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Chris Lattnere6794492002-08-12 21:17:25 +00001//===- InstructionCombining.cpp - Combine multiple instructions -----------===//
John Criswell482202a2003-10-20 19:43:21 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Chris Lattnerca081252001-12-14 16:52:21 +00009//
10// InstructionCombining - Combine instructions to form fewer, simple
Chris Lattner99f48c62002-09-02 04:59:56 +000011// instructions. This pass does not modify the CFG This pass is where algebraic
12// simplification happens.
Chris Lattnerca081252001-12-14 16:52:21 +000013//
14// This pass combines things like:
Chris Lattnerdd1a86d2004-05-04 15:19:33 +000015// %Y = add int %X, 1
16// %Z = add int %Y, 1
Chris Lattnerca081252001-12-14 16:52:21 +000017// into:
Chris Lattnerdd1a86d2004-05-04 15:19:33 +000018// %Z = add int %X, 2
Chris Lattnerca081252001-12-14 16:52:21 +000019//
20// This is a simple worklist driven algorithm.
21//
Chris Lattner216c7b82003-09-10 05:29:43 +000022// This pass guarantees that the following canonicalizations are performed on
Chris Lattnerbfb1d032003-07-23 21:41:57 +000023// the program:
24// 1. If a binary operator has a constant operand, it is moved to the RHS
Chris Lattnerdeaa0dd2003-08-12 21:53:41 +000025// 2. Bitwise operators with constant operands are always grouped so that
26// shifts are performed first, then or's, then and's, then xor's.
Chris Lattnerbfb1d032003-07-23 21:41:57 +000027// 3. SetCC instructions are converted from <,>,<=,>= to ==,!= if possible
28// 4. All SetCC instructions on boolean values are replaced with logical ops
Chris Lattnerede3fe02003-08-13 04:18:28 +000029// 5. add X, X is represented as (X*2) => (X << 1)
30// 6. Multiplies with a power-of-two constant argument are transformed into
31// shifts.
Chris Lattnerbfb1d032003-07-23 21:41:57 +000032// N. This list is incomplete
33//
Chris Lattnerca081252001-12-14 16:52:21 +000034//===----------------------------------------------------------------------===//
35
Chris Lattner7d2a5392004-03-13 23:54:27 +000036#define DEBUG_TYPE "instcombine"
Chris Lattnerb4cfa7f2002-05-07 20:03:00 +000037#include "llvm/Transforms/Scalar.h"
Chris Lattner471bd762003-05-22 19:07:21 +000038#include "llvm/Instructions.h"
Chris Lattner51ea1272004-02-28 05:22:00 +000039#include "llvm/Intrinsics.h"
Chris Lattner04805fa2002-02-26 21:46:54 +000040#include "llvm/Pass.h"
Chris Lattner34428442003-05-27 16:40:51 +000041#include "llvm/Constants.h"
Chris Lattner1085bdf2002-11-04 16:18:53 +000042#include "llvm/DerivedTypes.h"
Chris Lattner0f1d8a32003-06-26 05:06:25 +000043#include "llvm/GlobalVariable.h"
Chris Lattnerf4ad1652003-11-02 05:57:39 +000044#include "llvm/Target/TargetData.h"
45#include "llvm/Transforms/Utils/BasicBlockUtils.h"
46#include "llvm/Transforms/Utils/Local.h"
Chris Lattner69193f92004-04-05 01:30:19 +000047#include "llvm/Support/CallSite.h"
48#include "llvm/Support/GetElementPtrTypeIterator.h"
Chris Lattner60a65912002-02-12 21:07:25 +000049#include "llvm/Support/InstIterator.h"
Chris Lattner260ab202002-04-18 17:39:14 +000050#include "llvm/Support/InstVisitor.h"
Chris Lattner7d2a5392004-03-13 23:54:27 +000051#include "Support/Debug.h"
Chris Lattnerbf3a0992002-10-01 22:38:41 +000052#include "Support/Statistic.h"
Chris Lattner053c0932002-05-14 15:24:07 +000053#include <algorithm>
Chris Lattner8427bff2003-12-07 01:24:23 +000054using namespace llvm;
Brian Gaeke960707c2003-11-11 22:41:34 +000055
Chris Lattner260ab202002-04-18 17:39:14 +000056namespace {
Chris Lattnerbf3a0992002-10-01 22:38:41 +000057 Statistic<> NumCombined ("instcombine", "Number of insts combined");
58 Statistic<> NumConstProp("instcombine", "Number of constant folds");
59 Statistic<> NumDeadInst ("instcombine", "Number of dead inst eliminated");
60
Chris Lattnerc8e66542002-04-27 06:56:12 +000061 class InstCombiner : public FunctionPass,
Chris Lattner260ab202002-04-18 17:39:14 +000062 public InstVisitor<InstCombiner, Instruction*> {
63 // Worklist of all of the instructions that need to be simplified.
64 std::vector<Instruction*> WorkList;
Chris Lattnerf4ad1652003-11-02 05:57:39 +000065 TargetData *TD;
Chris Lattner260ab202002-04-18 17:39:14 +000066
Chris Lattner51ea1272004-02-28 05:22:00 +000067 /// AddUsersToWorkList - When an instruction is simplified, add all users of
68 /// the instruction to the work lists because they might get more simplified
69 /// now.
70 ///
71 void AddUsersToWorkList(Instruction &I) {
Chris Lattner113f4f42002-06-25 16:13:24 +000072 for (Value::use_iterator UI = I.use_begin(), UE = I.use_end();
Chris Lattner260ab202002-04-18 17:39:14 +000073 UI != UE; ++UI)
74 WorkList.push_back(cast<Instruction>(*UI));
75 }
76
Chris Lattner51ea1272004-02-28 05:22:00 +000077 /// AddUsesToWorkList - When an instruction is simplified, add operands to
78 /// the work lists because they might get more simplified now.
79 ///
80 void AddUsesToWorkList(Instruction &I) {
81 for (unsigned i = 0, e = I.getNumOperands(); i != e; ++i)
82 if (Instruction *Op = dyn_cast<Instruction>(I.getOperand(i)))
83 WorkList.push_back(Op);
84 }
85
Chris Lattner99f48c62002-09-02 04:59:56 +000086 // removeFromWorkList - remove all instances of I from the worklist.
87 void removeFromWorkList(Instruction *I);
Chris Lattner260ab202002-04-18 17:39:14 +000088 public:
Chris Lattner113f4f42002-06-25 16:13:24 +000089 virtual bool runOnFunction(Function &F);
Chris Lattner260ab202002-04-18 17:39:14 +000090
Chris Lattnerf12cc842002-04-28 21:27:06 +000091 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Chris Lattnerf4ad1652003-11-02 05:57:39 +000092 AU.addRequired<TargetData>();
Chris Lattner820d9712002-10-21 20:00:28 +000093 AU.setPreservesCFG();
Chris Lattnerf12cc842002-04-28 21:27:06 +000094 }
95
Chris Lattner69193f92004-04-05 01:30:19 +000096 TargetData &getTargetData() const { return *TD; }
97
Chris Lattner260ab202002-04-18 17:39:14 +000098 // Visitation implementation - Implement instruction combining for different
99 // instruction types. The semantics are as follows:
100 // Return Value:
101 // null - No change was made
Chris Lattnere6794492002-08-12 21:17:25 +0000102 // I - Change was made, I is still valid, I may be dead though
Chris Lattner260ab202002-04-18 17:39:14 +0000103 // otherwise - Change was made, replace I with returned instruction
104 //
Chris Lattner113f4f42002-06-25 16:13:24 +0000105 Instruction *visitAdd(BinaryOperator &I);
106 Instruction *visitSub(BinaryOperator &I);
107 Instruction *visitMul(BinaryOperator &I);
108 Instruction *visitDiv(BinaryOperator &I);
109 Instruction *visitRem(BinaryOperator &I);
110 Instruction *visitAnd(BinaryOperator &I);
111 Instruction *visitOr (BinaryOperator &I);
112 Instruction *visitXor(BinaryOperator &I);
113 Instruction *visitSetCondInst(BinaryOperator &I);
Chris Lattnere8d6c602003-03-10 19:16:08 +0000114 Instruction *visitShiftInst(ShiftInst &I);
Chris Lattner113f4f42002-06-25 16:13:24 +0000115 Instruction *visitCastInst(CastInst &CI);
Chris Lattnerb909e8b2004-03-12 05:52:32 +0000116 Instruction *visitSelectInst(SelectInst &CI);
Chris Lattner970c33a2003-06-19 17:00:31 +0000117 Instruction *visitCallInst(CallInst &CI);
118 Instruction *visitInvokeInst(InvokeInst &II);
Chris Lattner113f4f42002-06-25 16:13:24 +0000119 Instruction *visitPHINode(PHINode &PN);
120 Instruction *visitGetElementPtrInst(GetElementPtrInst &GEP);
Chris Lattner1085bdf2002-11-04 16:18:53 +0000121 Instruction *visitAllocationInst(AllocationInst &AI);
Chris Lattner8427bff2003-12-07 01:24:23 +0000122 Instruction *visitFreeInst(FreeInst &FI);
Chris Lattner0f1d8a32003-06-26 05:06:25 +0000123 Instruction *visitLoadInst(LoadInst &LI);
Chris Lattner9eef8a72003-06-04 04:46:00 +0000124 Instruction *visitBranchInst(BranchInst &BI);
Chris Lattner260ab202002-04-18 17:39:14 +0000125
126 // visitInstruction - Specify what to return for unhandled instructions...
Chris Lattner113f4f42002-06-25 16:13:24 +0000127 Instruction *visitInstruction(Instruction &I) { return 0; }
Chris Lattner6d14f2a2002-08-09 23:47:40 +0000128
Chris Lattner970c33a2003-06-19 17:00:31 +0000129 private:
Chris Lattneraec3d942003-10-07 22:32:43 +0000130 Instruction *visitCallSite(CallSite CS);
Chris Lattner970c33a2003-06-19 17:00:31 +0000131 bool transformConstExprCastCall(CallSite CS);
132
Chris Lattner69193f92004-04-05 01:30:19 +0000133 public:
Chris Lattner6d14f2a2002-08-09 23:47:40 +0000134 // InsertNewInstBefore - insert an instruction New before instruction Old
135 // in the program. Add the new instruction to the worklist.
136 //
Chris Lattnere79e8542004-02-23 06:38:22 +0000137 Value *InsertNewInstBefore(Instruction *New, Instruction &Old) {
Chris Lattner65217ff2002-08-23 18:32:43 +0000138 assert(New && New->getParent() == 0 &&
139 "New instruction already inserted into a basic block!");
Chris Lattner6d14f2a2002-08-09 23:47:40 +0000140 BasicBlock *BB = Old.getParent();
141 BB->getInstList().insert(&Old, New); // Insert inst
142 WorkList.push_back(New); // Add to worklist
Chris Lattnere79e8542004-02-23 06:38:22 +0000143 return New;
Chris Lattner6d14f2a2002-08-09 23:47:40 +0000144 }
145
146 // ReplaceInstUsesWith - This method is to be used when an instruction is
147 // found to be dead, replacable with another preexisting expression. Here
148 // we add all uses of I to the worklist, replace all uses of I with the new
149 // value, then return I, so that the inst combiner will know that I was
150 // modified.
151 //
152 Instruction *ReplaceInstUsesWith(Instruction &I, Value *V) {
Chris Lattner51ea1272004-02-28 05:22:00 +0000153 AddUsersToWorkList(I); // Add all modified instrs to worklist
Chris Lattner8953b902004-04-05 02:10:19 +0000154 if (&I != V) {
155 I.replaceAllUsesWith(V);
156 return &I;
157 } else {
158 // If we are replacing the instruction with itself, this must be in a
159 // segment of unreachable code, so just clobber the instruction.
160 I.replaceAllUsesWith(Constant::getNullValue(I.getType()));
161 return &I;
162 }
Chris Lattner6d14f2a2002-08-09 23:47:40 +0000163 }
Chris Lattner51ea1272004-02-28 05:22:00 +0000164
165 // EraseInstFromFunction - When dealing with an instruction that has side
166 // effects or produces a void value, we can't rely on DCE to delete the
167 // instruction. Instead, visit methods should return the value returned by
168 // this function.
169 Instruction *EraseInstFromFunction(Instruction &I) {
170 assert(I.use_empty() && "Cannot erase instruction that is used!");
171 AddUsesToWorkList(I);
172 removeFromWorkList(&I);
173 I.getParent()->getInstList().erase(&I);
174 return 0; // Don't do anything with FI
175 }
176
177
Chris Lattner3ac7c262003-08-13 20:16:26 +0000178 private:
Chris Lattnerdfae8be2003-07-24 17:35:25 +0000179 /// InsertOperandCastBefore - This inserts a cast of V to DestTy before the
180 /// InsertBefore instruction. This is specialized a bit to avoid inserting
181 /// casts that are known to not do anything...
182 ///
183 Value *InsertOperandCastBefore(Value *V, const Type *DestTy,
184 Instruction *InsertBefore);
185
Chris Lattner7fb29e12003-03-11 00:12:48 +0000186 // SimplifyCommutative - This performs a few simplifications for commutative
187 // operators...
188 bool SimplifyCommutative(BinaryOperator &I);
Chris Lattnerba1cb382003-09-19 17:17:26 +0000189
190 Instruction *OptAndOp(Instruction *Op, ConstantIntegral *OpRHS,
191 ConstantIntegral *AndRHS, BinaryOperator &TheAnd);
Chris Lattner260ab202002-04-18 17:39:14 +0000192 };
Chris Lattnerb28b6802002-07-23 18:06:35 +0000193
Chris Lattnerc8b70922002-07-26 21:12:46 +0000194 RegisterOpt<InstCombiner> X("instcombine", "Combine redundant instructions");
Chris Lattner260ab202002-04-18 17:39:14 +0000195}
196
Chris Lattnerdcf240a2003-03-10 21:43:22 +0000197// getComplexity: Assign a complexity or rank value to LLVM Values...
198// 0 -> Constant, 1 -> Other, 2 -> Argument, 2 -> Unary, 3 -> OtherInst
199static unsigned getComplexity(Value *V) {
200 if (isa<Instruction>(V)) {
201 if (BinaryOperator::isNeg(V) || BinaryOperator::isNot(V))
202 return 2;
203 return 3;
204 }
205 if (isa<Argument>(V)) return 2;
206 return isa<Constant>(V) ? 0 : 1;
207}
Chris Lattner260ab202002-04-18 17:39:14 +0000208
Chris Lattner7fb29e12003-03-11 00:12:48 +0000209// isOnlyUse - Return true if this instruction will be deleted if we stop using
210// it.
211static bool isOnlyUse(Value *V) {
Chris Lattnerf95d9b92003-10-15 16:48:29 +0000212 return V->hasOneUse() || isa<Constant>(V);
Chris Lattner7fb29e12003-03-11 00:12:48 +0000213}
214
Chris Lattnere79e8542004-02-23 06:38:22 +0000215// getSignedIntegralType - Given an unsigned integral type, return the signed
216// version of it that has the same size.
217static const Type *getSignedIntegralType(const Type *Ty) {
218 switch (Ty->getPrimitiveID()) {
219 default: assert(0 && "Invalid unsigned integer type!"); abort();
220 case Type::UByteTyID: return Type::SByteTy;
221 case Type::UShortTyID: return Type::ShortTy;
222 case Type::UIntTyID: return Type::IntTy;
223 case Type::ULongTyID: return Type::LongTy;
224 }
225}
226
Chris Lattner92295c52004-03-12 23:53:13 +0000227// getUnsignedIntegralType - Given an signed integral type, return the unsigned
228// version of it that has the same size.
229static const Type *getUnsignedIntegralType(const Type *Ty) {
230 switch (Ty->getPrimitiveID()) {
231 default: assert(0 && "Invalid signed integer type!"); abort();
232 case Type::SByteTyID: return Type::UByteTy;
233 case Type::ShortTyID: return Type::UShortTy;
234 case Type::IntTyID: return Type::UIntTy;
235 case Type::LongTyID: return Type::ULongTy;
236 }
237}
238
Chris Lattnere79e8542004-02-23 06:38:22 +0000239// getPromotedType - Return the specified type promoted as it would be to pass
240// though a va_arg area...
241static const Type *getPromotedType(const Type *Ty) {
242 switch (Ty->getPrimitiveID()) {
243 case Type::SByteTyID:
244 case Type::ShortTyID: return Type::IntTy;
245 case Type::UByteTyID:
246 case Type::UShortTyID: return Type::UIntTy;
247 case Type::FloatTyID: return Type::DoubleTy;
248 default: return Ty;
249 }
250}
251
Chris Lattnerdcf240a2003-03-10 21:43:22 +0000252// SimplifyCommutative - This performs a few simplifications for commutative
253// operators:
Chris Lattner260ab202002-04-18 17:39:14 +0000254//
Chris Lattnerdcf240a2003-03-10 21:43:22 +0000255// 1. Order operands such that they are listed from right (least complex) to
256// left (most complex). This puts constants before unary operators before
257// binary operators.
258//
Chris Lattner7fb29e12003-03-11 00:12:48 +0000259// 2. Transform: (op (op V, C1), C2) ==> (op V, (op C1, C2))
260// 3. Transform: (op (op V1, C1), (op V2, C2)) ==> (op (op V1, V2), (op C1,C2))
Chris Lattnerdcf240a2003-03-10 21:43:22 +0000261//
Chris Lattner7fb29e12003-03-11 00:12:48 +0000262bool InstCombiner::SimplifyCommutative(BinaryOperator &I) {
Chris Lattnerdcf240a2003-03-10 21:43:22 +0000263 bool Changed = false;
264 if (getComplexity(I.getOperand(0)) < getComplexity(I.getOperand(1)))
265 Changed = !I.swapOperands();
266
267 if (!I.isAssociative()) return Changed;
268 Instruction::BinaryOps Opcode = I.getOpcode();
Chris Lattner7fb29e12003-03-11 00:12:48 +0000269 if (BinaryOperator *Op = dyn_cast<BinaryOperator>(I.getOperand(0)))
270 if (Op->getOpcode() == Opcode && isa<Constant>(Op->getOperand(1))) {
271 if (isa<Constant>(I.getOperand(1))) {
Chris Lattner34428442003-05-27 16:40:51 +0000272 Constant *Folded = ConstantExpr::get(I.getOpcode(),
273 cast<Constant>(I.getOperand(1)),
274 cast<Constant>(Op->getOperand(1)));
Chris Lattner7fb29e12003-03-11 00:12:48 +0000275 I.setOperand(0, Op->getOperand(0));
276 I.setOperand(1, Folded);
277 return true;
278 } else if (BinaryOperator *Op1=dyn_cast<BinaryOperator>(I.getOperand(1)))
279 if (Op1->getOpcode() == Opcode && isa<Constant>(Op1->getOperand(1)) &&
280 isOnlyUse(Op) && isOnlyUse(Op1)) {
281 Constant *C1 = cast<Constant>(Op->getOperand(1));
282 Constant *C2 = cast<Constant>(Op1->getOperand(1));
283
284 // Fold (op (op V1, C1), (op V2, C2)) ==> (op (op V1, V2), (op C1,C2))
Chris Lattner34428442003-05-27 16:40:51 +0000285 Constant *Folded = ConstantExpr::get(I.getOpcode(), C1, C2);
Chris Lattner7fb29e12003-03-11 00:12:48 +0000286 Instruction *New = BinaryOperator::create(Opcode, Op->getOperand(0),
287 Op1->getOperand(0),
288 Op1->getName(), &I);
289 WorkList.push_back(New);
290 I.setOperand(0, New);
291 I.setOperand(1, Folded);
292 return true;
293 }
Chris Lattnerdcf240a2003-03-10 21:43:22 +0000294 }
Chris Lattnerdcf240a2003-03-10 21:43:22 +0000295 return Changed;
Chris Lattner260ab202002-04-18 17:39:14 +0000296}
Chris Lattnerca081252001-12-14 16:52:21 +0000297
Chris Lattnerbb74e222003-03-10 23:06:50 +0000298// dyn_castNegVal - Given a 'sub' instruction, return the RHS of the instruction
299// if the LHS is a constant zero (which is the 'negate' form).
Chris Lattner9fa53de2002-05-06 16:49:18 +0000300//
Chris Lattnerbb74e222003-03-10 23:06:50 +0000301static inline Value *dyn_castNegVal(Value *V) {
302 if (BinaryOperator::isNeg(V))
303 return BinaryOperator::getNegArgument(cast<BinaryOperator>(V));
304
Chris Lattner9244df62003-04-30 22:19:10 +0000305 // Constants can be considered to be negated values if they can be folded...
306 if (Constant *C = dyn_cast<Constant>(V))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000307 return ConstantExpr::getSub(Constant::getNullValue(V->getType()), C);
Chris Lattnerbb74e222003-03-10 23:06:50 +0000308 return 0;
Chris Lattner9fa53de2002-05-06 16:49:18 +0000309}
310
Chris Lattnerc1e7cc02004-01-12 19:35:11 +0000311static Constant *NotConstant(Constant *C) {
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000312 return ConstantExpr::getXor(C,
313 ConstantIntegral::getAllOnesValue(C->getType()));
Chris Lattnerc1e7cc02004-01-12 19:35:11 +0000314}
315
Chris Lattnerbb74e222003-03-10 23:06:50 +0000316static inline Value *dyn_castNotVal(Value *V) {
317 if (BinaryOperator::isNot(V))
318 return BinaryOperator::getNotArgument(cast<BinaryOperator>(V));
319
320 // Constants can be considered to be not'ed values...
Chris Lattnerdd65d862003-04-30 22:34:06 +0000321 if (ConstantIntegral *C = dyn_cast<ConstantIntegral>(V))
Chris Lattnerc1e7cc02004-01-12 19:35:11 +0000322 return NotConstant(C);
Chris Lattnerbb74e222003-03-10 23:06:50 +0000323 return 0;
324}
325
Chris Lattner7fb29e12003-03-11 00:12:48 +0000326// dyn_castFoldableMul - If this value is a multiply that can be folded into
327// other computations (because it has a constant operand), return the
328// non-constant operand of the multiply.
329//
330static inline Value *dyn_castFoldableMul(Value *V) {
Chris Lattnerf95d9b92003-10-15 16:48:29 +0000331 if (V->hasOneUse() && V->getType()->isInteger())
Chris Lattner7fb29e12003-03-11 00:12:48 +0000332 if (Instruction *I = dyn_cast<Instruction>(V))
333 if (I->getOpcode() == Instruction::Mul)
334 if (isa<Constant>(I->getOperand(1)))
335 return I->getOperand(0);
336 return 0;
Chris Lattner3082c5a2003-02-18 19:28:33 +0000337}
Chris Lattner31ae8632002-08-14 17:51:49 +0000338
Chris Lattner7fb29e12003-03-11 00:12:48 +0000339// dyn_castMaskingAnd - If this value is an And instruction masking a value with
340// a constant, return the constant being anded with.
341//
Chris Lattner01d56392003-08-12 19:17:27 +0000342template<class ValueType>
343static inline Constant *dyn_castMaskingAnd(ValueType *V) {
Chris Lattner7fb29e12003-03-11 00:12:48 +0000344 if (Instruction *I = dyn_cast<Instruction>(V))
345 if (I->getOpcode() == Instruction::And)
346 return dyn_cast<Constant>(I->getOperand(1));
347
348 // If this is a constant, it acts just like we were masking with it.
349 return dyn_cast<Constant>(V);
350}
Chris Lattner3082c5a2003-02-18 19:28:33 +0000351
352// Log2 - Calculate the log base 2 for the specified value if it is exactly a
353// power of 2.
354static unsigned Log2(uint64_t Val) {
355 assert(Val > 1 && "Values 0 and 1 should be handled elsewhere!");
356 unsigned Count = 0;
357 while (Val != 1) {
358 if (Val & 1) return 0; // Multiple bits set?
359 Val >>= 1;
360 ++Count;
361 }
362 return Count;
Chris Lattner31ae8632002-08-14 17:51:49 +0000363}
364
Chris Lattnerb8b97502003-08-13 19:01:45 +0000365
366/// AssociativeOpt - Perform an optimization on an associative operator. This
367/// function is designed to check a chain of associative operators for a
368/// potential to apply a certain optimization. Since the optimization may be
369/// applicable if the expression was reassociated, this checks the chain, then
370/// reassociates the expression as necessary to expose the optimization
371/// opportunity. This makes use of a special Functor, which must define
372/// 'shouldApply' and 'apply' methods.
373///
374template<typename Functor>
375Instruction *AssociativeOpt(BinaryOperator &Root, const Functor &F) {
376 unsigned Opcode = Root.getOpcode();
377 Value *LHS = Root.getOperand(0);
378
379 // Quick check, see if the immediate LHS matches...
380 if (F.shouldApply(LHS))
381 return F.apply(Root);
382
383 // Otherwise, if the LHS is not of the same opcode as the root, return.
384 Instruction *LHSI = dyn_cast<Instruction>(LHS);
Chris Lattnerf95d9b92003-10-15 16:48:29 +0000385 while (LHSI && LHSI->getOpcode() == Opcode && LHSI->hasOneUse()) {
Chris Lattnerb8b97502003-08-13 19:01:45 +0000386 // Should we apply this transform to the RHS?
