn_cast<GEPOperator>(V)) {
Benjamin Kramer942dfe62013-09-23 14:16:38 +0000612 if ((!AllowNonInbounds && !GEP->isInBounds()) ||
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000613 !GEP->accumulateConstantOffset(DL, Offset))
Chandler Carrutha0796552012-03-12 11:19:31 +0000614 break;
Chandler Carrutha0796552012-03-12 11:19:31 +0000615 V = GEP->getPointerOperand();
616 } else if (Operator::getOpcode(V) == Instruction::BitCast) {
Matt Arsenault2f9cce22013-08-03 01:03:12 +0000617 V = cast<Operator>(V)->getOperand(0);
Chandler Carrutha0796552012-03-12 11:19:31 +0000618 } else if (GlobalAlias *GA = dyn_cast<GlobalAlias>(V)) {
Sanjoy Das5ce32722016-04-08 00:48:30 +0000619 if (GA->isInterposable())
Chandler Carrutha0796552012-03-12 11:19:31 +0000620 break;
621 V = GA->getAliasee();
622 } else {
Hal Finkel2cac58f2016-07-11 03:37:59 +0000623 if (auto CS = CallSite(V))
624 if (Value *RV = CS.getReturnedArgOperand()) {
625 V = RV;
626 continue;
627 }
Chandler Carrutha0796552012-03-12 11:19:31 +0000628 break;
629 }
Craig Topper95d23472017-07-09 07:04:00 +0000630 assert(V->getType()->isPtrOrPtrVectorTy() && "Unexpected operand type!");
David Blaikie70573dc2014-11-19 07:49:26 +0000631 } while (Visited.insert(V).second);
Chandler Carrutha0796552012-03-12 11:19:31 +0000632
Benjamin Kramerc05aa952013-02-01 15:21:10 +0000633 Constant *OffsetIntPtr = ConstantInt::get(IntPtrTy, Offset);
634 if (V->getType()->isVectorTy())
635 return ConstantVector::getSplat(V->getType()->getVectorNumElements(),
636 OffsetIntPtr);
637 return OffsetIntPtr;
Chandler Carrutha0796552012-03-12 11:19:31 +0000638}
639
640/// \brief Compute the constant difference between two pointer values.
641/// If the difference is not a constant, returns zero.
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000642static Constant *computePointerDifference(const DataLayout &DL, Value *LHS,
643 Value *RHS) {
Rafael Espindola37dc9e12014-02-21 00:06:31 +0000644 Constant *LHSOffset = stripAndComputeConstantOffsets(DL, LHS);
645 Constant *RHSOffset = stripAndComputeConstantOffsets(DL, RHS);
Chandler Carrutha0796552012-03-12 11:19:31 +0000646
647 // If LHS and RHS are not related via constant offsets to the same base
648 // value, there is nothing we can do here.
649 if (LHS != RHS)
Craig Topper9f008862014-04-15 04:59:12 +0000650 return nullptr;
Chandler Carrutha0796552012-03-12 11:19:31 +0000651
652 // Otherwise, the difference of LHS - RHS can be computed as:
653 // LHS - RHS
654 // = (LHSOffset + Base) - (RHSOffset + Base)
655 // = LHSOffset - RHSOffset
656 return ConstantExpr::getSub(LHSOffset, RHSOffset);
657}
658
Sanjay Patel472cc782016-01-11 22:14:42 +0000659/// Given operands for a Sub, see if we can fold the result.
660/// If not, this returns null.
Duncan Sandsed6d6c32010-12-20 14:47:04 +0000661static Value *SimplifySubInst(Value *Op0, Value *Op1, bool isNSW, bool isNUW,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000662 const SimplifyQuery &Q, unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +0000663 if (Constant *C = foldOrCommuteConstant(Instruction::Sub, Op0, Op1, Q))
664 return C;
Duncan Sands0a2c41682010-12-15 14:07:39 +0000665
666 // X - undef -> undef
667 // undef - X -> undef
Duncan Sandsa29ea9a2011-02-01 09:06:20 +0000668 if (match(Op0, m_Undef()) || match(Op1, m_Undef()))
Duncan Sands0a2c41682010-12-15 14:07:39 +0000669 return UndefValue::get(Op0->getType());
670
671 // X - 0 -> X
672 if (match(Op1, m_Zero()))
673 return Op0;
674
675 // X - X -> 0
Duncan Sands772749a2011-01-01 20:08:02 +0000676 if (Op0 == Op1)
Duncan Sands0a2c41682010-12-15 14:07:39 +0000677 return Constant::getNullValue(Op0->getType());
678
Sanjay Patelefd88852016-10-19 21:23:45 +0000679 // Is this a negation?
680 if (match(Op0, m_Zero())) {
681 // 0 - X -> 0 if the sub is NUW.
682 if (isNUW)
683 return Op0;
684
Craig Topper8205a1a2017-05-24 16:53:07 +0000685 KnownBits Known = computeKnownBits(Op1, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
Craig Topperb45eabc2017-04-26 16:39:58 +0000686 if (Known.Zero.isMaxSignedValue()) {
Sanjay Patelefd88852016-10-19 21:23:45 +0000687 // Op1 is either 0 or the minimum signed value. If the sub is NSW, then
688 // Op1 must be 0 because negating the minimum signed value is undefined.
689 if (isNSW)
690 return Op0;
691
692 // 0 - X -> X if X is 0 or the minimum signed value.
693 return Op1;
694 }
695 }
David Majnemercd4fbcd2014-07-31 04:49:18 +0000696
Duncan Sands99589d02011-01-18 11:50:19 +0000697 // (X + Y) - Z -> X + (Y - Z) or Y + (X - Z) if everything simplifies.
698 // For example, (X + Y) - Y -> X; (Y + X) - Y -> X
Dinesh Dwivedi99281a02014-06-26 08:57:33 +0000699 Value *X = nullptr, *Y = nullptr, *Z = Op1;
Duncan Sands99589d02011-01-18 11:50:19 +0000700 if (MaxRecurse && match(Op0, m_Add(m_Value(X), m_Value(Y)))) { // (X + Y) - Z
701 // See if "V === Y - Z" simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000702 if (Value *V = SimplifyBinOp(Instruction::Sub, Y, Z, Q, MaxRecurse-1))
Duncan Sands99589d02011-01-18 11:50:19 +0000703 // It does! Now see if "X + V" simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000704 if (Value *W = SimplifyBinOp(Instruction::Add, X, V, Q, MaxRecurse-1)) {
Duncan Sands99589d02011-01-18 11:50:19 +0000705 // It does, we successfully reassociated!
706 ++NumReassoc;
707 return W;
708 }
709 // See if "V === X - Z" simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000710 if (Value *V = SimplifyBinOp(Instruction::Sub, X, Z, Q, MaxRecurse-1))
Duncan Sands99589d02011-01-18 11:50:19 +0000711 // It does! Now see if "Y + V" simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000712 if (Value *W = SimplifyBinOp(Instruction::Add, Y, V, Q, MaxRecurse-1)) {
Duncan Sands99589d02011-01-18 11:50:19 +0000713 // It does, we successfully reassociated!
714 ++NumReassoc;
715 return W;
716 }
717 }
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000718
Duncan Sands99589d02011-01-18 11:50:19 +0000719 // X - (Y + Z) -> (X - Y) - Z or (X - Z) - Y if everything simplifies.
720 // For example, X - (X + 1) -> -1
721 X = Op0;
722 if (MaxRecurse && match(Op1, m_Add(m_Value(Y), m_Value(Z)))) { // X - (Y + Z)
723 // See if "V === X - Y" simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000724 if (Value *V = SimplifyBinOp(Instruction::Sub, X, Y, Q, MaxRecurse-1))
Duncan Sands99589d02011-01-18 11:50:19 +0000725 // It does! Now see if "V - Z" simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000726 if (Value *W = SimplifyBinOp(Instruction::Sub, V, Z, Q, MaxRecurse-1)) {
Duncan Sands99589d02011-01-18 11:50:19 +0000727 // It does, we successfully reassociated!
728 ++NumReassoc;
729 return W;
730 }
731 // See if "V === X - Z" simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000732 if (Value *V = SimplifyBinOp(Instruction::Sub, X, Z, Q, MaxRecurse-1))
Duncan Sands99589d02011-01-18 11:50:19 +0000733 // It does! Now see if "V - Y" simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000734 if (Value *W = SimplifyBinOp(Instruction::Sub, V, Y, Q, MaxRecurse-1)) {
Duncan Sands99589d02011-01-18 11:50:19 +0000735 // It does, we successfully reassociated!
736 ++NumReassoc;
737 return W;
738 }
739 }
740
741 // Z - (X - Y) -> (Z - X) + Y if everything simplifies.
742 // For example, X - (X - Y) -> Y.
743 Z = Op0;
Duncan Sandsd6f1a952011-01-14 15:26:10 +0000744 if (MaxRecurse && match(Op1, m_Sub(m_Value(X), m_Value(Y)))) // Z - (X - Y)
745 // See if "V === Z - X" simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000746 if (Value *V = SimplifyBinOp(Instruction::Sub, Z, X, Q, MaxRecurse-1))
Duncan Sands99589d02011-01-18 11:50:19 +0000747 // It does! Now see if "V + Y" simplifies.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000748 if (Value *W = SimplifyBinOp(Instruction::Add, V, Y, Q, MaxRecurse-1)) {
Duncan Sandsd6f1a952011-01-14 15:26:10 +0000749 // It does, we successfully reassociated!
750 ++NumReassoc;
751 return W;
752 }
753
Duncan Sands395ac42d2012-03-13 14:07:05 +0000754 // trunc(X) - trunc(Y) -> trunc(X - Y) if everything simplifies.
755 if (MaxRecurse && match(Op0, m_Trunc(m_Value(X))) &&
756 match(Op1, m_Trunc(m_Value(Y))))
757 if (X->getType() == Y->getType())
758 // See if "V === X - Y" simplifies.
759 if (Value *V = SimplifyBinOp(Instruction::Sub, X, Y, Q, MaxRecurse-1))
760 // It does! Now see if "trunc V" simplifies.
David Majnemer6774d612016-07-26 17:58:05 +0000761 if (Value *W = SimplifyCastInst(Instruction::Trunc, V, Op0->getType(),
762 Q, MaxRecurse - 1))
Duncan Sands395ac42d2012-03-13 14:07:05 +0000763 // It does, return the simplified "trunc V".
764 return W;
765
766 // Variations on GEP(base, I, ...) - GEP(base, i, ...) -> GEP(null, I-i, ...).
Dan Gohman18c77a12013-01-31 02:50:36 +0000767 if (match(Op0, m_PtrToInt(m_Value(X))) &&
Duncan Sands395ac42d2012-03-13 14:07:05 +0000768 match(Op1, m_PtrToInt(m_Value(Y))))
Rafael Espindola37dc9e12014-02-21 00:06:31 +0000769 if (Constant *Result = computePointerDifference(Q.DL, X, Y))
Duncan Sands395ac42d2012-03-13 14:07:05 +0000770 return ConstantExpr::getIntegerCast(Result, Op0->getType(), true);
771
Duncan Sands99589d02011-01-18 11:50:19 +0000772 // i1 sub -> xor.
Craig Topperfde47232017-07-09 07:04:03 +0000773 if (MaxRecurse && Op0->getType()->isIntOrIntVectorTy(1))
Duncan Sandsb8cee002012-03-13 11:42:19 +0000774 if (Value *V = SimplifyXorInst(Op0, Op1, Q, MaxRecurse-1))
Duncan Sands99589d02011-01-18 11:50:19 +0000775 return V;
776
Duncan Sands0a2c41682010-12-15 14:07:39 +0000777 // Threading Sub over selects and phi nodes is pointless, so don't bother.
778 // Threading over the select in "A - select(cond, B, C)" means evaluating
779 // "A-B" and "A-C" and seeing if they are equal; but they are equal if and
780 // only if B and C are equal. If B and C are equal then (since we assume
781 // that operands have already been simplified) "select(cond, B, C)" should
782 // have been simplified to the common value of B and C already. Analysing
783 // "A-B" and "A-C" thus gains nothing, but costs compile time. Similarly
784 // for threading over phi nodes.
785
Craig Topper9f008862014-04-15 04:59:12 +0000786 return nullptr;
Duncan Sands0a2c41682010-12-15 14:07:39 +0000787}
788
Duncan Sandsed6d6c32010-12-20 14:47:04 +0000789Value *llvm::SimplifySubInst(Value *Op0, Value *Op1, bool isNSW, bool isNUW,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000790 const SimplifyQuery &Q) {
791 return ::SimplifySubInst(Op0, Op1, isNSW, isNUW, Q, RecursionLimit);
792}
793
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000794/// Given operands for an FAdd, see if we can fold the result. If not, this
795/// returns null.
796static Value *SimplifyFAddInst(Value *Op0, Value *Op1, FastMathFlags FMF,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000797 const SimplifyQuery &Q, unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +0000798 if (Constant *C = foldOrCommuteConstant(Instruction::FAdd, Op0, Op1, Q))
799 return C;
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000800
801 // fadd X, -0 ==> X
802 if (match(Op1, m_NegZero()))
803 return Op0;
804
805 // fadd X, 0 ==> X, when we know X is not -0
806 if (match(Op1, m_Zero()) &&
David Majnemer3ee5f342016-04-13 06:55:52 +0000807 (FMF.noSignedZeros() || CannotBeNegativeZero(Op0, Q.TLI)))
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000808 return Op0;
809
810 // fadd [nnan ninf] X, (fsub [nnan ninf] 0, X) ==> 0
811 // where nnan and ninf have to occur at least once somewhere in this
812 // expression
Craig Topper9f008862014-04-15 04:59:12 +0000813 Value *SubOp = nullptr;
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000814 if (match(Op1, m_FSub(m_AnyZero(), m_Specific(Op0))))
815 SubOp = Op1;
816 else if (match(Op0, m_FSub(m_AnyZero(), m_Specific(Op1))))
817 SubOp = Op0;
818 if (SubOp) {
819 Instruction *FSub = cast<Instruction>(SubOp);
820 if ((FMF.noNaNs() || FSub->hasNoNaNs()) &&
821 (FMF.noInfs() || FSub->hasNoInfs()))
822 return Constant::getNullValue(Op0->getType());
823 }
824
Craig Topper9f008862014-04-15 04:59:12 +0000825 return nullptr;
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000826}
827
828/// Given operands for an FSub, see if we can fold the result. If not, this
829/// returns null.
830static Value *SimplifyFSubInst(Value *Op0, Value *Op1, FastMathFlags FMF,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000831 const SimplifyQuery &Q, unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +0000832 if (Constant *C = foldOrCommuteConstant(Instruction::FSub, Op0, Op1, Q))
833 return C;
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000834
835 // fsub X, 0 ==> X
836 if (match(Op1, m_Zero()))
837 return Op0;
838
839 // fsub X, -0 ==> X, when we know X is not -0
840 if (match(Op1, m_NegZero()) &&
David Majnemer3ee5f342016-04-13 06:55:52 +0000841 (FMF.noSignedZeros() || CannotBeNegativeZero(Op0, Q.TLI)))
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000842 return Op0;
843
Benjamin Kramerf5b2a472016-02-29 11:12:23 +0000844 // fsub -0.0, (fsub -0.0, X) ==> X
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000845 Value *X;
Benjamin Kramerf5b2a472016-02-29 11:12:23 +0000846 if (match(Op0, m_NegZero()) && match(Op1, m_FSub(m_NegZero(), m_Value(X))))
847 return X;
848
849 // fsub 0.0, (fsub 0.0, X) ==> X if signed zeros are ignored.
Benjamin Kramer6bb15022016-02-29 12:18:25 +0000850 if (FMF.noSignedZeros() && match(Op0, m_AnyZero()) &&
Benjamin Kramerf5b2a472016-02-29 11:12:23 +0000851 match(Op1, m_FSub(m_AnyZero(), m_Value(X))))
852 return X;
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000853
Benjamin Kramer228680d2015-06-14 21:01:20 +0000854 // fsub nnan x, x ==> 0.0
855 if (FMF.noNaNs() && Op0 == Op1)
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000856 return Constant::getNullValue(Op0->getType());
857
Craig Topper9f008862014-04-15 04:59:12 +0000858 return nullptr;
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000859}
860
Michael Ilsemanbe9137a2012-11-27 00:46:26 +0000861/// Given the operands for an FMul, see if we can fold the result
Sanjay Patel1fd16f02017-04-01 18:40:30 +0000862static Value *SimplifyFMulInst(Value *Op0, Value *Op1, FastMathFlags FMF,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000863 const SimplifyQuery &Q, unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +0000864 if (Constant *C = foldOrCommuteConstant(Instruction::FMul, Op0, Op1, Q))
865 return C;
Michael Ilsemanbe9137a2012-11-27 00:46:26 +0000866
Sanjay Patel1fd16f02017-04-01 18:40:30 +0000867 // fmul X, 1.0 ==> X
868 if (match(Op1, m_FPOne()))
869 return Op0;
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000870
Sanjay Patel1fd16f02017-04-01 18:40:30 +0000871 // fmul nnan nsz X, 0 ==> 0
872 if (FMF.noNaNs() && FMF.noSignedZeros() && match(Op1, m_AnyZero()))
873 return Op1;
Michael Ilsemanbe9137a2012-11-27 00:46:26 +0000874
Sanjay Patel1fd16f02017-04-01 18:40:30 +0000875 return nullptr;
Michael Ilsemanbe9137a2012-11-27 00:46:26 +0000876}
877
Sanjay Patel472cc782016-01-11 22:14:42 +0000878/// Given operands for a Mul, see if we can fold the result.
879/// If not, this returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000880static Value *SimplifyMulInst(Value *Op0, Value *Op1, const SimplifyQuery &Q,
Duncan Sandsb8cee002012-03-13 11:42:19 +0000881 unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +0000882 if (Constant *C = foldOrCommuteConstant(Instruction::Mul, Op0, Op1, Q))
883 return C;
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000884
885 // X * undef -> 0
Duncan Sandsa29ea9a2011-02-01 09:06:20 +0000886 if (match(Op1, m_Undef()))
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000887 return Constant::getNullValue(Op0->getType());
888
889 // X * 0 -> 0
890 if (match(Op1, m_Zero()))
891 return Op1;
892
893 // X * 1 -> X
894 if (match(Op1, m_One()))
895 return Op0;
896
Duncan Sandsb67edc62011-01-30 18:03:50 +0000897 // (X / Y) * Y -> X if the division is exact.
Craig Topper9f008862014-04-15 04:59:12 +0000898 Value *X = nullptr;
Benjamin Kramer9442cd02012-01-01 17:55:30 +0000899 if (match(Op0, m_Exact(m_IDiv(m_Value(X), m_Specific(Op1)))) || // (X / Y) * Y
900 match(Op1, m_Exact(m_IDiv(m_Value(X), m_Specific(Op0))))) // Y * (X / Y)
901 return X;
Duncan Sandsb67edc62011-01-30 18:03:50 +0000902
Nick Lewyckyb89d9a42011-01-29 19:55:23 +0000903 // i1 mul -> and.
Craig Topperfde47232017-07-09 07:04:03 +0000904 if (MaxRecurse && Op0->getType()->isIntOrIntVectorTy(1))
Duncan Sandsb8cee002012-03-13 11:42:19 +0000905 if (Value *V = SimplifyAndInst(Op0, Op1, Q, MaxRecurse-1))
Duncan Sandsfecc6422010-12-21 15:03:43 +0000906 return V;
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000907
908 // Try some generic simplifications for associative operations.
Duncan Sandsb8cee002012-03-13 11:42:19 +0000909 if (Value *V = SimplifyAssociativeBinOp(Instruction::Mul, Op0, Op1, Q,
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000910 MaxRecurse))
911 return V;
912
913 // Mul distributes over Add. Try some generic simplifications based on this.
914 if (Value *V = ExpandBinOp(Instruction::Mul, Op0, Op1, Instruction::Add,
Duncan Sandsb8cee002012-03-13 11:42:19 +0000915 Q, MaxRecurse))
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000916 return V;
917
918 // If the operation is with the result of a select instruction, check whether
919 // operating on either branch of the select always yields the same value.
920 if (isa<SelectInst>(Op0) || isa<SelectInst>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +0000921 if (Value *V = ThreadBinOpOverSelect(Instruction::Mul, Op0, Op1, Q,
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000922 MaxRecurse))
923 return V;
924
925 // If the operation is with the result of a phi instruction, check whether
926 // operating on all incoming values of the phi always yields the same value.
927 if (isa<PHINode>(Op0) || isa<PHINode>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +0000928 if (Value *V = ThreadBinOpOverPHI(Instruction::Mul, Op0, Op1, Q,
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000929 MaxRecurse))
930 return V;
931
Craig Topper9f008862014-04-15 04:59:12 +0000932 return nullptr;
Duncan Sandsd0eb6d32010-12-21 14:00:22 +0000933}
934
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000935Value *llvm::SimplifyFAddInst(Value *Op0, Value *Op1, FastMathFlags FMF,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000936 const SimplifyQuery &Q) {
937 return ::SimplifyFAddInst(Op0, Op1, FMF, Q, RecursionLimit);
938}
939
Michael Ilsemanbb6f6912012-12-12 00:27:46 +0000940
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000941Value *llvm::SimplifyFSubInst(Value *Op0, Value *Op1, FastMathFlags FMF,
942 const SimplifyQuery &Q) {
943 return ::SimplifyFSubInst(Op0, Op1, FMF, Q, RecursionLimit);
944}
945
Chandler Carruth66b31302015-01-04 12:03:27 +0000946Value *llvm::SimplifyFMulInst(Value *Op0, Value *Op1, FastMathFlags FMF,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000947 const SimplifyQuery &Q) {
948 return ::SimplifyFMulInst(Op0, Op1, FMF, Q, RecursionLimit);
949}
950
Daniel Berlin5e3fcb12017-04-26 04:09:56 +0000951Value *llvm::SimplifyMulInst(Value *Op0, Value *Op1, const SimplifyQuery &Q) {
952 return ::SimplifyMulInst(Op0, Op1, Q, RecursionLimit);
953}
954
Sanjay Patel0cb2ee92017-03-06 19:08:35 +0000955/// Check for common or similar folds of integer division or integer remainder.
956static Value *simplifyDivRem(Value *Op0, Value *Op1, bool IsDiv) {
957 Type *Ty = Op0->getType();
958
959 // X / undef -> undef
960 // X % undef -> undef
961 if (match(Op1, m_Undef()))
962 return Op1;
963
964 // X / 0 -> undef
965 // X % 0 -> undef
966 // We don't need to preserve faults!
967 if (match(Op1, m_Zero()))
968 return UndefValue::get(Ty);
969
Sanjay Patel2b1f6f42017-03-09 16:20:52 +0000970 // If any element of a constant divisor vector is zero, the whole op is undef.
971 auto *Op1C = dyn_cast<Constant>(Op1);
972 if (Op1C && Ty->isVectorTy()) {
973 unsigned NumElts = Ty->getVectorNumElements();
974 for (unsigned i = 0; i != NumElts; ++i) {
975 Constant *Elt = Op1C->getAggregateElement(i);
976 if (Elt && Elt->isNullValue())
977 return UndefValue::get(Ty);
978 }
979 }
980
Sanjay Patel0cb2ee92017-03-06 19:08:35 +0000981 // undef / X -> 0
982 // undef % X -> 0
983 if (match(Op0, m_Undef()))
984 return Constant::getNullValue(Ty);
985
986 // 0 / X -> 0
987 // 0 % X -> 0
988 if (match(Op0, m_Zero()))
989 return Op0;
990
991 // X / X -> 1
992 // X % X -> 0
993 if (Op0 == Op1)
994 return IsDiv ? ConstantInt::get(Ty, 1) : Constant::getNullValue(Ty);
995
996 // X / 1 -> X
997 // X % 1 -> 0
Sanjay Patel962a8432017-03-09 21:56:03 +0000998 // If this is a boolean op (single-bit element type), we can't have
999 // division-by-zero or remainder-by-zero, so assume the divisor is 1.
Craig Topperfde47232017-07-09 07:04:03 +00001000 if (match(Op1, m_One()) || Ty->isIntOrIntVectorTy(1))
Sanjay Patel0cb2ee92017-03-06 19:08:35 +00001001 return IsDiv ? Op0 : Constant::getNullValue(Ty);
1002
1003 return nullptr;
1004}
1005
Sanjay Patel472cc782016-01-11 22:14:42 +00001006/// Given operands for an SDiv or UDiv, see if we can fold the result.
1007/// If not, this returns null.
Anders Carlsson36c6d232011-02-05 18:33:43 +00001008static Value *SimplifyDiv(Instruction::BinaryOps Opcode, Value *Op0, Value *Op1,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001009 const SimplifyQuery &Q, unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +00001010 if (Constant *C = foldOrCommuteConstant(Opcode, Op0, Op1, Q))
1011 return C;
Duncan Sands771e82a2011-01-28 16:51:11 +00001012
Sanjay Patel0cb2ee92017-03-06 19:08:35 +00001013 if (Value *V = simplifyDivRem(Op0, Op1, true))
1014 return V;
1015
Duncan Sands65995fa2011-01-28 18:50:50 +00001016 bool isSigned = Opcode == Instruction::SDiv;
1017
Duncan Sands771e82a2011-01-28 16:51:11 +00001018 // (X * Y) / Y -> X if the multiplication does not overflow.
Craig Topper9f008862014-04-15 04:59:12 +00001019 Value *X = nullptr, *Y = nullptr;
Duncan Sands771e82a2011-01-28 16:51:11 +00001020 if (match(Op0, m_Mul(m_Value(X), m_Value(Y))) && (X == Op1 || Y == Op1)) {
1021 if (Y != Op1) std::swap(X, Y); // Ensure expression is (X * Y) / Y, Y = Op1
Duncan Sands7cb61e52011-10-27 19:16:21 +00001022 OverflowingBinaryOperator *Mul = cast<OverflowingBinaryOperator>(Op0);
Duncan Sands5747aba2011-02-02 20:52:00 +00001023 // If the Mul knows it does not overflow, then we are good to go.
1024 if ((isSigned && Mul->hasNoSignedWrap()) ||
1025 (!isSigned && Mul->hasNoUnsignedWrap()))
1026 return X;
Duncan Sands771e82a2011-01-28 16:51:11 +00001027 // If X has the form X = A / Y then X * Y cannot overflow.
1028 if (BinaryOperator *Div = dyn_cast<BinaryOperator>(X))
1029 if (Div->getOpcode() == Opcode && Div->getOperand(1) == Y)
1030 return X;
1031 }
1032
Duncan Sands65995fa2011-01-28 18:50:50 +00001033 // (X rem Y) / Y -> 0
1034 if ((isSigned && match(Op0, m_SRem(m_Value(), m_Specific(Op1)))) ||
1035 (!isSigned && match(Op0, m_URem(m_Value(), m_Specific(Op1)))))
1036 return Constant::getNullValue(Op0->getType());
1037
David Majnemercb9d5962014-10-11 10:20:01 +00001038 // (X /u C1) /u C2 -> 0 if C1 * C2 overflow
1039 ConstantInt *C1, *C2;
1040 if (!isSigned && match(Op0, m_UDiv(m_Value(X), m_ConstantInt(C1))) &&
1041 match(Op1, m_ConstantInt(C2))) {
1042 bool Overflow;
Craig Topper9b71a402017-04-19 21:09:45 +00001043 (void)C1->getValue().umul_ov(C2->getValue(), Overflow);
David Majnemercb9d5962014-10-11 10:20:01 +00001044 if (Overflow)
1045 return Constant::getNullValue(Op0->getType());
1046 }
1047
Duncan Sands65995fa2011-01-28 18:50:50 +00001048 // If the operation is with the result of a select instruction, check whether
1049 // operating on either branch of the select always yields the same value.
1050 if (isa<SelectInst>(Op0) || isa<SelectInst>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +00001051 if (Value *V = ThreadBinOpOverSelect(Opcode, Op0, Op1, Q, MaxRecurse))
Duncan Sands65995fa2011-01-28 18:50:50 +00001052 return V;
1053
1054 // If the operation is with the result of a phi instruction, check whether
1055 // operating on all incoming values of the phi always yields the same value.
1056 if (isa<PHINode>(Op0) || isa<PHINode>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +00001057 if (Value *V = ThreadBinOpOverPHI(Opcode, Op0, Op1, Q, MaxRecurse))
Duncan Sands65995fa2011-01-28 18:50:50 +00001058 return V;
1059
Craig Topper9f008862014-04-15 04:59:12 +00001060 return nullptr;
Duncan Sands771e82a2011-01-28 16:51:11 +00001061}
1062
Sanjay Patel472cc782016-01-11 22:14:42 +00001063/// Given operands for an SDiv, see if we can fold the result.
1064/// If not, this returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001065static Value *SimplifySDivInst(Value *Op0, Value *Op1, const SimplifyQuery &Q,
Duncan Sandsb8cee002012-03-13 11:42:19 +00001066 unsigned MaxRecurse) {
1067 if (Value *V = SimplifyDiv(Instruction::SDiv, Op0, Op1, Q, MaxRecurse))
Duncan Sands771e82a2011-01-28 16:51:11 +00001068 return V;
1069
Craig Topper9f008862014-04-15 04:59:12 +00001070 return nullptr;
Duncan Sands771e82a2011-01-28 16:51:11 +00001071}
1072
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001073Value *llvm::SimplifySDivInst(Value *Op0, Value *Op1, const SimplifyQuery &Q) {
1074 return ::SimplifySDivInst(Op0, Op1, Q, RecursionLimit);
1075}
1076
Sanjay Patel472cc782016-01-11 22:14:42 +00001077/// Given operands for a UDiv, see if we can fold the result.
1078/// If not, this returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001079static Value *SimplifyUDivInst(Value *Op0, Value *Op1, const SimplifyQuery &Q,
Duncan Sandsb8cee002012-03-13 11:42:19 +00001080 unsigned MaxRecurse) {
1081 if (Value *V = SimplifyDiv(Instruction::UDiv, Op0, Op1, Q, MaxRecurse))
Duncan Sands771e82a2011-01-28 16:51:11 +00001082 return V;
1083
David Majnemer63da0c22017-01-06 22:58:02 +00001084 // udiv %V, C -> 0 if %V < C
1085 if (MaxRecurse) {
1086 if (Constant *C = dyn_cast_or_null<Constant>(SimplifyICmpInst(
1087 ICmpInst::ICMP_ULT, Op0, Op1, Q, MaxRecurse - 1))) {
1088 if (C->isAllOnesValue()) {
1089 return Constant::getNullValue(Op0->getType());
1090 }
1091 }
1092 }
1093
Craig Topper9f008862014-04-15 04:59:12 +00001094 return nullptr;
Duncan Sands771e82a2011-01-28 16:51:11 +00001095}
1096
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001097Value *llvm::SimplifyUDivInst(Value *Op0, Value *Op1, const SimplifyQuery &Q) {
1098 return ::SimplifyUDivInst(Op0, Op1, Q, RecursionLimit);
1099}
1100
Mehdi Aminicd3ca6f2015-02-23 18:30:25 +00001101static Value *SimplifyFDivInst(Value *Op0, Value *Op1, FastMathFlags FMF,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001102 const SimplifyQuery &Q, unsigned) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +00001103 if (Constant *C = foldOrCommuteConstant(Instruction::FDiv, Op0, Op1, Q))
1104 return C;
1105
Frits van Bommelc2549662011-01-29 15:26:31 +00001106 // undef / X -> undef (the undef could be a snan).
Duncan Sandsa29ea9a2011-02-01 09:06:20 +00001107 if (match(Op0, m_Undef()))
Frits van Bommelc2549662011-01-29 15:26:31 +00001108 return Op0;
1109
1110 // X / undef -> undef
Duncan Sandsa29ea9a2011-02-01 09:06:20 +00001111 if (match(Op1, m_Undef()))
Frits van Bommelc2549662011-01-29 15:26:31 +00001112 return Op1;
1113
Zia Ansari394cef82016-12-08 23:27:40 +00001114 // X / 1.0 -> X
1115 if (match(Op1, m_FPOne()))
1116 return Op0;
1117
Mehdi Aminicd3ca6f2015-02-23 18:30:25 +00001118 // 0 / X -> 0
1119 // Requires that NaNs are off (X could be zero) and signed zeroes are
1120 // ignored (X could be positive or negative, so the output sign is unknown).
1121 if (FMF.noNaNs() && FMF.noSignedZeros() && match(Op0, m_AnyZero()))
1122 return Op0;
1123
Benjamin Kramer1ee59cb2015-06-16 14:57:29 +00001124 if (FMF.noNaNs()) {
1125 // X / X -> 1.0 is legal when NaNs are ignored.
Benjamin Kramer4f052462015-06-14 18:53:58 +00001126 if (Op0 == Op1)
1127 return ConstantFP::get(Op0->getType(), 1.0);
1128
1129 // -X / X -> -1.0 and
Benjamin Kramer1ee59cb2015-06-16 14:57:29 +00001130 // X / -X -> -1.0 are legal when NaNs are ignored.
Benjamin Kramer4f052462015-06-14 18:53:58 +00001131 // We can ignore signed zeros because +-0.0/+-0.0 is NaN and ignored.
