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Chris Lattner9f3c25a2009-11-09 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
11// that do not require creating new instructions. For example, this does
12// constant folding, and can handle identities like (X&0)->0.
13//
14//===----------------------------------------------------------------------===//
15
16#include "llvm/Analysis/InstructionSimplify.h"
17#include "llvm/Analysis/ConstantFolding.h"
Chris Lattner40d8c282009-11-10 22:26:15 +000018#include "llvm/Support/ValueHandle.h"
Chris Lattner9f3c25a2009-11-09 22:57:59 +000019#include "llvm/Instructions.h"
Chris Lattnerd06094f2009-11-10 00:55:12 +000020#include "llvm/Support/PatternMatch.h"
Chris Lattner9f3c25a2009-11-09 22:57:59 +000021using namespace llvm;
Chris Lattnerd06094f2009-11-10 00:55:12 +000022using namespace llvm::PatternMatch;
Chris Lattner9f3c25a2009-11-09 22:57:59 +000023
Chris Lattner8aee8ef2009-11-27 17:42:22 +000024/// SimplifyAddInst - Given operands for an Add, see if we can
25/// fold the result. If not, this returns null.
26Value *llvm::SimplifyAddInst(Value *Op0, Value *Op1, bool isNSW, bool isNUW,
27 const TargetData *TD) {
28 if (Constant *CLHS = dyn_cast<Constant>(Op0)) {
29 if (Constant *CRHS = dyn_cast<Constant>(Op1)) {
30 Constant *Ops[] = { CLHS, CRHS };
31 return ConstantFoldInstOperands(Instruction::Add, CLHS->getType(),
32 Ops, 2, TD);
33 }
34
35 // Canonicalize the constant to the RHS.
36 std::swap(Op0, Op1);
37 }
38
39 if (Constant *Op1C = dyn_cast<Constant>(Op1)) {
40 // X + undef -> undef
41 if (isa<UndefValue>(Op1C))
42 return Op1C;
43
44 // X + 0 --> X
45 if (Op1C->isNullValue())
46 return Op0;
47 }
48
49 // FIXME: Could pull several more out of instcombine.
50 return 0;
51}
52
Chris Lattnerd06094f2009-11-10 00:55:12 +000053/// SimplifyAndInst - Given operands for an And, see if we can
Chris Lattner9f3c25a2009-11-09 22:57:59 +000054/// fold the result. If not, this returns null.
Chris Lattner8aee8ef2009-11-27 17:42:22 +000055Value *llvm::SimplifyAndInst(Value *Op0, Value *Op1, const TargetData *TD) {
Chris Lattnerd06094f2009-11-10 00:55:12 +000056 if (Constant *CLHS = dyn_cast<Constant>(Op0)) {
57 if (Constant *CRHS = dyn_cast<Constant>(Op1)) {
58 Constant *Ops[] = { CLHS, CRHS };
59 return ConstantFoldInstOperands(Instruction::And, CLHS->getType(),
60 Ops, 2, TD);
61 }
62
63 // Canonicalize the constant to the RHS.
64 std::swap(Op0, Op1);
65 }
66
67 // X & undef -> 0
68 if (isa<UndefValue>(Op1))
69 return Constant::getNullValue(Op0->getType());
70
71 // X & X = X
72 if (Op0 == Op1)
73 return Op0;
74
75 // X & <0,0> = <0,0>
76 if (isa<ConstantAggregateZero>(Op1))
77 return Op1;
78
79 // X & <-1,-1> = X
80 if (ConstantVector *CP = dyn_cast<ConstantVector>(Op1))
81 if (CP->isAllOnesValue())
82 return Op0;
83
84 if (ConstantInt *Op1CI = dyn_cast<ConstantInt>(Op1)) {
85 // X & 0 = 0
86 if (Op1CI->isZero())
87 return Op1CI;
88 // X & -1 = X
89 if (Op1CI->isAllOnesValue())
90 return Op0;
91 }
92
93 // A & ~A = ~A & A = 0
94 Value *A, *B;
Chris Lattner70ce6d02009-11-10 02:04:54 +000095 if ((match(Op0, m_Not(m_Value(A))) && A == Op1) ||
96 (match(Op1, m_Not(m_Value(A))) && A == Op0))
Chris Lattnerd06094f2009-11-10 00:55:12 +000097 return Constant::getNullValue(Op0->getType());
98
99 // (A | ?) & A = A
100 if (match(Op0, m_Or(m_Value(A), m_Value(B))) &&
101 (A == Op1 || B == Op1))
102 return Op1;
103
104 // A & (A | ?) = A
105 if (match(Op1, m_Or(m_Value(A), m_Value(B))) &&
106 (A == Op0 || B == Op0))
107 return Op0;
108
Chris Lattner9f3c25a2009-11-09 22:57:59 +0000109 return 0;
110}
111
Chris Lattnerd06094f2009-11-10 00:55:12 +0000112/// SimplifyOrInst - Given operands for an Or, see if we can
113/// fold the result. If not, this returns null.