387 bool ShouldApply = F.shouldApply(LHSI->getOperand(1));
388
389 // If not to the RHS, check to see if we should apply to the LHS...
390 if (!ShouldApply && F.shouldApply(LHSI->getOperand(0))) {
391 cast<BinaryOperator>(LHSI)->swapOperands(); // Make the LHS the RHS
392 ShouldApply = true;
393 }
394
395 // If the functor wants to apply the optimization to the RHS of LHSI,
396 // reassociate the expression from ((? op A) op B) to (? op (A op B))
397 if (ShouldApply) {
398 BasicBlock *BB = Root.getParent();
Chris Lattnerb8b97502003-08-13 19:01:45 +0000399
400 // Now all of the instructions are in the current basic block, go ahead
401 // and perform the reassociation.
402 Instruction *TmpLHSI = cast<Instruction>(Root.getOperand(0));
403
404 // First move the selected RHS to the LHS of the root...
405 Root.setOperand(0, LHSI->getOperand(1));
406
407 // Make what used to be the LHS of the root be the user of the root...
408 Value *ExtraOperand = TmpLHSI->getOperand(1);
Chris Lattner284d3b02004-04-16 18:08:07 +0000409 if (&Root == TmpLHSI) {
Chris Lattner8953b902004-04-05 02:10:19 +0000410 Root.replaceAllUsesWith(Constant::getNullValue(TmpLHSI->getType()));
411 return 0;
412 }
Chris Lattner284d3b02004-04-16 18:08:07 +0000413 Root.replaceAllUsesWith(TmpLHSI); // Users now use TmpLHSI
Chris Lattnerb8b97502003-08-13 19:01:45 +0000414 TmpLHSI->setOperand(1, &Root); // TmpLHSI now uses the root
Chris Lattner284d3b02004-04-16 18:08:07 +0000415 TmpLHSI->getParent()->getInstList().remove(TmpLHSI);
416 BasicBlock::iterator ARI = &Root; ++ARI;
417 BB->getInstList().insert(ARI, TmpLHSI); // Move TmpLHSI to after Root
418 ARI = Root;
Chris Lattnerb8b97502003-08-13 19:01:45 +0000419
420 // Now propagate the ExtraOperand down the chain of instructions until we
421 // get to LHSI.
422 while (TmpLHSI != LHSI) {
423 Instruction *NextLHSI = cast<Instruction>(TmpLHSI->getOperand(0));
Chris Lattner284d3b02004-04-16 18:08:07 +0000424 // Move the instruction to immediately before the chain we are
425 // constructing to avoid breaking dominance properties.
426 NextLHSI->getParent()->getInstList().remove(NextLHSI);
427 BB->getInstList().insert(ARI, NextLHSI);
428 ARI = NextLHSI;
429
Chris Lattnerb8b97502003-08-13 19:01:45 +0000430 Value *NextOp = NextLHSI->getOperand(1);
431 NextLHSI->setOperand(1, ExtraOperand);
432 TmpLHSI = NextLHSI;
433 ExtraOperand = NextOp;
434 }
435
436 // Now that the instructions are reassociated, have the functor perform
437 // the transformation...
438 return F.apply(Root);
439 }
440
441 LHSI = dyn_cast<Instruction>(LHSI->getOperand(0));
442 }
443 return 0;
444}
445
446
447// AddRHS - Implements: X + X --> X << 1
448struct AddRHS {
449 Value *RHS;
450 AddRHS(Value *rhs) : RHS(rhs) {}
451 bool shouldApply(Value *LHS) const { return LHS == RHS; }
452 Instruction *apply(BinaryOperator &Add) const {
453 return new ShiftInst(Instruction::Shl, Add.getOperand(0),
454 ConstantInt::get(Type::UByteTy, 1));
455 }
456};
457
458// AddMaskingAnd - Implements (A & C1)+(B & C2) --> (A & C1)|(B & C2)
459// iff C1&C2 == 0
460struct AddMaskingAnd {
461 Constant *C2;
462 AddMaskingAnd(Constant *c) : C2(c) {}
463 bool shouldApply(Value *LHS) const {
464 if (Constant *C1 = dyn_castMaskingAnd(LHS))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000465 return ConstantExpr::getAnd(C1, C2)->isNullValue();
Chris Lattnerb8b97502003-08-13 19:01:45 +0000466 return false;
467 }
468 Instruction *apply(BinaryOperator &Add) const {
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000469 return BinaryOperator::createOr(Add.getOperand(0), Add.getOperand(1));
Chris Lattnerb8b97502003-08-13 19:01:45 +0000470 }
471};
472
Chris Lattner183b3362004-04-09 19:05:30 +0000473static Value *FoldOperationIntoSelectOperand(Instruction &BI, Value *SO,
474 InstCombiner *IC) {
475 // Figure out if the constant is the left or the right argument.
476 bool ConstIsRHS = isa<Constant>(BI.getOperand(1));
477 Constant *ConstOperand = cast<Constant>(BI.getOperand(ConstIsRHS));
Chris Lattnerb8b97502003-08-13 19:01:45 +0000478
Chris Lattner183b3362004-04-09 19:05:30 +0000479 if (Constant *SOC = dyn_cast<Constant>(SO)) {
480 if (ConstIsRHS)
481 return ConstantExpr::get(BI.getOpcode(), SOC, ConstOperand);
482 return ConstantExpr::get(BI.getOpcode(), ConstOperand, SOC);
483 }
484
485 Value *Op0 = SO, *Op1 = ConstOperand;
486 if (!ConstIsRHS)
487 std::swap(Op0, Op1);
488 Instruction *New;
489 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(&BI))
490 New = BinaryOperator::create(BO->getOpcode(), Op0, Op1);
491 else if (ShiftInst *SI = dyn_cast<ShiftInst>(&BI))
492 New = new ShiftInst(SI->getOpcode(), Op0, Op1);
Chris Lattnerf9d96652004-04-10 19:15:56 +0000493 else {
Chris Lattner183b3362004-04-09 19:05:30 +0000494 assert(0 && "Unknown binary instruction type!");
Chris Lattnerf9d96652004-04-10 19:15:56 +0000495 abort();
496 }
Chris Lattner183b3362004-04-09 19:05:30 +0000497 return IC->InsertNewInstBefore(New, BI);
498}
499
500// FoldBinOpIntoSelect - Given an instruction with a select as one operand and a
501// constant as the other operand, try to fold the binary operator into the
502// select arguments.
503static Instruction *FoldBinOpIntoSelect(Instruction &BI, SelectInst *SI,
504 InstCombiner *IC) {
505 // Don't modify shared select instructions
506 if (!SI->hasOneUse()) return 0;
507 Value *TV = SI->getOperand(1);
508 Value *FV = SI->getOperand(2);
509
510 if (isa<Constant>(TV) || isa<Constant>(FV)) {
511 Value *SelectTrueVal = FoldOperationIntoSelectOperand(BI, TV, IC);
512 Value *SelectFalseVal = FoldOperationIntoSelectOperand(BI, FV, IC);
513
514 return new SelectInst(SI->getCondition(), SelectTrueVal,
515 SelectFalseVal);
516 }
517 return 0;
518}
Chris Lattnerb8b97502003-08-13 19:01:45 +0000519
Chris Lattner113f4f42002-06-25 16:13:24 +0000520Instruction *InstCombiner::visitAdd(BinaryOperator &I) {
Chris Lattnerdcf240a2003-03-10 21:43:22 +0000521 bool Changed = SimplifyCommutative(I);
Chris Lattner113f4f42002-06-25 16:13:24 +0000522 Value *LHS = I.getOperand(0), *RHS = I.getOperand(1);
Chris Lattner9fa53de2002-05-06 16:49:18 +0000523
Chris Lattnercf4a9962004-04-10 22:01:55 +0000524 if (Constant *RHSC = dyn_cast<Constant>(RHS)) {
525 // X + 0 --> X
526 if (!I.getType()->isFloatingPoint() && // -0 + +0 = +0, so it's not a noop
527 RHSC->isNullValue())
528 return ReplaceInstUsesWith(I, LHS);
529
530 // X + (signbit) --> X ^ signbit
531 if (ConstantInt *CI = dyn_cast<ConstantInt>(RHSC)) {
532 unsigned NumBits = CI->getType()->getPrimitiveSize()*8;
533 uint64_t Val = CI->getRawValue() & (1ULL << NumBits)-1;
534 if (Val == (1ULL << NumBits-1))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000535 return BinaryOperator::createXor(LHS, RHS);
Chris Lattnercf4a9962004-04-10 22:01:55 +0000536 }
537 }
Chris Lattner9fa53de2002-05-06 16:49:18 +0000538
Chris Lattnerb8b97502003-08-13 19:01:45 +0000539 // X + X --> X << 1
540 if (I.getType()->isInteger())
541 if (Instruction *Result = AssociativeOpt(I, AddRHS(RHS))) return Result;
Chris Lattnerede3fe02003-08-13 04:18:28 +0000542
Chris Lattner147e9752002-05-08 22:46:53 +0000543 // -A + B --> B - A
Chris Lattnerbb74e222003-03-10 23:06:50 +0000544 if (Value *V = dyn_castNegVal(LHS))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000545 return BinaryOperator::createSub(RHS, V);
Chris Lattner9fa53de2002-05-06 16:49:18 +0000546
547 // A + -B --> A - B
Chris Lattnerbb74e222003-03-10 23:06:50 +0000548 if (!isa<Constant>(RHS))
549 if (Value *V = dyn_castNegVal(RHS))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000550 return BinaryOperator::createSub(LHS, V);
Chris Lattner260ab202002-04-18 17:39:14 +0000551
Chris Lattner57c8d992003-02-18 19:57:07 +0000552 // X*C + X --> X * (C+1)
553 if (dyn_castFoldableMul(LHS) == RHS) {
Chris Lattner34428442003-05-27 16:40:51 +0000554 Constant *CP1 =
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000555 ConstantExpr::getAdd(
Chris Lattner34428442003-05-27 16:40:51 +0000556 cast<Constant>(cast<Instruction>(LHS)->getOperand(1)),
557 ConstantInt::get(I.getType(), 1));
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000558 return BinaryOperator::createMul(RHS, CP1);
Chris Lattner57c8d992003-02-18 19:57:07 +0000559 }
560
561 // X + X*C --> X * (C+1)
562 if (dyn_castFoldableMul(RHS) == LHS) {
Chris Lattner34428442003-05-27 16:40:51 +0000563 Constant *CP1 =
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000564 ConstantExpr::getAdd(
Chris Lattner34428442003-05-27 16:40:51 +0000565 cast<Constant>(cast<Instruction>(RHS)->getOperand(1)),
566 ConstantInt::get(I.getType(), 1));
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000567 return BinaryOperator::createMul(LHS, CP1);
Chris Lattner57c8d992003-02-18 19:57:07 +0000568 }
569
Chris Lattnerb8b97502003-08-13 19:01:45 +0000570 // (A & C1)+(B & C2) --> (A & C1)|(B & C2) iff C1&C2 == 0
571 if (Constant *C2 = dyn_castMaskingAnd(RHS))
572 if (Instruction *R = AssociativeOpt(I, AddMaskingAnd(C2))) return R;
Chris Lattner7fb29e12003-03-11 00:12:48 +0000573
Chris Lattnerb9cde762003-10-02 15:11:26 +0000574 if (ConstantInt *CRHS = dyn_cast<ConstantInt>(RHS)) {
575 if (Instruction *ILHS = dyn_cast<Instruction>(LHS)) {
576 switch (ILHS->getOpcode()) {
577 case Instruction::Xor:
578 // ~X + C --> (C-1) - X
579 if (ConstantInt *XorRHS = dyn_cast<ConstantInt>(ILHS->getOperand(1)))
580 if (XorRHS->isAllOnesValue())
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000581 return BinaryOperator::createSub(ConstantExpr::getSub(CRHS,
582 ConstantInt::get(I.getType(), 1)),
Chris Lattnerb9cde762003-10-02 15:11:26 +0000583 ILHS->getOperand(0));
584 break;
Chris Lattner183b3362004-04-09 19:05:30 +0000585 case Instruction::Select:
586 // Try to fold constant add into select arguments.
587 if (Instruction *R = FoldBinOpIntoSelect(I,cast<SelectInst>(ILHS),this))
588 return R;
589
Chris Lattnerb9cde762003-10-02 15:11:26 +0000590 default: break;
591 }
592 }
593 }
594
Chris Lattner113f4f42002-06-25 16:13:24 +0000595 return Changed ? &I : 0;
Chris Lattner260ab202002-04-18 17:39:14 +0000596}
597
Chris Lattnerbdb0ce02003-07-22 21:46:59 +0000598// isSignBit - Return true if the value represented by the constant only has the
599// highest order bit set.
600static bool isSignBit(ConstantInt *CI) {
601 unsigned NumBits = CI->getType()->getPrimitiveSize()*8;
602 return (CI->getRawValue() & ~(-1LL << NumBits)) == (1ULL << (NumBits-1));
603}
604
Chris Lattnerdfae8be2003-07-24 17:35:25 +0000605static unsigned getTypeSizeInBits(const Type *Ty) {
606 return Ty == Type::BoolTy ? 1 : Ty->getPrimitiveSize()*8;
607}
608
Chris Lattner022167f2004-03-13 00:11:49 +0000609/// RemoveNoopCast - Strip off nonconverting casts from the value.
610///
611static Value *RemoveNoopCast(Value *V) {
612 if (CastInst *CI = dyn_cast<CastInst>(V)) {
613 const Type *CTy = CI->getType();
614 const Type *OpTy = CI->getOperand(0)->getType();
615 if (CTy->isInteger() && OpTy->isInteger()) {
616 if (CTy->getPrimitiveSize() == OpTy->getPrimitiveSize())
617 return RemoveNoopCast(CI->getOperand(0));
618 } else if (isa<PointerType>(CTy) && isa<PointerType>(OpTy))
619 return RemoveNoopCast(CI->getOperand(0));
620 }
621 return V;
622}
623
Chris Lattner113f4f42002-06-25 16:13:24 +0000624Instruction *InstCombiner::visitSub(BinaryOperator &I) {
Chris Lattner113f4f42002-06-25 16:13:24 +0000625 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Chris Lattnerf4cdbf32002-05-06 16:14:14 +0000626
Chris Lattnere6794492002-08-12 21:17:25 +0000627 if (Op0 == Op1) // sub X, X -> 0
628 return ReplaceInstUsesWith(I, Constant::getNullValue(I.getType()));
Chris Lattner260ab202002-04-18 17:39:14 +0000629
Chris Lattnere6794492002-08-12 21:17:25 +0000630 // If this is a 'B = x-(-A)', change to B = x+A...
Chris Lattnerbb74e222003-03-10 23:06:50 +0000631 if (Value *V = dyn_castNegVal(Op1))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000632 return BinaryOperator::createAdd(Op0, V);
Chris Lattner9fa53de2002-05-06 16:49:18 +0000633
Chris Lattner8f2f5982003-11-05 01:06:05 +0000634 if (ConstantInt *C = dyn_cast<ConstantInt>(Op0)) {
635 // Replace (-1 - A) with (~A)...
Chris Lattner3082c5a2003-02-18 19:28:33 +0000636 if (C->isAllOnesValue())
637 return BinaryOperator::createNot(Op1);
Chris Lattnerad3c4952002-05-09 01:29:19 +0000638
Chris Lattner8f2f5982003-11-05 01:06:05 +0000639 // C - ~X == X + (1+C)
640 if (BinaryOperator::isNot(Op1))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000641 return BinaryOperator::createAdd(
642 BinaryOperator::getNotArgument(cast<BinaryOperator>(Op1)),
643 ConstantExpr::getAdd(C, ConstantInt::get(I.getType(), 1)));
Chris Lattner92295c52004-03-12 23:53:13 +0000644 // -((uint)X >> 31) -> ((int)X >> 31)
645 // -((int)X >> 31) -> ((uint)X >> 31)
Chris Lattner022167f2004-03-13 00:11:49 +0000646 if (C->isNullValue()) {
647 Value *NoopCastedRHS = RemoveNoopCast(Op1);
648 if (ShiftInst *SI = dyn_cast<ShiftInst>(NoopCastedRHS))
Chris Lattner92295c52004-03-12 23:53:13 +0000649 if (SI->getOpcode() == Instruction::Shr)
650 if (ConstantUInt *CU = dyn_cast<ConstantUInt>(SI->getOperand(1))) {
651 const Type *NewTy;
Chris Lattner022167f2004-03-13 00:11:49 +0000652 if (SI->getType()->isSigned())
653 NewTy = getUnsignedIntegralType(SI->getType());
Chris Lattner92295c52004-03-12 23:53:13 +0000654 else
Chris Lattner022167f2004-03-13 00:11:49 +0000655 NewTy = getSignedIntegralType(SI->getType());
Chris Lattner92295c52004-03-12 23:53:13 +0000656 // Check to see if we are shifting out everything but the sign bit.
Chris Lattner022167f2004-03-13 00:11:49 +0000657 if (CU->getValue() == SI->getType()->getPrimitiveSize()*8-1) {
Chris Lattner92295c52004-03-12 23:53:13 +0000658 // Ok, the transformation is safe. Insert a cast of the incoming
659 // value, then the new shift, then the new cast.
660 Instruction *FirstCast = new CastInst(SI->getOperand(0), NewTy,
661 SI->getOperand(0)->getName());
662 Value *InV = InsertNewInstBefore(FirstCast, I);
663 Instruction *NewShift = new ShiftInst(Instruction::Shr, FirstCast,
664 CU, SI->getName());
Chris Lattner022167f2004-03-13 00:11:49 +0000665 if (NewShift->getType() == I.getType())
666 return NewShift;
667 else {
668 InV = InsertNewInstBefore(NewShift, I);
669 return new CastInst(NewShift, I.getType());
670 }
Chris Lattner92295c52004-03-12 23:53:13 +0000671 }
672 }
Chris Lattner022167f2004-03-13 00:11:49 +0000673 }
Chris Lattner183b3362004-04-09 19:05:30 +0000674
675 // Try to fold constant sub into select arguments.
676 if (SelectInst *SI = dyn_cast<SelectInst>(Op1))
677 if (Instruction *R = FoldBinOpIntoSelect(I, SI, this))
678 return R;
Chris Lattner8f2f5982003-11-05 01:06:05 +0000679 }
680
Chris Lattner3082c5a2003-02-18 19:28:33 +0000681 if (BinaryOperator *Op1I = dyn_cast<BinaryOperator>(Op1))
Chris Lattnerf95d9b92003-10-15 16:48:29 +0000682 if (Op1I->hasOneUse()) {
Chris Lattner3082c5a2003-02-18 19:28:33 +0000683 // Replace (x - (y - z)) with (x + (z - y)) if the (y - z) subexpression
684 // is not used by anyone else...
685 //
Chris Lattnerc2f0aa52004-02-02 20:09:56 +0000686 if (Op1I->getOpcode() == Instruction::Sub &&
687 !Op1I->getType()->isFloatingPoint()) {
Chris Lattner3082c5a2003-02-18 19:28:33 +0000688 // Swap the two operands of the subexpr...
689 Value *IIOp0 = Op1I->getOperand(0), *IIOp1 = Op1I->getOperand(1);
690 Op1I->setOperand(0, IIOp1);
691 Op1I->setOperand(1, IIOp0);
692
693 // Create the new top level add instruction...
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000694 return BinaryOperator::createAdd(Op0, Op1);
Chris Lattner3082c5a2003-02-18 19:28:33 +0000695 }
696
697 // Replace (A - (A & B)) with (A & ~B) if this is the only use of (A&B)...
698 //
699 if (Op1I->getOpcode() == Instruction::And &&
700 (Op1I->getOperand(0) == Op0 || Op1I->getOperand(1) == Op0)) {
701 Value *OtherOp = Op1I->getOperand(Op1I->getOperand(0) == Op0);
702
Chris Lattner396dbfe2004-06-09 05:08:07 +0000703 Value *NewNot =
704 InsertNewInstBefore(BinaryOperator::createNot(OtherOp, "B.not"), I);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000705 return BinaryOperator::createAnd(Op0, NewNot);
Chris Lattner3082c5a2003-02-18 19:28:33 +0000706 }
Chris Lattner57c8d992003-02-18 19:57:07 +0000707
708 // X - X*C --> X * (1-C)
709 if (dyn_castFoldableMul(Op1I) == Op0) {
Chris Lattner34428442003-05-27 16:40:51 +0000710 Constant *CP1 =
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000711 ConstantExpr::getSub(ConstantInt::get(I.getType(), 1),
Chris Lattner34428442003-05-27 16:40:51 +0000712 cast<Constant>(cast<Instruction>(Op1)->getOperand(1)));
Chris Lattner57c8d992003-02-18 19:57:07 +0000713 assert(CP1 && "Couldn't constant fold 1-C?");
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000714 return BinaryOperator::createMul(Op0, CP1);
Chris Lattner57c8d992003-02-18 19:57:07 +0000715 }
Chris Lattnerad3c4952002-05-09 01:29:19 +0000716 }
Chris Lattner3082c5a2003-02-18 19:28:33 +0000717
Chris Lattner57c8d992003-02-18 19:57:07 +0000718 // X*C - X --> X * (C-1)
719 if (dyn_castFoldableMul(Op0) == Op1) {
Chris Lattner34428442003-05-27 16:40:51 +0000720 Constant *CP1 =
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000721 ConstantExpr::getSub(cast<Constant>(cast<Instruction>(Op0)->getOperand(1)),
Chris Lattner34428442003-05-27 16:40:51 +0000722 ConstantInt::get(I.getType(), 1));
Chris Lattner57c8d992003-02-18 19:57:07 +0000723 assert(CP1 && "Couldn't constant fold C - 1?");
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000724 return BinaryOperator::createMul(Op1, CP1);
Chris Lattner57c8d992003-02-18 19:57:07 +0000725 }
726
Chris Lattnerf4cdbf32002-05-06 16:14:14 +0000727 return 0;
Chris Lattner260ab202002-04-18 17:39:14 +0000728}
729
Chris Lattnere79e8542004-02-23 06:38:22 +0000730/// isSignBitCheck - Given an exploded setcc instruction, return true if it is
731/// really just returns true if the most significant (sign) bit is set.
732static bool isSignBitCheck(unsigned Opcode, Value *LHS, ConstantInt *RHS) {
733 if (RHS->getType()->isSigned()) {
734 // True if source is LHS < 0 or LHS <= -1
735 return Opcode == Instruction::SetLT && RHS->isNullValue() ||
736 Opcode == Instruction::SetLE && RHS->isAllOnesValue();
737 } else {
738 ConstantUInt *RHSC = cast<ConstantUInt>(RHS);
739 // True if source is LHS > 127 or LHS >= 128, where the constants depend on
740 // the size of the integer type.
741 if (Opcode == Instruction::SetGE)
742 return RHSC->getValue() == 1ULL<<(RHS->getType()->getPrimitiveSize()*8-1);
743 if (Opcode == Instruction::SetGT)
744 return RHSC->getValue() ==
745 (1ULL << (RHS->getType()->getPrimitiveSize()*8-1))-1;
746 }
747 return false;
748}
749
Chris Lattner113f4f42002-06-25 16:13:24 +0000750Instruction *InstCombiner::visitMul(BinaryOperator &I) {
Chris Lattnerdcf240a2003-03-10 21:43:22 +0000751 bool Changed = SimplifyCommutative(I);
Chris Lattner3082c5a2003-02-18 19:28:33 +0000752 Value *Op0 = I.getOperand(0);
Chris Lattner260ab202002-04-18 17:39:14 +0000753
Chris Lattnere6794492002-08-12 21:17:25 +0000754 // Simplify mul instructions with a constant RHS...
Chris Lattner3082c5a2003-02-18 19:28:33 +0000755 if (Constant *Op1 = dyn_cast<Constant>(I.getOperand(1))) {
756 if (ConstantInt *CI = dyn_cast<ConstantInt>(Op1)) {
Chris Lattnerede3fe02003-08-13 04:18:28 +0000757
758 // ((X << C1)*C2) == (X * (C2 << C1))
759 if (ShiftInst *SI = dyn_cast<ShiftInst>(Op0))
760 if (SI->getOpcode() == Instruction::Shl)
761 if (Constant *ShOp = dyn_cast<Constant>(SI->getOperand(1)))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000762 return BinaryOperator::createMul(SI->getOperand(0),
763 ConstantExpr::getShl(CI, ShOp));
Chris Lattnerc1e7cc02004-01-12 19:35:11 +0000764
Chris Lattnercce81be2003-09-11 22:24:54 +0000765 if (CI->isNullValue())
766 return ReplaceInstUsesWith(I, Op1); // X * 0 == 0
767 if (CI->equalsInt(1)) // X * 1 == X
768 return ReplaceInstUsesWith(I, Op0);
769 if (CI->isAllOnesValue()) // X * -1 == 0 - X
Chris Lattner35236d82003-06-25 17:09:20 +0000770 return BinaryOperator::createNeg(Op0, I.getName());
Chris Lattner31ba1292002-04-29 22:24:47 +0000771
Chris Lattnercce81be2003-09-11 22:24:54 +0000772 int64_t Val = (int64_t)cast<ConstantInt>(CI)->getRawValue();
Chris Lattner3082c5a2003-02-18 19:28:33 +0000773 if (uint64_t C = Log2(Val)) // Replace X*(2^C) with X << C
774 return new ShiftInst(Instruction::Shl, Op0,
775 ConstantUInt::get(Type::UByteTy, C));
776 } else {
777 ConstantFP *Op1F = cast<ConstantFP>(Op1);
778 if (Op1F->isNullValue())
779 return ReplaceInstUsesWith(I, Op1);
Chris Lattner31ba1292002-04-29 22:24:47 +0000780
Chris Lattner3082c5a2003-02-18 19:28:33 +0000781 // "In IEEE floating point, x*1 is not equivalent to x for nans. However,
782 // ANSI says we can drop signals, so we can do this anyway." (from GCC)
783 if (Op1F->getValue() == 1.0)
784 return ReplaceInstUsesWith(I, Op0); // Eliminate 'mul double %X, 1.0'
785 }
Chris Lattner183b3362004-04-09 19:05:30 +0000786
787 // Try to fold constant mul into select arguments.