1132 if ((BinaryOperator::isFNeg(Op0, /*IgnoreZeroSign=*/true) &&
1133 BinaryOperator::getFNegArgument(Op0) == Op1) ||
1134 (BinaryOperator::isFNeg(Op1, /*IgnoreZeroSign=*/true) &&
1135 BinaryOperator::getFNegArgument(Op1) == Op0))
1136 return ConstantFP::get(Op0->getType(), -1.0);
1137 }
1138
Craig Topper9f008862014-04-15 04:59:12 +00001139 return nullptr;
Frits van Bommelc2549662011-01-29 15:26:31 +00001140}
1141
Mehdi Aminicd3ca6f2015-02-23 18:30:25 +00001142Value *llvm::SimplifyFDivInst(Value *Op0, Value *Op1, FastMathFlags FMF,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001143 const SimplifyQuery &Q) {
1144 return ::SimplifyFDivInst(Op0, Op1, FMF, Q, RecursionLimit);
1145}
1146
Sanjay Patel472cc782016-01-11 22:14:42 +00001147/// Given operands for an SRem or URem, see if we can fold the result.
1148/// If not, this returns null.
Duncan Sandsa3e36992011-05-02 16:27:02 +00001149static Value *SimplifyRem(Instruction::BinaryOps Opcode, Value *Op0, Value *Op1,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001150 const SimplifyQuery &Q, unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +00001151 if (Constant *C = foldOrCommuteConstant(Opcode, Op0, Op1, Q))
1152 return C;
Duncan Sandsa3e36992011-05-02 16:27:02 +00001153
Sanjay Patel0cb2ee92017-03-06 19:08:35 +00001154 if (Value *V = simplifyDivRem(Op0, Op1, false))
1155 return V;
Duncan Sandsa3e36992011-05-02 16:27:02 +00001156
David Majnemerb435a422014-09-17 04:16:35 +00001157 // (X % Y) % Y -> X % Y
1158 if ((Opcode == Instruction::SRem &&
1159 match(Op0, m_SRem(m_Value(), m_Specific(Op1)))) ||
1160 (Opcode == Instruction::URem &&
1161 match(Op0, m_URem(m_Value(), m_Specific(Op1)))))
David Majnemerac717f02014-09-17 03:34:34 +00001162 return Op0;
David Majnemerac717f02014-09-17 03:34:34 +00001163
Duncan Sandsa3e36992011-05-02 16:27:02 +00001164 // If the operation is with the result of a select instruction, check whether
1165 // operating on either branch of the select always yields the same value.
1166 if (isa<SelectInst>(Op0) || isa<SelectInst>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +00001167 if (Value *V = ThreadBinOpOverSelect(Opcode, Op0, Op1, Q, MaxRecurse))
Duncan Sandsa3e36992011-05-02 16:27:02 +00001168 return V;
1169
1170 // If the operation is with the result of a phi instruction, check whether
1171 // operating on all incoming values of the phi always yields the same value.
1172 if (isa<PHINode>(Op0) || isa<PHINode>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +00001173 if (Value *V = ThreadBinOpOverPHI(Opcode, Op0, Op1, Q, MaxRecurse))
Duncan Sandsa3e36992011-05-02 16:27:02 +00001174 return V;
1175
Craig Topper9f008862014-04-15 04:59:12 +00001176 return nullptr;
Duncan Sandsa3e36992011-05-02 16:27:02 +00001177}
1178
Sanjay Patel472cc782016-01-11 22:14:42 +00001179/// Given operands for an SRem, see if we can fold the result.
1180/// If not, this returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001181static Value *SimplifySRemInst(Value *Op0, Value *Op1, const SimplifyQuery &Q,
Duncan Sandsb8cee002012-03-13 11:42:19 +00001182 unsigned MaxRecurse) {
1183 if (Value *V = SimplifyRem(Instruction::SRem, Op0, Op1, Q, MaxRecurse))
Duncan Sandsa3e36992011-05-02 16:27:02 +00001184 return V;
1185
Craig Topper9f008862014-04-15 04:59:12 +00001186 return nullptr;
Duncan Sandsa3e36992011-05-02 16:27:02 +00001187}
1188
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001189Value *llvm::SimplifySRemInst(Value *Op0, Value *Op1, const SimplifyQuery &Q) {
1190 return ::SimplifySRemInst(Op0, Op1, Q, RecursionLimit);
1191}
1192
Sanjay Patel472cc782016-01-11 22:14:42 +00001193/// Given operands for a URem, see if we can fold the result.
1194/// If not, this returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001195static Value *SimplifyURemInst(Value *Op0, Value *Op1, const SimplifyQuery &Q,
Chad Rosierc24b86f2011-12-01 03:08:23 +00001196 unsigned MaxRecurse) {
Duncan Sandsb8cee002012-03-13 11:42:19 +00001197 if (Value *V = SimplifyRem(Instruction::URem, Op0, Op1, Q, MaxRecurse))
Duncan Sandsa3e36992011-05-02 16:27:02 +00001198 return V;
1199
David Majnemer8c0e62f2017-01-06 21:23:51 +00001200 // urem %V, C -> %V if %V < C
1201 if (MaxRecurse) {
1202 if (Constant *C = dyn_cast_or_null<Constant>(SimplifyICmpInst(
1203 ICmpInst::ICMP_ULT, Op0, Op1, Q, MaxRecurse - 1))) {
1204 if (C->isAllOnesValue()) {
1205 return Op0;
1206 }
1207 }
1208 }
1209
Craig Topper9f008862014-04-15 04:59:12 +00001210 return nullptr;
Duncan Sandsa3e36992011-05-02 16:27:02 +00001211}
1212
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001213Value *llvm::SimplifyURemInst(Value *Op0, Value *Op1, const SimplifyQuery &Q) {
1214 return ::SimplifyURemInst(Op0, Op1, Q, RecursionLimit);
1215}
1216
Mehdi Aminicd3ca6f2015-02-23 18:30:25 +00001217static Value *SimplifyFRemInst(Value *Op0, Value *Op1, FastMathFlags FMF,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001218 const SimplifyQuery &Q, unsigned) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +00001219 if (Constant *C = foldOrCommuteConstant(Instruction::FRem, Op0, Op1, Q))
1220 return C;
1221
Duncan Sandsa3e36992011-05-02 16:27:02 +00001222 // undef % X -> undef (the undef could be a snan).
1223 if (match(Op0, m_Undef()))
1224 return Op0;
1225
1226 // X % undef -> undef
1227 if (match(Op1, m_Undef()))
1228 return Op1;
1229
Mehdi Aminicd3ca6f2015-02-23 18:30:25 +00001230 // 0 % X -> 0
1231 // Requires that NaNs are off (X could be zero) and signed zeroes are
1232 // ignored (X could be positive or negative, so the output sign is unknown).
1233 if (FMF.noNaNs() && FMF.noSignedZeros() && match(Op0, m_AnyZero()))
1234 return Op0;
1235
Craig Topper9f008862014-04-15 04:59:12 +00001236 return nullptr;
Duncan Sandsa3e36992011-05-02 16:27:02 +00001237}
1238
Mehdi Aminicd3ca6f2015-02-23 18:30:25 +00001239Value *llvm::SimplifyFRemInst(Value *Op0, Value *Op1, FastMathFlags FMF,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001240 const SimplifyQuery &Q) {
1241 return ::SimplifyFRemInst(Op0, Op1, FMF, Q, RecursionLimit);
1242}
1243
Sanjay Patel472cc782016-01-11 22:14:42 +00001244/// Returns true if a shift by \c Amount always yields undef.
Benjamin Kramer5e1794e2014-01-24 17:09:53 +00001245static bool isUndefShift(Value *Amount) {
1246 Constant *C = dyn_cast<Constant>(Amount);
1247 if (!C)
1248 return false;
1249
1250 // X shift by undef -> undef because it may shift by the bitwidth.
1251 if (isa<UndefValue>(C))
1252 return true;
1253
1254 // Shifting by the bitwidth or more is undefined.
1255 if (ConstantInt *CI = dyn_cast<ConstantInt>(C))
1256 if (CI->getValue().getLimitedValue() >=
1257 CI->getType()->getScalarSizeInBits())
1258 return true;
1259
1260 // If all lanes of a vector shift are undefined the whole shift is.
1261 if (isa<ConstantVector>(C) || isa<ConstantDataVector>(C)) {
1262 for (unsigned I = 0, E = C->getType()->getVectorNumElements(); I != E; ++I)
1263 if (!isUndefShift(C->getAggregateElement(I)))
1264 return false;
1265 return true;
1266 }
1267
1268 return false;
1269}
1270
Sanjay Patel472cc782016-01-11 22:14:42 +00001271/// Given operands for an Shl, LShr or AShr, see if we can fold the result.
1272/// If not, this returns null.
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +00001273static Value *SimplifyShift(Instruction::BinaryOps Opcode, Value *Op0,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001274 Value *Op1, const SimplifyQuery &Q, unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +00001275 if (Constant *C = foldOrCommuteConstant(Opcode, Op0, Op1, Q))
1276 return C;
Duncan Sands7f60dc12011-01-14 00:37:45 +00001277
Duncan Sands571fd9a2011-01-14 14:44:12 +00001278 // 0 shift by X -> 0
Duncan Sands7f60dc12011-01-14 00:37:45 +00001279 if (match(Op0, m_Zero()))
1280 return Op0;
1281
Duncan Sands571fd9a2011-01-14 14:44:12 +00001282 // X shift by 0 -> X
Duncan Sands7f60dc12011-01-14 00:37:45 +00001283 if (match(Op1, m_Zero()))
1284 return Op0;
1285
Benjamin Kramer5e1794e2014-01-24 17:09:53 +00001286 // Fold undefined shifts.
1287 if (isUndefShift(Op1))
1288 return UndefValue::get(Op0->getType());
Duncan Sands7f60dc12011-01-14 00:37:45 +00001289
Duncan Sands571fd9a2011-01-14 14:44:12 +00001290 // If the operation is with the result of a select instruction, check whether
1291 // operating on either branch of the select always yields the same value.
1292 if (isa<SelectInst>(Op0) || isa<SelectInst>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +00001293 if (Value *V = ThreadBinOpOverSelect(Opcode, Op0, Op1, Q, MaxRecurse))
Duncan Sands571fd9a2011-01-14 14:44:12 +00001294 return V;
1295
1296 // If the operation is with the result of a phi instruction, check whether
1297 // operating on all incoming values of the phi always yields the same value.
1298 if (isa<PHINode>(Op0) || isa<PHINode>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +00001299 if (Value *V = ThreadBinOpOverPHI(Opcode, Op0, Op1, Q, MaxRecurse))
Duncan Sands571fd9a2011-01-14 14:44:12 +00001300 return V;
1301
Sanjay Patel6786bc52016-05-10 20:46:54 +00001302 // If any bits in the shift amount make that value greater than or equal to
1303 // the number of bits in the type, the shift is undefined.
Craig Topper8205a1a2017-05-24 16:53:07 +00001304 KnownBits Known = computeKnownBits(Op1, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
1305 if (Known.One.getLimitedValue() >= Known.getBitWidth())
Sanjay Patel6786bc52016-05-10 20:46:54 +00001306 return UndefValue::get(Op0->getType());
1307
1308 // If all valid bits in the shift amount are known zero, the first operand is
1309 // unchanged.
Craig Topper8205a1a2017-05-24 16:53:07 +00001310 unsigned NumValidShiftBits = Log2_32_Ceil(Known.getBitWidth());
Craig Topper8df66c62017-05-12 17:20:30 +00001311 if (Known.countMinTrailingZeros() >= NumValidShiftBits)
Sanjay Patel6786bc52016-05-10 20:46:54 +00001312 return Op0;
1313
Craig Topper9f008862014-04-15 04:59:12 +00001314 return nullptr;
Duncan Sands571fd9a2011-01-14 14:44:12 +00001315}
1316
David Majnemerbf7550e2014-11-05 00:59:59 +00001317/// \brief Given operands for an Shl, LShr or AShr, see if we can
1318/// fold the result. If not, this returns null.
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +00001319static Value *SimplifyRightShift(Instruction::BinaryOps Opcode, Value *Op0,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001320 Value *Op1, bool isExact, const SimplifyQuery &Q,
David Majnemerbf7550e2014-11-05 00:59:59 +00001321 unsigned MaxRecurse) {
1322 if (Value *V = SimplifyShift(Opcode, Op0, Op1, Q, MaxRecurse))
1323 return V;
1324
1325 // X >> X -> 0
1326 if (Op0 == Op1)
1327 return Constant::getNullValue(Op0->getType());
1328
David Majnemer65c52ae2014-12-17 01:54:33 +00001329 // undef >> X -> 0
1330 // undef >> X -> undef (if it's exact)
1331 if (match(Op0, m_Undef()))
1332 return isExact ? Op0 : Constant::getNullValue(Op0->getType());
1333
David Majnemerbf7550e2014-11-05 00:59:59 +00001334 // The low bit cannot be shifted out of an exact shift if it is set.
1335 if (isExact) {
Craig Topper8205a1a2017-05-24 16:53:07 +00001336 KnownBits Op0Known = computeKnownBits(Op0, Q.DL, /*Depth=*/0, Q.AC, Q.CxtI, Q.DT);
Craig Topperb45eabc2017-04-26 16:39:58 +00001337 if (Op0Known.One[0])
David Majnemerbf7550e2014-11-05 00:59:59 +00001338 return Op0;
1339 }
1340
1341 return nullptr;
1342}
1343
Sanjay Patel472cc782016-01-11 22:14:42 +00001344/// Given operands for an Shl, see if we can fold the result.
1345/// If not, this returns null.
Chris Lattner9e4aa022011-02-09 17:15:04 +00001346static Value *SimplifyShlInst(Value *Op0, Value *Op1, bool isNSW, bool isNUW,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001347 const SimplifyQuery &Q, unsigned MaxRecurse) {
Duncan Sandsb8cee002012-03-13 11:42:19 +00001348 if (Value *V = SimplifyShift(Instruction::Shl, Op0, Op1, Q, MaxRecurse))
Duncan Sands571fd9a2011-01-14 14:44:12 +00001349 return V;
1350
1351 // undef << X -> 0
David Majnemer65c52ae2014-12-17 01:54:33 +00001352 // undef << X -> undef if (if it's NSW/NUW)
Duncan Sandsa29ea9a2011-02-01 09:06:20 +00001353 if (match(Op0, m_Undef()))
David Majnemer65c52ae2014-12-17 01:54:33 +00001354 return isNSW || isNUW ? Op0 : Constant::getNullValue(Op0->getType());
Duncan Sands571fd9a2011-01-14 14:44:12 +00001355
Chris Lattner9e4aa022011-02-09 17:15:04 +00001356 // (X >> A) << A -> X
1357 Value *X;
Benjamin Kramer9442cd02012-01-01 17:55:30 +00001358 if (match(Op0, m_Exact(m_Shr(m_Value(X), m_Specific(Op1)))))
Chris Lattner9e4aa022011-02-09 17:15:04 +00001359 return X;
Craig Topper9f008862014-04-15 04:59:12 +00001360 return nullptr;
Duncan Sands7f60dc12011-01-14 00:37:45 +00001361}
1362
Chris Lattner9e4aa022011-02-09 17:15:04 +00001363Value *llvm::SimplifyShlInst(Value *Op0, Value *Op1, bool isNSW, bool isNUW,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001364 const SimplifyQuery &Q) {
1365 return ::SimplifyShlInst(Op0, Op1, isNSW, isNUW, Q, RecursionLimit);
1366}
1367
Sanjay Patel472cc782016-01-11 22:14:42 +00001368/// Given operands for an LShr, see if we can fold the result.
1369/// If not, this returns null.
Chris Lattner9e4aa022011-02-09 17:15:04 +00001370static Value *SimplifyLShrInst(Value *Op0, Value *Op1, bool isExact,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001371 const SimplifyQuery &Q, unsigned MaxRecurse) {
David Majnemerbf7550e2014-11-05 00:59:59 +00001372 if (Value *V = SimplifyRightShift(Instruction::LShr, Op0, Op1, isExact, Q,
1373 MaxRecurse))
1374 return V;
David Majnemera80fed72013-07-09 22:01:22 +00001375
Chris Lattner9e4aa022011-02-09 17:15:04 +00001376 // (X << A) >> A -> X
1377 Value *X;
David Majnemer4f438372014-11-04 17:38:50 +00001378 if (match(Op0, m_NUWShl(m_Value(X), m_Specific(Op1))))
Chris Lattner9e4aa022011-02-09 17:15:04 +00001379 return X;
Duncan Sandsd114ab32011-02-13 17:15:40 +00001380
Craig Topper9f008862014-04-15 04:59:12 +00001381 return nullptr;
Duncan Sands7f60dc12011-01-14 00:37:45 +00001382}
1383
Chris Lattner9e4aa022011-02-09 17:15:04 +00001384Value *llvm::SimplifyLShrInst(Value *Op0, Value *Op1, bool isExact,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001385 const SimplifyQuery &Q) {
1386 return ::SimplifyLShrInst(Op0, Op1, isExact, Q, RecursionLimit);
1387}
1388
Sanjay Patel472cc782016-01-11 22:14:42 +00001389/// Given operands for an AShr, see if we can fold the result.
1390/// If not, this returns null.
Chris Lattner9e4aa022011-02-09 17:15:04 +00001391static Value *SimplifyAShrInst(Value *Op0, Value *Op1, bool isExact,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001392 const SimplifyQuery &Q, unsigned MaxRecurse) {
David Majnemerbf7550e2014-11-05 00:59:59 +00001393 if (Value *V = SimplifyRightShift(Instruction::AShr, Op0, Op1, isExact, Q,
1394 MaxRecurse))
Duncan Sands571fd9a2011-01-14 14:44:12 +00001395 return V;
Duncan Sands7f60dc12011-01-14 00:37:45 +00001396
1397 // all ones >>a X -> all ones
1398 if (match(Op0, m_AllOnes()))
1399 return Op0;
1400
Chris Lattner9e4aa022011-02-09 17:15:04 +00001401 // (X << A) >> A -> X
1402 Value *X;
David Majnemer2de97fc2014-11-04 17:47:13 +00001403 if (match(Op0, m_NSWShl(m_Value(X), m_Specific(Op1))))
Chris Lattner9e4aa022011-02-09 17:15:04 +00001404 return X;
Duncan Sandsd114ab32011-02-13 17:15:40 +00001405
Suyog Sarda68862412014-07-17 06:28:15 +00001406 // Arithmetic shifting an all-sign-bit value is a no-op.
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001407 unsigned NumSignBits = ComputeNumSignBits(Op0, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
Suyog Sarda68862412014-07-17 06:28:15 +00001408 if (NumSignBits == Op0->getType()->getScalarSizeInBits())
1409 return Op0;
1410
Craig Topper9f008862014-04-15 04:59:12 +00001411 return nullptr;
Duncan Sands7f60dc12011-01-14 00:37:45 +00001412}
1413
Chris Lattner9e4aa022011-02-09 17:15:04 +00001414Value *llvm::SimplifyAShrInst(Value *Op0, Value *Op1, bool isExact,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001415 const SimplifyQuery &Q) {
1416 return ::SimplifyAShrInst(Op0, Op1, isExact, Q, RecursionLimit);
1417}
1418
Craig Topper348314d2017-05-26 22:42:34 +00001419/// Commuted variants are assumed to be handled by calling this function again
1420/// with the parameters swapped.
David Majnemer1af36e52014-12-06 10:51:40 +00001421static Value *simplifyUnsignedRangeCheck(ICmpInst *ZeroICmp,
1422 ICmpInst *UnsignedICmp, bool IsAnd) {
1423 Value *X, *Y;
1424
1425 ICmpInst::Predicate EqPred;
David Majnemerd5b3aa42014-12-08 18:30:43 +00001426 if (!match(ZeroICmp, m_ICmp(EqPred, m_Value(Y), m_Zero())) ||
1427 !ICmpInst::isEquality(EqPred))
David Majnemer1af36e52014-12-06 10:51:40 +00001428 return nullptr;
1429
1430 ICmpInst::Predicate UnsignedPred;
1431 if (match(UnsignedICmp, m_ICmp(UnsignedPred, m_Value(X), m_Specific(Y))) &&
1432 ICmpInst::isUnsigned(UnsignedPred))
1433 ;
1434 else if (match(UnsignedICmp,
1435 m_ICmp(UnsignedPred, m_Value(Y), m_Specific(X))) &&
1436 ICmpInst::isUnsigned(UnsignedPred))
1437 UnsignedPred = ICmpInst::getSwappedPredicate(UnsignedPred);
1438 else
1439 return nullptr;
1440
1441 // X < Y && Y != 0 --> X < Y
1442 // X < Y || Y != 0 --> Y != 0
1443 if (UnsignedPred == ICmpInst::ICMP_ULT && EqPred == ICmpInst::ICMP_NE)
1444 return IsAnd ? UnsignedICmp : ZeroICmp;
1445
1446 // X >= Y || Y != 0 --> true
1447 // X >= Y || Y == 0 --> X >= Y
1448 if (UnsignedPred == ICmpInst::ICMP_UGE && !IsAnd) {
1449 if (EqPred == ICmpInst::ICMP_NE)
1450 return getTrue(UnsignedICmp->getType());
1451 return UnsignedICmp;
1452 }
1453
David Majnemerd5b3aa42014-12-08 18:30:43 +00001454 // X < Y && Y == 0 --> false
1455 if (UnsignedPred == ICmpInst::ICMP_ULT && EqPred == ICmpInst::ICMP_EQ &&
1456 IsAnd)
1457 return getFalse(UnsignedICmp->getType());
1458
David Majnemer1af36e52014-12-06 10:51:40 +00001459 return nullptr;
1460}
1461
Sanjay Patel9b1b2de2016-12-06 19:05:46 +00001462/// Commuted variants are assumed to be handled by calling this function again
1463/// with the parameters swapped.
1464static Value *simplifyAndOfICmpsWithSameOperands(ICmpInst *Op0, ICmpInst *Op1) {
1465 ICmpInst::Predicate Pred0, Pred1;
1466 Value *A ,*B;
Sanjay Patel53697752016-12-06 22:09:52 +00001467 if (!match(Op0, m_ICmp(Pred0, m_Value(A), m_Value(B))) ||
1468 !match(Op1, m_ICmp(Pred1, m_Specific(A), m_Specific(B))))
Sanjay Patel9b1b2de2016-12-06 19:05:46 +00001469 return nullptr;
1470
1471 // We have (icmp Pred0, A, B) & (icmp Pred1, A, B).
1472 // If Op1 is always implied true by Op0, then Op0 is a subset of Op1, and we
1473 // can eliminate Op1 from this 'and'.
1474 if (ICmpInst::isImpliedTrueByMatchingCmp(Pred0, Pred1))
1475 return Op0;
1476
1477 // Check for any combination of predicates that are guaranteed to be disjoint.
1478 if ((Pred0 == ICmpInst::getInversePredicate(Pred1)) ||
1479 (Pred0 == ICmpInst::ICMP_EQ && ICmpInst::isFalseWhenEqual(Pred1)) ||
1480 (Pred0 == ICmpInst::ICMP_SLT && Pred1 == ICmpInst::ICMP_SGT) ||
1481 (Pred0 == ICmpInst::ICMP_ULT && Pred1 == ICmpInst::ICMP_UGT))
1482 return getFalse(Op0->getType());
1483
1484 return nullptr;
1485}
1486
1487/// Commuted variants are assumed to be handled by calling this function again
1488/// with the parameters swapped.
Sanjay Patel142cb832017-05-04 18:19:17 +00001489static Value *simplifyOrOfICmpsWithSameOperands(ICmpInst *Op0, ICmpInst *Op1) {
1490 ICmpInst::Predicate Pred0, Pred1;
1491 Value *A ,*B;
1492 if (!match(Op0, m_ICmp(Pred0, m_Value(A), m_Value(B))) ||
1493 !match(Op1, m_ICmp(Pred1, m_Specific(A), m_Specific(B))))
1494 return nullptr;
1495
1496 // We have (icmp Pred0, A, B) | (icmp Pred1, A, B).
1497 // If Op1 is always implied true by Op0, then Op0 is a subset of Op1, and we
1498 // can eliminate Op0 from this 'or'.
1499 if (ICmpInst::isImpliedTrueByMatchingCmp(Pred0, Pred1))
1500 return Op1;
1501
1502 // Check for any combination of predicates that cover the entire range of
1503 // possibilities.
1504 if ((Pred0 == ICmpInst::getInversePredicate(Pred1)) ||
1505 (Pred0 == ICmpInst::ICMP_NE && ICmpInst::isTrueWhenEqual(Pred1)) ||
1506 (Pred0 == ICmpInst::ICMP_SLE && Pred1 == ICmpInst::ICMP_SGE) ||
1507 (Pred0 == ICmpInst::ICMP_ULE && Pred1 == ICmpInst::ICMP_UGE))
1508 return getTrue(Op0->getType());
1509
1510 return nullptr;
1511}
1512
Sanjay Patel599e65b2017-05-07 15:11:40 +00001513/// Test if a pair of compares with a shared operand and 2 constants has an
1514/// empty set intersection, full set union, or if one compare is a superset of
1515/// the other.
1516static Value *simplifyAndOrOfICmpsWithConstants(ICmpInst *Cmp0, ICmpInst *Cmp1,
1517 bool IsAnd) {
1518 // Look for this pattern: {and/or} (icmp X, C0), (icmp X, C1)).
1519 if (Cmp0->getOperand(0) != Cmp1->getOperand(0))
1520 return nullptr;
1521
1522 const APInt *C0, *C1;
1523 if (!match(Cmp0->getOperand(1), m_APInt(C0)) ||
1524 !match(Cmp1->getOperand(1), m_APInt(C1)))
1525 return nullptr;
1526
1527 auto Range0 = ConstantRange::makeExactICmpRegion(Cmp0->getPredicate(), *C0);
1528 auto Range1 = ConstantRange::makeExactICmpRegion(Cmp1->getPredicate(), *C1);
1529
Sanjay Patel67454472017-05-08 16:35:02 +00001530 // For and-of-compares, check if the intersection is empty:
Sanjay Patel599e65b2017-05-07 15:11:40 +00001531 // (icmp X, C0) && (icmp X, C1) --> empty set --> false
1532 if (IsAnd && Range0.intersectWith(Range1).isEmptySet())
1533 return getFalse(Cmp0->getType());
1534
1535 // For or-of-compares, check if the union is full:
1536 // (icmp X, C0) || (icmp X, C1) --> full set --> true
1537 if (!IsAnd && Range0.unionWith(Range1).isFullSet())
1538 return getTrue(Cmp0->getType());
1539
1540 // Is one range a superset of the other?
1541 // If this is and-of-compares, take the smaller set:
1542 // (icmp sgt X, 4) && (icmp sgt X, 42) --> icmp sgt X, 42
1543 // If this is or-of-compares, take the larger set:
1544 // (icmp sgt X, 4) || (icmp sgt X, 42) --> icmp sgt X, 4
1545 if (Range0.contains(Range1))
1546 return IsAnd ? Cmp1 : Cmp0;
1547 if (Range1.contains(Range0))
1548 return IsAnd ? Cmp0 : Cmp1;
1549
1550 return nullptr;
1551}
1552
Craig Topper348314d2017-05-26 22:42:34 +00001553static Value *simplifyAndOfICmpsWithAdd(ICmpInst *Op0, ICmpInst *Op1) {
Sanjay Patel599e65b2017-05-07 15:11:40 +00001554 // (icmp (add V, C0), C1) & (icmp V, C0)
Sanjay Patelb2332e12016-09-20 14:36:14 +00001555 ICmpInst::Predicate Pred0, Pred1;
Sanjay Patel9ad8fb62016-06-20 20:59:59 +00001556 const APInt *C0, *C1;
Sanjay Patelb2332e12016-09-20 14:36:14 +00001557 Value *V;
Sanjay Patel1b312ad2016-09-28 13:53:13 +00001558 if (!match(Op0, m_ICmp(Pred0, m_Add(m_Value(V), m_APInt(C0)), m_APInt(C1))))
Sanjay Patelf8ee0e02016-06-19 17:20:27 +00001559 return nullptr;
David Majnemera315bd82014-09-15 08:15:28 +00001560
Sanjay Patel1b312ad2016-09-28 13:53:13 +00001561 if (!match(Op1, m_ICmp(Pred1, m_Specific(V), m_Value())))
David Majnemera315bd82014-09-15 08:15:28 +00001562 return nullptr;
1563
David Majnemera315bd82014-09-15 08:15:28 +00001564 auto *AddInst = cast<BinaryOperator>(Op0->getOperand(0));
Sanjay Patel1b312ad2016-09-28 13:53:13 +00001565 if (AddInst->getOperand(1) != Op1->getOperand(1))
1566 return nullptr;
1567
Craig Topper9bce1ad2017-05-26 19:04:02 +00001568 Type *ITy = Op0->getType();
David Majnemera315bd82014-09-15 08:15:28 +00001569 bool isNSW = AddInst->hasNoSignedWrap();
1570 bool isNUW = AddInst->hasNoUnsignedWrap();
1571
Sanjay Patel1b312ad2016-09-28 13:53:13 +00001572 const APInt Delta = *C1 - *C0;
1573 if (C0->isStrictlyPositive()) {
David Majnemera315bd82014-09-15 08:15:28 +00001574 if (Delta == 2) {
1575 if (Pred0 == ICmpInst::ICMP_ULT && Pred1 == ICmpInst::ICMP_SGT)
1576 return getFalse(ITy);
1577 if (Pred0 == ICmpInst::ICMP_SLT && Pred1 == ICmpInst::ICMP_SGT && isNSW)
1578 return getFalse(ITy);
1579 }
1580 if (Delta == 1) {
1581 if (Pred0 == ICmpInst::ICMP_ULE && Pred1 == ICmpInst::ICMP_SGT)
1582 return getFalse(ITy);
1583 if (Pred0 == ICmpInst::ICMP_SLE && Pred1 == ICmpInst::ICMP_SGT && isNSW)
1584 return getFalse(ITy);
1585 }
1586 }
Sanjay Patel1b312ad2016-09-28 13:53:13 +00001587 if (C0->getBoolValue() && isNUW) {
David Majnemera315bd82014-09-15 08:15:28 +00001588 if (Delta == 2)
1589 if (Pred0 == ICmpInst::ICMP_ULT && Pred1 == ICmpInst::ICMP_UGT)
1590 return getFalse(ITy);
1591 if (Delta == 1)
1592 if (Pred0 == ICmpInst::ICMP_ULE && Pred1 == ICmpInst::ICMP_UGT)
1593 return getFalse(ITy);
1594 }
1595
1596 return nullptr;
1597}
1598
Craig Topper348314d2017-05-26 22:42:34 +00001599static Value *simplifyAndOfICmps(ICmpInst *Op0, ICmpInst *Op1) {
1600 if (Value *X = simplifyUnsignedRangeCheck(Op0, Op1, /*IsAnd=*/true))
1601 return X;
1602 if (Value *X = simplifyUnsignedRangeCheck(Op1, Op0, /*IsAnd=*/true))
Sanjay Patel142cb832017-05-04 18:19:17 +00001603 return X;
1604
Craig Topper348314d2017-05-26 22:42:34 +00001605 if (Value *X = simplifyAndOfICmpsWithSameOperands(Op0, Op1))
1606 return X;
1607 if (Value *X = simplifyAndOfICmpsWithSameOperands(Op1, Op0))
Sanjay Patel142cb832017-05-04 18:19:17 +00001608 return X;
1609
Craig Topper348314d2017-05-26 22:42:34 +00001610 if (Value *X = simplifyAndOrOfICmpsWithConstants(Op0, Op1, true))
Sanjay Patel599e65b2017-05-07 15:11:40 +00001611 return X;
1612
Craig Topper348314d2017-05-26 22:42:34 +00001613 if (Value *X = simplifyAndOfICmpsWithAdd(Op0, Op1))
1614 return X;
1615 if (Value *X = simplifyAndOfICmpsWithAdd(Op1, Op0))
1616 return X;
1617
1618 return nullptr;
1619}
1620
1621static Value *simplifyOrOfICmpsWithAdd(ICmpInst *Op0, ICmpInst *Op1) {
Sanjay Patel142cb832017-05-04 18:19:17 +00001622 // (icmp (add V, C0), C1) | (icmp V, C0)
1623 ICmpInst::Predicate Pred0, Pred1;
1624 const APInt *C0, *C1;
1625 Value *V;
1626 if (!match(Op0, m_ICmp(Pred0, m_Add(m_Value(V), m_APInt(C0)), m_APInt(C1))))
1627 return nullptr;
1628
1629 if (!match(Op1, m_ICmp(Pred1, m_Specific(V), m_Value())))
1630 return nullptr;
1631
1632 auto *AddInst = cast<BinaryOperator>(Op0->getOperand(0));
1633 if (AddInst->getOperand(1) != Op1->getOperand(1))
1634 return nullptr;
1635
1636 Type *ITy = Op0->getType();
1637 bool isNSW = AddInst->hasNoSignedWrap();
1638 bool isNUW = AddInst->hasNoUnsignedWrap();
1639
1640 const APInt Delta = *C1 - *C0;
1641 if (C0->isStrictlyPositive()) {
1642 if (Delta == 2) {
1643 if (Pred0 == ICmpInst::ICMP_UGE && Pred1 == ICmpInst::ICMP_SLE)
1644 return getTrue(ITy);
1645 if (Pred0 == ICmpInst::ICMP_SGE && Pred1 == ICmpInst::ICMP_SLE && isNSW)
1646 return getTrue(ITy);
1647 }
1648 if (Delta == 1) {
1649 if (Pred0 == ICmpInst::ICMP_UGT && Pred1 == ICmpInst::ICMP_SLE)
1650 return getTrue(ITy);
1651 if (Pred0 == ICmpInst::ICMP_SGT && Pred1 == ICmpInst::ICMP_SLE && isNSW)
1652 return getTrue(ITy);
1653 }
1654 }
1655 if (C0->getBoolValue() && isNUW) {
1656 if (Delta == 2)
1657 if (Pred0 == ICmpInst::ICMP_UGE && Pred1 == ICmpInst::ICMP_ULE)
1658 return getTrue(ITy);
1659 if (Delta == 1)
1660 if (Pred0 == ICmpInst::ICMP_UGT && Pred1 == ICmpInst::ICMP_ULE)
1661 return getTrue(ITy);
1662 }
1663
1664 return nullptr;
1665}
1666
Craig Topper348314d2017-05-26 22:42:34 +00001667static Value *simplifyOrOfICmps(ICmpInst *Op0, ICmpInst *Op1) {
1668 if (Value *X = simplifyUnsignedRangeCheck(Op0, Op1, /*IsAnd=*/false))
1669 return X;
1670 if (Value *X = simplifyUnsignedRangeCheck(Op1, Op0, /*IsAnd=*/false))
1671 return X;
Sanjay Patele42b4d52017-05-04 19:51:34 +00001672
Craig Topper348314d2017-05-26 22:42:34 +00001673 if (Value *X = simplifyOrOfICmpsWithSameOperands(Op0, Op1))
1674 return X;
1675 if (Value *X = simplifyOrOfICmpsWithSameOperands(Op1, Op0))
1676 return X;
1677
1678 if (Value *X = simplifyAndOrOfICmpsWithConstants(Op0, Op1, false))
1679 return X;
1680
1681 if (Value *X = simplifyOrOfICmpsWithAdd(Op0, Op1))
1682 return X;
1683 if (Value *X = simplifyOrOfICmpsWithAdd(Op1, Op0))
1684 return X;
Sanjay Patele42b4d52017-05-04 19:51:34 +00001685
1686 return nullptr;
1687}
1688
1689static Value *simplifyAndOrOfICmps(Value *Op0, Value *Op1, bool IsAnd) {
1690 // Look through casts of the 'and' operands to find compares.
