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Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001//===-- Instructions.cpp - Implement the LLVM instructions ----------------===//
Misha Brukmanb1c93172005-04-21 23:48:37 +00002//
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00003// 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.
Misha Brukmanb1c93172005-04-21 23:48:37 +00007//
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00008//===----------------------------------------------------------------------===//
9//
Chris Lattnerafdb3de2005-01-29 00:35:16 +000010// This file implements all of the non-inline methods for the LLVM instruction
11// classes.
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +000012//
13//===----------------------------------------------------------------------===//
14
15#include "llvm/BasicBlock.h"
16#include "llvm/Constants.h"
17#include "llvm/DerivedTypes.h"
18#include "llvm/Function.h"
19#include "llvm/Instructions.h"
20#include "llvm/Support/CallSite.h"
21using namespace llvm;
22
Chris Lattnerf7b6d312005-05-06 20:26:43 +000023unsigned CallSite::getCallingConv() const {
24 if (CallInst *CI = dyn_cast<CallInst>(I))
25 return CI->getCallingConv();
26 else
27 return cast<InvokeInst>(I)->getCallingConv();
28}
29void CallSite::setCallingConv(unsigned CC) {
30 if (CallInst *CI = dyn_cast<CallInst>(I))
31 CI->setCallingConv(CC);
32 else
33 cast<InvokeInst>(I)->setCallingConv(CC);
34}
35
36
Chris Lattner1c12a882006-06-21 16:53:47 +000037
38
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +000039//===----------------------------------------------------------------------===//
Chris Lattnerafdb3de2005-01-29 00:35:16 +000040// TerminatorInst Class
41//===----------------------------------------------------------------------===//
42
43TerminatorInst::TerminatorInst(Instruction::TermOps iType,
Misha Brukmanb1c93172005-04-21 23:48:37 +000044 Use *Ops, unsigned NumOps, Instruction *IB)
Chris Lattnerafdb3de2005-01-29 00:35:16 +000045 : Instruction(Type::VoidTy, iType, Ops, NumOps, "", IB) {
46}
47
48TerminatorInst::TerminatorInst(Instruction::TermOps iType,
49 Use *Ops, unsigned NumOps, BasicBlock *IAE)
50 : Instruction(Type::VoidTy, iType, Ops, NumOps, "", IAE) {
51}
52
Chris Lattner1c12a882006-06-21 16:53:47 +000053// Out of line virtual method, so the vtable, etc has a home.
54TerminatorInst::~TerminatorInst() {
55}
56
57// Out of line virtual method, so the vtable, etc has a home.
58UnaryInstruction::~UnaryInstruction() {
59}
Chris Lattnerafdb3de2005-01-29 00:35:16 +000060
61
62//===----------------------------------------------------------------------===//
63// PHINode Class
64//===----------------------------------------------------------------------===//
65
66PHINode::PHINode(const PHINode &PN)
67 : Instruction(PN.getType(), Instruction::PHI,
68 new Use[PN.getNumOperands()], PN.getNumOperands()),
69 ReservedSpace(PN.getNumOperands()) {
70 Use *OL = OperandList;
71 for (unsigned i = 0, e = PN.getNumOperands(); i != e; i+=2) {
72 OL[i].init(PN.getOperand(i), this);
73 OL[i+1].init(PN.getOperand(i+1), this);
74 }
75}
76
77PHINode::~PHINode() {
78 delete [] OperandList;
79}
80
81// removeIncomingValue - Remove an incoming value. This is useful if a
82// predecessor basic block is deleted.
83Value *PHINode::removeIncomingValue(unsigned Idx, bool DeletePHIIfEmpty) {
84 unsigned NumOps = getNumOperands();
85 Use *OL = OperandList;
86 assert(Idx*2 < NumOps && "BB not in PHI node!");
87 Value *Removed = OL[Idx*2];
88
89 // Move everything after this operand down.
90 //
91 // FIXME: we could just swap with the end of the list, then erase. However,
92 // client might not expect this to happen. The code as it is thrashes the
93 // use/def lists, which is kinda lame.