788 if (SelectInst *SI = dyn_cast<SelectInst>(Op0))
789 if (Instruction *R = FoldBinOpIntoSelect(I, SI, this))
790 return R;
Chris Lattner260ab202002-04-18 17:39:14 +0000791 }
792
Chris Lattner934a64cf2003-03-10 23:23:04 +0000793 if (Value *Op0v = dyn_castNegVal(Op0)) // -X * -Y = X*Y
794 if (Value *Op1v = dyn_castNegVal(I.getOperand(1)))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000795 return BinaryOperator::createMul(Op0v, Op1v);
Chris Lattner934a64cf2003-03-10 23:23:04 +0000796
Chris Lattner2635b522004-02-23 05:39:21 +0000797 // If one of the operands of the multiply is a cast from a boolean value, then
798 // we know the bool is either zero or one, so this is a 'masking' multiply.
799 // See if we can simplify things based on how the boolean was originally
800 // formed.
801 CastInst *BoolCast = 0;
802 if (CastInst *CI = dyn_cast<CastInst>(I.getOperand(0)))
803 if (CI->getOperand(0)->getType() == Type::BoolTy)
804 BoolCast = CI;
805 if (!BoolCast)
806 if (CastInst *CI = dyn_cast<CastInst>(I.getOperand(1)))
807 if (CI->getOperand(0)->getType() == Type::BoolTy)
808 BoolCast = CI;
809 if (BoolCast) {
810 if (SetCondInst *SCI = dyn_cast<SetCondInst>(BoolCast->getOperand(0))) {
811 Value *SCIOp0 = SCI->getOperand(0), *SCIOp1 = SCI->getOperand(1);
812 const Type *SCOpTy = SCIOp0->getType();
813
Chris Lattnere79e8542004-02-23 06:38:22 +0000814 // If the setcc is true iff the sign bit of X is set, then convert this
815 // multiply into a shift/and combination.
816 if (isa<ConstantInt>(SCIOp1) &&
817 isSignBitCheck(SCI->getOpcode(), SCIOp0, cast<ConstantInt>(SCIOp1))) {
Chris Lattner2635b522004-02-23 05:39:21 +0000818 // Shift the X value right to turn it into "all signbits".
819 Constant *Amt = ConstantUInt::get(Type::UByteTy,
820 SCOpTy->getPrimitiveSize()*8-1);
Chris Lattnere79e8542004-02-23 06:38:22 +0000821 if (SCIOp0->getType()->isUnsigned()) {
822 const Type *NewTy = getSignedIntegralType(SCIOp0->getType());
823 SCIOp0 = InsertNewInstBefore(new CastInst(SCIOp0, NewTy,
824 SCIOp0->getName()), I);
825 }
826
827 Value *V =
828 InsertNewInstBefore(new ShiftInst(Instruction::Shr, SCIOp0, Amt,
829 BoolCast->getOperand(0)->getName()+
830 ".mask"), I);
Chris Lattner2635b522004-02-23 05:39:21 +0000831
832 // If the multiply type is not the same as the source type, sign extend
833 // or truncate to the multiply type.
834 if (I.getType() != V->getType())
Chris Lattnere79e8542004-02-23 06:38:22 +0000835 V = InsertNewInstBefore(new CastInst(V, I.getType(), V->getName()),I);
Chris Lattner2635b522004-02-23 05:39:21 +0000836
837 Value *OtherOp = Op0 == BoolCast ? I.getOperand(1) : Op0;
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000838 return BinaryOperator::createAnd(V, OtherOp);
Chris Lattner2635b522004-02-23 05:39:21 +0000839 }
840 }
841 }
842
Chris Lattner113f4f42002-06-25 16:13:24 +0000843 return Changed ? &I : 0;
Chris Lattner260ab202002-04-18 17:39:14 +0000844}
845
Chris Lattner113f4f42002-06-25 16:13:24 +0000846Instruction *InstCombiner::visitDiv(BinaryOperator &I) {
Chris Lattner3082c5a2003-02-18 19:28:33 +0000847 if (ConstantInt *RHS = dyn_cast<ConstantInt>(I.getOperand(1))) {
Chris Lattnere20c3342004-04-26 14:01:59 +0000848 // div X, 1 == X
Chris Lattnere6794492002-08-12 21:17:25 +0000849 if (RHS->equalsInt(1))
850 return ReplaceInstUsesWith(I, I.getOperand(0));
Chris Lattner3082c5a2003-02-18 19:28:33 +0000851
Chris Lattnere20c3342004-04-26 14:01:59 +0000852 // div X, -1 == -X
853 if (RHS->isAllOnesValue())
854 return BinaryOperator::createNeg(I.getOperand(0));
855
Chris Lattner3082c5a2003-02-18 19:28:33 +0000856 // Check to see if this is an unsigned division with an exact power of 2,
857 // if so, convert to a right shift.
858 if (ConstantUInt *C = dyn_cast<ConstantUInt>(RHS))
859 if (uint64_t Val = C->getValue()) // Don't break X / 0
860 if (uint64_t C = Log2(Val))
861 return new ShiftInst(Instruction::Shr, I.getOperand(0),
862 ConstantUInt::get(Type::UByteTy, C));
863 }
864
865 // 0 / X == 0, we don't need to preserve faults!
866 if (ConstantInt *LHS = dyn_cast<ConstantInt>(I.getOperand(0)))
867 if (LHS->equalsInt(0))
868 return ReplaceInstUsesWith(I, Constant::getNullValue(I.getType()));
869
Chris Lattnerf4cdbf32002-05-06 16:14:14 +0000870 return 0;
871}
872
873
Chris Lattner113f4f42002-06-25 16:13:24 +0000874Instruction *InstCombiner::visitRem(BinaryOperator &I) {
Chris Lattner3082c5a2003-02-18 19:28:33 +0000875 if (ConstantInt *RHS = dyn_cast<ConstantInt>(I.getOperand(1))) {
876 if (RHS->equalsInt(1)) // X % 1 == 0
877 return ReplaceInstUsesWith(I, Constant::getNullValue(I.getType()));
Chris Lattner56b50512004-03-26 16:11:24 +0000878 if (RHS->isAllOnesValue()) // X % -1 == 0
879 return ReplaceInstUsesWith(I, Constant::getNullValue(I.getType()));
Chris Lattner3082c5a2003-02-18 19:28:33 +0000880
881 // Check to see if this is an unsigned remainder with an exact power of 2,
882 // if so, convert to a bitwise and.
883 if (ConstantUInt *C = dyn_cast<ConstantUInt>(RHS))
884 if (uint64_t Val = C->getValue()) // Don't break X % 0 (divide by zero)
Chris Lattnerd9e58132004-05-07 15:35:56 +0000885 if (!(Val & (Val-1))) // Power of 2
Chris Lattnerdf20a4d2004-06-10 02:07:29 +0000886 return BinaryOperator::createAnd(I.getOperand(0),
Chris Lattner3082c5a2003-02-18 19:28:33 +0000887 ConstantUInt::get(I.getType(), Val-1));
888 }
889
890 // 0 % X == 0, we don't need to preserve faults!
891 if (ConstantInt *LHS = dyn_cast<ConstantInt>(I.getOperand(0)))
892 if (LHS->equalsInt(0))
Chris Lattnere6794492002-08-12 21:17:25 +0000893 return ReplaceInstUsesWith(I, Constant::getNullValue(I.getType()));
894
Chris Lattnerf4cdbf32002-05-06 16:14:14 +0000895 return 0;
896}
897
Chris Lattner6d14f2a2002-08-09 23:47:40 +0000898// isMaxValueMinusOne - return true if this is Max-1
Chris Lattnere6794492002-08-12 21:17:25 +0000899static bool isMaxValueMinusOne(const ConstantInt *C) {
Chris Lattner6d14f2a2002-08-09 23:47:40 +0000900 if (const ConstantUInt *CU = dyn_cast<ConstantUInt>(C)) {
901 // Calculate -1 casted to the right type...
902 unsigned TypeBits = C->getType()->getPrimitiveSize()*8;
903 uint64_t Val = ~0ULL; // All ones
904 Val >>= 64-TypeBits; // Shift out unwanted 1 bits...
905 return CU->getValue() == Val-1;
906 }
907
908 const ConstantSInt *CS = cast<ConstantSInt>(C);
909
910 // Calculate 0111111111..11111
911 unsigned TypeBits = C->getType()->getPrimitiveSize()*8;
912 int64_t Val = INT64_MAX; // All ones
913 Val >>= 64-TypeBits; // Shift out unwanted 1 bits...
914 return CS->getValue() == Val-1;
915}
916
917// isMinValuePlusOne - return true if this is Min+1
Chris Lattnere6794492002-08-12 21:17:25 +0000918static bool isMinValuePlusOne(const ConstantInt *C) {
Chris Lattner6d14f2a2002-08-09 23:47:40 +0000919 if (const ConstantUInt *CU = dyn_cast<ConstantUInt>(C))
920 return CU->getValue() == 1;
921
922 const ConstantSInt *CS = cast<ConstantSInt>(C);
923
924 // Calculate 1111111111000000000000
925 unsigned TypeBits = C->getType()->getPrimitiveSize()*8;
926 int64_t Val = -1; // All ones
927 Val <<= TypeBits-1; // Shift over to the right spot
928 return CS->getValue() == Val+1;
929}
930
Chris Lattner35167c32004-06-09 07:59:58 +0000931// isOneBitSet - Return true if there is exactly one bit set in the specified
932// constant.
933static bool isOneBitSet(const ConstantInt *CI) {
934 uint64_t V = CI->getRawValue();
935 return V && (V & (V-1)) == 0;
936}
937
Chris Lattner3ac7c262003-08-13 20:16:26 +0000938/// getSetCondCode - Encode a setcc opcode into a three bit mask. These bits
939/// are carefully arranged to allow folding of expressions such as:
940///
941/// (A < B) | (A > B) --> (A != B)
942///
943/// Bit value '4' represents that the comparison is true if A > B, bit value '2'
944/// represents that the comparison is true if A == B, and bit value '1' is true
945/// if A < B.
946///
947static unsigned getSetCondCode(const SetCondInst *SCI) {
948 switch (SCI->getOpcode()) {
949 // False -> 0
950 case Instruction::SetGT: return 1;
951 case Instruction::SetEQ: return 2;
952 case Instruction::SetGE: return 3;
953 case Instruction::SetLT: return 4;
954 case Instruction::SetNE: return 5;
955 case Instruction::SetLE: return 6;
956 // True -> 7
957 default:
958 assert(0 && "Invalid SetCC opcode!");
959 return 0;
960 }
961}
962
963/// getSetCCValue - This is the complement of getSetCondCode, which turns an
964/// opcode and two operands into either a constant true or false, or a brand new
965/// SetCC instruction.
966static Value *getSetCCValue(unsigned Opcode, Value *LHS, Value *RHS) {
967 switch (Opcode) {
968 case 0: return ConstantBool::False;
969 case 1: return new SetCondInst(Instruction::SetGT, LHS, RHS);
970 case 2: return new SetCondInst(Instruction::SetEQ, LHS, RHS);
971 case 3: return new SetCondInst(Instruction::SetGE, LHS, RHS);
972 case 4: return new SetCondInst(Instruction::SetLT, LHS, RHS);
973 case 5: return new SetCondInst(Instruction::SetNE, LHS, RHS);
974 case 6: return new SetCondInst(Instruction::SetLE, LHS, RHS);
975 case 7: return ConstantBool::True;
976 default: assert(0 && "Illegal SetCCCode!"); return 0;
977 }
978}
979
980// FoldSetCCLogical - Implements (setcc1 A, B) & (setcc2 A, B) --> (setcc3 A, B)
981struct FoldSetCCLogical {
982 InstCombiner &IC;
983 Value *LHS, *RHS;
984 FoldSetCCLogical(InstCombiner &ic, SetCondInst *SCI)
985 : IC(ic), LHS(SCI->getOperand(0)), RHS(SCI->getOperand(1)) {}
986 bool shouldApply(Value *V) const {
987 if (SetCondInst *SCI = dyn_cast<SetCondInst>(V))
988 return (SCI->getOperand(0) == LHS && SCI->getOperand(1) == RHS ||
989 SCI->getOperand(0) == RHS && SCI->getOperand(1) == LHS);
990 return false;
991 }
992 Instruction *apply(BinaryOperator &Log) const {
993 SetCondInst *SCI = cast<SetCondInst>(Log.getOperand(0));
994 if (SCI->getOperand(0) != LHS) {
995 assert(SCI->getOperand(1) == LHS);
996 SCI->swapOperands(); // Swap the LHS and RHS of the SetCC
997 }
998
999 unsigned LHSCode = getSetCondCode(SCI);
1000 unsigned RHSCode = getSetCondCode(cast<SetCondInst>(Log.getOperand(1)));
1001 unsigned Code;
1002 switch (Log.getOpcode()) {
1003 case Instruction::And: Code = LHSCode & RHSCode; break;
1004 case Instruction::Or: Code = LHSCode | RHSCode; break;
1005 case Instruction::Xor: Code = LHSCode ^ RHSCode; break;
Chris Lattner2caaaba2003-09-22 20:33:34 +00001006 default: assert(0 && "Illegal logical opcode!"); return 0;
Chris Lattner3ac7c262003-08-13 20:16:26 +00001007 }
1008
1009 Value *RV = getSetCCValue(Code, LHS, RHS);
1010 if (Instruction *I = dyn_cast<Instruction>(RV))
1011 return I;
1012 // Otherwise, it's a constant boolean value...
1013 return IC.ReplaceInstUsesWith(Log, RV);
1014 }
1015};
1016
1017
Chris Lattnerba1cb382003-09-19 17:17:26 +00001018// OptAndOp - This handles expressions of the form ((val OP C1) & C2). Where
1019// the Op parameter is 'OP', OpRHS is 'C1', and AndRHS is 'C2'. Op is
1020// guaranteed to be either a shift instruction or a binary operator.
1021Instruction *InstCombiner::OptAndOp(Instruction *Op,
1022 ConstantIntegral *OpRHS,
1023 ConstantIntegral *AndRHS,
1024 BinaryOperator &TheAnd) {
1025 Value *X = Op->getOperand(0);
Chris Lattnerfcf21a72004-01-12 19:47:05 +00001026 Constant *Together = 0;
1027 if (!isa<ShiftInst>(Op))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001028 Together = ConstantExpr::getAnd(AndRHS, OpRHS);
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001029
Chris Lattnerba1cb382003-09-19 17:17:26 +00001030 switch (Op->getOpcode()) {
1031 case Instruction::Xor:
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001032 if (Together->isNullValue()) {
Chris Lattnerba1cb382003-09-19 17:17:26 +00001033 // (X ^ C1) & C2 --> (X & C2) iff (C1&C2) == 0
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001034 return BinaryOperator::createAnd(X, AndRHS);
Chris Lattnerf95d9b92003-10-15 16:48:29 +00001035 } else if (Op->hasOneUse()) {
Chris Lattnerba1cb382003-09-19 17:17:26 +00001036 // (X ^ C1) & C2 --> (X & C2) ^ (C1&C2)
1037 std::string OpName = Op->getName(); Op->setName("");
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001038 Instruction *And = BinaryOperator::createAnd(X, AndRHS, OpName);
Chris Lattnerba1cb382003-09-19 17:17:26 +00001039 InsertNewInstBefore(And, TheAnd);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001040 return BinaryOperator::createXor(And, Together);
Chris Lattnerba1cb382003-09-19 17:17:26 +00001041 }
1042 break;
1043 case Instruction::Or:
1044 // (X | C1) & C2 --> X & C2 iff C1 & C1 == 0
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001045 if (Together->isNullValue())
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001046 return BinaryOperator::createAnd(X, AndRHS);
Chris Lattnerba1cb382003-09-19 17:17:26 +00001047 else {
Chris Lattnerba1cb382003-09-19 17:17:26 +00001048 if (Together == AndRHS) // (X | C) & C --> C
1049 return ReplaceInstUsesWith(TheAnd, AndRHS);
1050
Chris Lattnerf95d9b92003-10-15 16:48:29 +00001051 if (Op->hasOneUse() && Together != OpRHS) {
Chris Lattnerba1cb382003-09-19 17:17:26 +00001052 // (X | C1) & C2 --> (X | (C1&C2)) & C2
1053 std::string Op0Name = Op->getName(); Op->setName("");
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001054 Instruction *Or = BinaryOperator::createOr(X, Together, Op0Name);
Chris Lattnerba1cb382003-09-19 17:17:26 +00001055 InsertNewInstBefore(Or, TheAnd);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001056 return BinaryOperator::createAnd(Or, AndRHS);
Chris Lattnerba1cb382003-09-19 17:17:26 +00001057 }
1058 }
1059 break;
1060 case Instruction::Add:
Chris Lattnerf95d9b92003-10-15 16:48:29 +00001061 if (Op->hasOneUse()) {
Chris Lattnerba1cb382003-09-19 17:17:26 +00001062 // Adding a one to a single bit bit-field should be turned into an XOR
1063 // of the bit. First thing to check is to see if this AND is with a
1064 // single bit constant.
Chris Lattner35167c32004-06-09 07:59:58 +00001065 uint64_t AndRHSV = cast<ConstantInt>(AndRHS)->getRawValue();
Chris Lattnerba1cb382003-09-19 17:17:26 +00001066
1067 // Clear bits that are not part of the constant.
1068 AndRHSV &= (1ULL << AndRHS->getType()->getPrimitiveSize()*8)-1;
1069
1070 // If there is only one bit set...
Chris Lattner35167c32004-06-09 07:59:58 +00001071 if (isOneBitSet(cast<ConstantInt>(AndRHS))) {
Chris Lattnerba1cb382003-09-19 17:17:26 +00001072 // Ok, at this point, we know that we are masking the result of the
1073 // ADD down to exactly one bit. If the constant we are adding has
1074 // no bits set below this bit, then we can eliminate the ADD.
Chris Lattner35167c32004-06-09 07:59:58 +00001075 uint64_t AddRHS = cast<ConstantInt>(OpRHS)->getRawValue();
Chris Lattnerba1cb382003-09-19 17:17:26 +00001076
1077 // Check to see if any bits below the one bit set in AndRHSV are set.
1078 if ((AddRHS & (AndRHSV-1)) == 0) {
1079 // If not, the only thing that can effect the output of the AND is
1080 // the bit specified by AndRHSV. If that bit is set, the effect of
1081 // the XOR is to toggle the bit. If it is clear, then the ADD has
1082 // no effect.
1083 if ((AddRHS & AndRHSV) == 0) { // Bit is not set, noop
1084 TheAnd.setOperand(0, X);
1085 return &TheAnd;
1086 } else {
1087 std::string Name = Op->getName(); Op->setName("");
1088 // Pull the XOR out of the AND.
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001089 Instruction *NewAnd = BinaryOperator::createAnd(X, AndRHS, Name);
Chris Lattnerba1cb382003-09-19 17:17:26 +00001090 InsertNewInstBefore(NewAnd, TheAnd);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001091 return BinaryOperator::createXor(NewAnd, AndRHS);
Chris Lattnerba1cb382003-09-19 17:17:26 +00001092 }
1093 }
1094 }
1095 }
1096 break;
Chris Lattner2da29172003-09-19 19:05:02 +00001097
1098 case Instruction::Shl: {
1099 // We know that the AND will not produce any of the bits shifted in, so if
1100 // the anded constant includes them, clear them now!
1101 //
1102 Constant *AllOne = ConstantIntegral::getAllOnesValue(AndRHS->getType());
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001103 Constant *CI = ConstantExpr::getAnd(AndRHS,
1104 ConstantExpr::getShl(AllOne, OpRHS));
Chris Lattner2da29172003-09-19 19:05:02 +00001105 if (CI != AndRHS) {
1106 TheAnd.setOperand(1, CI);
1107 return &TheAnd;
1108 }
1109 break;
1110 }
1111 case Instruction::Shr:
1112 // We know that the AND will not produce any of the bits shifted in, so if
1113 // the anded constant includes them, clear them now! This only applies to
1114 // unsigned shifts, because a signed shr may bring in set bits!
1115 //
1116 if (AndRHS->getType()->isUnsigned()) {
1117 Constant *AllOne = ConstantIntegral::getAllOnesValue(AndRHS->getType());
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001118 Constant *CI = ConstantExpr::getAnd(AndRHS,
1119 ConstantExpr::getShr(AllOne, OpRHS));
Chris Lattner2da29172003-09-19 19:05:02 +00001120 if (CI != AndRHS) {
1121 TheAnd.setOperand(1, CI);
1122 return &TheAnd;
1123 }
1124 }
1125 break;
Chris Lattnerba1cb382003-09-19 17:17:26 +00001126 }
1127 return 0;
1128}
1129
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001130
Chris Lattner113f4f42002-06-25 16:13:24 +00001131Instruction *InstCombiner::visitAnd(BinaryOperator &I) {
Chris Lattnerdcf240a2003-03-10 21:43:22 +00001132 bool Changed = SimplifyCommutative(I);
Chris Lattner113f4f42002-06-25 16:13:24 +00001133 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001134
1135 // and X, X = X and X, 0 == 0
Chris Lattnere6794492002-08-12 21:17:25 +00001136 if (Op0 == Op1 || Op1 == Constant::getNullValue(I.getType()))
1137 return ReplaceInstUsesWith(I, Op1);
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001138
1139 // and X, -1 == X
Chris Lattner49b47ae2003-07-23 17:57:01 +00001140 if (ConstantIntegral *RHS = dyn_cast<ConstantIntegral>(Op1)) {
Chris Lattnere6794492002-08-12 21:17:25 +00001141 if (RHS->isAllOnesValue())
1142 return ReplaceInstUsesWith(I, Op0);
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001143
Chris Lattnerba1cb382003-09-19 17:17:26 +00001144 // Optimize a variety of ((val OP C1) & C2) combinations...
1145 if (isa<BinaryOperator>(Op0) || isa<ShiftInst>(Op0)) {
1146 Instruction *Op0I = cast<Instruction>(Op0);
Chris Lattner33217db2003-07-23 19:36:21 +00001147 Value *X = Op0I->getOperand(0);
Chris Lattner16464b32003-07-23 19:25:52 +00001148 if (ConstantInt *Op0CI = dyn_cast<ConstantInt>(Op0I->getOperand(1)))
Chris Lattnerba1cb382003-09-19 17:17:26 +00001149 if (Instruction *Res = OptAndOp(Op0I, Op0CI, RHS, I))
1150 return Res;
Chris Lattner33217db2003-07-23 19:36:21 +00001151 }
Chris Lattner183b3362004-04-09 19:05:30 +00001152
1153 // Try to fold constant and into select arguments.