Chris Lattner8aee8ef2009-11-27 17:42:22 +0000114Value *llvm::SimplifyOrInst(Value *Op0, Value *Op1, const TargetData *TD) {
Chris Lattnerd06094f2009-11-10 00:55:12 +0000115 if (Constant *CLHS = dyn_cast<Constant>(Op0)) {
116 if (Constant *CRHS = dyn_cast<Constant>(Op1)) {
117 Constant *Ops[] = { CLHS, CRHS };
118 return ConstantFoldInstOperands(Instruction::Or, CLHS->getType(),
119 Ops, 2, TD);
120 }
121
122 // Canonicalize the constant to the RHS.
123 std::swap(Op0, Op1);
124 }
125
126 // X | undef -> -1
127 if (isa<UndefValue>(Op1))
128 return Constant::getAllOnesValue(Op0->getType());
129
130 // X | X = X
131 if (Op0 == Op1)
132 return Op0;
133
134 // X | <0,0> = X
135 if (isa<ConstantAggregateZero>(Op1))
136 return Op0;
137
138 // X | <-1,-1> = <-1,-1>
139 if (ConstantVector *CP = dyn_cast<ConstantVector>(Op1))
140 if (CP->isAllOnesValue())
141 return Op1;
142
143 if (ConstantInt *Op1CI = dyn_cast<ConstantInt>(Op1)) {
144 // X | 0 = X
145 if (Op1CI->isZero())
146 return Op0;
147 // X | -1 = -1
148 if (Op1CI->isAllOnesValue())
149 return Op1CI;
150 }
151
152 // A | ~A = ~A | A = -1
153 Value *A, *B;
Chris Lattner70ce6d02009-11-10 02:04:54 +0000154 if ((match(Op0, m_Not(m_Value(A))) && A == Op1) ||
155 (match(Op1, m_Not(m_Value(A))) && A == Op0))
Chris Lattnerd06094f2009-11-10 00:55:12 +0000156 return Constant::getAllOnesValue(Op0->getType());
157
158 // (A & ?) | A = A
159 if (match(Op0, m_And(m_Value(A), m_Value(B))) &&
160 (A == Op1 || B == Op1))
161 return Op1;
162
163 // A | (A & ?) = A
164 if (match(Op1, m_And(m_Value(A), m_Value(B))) &&
165 (A == Op0 || B == Op0))
166 return Op0;
167
168 return 0;
169}
170
171
Chris Lattner210c5d42009-11-09 23:55:12 +0000172static const Type *GetCompareTy(Value *Op) {
173 return CmpInst::makeCmpResultType(Op->getType());
174}
175
Chris Lattner9f3c25a2009-11-09 22:57:59 +0000176
Chris Lattner9dbb4292009-11-09 23:28:39 +0000177/// SimplifyICmpInst - Given operands for an ICmpInst, see if we can
178/// fold the result. If not, this returns null.