94 for (unsigned i = (Idx+1)*2; i != NumOps; i += 2) {
95 OL[i-2] = OL[i];
96 OL[i-2+1] = OL[i+1];
97 }
98
99 // Nuke the last value.
100 OL[NumOps-2].set(0);
101 OL[NumOps-2+1].set(0);
102 NumOperands = NumOps-2;
103
104 // If the PHI node is dead, because it has zero entries, nuke it now.
105 if (NumOps == 2 && DeletePHIIfEmpty) {
106 // If anyone is using this PHI, make them use a dummy value instead...
107 replaceAllUsesWith(UndefValue::get(getType()));
108 eraseFromParent();
109 }
110 return Removed;
111}
112
113/// resizeOperands - resize operands - This adjusts the length of the operands
114/// list according to the following behavior:
115/// 1. If NumOps == 0, grow the operand list in response to a push_back style
116/// of operation. This grows the number of ops by 1.5 times.
117/// 2. If NumOps > NumOperands, reserve space for NumOps operands.
118/// 3. If NumOps == NumOperands, trim the reserved space.
119///
120void PHINode::resizeOperands(unsigned NumOps) {
121 if (NumOps == 0) {
122 NumOps = (getNumOperands())*3/2;
123 if (NumOps < 4) NumOps = 4; // 4 op PHI nodes are VERY common.
124 } else if (NumOps*2 > NumOperands) {
125 // No resize needed.
126 if (ReservedSpace >= NumOps) return;
127 } else if (NumOps == NumOperands) {
128 if (ReservedSpace == NumOps) return;
129 } else {
Misha Brukmanb1c93172005-04-21 23:48:37 +0000130 return;
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000131 }
132
133 ReservedSpace = NumOps;
134 Use *NewOps = new Use[NumOps];
135 Use *OldOps = OperandList;
136 for (unsigned i = 0, e = getNumOperands(); i != e; ++i) {
137 NewOps[i].init(OldOps[i], this);
138 OldOps[i].set(0);
139 }
140 delete [] OldOps;
141 OperandList = NewOps;
142}
143
Nate Begemanb3923212005-08-04 23:24:19 +0000144/// hasConstantValue - If the specified PHI node always merges together the same
145/// value, return the value, otherwise return null.
146///
Chris Lattner1d8b2482005-08-05 00:49:06 +0000147Value *PHINode::hasConstantValue(bool AllowNonDominatingInstruction) const {
Nate Begemanb3923212005-08-04 23:24:19 +0000148 // If the PHI node only has one incoming value, eliminate the PHI node...
149 if (getNumIncomingValues() == 1)
Chris Lattner6e709c12005-08-05 15:37:31 +0000150 if (getIncomingValue(0) != this) // not X = phi X
151 return getIncomingValue(0);
152 else
153 return UndefValue::get(getType()); // Self cycle is dead.
154
Nate Begemanb3923212005-08-04 23:24:19 +0000155 // Otherwise if all of the incoming values are the same for the PHI, replace
156 // the PHI node with the incoming value.
157 //
158 Value *InVal = 0;
Chris Lattnerbcd8d2c2005-08-05 01:00:58 +0000159 bool HasUndefInput = false;
Nate Begemanb3923212005-08-04 23:24:19 +0000160 for (unsigned i = 0, e = getNumIncomingValues(); i != e; ++i)
Chris Lattnerbcd8d2c2005-08-05 01:00:58 +0000161 if (isa<UndefValue>(getIncomingValue(i)))
162 HasUndefInput = true;
163 else if (getIncomingValue(i) != this) // Not the PHI node itself...
Nate Begemanb3923212005-08-04 23:24:19 +0000164 if (InVal && getIncomingValue(i) != InVal)
165 return 0; // Not the same, bail out.
166 else
167 InVal = getIncomingValue(i);
168
169 // The only case that could cause InVal to be null is if we have a PHI node
170 // that only has entries for itself. In this case, there is no entry into the
171 // loop, so kill the PHI.