1154 if (SelectInst *SI = dyn_cast<SelectInst>(Op0))
1155 if (Instruction *R = FoldBinOpIntoSelect(I, SI, this))
1156 return R;
Chris Lattner49b47ae2003-07-23 17:57:01 +00001157 }
1158
Chris Lattnerbb74e222003-03-10 23:06:50 +00001159 Value *Op0NotVal = dyn_castNotVal(Op0);
1160 Value *Op1NotVal = dyn_castNotVal(Op1);
Chris Lattner3082c5a2003-02-18 19:28:33 +00001161
1162 // (~A & ~B) == (~(A | B)) - Demorgan's Law
Chris Lattnerbb74e222003-03-10 23:06:50 +00001163 if (Op0NotVal && Op1NotVal && isOnlyUse(Op0) && isOnlyUse(Op1)) {
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001164 Instruction *Or = BinaryOperator::createOr(Op0NotVal, Op1NotVal,
1165 I.getName()+".demorgan");
Chris Lattner49b47ae2003-07-23 17:57:01 +00001166 InsertNewInstBefore(Or, I);
Chris Lattner3082c5a2003-02-18 19:28:33 +00001167 return BinaryOperator::createNot(Or);
1168 }
1169
1170 if (Op0NotVal == Op1 || Op1NotVal == Op0) // A & ~A == ~A & A == 0
1171 return ReplaceInstUsesWith(I, Constant::getNullValue(I.getType()));
Chris Lattner65217ff2002-08-23 18:32:43 +00001172
Chris Lattner3ac7c262003-08-13 20:16:26 +00001173 // (setcc1 A, B) & (setcc2 A, B) --> (setcc3 A, B)
1174 if (SetCondInst *RHS = dyn_cast<SetCondInst>(I.getOperand(1)))
1175 if (Instruction *R = AssociativeOpt(I, FoldSetCCLogical(*this, RHS)))
1176 return R;
1177
Chris Lattner113f4f42002-06-25 16:13:24 +00001178 return Changed ? &I : 0;
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001179}
1180
1181
1182
Chris Lattner113f4f42002-06-25 16:13:24 +00001183Instruction *InstCombiner::visitOr(BinaryOperator &I) {
Chris Lattnerdcf240a2003-03-10 21:43:22 +00001184 bool Changed = SimplifyCommutative(I);
Chris Lattner113f4f42002-06-25 16:13:24 +00001185 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001186
1187 // or X, X = X or X, 0 == X
Chris Lattnere6794492002-08-12 21:17:25 +00001188 if (Op0 == Op1 || Op1 == Constant::getNullValue(I.getType()))
1189 return ReplaceInstUsesWith(I, Op0);
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001190
1191 // or X, -1 == -1
Chris Lattner8f0d1562003-07-23 18:29:44 +00001192 if (ConstantIntegral *RHS = dyn_cast<ConstantIntegral>(Op1)) {
Chris Lattnere6794492002-08-12 21:17:25 +00001193 if (RHS->isAllOnesValue())
1194 return ReplaceInstUsesWith(I, Op1);
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001195
Chris Lattner8f0d1562003-07-23 18:29:44 +00001196 if (Instruction *Op0I = dyn_cast<Instruction>(Op0)) {
1197 // (X & C1) | C2 --> (X | C2) & (C1|C2)
1198 if (Op0I->getOpcode() == Instruction::And && isOnlyUse(Op0))
1199 if (ConstantInt *Op0CI = dyn_cast<ConstantInt>(Op0I->getOperand(1))) {
1200 std::string Op0Name = Op0I->getName(); Op0I->setName("");
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001201 Instruction *Or = BinaryOperator::createOr(Op0I->getOperand(0), RHS,
1202 Op0Name);
Chris Lattner8f0d1562003-07-23 18:29:44 +00001203 InsertNewInstBefore(Or, I);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001204 return BinaryOperator::createAnd(Or, ConstantExpr::getOr(RHS, Op0CI));
Chris Lattner8f0d1562003-07-23 18:29:44 +00001205 }
1206
1207 // (X ^ C1) | C2 --> (X | C2) ^ (C1&~C2)
1208 if (Op0I->getOpcode() == Instruction::Xor && isOnlyUse(Op0))
1209 if (ConstantInt *Op0CI = dyn_cast<ConstantInt>(Op0I->getOperand(1))) {
1210 std::string Op0Name = Op0I->getName(); Op0I->setName("");
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001211 Instruction *Or = BinaryOperator::createOr(Op0I->getOperand(0), RHS,
1212 Op0Name);
Chris Lattner8f0d1562003-07-23 18:29:44 +00001213 InsertNewInstBefore(Or, I);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001214 return BinaryOperator::createXor(Or,
1215 ConstantExpr::getAnd(Op0CI, NotConstant(RHS)));
Chris Lattner8f0d1562003-07-23 18:29:44 +00001216 }
1217 }
Chris Lattner183b3362004-04-09 19:05:30 +00001218
1219 // Try to fold constant and into select arguments.
1220 if (SelectInst *SI = dyn_cast<SelectInst>(Op0))
1221 if (Instruction *R = FoldBinOpIntoSelect(I, SI, this))
1222 return R;
Chris Lattner8f0d1562003-07-23 18:29:44 +00001223 }
1224
Chris Lattner812aab72003-08-12 19:11:07 +00001225 // (A & C1)|(A & C2) == A & (C1|C2)
Chris Lattner01d56392003-08-12 19:17:27 +00001226 if (Instruction *LHS = dyn_cast<BinaryOperator>(Op0))
1227 if (Instruction *RHS = dyn_cast<BinaryOperator>(Op1))
1228 if (LHS->getOperand(0) == RHS->getOperand(0))
1229 if (Constant *C0 = dyn_castMaskingAnd(LHS))
1230 if (Constant *C1 = dyn_castMaskingAnd(RHS))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001231 return BinaryOperator::createAnd(LHS->getOperand(0),
1232 ConstantExpr::getOr(C0, C1));
Chris Lattner812aab72003-08-12 19:11:07 +00001233
Chris Lattner3e327a42003-03-10 23:13:59 +00001234 Value *Op0NotVal = dyn_castNotVal(Op0);
1235 Value *Op1NotVal = dyn_castNotVal(Op1);
Chris Lattner3082c5a2003-02-18 19:28:33 +00001236
Chris Lattner3e327a42003-03-10 23:13:59 +00001237 if (Op1 == Op0NotVal) // ~A | A == -1
1238 return ReplaceInstUsesWith(I,
1239 ConstantIntegral::getAllOnesValue(I.getType()));
1240
1241 if (Op0 == Op1NotVal) // A | ~A == -1
1242 return ReplaceInstUsesWith(I,
1243 ConstantIntegral::getAllOnesValue(I.getType()));
1244
1245 // (~A | ~B) == (~(A & B)) - Demorgan's Law
1246 if (Op0NotVal && Op1NotVal && isOnlyUse(Op0) && isOnlyUse(Op1)) {
Chris Lattner396dbfe2004-06-09 05:08:07 +00001247 Value *And = InsertNewInstBefore(
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001248 BinaryOperator::createAnd(Op0NotVal,
1249 Op1NotVal,I.getName()+".demorgan"),I);
Chris Lattner3e327a42003-03-10 23:13:59 +00001250 return BinaryOperator::createNot(And);
1251 }
Chris Lattner3082c5a2003-02-18 19:28:33 +00001252
Chris Lattner3ac7c262003-08-13 20:16:26 +00001253 // (setcc1 A, B) | (setcc2 A, B) --> (setcc3 A, B)
1254 if (SetCondInst *RHS = dyn_cast<SetCondInst>(I.getOperand(1)))
1255 if (Instruction *R = AssociativeOpt(I, FoldSetCCLogical(*this, RHS)))
1256 return R;
1257
Chris Lattner113f4f42002-06-25 16:13:24 +00001258 return Changed ? &I : 0;
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001259}
1260
Chris Lattnerc2076352004-02-16 01:20:27 +00001261// XorSelf - Implements: X ^ X --> 0
1262struct XorSelf {
1263 Value *RHS;
1264 XorSelf(Value *rhs) : RHS(rhs) {}
1265 bool shouldApply(Value *LHS) const { return LHS == RHS; }
1266 Instruction *apply(BinaryOperator &Xor) const {
1267 return &Xor;
1268 }
1269};
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001270
1271
Chris Lattner113f4f42002-06-25 16:13:24 +00001272Instruction *InstCombiner::visitXor(BinaryOperator &I) {
Chris Lattnerdcf240a2003-03-10 21:43:22 +00001273 bool Changed = SimplifyCommutative(I);
Chris Lattner113f4f42002-06-25 16:13:24 +00001274 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001275
Chris Lattnerc2076352004-02-16 01:20:27 +00001276 // xor X, X = 0, even if X is nested in a sequence of Xor's.
1277 if (Instruction *Result = AssociativeOpt(I, XorSelf(Op1))) {
1278 assert(Result == &I && "AssociativeOpt didn't work?");
Chris Lattnere6794492002-08-12 21:17:25 +00001279 return ReplaceInstUsesWith(I, Constant::getNullValue(I.getType()));
Chris Lattnerc2076352004-02-16 01:20:27 +00001280 }
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001281
Chris Lattner97638592003-07-23 21:37:07 +00001282 if (ConstantIntegral *RHS = dyn_cast<ConstantIntegral>(Op1)) {
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001283 // xor X, 0 == X
Chris Lattner97638592003-07-23 21:37:07 +00001284 if (RHS->isNullValue())
Chris Lattnere6794492002-08-12 21:17:25 +00001285 return ReplaceInstUsesWith(I, Op0);
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001286
Chris Lattner97638592003-07-23 21:37:07 +00001287 if (BinaryOperator *Op0I = dyn_cast<BinaryOperator>(Op0)) {
Chris Lattnerb8d6e402002-08-20 18:24:26 +00001288 // xor (setcc A, B), true = not (setcc A, B) = setncc A, B
Chris Lattner97638592003-07-23 21:37:07 +00001289 if (SetCondInst *SCI = dyn_cast<SetCondInst>(Op0I))
Chris Lattnerf95d9b92003-10-15 16:48:29 +00001290 if (RHS == ConstantBool::True && SCI->hasOneUse())
Chris Lattnerb8d6e402002-08-20 18:24:26 +00001291 return new SetCondInst(SCI->getInverseCondition(),
1292 SCI->getOperand(0), SCI->getOperand(1));
Chris Lattnere5806662003-11-04 23:50:51 +00001293
Chris Lattner8f2f5982003-11-05 01:06:05 +00001294 // ~(c-X) == X-c-1 == X+(-c-1)
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001295 if (Op0I->getOpcode() == Instruction::Sub && RHS->isAllOnesValue())
1296 if (Constant *Op0I0C = dyn_cast<Constant>(Op0I->getOperand(0))) {
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001297 Constant *NegOp0I0C = ConstantExpr::getNeg(Op0I0C);
1298 Constant *ConstantRHS = ConstantExpr::getSub(NegOp0I0C,
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001299 ConstantInt::get(I.getType(), 1));
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001300 return BinaryOperator::createAdd(Op0I->getOperand(1), ConstantRHS);
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001301 }
Chris Lattner97638592003-07-23 21:37:07 +00001302
1303 if (ConstantInt *Op0CI = dyn_cast<ConstantInt>(Op0I->getOperand(1)))
Chris Lattnere5806662003-11-04 23:50:51 +00001304 switch (Op0I->getOpcode()) {
1305 case Instruction::Add:
Chris Lattner0f68fa62003-11-04 23:37:10 +00001306 // ~(X-c) --> (-c-1)-X
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001307 if (RHS->isAllOnesValue()) {
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001308 Constant *NegOp0CI = ConstantExpr::getNeg(Op0CI);
1309 return BinaryOperator::createSub(
1310 ConstantExpr::getSub(NegOp0CI,
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001311 ConstantInt::get(I.getType(), 1)),
Chris Lattner0f68fa62003-11-04 23:37:10 +00001312 Op0I->getOperand(0));
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001313 }
Chris Lattnere5806662003-11-04 23:50:51 +00001314 break;
1315 case Instruction::And:
Chris Lattner97638592003-07-23 21:37:07 +00001316 // (X & C1) ^ C2 --> (X & C1) | C2 iff (C1&C2) == 0
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001317 if (ConstantExpr::getAnd(RHS, Op0CI)->isNullValue())
1318 return BinaryOperator::createOr(Op0, RHS);
Chris Lattnere5806662003-11-04 23:50:51 +00001319 break;
1320 case Instruction::Or:
Chris Lattner97638592003-07-23 21:37:07 +00001321 // (X | C1) ^ C2 --> (X | C1) & ~C2 iff (C1&C2) == C2
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001322 if (ConstantExpr::getAnd(RHS, Op0CI) == RHS)
1323 return BinaryOperator::createAnd(Op0, NotConstant(RHS));
Chris Lattnere5806662003-11-04 23:50:51 +00001324 break;
1325 default: break;
Chris Lattner97638592003-07-23 21:37:07 +00001326 }
Chris Lattnerb8d6e402002-08-20 18:24:26 +00001327 }
Chris Lattner183b3362004-04-09 19:05:30 +00001328
1329 // Try to fold constant and into select arguments.
1330 if (SelectInst *SI = dyn_cast<SelectInst>(Op0))
1331 if (Instruction *R = FoldBinOpIntoSelect(I, SI, this))
1332 return R;
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001333 }
1334
Chris Lattnerbb74e222003-03-10 23:06:50 +00001335 if (Value *X = dyn_castNotVal(Op0)) // ~A ^ A == -1
Chris Lattner3082c5a2003-02-18 19:28:33 +00001336 if (X == Op1)
1337 return ReplaceInstUsesWith(I,
1338 ConstantIntegral::getAllOnesValue(I.getType()));
1339
Chris Lattnerbb74e222003-03-10 23:06:50 +00001340 if (Value *X = dyn_castNotVal(Op1)) // A ^ ~A == -1
Chris Lattner3082c5a2003-02-18 19:28:33 +00001341 if (X == Op0)
1342 return ReplaceInstUsesWith(I,
1343 ConstantIntegral::getAllOnesValue(I.getType()));
1344
Chris Lattner1bbb7b62003-03-10 18:24:17 +00001345 if (Instruction *Op1I = dyn_cast<Instruction>(Op1))
Chris Lattnerb36d9082004-02-16 03:54:20 +00001346 if (Op1I->getOpcode() == Instruction::Or) {
Chris Lattner1bbb7b62003-03-10 18:24:17 +00001347 if (Op1I->getOperand(0) == Op0) { // B^(B|A) == (A|B)^B
1348 cast<BinaryOperator>(Op1I)->swapOperands();
1349 I.swapOperands();
1350 std::swap(Op0, Op1);
1351 } else if (Op1I->getOperand(1) == Op0) { // B^(A|B) == (A|B)^B
1352 I.swapOperands();
1353 std::swap(Op0, Op1);
Chris Lattnerb36d9082004-02-16 03:54:20 +00001354 }
1355 } else if (Op1I->getOpcode() == Instruction::Xor) {
1356 if (Op0 == Op1I->getOperand(0)) // A^(A^B) == B
1357 return ReplaceInstUsesWith(I, Op1I->getOperand(1));
1358 else if (Op0 == Op1I->getOperand(1)) // A^(B^A) == B
1359 return ReplaceInstUsesWith(I, Op1I->getOperand(0));
1360 }
Chris Lattner1bbb7b62003-03-10 18:24:17 +00001361
1362 if (Instruction *Op0I = dyn_cast<Instruction>(Op0))
Chris Lattnerf95d9b92003-10-15 16:48:29 +00001363 if (Op0I->getOpcode() == Instruction::Or && Op0I->hasOneUse()) {
Chris Lattner1bbb7b62003-03-10 18:24:17 +00001364 if (Op0I->getOperand(0) == Op1) // (B|A)^B == (A|B)^B
1365 cast<BinaryOperator>(Op0I)->swapOperands();
Chris Lattnerdcf240a2003-03-10 21:43:22 +00001366 if (Op0I->getOperand(1) == Op1) { // (A|B)^B == A & ~B
Chris Lattner396dbfe2004-06-09 05:08:07 +00001367 Value *NotB = InsertNewInstBefore(BinaryOperator::createNot(Op1,
1368 Op1->getName()+".not"), I);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001369 return BinaryOperator::createAnd(Op0I->getOperand(0), NotB);
Chris Lattner1bbb7b62003-03-10 18:24:17 +00001370 }
Chris Lattnerb36d9082004-02-16 03:54:20 +00001371 } else if (Op0I->getOpcode() == Instruction::Xor) {
1372 if (Op1 == Op0I->getOperand(0)) // (A^B)^A == B
1373 return ReplaceInstUsesWith(I, Op0I->getOperand(1));
1374 else if (Op1 == Op0I->getOperand(1)) // (B^A)^A == B
1375 return ReplaceInstUsesWith(I, Op0I->getOperand(0));
Chris Lattner1bbb7b62003-03-10 18:24:17 +00001376 }
1377
Chris Lattner7fb29e12003-03-11 00:12:48 +00001378 // (A & C1)^(B & C2) -> (A & C1)|(B & C2) iff C1^C2 == 0
1379 if (Constant *C1 = dyn_castMaskingAnd(Op0))
1380 if (Constant *C2 = dyn_castMaskingAnd(Op1))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001381 if (ConstantExpr::getAnd(C1, C2)->isNullValue())
1382 return BinaryOperator::createOr(Op0, Op1);
Chris Lattner7fb29e12003-03-11 00:12:48 +00001383
Chris Lattner3ac7c262003-08-13 20:16:26 +00001384 // (setcc1 A, B) ^ (setcc2 A, B) --> (setcc3 A, B)
1385 if (SetCondInst *RHS = dyn_cast<SetCondInst>(I.getOperand(1)))
1386 if (Instruction *R = AssociativeOpt(I, FoldSetCCLogical(*this, RHS)))
1387 return R;
1388
Chris Lattner113f4f42002-06-25 16:13:24 +00001389 return Changed ? &I : 0;
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001390}
1391
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001392// AddOne, SubOne - Add or subtract a constant one from an integer constant...
1393static Constant *AddOne(ConstantInt *C) {
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001394 return ConstantExpr::getAdd(C, ConstantInt::get(C->getType(), 1));
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001395}
1396static Constant *SubOne(ConstantInt *C) {
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001397 return ConstantExpr::getSub(C, ConstantInt::get(C->getType(), 1));
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001398}
1399
Chris Lattner1fc23f32002-05-09 20:11:54 +00001400// isTrueWhenEqual - Return true if the specified setcondinst instruction is
1401// true when both operands are equal...
1402//
Chris Lattner113f4f42002-06-25 16:13:24 +00001403static bool isTrueWhenEqual(Instruction &I) {
1404 return I.getOpcode() == Instruction::SetEQ ||
1405 I.getOpcode() == Instruction::SetGE ||
1406 I.getOpcode() == Instruction::SetLE;
Chris Lattner1fc23f32002-05-09 20:11:54 +00001407}
1408
Chris Lattner113f4f42002-06-25 16:13:24 +00001409Instruction *InstCombiner::visitSetCondInst(BinaryOperator &I) {
Chris Lattnerdcf240a2003-03-10 21:43:22 +00001410 bool Changed = SimplifyCommutative(I);
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001411 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
1412 const Type *Ty = Op0->getType();
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001413
1414 // setcc X, X
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001415 if (Op0 == Op1)
1416 return ReplaceInstUsesWith(I, ConstantBool::get(isTrueWhenEqual(I)));
Chris Lattner1fc23f32002-05-09 20:11:54 +00001417
Chris Lattnerd07283a2003-08-13 05:38:46 +00001418 // setcc <global/alloca*>, 0 - Global/Stack value addresses are never null!
1419 if (isa<ConstantPointerNull>(Op1) &&
1420 (isa<GlobalValue>(Op0) || isa<AllocaInst>(Op0)))
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001421 return ReplaceInstUsesWith(I, ConstantBool::get(!isTrueWhenEqual(I)));
1422
Chris Lattnerd07283a2003-08-13 05:38:46 +00001423
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001424 // setcc's with boolean values can always be turned into bitwise operations
1425 if (Ty == Type::BoolTy) {
1426 // If this is <, >, or !=, we can change this into a simple xor instruction
1427 if (!isTrueWhenEqual(I))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001428 return BinaryOperator::createXor(Op0, Op1);
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001429
1430 // Otherwise we need to make a temporary intermediate instruction and insert
1431 // it into the instruction stream. This is what we are after:
1432 //
1433 // seteq bool %A, %B -> ~(A^B)
1434 // setle bool %A, %B -> ~A | B
1435 // setge bool %A, %B -> A | ~B
1436 //
1437 if (I.getOpcode() == Instruction::SetEQ) { // seteq case
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001438 Instruction *Xor = BinaryOperator::createXor(Op0, Op1, I.getName()+"tmp");
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001439 InsertNewInstBefore(Xor, I);
Chris Lattner16930792003-11-03 04:25:02 +00001440 return BinaryOperator::createNot(Xor);
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001441 }
1442
1443 // Handle the setXe cases...
1444 assert(I.getOpcode() == Instruction::SetGE ||
1445 I.getOpcode() == Instruction::SetLE);
1446
1447 if (I.getOpcode() == Instruction::SetGE)
1448 std::swap(Op0, Op1); // Change setge -> setle
1449
1450 // Now we just have the SetLE case.
Chris Lattner31ae8632002-08-14 17:51:49 +00001451 Instruction *Not = BinaryOperator::createNot(Op0, I.getName()+"tmp");
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001452 InsertNewInstBefore(Not, I);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001453 return BinaryOperator::createOr(Not, Op1);
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001454 }
1455
Chris Lattner2dd01742004-06-09 04:24:29 +00001456 // See if we are doing a comparison between a constant and an instruction that
1457 // can be folded into the comparison.
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001458 if (ConstantInt *CI = dyn_cast<ConstantInt>(Op1)) {
Chris Lattnere1e10e12004-05-25 06:32:08 +00001459 if (Instruction *LHSI = dyn_cast<Instruction>(Op0))
Chris Lattner2dd01742004-06-09 04:24:29 +00001460 if (LHSI->hasOneUse())
Chris Lattner35167c32004-06-09 07:59:58 +00001461 switch (LHSI->getOpcode()) {
1462 case Instruction::And:
1463 if (isa<ConstantInt>(LHSI->getOperand(1))) {
1464
Chris Lattnere1e10e12004-05-25 06:32:08 +00001465
Chris Lattner35167c32004-06-09 07:59:58 +00001466 // If this is: (X >> C1) & C2 != C3 (where any shift and any compare
1467 // could exist), turn it into (X & (C2 << C1)) != (C3 << C1). This
1468 // happens a LOT in code produced by the C front-end, for bitfield
1469 // access.
1470 if (LHSI->getOperand(0)->hasOneUse())
1471 if (ShiftInst *Shift = dyn_cast<ShiftInst>(LHSI->getOperand(0)))
1472 if (ConstantUInt *ShAmt =
1473 dyn_cast<ConstantUInt>(Shift->getOperand(1))) {
1474 ConstantInt *AndCST = cast<ConstantInt>(LHSI->getOperand(1));
1475
1476 // We can fold this as long as we can't shift unknown bits
1477 // into the mask. This can only happen with signed shift
1478 // rights, as they sign-extend.
1479 const Type *Ty = Shift->getType();
1480 if (Shift->getOpcode() != Instruction::Shr ||
1481 Shift->getType()->isUnsigned() ||
1482 // To test for the bad case of the signed shr, see if any
1483 // of the bits shifted in could be tested after the mask.
1484 ConstantExpr::getAnd(ConstantExpr::getShl(ConstantInt::getAllOnesValue(Ty), ConstantUInt::get(Type::UByteTy, Ty->getPrimitiveSize()*8-ShAmt->getValue())), AndCST)->isNullValue()) {
1485 unsigned ShiftOp = Shift->getOpcode() == Instruction::Shl
1486 ? Instruction::Shr : Instruction::Shl;
1487 I.setOperand(1, ConstantExpr::get(ShiftOp, CI, ShAmt));
1488 LHSI->setOperand(1,ConstantExpr::get(ShiftOp,AndCST,ShAmt));
1489 LHSI->setOperand(0, Shift->getOperand(0));
1490 WorkList.push_back(Shift); // Shift is probably dead.
1491 AddUsesToWorkList(I);
1492 return &I;
1493 }
Chris Lattner2dd01742004-06-09 04:24:29 +00001494 }
Chris Lattner35167c32004-06-09 07:59:58 +00001495 }
1496 break;
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001497 case Instruction::Div:
1498 if (0 && isa<ConstantInt>(LHSI->getOperand(1))) {
1499 std::cerr << "COULD FOLD: " << *LHSI;
1500 std::cerr << "COULD FOLD: " << I << "\n";
1501 }
1502 break;
Chris Lattner35167c32004-06-09 07:59:58 +00001503 case Instruction::Select:
Chris Lattner2dd01742004-06-09 04:24:29 +00001504 // If either operand of the select is a constant, we can fold the
1505 // comparison into the select arms, which will cause one to be
1506 // constant folded and the select turned into a bitwise or.
1507 Value *Op1 = 0, *Op2 = 0;
Chris Lattner35167c32004-06-09 07:59:58 +00001508 if (Constant *C = dyn_cast<Constant>(LHSI->getOperand(1))) {
Chris Lattner2dd01742004-06-09 04:24:29 +00001509 // Fold the known value into the constant operand.
1510 Op1 = ConstantExpr::get(I.getOpcode(), C, CI);
1511 // Insert a new SetCC of the other select operand.
1512 Op2 = InsertNewInstBefore(new SetCondInst(I.getOpcode(),
Chris Lattner35167c32004-06-09 07:59:58 +00001513 LHSI->getOperand(2), CI,
Chris Lattner2dd01742004-06-09 04:24:29 +00001514 I.getName()), I);
Chris Lattner35167c32004-06-09 07:59:58 +00001515 } else if (Constant *C = dyn_cast<Constant>(LHSI->getOperand(2))) {
Chris Lattner2dd01742004-06-09 04:24:29 +00001516 // Fold the known value into the constant operand.
1517 Op2 = ConstantExpr::get(I.getOpcode(), C, CI);
1518 // Insert a new SetCC of the other select operand.