1691 auto *Cast0 = dyn_cast<CastInst>(Op0);
1692 auto *Cast1 = dyn_cast<CastInst>(Op1);
1693 if (Cast0 && Cast1 && Cast0->getOpcode() == Cast1->getOpcode() &&
1694 Cast0->getSrcTy() == Cast1->getSrcTy()) {
1695 Op0 = Cast0->getOperand(0);
1696 Op1 = Cast1->getOperand(0);
1697 }
1698
1699 auto *Cmp0 = dyn_cast<ICmpInst>(Op0);
1700 auto *Cmp1 = dyn_cast<ICmpInst>(Op1);
1701 if (!Cmp0 || !Cmp1)
1702 return nullptr;
1703
Craig Topper348314d2017-05-26 22:42:34 +00001704 Value *V =
1705 IsAnd ? simplifyAndOfICmps(Cmp0, Cmp1) : simplifyOrOfICmps(Cmp0, Cmp1);
1706 if (!V)
1707 return nullptr;
1708 if (!Cast0)
Sanjay Patele42b4d52017-05-04 19:51:34 +00001709 return V;
Craig Topper348314d2017-05-26 22:42:34 +00001710
1711 // If we looked through casts, we can only handle a constant simplification
1712 // because we are not allowed to create a cast instruction here.
1713 if (auto *C = dyn_cast<Constant>(V))
1714 return ConstantExpr::getCast(Cast0->getOpcode(), C, Cast0->getType());
Sanjay Patele42b4d52017-05-04 19:51:34 +00001715
1716 return nullptr;
1717}
1718
Sanjay Patel472cc782016-01-11 22:14:42 +00001719/// Given operands for an And, see if we can fold the result.
1720/// If not, this returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001721static Value *SimplifyAndInst(Value *Op0, Value *Op1, const SimplifyQuery &Q,
Chad Rosierc24b86f2011-12-01 03:08:23 +00001722 unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +00001723 if (Constant *C = foldOrCommuteConstant(Instruction::And, Op0, Op1, Q))
1724 return C;
Duncan Sands7e800d62010-11-14 11:23:23 +00001725
Chris Lattnera71e9d62009-11-10 00:55:12 +00001726 // X & undef -> 0
Duncan Sandsa29ea9a2011-02-01 09:06:20 +00001727 if (match(Op1, m_Undef()))
Chris Lattnera71e9d62009-11-10 00:55:12 +00001728 return Constant::getNullValue(Op0->getType());
Duncan Sands7e800d62010-11-14 11:23:23 +00001729
Chris Lattnera71e9d62009-11-10 00:55:12 +00001730 // X & X = X
Duncan Sands772749a2011-01-01 20:08:02 +00001731 if (Op0 == Op1)
Chris Lattnera71e9d62009-11-10 00:55:12 +00001732 return Op0;
Duncan Sands7e800d62010-11-14 11:23:23 +00001733
Duncan Sandsc89ac072010-11-17 18:52:15 +00001734 // X & 0 = 0
1735 if (match(Op1, m_Zero()))
Chris Lattnera71e9d62009-11-10 00:55:12 +00001736 return Op1;
Duncan Sands7e800d62010-11-14 11:23:23 +00001737
Duncan Sandsc89ac072010-11-17 18:52:15 +00001738 // X & -1 = X
1739 if (match(Op1, m_AllOnes()))
1740 return Op0;
Duncan Sands7e800d62010-11-14 11:23:23 +00001741
Chris Lattnera71e9d62009-11-10 00:55:12 +00001742 // A & ~A = ~A & A = 0
Chris Lattner9e4aa022011-02-09 17:15:04 +00001743 if (match(Op0, m_Not(m_Specific(Op1))) ||
1744 match(Op1, m_Not(m_Specific(Op0))))
Chris Lattnera71e9d62009-11-10 00:55:12 +00001745 return Constant::getNullValue(Op0->getType());
Duncan Sands7e800d62010-11-14 11:23:23 +00001746
Chris Lattnera71e9d62009-11-10 00:55:12 +00001747 // (A | ?) & A = A
Craig Topperdad7d8d2017-07-16 06:57:41 +00001748 if (match(Op0, m_c_Or(m_Specific(Op1), m_Value())))
Chris Lattnera71e9d62009-11-10 00:55:12 +00001749 return Op1;
Duncan Sands7e800d62010-11-14 11:23:23 +00001750
Chris Lattnera71e9d62009-11-10 00:55:12 +00001751 // A & (A | ?) = A
Craig Topperdad7d8d2017-07-16 06:57:41 +00001752 if (match(Op1, m_c_Or(m_Specific(Op0), m_Value())))
Chris Lattnera71e9d62009-11-10 00:55:12 +00001753 return Op0;
Duncan Sands7e800d62010-11-14 11:23:23 +00001754
Sanjay Patel877364f2017-05-16 21:51:04 +00001755 // A mask that only clears known zeros of a shifted value is a no-op.
1756 Value *X;
1757 const APInt *Mask;
1758 const APInt *ShAmt;
1759 if (match(Op1, m_APInt(Mask))) {
1760 // If all bits in the inverted and shifted mask are clear:
1761 // and (shl X, ShAmt), Mask --> shl X, ShAmt
1762 if (match(Op0, m_Shl(m_Value(X), m_APInt(ShAmt))) &&
1763 (~(*Mask)).lshr(*ShAmt).isNullValue())
1764 return Op0;
1765
1766 // If all bits in the inverted and shifted mask are clear:
1767 // and (lshr X, ShAmt), Mask --> lshr X, ShAmt
1768 if (match(Op0, m_LShr(m_Value(X), m_APInt(ShAmt))) &&
1769 (~(*Mask)).shl(*ShAmt).isNullValue())
1770 return Op0;
1771 }
1772
Duncan Sandsba286d72011-10-26 20:55:21 +00001773 // A & (-A) = A if A is a power of two or zero.
1774 if (match(Op0, m_Neg(m_Specific(Op1))) ||
1775 match(Op1, m_Neg(m_Specific(Op0)))) {
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001776 if (isKnownToBeAPowerOfTwo(Op0, Q.DL, /*OrZero*/ true, 0, Q.AC, Q.CxtI,
1777 Q.DT))
Duncan Sandsba286d72011-10-26 20:55:21 +00001778 return Op0;
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001779 if (isKnownToBeAPowerOfTwo(Op1, Q.DL, /*OrZero*/ true, 0, Q.AC, Q.CxtI,
1780 Q.DT))
Duncan Sandsba286d72011-10-26 20:55:21 +00001781 return Op1;
1782 }
1783
Sanjay Patele42b4d52017-05-04 19:51:34 +00001784 if (Value *V = simplifyAndOrOfICmps(Op0, Op1, true))
1785 return V;
Sanjay Patel9ad8fb62016-06-20 20:59:59 +00001786
Duncan Sands6c7a52c2010-12-21 08:49:00 +00001787 // Try some generic simplifications for associative operations.
Duncan Sandsb8cee002012-03-13 11:42:19 +00001788 if (Value *V = SimplifyAssociativeBinOp(Instruction::And, Op0, Op1, Q,
1789 MaxRecurse))
Duncan Sands6c7a52c2010-12-21 08:49:00 +00001790 return V;
Benjamin Kramer8c35fb02010-09-10 22:39:55 +00001791
Duncan Sandsee3ec6e2010-12-21 13:32:22 +00001792 // And distributes over Or. Try some generic simplifications based on this.
1793 if (Value *V = ExpandBinOp(Instruction::And, Op0, Op1, Instruction::Or,
Duncan Sandsb8cee002012-03-13 11:42:19 +00001794 Q, MaxRecurse))
Duncan Sandsee3ec6e2010-12-21 13:32:22 +00001795 return V;
1796
1797 // And distributes over Xor. Try some generic simplifications based on this.
1798 if (Value *V = ExpandBinOp(Instruction::And, Op0, Op1, Instruction::Xor,
Duncan Sandsb8cee002012-03-13 11:42:19 +00001799 Q, MaxRecurse))
Duncan Sandsee3ec6e2010-12-21 13:32:22 +00001800 return V;
1801
Duncan Sandsb0579e92010-11-10 13:00:08 +00001802 // If the operation is with the result of a select instruction, check whether
1803 // operating on either branch of the select always yields the same value.
Duncan Sandsf64e6902010-12-21 09:09:15 +00001804 if (isa<SelectInst>(Op0) || isa<SelectInst>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +00001805 if (Value *V = ThreadBinOpOverSelect(Instruction::And, Op0, Op1, Q,
1806 MaxRecurse))
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00001807 return V;
1808
1809 // If the operation is with the result of a phi instruction, check whether
1810 // operating on all incoming values of the phi always yields the same value.
Duncan Sandsf64e6902010-12-21 09:09:15 +00001811 if (isa<PHINode>(Op0) || isa<PHINode>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +00001812 if (Value *V = ThreadBinOpOverPHI(Instruction::And, Op0, Op1, Q,
Duncan Sandsf64e6902010-12-21 09:09:15 +00001813 MaxRecurse))
Duncan Sandsb0579e92010-11-10 13:00:08 +00001814 return V;
1815
Craig Topper9f008862014-04-15 04:59:12 +00001816 return nullptr;
Chris Lattner084a1b52009-11-09 22:57:59 +00001817}
1818
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001819Value *llvm::SimplifyAndInst(Value *Op0, Value *Op1, const SimplifyQuery &Q) {
1820 return ::SimplifyAndInst(Op0, Op1, Q, RecursionLimit);
1821}
1822
Sanjay Patel472cc782016-01-11 22:14:42 +00001823/// Given operands for an Or, see if we can fold the result.
1824/// If not, this returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001825static Value *SimplifyOrInst(Value *Op0, Value *Op1, const SimplifyQuery &Q,
Duncan Sandsb8cee002012-03-13 11:42:19 +00001826 unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +00001827 if (Constant *C = foldOrCommuteConstant(Instruction::Or, Op0, Op1, Q))
1828 return C;
Duncan Sands7e800d62010-11-14 11:23:23 +00001829
Chris Lattnera71e9d62009-11-10 00:55:12 +00001830 // X | undef -> -1
Duncan Sandsa29ea9a2011-02-01 09:06:20 +00001831 if (match(Op1, m_Undef()))
Chris Lattnera71e9d62009-11-10 00:55:12 +00001832 return Constant::getAllOnesValue(Op0->getType());
Duncan Sands7e800d62010-11-14 11:23:23 +00001833
Chris Lattnera71e9d62009-11-10 00:55:12 +00001834 // X | X = X
Duncan Sands772749a2011-01-01 20:08:02 +00001835 if (Op0 == Op1)
Chris Lattnera71e9d62009-11-10 00:55:12 +00001836 return Op0;
1837
Duncan Sandsc89ac072010-11-17 18:52:15 +00001838 // X | 0 = X
1839 if (match(Op1, m_Zero()))
Chris Lattnera71e9d62009-11-10 00:55:12 +00001840 return Op0;
Duncan Sands7e800d62010-11-14 11:23:23 +00001841
Duncan Sandsc89ac072010-11-17 18:52:15 +00001842 // X | -1 = -1
1843 if (match(Op1, m_AllOnes()))
1844 return Op1;
Duncan Sands7e800d62010-11-14 11:23:23 +00001845
Chris Lattnera71e9d62009-11-10 00:55:12 +00001846 // A | ~A = ~A | A = -1
Chris Lattner9e4aa022011-02-09 17:15:04 +00001847 if (match(Op0, m_Not(m_Specific(Op1))) ||
1848 match(Op1, m_Not(m_Specific(Op0))))
Chris Lattnera71e9d62009-11-10 00:55:12 +00001849 return Constant::getAllOnesValue(Op0->getType());
Duncan Sands7e800d62010-11-14 11:23:23 +00001850
Chris Lattnera71e9d62009-11-10 00:55:12 +00001851 // (A & ?) | A = A
Craig Topperdad7d8d2017-07-16 06:57:41 +00001852 if (match(Op0, m_c_And(m_Specific(Op1), m_Value())))
Chris Lattnera71e9d62009-11-10 00:55:12 +00001853 return Op1;
Duncan Sands7e800d62010-11-14 11:23:23 +00001854
Chris Lattnera71e9d62009-11-10 00:55:12 +00001855 // A | (A & ?) = A
Craig Topperdad7d8d2017-07-16 06:57:41 +00001856 if (match(Op1, m_c_And(m_Specific(Op0), m_Value())))
Chris Lattnera71e9d62009-11-10 00:55:12 +00001857 return Op0;
Duncan Sands7e800d62010-11-14 11:23:23 +00001858
Benjamin Kramer5b7a4e02011-02-20 15:20:01 +00001859 // ~(A & ?) | A = -1
Craig Topperdad7d8d2017-07-16 06:57:41 +00001860 if (match(Op0, m_Not(m_c_And(m_Specific(Op1), m_Value()))))
Benjamin Kramer5b7a4e02011-02-20 15:20:01 +00001861 return Constant::getAllOnesValue(Op1->getType());
1862
1863 // A | ~(A & ?) = -1
Craig Topperdad7d8d2017-07-16 06:57:41 +00001864 if (match(Op1, m_Not(m_c_And(m_Specific(Op1), m_Value()))))
Benjamin Kramer5b7a4e02011-02-20 15:20:01 +00001865 return Constant::getAllOnesValue(Op0->getType());
1866
Craig Topperdad7d8d2017-07-16 06:57:41 +00001867 Value *A, *B;
Sanjay Patel08892252017-04-24 18:24:36 +00001868 // (A & ~B) | (A ^ B) -> (A ^ B)
1869 // (~B & A) | (A ^ B) -> (A ^ B)
Craig Topper0b650d32017-04-25 17:01:32 +00001870 // (A & ~B) | (B ^ A) -> (B ^ A)
1871 // (~B & A) | (B ^ A) -> (B ^ A)
1872 if (match(Op1, m_Xor(m_Value(A), m_Value(B))) &&
1873 (match(Op0, m_c_And(m_Specific(A), m_Not(m_Specific(B)))) ||
1874 match(Op0, m_c_And(m_Not(m_Specific(A)), m_Specific(B)))))
Sanjay Patel08892252017-04-24 18:24:36 +00001875 return Op1;
1876
1877 // Commute the 'or' operands.
1878 // (A ^ B) | (A & ~B) -> (A ^ B)
1879 // (A ^ B) | (~B & A) -> (A ^ B)
Craig Topper0b650d32017-04-25 17:01:32 +00001880 // (B ^ A) | (A & ~B) -> (B ^ A)
1881 // (B ^ A) | (~B & A) -> (B ^ A)
1882 if (match(Op0, m_Xor(m_Value(A), m_Value(B))) &&
1883 (match(Op1, m_c_And(m_Specific(A), m_Not(m_Specific(B)))) ||
1884 match(Op1, m_c_And(m_Not(m_Specific(A)), m_Specific(B)))))
Sanjay Patel08892252017-04-24 18:24:36 +00001885 return Op0;
1886
Craig Topper479daaf2017-05-14 07:54:43 +00001887 // (A & B) | (~A ^ B) -> (~A ^ B)
1888 // (B & A) | (~A ^ B) -> (~A ^ B)
1889 // (A & B) | (B ^ ~A) -> (B ^ ~A)
1890 // (B & A) | (B ^ ~A) -> (B ^ ~A)
1891 if (match(Op0, m_And(m_Value(A), m_Value(B))) &&
1892 (match(Op1, m_c_Xor(m_Specific(A), m_Not(m_Specific(B)))) ||
1893 match(Op1, m_c_Xor(m_Not(m_Specific(A)), m_Specific(B)))))
1894 return Op1;
1895
1896 // (~A ^ B) | (A & B) -> (~A ^ B)
1897 // (~A ^ B) | (B & A) -> (~A ^ B)
1898 // (B ^ ~A) | (A & B) -> (B ^ ~A)
1899 // (B ^ ~A) | (B & A) -> (B ^ ~A)
1900 if (match(Op1, m_And(m_Value(A), m_Value(B))) &&
1901 (match(Op0, m_c_Xor(m_Specific(A), m_Not(m_Specific(B)))) ||
1902 match(Op0, m_c_Xor(m_Not(m_Specific(A)), m_Specific(B)))))
1903 return Op0;
1904
Sanjay Patele42b4d52017-05-04 19:51:34 +00001905 if (Value *V = simplifyAndOrOfICmps(Op0, Op1, false))
1906 return V;
David Majnemera315bd82014-09-15 08:15:28 +00001907
Duncan Sands6c7a52c2010-12-21 08:49:00 +00001908 // Try some generic simplifications for associative operations.
Duncan Sandsb8cee002012-03-13 11:42:19 +00001909 if (Value *V = SimplifyAssociativeBinOp(Instruction::Or, Op0, Op1, Q,
1910 MaxRecurse))
Duncan Sands6c7a52c2010-12-21 08:49:00 +00001911 return V;
Benjamin Kramer8c35fb02010-09-10 22:39:55 +00001912
Duncan Sandsee3ec6e2010-12-21 13:32:22 +00001913 // Or distributes over And. Try some generic simplifications based on this.
Duncan Sandsb8cee002012-03-13 11:42:19 +00001914 if (Value *V = ExpandBinOp(Instruction::Or, Op0, Op1, Instruction::And, Q,
1915 MaxRecurse))
Duncan Sandsee3ec6e2010-12-21 13:32:22 +00001916 return V;
1917
Duncan Sandsb0579e92010-11-10 13:00:08 +00001918 // If the operation is with the result of a select instruction, check whether
1919 // operating on either branch of the select always yields the same value.
Duncan Sandsf64e6902010-12-21 09:09:15 +00001920 if (isa<SelectInst>(Op0) || isa<SelectInst>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +00001921 if (Value *V = ThreadBinOpOverSelect(Instruction::Or, Op0, Op1, Q,
Duncan Sandsf64e6902010-12-21 09:09:15 +00001922 MaxRecurse))
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00001923 return V;
1924
Craig Topper50500d52017-05-26 05:16:20 +00001925 // (A & C1)|(B & C2)
Craig Topper1da22c32017-05-26 19:03:53 +00001926 const APInt *C1, *C2;
1927 if (match(Op0, m_And(m_Value(A), m_APInt(C1))) &&
1928 match(Op1, m_And(m_Value(B), m_APInt(C2)))) {
1929 if (*C1 == ~*C2) {
Nick Lewycky8561a492014-06-19 03:51:46 +00001930 // (A & C1)|(B & C2)
1931 // If we have: ((V + N) & C1) | (V & C2)
1932 // .. and C2 = ~C1 and C2 is 0+1+ and (N & C2) == 0
1933 // replace with V+N.
Craig Topperc8bebb12017-05-26 19:03:59 +00001934 Value *N;
Craig Topper1da22c32017-05-26 19:03:53 +00001935 if (C2->isMask() && // C2 == 0+1+
Craig Topperc8bebb12017-05-26 19:03:59 +00001936 match(A, m_c_Add(m_Specific(B), m_Value(N)))) {
Nick Lewycky8561a492014-06-19 03:51:46 +00001937 // Add commutes, try both ways.
Craig Topperc8bebb12017-05-26 19:03:59 +00001938 if (MaskedValueIsZero(N, *C2, Q.DL, 0, Q.AC, Q.CxtI, Q.DT))
Nick Lewycky8561a492014-06-19 03:51:46 +00001939 return A;
1940 }
1941 // Or commutes, try both ways.
Craig Topper1da22c32017-05-26 19:03:53 +00001942 if (C1->isMask() &&
Craig Topperc8bebb12017-05-26 19:03:59 +00001943 match(B, m_c_Add(m_Specific(A), m_Value(N)))) {
Nick Lewycky8561a492014-06-19 03:51:46 +00001944 // Add commutes, try both ways.
Craig Topperc8bebb12017-05-26 19:03:59 +00001945 if (MaskedValueIsZero(N, *C1, Q.DL, 0, Q.AC, Q.CxtI, Q.DT))
Nick Lewycky8561a492014-06-19 03:51:46 +00001946 return B;
1947 }
1948 }
1949 }
1950
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00001951 // If the operation is with the result of a phi instruction, check whether
1952 // operating on all incoming values of the phi always yields the same value.
Duncan Sandsf64e6902010-12-21 09:09:15 +00001953 if (isa<PHINode>(Op0) || isa<PHINode>(Op1))
Duncan Sandsb8cee002012-03-13 11:42:19 +00001954 if (Value *V = ThreadBinOpOverPHI(Instruction::Or, Op0, Op1, Q, MaxRecurse))
Duncan Sandsb0579e92010-11-10 13:00:08 +00001955 return V;
1956
Craig Topper9f008862014-04-15 04:59:12 +00001957 return nullptr;
Chris Lattnera71e9d62009-11-10 00:55:12 +00001958}
1959
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001960Value *llvm::SimplifyOrInst(Value *Op0, Value *Op1, const SimplifyQuery &Q) {
1961 return ::SimplifyOrInst(Op0, Op1, Q, RecursionLimit);
1962}
1963
Sanjay Patel472cc782016-01-11 22:14:42 +00001964/// Given operands for a Xor, see if we can fold the result.
1965/// If not, this returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00001966static Value *SimplifyXorInst(Value *Op0, Value *Op1, const SimplifyQuery &Q,
Duncan Sandsb8cee002012-03-13 11:42:19 +00001967 unsigned MaxRecurse) {
Sanjay Patel8b5ad3f2017-04-01 19:05:11 +00001968 if (Constant *C = foldOrCommuteConstant(Instruction::Xor, Op0, Op1, Q))
1969 return C;
Duncan Sandsc89ac072010-11-17 18:52:15 +00001970
1971 // A ^ undef -> undef
Duncan Sandsa29ea9a2011-02-01 09:06:20 +00001972 if (match(Op1, m_Undef()))
Duncan Sands019a4182010-12-15 11:02:22 +00001973 return Op1;
Duncan Sandsc89ac072010-11-17 18:52:15 +00001974
1975 // A ^ 0 = A
1976 if (match(Op1, m_Zero()))
1977 return Op0;
1978
Eli Friedmanad3cfe72011-08-17 19:31:49 +00001979 // A ^ A = 0
1980 if (Op0 == Op1)
1981 return Constant::getNullValue(Op0->getType());
1982
Duncan Sandsc89ac072010-11-17 18:52:15 +00001983 // A ^ ~A = ~A ^ A = -1
Chris Lattner9e4aa022011-02-09 17:15:04 +00001984 if (match(Op0, m_Not(m_Specific(Op1))) ||
1985 match(Op1, m_Not(m_Specific(Op0))))
Duncan Sandsc89ac072010-11-17 18:52:15 +00001986 return Constant::getAllOnesValue(Op0->getType());
1987
Duncan Sands6c7a52c2010-12-21 08:49:00 +00001988 // Try some generic simplifications for associative operations.
Duncan Sandsb8cee002012-03-13 11:42:19 +00001989 if (Value *V = SimplifyAssociativeBinOp(Instruction::Xor, Op0, Op1, Q,
1990 MaxRecurse))
Duncan Sands6c7a52c2010-12-21 08:49:00 +00001991 return V;
Duncan Sandsc89ac072010-11-17 18:52:15 +00001992
Duncan Sandsb238de02010-11-19 09:20:39 +00001993 // Threading Xor over selects and phi nodes is pointless, so don't bother.
1994 // Threading over the select in "A ^ select(cond, B, C)" means evaluating
1995 // "A^B" and "A^C" and seeing if they are equal; but they are equal if and
1996 // only if B and C are equal. If B and C are equal then (since we assume
1997 // that operands have already been simplified) "select(cond, B, C)" should
1998 // have been simplified to the common value of B and C already. Analysing
1999 // "A^B" and "A^C" thus gains nothing, but costs compile time. Similarly
2000 // for threading over phi nodes.
Duncan Sandsc89ac072010-11-17 18:52:15 +00002001
Craig Topper9f008862014-04-15 04:59:12 +00002002 return nullptr;
Duncan Sandsc89ac072010-11-17 18:52:15 +00002003}
2004
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00002005Value *llvm::SimplifyXorInst(Value *Op0, Value *Op1, const SimplifyQuery &Q) {
2006 return ::SimplifyXorInst(Op0, Op1, Q, RecursionLimit);
2007}
2008
2009
Chris Lattner229907c2011-07-18 04:54:35 +00002010static Type *GetCompareTy(Value *Op) {
Chris Lattnerccfdceb2009-11-09 23:55:12 +00002011 return CmpInst::makeCmpResultType(Op->getType());
2012}
2013
Sanjay Patel472cc782016-01-11 22:14:42 +00002014/// Rummage around inside V looking for something equivalent to the comparison
2015/// "LHS Pred RHS". Return such a value if found, otherwise return null.
2016/// Helper function for analyzing max/min idioms.
Duncan Sandsaf327282011-05-07 16:56:49 +00002017static Value *ExtractEquivalentCondition(Value *V, CmpInst::Predicate Pred,
2018 Value *LHS, Value *RHS) {
2019 SelectInst *SI = dyn_cast<SelectInst>(V);
2020 if (!SI)
Craig Topper9f008862014-04-15 04:59:12 +00002021 return nullptr;
Duncan Sandsaf327282011-05-07 16:56:49 +00002022 CmpInst *Cmp = dyn_cast<CmpInst>(SI->getCondition());
2023 if (!Cmp)
Craig Topper9f008862014-04-15 04:59:12 +00002024 return nullptr;
Duncan Sandsaf327282011-05-07 16:56:49 +00002025 Value *CmpLHS = Cmp->getOperand(0), *CmpRHS = Cmp->getOperand(1);
2026 if (Pred == Cmp->getPredicate() && LHS == CmpLHS && RHS == CmpRHS)
2027 return Cmp;
2028 if (Pred == CmpInst::getSwappedPredicate(Cmp->getPredicate()) &&
2029 LHS == CmpRHS && RHS == CmpLHS)
2030 return Cmp;
Craig Topper9f008862014-04-15 04:59:12 +00002031 return nullptr;
Duncan Sandsaf327282011-05-07 16:56:49 +00002032}
2033
Dan Gohman9631d902013-02-01 00:49:06 +00002034// A significant optimization not implemented here is assuming that alloca
2035// addresses are not equal to incoming argument values. They don't *alias*,
2036// as we say, but that doesn't mean they aren't equal, so we take a
2037// conservative approach.
2038//
2039// This is inspired in part by C++11 5.10p1:
2040// "Two pointers of the same type compare equal if and only if they are both
2041// null, both point to the same function, or both represent the same
2042// address."
2043//
2044// This is pretty permissive.
2045//
2046// It's also partly due to C11 6.5.9p6:
2047// "Two pointers compare equal if and only if both are null pointers, both are
2048// pointers to the same object (including a pointer to an object and a
2049// subobject at its beginning) or function, both are pointers to one past the
2050// last element of the same array object, or one is a pointer to one past the
2051// end of one array object and the other is a pointer to the start of a
NAKAMURA Takumi065fd352013-04-08 23:05:21 +00002052// different array object that happens to immediately follow the first array
Dan Gohman9631d902013-02-01 00:49:06 +00002053// object in the address space.)
2054//
2055// C11's version is more restrictive, however there's no reason why an argument
2056// couldn't be a one-past-the-end value for a stack object in the caller and be
2057// equal to the beginning of a stack object in the callee.
2058//
2059// If the C and C++ standards are ever made sufficiently restrictive in this
2060// area, it may be possible to update LLVM's semantics accordingly and reinstate
2061// this optimization.
Anna Thomas43d7e1c2016-05-03 14:58:21 +00002062static Constant *
2063computePointerICmp(const DataLayout &DL, const TargetLibraryInfo *TLI,
2064 const DominatorTree *DT, CmpInst::Predicate Pred,
2065 const Instruction *CxtI, Value *LHS, Value *RHS) {
Dan Gohmanb3e2d3a2013-02-01 00:11:13 +00002066 // First, skip past any trivial no-ops.
2067 LHS = LHS->stripPointerCasts();
2068 RHS = RHS->stripPointerCasts();
2069
2070 // A non-null pointer is not equal to a null pointer.
Sean Silva45835e72016-07-02 23:47:27 +00002071 if (llvm::isKnownNonNull(LHS) && isa<ConstantPointerNull>(RHS) &&
Dan Gohmanb3e2d3a2013-02-01 00:11:13 +00002072 (Pred == CmpInst::ICMP_EQ || Pred == CmpInst::ICMP_NE))
2073 return ConstantInt::get(GetCompareTy(LHS),
2074 !CmpInst::isTrueWhenEqual(Pred));
2075
Chandler Carruth8059c842012-03-25 21:28:14 +00002076 // We can only fold certain predicates on pointer comparisons.
2077 switch (Pred) {
2078 default:
Craig Topper9f008862014-04-15 04:59:12 +00002079 return nullptr;
Chandler Carruth8059c842012-03-25 21:28:14 +00002080
2081 // Equality comaprisons are easy to fold.
2082 case CmpInst::ICMP_EQ:
2083 case CmpInst::ICMP_NE:
2084 break;
2085
2086 // We can only handle unsigned relational comparisons because 'inbounds' on
2087 // a GEP only protects against unsigned wrapping.
2088 case CmpInst::ICMP_UGT:
2089 case CmpInst::ICMP_UGE:
2090 case CmpInst::ICMP_ULT:
2091 case CmpInst::ICMP_ULE:
2092 // However, we have to switch them to their signed variants to handle
2093 // negative indices from the base pointer.
2094 Pred = ICmpInst::getSignedPredicate(Pred);
2095 break;
2096 }
2097
Dan Gohmanb3e2d3a2013-02-01 00:11:13 +00002098 // Strip off any constant offsets so that we can reason about them.
2099 // It's tempting to use getUnderlyingObject or even just stripInBoundsOffsets
2100 // here and compare base addresses like AliasAnalysis does, however there are
2101 // numerous hazards. AliasAnalysis and its utilities rely on special rules
2102 // governing loads and stores which don't apply to icmps. Also, AliasAnalysis
2103 // doesn't need to guarantee pointer inequality when it says NoAlias.
Rafael Espindola37dc9e12014-02-21 00:06:31 +00002104 Constant *LHSOffset = stripAndComputeConstantOffsets(DL, LHS);
2105 Constant *RHSOffset = stripAndComputeConstantOffsets(DL, RHS);
Chandler Carruth8059c842012-03-25 21:28:14 +00002106
Dan Gohmanb3e2d3a2013-02-01 00:11:13 +00002107 // If LHS and RHS are related via constant offsets to the same base
2108 // value, we can replace it with an icmp which just compares the offsets.
2109 if (LHS == RHS)
2110 return ConstantExpr::getICmp(Pred, LHSOffset, RHSOffset);
Chandler Carruth8059c842012-03-25 21:28:14 +00002111
Dan Gohmanb3e2d3a2013-02-01 00:11:13 +00002112 // Various optimizations for (in)equality comparisons.