172 //
173 if (InVal == 0) InVal = UndefValue::get(getType());
174
Chris Lattnerbcd8d2c2005-08-05 01:00:58 +0000175 // If we have a PHI node like phi(X, undef, X), where X is defined by some
176 // instruction, we cannot always return X as the result of the PHI node. Only
177 // do this if X is not an instruction (thus it must dominate the PHI block),
178 // or if the client is prepared to deal with this possibility.
179 if (HasUndefInput && !AllowNonDominatingInstruction)
180 if (Instruction *IV = dyn_cast<Instruction>(InVal))
181 // If it's in the entry block, it dominates everything.
Chris Lattner37774af2005-08-05 01:03:27 +0000182 if (IV->getParent() != &IV->getParent()->getParent()->front() ||
183 isa<InvokeInst>(IV))
Chris Lattnerbcd8d2c2005-08-05 01:00:58 +0000184 return 0; // Cannot guarantee that InVal dominates this PHINode.
185
Nate Begemanb3923212005-08-04 23:24:19 +0000186 // All of the incoming values are the same, return the value now.
187 return InVal;
188}
189
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000190
191//===----------------------------------------------------------------------===//
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000192// CallInst Implementation
193//===----------------------------------------------------------------------===//
194
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000195CallInst::~CallInst() {
196 delete [] OperandList;
197}
198
199void CallInst::init(Value *Func, const std::vector<Value*> &Params) {
200 NumOperands = Params.size()+1;
201 Use *OL = OperandList = new Use[Params.size()+1];
202 OL[0].init(Func, this);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000203
Misha Brukmanb1c93172005-04-21 23:48:37 +0000204 const FunctionType *FTy =
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000205 cast<FunctionType>(cast<PointerType>(Func->getType())->getElementType());
206
Misha Brukmanb1c93172005-04-21 23:48:37 +0000207 assert((Params.size() == FTy->getNumParams() ||
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000208 (FTy->isVarArg() && Params.size() > FTy->getNumParams())) &&
Chris Lattner667a0562006-05-03 00:48:22 +0000209 "Calling a function with bad signature!");
210 for (unsigned i = 0, e = Params.size(); i != e; ++i) {
211 assert((i >= FTy->getNumParams() ||
212 FTy->getParamType(i) == Params[i]->getType()) &&
213 "Calling a function with a bad signature!");
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000214 OL[i+1].init(Params[i], this);
Chris Lattner667a0562006-05-03 00:48:22 +0000215 }
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000216}
217
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000218void CallInst::init(Value *Func, Value *Actual1, Value *Actual2) {
219 NumOperands = 3;
220 Use *OL = OperandList = new Use[3];
221 OL[0].init(Func, this);
222 OL[1].init(Actual1, this);
223 OL[2].init(Actual2, this);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000224
225 const FunctionType *FTy =
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000226 cast<FunctionType>(cast<PointerType>(Func->getType())->getElementType());
227
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000228 assert((FTy->getNumParams() == 2 ||
Chris Lattner667a0562006-05-03 00:48:22 +0000229 (FTy->isVarArg() && FTy->getNumParams() < 2)) &&
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000230 "Calling a function with bad signature");
Chris Lattner667a0562006-05-03 00:48:22 +0000231 assert((0 >= FTy->getNumParams() ||
232 FTy->getParamType(0) == Actual1->getType()) &&
233 "Calling a function with a bad signature!");
234 assert((1 >= FTy->getNumParams() ||
235 FTy->getParamType(1) == Actual2->getType()) &&
236 "Calling a function with a bad signature!");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000237}
238
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000239void CallInst::init(Value *Func, Value *Actual) {
240 NumOperands = 2;
241 Use *OL = OperandList = new Use[2];
242 OL[0].init(Func, this);
243 OL[1].init(Actual, this);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000244
245 const FunctionType *FTy =
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000246 cast<FunctionType>(cast<PointerType>(Func->getType())->getElementType());
247
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000248 assert((FTy->getNumParams() == 1 ||
249 (FTy->isVarArg() && FTy->getNumParams() == 0)) &&
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000250 "Calling a function with bad signature");
Chris Lattner667a0562006-05-03 00:48:22 +0000251 assert((0 == FTy->getNumParams() ||
252 FTy->getParamType(0) == Actual->getType()) &&
253 "Calling a function with a bad signature!");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000254}
255