1519 Op1 = InsertNewInstBefore(new SetCondInst(I.getOpcode(),
Chris Lattner35167c32004-06-09 07:59:58 +00001520 LHSI->getOperand(1), CI,
Chris Lattner2dd01742004-06-09 04:24:29 +00001521 I.getName()), I);
1522 }
1523
1524 if (Op1)
Chris Lattner35167c32004-06-09 07:59:58 +00001525 return new SelectInst(LHSI->getOperand(0), Op1, Op2);
1526 break;
Chris Lattner2dd01742004-06-09 04:24:29 +00001527 }
Chris Lattnere1e10e12004-05-25 06:32:08 +00001528
Chris Lattnerd492a0b2003-07-23 17:02:11 +00001529 // Simplify seteq and setne instructions...
1530 if (I.getOpcode() == Instruction::SetEQ ||
1531 I.getOpcode() == Instruction::SetNE) {
1532 bool isSetNE = I.getOpcode() == Instruction::SetNE;
1533
Chris Lattnercfbce7c2003-07-23 17:26:36 +00001534 // If the first operand is (and|or|xor) with a constant, and the second
Chris Lattnerd492a0b2003-07-23 17:02:11 +00001535 // operand is a constant, simplify a bit.
Chris Lattnerc992add2003-08-13 05:33:12 +00001536 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(Op0)) {
1537 switch (BO->getOpcode()) {
1538 case Instruction::Add:
1539 if (CI->isNullValue()) {
1540 // Replace ((add A, B) != 0) with (A != -B) if A or B is
1541 // efficiently invertible, or if the add has just this one use.
1542 Value *BOp0 = BO->getOperand(0), *BOp1 = BO->getOperand(1);
1543 if (Value *NegVal = dyn_castNegVal(BOp1))
1544 return new SetCondInst(I.getOpcode(), BOp0, NegVal);
1545 else if (Value *NegVal = dyn_castNegVal(BOp0))
1546 return new SetCondInst(I.getOpcode(), NegVal, BOp1);
Chris Lattnerf95d9b92003-10-15 16:48:29 +00001547 else if (BO->hasOneUse()) {
Chris Lattnerc992add2003-08-13 05:33:12 +00001548 Instruction *Neg = BinaryOperator::createNeg(BOp1, BO->getName());
1549 BO->setName("");
1550 InsertNewInstBefore(Neg, I);
1551 return new SetCondInst(I.getOpcode(), BOp0, Neg);
1552 }
1553 }
1554 break;
1555 case Instruction::Xor:
1556 // For the xor case, we can xor two constants together, eliminating
1557 // the explicit xor.
1558 if (Constant *BOC = dyn_cast<Constant>(BO->getOperand(1)))
1559 return BinaryOperator::create(I.getOpcode(), BO->getOperand(0),
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001560 ConstantExpr::getXor(CI, BOC));
Chris Lattnerc992add2003-08-13 05:33:12 +00001561
1562 // FALLTHROUGH
1563 case Instruction::Sub:
1564 // Replace (([sub|xor] A, B) != 0) with (A != B)
1565 if (CI->isNullValue())
1566 return new SetCondInst(I.getOpcode(), BO->getOperand(0),
1567 BO->getOperand(1));
1568 break;
1569
1570 case Instruction::Or:
1571 // If bits are being or'd in that are not present in the constant we
1572 // are comparing against, then the comparison could never succeed!
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001573 if (Constant *BOC = dyn_cast<Constant>(BO->getOperand(1))) {
1574 Constant *NotCI = NotConstant(CI);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001575 if (!ConstantExpr::getAnd(BOC, NotCI)->isNullValue())
Chris Lattnerd492a0b2003-07-23 17:02:11 +00001576 return ReplaceInstUsesWith(I, ConstantBool::get(isSetNE));
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001577 }
Chris Lattnerc992add2003-08-13 05:33:12 +00001578 break;
1579
1580 case Instruction::And:
1581 if (ConstantInt *BOC = dyn_cast<ConstantInt>(BO->getOperand(1))) {
Chris Lattnerd492a0b2003-07-23 17:02:11 +00001582 // If bits are being compared against that are and'd out, then the
1583 // comparison can never succeed!
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001584 if (!ConstantExpr::getAnd(CI, NotConstant(BOC))->isNullValue())
Chris Lattnerd492a0b2003-07-23 17:02:11 +00001585 return ReplaceInstUsesWith(I, ConstantBool::get(isSetNE));
Chris Lattnerc992add2003-08-13 05:33:12 +00001586
Chris Lattner35167c32004-06-09 07:59:58 +00001587 // If we have ((X & C) == C), turn it into ((X & C) != 0).
1588 if (CI == BOC) {
1589 // Don't infinite loop if C is null and the & isn't folded yet.
1590 if (CI->isNullValue())
1591 return ReplaceInstUsesWith(I, ConstantBool::get(!isSetNE));
1592 return new SetCondInst(isSetNE ? Instruction::SetEQ :
1593 Instruction::SetNE, Op0,
1594 Constant::getNullValue(CI->getType()));
1595 }
1596
Chris Lattnerc992add2003-08-13 05:33:12 +00001597 // Replace (and X, (1 << size(X)-1) != 0) with x < 0, converting X
1598 // to be a signed value as appropriate.
1599 if (isSignBit(BOC)) {
1600 Value *X = BO->getOperand(0);
1601 // If 'X' is not signed, insert a cast now...
1602 if (!BOC->getType()->isSigned()) {
Chris Lattnere79e8542004-02-23 06:38:22 +00001603 const Type *DestTy = getSignedIntegralType(BOC->getType());
Chris Lattnerc992add2003-08-13 05:33:12 +00001604 CastInst *NewCI = new CastInst(X,DestTy,X->getName()+".signed");
1605 InsertNewInstBefore(NewCI, I);
1606 X = NewCI;
1607 }
1608 return new SetCondInst(isSetNE ? Instruction::SetLT :
1609 Instruction::SetGE, X,
1610 Constant::getNullValue(X->getType()));
1611 }
Chris Lattnerd492a0b2003-07-23 17:02:11 +00001612 }
Chris Lattnerc992add2003-08-13 05:33:12 +00001613 default: break;
1614 }
1615 }
Chris Lattner2b55ea32004-02-23 07:16:20 +00001616 } else { // Not a SetEQ/SetNE
1617 // If the LHS is a cast from an integral value of the same size,
1618 if (CastInst *Cast = dyn_cast<CastInst>(Op0)) {
1619 Value *CastOp = Cast->getOperand(0);
1620 const Type *SrcTy = CastOp->getType();
1621 unsigned SrcTySize = SrcTy->getPrimitiveSize();
1622 if (SrcTy != Cast->getType() && SrcTy->isInteger() &&
1623 SrcTySize == Cast->getType()->getPrimitiveSize()) {
1624 assert((SrcTy->isSigned() ^ Cast->getType()->isSigned()) &&
1625 "Source and destination signednesses should differ!");
1626 if (Cast->getType()->isSigned()) {
1627 // If this is a signed comparison, check for comparisons in the
1628 // vicinity of zero.
1629 if (I.getOpcode() == Instruction::SetLT && CI->isNullValue())
1630 // X < 0 => x > 127
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001631 return BinaryOperator::createSetGT(CastOp,
Chris Lattner2b55ea32004-02-23 07:16:20 +00001632 ConstantUInt::get(SrcTy, (1ULL << (SrcTySize*8-1))-1));
1633 else if (I.getOpcode() == Instruction::SetGT &&
1634 cast<ConstantSInt>(CI)->getValue() == -1)
1635 // X > -1 => x < 128
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001636 return BinaryOperator::createSetLT(CastOp,
Chris Lattner2b55ea32004-02-23 07:16:20 +00001637 ConstantUInt::get(SrcTy, 1ULL << (SrcTySize*8-1)));
1638 } else {
1639 ConstantUInt *CUI = cast<ConstantUInt>(CI);
1640 if (I.getOpcode() == Instruction::SetLT &&
1641 CUI->getValue() == 1ULL << (SrcTySize*8-1))
1642 // X < 128 => X > -1
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001643 return BinaryOperator::createSetGT(CastOp,
1644 ConstantSInt::get(SrcTy, -1));
Chris Lattner2b55ea32004-02-23 07:16:20 +00001645 else if (I.getOpcode() == Instruction::SetGT &&
1646 CUI->getValue() == (1ULL << (SrcTySize*8-1))-1)
1647 // X > 127 => X < 0
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001648 return BinaryOperator::createSetLT(CastOp,
1649 Constant::getNullValue(SrcTy));
Chris Lattner2b55ea32004-02-23 07:16:20 +00001650 }
1651 }
1652 }
Chris Lattnere967b342003-06-04 05:10:11 +00001653 }
Chris Lattner791ac1a2003-06-01 03:35:25 +00001654
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001655 // Check to see if we are comparing against the minimum or maximum value...
Chris Lattnere6794492002-08-12 21:17:25 +00001656 if (CI->isMinValue()) {
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001657 if (I.getOpcode() == Instruction::SetLT) // A < MIN -> FALSE
1658 return ReplaceInstUsesWith(I, ConstantBool::False);
1659 if (I.getOpcode() == Instruction::SetGE) // A >= MIN -> TRUE
1660 return ReplaceInstUsesWith(I, ConstantBool::True);
1661 if (I.getOpcode() == Instruction::SetLE) // A <= MIN -> A == MIN
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001662 return BinaryOperator::createSetEQ(Op0, Op1);
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001663 if (I.getOpcode() == Instruction::SetGT) // A > MIN -> A != MIN
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001664 return BinaryOperator::createSetNE(Op0, Op1);
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001665
Chris Lattnere6794492002-08-12 21:17:25 +00001666 } else if (CI->isMaxValue()) {
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001667 if (I.getOpcode() == Instruction::SetGT) // A > MAX -> FALSE
1668 return ReplaceInstUsesWith(I, ConstantBool::False);
1669 if (I.getOpcode() == Instruction::SetLE) // A <= MAX -> TRUE
1670 return ReplaceInstUsesWith(I, ConstantBool::True);
1671 if (I.getOpcode() == Instruction::SetGE) // A >= MAX -> A == MAX
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001672 return BinaryOperator::createSetEQ(Op0, Op1);
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001673 if (I.getOpcode() == Instruction::SetLT) // A < MAX -> A != MAX
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001674 return BinaryOperator::createSetNE(Op0, Op1);
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001675
1676 // Comparing against a value really close to min or max?
1677 } else if (isMinValuePlusOne(CI)) {
1678 if (I.getOpcode() == Instruction::SetLT) // A < MIN+1 -> A == MIN
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001679 return BinaryOperator::createSetEQ(Op0, SubOne(CI));
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001680 if (I.getOpcode() == Instruction::SetGE) // A >= MIN-1 -> A != MIN
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001681 return BinaryOperator::createSetNE(Op0, SubOne(CI));
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001682
1683 } else if (isMaxValueMinusOne(CI)) {
1684 if (I.getOpcode() == Instruction::SetGT) // A > MAX-1 -> A == MAX
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001685 return BinaryOperator::createSetEQ(Op0, AddOne(CI));
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001686 if (I.getOpcode() == Instruction::SetLE) // A <= MAX-1 -> A != MAX
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001687 return BinaryOperator::createSetNE(Op0, AddOne(CI));
Chris Lattner6d14f2a2002-08-09 23:47:40 +00001688 }
Chris Lattner59611142004-02-23 05:47:48 +00001689
1690 // If we still have a setle or setge instruction, turn it into the
1691 // appropriate setlt or setgt instruction. Since the border cases have
1692 // already been handled above, this requires little checking.
1693 //
1694 if (I.getOpcode() == Instruction::SetLE)
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001695 return BinaryOperator::createSetLT(Op0, AddOne(CI));
Chris Lattner59611142004-02-23 05:47:48 +00001696 if (I.getOpcode() == Instruction::SetGE)
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001697 return BinaryOperator::createSetGT(Op0, SubOne(CI));
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001698 }
1699
Chris Lattner16930792003-11-03 04:25:02 +00001700 // Test to see if the operands of the setcc are casted versions of other
1701 // values. If the cast can be stripped off both arguments, we do so now.
Chris Lattner6444c372003-11-03 05:17:03 +00001702 if (CastInst *CI = dyn_cast<CastInst>(Op0)) {
1703 Value *CastOp0 = CI->getOperand(0);
1704 if (CastOp0->getType()->isLosslesslyConvertibleTo(CI->getType()) &&
Chris Lattner7d2a5392004-03-13 23:54:27 +00001705 (isa<Constant>(Op1) || isa<CastInst>(Op1)) &&
Chris Lattner16930792003-11-03 04:25:02 +00001706 (I.getOpcode() == Instruction::SetEQ ||
1707 I.getOpcode() == Instruction::SetNE)) {
1708 // We keep moving the cast from the left operand over to the right
1709 // operand, where it can often be eliminated completely.
Chris Lattner6444c372003-11-03 05:17:03 +00001710 Op0 = CastOp0;
Chris Lattner16930792003-11-03 04:25:02 +00001711
1712 // If operand #1 is a cast instruction, see if we can eliminate it as
1713 // well.
Chris Lattner6444c372003-11-03 05:17:03 +00001714 if (CastInst *CI2 = dyn_cast<CastInst>(Op1))
1715 if (CI2->getOperand(0)->getType()->isLosslesslyConvertibleTo(
Chris Lattner16930792003-11-03 04:25:02 +00001716 Op0->getType()))
Chris Lattner6444c372003-11-03 05:17:03 +00001717 Op1 = CI2->getOperand(0);
Chris Lattner16930792003-11-03 04:25:02 +00001718
1719 // If Op1 is a constant, we can fold the cast into the constant.
1720 if (Op1->getType() != Op0->getType())
1721 if (Constant *Op1C = dyn_cast<Constant>(Op1)) {
1722 Op1 = ConstantExpr::getCast(Op1C, Op0->getType());
1723 } else {
1724 // Otherwise, cast the RHS right before the setcc
1725 Op1 = new CastInst(Op1, Op0->getType(), Op1->getName());
1726 InsertNewInstBefore(cast<Instruction>(Op1), I);
1727 }
1728 return BinaryOperator::create(I.getOpcode(), Op0, Op1);
1729 }
1730
Chris Lattner6444c372003-11-03 05:17:03 +00001731 // Handle the special case of: setcc (cast bool to X), <cst>
1732 // This comes up when you have code like
1733 // int X = A < B;
1734 // if (X) ...
1735 // For generality, we handle any zero-extension of any operand comparison
1736 // with a constant.
1737 if (ConstantInt *ConstantRHS = dyn_cast<ConstantInt>(Op1)) {
1738 const Type *SrcTy = CastOp0->getType();
1739 const Type *DestTy = Op0->getType();
1740 if (SrcTy->getPrimitiveSize() < DestTy->getPrimitiveSize() &&
1741 (SrcTy->isUnsigned() || SrcTy == Type::BoolTy)) {
1742 // Ok, we have an expansion of operand 0 into a new type. Get the
1743 // constant value, masink off bits which are not set in the RHS. These
1744 // could be set if the destination value is signed.
1745 uint64_t ConstVal = ConstantRHS->getRawValue();
1746 ConstVal &= (1ULL << DestTy->getPrimitiveSize()*8)-1;
1747
1748 // If the constant we are comparing it with has high bits set, which
1749 // don't exist in the original value, the values could never be equal,
1750 // because the source would be zero extended.
1751 unsigned SrcBits =
1752 SrcTy == Type::BoolTy ? 1 : SrcTy->getPrimitiveSize()*8;
Chris Lattner7c94d112003-11-05 17:31:36 +00001753 bool HasSignBit = ConstVal & (1ULL << (DestTy->getPrimitiveSize()*8-1));
1754 if (ConstVal & ~((1ULL << SrcBits)-1)) {
Chris Lattner6444c372003-11-03 05:17:03 +00001755 switch (I.getOpcode()) {
1756 default: assert(0 && "Unknown comparison type!");
1757 case Instruction::SetEQ:
1758 return ReplaceInstUsesWith(I, ConstantBool::False);
1759 case Instruction::SetNE:
1760 return ReplaceInstUsesWith(I, ConstantBool::True);
1761 case Instruction::SetLT:
1762 case Instruction::SetLE:
1763 if (DestTy->isSigned() && HasSignBit)
1764 return ReplaceInstUsesWith(I, ConstantBool::False);
1765 return ReplaceInstUsesWith(I, ConstantBool::True);
1766 case Instruction::SetGT:
1767 case Instruction::SetGE:
1768 if (DestTy->isSigned() && HasSignBit)
1769 return ReplaceInstUsesWith(I, ConstantBool::True);
1770 return ReplaceInstUsesWith(I, ConstantBool::False);
1771 }
1772 }
1773
1774 // Otherwise, we can replace the setcc with a setcc of the smaller
1775 // operand value.
1776 Op1 = ConstantExpr::getCast(cast<Constant>(Op1), SrcTy);
1777 return BinaryOperator::create(I.getOpcode(), CastOp0, Op1);
1778 }
1779 }
1780 }
Chris Lattner113f4f42002-06-25 16:13:24 +00001781 return Changed ? &I : 0;
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001782}
1783
1784
1785
Chris Lattnere8d6c602003-03-10 19:16:08 +00001786Instruction *InstCombiner::visitShiftInst(ShiftInst &I) {
Chris Lattner113f4f42002-06-25 16:13:24 +00001787 assert(I.getOperand(1)->getType() == Type::UByteTy);
1788 Value *Op0 = I.getOperand(0), *Op1 = I.getOperand(1);
Chris Lattnerdeaa0dd2003-08-12 21:53:41 +00001789 bool isLeftShift = I.getOpcode() == Instruction::Shl;
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001790
1791 // shl X, 0 == X and shr X, 0 == X
1792 // shl 0, X == 0 and shr 0, X == 0
1793 if (Op1 == Constant::getNullValue(Type::UByteTy) ||
Chris Lattnere6794492002-08-12 21:17:25 +00001794 Op0 == Constant::getNullValue(Op0->getType()))
1795 return ReplaceInstUsesWith(I, Op0);
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001796
Chris Lattnerdeaa0dd2003-08-12 21:53:41 +00001797 // shr int -1, X = -1 (for any arithmetic shift rights of ~0)
1798 if (!isLeftShift)
1799 if (ConstantSInt *CSI = dyn_cast<ConstantSInt>(Op0))
1800 if (CSI->isAllOnesValue())
1801 return ReplaceInstUsesWith(I, CSI);
1802
Chris Lattner183b3362004-04-09 19:05:30 +00001803 // Try to fold constant and into select arguments.
1804 if (isa<Constant>(Op0))
1805 if (SelectInst *SI = dyn_cast<SelectInst>(Op1))
1806 if (Instruction *R = FoldBinOpIntoSelect(I, SI, this))
1807 return R;
1808
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001809 if (ConstantUInt *CUI = dyn_cast<ConstantUInt>(Op1)) {
Chris Lattner3204d4e2003-07-24 17:52:58 +00001810 // shl uint X, 32 = 0 and shr ubyte Y, 9 = 0, ... just don't eliminate shr
1811 // of a signed value.
1812 //
Chris Lattnere8d6c602003-03-10 19:16:08 +00001813 unsigned TypeBits = Op0->getType()->getPrimitiveSize()*8;
Chris Lattnerf5ce2542004-02-23 20:30:06 +00001814 if (CUI->getValue() >= TypeBits) {
1815 if (!Op0->getType()->isSigned() || isLeftShift)
1816 return ReplaceInstUsesWith(I, Constant::getNullValue(Op0->getType()));
1817 else {
1818 I.setOperand(1, ConstantUInt::get(Type::UByteTy, TypeBits-1));
1819 return &I;
1820 }
1821 }
Chris Lattner55f3d942002-09-10 23:04:09 +00001822
Chris Lattnerede3fe02003-08-13 04:18:28 +00001823 // ((X*C1) << C2) == (X * (C1 << C2))
1824 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(Op0))
1825 if (BO->getOpcode() == Instruction::Mul && isLeftShift)
1826 if (Constant *BOOp = dyn_cast<Constant>(BO->getOperand(1)))
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001827 return BinaryOperator::createMul(BO->getOperand(0),
1828 ConstantExpr::getShl(BOOp, CUI));
Chris Lattnerede3fe02003-08-13 04:18:28 +00001829
Chris Lattner183b3362004-04-09 19:05:30 +00001830 // Try to fold constant and into select arguments.
1831 if (SelectInst *SI = dyn_cast<SelectInst>(Op0))
1832 if (Instruction *R = FoldBinOpIntoSelect(I, SI, this))
1833 return R;
Chris Lattnerede3fe02003-08-13 04:18:28 +00001834
Chris Lattnerdeaa0dd2003-08-12 21:53:41 +00001835 // If the operand is an bitwise operator with a constant RHS, and the
1836 // shift is the only use, we can pull it out of the shift.
Chris Lattnerf95d9b92003-10-15 16:48:29 +00001837 if (Op0->hasOneUse())
Chris Lattnerdeaa0dd2003-08-12 21:53:41 +00001838 if (BinaryOperator *Op0BO = dyn_cast<BinaryOperator>(Op0))
1839 if (ConstantInt *Op0C = dyn_cast<ConstantInt>(Op0BO->getOperand(1))) {
1840 bool isValid = true; // Valid only for And, Or, Xor
1841 bool highBitSet = false; // Transform if high bit of constant set?
1842
1843 switch (Op0BO->getOpcode()) {
1844 default: isValid = false; break; // Do not perform transform!
1845 case Instruction::Or:
1846 case Instruction::Xor:
1847 highBitSet = false;
1848 break;
1849 case Instruction::And:
1850 highBitSet = true;
1851 break;
1852 }
1853
1854 // If this is a signed shift right, and the high bit is modified
1855 // by the logical operation, do not perform the transformation.
1856 // The highBitSet boolean indicates the value of the high bit of
1857 // the constant which would cause it to be modified for this
1858 // operation.
1859 //
1860 if (isValid && !isLeftShift && !I.getType()->isUnsigned()) {
1861 uint64_t Val = Op0C->getRawValue();
1862 isValid = ((Val & (1 << (TypeBits-1))) != 0) == highBitSet;
1863 }
1864
1865 if (isValid) {
Chris Lattnerc1e7cc02004-01-12 19:35:11 +00001866 Constant *NewRHS = ConstantExpr::get(I.getOpcode(), Op0C, CUI);
Chris Lattnerdeaa0dd2003-08-12 21:53:41 +00001867
1868 Instruction *NewShift =
1869 new ShiftInst(I.getOpcode(), Op0BO->getOperand(0), CUI,
1870 Op0BO->getName());
1871 Op0BO->setName("");
1872 InsertNewInstBefore(NewShift, I);
1873
1874 return BinaryOperator::create(Op0BO->getOpcode(), NewShift,
1875 NewRHS);
1876 }
1877 }
1878
Chris Lattner3204d4e2003-07-24 17:52:58 +00001879 // If this is a shift of a shift, see if we can fold the two together...
Chris Lattnerdeaa0dd2003-08-12 21:53:41 +00001880 if (ShiftInst *Op0SI = dyn_cast<ShiftInst>(Op0))
Chris Lattnerab780df2003-07-24 18:38:56 +00001881 if (ConstantUInt *ShiftAmt1C =
1882 dyn_cast<ConstantUInt>(Op0SI->getOperand(1))) {
Chris Lattner3204d4e2003-07-24 17:52:58 +00001883 unsigned ShiftAmt1 = ShiftAmt1C->getValue();
1884 unsigned ShiftAmt2 = CUI->getValue();
1885
1886 // Check for (A << c1) << c2 and (A >> c1) >> c2
1887 if (I.getOpcode() == Op0SI->getOpcode()) {
1888 unsigned Amt = ShiftAmt1+ShiftAmt2; // Fold into one big shift...
Chris Lattnerf5ce2542004-02-23 20:30:06 +00001889 if (Op0->getType()->getPrimitiveSize()*8 < Amt)
1890 Amt = Op0->getType()->getPrimitiveSize()*8;
Chris Lattner3204d4e2003-07-24 17:52:58 +00001891 return new ShiftInst(I.getOpcode(), Op0SI->getOperand(0),
1892 ConstantUInt::get(Type::UByteTy, Amt));
1893 }
1894
Chris Lattnerab780df2003-07-24 18:38:56 +00001895 // Check for (A << c1) >> c2 or visaversa. If we are dealing with
1896 // signed types, we can only support the (A >> c1) << c2 configuration,
1897 // because it can not turn an arbitrary bit of A into a sign bit.
Chris Lattnerdeaa0dd2003-08-12 21:53:41 +00001898 if (I.getType()->isUnsigned() || isLeftShift) {
Chris Lattner3204d4e2003-07-24 17:52:58 +00001899 // Calculate bitmask for what gets shifted off the edge...
1900 Constant *C = ConstantIntegral::getAllOnesValue(I.getType());
Chris Lattnerdeaa0dd2003-08-12 21:53:41 +00001901 if (isLeftShift)
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001902 C = ConstantExpr::getShl(C, ShiftAmt1C);
Chris Lattnerdeaa0dd2003-08-12 21:53:41 +00001903 else
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001904 C = ConstantExpr::getShr(C, ShiftAmt1C);
Chris Lattner3204d4e2003-07-24 17:52:58 +00001905
1906 Instruction *Mask =
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00001907 BinaryOperator::createAnd(Op0SI->getOperand(0), C,
1908 Op0SI->getOperand(0)->getName()+".mask");
Chris Lattner3204d4e2003-07-24 17:52:58 +00001909 InsertNewInstBefore(Mask, I);
1910
1911 // Figure out what flavor of shift we should use...