179Value *llvm::SimplifyICmpInst(unsigned Predicate, Value *LHS, Value *RHS,
180 const TargetData *TD) {
Chris Lattner9f3c25a2009-11-09 22:57:59 +0000181 CmpInst::Predicate Pred = (CmpInst::Predicate)Predicate;
Chris Lattner9dbb4292009-11-09 23:28:39 +0000182 assert(CmpInst::isIntPredicate(Pred) && "Not an integer compare!");
Chris Lattner9f3c25a2009-11-09 22:57:59 +0000183
Chris Lattnerd06094f2009-11-10 00:55:12 +0000184 if (Constant *CLHS = dyn_cast<Constant>(LHS)) {
Chris Lattner8f73dea2009-11-09 23:06:58 +0000185 if (Constant *CRHS = dyn_cast<Constant>(RHS))
186 return ConstantFoldCompareInstOperands(Pred, CLHS, CRHS, TD);
Chris Lattnerd06094f2009-11-10 00:55:12 +0000187
188 // If we have a constant, make sure it is on the RHS.
189 std::swap(LHS, RHS);
190 Pred = CmpInst::getSwappedPredicate(Pred);
191 }
Chris Lattner9f3c25a2009-11-09 22:57:59 +0000192
Chris Lattner210c5d42009-11-09 23:55:12 +0000193 // ITy - This is the return type of the compare we're considering.
194 const Type *ITy = GetCompareTy(LHS);
195
196 // icmp X, X -> true/false
Chris Lattner9f3c25a2009-11-09 22:57:59 +0000197 if (LHS == RHS)
Chris Lattner210c5d42009-11-09 23:55:12 +0000198 return ConstantInt::get(ITy, CmpInst::isTrueWhenEqual(Pred));
Chris Lattner9dbb4292009-11-09 23:28:39 +0000199
Chris Lattner210c5d42009-11-09 23:55:12 +0000200 if (isa<UndefValue>(RHS)) // X icmp undef -> undef
201 return UndefValue::get(ITy);
202
203 // icmp <global/alloca*/null>, <global/alloca*/null> - Global/Stack value
204 // addresses never equal each other! We already know that Op0 != Op1.
205 if ((isa<GlobalValue>(LHS) || isa<AllocaInst>(LHS) ||
206 isa<ConstantPointerNull>(LHS)) &&
207 (isa<GlobalValue>(RHS) || isa<AllocaInst>(RHS) ||
208 isa<ConstantPointerNull>(RHS)))
209 return ConstantInt::get(ITy, CmpInst::isFalseWhenEqual(Pred));
210
211 // See if we are doing a comparison with a constant.
212 if (ConstantInt *CI = dyn_cast<ConstantInt>(RHS)) {
213 // If we have an icmp le or icmp ge instruction, turn it into the
214 // appropriate icmp lt or icmp gt instruction. This allows us to rely on
215 // them being folded in the code below.
216 switch (Pred) {
217 default: break;
218 case ICmpInst::ICMP_ULE:
219 if (CI->isMaxValue(false)) // A <=u MAX -> TRUE
220 return ConstantInt::getTrue(CI->getContext());
221 break;
222 case ICmpInst::ICMP_SLE:
223 if (CI->isMaxValue(true)) // A <=s MAX -> TRUE
224 return ConstantInt::getTrue(CI->getContext());
225 break;
226 case ICmpInst::ICMP_UGE:
227 if (CI->isMinValue(false)) // A >=u MIN -> TRUE
228 return ConstantInt::getTrue(CI->getContext());
229 break;
230 case ICmpInst::ICMP_SGE:
231 if (CI->isMinValue(true)) // A >=s MIN -> TRUE
232 return ConstantInt::getTrue(CI->getContext());
233 break;
234 }
Chris Lattner210c5d42009-11-09 23:55:12 +0000235 }
236
237
Chris Lattner9f3c25a2009-11-09 22:57:59 +0000238 return 0;
239}
240
Chris Lattner9dbb4292009-11-09 23:28:39 +0000241/// SimplifyFCmpInst - Given operands for an FCmpInst, see if we can
242/// fold the result. If not, this returns null.
243Value *llvm::SimplifyFCmpInst(unsigned Predicate, Value *LHS, Value *RHS,
244 const TargetData *TD) {
245 CmpInst::Predicate Pred = (CmpInst::Predicate)Predicate;
246 assert(CmpInst::isFPPredicate(Pred) && "Not an FP compare!");
247
Chris Lattnerd06094f2009-11-10 00:55:12 +0000248 if (Constant *CLHS = dyn_cast<Constant>(LHS)) {
Chris Lattner9dbb4292009-11-09 23:28:39 +0000249 if (Constant *CRHS = dyn_cast<Constant>(RHS))
250 return ConstantFoldCompareInstOperands(Pred, CLHS, CRHS, TD);
Chris Lattnerd06094f2009-11-10 00:55:12 +0000251
252 // If we have a constant, make sure it is on the RHS.