2113 if (Pred == CmpInst::ICMP_EQ || Pred == CmpInst::ICMP_NE) {
2114 // Different non-empty allocations that exist at the same time have
2115 // different addresses (if the program can tell). Global variables always
2116 // exist, so they always exist during the lifetime of each other and all
2117 // allocas. Two different allocas usually have different addresses...
2118 //
2119 // However, if there's an @llvm.stackrestore dynamically in between two
2120 // allocas, they may have the same address. It's tempting to reduce the
2121 // scope of the problem by only looking at *static* allocas here. That would
2122 // cover the majority of allocas while significantly reducing the likelihood
2123 // of having an @llvm.stackrestore pop up in the middle. However, it's not
2124 // actually impossible for an @llvm.stackrestore to pop up in the middle of
2125 // an entry block. Also, if we have a block that's not attached to a
2126 // function, we can't tell if it's "static" under the current definition.
2127 // Theoretically, this problem could be fixed by creating a new kind of
2128 // instruction kind specifically for static allocas. Such a new instruction
2129 // could be required to be at the top of the entry block, thus preventing it
2130 // from being subject to a @llvm.stackrestore. Instcombine could even
2131 // convert regular allocas into these special allocas. It'd be nifty.
2132 // However, until then, this problem remains open.
2133 //
2134 // So, we'll assume that two non-empty allocas have different addresses
2135 // for now.
2136 //
2137 // With all that, if the offsets are within the bounds of their allocations
2138 // (and not one-past-the-end! so we can't use inbounds!), and their
2139 // allocations aren't the same, the pointers are not equal.
2140 //
2141 // Note that it's not necessary to check for LHS being a global variable
2142 // address, due to canonicalization and constant folding.
2143 if (isa<AllocaInst>(LHS) &&
2144 (isa<AllocaInst>(RHS) || isa<GlobalVariable>(RHS))) {
Benjamin Kramerc05aa952013-02-01 15:21:10 +00002145 ConstantInt *LHSOffsetCI = dyn_cast<ConstantInt>(LHSOffset);
2146 ConstantInt *RHSOffsetCI = dyn_cast<ConstantInt>(RHSOffset);
Dan Gohmanb3e2d3a2013-02-01 00:11:13 +00002147 uint64_t LHSSize, RHSSize;
Benjamin Kramerc05aa952013-02-01 15:21:10 +00002148 if (LHSOffsetCI && RHSOffsetCI &&
Rafael Espindola37dc9e12014-02-21 00:06:31 +00002149 getObjectSize(LHS, LHSSize, DL, TLI) &&
2150 getObjectSize(RHS, RHSSize, DL, TLI)) {
Benjamin Kramerc05aa952013-02-01 15:21:10 +00002151 const APInt &LHSOffsetValue = LHSOffsetCI->getValue();
2152 const APInt &RHSOffsetValue = RHSOffsetCI->getValue();
Dan Gohmanb3e2d3a2013-02-01 00:11:13 +00002153 if (!LHSOffsetValue.isNegative() &&
2154 !RHSOffsetValue.isNegative() &&
2155 LHSOffsetValue.ult(LHSSize) &&
2156 RHSOffsetValue.ult(RHSSize)) {
2157 return ConstantInt::get(GetCompareTy(LHS),
2158 !CmpInst::isTrueWhenEqual(Pred));
2159 }
2160 }
2161
2162 // Repeat the above check but this time without depending on DataLayout
2163 // or being able to compute a precise size.
2164 if (!cast<PointerType>(LHS->getType())->isEmptyTy() &&
2165 !cast<PointerType>(RHS->getType())->isEmptyTy() &&
2166 LHSOffset->isNullValue() &&
2167 RHSOffset->isNullValue())
2168 return ConstantInt::get(GetCompareTy(LHS),
2169 !CmpInst::isTrueWhenEqual(Pred));
2170 }
Benjamin Kramer942dfe62013-09-23 14:16:38 +00002171
2172 // Even if an non-inbounds GEP occurs along the path we can still optimize
2173 // equality comparisons concerning the result. We avoid walking the whole
2174 // chain again by starting where the last calls to
2175 // stripAndComputeConstantOffsets left off and accumulate the offsets.
Rafael Espindola37dc9e12014-02-21 00:06:31 +00002176 Constant *LHSNoBound = stripAndComputeConstantOffsets(DL, LHS, true);
2177 Constant *RHSNoBound = stripAndComputeConstantOffsets(DL, RHS, true);
Benjamin Kramer942dfe62013-09-23 14:16:38 +00002178 if (LHS == RHS)
2179 return ConstantExpr::getICmp(Pred,
2180 ConstantExpr::getAdd(LHSOffset, LHSNoBound),
2181 ConstantExpr::getAdd(RHSOffset, RHSNoBound));
Hal Finkelafcd8db2014-12-01 23:38:06 +00002182
2183 // If one side of the equality comparison must come from a noalias call
2184 // (meaning a system memory allocation function), and the other side must
2185 // come from a pointer that cannot overlap with dynamically-allocated
2186 // memory within the lifetime of the current function (allocas, byval
2187 // arguments, globals), then determine the comparison result here.
2188 SmallVector<Value *, 8> LHSUObjs, RHSUObjs;
2189 GetUnderlyingObjects(LHS, LHSUObjs, DL);
2190 GetUnderlyingObjects(RHS, RHSUObjs, DL);
2191
2192 // Is the set of underlying objects all noalias calls?
David Majnemer0a16c222016-08-11 21:15:00 +00002193 auto IsNAC = [](ArrayRef<Value *> Objects) {
2194 return all_of(Objects, isNoAliasCall);
Hal Finkelafcd8db2014-12-01 23:38:06 +00002195 };
2196
2197 // Is the set of underlying objects all things which must be disjoint from
Hal Finkelaa19baf2014-12-04 17:45:19 +00002198 // noalias calls. For allocas, we consider only static ones (dynamic
2199 // allocas might be transformed into calls to malloc not simultaneously
2200 // live with the compared-to allocation). For globals, we exclude symbols
2201 // that might be resolve lazily to symbols in another dynamically-loaded
2202 // library (and, thus, could be malloc'ed by the implementation).
David Majnemer0a16c222016-08-11 21:15:00 +00002203 auto IsAllocDisjoint = [](ArrayRef<Value *> Objects) {
2204 return all_of(Objects, [](Value *V) {
Sanjay Patel34ea70a2016-01-11 22:24:35 +00002205 if (const AllocaInst *AI = dyn_cast<AllocaInst>(V))
2206 return AI->getParent() && AI->getFunction() && AI->isStaticAlloca();
2207 if (const GlobalValue *GV = dyn_cast<GlobalValue>(V))
2208 return (GV->hasLocalLinkage() || GV->hasHiddenVisibility() ||
Peter Collingbourne96efdd62016-06-14 21:01:22 +00002209 GV->hasProtectedVisibility() || GV->hasGlobalUnnamedAddr()) &&
Sanjay Patel34ea70a2016-01-11 22:24:35 +00002210 !GV->isThreadLocal();
2211 if (const Argument *A = dyn_cast<Argument>(V))
2212 return A->hasByValAttr();
2213 return false;
2214 });
Hal Finkelafcd8db2014-12-01 23:38:06 +00002215 };
2216
2217 if ((IsNAC(LHSUObjs) && IsAllocDisjoint(RHSUObjs)) ||
2218 (IsNAC(RHSUObjs) && IsAllocDisjoint(LHSUObjs)))
2219 return ConstantInt::get(GetCompareTy(LHS),
2220 !CmpInst::isTrueWhenEqual(Pred));
Anna Thomas43d7e1c2016-05-03 14:58:21 +00002221
2222 // Fold comparisons for non-escaping pointer even if the allocation call
2223 // cannot be elided. We cannot fold malloc comparison to null. Also, the
2224 // dynamic allocation call could be either of the operands.
2225 Value *MI = nullptr;
Sean Silva45835e72016-07-02 23:47:27 +00002226 if (isAllocLikeFn(LHS, TLI) && llvm::isKnownNonNullAt(RHS, CxtI, DT))
Anna Thomas43d7e1c2016-05-03 14:58:21 +00002227 MI = LHS;
Sean Silva45835e72016-07-02 23:47:27 +00002228 else if (isAllocLikeFn(RHS, TLI) && llvm::isKnownNonNullAt(LHS, CxtI, DT))
Anna Thomas43d7e1c2016-05-03 14:58:21 +00002229 MI = RHS;
2230 // FIXME: We should also fold the compare when the pointer escapes, but the
2231 // compare dominates the pointer escape
2232 if (MI && !PointerMayBeCaptured(MI, true, true))
2233 return ConstantInt::get(GetCompareTy(LHS),
2234 CmpInst::isFalseWhenEqual(Pred));
Dan Gohmanb3e2d3a2013-02-01 00:11:13 +00002235 }
2236
2237 // Otherwise, fail.
Craig Topper9f008862014-04-15 04:59:12 +00002238 return nullptr;
Chandler Carruth8059c842012-03-25 21:28:14 +00002239}
Chris Lattner01990f02012-02-24 19:01:58 +00002240
Sanjay Pateldc65a272016-12-03 17:30:22 +00002241/// Fold an icmp when its operands have i1 scalar type.
2242static Value *simplifyICmpOfBools(CmpInst::Predicate Pred, Value *LHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00002243 Value *RHS, const SimplifyQuery &Q) {
Sanjay Pateldc65a272016-12-03 17:30:22 +00002244 Type *ITy = GetCompareTy(LHS); // The return type.
2245 Type *OpTy = LHS->getType(); // The operand type.
Craig Topperfde47232017-07-09 07:04:03 +00002246 if (!OpTy->isIntOrIntVectorTy(1))
Sanjay Pateldc65a272016-12-03 17:30:22 +00002247 return nullptr;
2248
Sanjay Patele2787b92017-05-17 20:27:55 +00002249 // A boolean compared to true/false can be simplified in 14 out of the 20
2250 // (10 predicates * 2 constants) possible combinations. Cases not handled here
2251 // require a 'not' of the LHS, so those must be transformed in InstCombine.
2252 if (match(RHS, m_Zero())) {
2253 switch (Pred) {
2254 case CmpInst::ICMP_NE: // X != 0 -> X
2255 case CmpInst::ICMP_UGT: // X >u 0 -> X
2256 case CmpInst::ICMP_SLT: // X <s 0 -> X
2257 return LHS;
2258
2259 case CmpInst::ICMP_ULT: // X <u 0 -> false
2260 case CmpInst::ICMP_SGT: // X >s 0 -> false
2261 return getFalse(ITy);
2262
2263 case CmpInst::ICMP_UGE: // X >=u 0 -> true
2264 case CmpInst::ICMP_SLE: // X <=s 0 -> true
2265 return getTrue(ITy);
2266
2267 default: break;
2268 }
2269 } else if (match(RHS, m_One())) {
2270 switch (Pred) {
2271 case CmpInst::ICMP_EQ: // X == 1 -> X
2272 case CmpInst::ICMP_UGE: // X >=u 1 -> X
2273 case CmpInst::ICMP_SLE: // X <=s -1 -> X
2274 return LHS;
2275
2276 case CmpInst::ICMP_UGT: // X >u 1 -> false
2277 case CmpInst::ICMP_SLT: // X <s -1 -> false
2278 return getFalse(ITy);
2279
2280 case CmpInst::ICMP_ULE: // X <=u 1 -> true
2281 case CmpInst::ICMP_SGE: // X >=s -1 -> true
2282 return getTrue(ITy);
2283
2284 default: break;
2285 }
2286 }
2287
Sanjay Pateldc65a272016-12-03 17:30:22 +00002288 switch (Pred) {
2289 default:
2290 break;
Sanjay Pateldc65a272016-12-03 17:30:22 +00002291 case ICmpInst::ICMP_UGE:
Sanjay Pateldc65a272016-12-03 17:30:22 +00002292 if (isImpliedCondition(RHS, LHS, Q.DL).getValueOr(false))
2293 return getTrue(ITy);
2294 break;
2295 case ICmpInst::ICMP_SGE:
2296 /// For signed comparison, the values for an i1 are 0 and -1
2297 /// respectively. This maps into a truth table of:
2298 /// LHS | RHS | LHS >=s RHS | LHS implies RHS
2299 /// 0 | 0 | 1 (0 >= 0) | 1
2300 /// 0 | 1 | 1 (0 >= -1) | 1
2301 /// 1 | 0 | 0 (-1 >= 0) | 0
2302 /// 1 | 1 | 1 (-1 >= -1) | 1
2303 if (isImpliedCondition(LHS, RHS, Q.DL).getValueOr(false))
2304 return getTrue(ITy);
2305 break;
Sanjay Pateldc65a272016-12-03 17:30:22 +00002306 case ICmpInst::ICMP_ULE:
2307 if (isImpliedCondition(LHS, RHS, Q.DL).getValueOr(false))
2308 return getTrue(ITy);
2309 break;
2310 }
2311
2312 return nullptr;
2313}
2314
2315/// Try hard to fold icmp with zero RHS because this is a common case.
2316static Value *simplifyICmpWithZero(CmpInst::Predicate Pred, Value *LHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00002317 Value *RHS, const SimplifyQuery &Q) {
Sanjay Pateldc65a272016-12-03 17:30:22 +00002318 if (!match(RHS, m_Zero()))
2319 return nullptr;
2320
2321 Type *ITy = GetCompareTy(LHS); // The return type.
Sanjay Pateldc65a272016-12-03 17:30:22 +00002322 switch (Pred) {
2323 default:
2324 llvm_unreachable("Unknown ICmp predicate!");
2325 case ICmpInst::ICMP_ULT:
2326 return getFalse(ITy);
2327 case ICmpInst::ICMP_UGE:
2328 return getTrue(ITy);
2329 case ICmpInst::ICMP_EQ:
2330 case ICmpInst::ICMP_ULE:
Daniel Jasperaec2fa32016-12-19 08:22:17 +00002331 if (isKnownNonZero(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT))
Sanjay Pateldc65a272016-12-03 17:30:22 +00002332 return getFalse(ITy);
2333 break;
2334 case ICmpInst::ICMP_NE:
2335 case ICmpInst::ICMP_UGT:
Daniel Jasperaec2fa32016-12-19 08:22:17 +00002336 if (isKnownNonZero(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT))
Sanjay Pateldc65a272016-12-03 17:30:22 +00002337 return getTrue(ITy);
2338 break;
Craig Topper1a36b7d2017-05-15 06:39:41 +00002339 case ICmpInst::ICMP_SLT: {
2340 KnownBits LHSKnown = computeKnownBits(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2341 if (LHSKnown.isNegative())
Sanjay Pateldc65a272016-12-03 17:30:22 +00002342 return getTrue(ITy);
Craig Topper1a36b7d2017-05-15 06:39:41 +00002343 if (LHSKnown.isNonNegative())
Sanjay Pateldc65a272016-12-03 17:30:22 +00002344 return getFalse(ITy);
2345 break;
Craig Topper1a36b7d2017-05-15 06:39:41 +00002346 }
2347 case ICmpInst::ICMP_SLE: {
2348 KnownBits LHSKnown = computeKnownBits(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2349 if (LHSKnown.isNegative())
Sanjay Pateldc65a272016-12-03 17:30:22 +00002350 return getTrue(ITy);
Craig Topper1a36b7d2017-05-15 06:39:41 +00002351 if (LHSKnown.isNonNegative() &&
2352 isKnownNonZero(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT))
Sanjay Pateldc65a272016-12-03 17:30:22 +00002353 return getFalse(ITy);
2354 break;
Craig Topper1a36b7d2017-05-15 06:39:41 +00002355 }
2356 case ICmpInst::ICMP_SGE: {
2357 KnownBits LHSKnown = computeKnownBits(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2358 if (LHSKnown.isNegative())
Sanjay Pateldc65a272016-12-03 17:30:22 +00002359 return getFalse(ITy);
Craig Topper1a36b7d2017-05-15 06:39:41 +00002360 if (LHSKnown.isNonNegative())
Sanjay Pateldc65a272016-12-03 17:30:22 +00002361 return getTrue(ITy);
2362 break;
Craig Topper1a36b7d2017-05-15 06:39:41 +00002363 }
2364 case ICmpInst::ICMP_SGT: {
2365 KnownBits LHSKnown = computeKnownBits(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2366 if (LHSKnown.isNegative())
Sanjay Pateldc65a272016-12-03 17:30:22 +00002367 return getFalse(ITy);
Craig Topper1a36b7d2017-05-15 06:39:41 +00002368 if (LHSKnown.isNonNegative() &&
2369 isKnownNonZero(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT))
Sanjay Pateldc65a272016-12-03 17:30:22 +00002370 return getTrue(ITy);
2371 break;
2372 }
Craig Topper1a36b7d2017-05-15 06:39:41 +00002373 }
Sanjay Pateldc65a272016-12-03 17:30:22 +00002374
2375 return nullptr;
2376}
2377
Sanjay Patelbe332132017-01-23 18:22:26 +00002378/// Many binary operators with a constant operand have an easy-to-compute
2379/// range of outputs. This can be used to fold a comparison to always true or
2380/// always false.
2381static void setLimitsForBinOp(BinaryOperator &BO, APInt &Lower, APInt &Upper) {
2382 unsigned Width = Lower.getBitWidth();
2383 const APInt *C;
2384 switch (BO.getOpcode()) {
2385 case Instruction::Add:
Craig Topper73ba1c82017-06-07 07:40:37 +00002386 if (match(BO.getOperand(1), m_APInt(C)) && !C->isNullValue()) {
Sanjay Patel56227252017-01-24 17:03:24 +00002387 // FIXME: If we have both nuw and nsw, we should reduce the range further.
2388 if (BO.hasNoUnsignedWrap()) {
2389 // 'add nuw x, C' produces [C, UINT_MAX].
2390 Lower = *C;
2391 } else if (BO.hasNoSignedWrap()) {
2392 if (C->isNegative()) {
2393 // 'add nsw x, -C' produces [SINT_MIN, SINT_MAX - C].
2394 Lower = APInt::getSignedMinValue(Width);
2395 Upper = APInt::getSignedMaxValue(Width) + *C + 1;
2396 } else {
2397 // 'add nsw x, +C' produces [SINT_MIN + C, SINT_MAX].
2398 Lower = APInt::getSignedMinValue(Width) + *C;
2399 Upper = APInt::getSignedMaxValue(Width) + 1;
2400 }
2401 }
2402 }
Sanjay Patelbe332132017-01-23 18:22:26 +00002403 break;
2404
2405 case Instruction::And:
2406 if (match(BO.getOperand(1), m_APInt(C)))
2407 // 'and x, C' produces [0, C].
2408 Upper = *C + 1;
2409 break;
2410
2411 case Instruction::Or:
2412 if (match(BO.getOperand(1), m_APInt(C)))
2413 // 'or x, C' produces [C, UINT_MAX].
2414 Lower = *C;
2415 break;
2416
2417 case Instruction::AShr:
2418 if (match(BO.getOperand(1), m_APInt(C)) && C->ult(Width)) {
2419 // 'ashr x, C' produces [INT_MIN >> C, INT_MAX >> C].
2420 Lower = APInt::getSignedMinValue(Width).ashr(*C);
2421 Upper = APInt::getSignedMaxValue(Width).ashr(*C) + 1;
2422 } else if (match(BO.getOperand(0), m_APInt(C))) {
2423 unsigned ShiftAmount = Width - 1;
Craig Topper73ba1c82017-06-07 07:40:37 +00002424 if (!C->isNullValue() && BO.isExact())
Sanjay Patelbe332132017-01-23 18:22:26 +00002425 ShiftAmount = C->countTrailingZeros();
2426 if (C->isNegative()) {
2427 // 'ashr C, x' produces [C, C >> (Width-1)]
2428 Lower = *C;
2429 Upper = C->ashr(ShiftAmount) + 1;
2430 } else {
2431 // 'ashr C, x' produces [C >> (Width-1), C]
2432 Lower = C->ashr(ShiftAmount);
2433 Upper = *C + 1;
2434 }
2435 }
2436 break;
2437
2438 case Instruction::LShr:
2439 if (match(BO.getOperand(1), m_APInt(C)) && C->ult(Width)) {
2440 // 'lshr x, C' produces [0, UINT_MAX >> C].
2441 Upper = APInt::getAllOnesValue(Width).lshr(*C) + 1;
2442 } else if (match(BO.getOperand(0), m_APInt(C))) {
2443 // 'lshr C, x' produces [C >> (Width-1), C].
2444 unsigned ShiftAmount = Width - 1;
Craig Topper73ba1c82017-06-07 07:40:37 +00002445 if (!C->isNullValue() && BO.isExact())
Sanjay Patelbe332132017-01-23 18:22:26 +00002446 ShiftAmount = C->countTrailingZeros();
2447 Lower = C->lshr(ShiftAmount);
2448 Upper = *C + 1;
2449 }
2450 break;
2451
2452 case Instruction::Shl:
2453 if (match(BO.getOperand(0), m_APInt(C))) {
2454 if (BO.hasNoUnsignedWrap()) {
2455 // 'shl nuw C, x' produces [C, C << CLZ(C)]
2456 Lower = *C;
2457 Upper = Lower.shl(Lower.countLeadingZeros()) + 1;
2458 } else if (BO.hasNoSignedWrap()) { // TODO: What if both nuw+nsw?
2459 if (C->isNegative()) {
2460 // 'shl nsw C, x' produces [C << CLO(C)-1, C]
2461 unsigned ShiftAmount = C->countLeadingOnes() - 1;
2462 Lower = C->shl(ShiftAmount);
2463 Upper = *C + 1;
2464 } else {
2465 // 'shl nsw C, x' produces [C, C << CLZ(C)-1]
2466 unsigned ShiftAmount = C->countLeadingZeros() - 1;
2467 Lower = *C;
2468 Upper = C->shl(ShiftAmount) + 1;
2469 }
2470 }
2471 }
2472 break;
2473
2474 case Instruction::SDiv:
2475 if (match(BO.getOperand(1), m_APInt(C))) {
2476 APInt IntMin = APInt::getSignedMinValue(Width);
2477 APInt IntMax = APInt::getSignedMaxValue(Width);
2478 if (C->isAllOnesValue()) {
2479 // 'sdiv x, -1' produces [INT_MIN + 1, INT_MAX]
2480 // where C != -1 and C != 0 and C != 1
2481 Lower = IntMin + 1;
2482 Upper = IntMax + 1;
2483 } else if (C->countLeadingZeros() < Width - 1) {
2484 // 'sdiv x, C' produces [INT_MIN / C, INT_MAX / C]
2485 // where C != -1 and C != 0 and C != 1
2486 Lower = IntMin.sdiv(*C);
2487 Upper = IntMax.sdiv(*C);
2488 if (Lower.sgt(Upper))
2489 std::swap(Lower, Upper);
2490 Upper = Upper + 1;
2491 assert(Upper != Lower && "Upper part of range has wrapped!");
2492 }
2493 } else if (match(BO.getOperand(0), m_APInt(C))) {
2494 if (C->isMinSignedValue()) {
2495 // 'sdiv INT_MIN, x' produces [INT_MIN, INT_MIN / -2].
2496 Lower = *C;
2497 Upper = Lower.lshr(1) + 1;
2498 } else {
2499 // 'sdiv C, x' produces [-|C|, |C|].
2500 Upper = C->abs() + 1;
2501 Lower = (-Upper) + 1;
2502 }
2503 }
2504 break;
2505
2506 case Instruction::UDiv:
Craig Topper73ba1c82017-06-07 07:40:37 +00002507 if (match(BO.getOperand(1), m_APInt(C)) && !C->isNullValue()) {
Sanjay Patelbe332132017-01-23 18:22:26 +00002508 // 'udiv x, C' produces [0, UINT_MAX / C].
2509 Upper = APInt::getMaxValue(Width).udiv(*C) + 1;
2510 } else if (match(BO.getOperand(0), m_APInt(C))) {
2511 // 'udiv C, x' produces [0, C].
2512 Upper = *C + 1;
2513 }
2514 break;
2515
2516 case Instruction::SRem:
2517 if (match(BO.getOperand(1), m_APInt(C))) {
2518 // 'srem x, C' produces (-|C|, |C|).
2519 Upper = C->abs();
2520 Lower = (-Upper) + 1;
2521 }
2522 break;
2523
2524 case Instruction::URem:
2525 if (match(BO.getOperand(1), m_APInt(C)))
2526 // 'urem x, C' produces [0, C).
2527 Upper = *C;
2528 break;
2529
2530 default:
2531 break;
2532 }
2533}
2534
Sanjay Patel67bde282016-08-22 23:12:02 +00002535static Value *simplifyICmpWithConstant(CmpInst::Predicate Pred, Value *LHS,
2536 Value *RHS) {
Sanjay Patel200e3cb2016-08-23 17:30:56 +00002537 const APInt *C;
2538 if (!match(RHS, m_APInt(C)))
Sanjay Patel67bde282016-08-22 23:12:02 +00002539 return nullptr;
2540
2541 // Rule out tautological comparisons (eg., ult 0 or uge 0).
Sanjoy Das1f7b8132016-10-02 00:09:57 +00002542 ConstantRange RHS_CR = ConstantRange::makeExactICmpRegion(Pred, *C);
Sanjay Patel67bde282016-08-22 23:12:02 +00002543 if (RHS_CR.isEmptySet())
Sanjay Patel200e3cb2016-08-23 17:30:56 +00002544 return ConstantInt::getFalse(GetCompareTy(RHS));
Sanjay Patel67bde282016-08-22 23:12:02 +00002545 if (RHS_CR.isFullSet())
Sanjay Patel200e3cb2016-08-23 17:30:56 +00002546 return ConstantInt::getTrue(GetCompareTy(RHS));
2547
Sanjay Patelbe332132017-01-23 18:22:26 +00002548 // Find the range of possible values for binary operators.
Sanjay Patel6946e2a2016-08-23 18:00:51 +00002549 unsigned Width = C->getBitWidth();
Sanjay Patel67bde282016-08-22 23:12:02 +00002550 APInt Lower = APInt(Width, 0);
2551 APInt Upper = APInt(Width, 0);
Sanjay Patelbe332132017-01-23 18:22:26 +00002552 if (auto *BO = dyn_cast<BinaryOperator>(LHS))
2553 setLimitsForBinOp(*BO, Lower, Upper);
Sanjay Patel67bde282016-08-22 23:12:02 +00002554
2555 ConstantRange LHS_CR =
2556 Lower != Upper ? ConstantRange(Lower, Upper) : ConstantRange(Width, true);
2557
2558 if (auto *I = dyn_cast<Instruction>(LHS))
2559 if (auto *Ranges = I->getMetadata(LLVMContext::MD_range))
2560 LHS_CR = LHS_CR.intersectWith(getConstantRangeFromMetadata(*Ranges));
2561
2562 if (!LHS_CR.isFullSet()) {
2563 if (RHS_CR.contains(LHS_CR))
Sanjay Patel6946e2a2016-08-23 18:00:51 +00002564 return ConstantInt::getTrue(GetCompareTy(RHS));
Sanjay Patel67bde282016-08-22 23:12:02 +00002565 if (RHS_CR.inverse().contains(LHS_CR))
Sanjay Patel6946e2a2016-08-23 18:00:51 +00002566 return ConstantInt::getFalse(GetCompareTy(RHS));
Sanjay Patel67bde282016-08-22 23:12:02 +00002567 }
2568
2569 return nullptr;
2570}
2571
Sanjay Patel2df38a82017-05-08 16:21:55 +00002572/// TODO: A large part of this logic is duplicated in InstCombine's
2573/// foldICmpBinOp(). We should be able to share that and avoid the code
2574/// duplication.
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002575static Value *simplifyICmpWithBinOp(CmpInst::Predicate Pred, Value *LHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00002576 Value *RHS, const SimplifyQuery &Q,
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002577 unsigned MaxRecurse) {
2578 Type *ITy = GetCompareTy(LHS); // The return type.
2579
2580 BinaryOperator *LBO = dyn_cast<BinaryOperator>(LHS);
2581 BinaryOperator *RBO = dyn_cast<BinaryOperator>(RHS);
2582 if (MaxRecurse && (LBO || RBO)) {
2583 // Analyze the case when either LHS or RHS is an add instruction.
2584 Value *A = nullptr, *B = nullptr, *C = nullptr, *D = nullptr;
2585 // LHS = A + B (or A and B are null); RHS = C + D (or C and D are null).
2586 bool NoLHSWrapProblem = false, NoRHSWrapProblem = false;
2587 if (LBO && LBO->getOpcode() == Instruction::Add) {
2588 A = LBO->getOperand(0);
2589 B = LBO->getOperand(1);
2590 NoLHSWrapProblem =
2591 ICmpInst::isEquality(Pred) ||
2592 (CmpInst::isUnsigned(Pred) && LBO->hasNoUnsignedWrap()) ||
2593 (CmpInst::isSigned(Pred) && LBO->hasNoSignedWrap());
2594 }
2595 if (RBO && RBO->getOpcode() == Instruction::Add) {
2596 C = RBO->getOperand(0);
2597 D = RBO->getOperand(1);
2598 NoRHSWrapProblem =
2599 ICmpInst::isEquality(Pred) ||
2600 (CmpInst::isUnsigned(Pred) && RBO->hasNoUnsignedWrap()) ||
2601 (CmpInst::isSigned(Pred) && RBO->hasNoSignedWrap());
2602 }
2603
2604 // icmp (X+Y), X -> icmp Y, 0 for equalities or if there is no overflow.
2605 if ((A == RHS || B == RHS) && NoLHSWrapProblem)
2606 if (Value *V = SimplifyICmpInst(Pred, A == RHS ? B : A,
2607 Constant::getNullValue(RHS->getType()), Q,
2608 MaxRecurse - 1))
2609 return V;
2610
2611 // icmp X, (X+Y) -> icmp 0, Y for equalities or if there is no overflow.
2612 if ((C == LHS || D == LHS) && NoRHSWrapProblem)
2613 if (Value *V =
2614 SimplifyICmpInst(Pred, Constant::getNullValue(LHS->getType()),
2615 C == LHS ? D : C, Q, MaxRecurse - 1))
2616 return V;
2617
2618 // icmp (X+Y), (X+Z) -> icmp Y,Z for equalities or if there is no overflow.
2619 if (A && C && (A == C || A == D || B == C || B == D) && NoLHSWrapProblem &&
2620 NoRHSWrapProblem) {
2621 // Determine Y and Z in the form icmp (X+Y), (X+Z).