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000256void CallInst::init(Value *Func) {
257 NumOperands = 1;
258 Use *OL = OperandList = new Use[1];
259 OL[0].init(Func, this);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000260
261 const FunctionType *MTy =
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000262 cast<FunctionType>(cast<PointerType>(Func->getType())->getElementType());
263
264 assert(MTy->getNumParams() == 0 && "Calling a function with bad signature");
265}
266
Misha Brukmanb1c93172005-04-21 23:48:37 +0000267CallInst::CallInst(Value *Func, const std::vector<Value*> &Params,
268 const std::string &Name, Instruction *InsertBefore)
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000269 : Instruction(cast<FunctionType>(cast<PointerType>(Func->getType())
270 ->getElementType())->getReturnType(),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000271 Instruction::Call, 0, 0, Name, InsertBefore) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000272 init(Func, Params);
273}
274
Misha Brukmanb1c93172005-04-21 23:48:37 +0000275CallInst::CallInst(Value *Func, const std::vector<Value*> &Params,
276 const std::string &Name, BasicBlock *InsertAtEnd)
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000277 : Instruction(cast<FunctionType>(cast<PointerType>(Func->getType())
278 ->getElementType())->getReturnType(),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000279 Instruction::Call, 0, 0, Name, InsertAtEnd) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000280 init(Func, Params);
281}
282
283CallInst::CallInst(Value *Func, Value *Actual1, Value *Actual2,
284 const std::string &Name, Instruction *InsertBefore)
285 : Instruction(cast<FunctionType>(cast<PointerType>(Func->getType())
286 ->getElementType())->getReturnType(),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000287 Instruction::Call, 0, 0, Name, InsertBefore) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000288 init(Func, Actual1, Actual2);
289}
290
291CallInst::CallInst(Value *Func, Value *Actual1, Value *Actual2,
292 const std::string &Name, BasicBlock *InsertAtEnd)
293 : Instruction(cast<FunctionType>(cast<PointerType>(Func->getType())
294 ->getElementType())->getReturnType(),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000295 Instruction::Call, 0, 0, Name, InsertAtEnd) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000296 init(Func, Actual1, Actual2);
297}
298
299CallInst::CallInst(Value *Func, Value* Actual, const std::string &Name,
300 Instruction *InsertBefore)
301 : Instruction(cast<FunctionType>(cast<PointerType>(Func->getType())
302 ->getElementType())->getReturnType(),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000303 Instruction::Call, 0, 0, Name, InsertBefore) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000304 init(Func, Actual);
305}
306
307CallInst::CallInst(Value *Func, Value* Actual, const std::string &Name,
308 BasicBlock *InsertAtEnd)
309 : Instruction(cast<FunctionType>(cast<PointerType>(Func->getType())
310 ->getElementType())->getReturnType(),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000311 Instruction::Call, 0, 0, Name, InsertAtEnd) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000312 init(Func, Actual);
313}
314
315CallInst::CallInst(Value *Func, const std::string &Name,
316 Instruction *InsertBefore)
317 : Instruction(cast<FunctionType>(cast<PointerType>(Func->getType())
318 ->getElementType())->getReturnType(),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000319 Instruction::Call, 0, 0, Name, InsertBefore) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000320 init(Func);
321}
322
323CallInst::CallInst(Value *Func, const std::string &Name,
324 BasicBlock *InsertAtEnd)
325 : Instruction(cast<FunctionType>(cast<PointerType>(Func->getType())
326 ->getElementType())->getReturnType(),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000327 Instruction::Call, 0, 0, Name, InsertAtEnd) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000328 init(Func);
329}
330
Misha Brukmanb1c93172005-04-21 23:48:37 +0000331CallInst::CallInst(const CallInst &CI)
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000332 : Instruction(CI.getType(), Instruction::Call, new Use[CI.getNumOperands()],
333 CI.getNumOperands()) {
Chris Lattnerf7b6d312005-05-06 20:26:43 +0000334 SubclassData = CI.SubclassData;
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000335 Use *OL = OperandList;
336 Use *InOL = CI.OperandList;
337 for (unsigned i = 0, e = CI.getNumOperands(); i != e; ++i)
338 OL[i].init(InOL[i], this);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000339}
340
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000341
342//===----------------------------------------------------------------------===//
343// InvokeInst Implementation