253 std::swap(LHS, RHS);
254 Pred = CmpInst::getSwappedPredicate(Pred);
255 }
Chris Lattner9dbb4292009-11-09 23:28:39 +0000256
Chris Lattner210c5d42009-11-09 23:55:12 +0000257 // Fold trivial predicates.
258 if (Pred == FCmpInst::FCMP_FALSE)
259 return ConstantInt::get(GetCompareTy(LHS), 0);
260 if (Pred == FCmpInst::FCMP_TRUE)
261 return ConstantInt::get(GetCompareTy(LHS), 1);
262
Chris Lattner210c5d42009-11-09 23:55:12 +0000263 if (isa<UndefValue>(RHS)) // fcmp pred X, undef -> undef
264 return UndefValue::get(GetCompareTy(LHS));
265
266 // fcmp x,x -> true/false. Not all compares are foldable.
267 if (LHS == RHS) {
268 if (CmpInst::isTrueWhenEqual(Pred))
269 return ConstantInt::get(GetCompareTy(LHS), 1);
270 if (CmpInst::isFalseWhenEqual(Pred))
271 return ConstantInt::get(GetCompareTy(LHS), 0);
272 }
273
274 // Handle fcmp with constant RHS
275 if (Constant *RHSC = dyn_cast<Constant>(RHS)) {
276 // If the constant is a nan, see if we can fold the comparison based on it.
277 if (ConstantFP *CFP = dyn_cast<ConstantFP>(RHSC)) {
278 if (CFP->getValueAPF().isNaN()) {
279 if (FCmpInst::isOrdered(Pred)) // True "if ordered and foo"
280 return ConstantInt::getFalse(CFP->getContext());
281 assert(FCmpInst::isUnordered(Pred) &&
282 "Comparison must be either ordered or unordered!");
283 // True if unordered.
284 return ConstantInt::getTrue(CFP->getContext());
285 }
286 }
287 }
288
Chris Lattner9dbb4292009-11-09 23:28:39 +0000289 return 0;
290}
291
Chris Lattnerc514c1f2009-11-27 00:29:05 +0000292/// SimplifyGEPInst - Given operands for an GetElementPtrInst, see if we can
293/// fold the result. If not, this returns null.
294Value *llvm::SimplifyGEPInst(Value *const *Ops, unsigned NumOps,
295 const TargetData *TD) {
296 // getelementptr P -> P.
297 if (NumOps == 1)
298 return Ops[0];
299
300 // TODO.
301 //if (isa<UndefValue>(Ops[0]))
302 // return UndefValue::get(GEP.getType());
303
304 // getelementptr P, 0 -> P.
305 if (NumOps == 2)
306 if (ConstantInt *C = dyn_cast<ConstantInt>(Ops[1]))
307 if (C->isZero())
308 return Ops[0];
309
310 // Check to see if this is constant foldable.
311 for (unsigned i = 0; i != NumOps; ++i)
312 if (!isa<Constant>(Ops[i]))
313 return 0;
314
315 return ConstantExpr::getGetElementPtr(cast<Constant>(Ops[0]),
316 (Constant *const*)Ops+1, NumOps-1);
317}
318
319
Chris Lattnerd06094f2009-11-10 00:55:12 +0000320//=== Helper functions for higher up the class hierarchy.
Chris Lattner9dbb4292009-11-09 23:28:39 +0000321
Chris Lattnerd06094f2009-11-10 00:55:12 +0000322/// SimplifyBinOp - Given operands for a BinaryOperator, see if we can
323/// fold the result. If not, this returns null.