2622 Value *Y, *Z;
2623 if (A == C) {
2624 // C + B == C + D -> B == D
2625 Y = B;
2626 Z = D;
2627 } else if (A == D) {
2628 // D + B == C + D -> B == C
2629 Y = B;
2630 Z = C;
2631 } else if (B == C) {
2632 // A + C == C + D -> A == D
2633 Y = A;
2634 Z = D;
2635 } else {
2636 assert(B == D);
2637 // A + D == C + D -> A == C
2638 Y = A;
2639 Z = C;
2640 }
2641 if (Value *V = SimplifyICmpInst(Pred, Y, Z, Q, MaxRecurse - 1))
2642 return V;
2643 }
2644 }
2645
2646 {
2647 Value *Y = nullptr;
2648 // icmp pred (or X, Y), X
2649 if (LBO && match(LBO, m_c_Or(m_Value(Y), m_Specific(RHS)))) {
2650 if (Pred == ICmpInst::ICMP_ULT)
2651 return getFalse(ITy);
2652 if (Pred == ICmpInst::ICMP_UGE)
2653 return getTrue(ITy);
2654
2655 if (Pred == ICmpInst::ICMP_SLT || Pred == ICmpInst::ICMP_SGE) {
Craig Topper1a36b7d2017-05-15 06:39:41 +00002656 KnownBits RHSKnown = computeKnownBits(RHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2657 KnownBits YKnown = computeKnownBits(Y, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2658 if (RHSKnown.isNonNegative() && YKnown.isNegative())
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002659 return Pred == ICmpInst::ICMP_SLT ? getTrue(ITy) : getFalse(ITy);
Craig Topper1a36b7d2017-05-15 06:39:41 +00002660 if (RHSKnown.isNegative() || YKnown.isNonNegative())
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002661 return Pred == ICmpInst::ICMP_SLT ? getFalse(ITy) : getTrue(ITy);
2662 }
2663 }
2664 // icmp pred X, (or X, Y)
2665 if (RBO && match(RBO, m_c_Or(m_Value(Y), m_Specific(LHS)))) {
2666 if (Pred == ICmpInst::ICMP_ULE)
2667 return getTrue(ITy);
2668 if (Pred == ICmpInst::ICMP_UGT)
2669 return getFalse(ITy);
2670
2671 if (Pred == ICmpInst::ICMP_SGT || Pred == ICmpInst::ICMP_SLE) {
Craig Topper1a36b7d2017-05-15 06:39:41 +00002672 KnownBits LHSKnown = computeKnownBits(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2673 KnownBits YKnown = computeKnownBits(Y, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2674 if (LHSKnown.isNonNegative() && YKnown.isNegative())
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002675 return Pred == ICmpInst::ICMP_SGT ? getTrue(ITy) : getFalse(ITy);
Craig Topper1a36b7d2017-05-15 06:39:41 +00002676 if (LHSKnown.isNegative() || YKnown.isNonNegative())
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002677 return Pred == ICmpInst::ICMP_SGT ? getFalse(ITy) : getTrue(ITy);
2678 }
2679 }
2680 }
2681
2682 // icmp pred (and X, Y), X
Craig Topper72ee6942017-06-24 06:24:01 +00002683 if (LBO && match(LBO, m_c_And(m_Value(), m_Specific(RHS)))) {
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002684 if (Pred == ICmpInst::ICMP_UGT)
2685 return getFalse(ITy);
2686 if (Pred == ICmpInst::ICMP_ULE)
2687 return getTrue(ITy);
2688 }
2689 // icmp pred X, (and X, Y)
Craig Topper72ee6942017-06-24 06:24:01 +00002690 if (RBO && match(RBO, m_c_And(m_Value(), m_Specific(LHS)))) {
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002691 if (Pred == ICmpInst::ICMP_UGE)
2692 return getTrue(ITy);
2693 if (Pred == ICmpInst::ICMP_ULT)
2694 return getFalse(ITy);
2695 }
2696
2697 // 0 - (zext X) pred C
2698 if (!CmpInst::isUnsigned(Pred) && match(LHS, m_Neg(m_ZExt(m_Value())))) {
2699 if (ConstantInt *RHSC = dyn_cast<ConstantInt>(RHS)) {
2700 if (RHSC->getValue().isStrictlyPositive()) {
2701 if (Pred == ICmpInst::ICMP_SLT)
2702 return ConstantInt::getTrue(RHSC->getContext());
2703 if (Pred == ICmpInst::ICMP_SGE)
2704 return ConstantInt::getFalse(RHSC->getContext());
2705 if (Pred == ICmpInst::ICMP_EQ)
2706 return ConstantInt::getFalse(RHSC->getContext());
2707 if (Pred == ICmpInst::ICMP_NE)
2708 return ConstantInt::getTrue(RHSC->getContext());
2709 }
2710 if (RHSC->getValue().isNonNegative()) {
2711 if (Pred == ICmpInst::ICMP_SLE)
2712 return ConstantInt::getTrue(RHSC->getContext());
2713 if (Pred == ICmpInst::ICMP_SGT)
2714 return ConstantInt::getFalse(RHSC->getContext());
2715 }
2716 }
2717 }
2718
2719 // icmp pred (urem X, Y), Y
2720 if (LBO && match(LBO, m_URem(m_Value(), m_Specific(RHS)))) {
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002721 switch (Pred) {
2722 default:
2723 break;
2724 case ICmpInst::ICMP_SGT:
Craig Topper1a36b7d2017-05-15 06:39:41 +00002725 case ICmpInst::ICMP_SGE: {
2726 KnownBits Known = computeKnownBits(RHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2727 if (!Known.isNonNegative())
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002728 break;
2729 LLVM_FALLTHROUGH;
Craig Topper1a36b7d2017-05-15 06:39:41 +00002730 }
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002731 case ICmpInst::ICMP_EQ:
2732 case ICmpInst::ICMP_UGT:
2733 case ICmpInst::ICMP_UGE:
2734 return getFalse(ITy);
2735 case ICmpInst::ICMP_SLT:
Craig Topper1a36b7d2017-05-15 06:39:41 +00002736 case ICmpInst::ICMP_SLE: {
2737 KnownBits Known = computeKnownBits(RHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2738 if (!Known.isNonNegative())
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002739 break;
2740 LLVM_FALLTHROUGH;
Craig Topper1a36b7d2017-05-15 06:39:41 +00002741 }
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002742 case ICmpInst::ICMP_NE:
2743 case ICmpInst::ICMP_ULT:
2744 case ICmpInst::ICMP_ULE:
2745 return getTrue(ITy);
2746 }
2747 }
2748
2749 // icmp pred X, (urem Y, X)
2750 if (RBO && match(RBO, m_URem(m_Value(), m_Specific(LHS)))) {
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002751 switch (Pred) {
2752 default:
2753 break;
2754 case ICmpInst::ICMP_SGT:
Craig Topper1a36b7d2017-05-15 06:39:41 +00002755 case ICmpInst::ICMP_SGE: {
2756 KnownBits Known = computeKnownBits(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2757 if (!Known.isNonNegative())
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002758 break;
2759 LLVM_FALLTHROUGH;
Craig Topper1a36b7d2017-05-15 06:39:41 +00002760 }
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002761 case ICmpInst::ICMP_NE:
2762 case ICmpInst::ICMP_UGT:
2763 case ICmpInst::ICMP_UGE:
2764 return getTrue(ITy);
2765 case ICmpInst::ICMP_SLT:
Craig Topper1a36b7d2017-05-15 06:39:41 +00002766 case ICmpInst::ICMP_SLE: {
2767 KnownBits Known = computeKnownBits(LHS, Q.DL, 0, Q.AC, Q.CxtI, Q.DT);
2768 if (!Known.isNonNegative())
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002769 break;
2770 LLVM_FALLTHROUGH;
Craig Topper1a36b7d2017-05-15 06:39:41 +00002771 }
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002772 case ICmpInst::ICMP_EQ:
2773 case ICmpInst::ICMP_ULT:
2774 case ICmpInst::ICMP_ULE:
2775 return getFalse(ITy);
2776 }
2777 }
2778
2779 // x >> y <=u x
2780 // x udiv y <=u x.
2781 if (LBO && (match(LBO, m_LShr(m_Specific(RHS), m_Value())) ||
2782 match(LBO, m_UDiv(m_Specific(RHS), m_Value())))) {
2783 // icmp pred (X op Y), X
2784 if (Pred == ICmpInst::ICMP_UGT)
2785 return getFalse(ITy);
2786 if (Pred == ICmpInst::ICMP_ULE)
2787 return getTrue(ITy);
2788 }
2789
2790 // x >=u x >> y
2791 // x >=u x udiv y.
2792 if (RBO && (match(RBO, m_LShr(m_Specific(LHS), m_Value())) ||
2793 match(RBO, m_UDiv(m_Specific(LHS), m_Value())))) {
2794 // icmp pred X, (X op Y)
2795 if (Pred == ICmpInst::ICMP_ULT)
2796 return getFalse(ITy);
2797 if (Pred == ICmpInst::ICMP_UGE)
2798 return getTrue(ITy);
2799 }
2800
2801 // handle:
2802 // CI2 << X == CI
2803 // CI2 << X != CI
2804 //
2805 // where CI2 is a power of 2 and CI isn't
2806 if (auto *CI = dyn_cast<ConstantInt>(RHS)) {
2807 const APInt *CI2Val, *CIVal = &CI->getValue();
2808 if (LBO && match(LBO, m_Shl(m_APInt(CI2Val), m_Value())) &&
2809 CI2Val->isPowerOf2()) {
2810 if (!CIVal->isPowerOf2()) {
2811 // CI2 << X can equal zero in some circumstances,
2812 // this simplification is unsafe if CI is zero.
2813 //
2814 // We know it is safe if:
2815 // - The shift is nsw, we can't shift out the one bit.
2816 // - The shift is nuw, we can't shift out the one bit.
2817 // - CI2 is one
2818 // - CI isn't zero
2819 if (LBO->hasNoSignedWrap() || LBO->hasNoUnsignedWrap() ||
Craig Topper73ba1c82017-06-07 07:40:37 +00002820 CI2Val->isOneValue() || !CI->isZero()) {
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002821 if (Pred == ICmpInst::ICMP_EQ)
2822 return ConstantInt::getFalse(RHS->getContext());
2823 if (Pred == ICmpInst::ICMP_NE)
2824 return ConstantInt::getTrue(RHS->getContext());
2825 }
2826 }
Craig Topper73ba1c82017-06-07 07:40:37 +00002827 if (CIVal->isSignMask() && CI2Val->isOneValue()) {
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002828 if (Pred == ICmpInst::ICMP_UGT)
2829 return ConstantInt::getFalse(RHS->getContext());
2830 if (Pred == ICmpInst::ICMP_ULE)
2831 return ConstantInt::getTrue(RHS->getContext());
2832 }
2833 }
2834 }
2835
2836 if (MaxRecurse && LBO && RBO && LBO->getOpcode() == RBO->getOpcode() &&
2837 LBO->getOperand(1) == RBO->getOperand(1)) {
2838 switch (LBO->getOpcode()) {
2839 default:
2840 break;
2841 case Instruction::UDiv:
2842 case Instruction::LShr:
Sanjay Patela23b1412017-05-15 19:16:49 +00002843 if (ICmpInst::isSigned(Pred) || !LBO->isExact() || !RBO->isExact())
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002844 break;
Sanjay Patela23b1412017-05-15 19:16:49 +00002845 if (Value *V = SimplifyICmpInst(Pred, LBO->getOperand(0),
2846 RBO->getOperand(0), Q, MaxRecurse - 1))
2847 return V;
2848 break;
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002849 case Instruction::SDiv:
Sanjay Patela23b1412017-05-15 19:16:49 +00002850 if (!ICmpInst::isEquality(Pred) || !LBO->isExact() || !RBO->isExact())
2851 break;
2852 if (Value *V = SimplifyICmpInst(Pred, LBO->getOperand(0),
2853 RBO->getOperand(0), Q, MaxRecurse - 1))
2854 return V;
2855 break;
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002856 case Instruction::AShr:
2857 if (!LBO->isExact() || !RBO->isExact())
2858 break;
2859 if (Value *V = SimplifyICmpInst(Pred, LBO->getOperand(0),
2860 RBO->getOperand(0), Q, MaxRecurse - 1))
2861 return V;
2862 break;
2863 case Instruction::Shl: {
2864 bool NUW = LBO->hasNoUnsignedWrap() && RBO->hasNoUnsignedWrap();
2865 bool NSW = LBO->hasNoSignedWrap() && RBO->hasNoSignedWrap();
2866 if (!NUW && !NSW)
2867 break;
2868 if (!NSW && ICmpInst::isSigned(Pred))
2869 break;
2870 if (Value *V = SimplifyICmpInst(Pred, LBO->getOperand(0),
2871 RBO->getOperand(0), Q, MaxRecurse - 1))
2872 return V;
2873 break;
2874 }
2875 }
2876 }
2877 return nullptr;
2878}
2879
Sanjay Patel35289c62016-12-10 17:40:47 +00002880/// Simplify integer comparisons where at least one operand of the compare
2881/// matches an integer min/max idiom.
2882static Value *simplifyICmpWithMinMax(CmpInst::Predicate Pred, Value *LHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00002883 Value *RHS, const SimplifyQuery &Q,
Sanjay Patel35289c62016-12-10 17:40:47 +00002884 unsigned MaxRecurse) {
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00002885 Type *ITy = GetCompareTy(LHS); // The return type.
2886 Value *A, *B;
2887 CmpInst::Predicate P = CmpInst::BAD_ICMP_PREDICATE;
2888 CmpInst::Predicate EqP; // Chosen so that "A == max/min(A,B)" iff "A EqP B".
2889
2890 // Signed variants on "max(a,b)>=a -> true".
2891 if (match(LHS, m_SMax(m_Value(A), m_Value(B))) && (A == RHS || B == RHS)) {
2892 if (A != RHS)
2893 std::swap(A, B); // smax(A, B) pred A.
2894 EqP = CmpInst::ICMP_SGE; // "A == smax(A, B)" iff "A sge B".
2895 // We analyze this as smax(A, B) pred A.
2896 P = Pred;
2897 } else if (match(RHS, m_SMax(m_Value(A), m_Value(B))) &&
2898 (A == LHS || B == LHS)) {
2899 if (A != LHS)
2900 std::swap(A, B); // A pred smax(A, B).
2901 EqP = CmpInst::ICMP_SGE; // "A == smax(A, B)" iff "A sge B".
2902 // We analyze this as smax(A, B) swapped-pred A.
2903 P = CmpInst::getSwappedPredicate(Pred);
2904 } else if (match(LHS, m_SMin(m_Value(A), m_Value(B))) &&
2905 (A == RHS || B == RHS)) {
2906 if (A != RHS)
2907 std::swap(A, B); // smin(A, B) pred A.
2908 EqP = CmpInst::ICMP_SLE; // "A == smin(A, B)" iff "A sle B".
2909 // We analyze this as smax(-A, -B) swapped-pred -A.
2910 // Note that we do not need to actually form -A or -B thanks to EqP.
2911 P = CmpInst::getSwappedPredicate(Pred);
2912 } else if (match(RHS, m_SMin(m_Value(A), m_Value(B))) &&
2913 (A == LHS || B == LHS)) {
2914 if (A != LHS)
2915 std::swap(A, B); // A pred smin(A, B).
2916 EqP = CmpInst::ICMP_SLE; // "A == smin(A, B)" iff "A sle B".
2917 // We analyze this as smax(-A, -B) pred -A.
2918 // Note that we do not need to actually form -A or -B thanks to EqP.
2919 P = Pred;
2920 }
2921 if (P != CmpInst::BAD_ICMP_PREDICATE) {
2922 // Cases correspond to "max(A, B) p A".
2923 switch (P) {
2924 default:
2925 break;
2926 case CmpInst::ICMP_EQ:
2927 case CmpInst::ICMP_SLE:
2928 // Equivalent to "A EqP B". This may be the same as the condition tested
2929 // in the max/min; if so, we can just return that.
2930 if (Value *V = ExtractEquivalentCondition(LHS, EqP, A, B))
2931 return V;
2932 if (Value *V = ExtractEquivalentCondition(RHS, EqP, A, B))
2933 return V;
2934 // Otherwise, see if "A EqP B" simplifies.
2935 if (MaxRecurse)
2936 if (Value *V = SimplifyICmpInst(EqP, A, B, Q, MaxRecurse - 1))
2937 return V;
2938 break;
2939 case CmpInst::ICMP_NE:
2940 case CmpInst::ICMP_SGT: {
2941 CmpInst::Predicate InvEqP = CmpInst::getInversePredicate(EqP);
2942 // Equivalent to "A InvEqP B". This may be the same as the condition
2943 // tested in the max/min; if so, we can just return that.
2944 if (Value *V = ExtractEquivalentCondition(LHS, InvEqP, A, B))
2945 return V;
2946 if (Value *V = ExtractEquivalentCondition(RHS, InvEqP, A, B))
2947 return V;
2948 // Otherwise, see if "A InvEqP B" simplifies.
2949 if (MaxRecurse)
2950 if (Value *V = SimplifyICmpInst(InvEqP, A, B, Q, MaxRecurse - 1))
2951 return V;
2952 break;
2953 }
2954 case CmpInst::ICMP_SGE:
2955 // Always true.
2956 return getTrue(ITy);
2957 case CmpInst::ICMP_SLT:
2958 // Always false.
2959 return getFalse(ITy);
2960 }
2961 }
2962
2963 // Unsigned variants on "max(a,b)>=a -> true".
2964 P = CmpInst::BAD_ICMP_PREDICATE;
2965 if (match(LHS, m_UMax(m_Value(A), m_Value(B))) && (A == RHS || B == RHS)) {
2966 if (A != RHS)
2967 std::swap(A, B); // umax(A, B) pred A.
2968 EqP = CmpInst::ICMP_UGE; // "A == umax(A, B)" iff "A uge B".
2969 // We analyze this as umax(A, B) pred A.
2970 P = Pred;
2971 } else if (match(RHS, m_UMax(m_Value(A), m_Value(B))) &&
2972 (A == LHS || B == LHS)) {
2973 if (A != LHS)
2974 std::swap(A, B); // A pred umax(A, B).
2975 EqP = CmpInst::ICMP_UGE; // "A == umax(A, B)" iff "A uge B".
2976 // We analyze this as umax(A, B) swapped-pred A.
2977 P = CmpInst::getSwappedPredicate(Pred);
2978 } else if (match(LHS, m_UMin(m_Value(A), m_Value(B))) &&
2979 (A == RHS || B == RHS)) {
2980 if (A != RHS)
2981 std::swap(A, B); // umin(A, B) pred A.
2982 EqP = CmpInst::ICMP_ULE; // "A == umin(A, B)" iff "A ule B".
2983 // We analyze this as umax(-A, -B) swapped-pred -A.
2984 // Note that we do not need to actually form -A or -B thanks to EqP.
2985 P = CmpInst::getSwappedPredicate(Pred);
2986 } else if (match(RHS, m_UMin(m_Value(A), m_Value(B))) &&
2987 (A == LHS || B == LHS)) {
2988 if (A != LHS)
2989 std::swap(A, B); // A pred umin(A, B).
2990 EqP = CmpInst::ICMP_ULE; // "A == umin(A, B)" iff "A ule B".
2991 // We analyze this as umax(-A, -B) pred -A.
2992 // Note that we do not need to actually form -A or -B thanks to EqP.
2993 P = Pred;
2994 }
2995 if (P != CmpInst::BAD_ICMP_PREDICATE) {
2996 // Cases correspond to "max(A, B) p A".
2997 switch (P) {
2998 default:
2999 break;
3000 case CmpInst::ICMP_EQ:
3001 case CmpInst::ICMP_ULE:
3002 // Equivalent to "A EqP B". This may be the same as the condition tested
3003 // in the max/min; if so, we can just return that.
3004 if (Value *V = ExtractEquivalentCondition(LHS, EqP, A, B))
3005 return V;
3006 if (Value *V = ExtractEquivalentCondition(RHS, EqP, A, B))
3007 return V;
3008 // Otherwise, see if "A EqP B" simplifies.
3009 if (MaxRecurse)
3010 if (Value *V = SimplifyICmpInst(EqP, A, B, Q, MaxRecurse - 1))
3011 return V;
3012 break;
3013 case CmpInst::ICMP_NE:
3014 case CmpInst::ICMP_UGT: {
3015 CmpInst::Predicate InvEqP = CmpInst::getInversePredicate(EqP);
3016 // Equivalent to "A InvEqP B". This may be the same as the condition
3017 // tested in the max/min; if so, we can just return that.
3018 if (Value *V = ExtractEquivalentCondition(LHS, InvEqP, A, B))
3019 return V;
3020 if (Value *V = ExtractEquivalentCondition(RHS, InvEqP, A, B))
3021 return V;
3022 // Otherwise, see if "A InvEqP B" simplifies.
3023 if (MaxRecurse)
3024 if (Value *V = SimplifyICmpInst(InvEqP, A, B, Q, MaxRecurse - 1))
3025 return V;
3026 break;
3027 }
3028 case CmpInst::ICMP_UGE:
3029 // Always true.
3030 return getTrue(ITy);
3031 case CmpInst::ICMP_ULT:
3032 // Always false.
3033 return getFalse(ITy);
3034 }
3035 }
3036
3037 // Variants on "max(x,y) >= min(x,z)".
3038 Value *C, *D;
3039 if (match(LHS, m_SMax(m_Value(A), m_Value(B))) &&
3040 match(RHS, m_SMin(m_Value(C), m_Value(D))) &&
3041 (A == C || A == D || B == C || B == D)) {
3042 // max(x, ?) pred min(x, ?).
3043 if (Pred == CmpInst::ICMP_SGE)
3044 // Always true.
3045 return getTrue(ITy);
3046 if (Pred == CmpInst::ICMP_SLT)
3047 // Always false.
3048 return getFalse(ITy);
3049 } else if (match(LHS, m_SMin(m_Value(A), m_Value(B))) &&
3050 match(RHS, m_SMax(m_Value(C), m_Value(D))) &&
3051 (A == C || A == D || B == C || B == D)) {
3052 // min(x, ?) pred max(x, ?).
3053 if (Pred == CmpInst::ICMP_SLE)
3054 // Always true.
3055 return getTrue(ITy);
3056 if (Pred == CmpInst::ICMP_SGT)
3057 // Always false.
3058 return getFalse(ITy);
3059 } else if (match(LHS, m_UMax(m_Value(A), m_Value(B))) &&
3060 match(RHS, m_UMin(m_Value(C), m_Value(D))) &&
3061 (A == C || A == D || B == C || B == D)) {
3062 // max(x, ?) pred min(x, ?).
3063 if (Pred == CmpInst::ICMP_UGE)
3064 // Always true.
3065 return getTrue(ITy);
3066 if (Pred == CmpInst::ICMP_ULT)
3067 // Always false.
3068 return getFalse(ITy);
3069 } else if (match(LHS, m_UMin(m_Value(A), m_Value(B))) &&
3070 match(RHS, m_UMax(m_Value(C), m_Value(D))) &&
3071 (A == C || A == D || B == C || B == D)) {
3072 // min(x, ?) pred max(x, ?).
3073 if (Pred == CmpInst::ICMP_ULE)
3074 // Always true.
3075 return getTrue(ITy);
3076 if (Pred == CmpInst::ICMP_UGT)
3077 // Always false.
3078 return getFalse(ITy);
3079 }
3080
3081 return nullptr;
3082}
3083
Sanjay Patel472cc782016-01-11 22:14:42 +00003084/// Given operands for an ICmpInst, see if we can fold the result.
3085/// If not, this returns null.
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00003086static Value *SimplifyICmpInst(unsigned Predicate, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003087 const SimplifyQuery &Q, unsigned MaxRecurse) {
Chris Lattner084a1b52009-11-09 22:57:59 +00003088 CmpInst::Predicate Pred = (CmpInst::Predicate)Predicate;
Chris Lattnerc1f19072009-11-09 23:28:39 +00003089 assert(CmpInst::isIntPredicate(Pred) && "Not an integer compare!");
Duncan Sands7e800d62010-11-14 11:23:23 +00003090
Chris Lattnera71e9d62009-11-10 00:55:12 +00003091 if (Constant *CLHS = dyn_cast<Constant>(LHS)) {
Chris Lattnercdfb80d2009-11-09 23:06:58 +00003092 if (Constant *CRHS = dyn_cast<Constant>(RHS))
Rafael Espindola37dc9e12014-02-21 00:06:31 +00003093 return ConstantFoldCompareInstOperands(Pred, CLHS, CRHS, Q.DL, Q.TLI);
Chris Lattnera71e9d62009-11-10 00:55:12 +00003094
3095 // If we have a constant, make sure it is on the RHS.
3096 std::swap(LHS, RHS);
3097 Pred = CmpInst::getSwappedPredicate(Pred);
3098 }
Duncan Sands7e800d62010-11-14 11:23:23 +00003099
Chris Lattner229907c2011-07-18 04:54:35 +00003100 Type *ITy = GetCompareTy(LHS); // The return type.
Duncan Sands7e800d62010-11-14 11:23:23 +00003101
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003102 // icmp X, X -> true/false
Chris Lattner3afc0722010-03-03 19:46:03 +00003103 // X icmp undef -> true/false. For example, icmp ugt %X, undef -> false
3104 // because X could be 0.
Duncan Sands772749a2011-01-01 20:08:02 +00003105 if (LHS == RHS || isa<UndefValue>(RHS))
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003106 return ConstantInt::get(ITy, CmpInst::isTrueWhenEqual(Pred));
Duncan Sands7e800d62010-11-14 11:23:23 +00003107
Sanjay Pateldc65a272016-12-03 17:30:22 +00003108 if (Value *V = simplifyICmpOfBools(Pred, LHS, RHS, Q))
3109 return V;
Duncan Sands8d25a7c2011-01-13 08:56:29 +00003110
Sanjay Pateldc65a272016-12-03 17:30:22 +00003111 if (Value *V = simplifyICmpWithZero(Pred, LHS, RHS, Q))
3112 return V;
Duncan Sandsd3951082011-01-25 09:38:29 +00003113
Sanjay Patel67bde282016-08-22 23:12:02 +00003114 if (Value *V = simplifyICmpWithConstant(Pred, LHS, RHS))
3115 return V;
Duncan Sands8d25a7c2011-01-13 08:56:29 +00003116
Chen Li7452d952015-09-26 03:26:47 +00003117 // If both operands have range metadata, use the metadata
3118 // to simplify the comparison.
3119 if (isa<Instruction>(RHS) && isa<Instruction>(LHS)) {
Craig Topper0c198612017-04-10 19:37:10 +00003120 auto RHS_Instr = cast<Instruction>(RHS);
3121 auto LHS_Instr = cast<Instruction>(LHS);
Chen Li7452d952015-09-26 03:26:47 +00003122
3123 if (RHS_Instr->getMetadata(LLVMContext::MD_range) &&
3124 LHS_Instr->getMetadata(LLVMContext::MD_range)) {
Sanjoy Dasa7e13782015-10-24 05:37:35 +00003125 auto RHS_CR = getConstantRangeFromMetadata(
3126 *RHS_Instr->getMetadata(LLVMContext::MD_range));
3127 auto LHS_CR = getConstantRangeFromMetadata(
3128 *LHS_Instr->getMetadata(LLVMContext::MD_range));
Chen Li7452d952015-09-26 03:26:47 +00003129
3130 auto Satisfied_CR = ConstantRange::makeSatisfyingICmpRegion(Pred, RHS_CR);
3131 if (Satisfied_CR.contains(LHS_CR))
3132 return ConstantInt::getTrue(RHS->getContext());
3133
3134 auto InversedSatisfied_CR = ConstantRange::makeSatisfyingICmpRegion(
3135 CmpInst::getInversePredicate(Pred), RHS_CR);
3136 if (InversedSatisfied_CR.contains(LHS_CR))
3137 return ConstantInt::getFalse(RHS->getContext());
3138 }
3139 }
3140
Duncan Sands8fb2c382011-01-20 13:21:55 +00003141 // Compare of cast, for example (zext X) != 0 -> X != 0
3142 if (isa<CastInst>(LHS) && (isa<Constant>(RHS) || isa<CastInst>(RHS))) {
3143 Instruction *LI = cast<CastInst>(LHS);
3144 Value *SrcOp = LI->getOperand(0);
Chris Lattner229907c2011-07-18 04:54:35 +00003145 Type *SrcTy = SrcOp->getType();
3146 Type *DstTy = LI->getType();
Duncan Sands8fb2c382011-01-20 13:21:55 +00003147
3148 // Turn icmp (ptrtoint x), (ptrtoint/constant) into a compare of the input
3149 // if the integer type is the same size as the pointer type.
Mehdi Aminia28d91d2015-03-10 02:37:25 +00003150 if (MaxRecurse && isa<PtrToIntInst>(LI) &&
3151 Q.DL.getTypeSizeInBits(SrcTy) == DstTy->getPrimitiveSizeInBits()) {
Duncan Sands8fb2c382011-01-20 13:21:55 +00003152 if (Constant *RHSC = dyn_cast<Constant>(RHS)) {
3153 // Transfer the cast to the constant.
3154 if (Value *V = SimplifyICmpInst(Pred, SrcOp,
3155 ConstantExpr::getIntToPtr(RHSC, SrcTy),
Duncan Sandsb8cee002012-03-13 11:42:19 +00003156 Q, MaxRecurse-1))
Duncan Sands8fb2c382011-01-20 13:21:55 +00003157 return V;
3158 } else if (PtrToIntInst *RI = dyn_cast<PtrToIntInst>(RHS)) {
3159 if (RI->getOperand(0)->getType() == SrcTy)
3160 // Compare without the cast.
3161 if (Value *V = SimplifyICmpInst(Pred, SrcOp, RI->getOperand(0),
Duncan Sandsb8cee002012-03-13 11:42:19 +00003162 Q, MaxRecurse-1))
Duncan Sands8fb2c382011-01-20 13:21:55 +00003163 return V;
3164 }
3165 }
3166
3167 if (isa<ZExtInst>(LHS)) {
3168 // Turn icmp (zext X), (zext Y) into a compare of X and Y if they have the
3169 // same type.
3170 if (ZExtInst *RI = dyn_cast<ZExtInst>(RHS)) {
3171 if (MaxRecurse && SrcTy == RI->getOperand(0)->getType())
3172 // Compare X and Y. Note that signed predicates become unsigned.
3173 if (Value *V = SimplifyICmpInst(ICmpInst::getUnsignedPredicate(Pred),
Duncan Sandsb8cee002012-03-13 11:42:19 +00003174 SrcOp, RI->getOperand(0), Q,
Duncan Sands8fb2c382011-01-20 13:21:55 +00003175 MaxRecurse-1))
3176 return V;
3177 }
3178 // Turn icmp (zext X), Cst into a compare of X and Cst if Cst is extended
3179 // too. If not, then try to deduce the result of the comparison.
3180 else if (ConstantInt *CI = dyn_cast<ConstantInt>(RHS)) {
3181 // Compute the constant that would happen if we truncated to SrcTy then
3182 // reextended to DstTy.
3183 Constant *Trunc = ConstantExpr::getTrunc(CI, SrcTy);
3184 Constant *RExt = ConstantExpr::getCast(CastInst::ZExt, Trunc, DstTy);
3185
3186 // If the re-extended constant didn't change then this is effectively
3187 // also a case of comparing two zero-extended values.
3188 if (RExt == CI && MaxRecurse)
3189 if (Value *V = SimplifyICmpInst(ICmpInst::getUnsignedPredicate(Pred),
Duncan Sandsb8cee002012-03-13 11:42:19 +00003190 SrcOp, Trunc, Q, MaxRecurse-1))
Duncan Sands8fb2c382011-01-20 13:21:55 +00003191 return V;
3192
3193 // Otherwise the upper bits of LHS are zero while RHS has a non-zero bit
3194 // there. Use this to work out the result of the comparison.
3195 if (RExt != CI) {
3196 switch (Pred) {
Craig Toppera2886c22012-02-07 05:05:23 +00003197 default: llvm_unreachable("Unknown ICmp predicate!");
Duncan Sands8fb2c382011-01-20 13:21:55 +00003198 // LHS <u RHS.
3199 case ICmpInst::ICMP_EQ:
3200 case ICmpInst::ICMP_UGT:
3201 case ICmpInst::ICMP_UGE:
3202 return ConstantInt::getFalse(CI->getContext());
3203
3204 case ICmpInst::ICMP_NE:
3205 case ICmpInst::ICMP_ULT:
3206 case ICmpInst::ICMP_ULE:
3207 return ConstantInt::getTrue(CI->getContext());
3208
3209 // LHS is non-negative. If RHS is negative then LHS >s LHS. If RHS
3210 // is non-negative then LHS <s RHS.
3211 case ICmpInst::ICMP_SGT:
3212 case ICmpInst::ICMP_SGE:
3213 return CI->getValue().isNegative() ?
3214 ConstantInt::getTrue(CI->getContext()) :
3215 ConstantInt::getFalse(CI->getContext());
3216
3217 case ICmpInst::ICMP_SLT:
3218 case ICmpInst::ICMP_SLE:
3219 return CI->getValue().isNegative() ?
3220 ConstantInt::getFalse(CI->getContext()) :
3221 ConstantInt::getTrue(CI->getContext());
3222 }
3223 }
3224 }
3225 }
3226
3227 if (isa<SExtInst>(LHS)) {
3228 // Turn icmp (sext X), (sext Y) into a compare of X and Y if they have the
3229 // same type.
3230 if (SExtInst *RI = dyn_cast<SExtInst>(RHS)) {
3231 if (MaxRecurse && SrcTy == RI->getOperand(0)->getType())
3232 // Compare X and Y. Note that the predicate does not change.
3233 if (Value *V = SimplifyICmpInst(Pred, SrcOp, RI->getOperand(0),
Duncan Sandsb8cee002012-03-13 11:42:19 +00003234 Q, MaxRecurse-1))
Duncan Sands8fb2c382011-01-20 13:21:55 +00003235 return V;
3236 }
3237 // Turn icmp (sext X), Cst into a compare of X and Cst if Cst is extended
3238 // too. If not, then try to deduce the result of the comparison.
3239 else if (ConstantInt *CI = dyn_cast<ConstantInt>(RHS)) {
3240 // Compute the constant that would happen if we truncated to SrcTy then
3241 // reextended to DstTy.
3242 Constant *Trunc = ConstantExpr::getTrunc(CI, SrcTy);
3243 Constant *RExt = ConstantExpr::getCast(CastInst::SExt, Trunc, DstTy);
3244
3245 // If the re-extended constant didn't change then this is effectively
3246 // also a case of comparing two sign-extended values.
3247 if (RExt == CI && MaxRecurse)
Duncan Sandsb8cee002012-03-13 11:42:19 +00003248 if (Value *V = SimplifyICmpInst(Pred, SrcOp, Trunc, Q, MaxRecurse-1))
Duncan Sands8fb2c382011-01-20 13:21:55 +00003249 return V;
3250
3251 // Otherwise the upper bits of LHS are all equal, while RHS has varying
3252 // bits there. Use this to work out the result of the comparison.
3253 if (RExt != CI) {
3254 switch (Pred) {
Craig Toppera2886c22012-02-07 05:05:23 +00003255 default: llvm_unreachable("Unknown ICmp predicate!");
Duncan Sands8fb2c382011-01-20 13:21:55 +00003256 case ICmpInst::ICMP_EQ:
3257 return ConstantInt::getFalse(CI->getContext());
3258 case ICmpInst::ICMP_NE:
3259 return ConstantInt::getTrue(CI->getContext());
3260
3261 // If RHS is non-negative then LHS <s RHS. If RHS is negative then
3262 // LHS >s RHS.
3263 case ICmpInst::ICMP_SGT:
3264 case ICmpInst::ICMP_SGE:
3265 return CI->getValue().isNegative() ?
3266 ConstantInt::getTrue(CI->getContext()) :
3267 ConstantInt::getFalse(CI->getContext());
3268 case ICmpInst::ICMP_SLT:
3269 case ICmpInst::ICMP_SLE:
3270 return CI->getValue().isNegative() ?