1912 if (ShiftAmt1 == ShiftAmt2)
1913 return ReplaceInstUsesWith(I, Mask); // (A << c) >> c === A & c2
1914 else if (ShiftAmt1 < ShiftAmt2) {
1915 return new ShiftInst(I.getOpcode(), Mask,
1916 ConstantUInt::get(Type::UByteTy, ShiftAmt2-ShiftAmt1));
1917 } else {
1918 return new ShiftInst(Op0SI->getOpcode(), Mask,
1919 ConstantUInt::get(Type::UByteTy, ShiftAmt1-ShiftAmt2));
1920 }
1921 }
1922 }
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001923 }
Chris Lattner2e0fb392002-10-08 16:16:40 +00001924
Chris Lattnerf4cdbf32002-05-06 16:14:14 +00001925 return 0;
1926}
1927
1928
Chris Lattner48a44f72002-05-02 17:06:02 +00001929// isEliminableCastOfCast - Return true if it is valid to eliminate the CI
1930// instruction.
1931//
Chris Lattnerdfae8be2003-07-24 17:35:25 +00001932static inline bool isEliminableCastOfCast(const Type *SrcTy, const Type *MidTy,
1933 const Type *DstTy) {
Chris Lattner48a44f72002-05-02 17:06:02 +00001934
Chris Lattner650b6da2002-08-02 20:00:25 +00001935 // It is legal to eliminate the instruction if casting A->B->A if the sizes
1936 // are identical and the bits don't get reinterpreted (for example
Chris Lattner0bb75912002-08-14 23:21:10 +00001937 // int->float->int would not be allowed)
Misha Brukmane5838c42003-05-20 18:45:36 +00001938 if (SrcTy == DstTy && SrcTy->isLosslesslyConvertibleTo(MidTy))
Chris Lattner650b6da2002-08-02 20:00:25 +00001939 return true;
Chris Lattner48a44f72002-05-02 17:06:02 +00001940
1941 // Allow free casting and conversion of sizes as long as the sign doesn't
1942 // change...
Chris Lattnerb0b412e2002-09-03 01:08:28 +00001943 if (SrcTy->isIntegral() && MidTy->isIntegral() && DstTy->isIntegral()) {
Chris Lattner650b6da2002-08-02 20:00:25 +00001944 unsigned SrcSize = SrcTy->getPrimitiveSize();
1945 unsigned MidSize = MidTy->getPrimitiveSize();
1946 unsigned DstSize = DstTy->getPrimitiveSize();
Chris Lattner650b6da2002-08-02 20:00:25 +00001947
Chris Lattner3732aca2002-08-15 16:15:25 +00001948 // Cases where we are monotonically decreasing the size of the type are
1949 // always ok, regardless of what sign changes are going on.
1950 //
Chris Lattner0bb75912002-08-14 23:21:10 +00001951 if (SrcSize >= MidSize && MidSize >= DstSize)
Chris Lattner650b6da2002-08-02 20:00:25 +00001952 return true;
Chris Lattner3732aca2002-08-15 16:15:25 +00001953
Chris Lattner555518c2002-09-23 23:39:43 +00001954 // Cases where the source and destination type are the same, but the middle
1955 // type is bigger are noops.
1956 //
1957 if (SrcSize == DstSize && MidSize > SrcSize)
1958 return true;
1959
Chris Lattner3732aca2002-08-15 16:15:25 +00001960 // If we are monotonically growing, things are more complex.
1961 //
1962 if (SrcSize <= MidSize && MidSize <= DstSize) {
1963 // We have eight combinations of signedness to worry about. Here's the
1964 // table:
1965 static const int SignTable[8] = {
1966 // CODE, SrcSigned, MidSigned, DstSigned, Comment
1967 1, // U U U Always ok
1968 1, // U U S Always ok
1969 3, // U S U Ok iff SrcSize != MidSize
1970 3, // U S S Ok iff SrcSize != MidSize
1971 0, // S U U Never ok
1972 2, // S U S Ok iff MidSize == DstSize
1973 1, // S S U Always ok
1974 1, // S S S Always ok
1975 };
1976
1977 // Choose an action based on the current entry of the signtable that this
1978 // cast of cast refers to...
1979 unsigned Row = SrcTy->isSigned()*4+MidTy->isSigned()*2+DstTy->isSigned();
1980 switch (SignTable[Row]) {
1981 case 0: return false; // Never ok
1982 case 1: return true; // Always ok
1983 case 2: return MidSize == DstSize; // Ok iff MidSize == DstSize
1984 case 3: // Ok iff SrcSize != MidSize
1985 return SrcSize != MidSize || SrcTy == Type::BoolTy;
1986 default: assert(0 && "Bad entry in sign table!");
1987 }
Chris Lattner3732aca2002-08-15 16:15:25 +00001988 }
Chris Lattner650b6da2002-08-02 20:00:25 +00001989 }
Chris Lattner48a44f72002-05-02 17:06:02 +00001990
1991 // Otherwise, we cannot succeed. Specifically we do not want to allow things
1992 // like: short -> ushort -> uint, because this can create wrong results if
1993 // the input short is negative!
1994 //
1995 return false;
1996}
1997
Chris Lattnerdfae8be2003-07-24 17:35:25 +00001998static bool ValueRequiresCast(const Value *V, const Type *Ty) {
1999 if (V->getType() == Ty || isa<Constant>(V)) return false;
2000 if (const CastInst *CI = dyn_cast<CastInst>(V))
2001 if (isEliminableCastOfCast(CI->getOperand(0)->getType(), CI->getType(), Ty))
2002 return false;
2003 return true;
2004}
2005
2006/// InsertOperandCastBefore - This inserts a cast of V to DestTy before the
2007/// InsertBefore instruction. This is specialized a bit to avoid inserting
2008/// casts that are known to not do anything...
2009///
2010Value *InstCombiner::InsertOperandCastBefore(Value *V, const Type *DestTy,
2011 Instruction *InsertBefore) {
2012 if (V->getType() == DestTy) return V;
2013 if (Constant *C = dyn_cast<Constant>(V))
2014 return ConstantExpr::getCast(C, DestTy);
2015
2016 CastInst *CI = new CastInst(V, DestTy, V->getName());
2017 InsertNewInstBefore(CI, *InsertBefore);
2018 return CI;
2019}
Chris Lattner48a44f72002-05-02 17:06:02 +00002020
2021// CastInst simplification
Chris Lattner260ab202002-04-18 17:39:14 +00002022//
Chris Lattner113f4f42002-06-25 16:13:24 +00002023Instruction *InstCombiner::visitCastInst(CastInst &CI) {
Chris Lattner55d4bda2003-06-23 21:59:52 +00002024 Value *Src = CI.getOperand(0);
2025
Chris Lattner48a44f72002-05-02 17:06:02 +00002026 // If the user is casting a value to the same type, eliminate this cast
2027 // instruction...
Chris Lattner55d4bda2003-06-23 21:59:52 +00002028 if (CI.getType() == Src->getType())
2029 return ReplaceInstUsesWith(CI, Src);
Chris Lattner48a44f72002-05-02 17:06:02 +00002030
Chris Lattner48a44f72002-05-02 17:06:02 +00002031 // If casting the result of another cast instruction, try to eliminate this
2032 // one!
2033 //
Chris Lattner55d4bda2003-06-23 21:59:52 +00002034 if (CastInst *CSrc = dyn_cast<CastInst>(Src)) {
Chris Lattnerdfae8be2003-07-24 17:35:25 +00002035 if (isEliminableCastOfCast(CSrc->getOperand(0)->getType(),
2036 CSrc->getType(), CI.getType())) {
Chris Lattner48a44f72002-05-02 17:06:02 +00002037 // This instruction now refers directly to the cast's src operand. This
2038 // has a good chance of making CSrc dead.
Chris Lattner113f4f42002-06-25 16:13:24 +00002039 CI.setOperand(0, CSrc->getOperand(0));
2040 return &CI;
Chris Lattner48a44f72002-05-02 17:06:02 +00002041 }
2042
Chris Lattner650b6da2002-08-02 20:00:25 +00002043 // If this is an A->B->A cast, and we are dealing with integral types, try
2044 // to convert this into a logical 'and' instruction.
2045 //
2046 if (CSrc->getOperand(0)->getType() == CI.getType() &&
Chris Lattnerb0b412e2002-09-03 01:08:28 +00002047 CI.getType()->isInteger() && CSrc->getType()->isInteger() &&
Chris Lattner650b6da2002-08-02 20:00:25 +00002048 CI.getType()->isUnsigned() && CSrc->getType()->isUnsigned() &&
2049 CSrc->getType()->getPrimitiveSize() < CI.getType()->getPrimitiveSize()){
2050 assert(CSrc->getType() != Type::ULongTy &&
2051 "Cannot have type bigger than ulong!");
Chris Lattner196897c2003-05-26 23:41:32 +00002052 uint64_t AndValue = (1ULL << CSrc->getType()->getPrimitiveSize()*8)-1;
Chris Lattner650b6da2002-08-02 20:00:25 +00002053 Constant *AndOp = ConstantUInt::get(CI.getType(), AndValue);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00002054 return BinaryOperator::createAnd(CSrc->getOperand(0), AndOp);
Chris Lattner650b6da2002-08-02 20:00:25 +00002055 }
2056 }
2057
Chris Lattner03841652004-05-25 04:29:21 +00002058 // If this is a cast to bool, turn it into the appropriate setne instruction.
2059 if (CI.getType() == Type::BoolTy)
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00002060 return BinaryOperator::createSetNE(CI.getOperand(0),
Chris Lattner03841652004-05-25 04:29:21 +00002061 Constant::getNullValue(CI.getOperand(0)->getType()));
2062
Chris Lattnerd0d51602003-06-21 23:12:02 +00002063 // If casting the result of a getelementptr instruction with no offset, turn
2064 // this into a cast of the original pointer!
2065 //
Chris Lattner55d4bda2003-06-23 21:59:52 +00002066 if (GetElementPtrInst *GEP = dyn_cast<GetElementPtrInst>(Src)) {
Chris Lattnerd0d51602003-06-21 23:12:02 +00002067 bool AllZeroOperands = true;
2068 for (unsigned i = 1, e = GEP->getNumOperands(); i != e; ++i)
2069 if (!isa<Constant>(GEP->getOperand(i)) ||
2070 !cast<Constant>(GEP->getOperand(i))->isNullValue()) {
2071 AllZeroOperands = false;
2072 break;
2073 }
2074 if (AllZeroOperands) {
2075 CI.setOperand(0, GEP->getOperand(0));
2076 return &CI;
2077 }
2078 }
2079
Chris Lattnerf4ad1652003-11-02 05:57:39 +00002080 // If we are casting a malloc or alloca to a pointer to a type of the same
2081 // size, rewrite the allocation instruction to allocate the "right" type.
2082 //
2083 if (AllocationInst *AI = dyn_cast<AllocationInst>(Src))
Chris Lattnerd4d987d2003-11-02 06:54:48 +00002084 if (AI->hasOneUse() && !AI->isArrayAllocation())
Chris Lattnerf4ad1652003-11-02 05:57:39 +00002085 if (const PointerType *PTy = dyn_cast<PointerType>(CI.getType())) {
2086 // Get the type really allocated and the type casted to...
2087 const Type *AllocElTy = AI->getAllocatedType();
2088 unsigned AllocElTySize = TD->getTypeSize(AllocElTy);
2089 const Type *CastElTy = PTy->getElementType();
2090 unsigned CastElTySize = TD->getTypeSize(CastElTy);
Chris Lattner7c94d112003-11-05 17:31:36 +00002091
Chris Lattnerf4ad1652003-11-02 05:57:39 +00002092 // If the allocation is for an even multiple of the cast type size
Chris Lattneraf789322003-11-03 01:29:41 +00002093 if (CastElTySize && (AllocElTySize % CastElTySize == 0)) {
Chris Lattnerf4ad1652003-11-02 05:57:39 +00002094 Value *Amt = ConstantUInt::get(Type::UIntTy,
2095 AllocElTySize/CastElTySize);
2096 std::string Name = AI->getName(); AI->setName("");
2097 AllocationInst *New;
2098 if (isa<MallocInst>(AI))
2099 New = new MallocInst(CastElTy, Amt, Name);
2100 else
2101 New = new AllocaInst(CastElTy, Amt, Name);
Chris Lattner652064e2004-04-30 04:37:52 +00002102 InsertNewInstBefore(New, *AI);
Chris Lattnerf4ad1652003-11-02 05:57:39 +00002103 return ReplaceInstUsesWith(CI, New);
2104 }
2105 }
2106
Chris Lattnerdfae8be2003-07-24 17:35:25 +00002107 // If the source value is an instruction with only this use, we can attempt to
2108 // propagate the cast into the instruction. Also, only handle integral types
2109 // for now.
2110 if (Instruction *SrcI = dyn_cast<Instruction>(Src))
Chris Lattnerf95d9b92003-10-15 16:48:29 +00002111 if (SrcI->hasOneUse() && Src->getType()->isIntegral() &&
Chris Lattnerdfae8be2003-07-24 17:35:25 +00002112 CI.getType()->isInteger()) { // Don't mess with casts to bool here
2113 const Type *DestTy = CI.getType();
2114 unsigned SrcBitSize = getTypeSizeInBits(Src->getType());
2115 unsigned DestBitSize = getTypeSizeInBits(DestTy);
2116
2117 Value *Op0 = SrcI->getNumOperands() > 0 ? SrcI->getOperand(0) : 0;
2118 Value *Op1 = SrcI->getNumOperands() > 1 ? SrcI->getOperand(1) : 0;
2119
2120 switch (SrcI->getOpcode()) {
2121 case Instruction::Add:
2122 case Instruction::Mul:
2123 case Instruction::And:
2124 case Instruction::Or:
2125 case Instruction::Xor:
2126 // If we are discarding information, or just changing the sign, rewrite.
2127 if (DestBitSize <= SrcBitSize && DestBitSize != 1) {
2128 // Don't insert two casts if they cannot be eliminated. We allow two
2129 // casts to be inserted if the sizes are the same. This could only be
2130 // converting signedness, which is a noop.
2131 if (DestBitSize == SrcBitSize || !ValueRequiresCast(Op1, DestTy) ||
2132 !ValueRequiresCast(Op0, DestTy)) {
2133 Value *Op0c = InsertOperandCastBefore(Op0, DestTy, SrcI);
2134 Value *Op1c = InsertOperandCastBefore(Op1, DestTy, SrcI);
2135 return BinaryOperator::create(cast<BinaryOperator>(SrcI)
2136 ->getOpcode(), Op0c, Op1c);
2137 }
2138 }
2139 break;
2140 case Instruction::Shl:
2141 // Allow changing the sign of the source operand. Do not allow changing
2142 // the size of the shift, UNLESS the shift amount is a constant. We
2143 // mush not change variable sized shifts to a smaller size, because it
2144 // is undefined to shift more bits out than exist in the value.
2145 if (DestBitSize == SrcBitSize ||
2146 (DestBitSize < SrcBitSize && isa<Constant>(Op1))) {
2147 Value *Op0c = InsertOperandCastBefore(Op0, DestTy, SrcI);
2148 return new ShiftInst(Instruction::Shl, Op0c, Op1);
2149 }
2150 break;
2151 }
2152 }
2153
Chris Lattner260ab202002-04-18 17:39:14 +00002154 return 0;
Chris Lattnerca081252001-12-14 16:52:21 +00002155}
2156
Chris Lattner56e4d3d2004-04-09 23:46:01 +00002157/// GetSelectFoldableOperands - We want to turn code that looks like this:
2158/// %C = or %A, %B
2159/// %D = select %cond, %C, %A
2160/// into:
2161/// %C = select %cond, %B, 0
2162/// %D = or %A, %C
2163///
2164/// Assuming that the specified instruction is an operand to the select, return
2165/// a bitmask indicating which operands of this instruction are foldable if they
2166/// equal the other incoming value of the select.
2167///
2168static unsigned GetSelectFoldableOperands(Instruction *I) {
2169 switch (I->getOpcode()) {
2170 case Instruction::Add:
2171 case Instruction::Mul:
2172 case Instruction::And:
2173 case Instruction::Or:
2174 case Instruction::Xor:
2175 return 3; // Can fold through either operand.
2176 case Instruction::Sub: // Can only fold on the amount subtracted.
2177 case Instruction::Shl: // Can only fold on the shift amount.
2178 case Instruction::Shr:
2179 return 1;
2180 default:
2181 return 0; // Cannot fold
2182 }
2183}
2184
2185/// GetSelectFoldableConstant - For the same transformation as the previous
2186/// function, return the identity constant that goes into the select.
2187static Constant *GetSelectFoldableConstant(Instruction *I) {
2188 switch (I->getOpcode()) {
2189 default: assert(0 && "This cannot happen!"); abort();
2190 case Instruction::Add:
2191 case Instruction::Sub:
2192 case Instruction::Or:
2193 case Instruction::Xor:
2194 return Constant::getNullValue(I->getType());
2195 case Instruction::Shl:
2196 case Instruction::Shr:
2197 return Constant::getNullValue(Type::UByteTy);
2198 case Instruction::And:
2199 return ConstantInt::getAllOnesValue(I->getType());
2200 case Instruction::Mul:
2201 return ConstantInt::get(I->getType(), 1);
2202 }
2203}
2204
Chris Lattnerb909e8b2004-03-12 05:52:32 +00002205Instruction *InstCombiner::visitSelectInst(SelectInst &SI) {
Chris Lattner533bc492004-03-30 19:37:13 +00002206 Value *CondVal = SI.getCondition();
2207 Value *TrueVal = SI.getTrueValue();
2208 Value *FalseVal = SI.getFalseValue();
2209
2210 // select true, X, Y -> X
2211 // select false, X, Y -> Y
2212 if (ConstantBool *C = dyn_cast<ConstantBool>(CondVal))
Chris Lattnerb909e8b2004-03-12 05:52:32 +00002213 if (C == ConstantBool::True)
Chris Lattner533bc492004-03-30 19:37:13 +00002214 return ReplaceInstUsesWith(SI, TrueVal);
Chris Lattnerb909e8b2004-03-12 05:52:32 +00002215 else {
2216 assert(C == ConstantBool::False);
Chris Lattner533bc492004-03-30 19:37:13 +00002217 return ReplaceInstUsesWith(SI, FalseVal);
Chris Lattnerb909e8b2004-03-12 05:52:32 +00002218 }
Chris Lattner533bc492004-03-30 19:37:13 +00002219
2220 // select C, X, X -> X
2221 if (TrueVal == FalseVal)
2222 return ReplaceInstUsesWith(SI, TrueVal);
2223
Chris Lattner1c631e82004-04-08 04:43:23 +00002224 if (SI.getType() == Type::BoolTy)
2225 if (ConstantBool *C = dyn_cast<ConstantBool>(TrueVal)) {
2226 if (C == ConstantBool::True) {
2227 // Change: A = select B, true, C --> A = or B, C
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00002228 return BinaryOperator::createOr(CondVal, FalseVal);
Chris Lattner1c631e82004-04-08 04:43:23 +00002229 } else {
2230 // Change: A = select B, false, C --> A = and !B, C
2231 Value *NotCond =
2232 InsertNewInstBefore(BinaryOperator::createNot(CondVal,
2233 "not."+CondVal->getName()), SI);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00002234 return BinaryOperator::createAnd(NotCond, FalseVal);
Chris Lattner1c631e82004-04-08 04:43:23 +00002235 }
2236 } else if (ConstantBool *C = dyn_cast<ConstantBool>(FalseVal)) {
2237 if (C == ConstantBool::False) {
2238 // Change: A = select B, C, false --> A = and B, C
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00002239 return BinaryOperator::createAnd(CondVal, TrueVal);
Chris Lattner1c631e82004-04-08 04:43:23 +00002240 } else {
2241 // Change: A = select B, C, true --> A = or !B, C
2242 Value *NotCond =
2243 InsertNewInstBefore(BinaryOperator::createNot(CondVal,
2244 "not."+CondVal->getName()), SI);
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00002245 return BinaryOperator::createOr(NotCond, TrueVal);
Chris Lattner1c631e82004-04-08 04:43:23 +00002246 }
2247 }
2248
Chris Lattner183b3362004-04-09 19:05:30 +00002249 // Selecting between two integer constants?
2250 if (ConstantInt *TrueValC = dyn_cast<ConstantInt>(TrueVal))
2251 if (ConstantInt *FalseValC = dyn_cast<ConstantInt>(FalseVal)) {
2252 // select C, 1, 0 -> cast C to int
2253 if (FalseValC->isNullValue() && TrueValC->getRawValue() == 1) {
2254 return new CastInst(CondVal, SI.getType());
2255 } else if (TrueValC->isNullValue() && FalseValC->getRawValue() == 1) {
2256 // select C, 0, 1 -> cast !C to int
2257 Value *NotCond =
2258 InsertNewInstBefore(BinaryOperator::createNot(CondVal,
Chris Lattnercf7baf32004-04-09 18:19:44 +00002259 "not."+CondVal->getName()), SI);
Chris Lattner183b3362004-04-09 19:05:30 +00002260 return new CastInst(NotCond, SI.getType());
Chris Lattnercf7baf32004-04-09 18:19:44 +00002261 }
Chris Lattner35167c32004-06-09 07:59:58 +00002262
2263 // If one of the constants is zero (we know they can't both be) and we
2264 // have a setcc instruction with zero, and we have an 'and' with the
2265 // non-constant value, eliminate this whole mess. This corresponds to
2266 // cases like this: ((X & 27) ? 27 : 0)
2267 if (TrueValC->isNullValue() || FalseValC->isNullValue())
2268 if (Instruction *IC = dyn_cast<Instruction>(SI.getCondition()))
2269 if ((IC->getOpcode() == Instruction::SetEQ ||
2270 IC->getOpcode() == Instruction::SetNE) &&
2271 isa<ConstantInt>(IC->getOperand(1)) &&
2272 cast<Constant>(IC->getOperand(1))->isNullValue())
2273 if (Instruction *ICA = dyn_cast<Instruction>(IC->getOperand(0)))
2274 if (ICA->getOpcode() == Instruction::And &&
2275 isa<ConstantInt>(ICA->getOperand(1)) &&
2276 (ICA->getOperand(1) == TrueValC ||
2277 ICA->getOperand(1) == FalseValC) &&
2278 isOneBitSet(cast<ConstantInt>(ICA->getOperand(1)))) {
2279 // Okay, now we know that everything is set up, we just don't
2280 // know whether we have a setne or seteq and whether the true or
2281 // false val is the zero.
2282 bool ShouldNotVal = !TrueValC->isNullValue();
2283 ShouldNotVal ^= IC->getOpcode() == Instruction::SetNE;
2284 Value *V = ICA;
2285 if (ShouldNotVal)
2286 V = InsertNewInstBefore(BinaryOperator::create(
2287 Instruction::Xor, V, ICA->getOperand(1)), SI);
2288 return ReplaceInstUsesWith(SI, V);
2289 }
Chris Lattner533bc492004-03-30 19:37:13 +00002290 }
Chris Lattner623fba12004-04-10 22:21:27 +00002291
2292 // See if we are selecting two values based on a comparison of the two values.
2293 if (SetCondInst *SCI = dyn_cast<SetCondInst>(CondVal)) {
2294 if (SCI->getOperand(0) == TrueVal && SCI->getOperand(1) == FalseVal) {
2295 // Transform (X == Y) ? X : Y -> Y
2296 if (SCI->getOpcode() == Instruction::SetEQ)
2297 return ReplaceInstUsesWith(SI, FalseVal);
2298 // Transform (X != Y) ? X : Y -> X
2299 if (SCI->getOpcode() == Instruction::SetNE)
2300 return ReplaceInstUsesWith(SI, TrueVal);
2301 // NOTE: if we wanted to, this is where to detect MIN/MAX/ABS/etc.
2302
2303 } else if (SCI->getOperand(0) == FalseVal && SCI->getOperand(1) == TrueVal){
2304 // Transform (X == Y) ? Y : X -> X
2305 if (SCI->getOpcode() == Instruction::SetEQ)
Chris Lattner24cf0202004-04-11 01:39:19 +00002306 return ReplaceInstUsesWith(SI, FalseVal);
Chris Lattner623fba12004-04-10 22:21:27 +00002307 // Transform (X != Y) ? Y : X -> Y
2308 if (SCI->getOpcode() == Instruction::SetNE)
Chris Lattner24cf0202004-04-11 01:39:19 +00002309 return ReplaceInstUsesWith(SI, TrueVal);
Chris Lattner623fba12004-04-10 22:21:27 +00002310 // NOTE: if we wanted to, this is where to detect MIN/MAX/ABS/etc.
2311 }
2312 }
Chris Lattner1c631e82004-04-08 04:43:23 +00002313
Chris Lattner56e4d3d2004-04-09 23:46:01 +00002314 // See if we can fold the select into one of our operands.