324Value *llvm::SimplifyBinOp(unsigned Opcode, Value *LHS, Value *RHS,
325 const TargetData *TD) {
326 switch (Opcode) {
327 case Instruction::And: return SimplifyAndInst(LHS, RHS, TD);
328 case Instruction::Or: return SimplifyOrInst(LHS, RHS, TD);
329 default:
330 if (Constant *CLHS = dyn_cast<Constant>(LHS))
331 if (Constant *CRHS = dyn_cast<Constant>(RHS)) {
332 Constant *COps[] = {CLHS, CRHS};
333 return ConstantFoldInstOperands(Opcode, LHS->getType(), COps, 2, TD);
334 }
335 return 0;
336 }
337}
Chris Lattner9dbb4292009-11-09 23:28:39 +0000338
339/// SimplifyCmpInst - Given operands for a CmpInst, see if we can
340/// fold the result.
341Value *llvm::SimplifyCmpInst(unsigned Predicate, Value *LHS, Value *RHS,
342 const TargetData *TD) {
343 if (CmpInst::isIntPredicate((CmpInst::Predicate)Predicate))
344 return SimplifyICmpInst(Predicate, LHS, RHS, TD);
345 return SimplifyFCmpInst(Predicate, LHS, RHS, TD);
346}
347
Chris Lattnere3453782009-11-10 01:08:51 +0000348
349/// SimplifyInstruction - See if we can compute a simplified version of this
350/// instruction. If not, this returns null.
351Value *llvm::SimplifyInstruction(Instruction *I, const TargetData *TD) {
352 switch (I->getOpcode()) {
353 default:
354 return ConstantFoldInstruction(I, TD);
Chris Lattner8aee8ef2009-11-27 17:42:22 +0000355 case Instruction::Add:
356 return SimplifyAddInst(I->getOperand(0), I->getOperand(1),
357 cast<BinaryOperator>(I)->hasNoSignedWrap(),
358 cast<BinaryOperator>(I)->hasNoUnsignedWrap(), TD);
Chris Lattnere3453782009-11-10 01:08:51 +0000359 case Instruction::And:
360 return SimplifyAndInst(I->getOperand(0), I->getOperand(1), TD);
361 case Instruction::Or:
362 return SimplifyOrInst(I->getOperand(0), I->getOperand(1), TD);
363 case Instruction::ICmp:
364 return SimplifyICmpInst(cast<ICmpInst>(I)->getPredicate(),
365 I->getOperand(0), I->getOperand(1), TD);
366 case Instruction::FCmp:
367 return SimplifyFCmpInst(cast<FCmpInst>(I)->getPredicate(),
368 I->getOperand(0), I->getOperand(1), TD);
Chris Lattnerc514c1f2009-11-27 00:29:05 +0000369 case Instruction::GetElementPtr: {
370 SmallVector<Value*, 8> Ops(I->op_begin(), I->op_end());
371 return SimplifyGEPInst(&Ops[0], Ops.size(), TD);
372 }
Chris Lattnere3453782009-11-10 01:08:51 +0000373 }
374}
375
Chris Lattner40d8c282009-11-10 22:26:15 +0000376/// ReplaceAndSimplifyAllUses - Perform From->replaceAllUsesWith(To) and then
377/// delete the From instruction. In addition to a basic RAUW, this does a
378/// recursive simplification of the newly formed instructions. This catches
379/// things where one simplification exposes other opportunities. This only
380/// simplifies and deletes scalar operations, it does not change the CFG.
381///
382void llvm::ReplaceAndSimplifyAllUses(Instruction *From, Value *To,
383 const TargetData *TD) {
384 assert(From != To && "ReplaceAndSimplifyAllUses(X,X) is not valid!");
385
386 // FromHandle - This keeps a weakvh on the from value so that we can know if
387 // it gets deleted out from under us in a recursive simplification.
388 WeakVH FromHandle(From);
389
390 while (!From->use_empty()) {
391 // Update the instruction to use the new value.
392 Use &U = From->use_begin().getUse();
393 Instruction *User = cast<Instruction>(U.getUser());
394 U = To;
395
396 // See if we can simplify it.
397 if (Value *V = SimplifyInstruction(User, TD)) {
398 // Recursively simplify this.
399 ReplaceAndSimplifyAllUses(User, V, TD);
400
401 // If the recursive simplification ended up revisiting and deleting 'From'
402 // then we're done.
403 if (FromHandle == 0)
404 return;
405 }
406 }
407 From->eraseFromParent();
408}
409