3271 ConstantInt::getFalse(CI->getContext()) :
3272 ConstantInt::getTrue(CI->getContext());
3273
3274 // If LHS is non-negative then LHS <u RHS. If LHS is negative then
3275 // LHS >u RHS.
3276 case ICmpInst::ICMP_UGT:
3277 case ICmpInst::ICMP_UGE:
Sylvestre Ledru91ce36c2012-09-27 10:14:43 +00003278 // Comparison is true iff the LHS <s 0.
Duncan Sands8fb2c382011-01-20 13:21:55 +00003279 if (MaxRecurse)
3280 if (Value *V = SimplifyICmpInst(ICmpInst::ICMP_SLT, SrcOp,
3281 Constant::getNullValue(SrcTy),
Duncan Sandsb8cee002012-03-13 11:42:19 +00003282 Q, MaxRecurse-1))
Duncan Sands8fb2c382011-01-20 13:21:55 +00003283 return V;
3284 break;
3285 case ICmpInst::ICMP_ULT:
3286 case ICmpInst::ICMP_ULE:
Sylvestre Ledru91ce36c2012-09-27 10:14:43 +00003287 // Comparison is true iff the LHS >=s 0.
Duncan Sands8fb2c382011-01-20 13:21:55 +00003288 if (MaxRecurse)
3289 if (Value *V = SimplifyICmpInst(ICmpInst::ICMP_SGE, SrcOp,
3290 Constant::getNullValue(SrcTy),
Duncan Sandsb8cee002012-03-13 11:42:19 +00003291 Q, MaxRecurse-1))
Duncan Sands8fb2c382011-01-20 13:21:55 +00003292 return V;
3293 break;
3294 }
3295 }
3296 }
3297 }
3298 }
3299
James Molloy1d88d6f2015-10-22 13:18:42 +00003300 // icmp eq|ne X, Y -> false|true if X != Y
Craig Topperc2790ec2017-06-06 07:13:04 +00003301 if (ICmpInst::isEquality(Pred) &&
Daniel Jasperaec2fa32016-12-19 08:22:17 +00003302 isKnownNonEqual(LHS, RHS, Q.DL, Q.AC, Q.CxtI, Q.DT)) {
Craig Topper2dfb4802017-06-06 07:13:13 +00003303 return Pred == ICmpInst::ICMP_NE ? getTrue(ITy) : getFalse(ITy);
James Molloy1d88d6f2015-10-22 13:18:42 +00003304 }
Junmo Park53470fc2016-04-05 21:14:31 +00003305
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00003306 if (Value *V = simplifyICmpWithBinOp(Pred, LHS, RHS, Q, MaxRecurse))
3307 return V;
Duncan Sandsd114ab32011-02-13 17:15:40 +00003308
Sanjay Patel35289c62016-12-10 17:40:47 +00003309 if (Value *V = simplifyICmpWithMinMax(Pred, LHS, RHS, Q, MaxRecurse))
Sanjay Patel9d5b5e32016-12-03 18:03:53 +00003310 return V;
Duncan Sandsa2287852011-05-04 16:05:05 +00003311
Chandler Carruth8059c842012-03-25 21:28:14 +00003312 // Simplify comparisons of related pointers using a powerful, recursive
3313 // GEP-walk when we have target data available..
Dan Gohman18c77a12013-01-31 02:50:36 +00003314 if (LHS->getType()->isPointerTy())
Anna Thomas43d7e1c2016-05-03 14:58:21 +00003315 if (auto *C = computePointerICmp(Q.DL, Q.TLI, Q.DT, Pred, Q.CxtI, LHS, RHS))
Chandler Carruth8059c842012-03-25 21:28:14 +00003316 return C;
David Majnemerdc8767a2016-08-07 07:58:10 +00003317 if (auto *CLHS = dyn_cast<PtrToIntOperator>(LHS))
3318 if (auto *CRHS = dyn_cast<PtrToIntOperator>(RHS))
3319 if (Q.DL.getTypeSizeInBits(CLHS->getPointerOperandType()) ==
3320 Q.DL.getTypeSizeInBits(CLHS->getType()) &&
3321 Q.DL.getTypeSizeInBits(CRHS->getPointerOperandType()) ==
3322 Q.DL.getTypeSizeInBits(CRHS->getType()))
3323 if (auto *C = computePointerICmp(Q.DL, Q.TLI, Q.DT, Pred, Q.CxtI,
3324 CLHS->getPointerOperand(),
3325 CRHS->getPointerOperand()))
3326 return C;
Chandler Carruth8059c842012-03-25 21:28:14 +00003327
Nick Lewycky3db143e2012-02-26 02:09:49 +00003328 if (GetElementPtrInst *GLHS = dyn_cast<GetElementPtrInst>(LHS)) {
3329 if (GEPOperator *GRHS = dyn_cast<GEPOperator>(RHS)) {
3330 if (GLHS->getPointerOperand() == GRHS->getPointerOperand() &&
3331 GLHS->hasAllConstantIndices() && GRHS->hasAllConstantIndices() &&
3332 (ICmpInst::isEquality(Pred) ||
3333 (GLHS->isInBounds() && GRHS->isInBounds() &&
3334 Pred == ICmpInst::getSignedPredicate(Pred)))) {
3335 // The bases are equal and the indices are constant. Build a constant
3336 // expression GEP with the same indices and a null base pointer to see
3337 // what constant folding can make out of it.
3338 Constant *Null = Constant::getNullValue(GLHS->getPointerOperandType());
3339 SmallVector<Value *, 4> IndicesLHS(GLHS->idx_begin(), GLHS->idx_end());
David Blaikie4a2e73b2015-04-02 18:55:32 +00003340 Constant *NewLHS = ConstantExpr::getGetElementPtr(
3341 GLHS->getSourceElementType(), Null, IndicesLHS);
Nick Lewycky3db143e2012-02-26 02:09:49 +00003342
3343 SmallVector<Value *, 4> IndicesRHS(GRHS->idx_begin(), GRHS->idx_end());
David Blaikie4a2e73b2015-04-02 18:55:32 +00003344 Constant *NewRHS = ConstantExpr::getGetElementPtr(
3345 GLHS->getSourceElementType(), Null, IndicesRHS);
Nick Lewycky3db143e2012-02-26 02:09:49 +00003346 return ConstantExpr::getICmp(Pred, NewLHS, NewRHS);
3347 }
3348 }
3349 }
3350
Duncan Sandsf532d312010-11-07 16:12:23 +00003351 // If the comparison is with the result of a select instruction, check whether
3352 // comparing with either branch of the select always yields the same value.
Duncan Sandsf64e6902010-12-21 09:09:15 +00003353 if (isa<SelectInst>(LHS) || isa<SelectInst>(RHS))
Duncan Sandsb8cee002012-03-13 11:42:19 +00003354 if (Value *V = ThreadCmpOverSelect(Pred, LHS, RHS, Q, MaxRecurse))
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00003355 return V;
3356
3357 // If the comparison is with the result of a phi instruction, check whether
3358 // doing the compare with each incoming phi value yields a common result.
Duncan Sandsf64e6902010-12-21 09:09:15 +00003359 if (isa<PHINode>(LHS) || isa<PHINode>(RHS))
Duncan Sandsb8cee002012-03-13 11:42:19 +00003360 if (Value *V = ThreadCmpOverPHI(Pred, LHS, RHS, Q, MaxRecurse))
Duncan Sandsfc5ad3f02010-11-09 17:25:51 +00003361 return V;
Duncan Sandsf532d312010-11-07 16:12:23 +00003362
Craig Topper9f008862014-04-15 04:59:12 +00003363 return nullptr;
Chris Lattner084a1b52009-11-09 22:57:59 +00003364}
3365
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00003366Value *llvm::SimplifyICmpInst(unsigned Predicate, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003367 const SimplifyQuery &Q) {
3368 return ::SimplifyICmpInst(Predicate, LHS, RHS, Q, RecursionLimit);
3369}
3370
Sanjay Patel472cc782016-01-11 22:14:42 +00003371/// Given operands for an FCmpInst, see if we can fold the result.
3372/// If not, this returns null.
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00003373static Value *SimplifyFCmpInst(unsigned Predicate, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003374 FastMathFlags FMF, const SimplifyQuery &Q,
Benjamin Kramerf4ebfa32015-07-10 14:02:02 +00003375 unsigned MaxRecurse) {
Chris Lattnerc1f19072009-11-09 23:28:39 +00003376 CmpInst::Predicate Pred = (CmpInst::Predicate)Predicate;
3377 assert(CmpInst::isFPPredicate(Pred) && "Not an FP compare!");
3378
Chris Lattnera71e9d62009-11-10 00:55:12 +00003379 if (Constant *CLHS = dyn_cast<Constant>(LHS)) {
Chris Lattnerc1f19072009-11-09 23:28:39 +00003380 if (Constant *CRHS = dyn_cast<Constant>(RHS))
Rafael Espindola37dc9e12014-02-21 00:06:31 +00003381 return ConstantFoldCompareInstOperands(Pred, CLHS, CRHS, Q.DL, Q.TLI);
Duncan Sands7e800d62010-11-14 11:23:23 +00003382
Chris Lattnera71e9d62009-11-10 00:55:12 +00003383 // If we have a constant, make sure it is on the RHS.
3384 std::swap(LHS, RHS);
3385 Pred = CmpInst::getSwappedPredicate(Pred);
3386 }
Duncan Sands7e800d62010-11-14 11:23:23 +00003387
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003388 // Fold trivial predicates.
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003389 Type *RetTy = GetCompareTy(LHS);
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003390 if (Pred == FCmpInst::FCMP_FALSE)
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003391 return getFalse(RetTy);
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003392 if (Pred == FCmpInst::FCMP_TRUE)
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003393 return getTrue(RetTy);
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003394
Benjamin Kramerf4ebfa32015-07-10 14:02:02 +00003395 // UNO/ORD predicates can be trivially folded if NaNs are ignored.
3396 if (FMF.noNaNs()) {
3397 if (Pred == FCmpInst::FCMP_UNO)
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003398 return getFalse(RetTy);
Benjamin Kramerf4ebfa32015-07-10 14:02:02 +00003399 if (Pred == FCmpInst::FCMP_ORD)
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003400 return getTrue(RetTy);
Benjamin Kramerf4ebfa32015-07-10 14:02:02 +00003401 }
3402
Mehdi Aminieb242a52015-03-09 03:20:25 +00003403 // fcmp pred x, undef and fcmp pred undef, x
3404 // fold to true if unordered, false if ordered
3405 if (isa<UndefValue>(LHS) || isa<UndefValue>(RHS)) {
3406 // Choosing NaN for the undef will always make unordered comparison succeed
3407 // and ordered comparison fail.
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003408 return ConstantInt::get(RetTy, CmpInst::isUnordered(Pred));
Mehdi Aminieb242a52015-03-09 03:20:25 +00003409 }
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003410
3411 // fcmp x,x -> true/false. Not all compares are foldable.
Duncan Sands772749a2011-01-01 20:08:02 +00003412 if (LHS == RHS) {
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003413 if (CmpInst::isTrueWhenEqual(Pred))
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003414 return getTrue(RetTy);
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003415 if (CmpInst::isFalseWhenEqual(Pred))
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003416 return getFalse(RetTy);
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003417 }
Duncan Sands7e800d62010-11-14 11:23:23 +00003418
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003419 // Handle fcmp with constant RHS
David Majnemer3ee5f342016-04-13 06:55:52 +00003420 const ConstantFP *CFP = nullptr;
3421 if (const auto *RHSC = dyn_cast<Constant>(RHS)) {
3422 if (RHS->getType()->isVectorTy())
3423 CFP = dyn_cast_or_null<ConstantFP>(RHSC->getSplatValue());
3424 else
3425 CFP = dyn_cast<ConstantFP>(RHSC);
3426 }
3427 if (CFP) {
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003428 // If the constant is a nan, see if we can fold the comparison based on it.
Mehdi Amini383d7ae2015-02-13 07:38:04 +00003429 if (CFP->getValueAPF().isNaN()) {
3430 if (FCmpInst::isOrdered(Pred)) // True "if ordered and foo"
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003431 return getFalse(RetTy);
Mehdi Amini383d7ae2015-02-13 07:38:04 +00003432 assert(FCmpInst::isUnordered(Pred) &&
3433 "Comparison must be either ordered or unordered!");
3434 // True if unordered.
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003435 return getTrue(RetTy);
Mehdi Amini383d7ae2015-02-13 07:38:04 +00003436 }
3437 // Check whether the constant is an infinity.
3438 if (CFP->getValueAPF().isInfinity()) {
3439 if (CFP->getValueAPF().isNegative()) {
Elena Demikhovsky45f04482015-01-28 08:03:58 +00003440 switch (Pred) {
Elena Demikhovsky45f04482015-01-28 08:03:58 +00003441 case FCmpInst::FCMP_OLT:
Mehdi Amini383d7ae2015-02-13 07:38:04 +00003442 // No value is ordered and less than negative infinity.
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003443 return getFalse(RetTy);
Mehdi Amini383d7ae2015-02-13 07:38:04 +00003444 case FCmpInst::FCMP_UGE:
3445 // All values are unordered with or at least negative infinity.
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003446 return getTrue(RetTy);
Elena Demikhovsky45f04482015-01-28 08:03:58 +00003447 default:
3448 break;
3449 }
Mehdi Amini383d7ae2015-02-13 07:38:04 +00003450 } else {
3451 switch (Pred) {
3452 case FCmpInst::FCMP_OGT:
3453 // No value is ordered and greater than infinity.
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003454 return getFalse(RetTy);
Mehdi Amini383d7ae2015-02-13 07:38:04 +00003455 case FCmpInst::FCMP_ULE:
3456 // All values are unordered with and at most infinity.
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003457 return getTrue(RetTy);
Mehdi Amini383d7ae2015-02-13 07:38:04 +00003458 default:
3459 break;
3460 }
3461 }
3462 }
3463 if (CFP->getValueAPF().isZero()) {
3464 switch (Pred) {
3465 case FCmpInst::FCMP_UGE:
David Majnemer3ee5f342016-04-13 06:55:52 +00003466 if (CannotBeOrderedLessThanZero(LHS, Q.TLI))
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003467 return getTrue(RetTy);
Mehdi Amini383d7ae2015-02-13 07:38:04 +00003468 break;
3469 case FCmpInst::FCMP_OLT:
3470 // X < 0
David Majnemer3ee5f342016-04-13 06:55:52 +00003471 if (CannotBeOrderedLessThanZero(LHS, Q.TLI))
Andrea Di Biagiobff3fd62016-09-02 15:55:25 +00003472 return getFalse(RetTy);
Mehdi Amini383d7ae2015-02-13 07:38:04 +00003473 break;
3474 default:
3475 break;
3476 }
Chris Lattnerccfdceb2009-11-09 23:55:12 +00003477 }
3478 }
Duncan Sands7e800d62010-11-14 11:23:23 +00003479
Duncan Sandsa620bd12010-11-07 16:46:25 +00003480 // If the comparison is with the result of a select instruction, check whether
3481 // comparing with either branch of the select always yields the same value.
Duncan Sandsf64e6902010-12-21 09:09:15 +00003482 if (isa<SelectInst>(LHS) || isa<SelectInst>(RHS))
Duncan Sandsb8cee002012-03-13 11:42:19 +00003483 if (Value *V = ThreadCmpOverSelect(Pred, LHS, RHS, Q, MaxRecurse))
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00003484 return V;
3485
3486 // If the comparison is with the result of a phi instruction, check whether
3487 // doing the compare with each incoming phi value yields a common result.
Duncan Sandsf64e6902010-12-21 09:09:15 +00003488 if (isa<PHINode>(LHS) || isa<PHINode>(RHS))
Duncan Sandsb8cee002012-03-13 11:42:19 +00003489 if (Value *V = ThreadCmpOverPHI(Pred, LHS, RHS, Q, MaxRecurse))
Duncan Sandsfc5ad3f02010-11-09 17:25:51 +00003490 return V;
Duncan Sandsa620bd12010-11-07 16:46:25 +00003491
Craig Topper9f008862014-04-15 04:59:12 +00003492 return nullptr;
Chris Lattnerc1f19072009-11-09 23:28:39 +00003493}
3494
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00003495Value *llvm::SimplifyFCmpInst(unsigned Predicate, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003496 FastMathFlags FMF, const SimplifyQuery &Q) {
3497 return ::SimplifyFCmpInst(Predicate, LHS, RHS, FMF, Q, RecursionLimit);
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00003498}
3499
Sanjay Patel472cc782016-01-11 22:14:42 +00003500/// See if V simplifies when its operand Op is replaced with RepOp.
David Majnemer3f0fb982015-06-06 22:40:21 +00003501static const Value *SimplifyWithOpReplaced(Value *V, Value *Op, Value *RepOp,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003502 const SimplifyQuery &Q,
David Majnemer3f0fb982015-06-06 22:40:21 +00003503 unsigned MaxRecurse) {
3504 // Trivial replacement.
3505 if (V == Op)
3506 return RepOp;
3507
Tim Northover997f5f12017-05-22 21:28:08 +00003508 // We cannot replace a constant, and shouldn't even try.
3509 if (isa<Constant>(Op))
3510 return nullptr;
3511
David Majnemer3f0fb982015-06-06 22:40:21 +00003512 auto *I = dyn_cast<Instruction>(V);
3513 if (!I)
3514 return nullptr;
3515
3516 // If this is a binary operator, try to simplify it with the replaced op.
3517 if (auto *B = dyn_cast<BinaryOperator>(I)) {
3518 // Consider:
3519 // %cmp = icmp eq i32 %x, 2147483647
3520 // %add = add nsw i32 %x, 1
3521 // %sel = select i1 %cmp, i32 -2147483648, i32 %add
3522 //
3523 // We can't replace %sel with %add unless we strip away the flags.
3524 if (isa<OverflowingBinaryOperator>(B))
3525 if (B->hasNoSignedWrap() || B->hasNoUnsignedWrap())
3526 return nullptr;
3527 if (isa<PossiblyExactOperator>(B))
3528 if (B->isExact())
3529 return nullptr;
3530
3531 if (MaxRecurse) {
3532 if (B->getOperand(0) == Op)
3533 return SimplifyBinOp(B->getOpcode(), RepOp, B->getOperand(1), Q,
3534 MaxRecurse - 1);
3535 if (B->getOperand(1) == Op)
3536 return SimplifyBinOp(B->getOpcode(), B->getOperand(0), RepOp, Q,
3537 MaxRecurse - 1);
3538 }
3539 }
3540
3541 // Same for CmpInsts.
3542 if (CmpInst *C = dyn_cast<CmpInst>(I)) {
3543 if (MaxRecurse) {
3544 if (C->getOperand(0) == Op)
3545 return SimplifyCmpInst(C->getPredicate(), RepOp, C->getOperand(1), Q,
3546 MaxRecurse - 1);
3547 if (C->getOperand(1) == Op)
3548 return SimplifyCmpInst(C->getPredicate(), C->getOperand(0), RepOp, Q,
3549 MaxRecurse - 1);
3550 }
3551 }
3552
3553 // TODO: We could hand off more cases to instsimplify here.
3554
3555 // If all operands are constant after substituting Op for RepOp then we can
3556 // constant fold the instruction.
3557 if (Constant *CRepOp = dyn_cast<Constant>(RepOp)) {
3558 // Build a list of all constant operands.
3559 SmallVector<Constant *, 8> ConstOps;
3560 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i) {
3561 if (I->getOperand(i) == Op)
3562 ConstOps.push_back(CRepOp);
3563 else if (Constant *COp = dyn_cast<Constant>(I->getOperand(i)))
3564 ConstOps.push_back(COp);
3565 else
3566 break;
3567 }
3568
3569 // All operands were constants, fold it.
3570 if (ConstOps.size() == I->getNumOperands()) {
3571 if (CmpInst *C = dyn_cast<CmpInst>(I))
3572 return ConstantFoldCompareInstOperands(C->getPredicate(), ConstOps[0],
3573 ConstOps[1], Q.DL, Q.TLI);
3574
3575 if (LoadInst *LI = dyn_cast<LoadInst>(I))
3576 if (!LI->isVolatile())
Eduard Burtescu14239212016-01-22 01:17:26 +00003577 return ConstantFoldLoadFromConstPtr(ConstOps[0], LI->getType(), Q.DL);
David Majnemer3f0fb982015-06-06 22:40:21 +00003578
Manuel Jacobe9024592016-01-21 06:33:22 +00003579 return ConstantFoldInstOperands(I, ConstOps, Q.DL, Q.TLI);
David Majnemer3f0fb982015-06-06 22:40:21 +00003580 }
3581 }
3582
3583 return nullptr;
3584}
3585
Sanjay Patel5f5eb582016-07-18 20:56:53 +00003586/// Try to simplify a select instruction when its condition operand is an
3587/// integer comparison where one operand of the compare is a constant.
3588static Value *simplifySelectBitTest(Value *TrueVal, Value *FalseVal, Value *X,
3589 const APInt *Y, bool TrueWhenUnset) {
3590 const APInt *C;
3591
3592 // (X & Y) == 0 ? X & ~Y : X --> X
3593 // (X & Y) != 0 ? X & ~Y : X --> X & ~Y
3594 if (FalseVal == X && match(TrueVal, m_And(m_Specific(X), m_APInt(C))) &&
3595 *Y == ~*C)
3596 return TrueWhenUnset ? FalseVal : TrueVal;
3597
3598 // (X & Y) == 0 ? X : X & ~Y --> X & ~Y
3599 // (X & Y) != 0 ? X : X & ~Y --> X
3600 if (TrueVal == X && match(FalseVal, m_And(m_Specific(X), m_APInt(C))) &&
3601 *Y == ~*C)
3602 return TrueWhenUnset ? FalseVal : TrueVal;
3603
3604 if (Y->isPowerOf2()) {
3605 // (X & Y) == 0 ? X | Y : X --> X | Y
3606 // (X & Y) != 0 ? X | Y : X --> X
3607 if (FalseVal == X && match(TrueVal, m_Or(m_Specific(X), m_APInt(C))) &&
3608 *Y == *C)
3609 return TrueWhenUnset ? TrueVal : FalseVal;
3610
3611 // (X & Y) == 0 ? X : X | Y --> X
3612 // (X & Y) != 0 ? X : X | Y --> X | Y
3613 if (TrueVal == X && match(FalseVal, m_Or(m_Specific(X), m_APInt(C))) &&
3614 *Y == *C)
3615 return TrueWhenUnset ? TrueVal : FalseVal;
3616 }
Matt Arsenault82606662017-01-11 00:57:54 +00003617
Sanjay Patel5f5eb582016-07-18 20:56:53 +00003618 return nullptr;
3619}
3620
Sanjay Patela3bfb4e2016-07-21 21:26:45 +00003621/// An alternative way to test if a bit is set or not uses sgt/slt instead of
3622/// eq/ne.
Craig Topper69fa8e02017-08-14 19:09:32 +00003623static Value *simplifySelectWithFakeICmpEq(Value *CmpLHS, Value *TrueVal,
3624 Value *FalseVal,
3625 bool TrueWhenUnset) {
Sanjay Patela3bfb4e2016-07-21 21:26:45 +00003626 unsigned BitWidth = TrueVal->getType()->getScalarSizeInBits();
Sanjay Patele9fc79b2016-07-21 21:56:00 +00003627 if (!BitWidth)
3628 return nullptr;
Matt Arsenault82606662017-01-11 00:57:54 +00003629
Craig Topper69fa8e02017-08-14 19:09:32 +00003630 APInt MinSignedValue;
3631 Value *X;
3632 if (match(CmpLHS, m_Trunc(m_Value(X))) && (X == TrueVal || X == FalseVal)) {
Sanjay Patela3bfb4e2016-07-21 21:26:45 +00003633 // icmp slt (trunc X), 0 <--> icmp ne (and X, C), 0
3634 // icmp sgt (trunc X), -1 <--> icmp eq (and X, C), 0
Craig Topper69fa8e02017-08-14 19:09:32 +00003635 unsigned DestSize = CmpLHS->getType()->getScalarSizeInBits();
3636 MinSignedValue = APInt::getSignedMinValue(DestSize).zext(BitWidth);
3637 } else {
3638 // icmp slt X, 0 <--> icmp ne (and X, C), 0
3639 // icmp sgt X, -1 <--> icmp eq (and X, C), 0
3640 X = CmpLHS;
3641 MinSignedValue = APInt::getSignedMinValue(BitWidth);
Sanjay Patela3bfb4e2016-07-21 21:26:45 +00003642 }
3643
Craig Topper69fa8e02017-08-14 19:09:32 +00003644 if (Value *V = simplifySelectBitTest(TrueVal, FalseVal, X, &MinSignedValue,
3645 TrueWhenUnset))
3646 return V;
3647
3648 return nullptr;
Sanjay Patela3bfb4e2016-07-21 21:26:45 +00003649}
3650
Sanjay Patel5f5eb582016-07-18 20:56:53 +00003651/// Try to simplify a select instruction when its condition operand is an
3652/// integer comparison.
3653static Value *simplifySelectWithICmpCond(Value *CondVal, Value *TrueVal,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003654 Value *FalseVal, const SimplifyQuery &Q,
Sanjay Patel5f5eb582016-07-18 20:56:53 +00003655 unsigned MaxRecurse) {
3656 ICmpInst::Predicate Pred;
3657 Value *CmpLHS, *CmpRHS;
3658 if (!match(CondVal, m_ICmp(Pred, m_Value(CmpLHS), m_Value(CmpRHS))))
3659 return nullptr;
3660
Craig Topper69fa8e02017-08-14 19:09:32 +00003661 // FIXME: This code is nearly duplicated in InstCombine. Using/refactoring
3662 // decomposeBitTestICmp() might help.
3663 // FIXME this should support ICMP_SLE/SGE forms as well
Sanjay Patel5f5eb582016-07-18 20:56:53 +00003664 if (ICmpInst::isEquality(Pred) && match(CmpRHS, m_Zero())) {
3665 Value *X;
3666 const APInt *Y;
3667 if (match(CmpLHS, m_And(m_Value(X), m_APInt(Y))))
3668 if (Value *V = simplifySelectBitTest(TrueVal, FalseVal, X, Y,
3669 Pred == ICmpInst::ICMP_EQ))
3670 return V;
Craig Topper69fa8e02017-08-14 19:09:32 +00003671 } else if (Pred == ICmpInst::ICMP_SLT && match(CmpRHS, m_Zero())) {
3672 // Comparing signed-less-than 0 checks if the sign bit is set.
3673 if (Value *V = simplifySelectWithFakeICmpEq(CmpLHS, TrueVal, FalseVal,
3674 false))
3675 return V;
3676 } else if (Pred == ICmpInst::ICMP_SGT && match(CmpRHS, m_AllOnes())) {
3677 // Comparing signed-greater-than -1 checks if the sign bit is not set.
3678 if (Value *V = simplifySelectWithFakeICmpEq(CmpLHS, TrueVal, FalseVal,
3679 true))
3680 return V;
Sanjay Patel5f5eb582016-07-18 20:56:53 +00003681 }
3682
3683 if (CondVal->hasOneUse()) {
3684 const APInt *C;
3685 if (match(CmpRHS, m_APInt(C))) {
3686 // X < MIN ? T : F --> F
3687 if (Pred == ICmpInst::ICMP_SLT && C->isMinSignedValue())
3688 return FalseVal;
3689 // X < MIN ? T : F --> F
3690 if (Pred == ICmpInst::ICMP_ULT && C->isMinValue())
3691 return FalseVal;
3692 // X > MAX ? T : F --> F
3693 if (Pred == ICmpInst::ICMP_SGT && C->isMaxSignedValue())
3694 return FalseVal;
3695 // X > MAX ? T : F --> F
3696 if (Pred == ICmpInst::ICMP_UGT && C->isMaxValue())
3697 return FalseVal;
3698 }
3699 }
3700
3701 // If we have an equality comparison, then we know the value in one of the
3702 // arms of the select. See if substituting this value into the arm and
3703 // simplifying the result yields the same value as the other arm.
3704 if (Pred == ICmpInst::ICMP_EQ) {
3705 if (SimplifyWithOpReplaced(FalseVal, CmpLHS, CmpRHS, Q, MaxRecurse) ==
3706 TrueVal ||
3707 SimplifyWithOpReplaced(FalseVal, CmpRHS, CmpLHS, Q, MaxRecurse) ==
3708 TrueVal)
3709 return FalseVal;
3710 if (SimplifyWithOpReplaced(TrueVal, CmpLHS, CmpRHS, Q, MaxRecurse) ==
3711 FalseVal ||
3712 SimplifyWithOpReplaced(TrueVal, CmpRHS, CmpLHS, Q, MaxRecurse) ==
3713 FalseVal)
3714 return FalseVal;
3715 } else if (Pred == ICmpInst::ICMP_NE) {
3716 if (SimplifyWithOpReplaced(TrueVal, CmpLHS, CmpRHS, Q, MaxRecurse) ==
3717 FalseVal ||
3718 SimplifyWithOpReplaced(TrueVal, CmpRHS, CmpLHS, Q, MaxRecurse) ==
3719 FalseVal)
3720 return TrueVal;
3721 if (SimplifyWithOpReplaced(FalseVal, CmpLHS, CmpRHS, Q, MaxRecurse) ==
3722 TrueVal ||
3723 SimplifyWithOpReplaced(FalseVal, CmpRHS, CmpLHS, Q, MaxRecurse) ==
3724 TrueVal)
3725 return TrueVal;
3726 }
3727
3728 return nullptr;
3729}
3730
Sanjay Patel472cc782016-01-11 22:14:42 +00003731/// Given operands for a SelectInst, see if we can fold the result.
3732/// If not, this returns null.
Duncan Sandsb8cee002012-03-13 11:42:19 +00003733static Value *SimplifySelectInst(Value *CondVal, Value *TrueVal,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003734 Value *FalseVal, const SimplifyQuery &Q,
Duncan Sandsb8cee002012-03-13 11:42:19 +00003735 unsigned MaxRecurse) {
Chris Lattnerc707fa92010-04-20 05:32:14 +00003736 // select true, X, Y -> X
3737 // select false, X, Y -> Y
Benjamin Kramer5e1794e2014-01-24 17:09:53 +00003738 if (Constant *CB = dyn_cast<Constant>(CondVal)) {
3739 if (CB->isAllOnesValue())
3740 return TrueVal;
3741 if (CB->isNullValue())
3742 return FalseVal;
3743 }
Duncan Sands7e800d62010-11-14 11:23:23 +00003744
Chris Lattnerc707fa92010-04-20 05:32:14 +00003745 // select C, X, X -> X
Duncan Sands772749a2011-01-01 20:08:02 +00003746 if (TrueVal == FalseVal)
Chris Lattnerc707fa92010-04-20 05:32:14 +00003747 return TrueVal;
Duncan Sands7e800d62010-11-14 11:23:23 +00003748
Chris Lattnerc707fa92010-04-20 05:32:14 +00003749 if (isa<UndefValue>(CondVal)) { // select undef, X, Y -> X or Y
Daniel Berlin4d0fe642017-04-28 19:55:38 +00003750 if (isa<Constant>(FalseVal))
3751 return FalseVal;
3752 return TrueVal;
Chris Lattnerc707fa92010-04-20 05:32:14 +00003753 }
Dan Gohman54664ed2011-07-01 01:03:43 +00003754 if (isa<UndefValue>(TrueVal)) // select C, undef, X -> X
3755 return FalseVal;
3756 if (isa<UndefValue>(FalseVal)) // select C, X, undef -> X
3757 return TrueVal;
Duncan Sands7e800d62010-11-14 11:23:23 +00003758
Sanjay Patel5f5eb582016-07-18 20:56:53 +00003759 if (Value *V =
3760 simplifySelectWithICmpCond(CondVal, TrueVal, FalseVal, Q, MaxRecurse))
3761 return V;
David Majnemerc6a5e1d2014-11-27 06:32:46 +00003762
Craig Topper9f008862014-04-15 04:59:12 +00003763 return nullptr;
Chris Lattnerc707fa92010-04-20 05:32:14 +00003764}
3765
Duncan Sandsb8cee002012-03-13 11:42:19 +00003766Value *llvm::SimplifySelectInst(Value *Cond, Value *TrueVal, Value *FalseVal,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003767 const SimplifyQuery &Q) {
3768 return ::SimplifySelectInst(Cond, TrueVal, FalseVal, Q, RecursionLimit);
Duncan Sandsb8cee002012-03-13 11:42:19 +00003769}
3770
Sanjay Patel472cc782016-01-11 22:14:42 +00003771/// Given operands for an GetElementPtrInst, see if we can fold the result.
3772/// If not, this returns null.
David Blaikie4a2e73b2015-04-02 18:55:32 +00003773static Value *SimplifyGEPInst(Type *SrcTy, ArrayRef<Value *> Ops,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003774 const SimplifyQuery &Q, unsigned) {
Duncan Sands8a0f4862010-11-22 13:42:49 +00003775 // The type of the GEP pointer operand.
David Blaikie4a2e73b2015-04-02 18:55:32 +00003776 unsigned AS =
3777 cast<PointerType>(Ops[0]->getType()->getScalarType())->getAddressSpace();
Duncan Sands8a0f4862010-11-22 13:42:49 +00003778
Chris Lattner8574aba2009-11-27 00:29:05 +00003779 // getelementptr P -> P.