344//===----------------------------------------------------------------------===//
345
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000346InvokeInst::~InvokeInst() {
347 delete [] OperandList;
348}
349
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000350void InvokeInst::init(Value *Fn, BasicBlock *IfNormal, BasicBlock *IfException,
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000351 const std::vector<Value*> &Params) {
352 NumOperands = 3+Params.size();
353 Use *OL = OperandList = new Use[3+Params.size()];
354 OL[0].init(Fn, this);
355 OL[1].init(IfNormal, this);
356 OL[2].init(IfException, this);
Misha Brukmanb1c93172005-04-21 23:48:37 +0000357 const FunctionType *FTy =
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000358 cast<FunctionType>(cast<PointerType>(Fn->getType())->getElementType());
Misha Brukmanb1c93172005-04-21 23:48:37 +0000359
360 assert((Params.size() == FTy->getNumParams()) ||
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000361 (FTy->isVarArg() && Params.size() > FTy->getNumParams()) &&
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000362 "Calling a function with bad signature");
Misha Brukmanb1c93172005-04-21 23:48:37 +0000363
Chris Lattner667a0562006-05-03 00:48:22 +0000364 for (unsigned i = 0, e = Params.size(); i != e; i++) {
365 assert((i >= FTy->getNumParams() ||
366 FTy->getParamType(i) == Params[i]->getType()) &&
367 "Invoking a function with a bad signature!");
368
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000369 OL[i+3].init(Params[i], this);
Chris Lattner667a0562006-05-03 00:48:22 +0000370 }
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000371}
372
373InvokeInst::InvokeInst(Value *Fn, BasicBlock *IfNormal,
374 BasicBlock *IfException,
375 const std::vector<Value*> &Params,
376 const std::string &Name, Instruction *InsertBefore)
377 : TerminatorInst(cast<FunctionType>(cast<PointerType>(Fn->getType())
378 ->getElementType())->getReturnType(),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000379 Instruction::Invoke, 0, 0, Name, InsertBefore) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000380 init(Fn, IfNormal, IfException, Params);
381}
382
383InvokeInst::InvokeInst(Value *Fn, BasicBlock *IfNormal,
384 BasicBlock *IfException,
385 const std::vector<Value*> &Params,
386 const std::string &Name, BasicBlock *InsertAtEnd)
387 : TerminatorInst(cast<FunctionType>(cast<PointerType>(Fn->getType())
388 ->getElementType())->getReturnType(),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000389 Instruction::Invoke, 0, 0, Name, InsertAtEnd) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000390 init(Fn, IfNormal, IfException, Params);
391}
392
Misha Brukmanb1c93172005-04-21 23:48:37 +0000393InvokeInst::InvokeInst(const InvokeInst &II)
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000394 : TerminatorInst(II.getType(), Instruction::Invoke,
395 new Use[II.getNumOperands()], II.getNumOperands()) {
Chris Lattnerf7b6d312005-05-06 20:26:43 +0000396 SubclassData = II.SubclassData;
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000397 Use *OL = OperandList, *InOL = II.OperandList;
398 for (unsigned i = 0, e = II.getNumOperands(); i != e; ++i)
399 OL[i].init(InOL[i], this);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000400}
401
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000402BasicBlock *InvokeInst::getSuccessorV(unsigned idx) const {
403 return getSuccessor(idx);
404}
405unsigned InvokeInst::getNumSuccessorsV() const {
406 return getNumSuccessors();
407}
408void InvokeInst::setSuccessorV(unsigned idx, BasicBlock *B) {
409 return setSuccessor(idx, B);
410}
411
412
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000413//===----------------------------------------------------------------------===//
414// ReturnInst Implementation
415//===----------------------------------------------------------------------===//
416
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000417void ReturnInst::init(Value *retVal) {
418 if (retVal && retVal->getType() != Type::VoidTy) {
Misha Brukmanb1c93172005-04-21 23:48:37 +0000419 assert(!isa<BasicBlock>(retVal) &&
Alkis Evlogimenos531e9012004-11-17 21:02:25 +0000420 "Cannot return basic block. Probably using the incorrect ctor");
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000421 NumOperands = 1;
422 RetVal.init(retVal, this);
Alkis Evlogimenos531e9012004-11-17 21:02:25 +0000423 }
424}
425
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000426unsigned ReturnInst::getNumSuccessorsV() const {
427 return getNumSuccessors();
428}
429
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000430// Out-of-line ReturnInst method, put here so the C++ compiler can choose to
431// emit the vtable for the class in this translation unit.