2315 if (SI.getType()->isInteger()) {
2316 // See the comment above GetSelectFoldableOperands for a description of the
2317 // transformation we are doing here.
2318 if (Instruction *TVI = dyn_cast<Instruction>(TrueVal))
2319 if (TVI->hasOneUse() && TVI->getNumOperands() == 2 &&
2320 !isa<Constant>(FalseVal))
2321 if (unsigned SFO = GetSelectFoldableOperands(TVI)) {
2322 unsigned OpToFold = 0;
2323 if ((SFO & 1) && FalseVal == TVI->getOperand(0)) {
2324 OpToFold = 1;
2325 } else if ((SFO & 2) && FalseVal == TVI->getOperand(1)) {
2326 OpToFold = 2;
2327 }
2328
2329 if (OpToFold) {
2330 Constant *C = GetSelectFoldableConstant(TVI);
2331 std::string Name = TVI->getName(); TVI->setName("");
2332 Instruction *NewSel =
2333 new SelectInst(SI.getCondition(), TVI->getOperand(2-OpToFold), C,
2334 Name);
2335 InsertNewInstBefore(NewSel, SI);
2336 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(TVI))
2337 return BinaryOperator::create(BO->getOpcode(), FalseVal, NewSel);
2338 else if (ShiftInst *SI = dyn_cast<ShiftInst>(TVI))
2339 return new ShiftInst(SI->getOpcode(), FalseVal, NewSel);
2340 else {
2341 assert(0 && "Unknown instruction!!");
2342 }
2343 }
2344 }
2345
2346 if (Instruction *FVI = dyn_cast<Instruction>(FalseVal))
2347 if (FVI->hasOneUse() && FVI->getNumOperands() == 2 &&
2348 !isa<Constant>(TrueVal))
2349 if (unsigned SFO = GetSelectFoldableOperands(FVI)) {
2350 unsigned OpToFold = 0;
2351 if ((SFO & 1) && TrueVal == FVI->getOperand(0)) {
2352 OpToFold = 1;
2353 } else if ((SFO & 2) && TrueVal == FVI->getOperand(1)) {
2354 OpToFold = 2;
2355 }
2356
2357 if (OpToFold) {
2358 Constant *C = GetSelectFoldableConstant(FVI);
2359 std::string Name = FVI->getName(); FVI->setName("");
2360 Instruction *NewSel =
2361 new SelectInst(SI.getCondition(), C, FVI->getOperand(2-OpToFold),
2362 Name);
2363 InsertNewInstBefore(NewSel, SI);
2364 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(FVI))
2365 return BinaryOperator::create(BO->getOpcode(), TrueVal, NewSel);
2366 else if (ShiftInst *SI = dyn_cast<ShiftInst>(FVI))
2367 return new ShiftInst(SI->getOpcode(), TrueVal, NewSel);
2368 else {
2369 assert(0 && "Unknown instruction!!");
2370 }
2371 }
2372 }
2373 }
Chris Lattnerb909e8b2004-03-12 05:52:32 +00002374 return 0;
2375}
2376
2377
Chris Lattner970c33a2003-06-19 17:00:31 +00002378// CallInst simplification
2379//
2380Instruction *InstCombiner::visitCallInst(CallInst &CI) {
Chris Lattner51ea1272004-02-28 05:22:00 +00002381 // Intrinsics cannot occur in an invoke, so handle them here instead of in
2382 // visitCallSite.
2383 if (Function *F = CI.getCalledFunction())
2384 switch (F->getIntrinsicID()) {
2385 case Intrinsic::memmove:
2386 case Intrinsic::memcpy:
2387 case Intrinsic::memset:
2388 // memmove/cpy/set of zero bytes is a noop.
2389 if (Constant *NumBytes = dyn_cast<Constant>(CI.getOperand(3))) {
2390 if (NumBytes->isNullValue())
2391 return EraseInstFromFunction(CI);
2392 }
2393 break;
2394 default:
2395 break;
2396 }
2397
Chris Lattneraec3d942003-10-07 22:32:43 +00002398 return visitCallSite(&CI);
Chris Lattner970c33a2003-06-19 17:00:31 +00002399}
2400
2401// InvokeInst simplification
2402//
2403Instruction *InstCombiner::visitInvokeInst(InvokeInst &II) {
Chris Lattneraec3d942003-10-07 22:32:43 +00002404 return visitCallSite(&II);
Chris Lattner970c33a2003-06-19 17:00:31 +00002405}
2406
Chris Lattneraec3d942003-10-07 22:32:43 +00002407// visitCallSite - Improvements for call and invoke instructions.
2408//
2409Instruction *InstCombiner::visitCallSite(CallSite CS) {
Chris Lattner75b4d1d2003-10-07 22:54:13 +00002410 bool Changed = false;
2411
2412 // If the callee is a constexpr cast of a function, attempt to move the cast
2413 // to the arguments of the call/invoke.
Chris Lattneraec3d942003-10-07 22:32:43 +00002414 if (transformConstExprCastCall(CS)) return 0;
2415
Chris Lattner75b4d1d2003-10-07 22:54:13 +00002416 Value *Callee = CS.getCalledValue();
2417 const PointerType *PTy = cast<PointerType>(Callee->getType());
2418 const FunctionType *FTy = cast<FunctionType>(PTy->getElementType());
2419 if (FTy->isVarArg()) {
2420 // See if we can optimize any arguments passed through the varargs area of
2421 // the call.
2422 for (CallSite::arg_iterator I = CS.arg_begin()+FTy->getNumParams(),
2423 E = CS.arg_end(); I != E; ++I)
2424 if (CastInst *CI = dyn_cast<CastInst>(*I)) {
2425 // If this cast does not effect the value passed through the varargs
2426 // area, we can eliminate the use of the cast.
2427 Value *Op = CI->getOperand(0);
2428 if (CI->getType()->isLosslesslyConvertibleTo(Op->getType())) {
2429 *I = Op;
2430 Changed = true;
2431 }
2432 }
2433 }
Chris Lattneraec3d942003-10-07 22:32:43 +00002434
Chris Lattner75b4d1d2003-10-07 22:54:13 +00002435 return Changed ? CS.getInstruction() : 0;
Chris Lattneraec3d942003-10-07 22:32:43 +00002436}
2437
Chris Lattner970c33a2003-06-19 17:00:31 +00002438// transformConstExprCastCall - If the callee is a constexpr cast of a function,
2439// attempt to move the cast to the arguments of the call/invoke.
2440//
2441bool InstCombiner::transformConstExprCastCall(CallSite CS) {
2442 if (!isa<ConstantExpr>(CS.getCalledValue())) return false;
2443 ConstantExpr *CE = cast<ConstantExpr>(CS.getCalledValue());
2444 if (CE->getOpcode() != Instruction::Cast ||
2445 !isa<ConstantPointerRef>(CE->getOperand(0)))
2446 return false;
2447 ConstantPointerRef *CPR = cast<ConstantPointerRef>(CE->getOperand(0));
2448 if (!isa<Function>(CPR->getValue())) return false;
2449 Function *Callee = cast<Function>(CPR->getValue());
2450 Instruction *Caller = CS.getInstruction();
2451
2452 // Okay, this is a cast from a function to a different type. Unless doing so
2453 // would cause a type conversion of one of our arguments, change this call to
2454 // be a direct call with arguments casted to the appropriate types.
2455 //
2456 const FunctionType *FT = Callee->getFunctionType();
2457 const Type *OldRetTy = Caller->getType();
2458
Chris Lattner1f7942f2004-01-14 06:06:08 +00002459 // Check to see if we are changing the return type...
2460 if (OldRetTy != FT->getReturnType()) {
2461 if (Callee->isExternal() &&
2462 !OldRetTy->isLosslesslyConvertibleTo(FT->getReturnType()) &&
2463 !Caller->use_empty())
2464 return false; // Cannot transform this return value...
2465
2466 // If the callsite is an invoke instruction, and the return value is used by
2467 // a PHI node in a successor, we cannot change the return type of the call
2468 // because there is no place to put the cast instruction (without breaking
2469 // the critical edge). Bail out in this case.
2470 if (!Caller->use_empty())
2471 if (InvokeInst *II = dyn_cast<InvokeInst>(Caller))
2472 for (Value::use_iterator UI = II->use_begin(), E = II->use_end();
2473 UI != E; ++UI)
2474 if (PHINode *PN = dyn_cast<PHINode>(*UI))
2475 if (PN->getParent() == II->getNormalDest() ||
Chris Lattnerfae8ab32004-02-08 21:44:31 +00002476 PN->getParent() == II->getUnwindDest())
Chris Lattner1f7942f2004-01-14 06:06:08 +00002477 return false;
2478 }
Chris Lattner970c33a2003-06-19 17:00:31 +00002479
2480 unsigned NumActualArgs = unsigned(CS.arg_end()-CS.arg_begin());
2481 unsigned NumCommonArgs = std::min(FT->getNumParams(), NumActualArgs);
2482
2483 CallSite::arg_iterator AI = CS.arg_begin();
2484 for (unsigned i = 0, e = NumCommonArgs; i != e; ++i, ++AI) {
2485 const Type *ParamTy = FT->getParamType(i);
2486 bool isConvertible = (*AI)->getType()->isLosslesslyConvertibleTo(ParamTy);
2487 if (Callee->isExternal() && !isConvertible) return false;
2488 }
2489
2490 if (FT->getNumParams() < NumActualArgs && !FT->isVarArg() &&
2491 Callee->isExternal())
2492 return false; // Do not delete arguments unless we have a function body...
2493
2494 // Okay, we decided that this is a safe thing to do: go ahead and start
2495 // inserting cast instructions as necessary...
2496 std::vector<Value*> Args;
2497 Args.reserve(NumActualArgs);
2498
2499 AI = CS.arg_begin();
2500 for (unsigned i = 0; i != NumCommonArgs; ++i, ++AI) {
2501 const Type *ParamTy = FT->getParamType(i);
2502 if ((*AI)->getType() == ParamTy) {
2503 Args.push_back(*AI);
2504 } else {
Chris Lattner1c631e82004-04-08 04:43:23 +00002505 Args.push_back(InsertNewInstBefore(new CastInst(*AI, ParamTy, "tmp"),
2506 *Caller));
Chris Lattner970c33a2003-06-19 17:00:31 +00002507 }
2508 }
2509
2510 // If the function takes more arguments than the call was taking, add them
2511 // now...
2512 for (unsigned i = NumCommonArgs; i != FT->getNumParams(); ++i)
2513 Args.push_back(Constant::getNullValue(FT->getParamType(i)));
2514
2515 // If we are removing arguments to the function, emit an obnoxious warning...
2516 if (FT->getNumParams() < NumActualArgs)
2517 if (!FT->isVarArg()) {
2518 std::cerr << "WARNING: While resolving call to function '"
2519 << Callee->getName() << "' arguments were dropped!\n";
2520 } else {
2521 // Add all of the arguments in their promoted form to the arg list...
2522 for (unsigned i = FT->getNumParams(); i != NumActualArgs; ++i, ++AI) {
2523 const Type *PTy = getPromotedType((*AI)->getType());
2524 if (PTy != (*AI)->getType()) {
2525 // Must promote to pass through va_arg area!
2526 Instruction *Cast = new CastInst(*AI, PTy, "tmp");
2527 InsertNewInstBefore(Cast, *Caller);
2528 Args.push_back(Cast);
2529 } else {
2530 Args.push_back(*AI);
2531 }
2532 }
2533 }
2534
2535 if (FT->getReturnType() == Type::VoidTy)
2536 Caller->setName(""); // Void type should not have a name...
2537
2538 Instruction *NC;
2539 if (InvokeInst *II = dyn_cast<InvokeInst>(Caller)) {
Chris Lattnerfae8ab32004-02-08 21:44:31 +00002540 NC = new InvokeInst(Callee, II->getNormalDest(), II->getUnwindDest(),
Chris Lattner970c33a2003-06-19 17:00:31 +00002541 Args, Caller->getName(), Caller);
2542 } else {
2543 NC = new CallInst(Callee, Args, Caller->getName(), Caller);
2544 }
2545
2546 // Insert a cast of the return type as necessary...
2547 Value *NV = NC;
2548 if (Caller->getType() != NV->getType() && !Caller->use_empty()) {
2549 if (NV->getType() != Type::VoidTy) {
2550 NV = NC = new CastInst(NC, Caller->getType(), "tmp");
Chris Lattner686767f2003-10-30 00:46:41 +00002551
2552 // If this is an invoke instruction, we should insert it after the first
2553 // non-phi, instruction in the normal successor block.
2554 if (InvokeInst *II = dyn_cast<InvokeInst>(Caller)) {
2555 BasicBlock::iterator I = II->getNormalDest()->begin();
2556 while (isa<PHINode>(I)) ++I;
2557 InsertNewInstBefore(NC, *I);
2558 } else {
2559 // Otherwise, it's a call, just insert cast right after the call instr
2560 InsertNewInstBefore(NC, *Caller);
2561 }
Chris Lattner51ea1272004-02-28 05:22:00 +00002562 AddUsersToWorkList(*Caller);
Chris Lattner970c33a2003-06-19 17:00:31 +00002563 } else {
2564 NV = Constant::getNullValue(Caller->getType());
2565 }
2566 }
2567
2568 if (Caller->getType() != Type::VoidTy && !Caller->use_empty())
2569 Caller->replaceAllUsesWith(NV);
2570 Caller->getParent()->getInstList().erase(Caller);
2571 removeFromWorkList(Caller);
2572 return true;
2573}
2574
2575
Chris Lattner48a44f72002-05-02 17:06:02 +00002576
Chris Lattnerbbbdd852002-05-06 18:06:38 +00002577// PHINode simplification
2578//
Chris Lattner113f4f42002-06-25 16:13:24 +00002579Instruction *InstCombiner::visitPHINode(PHINode &PN) {
Chris Lattner91daeb52003-12-19 05:58:40 +00002580 if (Value *V = hasConstantValue(&PN))
2581 return ReplaceInstUsesWith(PN, V);
Chris Lattner4db2d222004-02-16 05:07:08 +00002582
2583 // If the only user of this instruction is a cast instruction, and all of the
2584 // incoming values are constants, change this PHI to merge together the casted
2585 // constants.
2586 if (PN.hasOneUse())
2587 if (CastInst *CI = dyn_cast<CastInst>(PN.use_back()))
2588 if (CI->getType() != PN.getType()) { // noop casts will be folded
2589 bool AllConstant = true;
2590 for (unsigned i = 0, e = PN.getNumIncomingValues(); i != e; ++i)
2591 if (!isa<Constant>(PN.getIncomingValue(i))) {
2592 AllConstant = false;
2593 break;
2594 }
2595 if (AllConstant) {
2596 // Make a new PHI with all casted values.
2597 PHINode *New = new PHINode(CI->getType(), PN.getName(), &PN);
2598 for (unsigned i = 0, e = PN.getNumIncomingValues(); i != e; ++i) {
2599 Constant *OldArg = cast<Constant>(PN.getIncomingValue(i));
2600 New->addIncoming(ConstantExpr::getCast(OldArg, New->getType()),
2601 PN.getIncomingBlock(i));
2602 }
2603
2604 // Update the cast instruction.
2605 CI->setOperand(0, New);
2606 WorkList.push_back(CI); // revisit the cast instruction to fold.
2607 WorkList.push_back(New); // Make sure to revisit the new Phi
2608 return &PN; // PN is now dead!
2609 }
2610 }
Chris Lattner91daeb52003-12-19 05:58:40 +00002611 return 0;
Chris Lattnerbbbdd852002-05-06 18:06:38 +00002612}
2613
Chris Lattner69193f92004-04-05 01:30:19 +00002614static Value *InsertSignExtendToPtrTy(Value *V, const Type *DTy,
2615 Instruction *InsertPoint,
2616 InstCombiner *IC) {
2617 unsigned PS = IC->getTargetData().getPointerSize();
2618 const Type *VTy = V->getType();
2619 Instruction *Cast;
2620 if (!VTy->isSigned() && VTy->getPrimitiveSize() < PS)
2621 // We must insert a cast to ensure we sign-extend.
2622 V = IC->InsertNewInstBefore(new CastInst(V, VTy->getSignedVersion(),
2623 V->getName()), *InsertPoint);
2624 return IC->InsertNewInstBefore(new CastInst(V, DTy, V->getName()),
2625 *InsertPoint);
2626}
2627
Chris Lattner48a44f72002-05-02 17:06:02 +00002628
Chris Lattner113f4f42002-06-25 16:13:24 +00002629Instruction *InstCombiner::visitGetElementPtrInst(GetElementPtrInst &GEP) {
Chris Lattner5f667a62004-05-07 22:09:22 +00002630 Value *PtrOp = GEP.getOperand(0);
Chris Lattner471bd762003-05-22 19:07:21 +00002631 // Is it 'getelementptr %P, long 0' or 'getelementptr %P'
Chris Lattner113f4f42002-06-25 16:13:24 +00002632 // If so, eliminate the noop.
Chris Lattner8d0bacb2004-02-22 05:25:17 +00002633 if (GEP.getNumOperands() == 1)
Chris Lattner5f667a62004-05-07 22:09:22 +00002634 return ReplaceInstUsesWith(GEP, PtrOp);
Chris Lattner8d0bacb2004-02-22 05:25:17 +00002635
2636 bool HasZeroPointerIndex = false;
2637 if (Constant *C = dyn_cast<Constant>(GEP.getOperand(1)))
2638 HasZeroPointerIndex = C->isNullValue();
2639
2640 if (GEP.getNumOperands() == 2 && HasZeroPointerIndex)
Chris Lattner5f667a62004-05-07 22:09:22 +00002641 return ReplaceInstUsesWith(GEP, PtrOp);
Chris Lattner48a44f72002-05-02 17:06:02 +00002642
Chris Lattner69193f92004-04-05 01:30:19 +00002643 // Eliminate unneeded casts for indices.
2644 bool MadeChange = false;
Chris Lattner2b2412d2004-04-07 18:38:20 +00002645 gep_type_iterator GTI = gep_type_begin(GEP);
2646 for (unsigned i = 1, e = GEP.getNumOperands(); i != e; ++i, ++GTI)
2647 if (isa<SequentialType>(*GTI)) {
2648 if (CastInst *CI = dyn_cast<CastInst>(GEP.getOperand(i))) {
2649 Value *Src = CI->getOperand(0);
2650 const Type *SrcTy = Src->getType();
2651 const Type *DestTy = CI->getType();
2652 if (Src->getType()->isInteger()) {
2653 if (SrcTy->getPrimitiveSize() == DestTy->getPrimitiveSize()) {
2654 // We can always eliminate a cast from ulong or long to the other.
2655 // We can always eliminate a cast from uint to int or the other on
2656 // 32-bit pointer platforms.
2657 if (DestTy->getPrimitiveSize() >= TD->getPointerSize()) {
2658 MadeChange = true;
2659 GEP.setOperand(i, Src);
2660 }
2661 } else if (SrcTy->getPrimitiveSize() < DestTy->getPrimitiveSize() &&
2662 SrcTy->getPrimitiveSize() == 4) {
2663 // We can always eliminate a cast from int to [u]long. We can
2664 // eliminate a cast from uint to [u]long iff the target is a 32-bit
2665 // pointer target.
2666 if (SrcTy->isSigned() ||
2667 SrcTy->getPrimitiveSize() >= TD->getPointerSize()) {
2668 MadeChange = true;
2669 GEP.setOperand(i, Src);
2670 }
Chris Lattner69193f92004-04-05 01:30:19 +00002671 }
2672 }
2673 }
Chris Lattner2b2412d2004-04-07 18:38:20 +00002674 // If we are using a wider index than needed for this platform, shrink it
2675 // to what we need. If the incoming value needs a cast instruction,
2676 // insert it. This explicit cast can make subsequent optimizations more
2677 // obvious.
2678 Value *Op = GEP.getOperand(i);
2679 if (Op->getType()->getPrimitiveSize() > TD->getPointerSize())
Chris Lattner1e9ac1a2004-04-17 18:16:10 +00002680 if (Constant *C = dyn_cast<Constant>(Op)) {
2681 GEP.setOperand(i, ConstantExpr::getCast(C, TD->getIntPtrType()));
2682 MadeChange = true;
2683 } else {
Chris Lattner2b2412d2004-04-07 18:38:20 +00002684 Op = InsertNewInstBefore(new CastInst(Op, TD->getIntPtrType(),
2685 Op->getName()), GEP);
2686 GEP.setOperand(i, Op);
2687 MadeChange = true;
2688 }
Chris Lattner69193f92004-04-05 01:30:19 +00002689 }
2690 if (MadeChange) return &GEP;
2691
Chris Lattnerae7a0d32002-08-02 19:29:35 +00002692 // Combine Indices - If the source pointer to this getelementptr instruction
2693 // is a getelementptr instruction, combine the indices of the two
2694 // getelementptr instructions into a single instruction.
2695 //
Chris Lattner57c67b02004-03-25 22:59:29 +00002696 std::vector<Value*> SrcGEPOperands;
Chris Lattner5f667a62004-05-07 22:09:22 +00002697 if (GetElementPtrInst *Src = dyn_cast<GetElementPtrInst>(PtrOp)) {
Chris Lattner57c67b02004-03-25 22:59:29 +00002698 SrcGEPOperands.assign(Src->op_begin(), Src->op_end());
Chris Lattner5f667a62004-05-07 22:09:22 +00002699 } else if (ConstantExpr *CE = dyn_cast<ConstantExpr>(PtrOp)) {
Chris Lattner57c67b02004-03-25 22:59:29 +00002700 if (CE->getOpcode() == Instruction::GetElementPtr)
2701 SrcGEPOperands.assign(CE->op_begin(), CE->op_end());
2702 }
2703
2704 if (!SrcGEPOperands.empty()) {
Chris Lattner5f667a62004-05-07 22:09:22 +00002705 // Note that if our source is a gep chain itself that we wait for that
2706 // chain to be resolved before we perform this transformation. This
2707 // avoids us creating a TON of code in some cases.
2708 //
2709 if (isa<GetElementPtrInst>(SrcGEPOperands[0]) &&
2710 cast<Instruction>(SrcGEPOperands[0])->getNumOperands() == 2)
2711 return 0; // Wait until our source is folded to completion.
2712
Chris Lattnerae7a0d32002-08-02 19:29:35 +00002713 std::vector<Value *> Indices;
Chris Lattner5f667a62004-05-07 22:09:22 +00002714
2715 // Find out whether the last index in the source GEP is a sequential idx.
2716 bool EndsWithSequential = false;
2717 for (gep_type_iterator I = gep_type_begin(*cast<User>(PtrOp)),
2718 E = gep_type_end(*cast<User>(PtrOp)); I != E; ++I)
Chris Lattner8ec5f882004-05-08 22:41:42 +00002719 EndsWithSequential = !isa<StructType>(*I);
Chris Lattnerca081252001-12-14 16:52:21 +00002720
Chris Lattnerae7a0d32002-08-02 19:29:35 +00002721 // Can we combine the two pointer arithmetics offsets?
Chris Lattner5f667a62004-05-07 22:09:22 +00002722 if (EndsWithSequential) {
Chris Lattner235af562003-03-05 22:33:14 +00002723 // Replace: gep (gep %P, long B), long A, ...
2724 // With: T = long A+B; gep %P, T, ...
2725 //
Chris Lattner5f667a62004-05-07 22:09:22 +00002726 Value *Sum, *SO1 = SrcGEPOperands.back(), *GO1 = GEP.getOperand(1);
Chris Lattner69193f92004-04-05 01:30:19 +00002727 if (SO1 == Constant::getNullValue(SO1->getType())) {
2728 Sum = GO1;
2729 } else if (GO1 == Constant::getNullValue(GO1->getType())) {
2730 Sum = SO1;
2731 } else {
2732 // If they aren't the same type, convert both to an integer of the
2733 // target's pointer size.
2734 if (SO1->getType() != GO1->getType()) {
2735 if (Constant *SO1C = dyn_cast<Constant>(SO1)) {
2736 SO1 = ConstantExpr::getCast(SO1C, GO1->getType());
2737 } else if (Constant *GO1C = dyn_cast<Constant>(GO1)) {
2738 GO1 = ConstantExpr::getCast(GO1C, SO1->getType());
2739 } else {
2740 unsigned PS = TD->getPointerSize();
2741 Instruction *Cast;
2742 if (SO1->getType()->getPrimitiveSize() == PS) {
2743 // Convert GO1 to SO1's type.
2744 GO1 = InsertSignExtendToPtrTy(GO1, SO1->getType(), &GEP, this);
2745
2746 } else if (GO1->getType()->getPrimitiveSize() == PS) {
2747 // Convert SO1 to GO1's type.