Jay Foadb992a632011-07-19 15:07:52 +00003780 if (Ops.size() == 1)
Chris Lattner8574aba2009-11-27 00:29:05 +00003781 return Ops[0];
3782
Nico Weber48c82402014-08-27 20:06:19 +00003783 // Compute the (pointer) type returned by the GEP instruction.
David Blaikie4a2e73b2015-04-02 18:55:32 +00003784 Type *LastType = GetElementPtrInst::getIndexedType(SrcTy, Ops.slice(1));
Nico Weber48c82402014-08-27 20:06:19 +00003785 Type *GEPTy = PointerType::get(LastType, AS);
3786 if (VectorType *VT = dyn_cast<VectorType>(Ops[0]->getType()))
3787 GEPTy = VectorType::get(GEPTy, VT->getNumElements());
Davide Italianoa9f047a2017-04-19 14:23:42 +00003788 else if (VectorType *VT = dyn_cast<VectorType>(Ops[1]->getType()))
3789 GEPTy = VectorType::get(GEPTy, VT->getNumElements());
Nico Weber48c82402014-08-27 20:06:19 +00003790
3791 if (isa<UndefValue>(Ops[0]))
Duncan Sands8a0f4862010-11-22 13:42:49 +00003792 return UndefValue::get(GEPTy);
Chris Lattner8574aba2009-11-27 00:29:05 +00003793
Jay Foadb992a632011-07-19 15:07:52 +00003794 if (Ops.size() == 2) {
Duncan Sandscf4bceb2010-11-21 13:53:09 +00003795 // getelementptr P, 0 -> P.
Benjamin Kramer5e1794e2014-01-24 17:09:53 +00003796 if (match(Ops[1], m_Zero()))
3797 return Ops[0];
Nico Weber48c82402014-08-27 20:06:19 +00003798
David Blaikie4a2e73b2015-04-02 18:55:32 +00003799 Type *Ty = SrcTy;
Mehdi Aminia28d91d2015-03-10 02:37:25 +00003800 if (Ty->isSized()) {
Nico Weber48c82402014-08-27 20:06:19 +00003801 Value *P;
3802 uint64_t C;
Mehdi Aminia28d91d2015-03-10 02:37:25 +00003803 uint64_t TyAllocSize = Q.DL.getTypeAllocSize(Ty);
Nico Weber48c82402014-08-27 20:06:19 +00003804 // getelementptr P, N -> P if P points to a type of zero size.
3805 if (TyAllocSize == 0)
Duncan Sandscf4bceb2010-11-21 13:53:09 +00003806 return Ops[0];
Nico Weber48c82402014-08-27 20:06:19 +00003807
3808 // The following transforms are only safe if the ptrtoint cast
3809 // doesn't truncate the pointers.
3810 if (Ops[1]->getType()->getScalarSizeInBits() ==
Mehdi Aminia28d91d2015-03-10 02:37:25 +00003811 Q.DL.getPointerSizeInBits(AS)) {
Nico Weber48c82402014-08-27 20:06:19 +00003812 auto PtrToIntOrZero = [GEPTy](Value *P) -> Value * {
3813 if (match(P, m_Zero()))
3814 return Constant::getNullValue(GEPTy);
3815 Value *Temp;
3816 if (match(P, m_PtrToInt(m_Value(Temp))))
David Majnemer11ca2972014-08-27 20:08:34 +00003817 if (Temp->getType() == GEPTy)
3818 return Temp;
Nico Weber48c82402014-08-27 20:06:19 +00003819 return nullptr;
3820 };
3821
3822 // getelementptr V, (sub P, V) -> P if P points to a type of size 1.
3823 if (TyAllocSize == 1 &&
3824 match(Ops[1], m_Sub(m_Value(P), m_PtrToInt(m_Specific(Ops[0])))))
3825 if (Value *R = PtrToIntOrZero(P))
3826 return R;
3827
3828 // getelementptr V, (ashr (sub P, V), C) -> Q
3829 // if P points to a type of size 1 << C.
3830 if (match(Ops[1],
3831 m_AShr(m_Sub(m_Value(P), m_PtrToInt(m_Specific(Ops[0]))),
3832 m_ConstantInt(C))) &&
3833 TyAllocSize == 1ULL << C)
3834 if (Value *R = PtrToIntOrZero(P))
3835 return R;
3836
3837 // getelementptr V, (sdiv (sub P, V), C) -> Q
3838 // if P points to a type of size C.
3839 if (match(Ops[1],
3840 m_SDiv(m_Sub(m_Value(P), m_PtrToInt(m_Specific(Ops[0]))),
3841 m_SpecificInt(TyAllocSize))))
3842 if (Value *R = PtrToIntOrZero(P))
3843 return R;
3844 }
Duncan Sandscf4bceb2010-11-21 13:53:09 +00003845 }
3846 }
Duncan Sands7e800d62010-11-14 11:23:23 +00003847
David Majnemerd1501372016-08-07 07:58:12 +00003848 if (Q.DL.getTypeAllocSize(LastType) == 1 &&
3849 all_of(Ops.slice(1).drop_back(1),
3850 [](Value *Idx) { return match(Idx, m_Zero()); })) {
3851 unsigned PtrWidth =
3852 Q.DL.getPointerSizeInBits(Ops[0]->getType()->getPointerAddressSpace());
3853 if (Q.DL.getTypeSizeInBits(Ops.back()->getType()) == PtrWidth) {
3854 APInt BasePtrOffset(PtrWidth, 0);
3855 Value *StrippedBasePtr =
3856 Ops[0]->stripAndAccumulateInBoundsConstantOffsets(Q.DL,
3857 BasePtrOffset);
3858
David Majnemer5c5df622016-08-16 06:13:46 +00003859 // gep (gep V, C), (sub 0, V) -> C
David Majnemerd1501372016-08-07 07:58:12 +00003860 if (match(Ops.back(),
3861 m_Sub(m_Zero(), m_PtrToInt(m_Specific(StrippedBasePtr))))) {
3862 auto *CI = ConstantInt::get(GEPTy->getContext(), BasePtrOffset);
3863 return ConstantExpr::getIntToPtr(CI, GEPTy);
3864 }
David Majnemer5c5df622016-08-16 06:13:46 +00003865 // gep (gep V, C), (xor V, -1) -> C-1
3866 if (match(Ops.back(),
3867 m_Xor(m_PtrToInt(m_Specific(StrippedBasePtr)), m_AllOnes()))) {
3868 auto *CI = ConstantInt::get(GEPTy->getContext(), BasePtrOffset - 1);
3869 return ConstantExpr::getIntToPtr(CI, GEPTy);
3870 }
David Majnemerd1501372016-08-07 07:58:12 +00003871 }
3872 }
3873
Chris Lattner8574aba2009-11-27 00:29:05 +00003874 // Check to see if this is constant foldable.
Craig Topperda8037f2017-06-04 22:41:56 +00003875 if (!all_of(Ops, [](Value *V) { return isa<Constant>(V); }))
3876 return nullptr;
Duncan Sands7e800d62010-11-14 11:23:23 +00003877
Joey Gouly61eaa632017-06-06 10:17:14 +00003878 auto *CE = ConstantExpr::getGetElementPtr(SrcTy, cast<Constant>(Ops[0]),
3879 Ops.slice(1));
3880 if (auto *CEFolded = ConstantFoldConstant(CE, Q.DL))
3881 return CEFolded;
3882 return CE;
Chris Lattner8574aba2009-11-27 00:29:05 +00003883}
3884
Manuel Jacob20c6d5b2016-01-17 22:46:43 +00003885Value *llvm::SimplifyGEPInst(Type *SrcTy, ArrayRef<Value *> Ops,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003886 const SimplifyQuery &Q) {
3887 return ::SimplifyGEPInst(SrcTy, Ops, Q, RecursionLimit);
Duncan Sandsb8cee002012-03-13 11:42:19 +00003888}
3889
Sanjay Patel472cc782016-01-11 22:14:42 +00003890/// Given operands for an InsertValueInst, see if we can fold the result.
3891/// If not, this returns null.
Duncan Sandsb8cee002012-03-13 11:42:19 +00003892static Value *SimplifyInsertValueInst(Value *Agg, Value *Val,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003893 ArrayRef<unsigned> Idxs, const SimplifyQuery &Q,
Duncan Sandsb8cee002012-03-13 11:42:19 +00003894 unsigned) {
Duncan Sandsfd26a952011-09-05 06:52:48 +00003895 if (Constant *CAgg = dyn_cast<Constant>(Agg))
3896 if (Constant *CVal = dyn_cast<Constant>(Val))
3897 return ConstantFoldInsertValueInstruction(CAgg, CVal, Idxs);
3898
3899 // insertvalue x, undef, n -> x
3900 if (match(Val, m_Undef()))
3901 return Agg;
3902
3903 // insertvalue x, (extractvalue y, n), n
3904 if (ExtractValueInst *EV = dyn_cast<ExtractValueInst>(Val))
Benjamin Kramer4b79c212011-09-05 18:16:19 +00003905 if (EV->getAggregateOperand()->getType() == Agg->getType() &&
3906 EV->getIndices() == Idxs) {
Duncan Sandsfd26a952011-09-05 06:52:48 +00003907 // insertvalue undef, (extractvalue y, n), n -> y
3908 if (match(Agg, m_Undef()))
3909 return EV->getAggregateOperand();
3910
3911 // insertvalue y, (extractvalue y, n), n -> y
3912 if (Agg == EV->getAggregateOperand())
3913 return Agg;
3914 }
3915
Craig Topper9f008862014-04-15 04:59:12 +00003916 return nullptr;
Duncan Sandsfd26a952011-09-05 06:52:48 +00003917}
3918
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003919Value *llvm::SimplifyInsertValueInst(Value *Agg, Value *Val,
3920 ArrayRef<unsigned> Idxs,
3921 const SimplifyQuery &Q) {
3922 return ::SimplifyInsertValueInst(Agg, Val, Idxs, Q, RecursionLimit);
3923}
3924
Sanjay Patel472cc782016-01-11 22:14:42 +00003925/// Given operands for an ExtractValueInst, see if we can fold the result.
3926/// If not, this returns null.
David Majnemer25a796e2015-07-13 01:15:46 +00003927static Value *SimplifyExtractValueInst(Value *Agg, ArrayRef<unsigned> Idxs,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003928 const SimplifyQuery &, unsigned) {
David Majnemer25a796e2015-07-13 01:15:46 +00003929 if (auto *CAgg = dyn_cast<Constant>(Agg))
3930 return ConstantFoldExtractValueInstruction(CAgg, Idxs);
3931
3932 // extractvalue x, (insertvalue y, elt, n), n -> elt
3933 unsigned NumIdxs = Idxs.size();
3934 for (auto *IVI = dyn_cast<InsertValueInst>(Agg); IVI != nullptr;
3935 IVI = dyn_cast<InsertValueInst>(IVI->getAggregateOperand())) {
3936 ArrayRef<unsigned> InsertValueIdxs = IVI->getIndices();
3937 unsigned NumInsertValueIdxs = InsertValueIdxs.size();
3938 unsigned NumCommonIdxs = std::min(NumInsertValueIdxs, NumIdxs);
3939 if (InsertValueIdxs.slice(0, NumCommonIdxs) ==
3940 Idxs.slice(0, NumCommonIdxs)) {
3941 if (NumIdxs == NumInsertValueIdxs)
3942 return IVI->getInsertedValueOperand();
3943 break;
3944 }
3945 }
3946
3947 return nullptr;
3948}
3949
3950Value *llvm::SimplifyExtractValueInst(Value *Agg, ArrayRef<unsigned> Idxs,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003951 const SimplifyQuery &Q) {
3952 return ::SimplifyExtractValueInst(Agg, Idxs, Q, RecursionLimit);
3953}
3954
Sanjay Patel472cc782016-01-11 22:14:42 +00003955/// Given operands for an ExtractElementInst, see if we can fold the result.
3956/// If not, this returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003957static Value *SimplifyExtractElementInst(Value *Vec, Value *Idx, const SimplifyQuery &,
David Majnemer599ca442015-07-13 01:15:53 +00003958 unsigned) {
3959 if (auto *CVec = dyn_cast<Constant>(Vec)) {
3960 if (auto *CIdx = dyn_cast<Constant>(Idx))
3961 return ConstantFoldExtractElementInstruction(CVec, CIdx);
3962
3963 // The index is not relevant if our vector is a splat.
3964 if (auto *Splat = CVec->getSplatValue())
3965 return Splat;
3966
3967 if (isa<UndefValue>(Vec))
3968 return UndefValue::get(Vec->getType()->getVectorElementType());
3969 }
3970
3971 // If extracting a specified index from the vector, see if we can recursively
3972 // find a previously computed scalar that was inserted into the vector.
David Majnemer8e335ca2015-08-18 22:18:22 +00003973 if (auto *IdxC = dyn_cast<ConstantInt>(Idx))
3974 if (Value *Elt = findScalarElement(Vec, IdxC->getZExtValue()))
David Majnemer599ca442015-07-13 01:15:53 +00003975 return Elt;
David Majnemer599ca442015-07-13 01:15:53 +00003976
3977 return nullptr;
3978}
3979
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003980Value *llvm::SimplifyExtractElementInst(Value *Vec, Value *Idx,
3981 const SimplifyQuery &Q) {
3982 return ::SimplifyExtractElementInst(Vec, Idx, Q, RecursionLimit);
3983}
3984
Sanjay Patel472cc782016-01-11 22:14:42 +00003985/// See if we can fold the given phi. If not, returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00003986static Value *SimplifyPHINode(PHINode *PN, const SimplifyQuery &Q) {
Duncan Sands7412f6e2010-11-17 04:30:22 +00003987 // If all of the PHI's incoming values are the same then replace the PHI node
3988 // with the common value.
Craig Topper9f008862014-04-15 04:59:12 +00003989 Value *CommonValue = nullptr;
Duncan Sands7412f6e2010-11-17 04:30:22 +00003990 bool HasUndefInput = false;
Pete Cooper833f34d2015-05-12 20:05:31 +00003991 for (Value *Incoming : PN->incoming_values()) {
Duncan Sands7412f6e2010-11-17 04:30:22 +00003992 // If the incoming value is the phi node itself, it can safely be skipped.
3993 if (Incoming == PN) continue;
3994 if (isa<UndefValue>(Incoming)) {
3995 // Remember that we saw an undef value, but otherwise ignore them.
3996 HasUndefInput = true;
3997 continue;
3998 }
3999 if (CommonValue && Incoming != CommonValue)
Craig Topper9f008862014-04-15 04:59:12 +00004000 return nullptr; // Not the same, bail out.
Duncan Sands7412f6e2010-11-17 04:30:22 +00004001 CommonValue = Incoming;
4002 }
4003
4004 // If CommonValue is null then all of the incoming values were either undef or
4005 // equal to the phi node itself.
4006 if (!CommonValue)
4007 return UndefValue::get(PN->getType());
4008
4009 // If we have a PHI node like phi(X, undef, X), where X is defined by some
4010 // instruction, we cannot return X as the result of the PHI node unless it
4011 // dominates the PHI block.
4012 if (HasUndefInput)
Craig Topper9f008862014-04-15 04:59:12 +00004013 return ValueDominatesPHI(CommonValue, PN, Q.DT) ? CommonValue : nullptr;
Duncan Sands7412f6e2010-11-17 04:30:22 +00004014
4015 return CommonValue;
4016}
4017
David Majnemer6774d612016-07-26 17:58:05 +00004018static Value *SimplifyCastInst(unsigned CastOpc, Value *Op,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004019 Type *Ty, const SimplifyQuery &Q, unsigned MaxRecurse) {
David Majnemer126de5d2016-07-25 03:39:21 +00004020 if (auto *C = dyn_cast<Constant>(Op))
David Majnemer6774d612016-07-26 17:58:05 +00004021 return ConstantFoldCastOperand(CastOpc, C, Ty, Q.DL);
Duncan Sands395ac42d2012-03-13 14:07:05 +00004022
David Majnemer6774d612016-07-26 17:58:05 +00004023 if (auto *CI = dyn_cast<CastInst>(Op)) {
4024 auto *Src = CI->getOperand(0);
4025 Type *SrcTy = Src->getType();
4026 Type *MidTy = CI->getType();
4027 Type *DstTy = Ty;
4028 if (Src->getType() == Ty) {
4029 auto FirstOp = static_cast<Instruction::CastOps>(CI->getOpcode());
4030 auto SecondOp = static_cast<Instruction::CastOps>(CastOpc);
4031 Type *SrcIntPtrTy =
4032 SrcTy->isPtrOrPtrVectorTy() ? Q.DL.getIntPtrType(SrcTy) : nullptr;
4033 Type *MidIntPtrTy =
4034 MidTy->isPtrOrPtrVectorTy() ? Q.DL.getIntPtrType(MidTy) : nullptr;
4035 Type *DstIntPtrTy =
4036 DstTy->isPtrOrPtrVectorTy() ? Q.DL.getIntPtrType(DstTy) : nullptr;
4037 if (CastInst::isEliminableCastPair(FirstOp, SecondOp, SrcTy, MidTy, DstTy,
4038 SrcIntPtrTy, MidIntPtrTy,
4039 DstIntPtrTy) == Instruction::BitCast)
4040 return Src;
4041 }
4042 }
David Majnemera90a6212016-07-26 05:52:29 +00004043
4044 // bitcast x -> x
David Majnemer6774d612016-07-26 17:58:05 +00004045 if (CastOpc == Instruction::BitCast)
4046 if (Op->getType() == Ty)
4047 return Op;
David Majnemera90a6212016-07-26 05:52:29 +00004048
4049 return nullptr;
4050}
4051
David Majnemer6774d612016-07-26 17:58:05 +00004052Value *llvm::SimplifyCastInst(unsigned CastOpc, Value *Op, Type *Ty,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004053 const SimplifyQuery &Q) {
4054 return ::SimplifyCastInst(CastOpc, Op, Ty, Q, RecursionLimit);
4055}
4056
Sanjay Patela3c297d2017-04-19 16:48:22 +00004057/// For the given destination element of a shuffle, peek through shuffles to
4058/// match a root vector source operand that contains that element in the same
4059/// vector lane (ie, the same mask index), so we can eliminate the shuffle(s).
4060static Value *foldIdentityShuffles(int DestElt, Value *Op0, Value *Op1,
Zvi Rackover558f86b2017-05-08 15:46:58 +00004061 int MaskVal, Value *RootVec,
Sanjay Patela3c297d2017-04-19 16:48:22 +00004062 unsigned MaxRecurse) {
4063 if (!MaxRecurse--)
4064 return nullptr;
4065
4066 // Bail out if any mask value is undefined. That kind of shuffle may be
4067 // simplified further based on demanded bits or other folds.
Sanjay Patela3c297d2017-04-19 16:48:22 +00004068 if (MaskVal == -1)
4069 return nullptr;
4070
4071 // The mask value chooses which source operand we need to look at next.
Sanjay Patela3c297d2017-04-19 16:48:22 +00004072 int InVecNumElts = Op0->getType()->getVectorNumElements();
Zvi Rackover558f86b2017-05-08 15:46:58 +00004073 int RootElt = MaskVal;
4074 Value *SourceOp = Op0;
4075 if (MaskVal >= InVecNumElts) {
Sanjay Patela3c297d2017-04-19 16:48:22 +00004076 RootElt = MaskVal - InVecNumElts;
4077 SourceOp = Op1;
4078 }
4079
4080 // If the source operand is a shuffle itself, look through it to find the
4081 // matching root vector.
4082 if (auto *SourceShuf = dyn_cast<ShuffleVectorInst>(SourceOp)) {
4083 return foldIdentityShuffles(
4084 DestElt, SourceShuf->getOperand(0), SourceShuf->getOperand(1),
Zvi Rackover558f86b2017-05-08 15:46:58 +00004085 SourceShuf->getMaskValue(RootElt), RootVec, MaxRecurse);
Sanjay Patela3c297d2017-04-19 16:48:22 +00004086 }
4087
4088 // TODO: Look through bitcasts? What if the bitcast changes the vector element
4089 // size?
4090
4091 // The source operand is not a shuffle. Initialize the root vector value for
4092 // this shuffle if that has not been done yet.
4093 if (!RootVec)
4094 RootVec = SourceOp;
4095
4096 // Give up as soon as a source operand does not match the existing root value.
4097 if (RootVec != SourceOp)
4098 return nullptr;
4099
4100 // The element must be coming from the same lane in the source vector
4101 // (although it may have crossed lanes in intermediate shuffles).
4102 if (RootElt != DestElt)
4103 return nullptr;
4104
4105 return RootVec;
4106}
4107
Zvi Rackover8f460652017-04-03 22:05:30 +00004108static Value *SimplifyShuffleVectorInst(Value *Op0, Value *Op1, Constant *Mask,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004109 Type *RetTy, const SimplifyQuery &Q,
Zvi Rackover8f460652017-04-03 22:05:30 +00004110 unsigned MaxRecurse) {
Zvi Rackover4086e132017-04-30 06:06:26 +00004111 if (isa<UndefValue>(Mask))
4112 return UndefValue::get(RetTy);
4113
Zvi Rackover30efd24d2017-04-11 21:37:02 +00004114 Type *InVecTy = Op0->getType();
Zvi Rackover8f460652017-04-03 22:05:30 +00004115 unsigned MaskNumElts = Mask->getType()->getVectorNumElements();
Zvi Rackover30efd24d2017-04-11 21:37:02 +00004116 unsigned InVecNumElts = InVecTy->getVectorNumElements();
Zvi Rackover8f460652017-04-03 22:05:30 +00004117
Zvi Rackover0411e462017-04-30 06:10:54 +00004118 SmallVector<int, 32> Indices;
4119 ShuffleVectorInst::getShuffleMask(Mask, Indices);
4120 assert(MaskNumElts == Indices.size() &&
4121 "Size of Indices not same as number of mask elements?");
4122
Zvi Rackover973ff7c2017-05-07 18:16:37 +00004123 // Canonicalization: If mask does not select elements from an input vector,
4124 // replace that input vector with undef.
Zvi Rackover8f460652017-04-03 22:05:30 +00004125 bool MaskSelects0 = false, MaskSelects1 = false;
4126 for (unsigned i = 0; i != MaskNumElts; ++i) {
Zvi Rackover0411e462017-04-30 06:10:54 +00004127 if (Indices[i] == -1)
Zvi Rackover8f460652017-04-03 22:05:30 +00004128 continue;
Zvi Rackover0411e462017-04-30 06:10:54 +00004129 if ((unsigned)Indices[i] < InVecNumElts)
Zvi Rackover8f460652017-04-03 22:05:30 +00004130 MaskSelects0 = true;
4131 else
4132 MaskSelects1 = true;
4133 }
Zvi Rackover973ff7c2017-05-07 18:16:37 +00004134 if (!MaskSelects0)
4135 Op0 = UndefValue::get(InVecTy);
4136 if (!MaskSelects1)
4137 Op1 = UndefValue::get(InVecTy);
4138
4139 auto *Op0Const = dyn_cast<Constant>(Op0);
4140 auto *Op1Const = dyn_cast<Constant>(Op1);
4141
4142 // If all operands are constant, constant fold the shuffle.
4143 if (Op0Const && Op1Const)
4144 return ConstantFoldShuffleVectorInstruction(Op0Const, Op1Const, Mask);
4145
4146 // Canonicalization: if only one input vector is constant, it shall be the
4147 // second one.
4148 if (Op0Const && !Op1Const) {
4149 std::swap(Op0, Op1);
Zvi Rackoverdfbd3d72017-05-08 12:40:18 +00004150 ShuffleVectorInst::commuteShuffleMask(Indices, InVecNumElts);
Zvi Rackover973ff7c2017-05-07 18:16:37 +00004151 }
Zvi Rackover30efd24d2017-04-11 21:37:02 +00004152
4153 // A shuffle of a splat is always the splat itself. Legal if the shuffle's
4154 // value type is same as the input vectors' type.
4155 if (auto *OpShuf = dyn_cast<ShuffleVectorInst>(Op0))
Zvi Rackover973ff7c2017-05-07 18:16:37 +00004156 if (isa<UndefValue>(Op1) && RetTy == InVecTy &&
Zvi Rackover30efd24d2017-04-11 21:37:02 +00004157 OpShuf->getMask()->getSplatValue())
4158 return Op0;
Zvi Rackover8f460652017-04-03 22:05:30 +00004159
Sanjay Patela3c297d2017-04-19 16:48:22 +00004160 // Don't fold a shuffle with undef mask elements. This may get folded in a
4161 // better way using demanded bits or other analysis.
4162 // TODO: Should we allow this?
Zvi Rackover0411e462017-04-30 06:10:54 +00004163 if (find(Indices, -1) != Indices.end())
4164 return nullptr;
Sanjay Patela3c297d2017-04-19 16:48:22 +00004165
4166 // Check if every element of this shuffle can be mapped back to the
4167 // corresponding element of a single root vector. If so, we don't need this
4168 // shuffle. This handles simple identity shuffles as well as chains of
4169 // shuffles that may widen/narrow and/or move elements across lanes and back.
4170 Value *RootVec = nullptr;
4171 for (unsigned i = 0; i != MaskNumElts; ++i) {
4172 // Note that recursion is limited for each vector element, so if any element
4173 // exceeds the limit, this will fail to simplify.
Zvi Rackover558f86b2017-05-08 15:46:58 +00004174 RootVec =
4175 foldIdentityShuffles(i, Op0, Op1, Indices[i], RootVec, MaxRecurse);
Sanjay Patela3c297d2017-04-19 16:48:22 +00004176
4177 // We can't replace a widening/narrowing shuffle with one of its operands.
4178 if (!RootVec || RootVec->getType() != RetTy)
4179 return nullptr;
4180 }
4181 return RootVec;
Zvi Rackover8f460652017-04-03 22:05:30 +00004182}
4183
4184/// Given operands for a ShuffleVectorInst, fold the result or return null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004185Value *llvm::SimplifyShuffleVectorInst(Value *Op0, Value *Op1, Constant *Mask,
4186 Type *RetTy, const SimplifyQuery &Q) {
4187 return ::SimplifyShuffleVectorInst(Op0, Op1, Mask, RetTy, Q, RecursionLimit);
Zvi Rackover8f460652017-04-03 22:05:30 +00004188}
4189
Chris Lattnera71e9d62009-11-10 00:55:12 +00004190//=== Helper functions for higher up the class hierarchy.
Chris Lattnerc1f19072009-11-09 23:28:39 +00004191
Sanjay Patel472cc782016-01-11 22:14:42 +00004192/// Given operands for a BinaryOperator, see if we can fold the result.
4193/// If not, this returns null.
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00004194static Value *SimplifyBinOp(unsigned Opcode, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004195 const SimplifyQuery &Q, unsigned MaxRecurse) {
Chris Lattnera71e9d62009-11-10 00:55:12 +00004196 switch (Opcode) {
Chris Lattner9e4aa022011-02-09 17:15:04 +00004197 case Instruction::Add:
Sanjay Patel1fd16f02017-04-01 18:40:30 +00004198 return SimplifyAddInst(LHS, RHS, false, false, Q, MaxRecurse);
Michael Ilsemand2b05e52012-12-12 00:29:16 +00004199 case Instruction::FAdd:
4200 return SimplifyFAddInst(LHS, RHS, FastMathFlags(), Q, MaxRecurse);
Chris Lattner9e4aa022011-02-09 17:15:04 +00004201 case Instruction::Sub:
Sanjay Patel1fd16f02017-04-01 18:40:30 +00004202 return SimplifySubInst(LHS, RHS, false, false, Q, MaxRecurse);
Michael Ilsemand2b05e52012-12-12 00:29:16 +00004203 case Instruction::FSub:
4204 return SimplifyFSubInst(LHS, RHS, FastMathFlags(), Q, MaxRecurse);
Sanjay Patel1fd16f02017-04-01 18:40:30 +00004205 case Instruction::Mul:
4206 return SimplifyMulInst(LHS, RHS, Q, MaxRecurse);
Michael Ilsemand2b05e52012-12-12 00:29:16 +00004207 case Instruction::FMul:
Sanjay Patel1fd16f02017-04-01 18:40:30 +00004208 return SimplifyFMulInst(LHS, RHS, FastMathFlags(), Q, MaxRecurse);
4209 case Instruction::SDiv:
4210 return SimplifySDivInst(LHS, RHS, Q, MaxRecurse);
4211 case Instruction::UDiv:
4212 return SimplifyUDivInst(LHS, RHS, Q, MaxRecurse);
Mehdi Aminicd3ca6f2015-02-23 18:30:25 +00004213 case Instruction::FDiv:
Sanjay Patel1fd16f02017-04-01 18:40:30 +00004214 return SimplifyFDivInst(LHS, RHS, FastMathFlags(), Q, MaxRecurse);
4215 case Instruction::SRem:
4216 return SimplifySRemInst(LHS, RHS, Q, MaxRecurse);
4217 case Instruction::URem:
4218 return SimplifyURemInst(LHS, RHS, Q, MaxRecurse);
Mehdi Aminicd3ca6f2015-02-23 18:30:25 +00004219 case Instruction::FRem:
Sanjay Patel1fd16f02017-04-01 18:40:30 +00004220 return SimplifyFRemInst(LHS, RHS, FastMathFlags(), Q, MaxRecurse);
Chris Lattner9e4aa022011-02-09 17:15:04 +00004221 case Instruction::Shl:
Sanjay Patel1fd16f02017-04-01 18:40:30 +00004222 return SimplifyShlInst(LHS, RHS, false, false, Q, MaxRecurse);
Chris Lattner9e4aa022011-02-09 17:15:04 +00004223 case Instruction::LShr:
Sanjay Patel1fd16f02017-04-01 18:40:30 +00004224 return SimplifyLShrInst(LHS, RHS, false, Q, MaxRecurse);
Chris Lattner9e4aa022011-02-09 17:15:04 +00004225 case Instruction::AShr:
Sanjay Patel1fd16f02017-04-01 18:40:30 +00004226 return SimplifyAShrInst(LHS, RHS, false, Q, MaxRecurse);
4227 case Instruction::And:
4228 return SimplifyAndInst(LHS, RHS, Q, MaxRecurse);
4229 case Instruction::Or:
4230 return SimplifyOrInst(LHS, RHS, Q, MaxRecurse);
4231 case Instruction::Xor:
4232 return SimplifyXorInst(LHS, RHS, Q, MaxRecurse);
Chris Lattnera71e9d62009-11-10 00:55:12 +00004233 default:
Craig Topper8ef20ea2017-04-06 18:59:08 +00004234 llvm_unreachable("Unexpected opcode");
Chris Lattnera71e9d62009-11-10 00:55:12 +00004235 }
4236}
Chris Lattnerc1f19072009-11-09 23:28:39 +00004237
Sanjay Patel472cc782016-01-11 22:14:42 +00004238/// Given operands for a BinaryOperator, see if we can fold the result.
4239/// If not, this returns null.
Michael Zolotukhin4e8598e2015-02-06 20:02:51 +00004240/// In contrast to SimplifyBinOp, try to use FastMathFlag when folding the
4241/// result. In case we don't need FastMathFlags, simply fall to SimplifyBinOp.
4242static Value *SimplifyFPBinOp(unsigned Opcode, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004243 const FastMathFlags &FMF, const SimplifyQuery &Q,
Michael Zolotukhin4e8598e2015-02-06 20:02:51 +00004244 unsigned MaxRecurse) {
4245 switch (Opcode) {
4246 case Instruction::FAdd:
4247 return SimplifyFAddInst(LHS, RHS, FMF, Q, MaxRecurse);
4248 case Instruction::FSub:
4249 return SimplifyFSubInst(LHS, RHS, FMF, Q, MaxRecurse);
4250 case Instruction::FMul:
4251 return SimplifyFMulInst(LHS, RHS, FMF, Q, MaxRecurse);
Zia Ansari394cef82016-12-08 23:27:40 +00004252 case Instruction::FDiv:
4253 return SimplifyFDivInst(LHS, RHS, FMF, Q, MaxRecurse);
Michael Zolotukhin4e8598e2015-02-06 20:02:51 +00004254 default:
4255 return SimplifyBinOp(Opcode, LHS, RHS, Q, MaxRecurse);
4256 }
4257}
4258
Duncan Sands7e800d62010-11-14 11:23:23 +00004259Value *llvm::SimplifyBinOp(unsigned Opcode, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004260 const SimplifyQuery &Q) {
4261 return ::SimplifyBinOp(Opcode, LHS, RHS, Q, RecursionLimit);
4262}
4263
Michael Zolotukhin4e8598e2015-02-06 20:02:51 +00004264Value *llvm::SimplifyFPBinOp(unsigned Opcode, Value *LHS, Value *RHS,
Daniel Berline8d74dc2017-04-26 04:10:00 +00004265 FastMathFlags FMF, const SimplifyQuery &Q) {
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004266 return ::SimplifyFPBinOp(Opcode, LHS, RHS, FMF, Q, RecursionLimit);
4267}
4268
Sanjay Patel472cc782016-01-11 22:14:42 +00004269/// Given operands for a CmpInst, see if we can fold the result.
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00004270static Value *SimplifyCmpInst(unsigned Predicate, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004271 const SimplifyQuery &Q, unsigned MaxRecurse) {
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00004272 if (CmpInst::isIntPredicate((CmpInst::Predicate)Predicate))
Duncan Sandsb8cee002012-03-13 11:42:19 +00004273 return SimplifyICmpInst(Predicate, LHS, RHS, Q, MaxRecurse);
Benjamin Kramerf4ebfa32015-07-10 14:02:02 +00004274 return SimplifyFCmpInst(Predicate, LHS, RHS, FastMathFlags(), Q, MaxRecurse);
Duncan Sandsf3b1bf12010-11-10 18:23:01 +00004275}
4276
4277Value *llvm::SimplifyCmpInst(unsigned Predicate, Value *LHS, Value *RHS,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004278 const SimplifyQuery &Q) {
4279 return ::SimplifyCmpInst(Predicate, LHS, RHS, Q, RecursionLimit);
4280}
4281
Michael Ilseman54857292013-02-07 19:26:05 +00004282static bool IsIdempotent(Intrinsic::ID ID) {
4283 switch (ID) {
4284 default: return false;
4285
4286 // Unary idempotent: f(f(x)) = f(x)
4287 case Intrinsic::fabs:
4288 case Intrinsic::floor:
4289 case Intrinsic::ceil:
4290 case Intrinsic::trunc:
4291 case Intrinsic::rint:
4292 case Intrinsic::nearbyint:
Hal Finkel171817e2013-08-07 22:49:12 +00004293 case Intrinsic::round:
Michael Ilseman54857292013-02-07 19:26:05 +00004294 return true;
4295 }
4296}
4297
Peter Collingbourne7dd8dbf2016-04-22 21:18:02 +00004298static Value *SimplifyRelativeLoad(Constant *Ptr, Constant *Offset,
4299 const DataLayout &DL) {
4300 GlobalValue *PtrSym;
4301 APInt PtrOffset;
4302 if (!IsConstantOffsetFromGlobal(Ptr, PtrSym, PtrOffset, DL))
4303 return nullptr;
4304
4305 Type *Int8PtrTy = Type::getInt8PtrTy(Ptr->getContext());
4306 Type *Int32Ty = Type::getInt32Ty(Ptr->getContext());
4307 Type *Int32PtrTy = Int32Ty->getPointerTo();
4308 Type *Int64Ty = Type::getInt64Ty(Ptr->getContext());
4309
4310 auto *OffsetConstInt = dyn_cast<ConstantInt>(Offset);
4311 if (!OffsetConstInt || OffsetConstInt->getType()->getBitWidth() > 64)
4312 return nullptr;
4313
4314 uint64_t OffsetInt = OffsetConstInt->getSExtValue();
4315 if (OffsetInt % 4 != 0)
4316 return nullptr;
4317
4318 Constant *C = ConstantExpr::getGetElementPtr(
4319 Int32Ty, ConstantExpr::getBitCast(Ptr, Int32PtrTy),
4320 ConstantInt::get(Int64Ty, OffsetInt / 4));
4321 Constant *Loaded = ConstantFoldLoadFromConstPtr(C, Int32Ty, DL);
4322 if (!Loaded)
4323 return nullptr;
4324
4325 auto *LoadedCE = dyn_cast<ConstantExpr>(Loaded);
4326 if (!LoadedCE)
4327 return nullptr;
4328
4329 if (LoadedCE->getOpcode() == Instruction::Trunc) {
4330 LoadedCE = dyn_cast<ConstantExpr>(LoadedCE->getOperand(0));
4331 if (!LoadedCE)
4332 return nullptr;
4333 }
4334
4335 if (LoadedCE->getOpcode() != Instruction::Sub)
4336 return nullptr;
4337
4338 auto *LoadedLHS = dyn_cast<ConstantExpr>(LoadedCE->getOperand(0));
4339 if (!LoadedLHS || LoadedLHS->getOpcode() != Instruction::PtrToInt)
4340 return nullptr;
4341 auto *LoadedLHSPtr = LoadedLHS->getOperand(0);
4342
4343 Constant *LoadedRHS = LoadedCE->getOperand(1);
4344 GlobalValue *LoadedRHSSym;
4345 APInt LoadedRHSOffset;
4346 if (!IsConstantOffsetFromGlobal(LoadedRHS, LoadedRHSSym, LoadedRHSOffset,
4347 DL) ||
4348 PtrSym != LoadedRHSSym || PtrOffset != LoadedRHSOffset)
4349 return nullptr;
4350
4351 return ConstantExpr::getBitCast(LoadedLHSPtr, Int8PtrTy);
4352}
4353
David Majnemer17a95aa2016-07-14 06:58:37 +00004354static bool maskIsAllZeroOrUndef(Value *Mask) {
4355 auto *ConstMask = dyn_cast<Constant>(Mask);
4356 if (!ConstMask)
4357 return false;
4358 if (ConstMask->isNullValue() || isa<UndefValue>(ConstMask))
4359 return true;
4360 for (unsigned I = 0, E = ConstMask->getType()->getVectorNumElements(); I != E;
4361 ++I) {
4362 if (auto *MaskElt = ConstMask->getAggregateElement(I))
4363 if (MaskElt->isNullValue() || isa<UndefValue>(MaskElt))
4364 continue;
4365 return false;
4366 }
4367 return true;
4368}
4369
Michael Ilseman54857292013-02-07 19:26:05 +00004370template <typename IterTy>
David Majnemer15032582015-05-22 03:56:46 +00004371static Value *SimplifyIntrinsic(Function *F, IterTy ArgBegin, IterTy ArgEnd,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004372 const SimplifyQuery &Q, unsigned MaxRecurse) {
David Majnemer15032582015-05-22 03:56:46 +00004373 Intrinsic::ID IID = F->getIntrinsicID();
4374 unsigned NumOperands = std::distance(ArgBegin, ArgEnd);
Michael Ilseman54857292013-02-07 19:26:05 +00004375
4376 // Unary Ops
Matt Arsenault1e0edbf2017-01-11 00:33:24 +00004377 if (NumOperands == 1) {
Matt Arsenault82606662017-01-11 00:57:54 +00004378 // Perform idempotent optimizations
4379 if (IsIdempotent(IID)) {
4380 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(*ArgBegin)) {
4381 if (II->getIntrinsicID() == IID)
4382 return II;
4383 }
Matt Arsenault1e0edbf2017-01-11 00:33:24 +00004384 }
4385
4386 switch (IID) {
4387 case Intrinsic::fabs: {
4388 if (SignBitMustBeZero(*ArgBegin, Q.TLI))
4389 return *ArgBegin;
Marcello Maggioni0616b5f2017-01-14 07:28:47 +00004390 return nullptr;
Matt Arsenault1e0edbf2017-01-11 00:33:24 +00004391 }
4392 default:
Matt Arsenault82606662017-01-11 00:57:54 +00004393 return nullptr;
Matt Arsenault1e0edbf2017-01-11 00:33:24 +00004394 }
4395 }
Michael Ilseman54857292013-02-07 19:26:05 +00004396
Matt Arsenault82606662017-01-11 00:57:54 +00004397 // Binary Ops
4398 if (NumOperands == 2) {
4399 Value *LHS = *ArgBegin;
4400 Value *RHS = *(ArgBegin + 1);
4401 Type *ReturnType = F->getReturnType();
4402
4403 switch (IID) {
4404 case Intrinsic::usub_with_overflow:
4405 case Intrinsic::ssub_with_overflow: {
4406 // X - X -> { 0, false }
4407 if (LHS == RHS)
4408 return Constant::getNullValue(ReturnType);
4409
4410 // X - undef -> undef
4411 // undef - X -> undef
4412 if (isa<UndefValue>(LHS) || isa<UndefValue>(RHS))
4413 return UndefValue::get(ReturnType);
4414
4415 return nullptr;
4416 }
4417 case Intrinsic::uadd_with_overflow:
4418 case Intrinsic::sadd_with_overflow: {
4419 // X + undef -> undef
Craig Topper77e07cc2017-05-24 17:05:28 +00004420 if (isa<UndefValue>(LHS) || isa<UndefValue>(RHS))
Matt Arsenault82606662017-01-11 00:57:54 +00004421 return UndefValue::get(ReturnType);
4422
4423 return nullptr;
4424 }
4425 case Intrinsic::umul_with_overflow:
4426 case Intrinsic::smul_with_overflow: {
Craig Topper77e07cc2017-05-24 17:05:28 +00004427 // 0 * X -> { 0, false }
Matt Arsenault82606662017-01-11 00:57:54 +00004428 // X * 0 -> { 0, false }
Craig Topper77e07cc2017-05-24 17:05:28 +00004429 if (match(LHS, m_Zero()) || match(RHS, m_Zero()))
Matt Arsenault82606662017-01-11 00:57:54 +00004430 return Constant::getNullValue(ReturnType);
4431
Craig Topper77e07cc2017-05-24 17:05:28 +00004432 // undef * X -> { 0, false }
Matt Arsenault82606662017-01-11 00:57:54 +00004433 // X * undef -> { 0, false }
Craig Topper77e07cc2017-05-24 17:05:28 +00004434 if (match(LHS, m_Undef()) || match(RHS, m_Undef()))
Matt Arsenault82606662017-01-11 00:57:54 +00004435 return Constant::getNullValue(ReturnType);
4436
4437 return nullptr;
4438 }
4439 case Intrinsic::load_relative: {
4440 Constant *C0 = dyn_cast<Constant>(LHS);
4441 Constant *C1 = dyn_cast<Constant>(RHS);
4442 if (C0 && C1)
4443 return SimplifyRelativeLoad(C0, C1, Q.DL);
4444 return nullptr;
4445 }
4446 default:
4447 return nullptr;
4448 }
4449 }
4450
4451 // Simplify calls to llvm.masked.load.*
4452 switch (IID) {
4453 case Intrinsic::masked_load: {
4454 Value *MaskArg = ArgBegin[2];
4455 Value *PassthruArg = ArgBegin[3];
4456 // If the mask is all zeros or undef, the "passthru" argument is the result.
4457 if (maskIsAllZeroOrUndef(MaskArg))
4458 return PassthruArg;
4459 return nullptr;
4460 }
4461 default:
4462 return nullptr;
4463 }
Michael Ilseman54857292013-02-07 19:26:05 +00004464}
4465
Chandler Carruth9dc35582012-12-28 11:30:55 +00004466template <typename IterTy>
Andrew Kaylor647025f2017-06-09 23:18:11 +00004467static Value *SimplifyCall(ImmutableCallSite CS, Value *V, IterTy ArgBegin,
4468 IterTy ArgEnd, const SimplifyQuery &Q,
4469 unsigned MaxRecurse) {
Chandler Carruthf6182152012-12-28 14:23:29 +00004470 Type *Ty = V->getType();
Chandler Carruth9dc35582012-12-28 11:30:55 +00004471 if (PointerType *PTy = dyn_cast<PointerType>(Ty))
4472 Ty = PTy->getElementType();
4473 FunctionType *FTy = cast<FunctionType>(Ty);
4474
Dan Gohman85977e62011-11-04 18:32:42 +00004475 // call undef -> undef
David Majnemerbb53d232016-06-25 07:37:30 +00004476 // call null -> undef
4477 if (isa<UndefValue>(V) || isa<ConstantPointerNull>(V))
Chandler Carruth9dc35582012-12-28 11:30:55 +00004478 return UndefValue::get(FTy->getReturnType());
Dan Gohman85977e62011-11-04 18:32:42 +00004479
Chandler Carruthf6182152012-12-28 14:23:29 +00004480 Function *F = dyn_cast<Function>(V);
4481 if (!F)
Craig Topper9f008862014-04-15 04:59:12 +00004482 return nullptr;
Chandler Carruthf6182152012-12-28 14:23:29 +00004483
David Majnemer15032582015-05-22 03:56:46 +00004484 if (F->isIntrinsic())
4485 if (Value *Ret = SimplifyIntrinsic(F, ArgBegin, ArgEnd, Q, MaxRecurse))
Michael Ilseman54857292013-02-07 19:26:05 +00004486 return Ret;
4487
Andrew Kaylor647025f2017-06-09 23:18:11 +00004488 if (!canConstantFoldCallTo(CS, F))
Craig Topper9f008862014-04-15 04:59:12 +00004489 return nullptr;
Chandler Carruthf6182152012-12-28 14:23:29 +00004490
4491 SmallVector<Constant *, 4> ConstantArgs;
4492 ConstantArgs.reserve(ArgEnd - ArgBegin);
4493 for (IterTy I = ArgBegin, E = ArgEnd; I != E; ++I) {
4494 Constant *C = dyn_cast<Constant>(*I);
4495 if (!C)
Craig Topper9f008862014-04-15 04:59:12 +00004496 return nullptr;
Chandler Carruthf6182152012-12-28 14:23:29 +00004497 ConstantArgs.push_back(C);
4498 }
4499
Andrew Kaylor647025f2017-06-09 23:18:11 +00004500 return ConstantFoldCall(CS, F, ConstantArgs, Q.TLI);
Dan Gohman85977e62011-11-04 18:32:42 +00004501}
4502
Andrew Kaylor647025f2017-06-09 23:18:11 +00004503Value *llvm::SimplifyCall(ImmutableCallSite CS, Value *V,
4504 User::op_iterator ArgBegin, User::op_iterator ArgEnd,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004505 const SimplifyQuery &Q) {
Andrew Kaylor647025f2017-06-09 23:18:11 +00004506 return ::SimplifyCall(CS, V, ArgBegin, ArgEnd, Q, RecursionLimit);
4507}
4508
4509Value *llvm::SimplifyCall(ImmutableCallSite CS, Value *V,
4510 ArrayRef<Value *> Args, const SimplifyQuery &Q) {
4511 return ::SimplifyCall(CS, V, Args.begin(), Args.end(), Q, RecursionLimit);
Chandler Carruth9dc35582012-12-28 11:30:55 +00004512}
4513
Sanjay Patel472cc782016-01-11 22:14:42 +00004514/// See if we can compute a simplified version of this instruction.
4515/// If not, this returns null.
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004516
Daniel Berlin4d0fe642017-04-28 19:55:38 +00004517Value *llvm::SimplifyInstruction(Instruction *I, const SimplifyQuery &SQ,
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004518 OptimizationRemarkEmitter *ORE) {
Daniel Berlin4d0fe642017-04-28 19:55:38 +00004519 const SimplifyQuery Q = SQ.CxtI ? SQ : SQ.getWithInstruction(I);
Duncan Sands64e41cf2010-11-17 08:35:29 +00004520 Value *Result;
4521
Chris Lattnerfb7f87d2009-11-10 01:08:51 +00004522 switch (I->getOpcode()) {
4523 default:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004524 Result = ConstantFoldInstruction(I, Q.DL, Q.TLI);
Duncan Sands64e41cf2010-11-17 08:35:29 +00004525 break;
Michael Ilsemanbb6f6912012-12-12 00:27:46 +00004526 case Instruction::FAdd:
4527 Result = SimplifyFAddInst(I->getOperand(0), I->getOperand(1),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004528 I->getFastMathFlags(), Q);
Michael Ilsemanbb6f6912012-12-12 00:27:46 +00004529 break;
Chris Lattner3d9823b2009-11-27 17:42:22 +00004530 case Instruction::Add:
Duncan Sands64e41cf2010-11-17 08:35:29 +00004531 Result = SimplifyAddInst(I->getOperand(0), I->getOperand(1),
4532 cast<BinaryOperator>(I)->hasNoSignedWrap(),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004533 cast<BinaryOperator>(I)->hasNoUnsignedWrap(), Q);
Duncan Sands64e41cf2010-11-17 08:35:29 +00004534 break;
Michael Ilsemanbb6f6912012-12-12 00:27:46 +00004535 case Instruction::FSub:
4536 Result = SimplifyFSubInst(I->getOperand(0), I->getOperand(1),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004537 I->getFastMathFlags(), Q);
Michael Ilsemanbb6f6912012-12-12 00:27:46 +00004538 break;
Duncan Sands0a2c41682010-12-15 14:07:39 +00004539 case Instruction::Sub:
4540 Result = SimplifySubInst(I->getOperand(0), I->getOperand(1),
4541 cast<BinaryOperator>(I)->hasNoSignedWrap(),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004542 cast<BinaryOperator>(I)->hasNoUnsignedWrap(), Q);
Duncan Sands0a2c41682010-12-15 14:07:39 +00004543 break;
Michael Ilsemanbe9137a2012-11-27 00:46:26 +00004544 case Instruction::FMul:
4545 Result = SimplifyFMulInst(I->getOperand(0), I->getOperand(1),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004546 I->getFastMathFlags(), Q);
Michael Ilsemanbe9137a2012-11-27 00:46:26 +00004547 break;
Duncan Sandsd0eb6d32010-12-21 14:00:22 +00004548 case Instruction::Mul:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004549 Result = SimplifyMulInst(I->getOperand(0), I->getOperand(1), Q);
Duncan Sandsd0eb6d32010-12-21 14:00:22 +00004550 break;
Duncan Sands771e82a2011-01-28 16:51:11 +00004551 case Instruction::SDiv:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004552 Result = SimplifySDivInst(I->getOperand(0), I->getOperand(1), Q);
Duncan Sands771e82a2011-01-28 16:51:11 +00004553 break;
4554 case Instruction::UDiv:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004555 Result = SimplifyUDivInst(I->getOperand(0), I->getOperand(1), Q);
Duncan Sands771e82a2011-01-28 16:51:11 +00004556 break;
Frits van Bommelc2549662011-01-29 15:26:31 +00004557 case Instruction::FDiv:
Mehdi Aminicd3ca6f2015-02-23 18:30:25 +00004558 Result = SimplifyFDivInst(I->getOperand(0), I->getOperand(1),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004559 I->getFastMathFlags(), Q);
Frits van Bommelc2549662011-01-29 15:26:31 +00004560 break;
Duncan Sandsa3e36992011-05-02 16:27:02 +00004561 case Instruction::SRem:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004562 Result = SimplifySRemInst(I->getOperand(0), I->getOperand(1), Q);
Duncan Sandsa3e36992011-05-02 16:27:02 +00004563 break;
4564 case Instruction::URem:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004565 Result = SimplifyURemInst(I->getOperand(0), I->getOperand(1), Q);
Duncan Sandsa3e36992011-05-02 16:27:02 +00004566 break;
4567 case Instruction::FRem:
Mehdi Aminicd3ca6f2015-02-23 18:30:25 +00004568 Result = SimplifyFRemInst(I->getOperand(0), I->getOperand(1),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004569 I->getFastMathFlags(), Q);
Duncan Sandsa3e36992011-05-02 16:27:02 +00004570 break;
Duncan Sands7f60dc12011-01-14 00:37:45 +00004571 case Instruction::Shl:
Chris Lattner9e4aa022011-02-09 17:15:04 +00004572 Result = SimplifyShlInst(I->getOperand(0), I->getOperand(1),
4573 cast<BinaryOperator>(I)->hasNoSignedWrap(),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004574 cast<BinaryOperator>(I)->hasNoUnsignedWrap(), Q);
Duncan Sands7f60dc12011-01-14 00:37:45 +00004575 break;
4576 case Instruction::LShr:
Chris Lattner9e4aa022011-02-09 17:15:04 +00004577 Result = SimplifyLShrInst(I->getOperand(0), I->getOperand(1),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004578 cast<BinaryOperator>(I)->isExact(), Q);
Duncan Sands7f60dc12011-01-14 00:37:45 +00004579 break;
4580 case Instruction::AShr:
Chris Lattner9e4aa022011-02-09 17:15:04 +00004581 Result = SimplifyAShrInst(I->getOperand(0), I->getOperand(1),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004582 cast<BinaryOperator>(I)->isExact(), Q);
Duncan Sands7f60dc12011-01-14 00:37:45 +00004583 break;
Chris Lattnerfb7f87d2009-11-10 01:08:51 +00004584 case Instruction::And:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004585 Result = SimplifyAndInst(I->getOperand(0), I->getOperand(1), Q);
Duncan Sands64e41cf2010-11-17 08:35:29 +00004586 break;
Chris Lattnerfb7f87d2009-11-10 01:08:51 +00004587 case Instruction::Or:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004588 Result = SimplifyOrInst(I->getOperand(0), I->getOperand(1), Q);
Duncan Sands64e41cf2010-11-17 08:35:29 +00004589 break;
Duncan Sandsc89ac072010-11-17 18:52:15 +00004590 case Instruction::Xor:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004591 Result = SimplifyXorInst(I->getOperand(0), I->getOperand(1), Q);
Duncan Sandsc89ac072010-11-17 18:52:15 +00004592 break;
Chris Lattnerfb7f87d2009-11-10 01:08:51 +00004593 case Instruction::ICmp:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004594 Result = SimplifyICmpInst(cast<ICmpInst>(I)->getPredicate(),
4595 I->getOperand(0), I->getOperand(1), Q);
Duncan Sands64e41cf2010-11-17 08:35:29 +00004596 break;
Chris Lattnerfb7f87d2009-11-10 01:08:51 +00004597 case Instruction::FCmp:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004598 Result =
4599 SimplifyFCmpInst(cast<FCmpInst>(I)->getPredicate(), I->getOperand(0),
4600 I->getOperand(1), I->getFastMathFlags(), Q);
Duncan Sands64e41cf2010-11-17 08:35:29 +00004601 break;
Chris Lattnerc707fa92010-04-20 05:32:14 +00004602 case Instruction::Select:
Duncan Sands64e41cf2010-11-17 08:35:29 +00004603 Result = SimplifySelectInst(I->getOperand(0), I->getOperand(1),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004604 I->getOperand(2), Q);
Duncan Sands64e41cf2010-11-17 08:35:29 +00004605 break;
Chris Lattner8574aba2009-11-27 00:29:05 +00004606 case Instruction::GetElementPtr: {
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004607 SmallVector<Value *, 8> Ops(I->op_begin(), I->op_end());
Manuel Jacob20c6d5b2016-01-17 22:46:43 +00004608 Result = SimplifyGEPInst(cast<GetElementPtrInst>(I)->getSourceElementType(),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004609 Ops, Q);
Duncan Sands64e41cf2010-11-17 08:35:29 +00004610 break;
Chris Lattner8574aba2009-11-27 00:29:05 +00004611 }
Duncan Sandsfd26a952011-09-05 06:52:48 +00004612 case Instruction::InsertValue: {
4613 InsertValueInst *IV = cast<InsertValueInst>(I);
4614 Result = SimplifyInsertValueInst(IV->getAggregateOperand(),
4615 IV->getInsertedValueOperand(),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004616 IV->getIndices(), Q);
Duncan Sandsfd26a952011-09-05 06:52:48 +00004617 break;
4618 }
David Majnemer25a796e2015-07-13 01:15:46 +00004619 case Instruction::ExtractValue: {
4620 auto *EVI = cast<ExtractValueInst>(I);
4621 Result = SimplifyExtractValueInst(EVI->getAggregateOperand(),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004622 EVI->getIndices(), Q);
David Majnemer25a796e2015-07-13 01:15:46 +00004623 break;
4624 }
David Majnemer599ca442015-07-13 01:15:53 +00004625 case Instruction::ExtractElement: {
4626 auto *EEI = cast<ExtractElementInst>(I);
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004627 Result = SimplifyExtractElementInst(EEI->getVectorOperand(),
4628 EEI->getIndexOperand(), Q);
David Majnemer599ca442015-07-13 01:15:53 +00004629 break;
4630 }
Zvi Rackover8f460652017-04-03 22:05:30 +00004631 case Instruction::ShuffleVector: {
4632 auto *SVI = cast<ShuffleVectorInst>(I);
4633 Result = SimplifyShuffleVectorInst(SVI->getOperand(0), SVI->getOperand(1),
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004634 SVI->getMask(), SVI->getType(), Q);
Zvi Rackover8f460652017-04-03 22:05:30 +00004635 break;
4636 }
Duncan Sands4581ddc2010-11-14 13:30:18 +00004637 case Instruction::PHI:
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004638 Result = SimplifyPHINode(cast<PHINode>(I), Q);
Duncan Sands64e41cf2010-11-17 08:35:29 +00004639 break;
Chandler Carruth9dc35582012-12-28 11:30:55 +00004640 case Instruction::Call: {
4641 CallSite CS(cast<CallInst>(I));
Andrew Kaylor647025f2017-06-09 23:18:11 +00004642 Result = SimplifyCall(CS, CS.getCalledValue(), CS.arg_begin(), CS.arg_end(),
4643 Q);
Dan Gohman85977e62011-11-04 18:32:42 +00004644 break;
Chandler Carruth9dc35582012-12-28 11:30:55 +00004645 }
David Majnemer6774d612016-07-26 17:58:05 +00004646#define HANDLE_CAST_INST(num, opc, clas) case Instruction::opc:
4647#include "llvm/IR/Instruction.def"
4648#undef HANDLE_CAST_INST
Daniel Berlin5e3fcb12017-04-26 04:09:56 +00004649 Result =
4650 SimplifyCastInst(I->getOpcode(), I->getOperand(0), I->getType(), Q);
David Majnemera90a6212016-07-26 05:52:29 +00004651 break;
Craig Topper81c03a72017-04-12 22:54:24 +00004652 case Instruction::Alloca:
4653 // No simplifications for Alloca and it can't be constant folded.
4654 Result = nullptr;
4655 break;
Chris Lattnerfb7f87d2009-11-10 01:08:51 +00004656 }
Duncan Sands64e41cf2010-11-17 08:35:29 +00004657
Hal Finkelf2199b22015-10-23 20:37:08 +00004658 // In general, it is possible for computeKnownBits to determine all bits in a
4659 // value even when the operands are not all constants.
Sanjay Patel8ca30ab2016-11-27 21:07:28 +00004660 if (!Result && I->getType()->isIntOrIntVectorTy()) {
Craig Topper8205a1a2017-05-24 16:53:07 +00004661 KnownBits Known = computeKnownBits(I, Q.DL, /*Depth*/ 0, Q.AC, I, Q.DT, ORE);
Craig Topper8189a872017-05-03 23:12:29 +00004662 if (Known.isConstant())
4663 Result = ConstantInt::get(I->getType(), Known.getConstant());
Hal Finkelf2199b22015-10-23 20:37:08 +00004664 }
4665
Duncan Sands64e41cf2010-11-17 08:35:29 +00004666 /// If called on unreachable code, the above logic may report that the
4667 /// instruction simplified to itself. Make life easier for users by
Duncan Sands019a4182010-12-15 11:02:22 +00004668 /// detecting that case here, returning a safe value instead.
4669 return Result == I ? UndefValue::get(I->getType()) : Result;
Chris Lattnerfb7f87d2009-11-10 01:08:51 +00004670}
4671
Sanjay Patelf44bd382016-01-20 18:59:48 +00004672/// \brief Implementation of recursive simplification through an instruction's
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004673/// uses.
Chris Lattner852d6d62009-11-10 22:26:15 +00004674///
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004675/// This is the common implementation of the recursive simplification routines.
4676/// If we have a pre-simplified value in 'SimpleV', that is forcibly used to
4677/// replace the instruction 'I'. Otherwise, we simply add 'I' to the list of
4678/// instructions to process and attempt to simplify it using
4679/// InstructionSimplify.
4680///
4681/// This routine returns 'true' only when *it* simplifies something. The passed
4682/// in simplified value does not count toward this.
4683static bool replaceAndRecursivelySimplifyImpl(Instruction *I, Value *SimpleV,
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004684 const TargetLibraryInfo *TLI,
Daniel Jasperaec2fa32016-12-19 08:22:17 +00004685 const DominatorTree *DT,
4686 AssumptionCache *AC) {
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004687 bool Simplified = false;
Chandler Carruth77e8bfb2012-03-24 22:34:26 +00004688 SmallSetVector<Instruction *, 8> Worklist;
Mehdi Aminia28d91d2015-03-10 02:37:25 +00004689 const DataLayout &DL = I->getModule()->getDataLayout();
Duncan Sands7e800d62010-11-14 11:23:23 +00004690
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004691 // If we have an explicit value to collapse to, do that round of the
4692 // simplification loop by hand initially.
4693 if (SimpleV) {
Chandler Carruthcdf47882014-03-09 03:16:01 +00004694 for (User *U : I->users())
4695 if (U != I)
4696 Worklist.insert(cast<Instruction>(U));
Duncan Sands7e800d62010-11-14 11:23:23 +00004697
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004698 // Replace the instruction with its simplified value.
4699 I->replaceAllUsesWith(SimpleV);
Chris Lattner19eff2a2010-07-15 06:36:08 +00004700
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004701 // Gracefully handle edge cases where the instruction is not wired into any
4702 // parent block.
David Majnemer909793f2016-08-04 04:24:02 +00004703 if (I->getParent() && !I->isEHPad() && !isa<TerminatorInst>(I) &&
4704 !I->mayHaveSideEffects())
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004705 I->eraseFromParent();
4706 } else {
Chandler Carruth77e8bfb2012-03-24 22:34:26 +00004707 Worklist.insert(I);
Chris Lattner852d6d62009-11-10 22:26:15 +00004708 }
Duncan Sands7e800d62010-11-14 11:23:23 +00004709
Chandler Carruth77e8bfb2012-03-24 22:34:26 +00004710 // Note that we must test the size on each iteration, the worklist can grow.
4711 for (unsigned Idx = 0; Idx != Worklist.size(); ++Idx) {
4712 I = Worklist[Idx];
Duncan Sands7e800d62010-11-14 11:23:23 +00004713
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004714 // See if this instruction simplifies.
Daniel Berlin4d0fe642017-04-28 19:55:38 +00004715 SimpleV = SimplifyInstruction(I, {DL, TLI, DT, AC});
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004716 if (!SimpleV)
4717 continue;
4718
4719 Simplified = true;
4720
4721 // Stash away all the uses of the old instruction so we can check them for
4722 // recursive simplifications after a RAUW. This is cheaper than checking all
4723 // uses of To on the recursive step in most cases.
Chandler Carruthcdf47882014-03-09 03:16:01 +00004724 for (User *U : I->users())
4725 Worklist.insert(cast<Instruction>(U));
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004726
4727 // Replace the instruction with its simplified value.
4728 I->replaceAllUsesWith(SimpleV);
4729
4730 // Gracefully handle edge cases where the instruction is not wired into any
4731 // parent block.
David Majnemer909793f2016-08-04 04:24:02 +00004732 if (I->getParent() && !I->isEHPad() && !isa<TerminatorInst>(I) &&
4733 !I->mayHaveSideEffects())
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004734 I->eraseFromParent();
4735 }
4736 return Simplified;
4737}
4738
Mehdi Aminia28d91d2015-03-10 02:37:25 +00004739bool llvm::recursivelySimplifyInstruction(Instruction *I,
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004740 const TargetLibraryInfo *TLI,
Daniel Jasperaec2fa32016-12-19 08:22:17 +00004741 const DominatorTree *DT,
4742 AssumptionCache *AC) {
4743 return replaceAndRecursivelySimplifyImpl(I, nullptr, TLI, DT, AC);
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004744}
4745
4746bool llvm::replaceAndRecursivelySimplify(Instruction *I, Value *SimpleV,
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004747 const TargetLibraryInfo *TLI,
Daniel Jasperaec2fa32016-12-19 08:22:17 +00004748 const DominatorTree *DT,
4749 AssumptionCache *AC) {
Chandler Carruthcf1b5852012-03-24 21:11:24 +00004750 assert(I != SimpleV && "replaceAndRecursivelySimplify(X,X) is not valid!");
4751 assert(SimpleV && "Must provide a simplified value.");
Daniel Jasperaec2fa32016-12-19 08:22:17 +00004752 return replaceAndRecursivelySimplifyImpl(I, SimpleV, TLI, DT, AC);
Chris Lattner852d6d62009-11-10 22:26:15 +00004753}
Daniel Berlin4d0fe642017-04-28 19:55:38 +00004754
4755namespace llvm {
4756const SimplifyQuery getBestSimplifyQuery(Pass &P, Function &F) {
4757 auto *DTWP = P.getAnalysisIfAvailable<DominatorTreeWrapperPass>();
4758 auto *DT = DTWP ? &DTWP->getDomTree() : nullptr;
4759 auto *TLIWP = P.getAnalysisIfAvailable<TargetLibraryInfoWrapperPass>();
4760 auto *TLI = TLIWP ? &TLIWP->getTLI() : nullptr;
4761 auto *ACWP = P.getAnalysisIfAvailable<AssumptionCacheTracker>();
4762 auto *AC = ACWP ? &ACWP->getAssumptionCache(F) : nullptr;
4763 return {F.getParent()->getDataLayout(), TLI, DT, AC};
4764}
4765
4766const SimplifyQuery getBestSimplifyQuery(LoopStandardAnalysisResults &AR,
4767 const DataLayout &DL) {
4768 return {DL, &AR.TLI, &AR.DT, &AR.AC};
4769}
4770
4771template <class T, class... TArgs>
4772const SimplifyQuery getBestSimplifyQuery(AnalysisManager<T, TArgs...> &AM,
4773 Function &F) {
4774 auto *DT = AM.template getCachedResult<DominatorTreeAnalysis>(F);
4775 auto *TLI = AM.template getCachedResult<TargetLibraryAnalysis>(F);
4776 auto *AC = AM.template getCachedResult<AssumptionAnalysis>(F);
4777 return {F.getParent()->getDataLayout(), TLI, DT, AC};
4778}
4779template const SimplifyQuery getBestSimplifyQuery(AnalysisManager<Function> &,
4780 Function &);
4781}