2748 SO1 = InsertSignExtendToPtrTy(SO1, GO1->getType(), &GEP, this);
2749 } else {
2750 const Type *PT = TD->getIntPtrType();
2751 SO1 = InsertSignExtendToPtrTy(SO1, PT, &GEP, this);
2752 GO1 = InsertSignExtendToPtrTy(GO1, PT, &GEP, this);
2753 }
2754 }
2755 }
Chris Lattner5f667a62004-05-07 22:09:22 +00002756 if (isa<Constant>(SO1) && isa<Constant>(GO1))
2757 Sum = ConstantExpr::getAdd(cast<Constant>(SO1), cast<Constant>(GO1));
2758 else {
Chris Lattnerdf20a4d2004-06-10 02:07:29 +00002759 Sum = BinaryOperator::createAdd(SO1, GO1, PtrOp->getName()+".sum");
2760 InsertNewInstBefore(cast<Instruction>(Sum), GEP);
Chris Lattner5f667a62004-05-07 22:09:22 +00002761 }
Chris Lattner69193f92004-04-05 01:30:19 +00002762 }
Chris Lattner5f667a62004-05-07 22:09:22 +00002763
2764 // Recycle the GEP we already have if possible.
2765 if (SrcGEPOperands.size() == 2) {
2766 GEP.setOperand(0, SrcGEPOperands[0]);
2767 GEP.setOperand(1, Sum);
2768 return &GEP;
2769 } else {
2770 Indices.insert(Indices.end(), SrcGEPOperands.begin()+1,
2771 SrcGEPOperands.end()-1);
2772 Indices.push_back(Sum);
2773 Indices.insert(Indices.end(), GEP.op_begin()+2, GEP.op_end());
2774 }
Chris Lattner69193f92004-04-05 01:30:19 +00002775 } else if (isa<Constant>(*GEP.idx_begin()) &&
2776 cast<Constant>(*GEP.idx_begin())->isNullValue() &&
Chris Lattner57c67b02004-03-25 22:59:29 +00002777 SrcGEPOperands.size() != 1) {
Chris Lattnerae7a0d32002-08-02 19:29:35 +00002778 // Otherwise we can do the fold if the first index of the GEP is a zero
Chris Lattner57c67b02004-03-25 22:59:29 +00002779 Indices.insert(Indices.end(), SrcGEPOperands.begin()+1,
2780 SrcGEPOperands.end());
Chris Lattnerae7a0d32002-08-02 19:29:35 +00002781 Indices.insert(Indices.end(), GEP.idx_begin()+1, GEP.idx_end());
2782 }
2783
2784 if (!Indices.empty())
Chris Lattner57c67b02004-03-25 22:59:29 +00002785 return new GetElementPtrInst(SrcGEPOperands[0], Indices, GEP.getName());
Chris Lattnerc59af1d2002-08-17 22:21:59 +00002786
Chris Lattner5f667a62004-05-07 22:09:22 +00002787 } else if (GlobalValue *GV = dyn_cast<GlobalValue>(PtrOp)) {
Chris Lattnerc59af1d2002-08-17 22:21:59 +00002788 // GEP of global variable. If all of the indices for this GEP are
2789 // constants, we can promote this to a constexpr instead of an instruction.
2790
2791 // Scan for nonconstants...
2792 std::vector<Constant*> Indices;
2793 User::op_iterator I = GEP.idx_begin(), E = GEP.idx_end();
2794 for (; I != E && isa<Constant>(*I); ++I)
2795 Indices.push_back(cast<Constant>(*I));
2796
2797 if (I == E) { // If they are all constants...
Chris Lattner46b3d302003-04-16 22:40:51 +00002798 Constant *CE =
Chris Lattnerc59af1d2002-08-17 22:21:59 +00002799 ConstantExpr::getGetElementPtr(ConstantPointerRef::get(GV), Indices);
2800
2801 // Replace all uses of the GEP with the new constexpr...
2802 return ReplaceInstUsesWith(GEP, CE);
2803 }
Chris Lattner5f667a62004-05-07 22:09:22 +00002804 } else if (ConstantExpr *CE = dyn_cast<ConstantExpr>(PtrOp)) {
Chris Lattner8d0bacb2004-02-22 05:25:17 +00002805 if (CE->getOpcode() == Instruction::Cast) {
2806 if (HasZeroPointerIndex) {
2807 // transform: GEP (cast [10 x ubyte]* X to [0 x ubyte]*), long 0, ...
2808 // into : GEP [10 x ubyte]* X, long 0, ...
2809 //
2810 // This occurs when the program declares an array extern like "int X[];"
2811 //
2812 Constant *X = CE->getOperand(0);
2813 const PointerType *CPTy = cast<PointerType>(CE->getType());
2814 if (const PointerType *XTy = dyn_cast<PointerType>(X->getType()))
2815 if (const ArrayType *XATy =
2816 dyn_cast<ArrayType>(XTy->getElementType()))
2817 if (const ArrayType *CATy =
2818 dyn_cast<ArrayType>(CPTy->getElementType()))
2819 if (CATy->getElementType() == XATy->getElementType()) {
2820 // At this point, we know that the cast source type is a pointer
2821 // to an array of the same type as the destination pointer
2822 // array. Because the array type is never stepped over (there
2823 // is a leading zero) we can fold the cast into this GEP.
2824 GEP.setOperand(0, X);
2825 return &GEP;
2826 }
2827 }
2828 }
Chris Lattnerca081252001-12-14 16:52:21 +00002829 }
2830
Chris Lattnerca081252001-12-14 16:52:21 +00002831 return 0;
2832}
2833
Chris Lattner1085bdf2002-11-04 16:18:53 +00002834Instruction *InstCombiner::visitAllocationInst(AllocationInst &AI) {
2835 // Convert: malloc Ty, C - where C is a constant != 1 into: malloc [C x Ty], 1
2836 if (AI.isArrayAllocation()) // Check C != 1
2837 if (const ConstantUInt *C = dyn_cast<ConstantUInt>(AI.getArraySize())) {
2838 const Type *NewTy = ArrayType::get(AI.getAllocatedType(), C->getValue());
Chris Lattnera2620ac2002-11-09 00:49:43 +00002839 AllocationInst *New = 0;
Chris Lattner1085bdf2002-11-04 16:18:53 +00002840
2841 // Create and insert the replacement instruction...
2842 if (isa<MallocInst>(AI))
Chris Lattnerabb77c92004-03-19 06:08:10 +00002843 New = new MallocInst(NewTy, 0, AI.getName());
Chris Lattnera2620ac2002-11-09 00:49:43 +00002844 else {
2845 assert(isa<AllocaInst>(AI) && "Unknown type of allocation inst!");
Chris Lattnerabb77c92004-03-19 06:08:10 +00002846 New = new AllocaInst(NewTy, 0, AI.getName());
Chris Lattnera2620ac2002-11-09 00:49:43 +00002847 }
Chris Lattnerabb77c92004-03-19 06:08:10 +00002848
2849 InsertNewInstBefore(New, AI);
Chris Lattner1085bdf2002-11-04 16:18:53 +00002850
2851 // Scan to the end of the allocation instructions, to skip over a block of
2852 // allocas if possible...
2853 //
2854 BasicBlock::iterator It = New;
2855 while (isa<AllocationInst>(*It)) ++It;
2856
2857 // Now that I is pointing to the first non-allocation-inst in the block,
2858 // insert our getelementptr instruction...
2859 //
Chris Lattner69193f92004-04-05 01:30:19 +00002860 std::vector<Value*> Idx(2, Constant::getNullValue(Type::IntTy));
Chris Lattner1085bdf2002-11-04 16:18:53 +00002861 Value *V = new GetElementPtrInst(New, Idx, New->getName()+".sub", It);
2862
2863 // Now make everything use the getelementptr instead of the original
2864 // allocation.
Chris Lattnerabb77c92004-03-19 06:08:10 +00002865 return ReplaceInstUsesWith(AI, V);
Chris Lattner1085bdf2002-11-04 16:18:53 +00002866 }
Chris Lattnerabb77c92004-03-19 06:08:10 +00002867
2868 // If alloca'ing a zero byte object, replace the alloca with a null pointer.
2869 // Note that we only do this for alloca's, because malloc should allocate and
2870 // return a unique pointer, even for a zero byte allocation.
2871 if (isa<AllocaInst>(AI) && TD->getTypeSize(AI.getAllocatedType()) == 0)
2872 return ReplaceInstUsesWith(AI, Constant::getNullValue(AI.getType()));
2873
Chris Lattner1085bdf2002-11-04 16:18:53 +00002874 return 0;
2875}
2876
Chris Lattner8427bff2003-12-07 01:24:23 +00002877Instruction *InstCombiner::visitFreeInst(FreeInst &FI) {
2878 Value *Op = FI.getOperand(0);
2879
2880 // Change free <ty>* (cast <ty2>* X to <ty>*) into free <ty2>* X
2881 if (CastInst *CI = dyn_cast<CastInst>(Op))
2882 if (isa<PointerType>(CI->getOperand(0)->getType())) {
2883 FI.setOperand(0, CI->getOperand(0));
2884 return &FI;
2885 }
2886
Chris Lattnerf3a36602004-02-28 04:57:37 +00002887 // If we have 'free null' delete the instruction. This can happen in stl code
2888 // when lots of inlining happens.
Chris Lattner51ea1272004-02-28 05:22:00 +00002889 if (isa<ConstantPointerNull>(Op))
2890 return EraseInstFromFunction(FI);
Chris Lattnerf3a36602004-02-28 04:57:37 +00002891
Chris Lattner8427bff2003-12-07 01:24:23 +00002892 return 0;
2893}
2894
2895
Chris Lattner0f1d8a32003-06-26 05:06:25 +00002896/// GetGEPGlobalInitializer - Given a constant, and a getelementptr
2897/// constantexpr, return the constant value being addressed by the constant
2898/// expression, or null if something is funny.
2899///
2900static Constant *GetGEPGlobalInitializer(Constant *C, ConstantExpr *CE) {
Chris Lattner69193f92004-04-05 01:30:19 +00002901 if (CE->getOperand(1) != Constant::getNullValue(CE->getOperand(1)->getType()))
Chris Lattner0f1d8a32003-06-26 05:06:25 +00002902 return 0; // Do not allow stepping over the value!
2903
2904 // Loop over all of the operands, tracking down which value we are
2905 // addressing...
Chris Lattnered79d8a2004-05-27 17:30:27 +00002906 gep_type_iterator I = gep_type_begin(CE), E = gep_type_end(CE);
2907 for (++I; I != E; ++I)
2908 if (const StructType *STy = dyn_cast<StructType>(*I)) {
2909 ConstantUInt *CU = cast<ConstantUInt>(I.getOperand());
2910 assert(CU->getValue() < STy->getNumElements() &&
2911 "Struct index out of range!");
2912 if (ConstantStruct *CS = dyn_cast<ConstantStruct>(C)) {
2913 C = cast<Constant>(CS->getValues()[CU->getValue()]);
2914 } else if (isa<ConstantAggregateZero>(C)) {
2915 C = Constant::getNullValue(STy->getElementType(CU->getValue()));
2916 } else {
2917 return 0;
2918 }
2919 } else if (ConstantInt *CI = dyn_cast<ConstantInt>(I.getOperand())) {
2920 const ArrayType *ATy = cast<ArrayType>(*I);
2921 if ((uint64_t)CI->getRawValue() >= ATy->getNumElements()) return 0;
2922 if (ConstantArray *CA = dyn_cast<ConstantArray>(C))
2923 C = cast<Constant>(CA->getValues()[CI->getRawValue()]);
2924 else if (isa<ConstantAggregateZero>(C))
2925 C = Constant::getNullValue(ATy->getElementType());
2926 else
2927 return 0;
2928 } else {
Chris Lattner0f1d8a32003-06-26 05:06:25 +00002929 return 0;
Chris Lattnered79d8a2004-05-27 17:30:27 +00002930 }
Chris Lattner0f1d8a32003-06-26 05:06:25 +00002931 return C;
2932}
2933
2934Instruction *InstCombiner::visitLoadInst(LoadInst &LI) {
2935 Value *Op = LI.getOperand(0);
Chris Lattner7e8af382004-01-12 04:13:56 +00002936 if (LI.isVolatile()) return 0;
2937
Chris Lattner6679e462004-04-14 03:28:36 +00002938 if (Constant *C = dyn_cast<Constant>(Op))
2939 if (C->isNullValue()) // load null -> 0
2940 return ReplaceInstUsesWith(LI, Constant::getNullValue(LI.getType()));
2941 else if (ConstantPointerRef *CPR = dyn_cast<ConstantPointerRef>(C))
2942 Op = CPR->getValue();
Chris Lattner0f1d8a32003-06-26 05:06:25 +00002943
2944 // Instcombine load (constant global) into the value loaded...
2945 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(Op))
Chris Lattnerbdb0ce02003-07-22 21:46:59 +00002946 if (GV->isConstant() && !GV->isExternal())
Chris Lattner0f1d8a32003-06-26 05:06:25 +00002947 return ReplaceInstUsesWith(LI, GV->getInitializer());
2948
2949 // Instcombine load (constantexpr_GEP global, 0, ...) into the value loaded...
2950 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(Op))
2951 if (CE->getOpcode() == Instruction::GetElementPtr)
2952 if (ConstantPointerRef *G=dyn_cast<ConstantPointerRef>(CE->getOperand(0)))
2953 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(G->getValue()))
Chris Lattnerbdb0ce02003-07-22 21:46:59 +00002954 if (GV->isConstant() && !GV->isExternal())
Chris Lattner0f1d8a32003-06-26 05:06:25 +00002955 if (Constant *V = GetGEPGlobalInitializer(GV->getInitializer(), CE))
2956 return ReplaceInstUsesWith(LI, V);
Chris Lattnere228ee52004-04-08 20:39:49 +00002957
2958 // load (cast X) --> cast (load X) iff safe
2959 if (CastInst *CI = dyn_cast<CastInst>(Op)) {
2960 const Type *DestPTy = cast<PointerType>(CI->getType())->getElementType();
2961 if (const PointerType *SrcTy =
2962 dyn_cast<PointerType>(CI->getOperand(0)->getType())) {
2963 const Type *SrcPTy = SrcTy->getElementType();
Chris Lattnerd9e58132004-05-07 15:35:56 +00002964 if (SrcPTy->isSized() && DestPTy->isSized() &&
2965 TD->getTypeSize(SrcPTy) == TD->getTypeSize(DestPTy) &&
Chris Lattnere228ee52004-04-08 20:39:49 +00002966 (SrcPTy->isInteger() || isa<PointerType>(SrcPTy)) &&
2967 (DestPTy->isInteger() || isa<PointerType>(DestPTy))) {
2968 // Okay, we are casting from one integer or pointer type to another of
2969 // the same size. Instead of casting the pointer before the load, cast
2970 // the result of the loaded value.
2971 Value *NewLoad = InsertNewInstBefore(new LoadInst(CI->getOperand(0),
2972 CI->getName()), LI);
2973 // Now cast the result of the load.
2974 return new CastInst(NewLoad, LI.getType());
2975 }
2976 }
2977 }
2978
Chris Lattner0f1d8a32003-06-26 05:06:25 +00002979 return 0;
2980}
2981
2982
Chris Lattner9eef8a72003-06-04 04:46:00 +00002983Instruction *InstCombiner::visitBranchInst(BranchInst &BI) {
2984 // Change br (not X), label True, label False to: br X, label False, True
Chris Lattner4f7acca2004-02-27 06:27:46 +00002985 if (BI.isConditional() && !isa<Constant>(BI.getCondition())) {
Chris Lattnere967b342003-06-04 05:10:11 +00002986 if (Value *V = dyn_castNotVal(BI.getCondition())) {
2987 BasicBlock *TrueDest = BI.getSuccessor(0);
2988 BasicBlock *FalseDest = BI.getSuccessor(1);
2989 // Swap Destinations and condition...
2990 BI.setCondition(V);
2991 BI.setSuccessor(0, FalseDest);
2992 BI.setSuccessor(1, TrueDest);
2993 return &BI;
Chris Lattner4f7acca2004-02-27 06:27:46 +00002994 } else if (SetCondInst *I = dyn_cast<SetCondInst>(BI.getCondition())) {
2995 // Cannonicalize setne -> seteq
2996 if ((I->getOpcode() == Instruction::SetNE ||
2997 I->getOpcode() == Instruction::SetLE ||
2998 I->getOpcode() == Instruction::SetGE) && I->hasOneUse()) {
2999 std::string Name = I->getName(); I->setName("");
3000 Instruction::BinaryOps NewOpcode =
3001 SetCondInst::getInverseCondition(I->getOpcode());
3002 Value *NewSCC = BinaryOperator::create(NewOpcode, I->getOperand(0),
3003 I->getOperand(1), Name, I);
3004 BasicBlock *TrueDest = BI.getSuccessor(0);
3005 BasicBlock *FalseDest = BI.getSuccessor(1);
3006 // Swap Destinations and condition...
3007 BI.setCondition(NewSCC);
3008 BI.setSuccessor(0, FalseDest);
3009 BI.setSuccessor(1, TrueDest);
3010 removeFromWorkList(I);
3011 I->getParent()->getInstList().erase(I);
3012 WorkList.push_back(cast<Instruction>(NewSCC));
3013 return &BI;
3014 }
Chris Lattnere967b342003-06-04 05:10:11 +00003015 }
Chris Lattner4f7acca2004-02-27 06:27:46 +00003016 }
Chris Lattner9eef8a72003-06-04 04:46:00 +00003017 return 0;
3018}
Chris Lattner1085bdf2002-11-04 16:18:53 +00003019
Chris Lattnerca081252001-12-14 16:52:21 +00003020
Chris Lattner99f48c62002-09-02 04:59:56 +00003021void InstCombiner::removeFromWorkList(Instruction *I) {
3022 WorkList.erase(std::remove(WorkList.begin(), WorkList.end(), I),
3023 WorkList.end());
3024}
3025
Chris Lattner113f4f42002-06-25 16:13:24 +00003026bool InstCombiner::runOnFunction(Function &F) {
Chris Lattner260ab202002-04-18 17:39:14 +00003027 bool Changed = false;
Chris Lattnerf4ad1652003-11-02 05:57:39 +00003028 TD = &getAnalysis<TargetData>();
Chris Lattnerca081252001-12-14 16:52:21 +00003029
Chris Lattnerb643a9e2004-05-01 23:19:52 +00003030 for (inst_iterator i = inst_begin(F), e = inst_end(F); i != e; ++i)
3031 WorkList.push_back(&*i);
Chris Lattner2d3a7a62004-04-27 15:13:33 +00003032
Chris Lattnerca081252001-12-14 16:52:21 +00003033
3034 while (!WorkList.empty()) {
3035 Instruction *I = WorkList.back(); // Get an instruction from the worklist
3036 WorkList.pop_back();
3037
Misha Brukman632df282002-10-29 23:06:16 +00003038 // Check to see if we can DCE or ConstantPropagate the instruction...
Chris Lattner99f48c62002-09-02 04:59:56 +00003039 // Check to see if we can DIE the instruction...
3040 if (isInstructionTriviallyDead(I)) {
3041 // Add operands to the worklist...
Chris Lattnere8ed4ef2003-10-06 17:11:01 +00003042 if (I->getNumOperands() < 4)
Chris Lattner51ea1272004-02-28 05:22:00 +00003043 AddUsesToWorkList(*I);
Chris Lattner99f48c62002-09-02 04:59:56 +00003044 ++NumDeadInst;
Chris Lattnere8ed4ef2003-10-06 17:11:01 +00003045
3046 I->getParent()->getInstList().erase(I);
3047 removeFromWorkList(I);
3048 continue;
3049 }
Chris Lattner99f48c62002-09-02 04:59:56 +00003050
Misha Brukman632df282002-10-29 23:06:16 +00003051 // Instruction isn't dead, see if we can constant propagate it...
Chris Lattner99f48c62002-09-02 04:59:56 +00003052 if (Constant *C = ConstantFoldInstruction(I)) {
3053 // Add operands to the worklist...
Chris Lattner51ea1272004-02-28 05:22:00 +00003054 AddUsesToWorkList(*I);
Chris Lattnerc6509f42002-12-05 22:41:53 +00003055 ReplaceInstUsesWith(*I, C);
3056
Chris Lattner99f48c62002-09-02 04:59:56 +00003057 ++NumConstProp;
Chris Lattnere8ed4ef2003-10-06 17:11:01 +00003058 I->getParent()->getInstList().erase(I);
Chris Lattner800aaaf2003-10-07 15:17:02 +00003059 removeFromWorkList(I);
Chris Lattnere8ed4ef2003-10-06 17:11:01 +00003060 continue;
Chris Lattner99f48c62002-09-02 04:59:56 +00003061 }
Chris Lattnere8ed4ef2003-10-06 17:11:01 +00003062
Chris Lattner57c67b02004-03-25 22:59:29 +00003063 // Check to see if any of the operands of this instruction are a
3064 // ConstantPointerRef. Since they sneak in all over the place and inhibit
3065 // optimization, we want to strip them out unconditionally!
3066 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i)
3067 if (ConstantPointerRef *CPR =
3068 dyn_cast<ConstantPointerRef>(I->getOperand(i))) {
3069 I->setOperand(i, CPR->getValue());
3070 Changed = true;
3071 }
3072
Chris Lattnerca081252001-12-14 16:52:21 +00003073 // Now that we have an instruction, try combining it to simplify it...
Chris Lattnerae7a0d32002-08-02 19:29:35 +00003074 if (Instruction *Result = visit(*I)) {
Chris Lattner0b18c1d2002-05-10 15:38:35 +00003075 ++NumCombined;
Chris Lattner260ab202002-04-18 17:39:14 +00003076 // Should we replace the old instruction with a new one?
Chris Lattner053c0932002-05-14 15:24:07 +00003077 if (Result != I) {
Chris Lattner7d2a5392004-03-13 23:54:27 +00003078 DEBUG(std::cerr << "IC: Old = " << *I
3079 << " New = " << *Result);
3080
Chris Lattner396dbfe2004-06-09 05:08:07 +00003081 // Everything uses the new instruction now.
3082 I->replaceAllUsesWith(Result);
3083
3084 // Push the new instruction and any users onto the worklist.
3085 WorkList.push_back(Result);
3086 AddUsersToWorkList(*Result);
Chris Lattnere8ed4ef2003-10-06 17:11:01 +00003087
3088 // Move the name to the new instruction first...
3089 std::string OldName = I->getName(); I->setName("");
Chris Lattner950fc782003-10-07 22:58:41 +00003090 Result->setName(OldName);
Chris Lattnere8ed4ef2003-10-06 17:11:01 +00003091
3092 // Insert the new instruction into the basic block...
3093 BasicBlock *InstParent = I->getParent();
3094 InstParent->getInstList().insert(I, Result);
3095
Chris Lattner63d75af2004-05-01 23:27:23 +00003096 // Make sure that we reprocess all operands now that we reduced their
3097 // use counts.
Chris Lattnerb643a9e2004-05-01 23:19:52 +00003098 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i)
3099 if (Instruction *OpI = dyn_cast<Instruction>(I->getOperand(i)))
3100 WorkList.push_back(OpI);
3101
Chris Lattner396dbfe2004-06-09 05:08:07 +00003102 // Instructions can end up on the worklist more than once. Make sure
3103 // we do not process an instruction that has been deleted.
3104 removeFromWorkList(I);
Chris Lattnere8ed4ef2003-10-06 17:11:01 +00003105
3106 // Erase the old instruction.
3107 InstParent->getInstList().erase(I);
Chris Lattner113f4f42002-06-25 16:13:24 +00003108 } else {
Chris Lattner7d2a5392004-03-13 23:54:27 +00003109 DEBUG(std::cerr << "IC: MOD = " << *I);
3110
Chris Lattnerae7a0d32002-08-02 19:29:35 +00003111 // If the instruction was modified, it's possible that it is now dead.
3112 // if so, remove it.
Chris Lattner63d75af2004-05-01 23:27:23 +00003113 if (isInstructionTriviallyDead(I)) {
3114 // Make sure we process all operands now that we are reducing their
3115 // use counts.
3116 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i)
3117 if (Instruction *OpI = dyn_cast<Instruction>(I->getOperand(i)))
3118 WorkList.push_back(OpI);
3119
3120 // Instructions may end up in the worklist more than once. Erase all
3121 // occurrances of this instruction.
Chris Lattner99f48c62002-09-02 04:59:56 +00003122 removeFromWorkList(I);
Chris Lattner63d75af2004-05-01 23:27:23 +00003123 I->getParent()->getInstList().erase(I);
Chris Lattner396dbfe2004-06-09 05:08:07 +00003124 } else {
3125 WorkList.push_back(Result);
3126 AddUsersToWorkList(*Result);
Chris Lattnerae7a0d32002-08-02 19:29:35 +00003127 }
Chris Lattner053c0932002-05-14 15:24:07 +00003128 }
Chris Lattner260ab202002-04-18 17:39:14 +00003129 Changed = true;
Chris Lattnerca081252001-12-14 16:52:21 +00003130 }
3131 }
3132
Chris Lattner260ab202002-04-18 17:39:14 +00003133 return Changed;
Chris Lattner04805fa2002-02-26 21:46:54 +00003134}
3135
Chris Lattner8427bff2003-12-07 01:24:23 +00003136Pass *llvm::createInstructionCombiningPass() {
Chris Lattner260ab202002-04-18 17:39:14 +00003137 return new InstCombiner();
Chris Lattner04805fa2002-02-26 21:46:54 +00003138}
Brian Gaeke960707c2003-11-11 22:41:34 +00003139