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000432void ReturnInst::setSuccessorV(unsigned idx, BasicBlock *NewSucc) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000433 assert(0 && "ReturnInst has no successors!");
434}
435
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000436BasicBlock *ReturnInst::getSuccessorV(unsigned idx) const {
437 assert(0 && "ReturnInst has no successors!");
438 abort();
439 return 0;
440}
441
442
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000443//===----------------------------------------------------------------------===//
444// UnwindInst Implementation
445//===----------------------------------------------------------------------===//
446
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000447unsigned UnwindInst::getNumSuccessorsV() const {
448 return getNumSuccessors();
449}
450
451void UnwindInst::setSuccessorV(unsigned idx, BasicBlock *NewSucc) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000452 assert(0 && "UnwindInst has no successors!");
453}
454
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000455BasicBlock *UnwindInst::getSuccessorV(unsigned idx) const {
456 assert(0 && "UnwindInst has no successors!");
457 abort();
458 return 0;
459}
460
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000461//===----------------------------------------------------------------------===//
Chris Lattner5e0b9f22004-10-16 18:08:06 +0000462// UnreachableInst Implementation
463//===----------------------------------------------------------------------===//
464
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000465unsigned UnreachableInst::getNumSuccessorsV() const {
466 return getNumSuccessors();
467}
468
469void UnreachableInst::setSuccessorV(unsigned idx, BasicBlock *NewSucc) {
470 assert(0 && "UnwindInst has no successors!");
471}
472
473BasicBlock *UnreachableInst::getSuccessorV(unsigned idx) const {
474 assert(0 && "UnwindInst has no successors!");
475 abort();
476 return 0;
Chris Lattner5e0b9f22004-10-16 18:08:06 +0000477}
478
479//===----------------------------------------------------------------------===//
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000480// BranchInst Implementation
481//===----------------------------------------------------------------------===//
482
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000483void BranchInst::AssertOK() {
484 if (isConditional())
Misha Brukmanb1c93172005-04-21 23:48:37 +0000485 assert(getCondition()->getType() == Type::BoolTy &&
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000486 "May only branch on boolean predicates!");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000487}
488
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000489BranchInst::BranchInst(const BranchInst &BI) :
490 TerminatorInst(Instruction::Br, Ops, BI.getNumOperands()) {
491 OperandList[0].init(BI.getOperand(0), this);
492 if (BI.getNumOperands() != 1) {
493 assert(BI.getNumOperands() == 3 && "BR can have 1 or 3 operands!");
494 OperandList[1].init(BI.getOperand(1), this);
495 OperandList[2].init(BI.getOperand(2), this);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000496 }
497}
498
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000499BasicBlock *BranchInst::getSuccessorV(unsigned idx) const {
500 return getSuccessor(idx);
501}
502unsigned BranchInst::getNumSuccessorsV() const {
503 return getNumSuccessors();
504}
505void BranchInst::setSuccessorV(unsigned idx, BasicBlock *B) {
506 setSuccessor(idx, B);
507}
508
509
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000510//===----------------------------------------------------------------------===//
511// AllocationInst Implementation
512//===----------------------------------------------------------------------===//
513
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000514static Value *getAISize(Value *Amt) {
515 if (!Amt)
Reid Spencere0fc4df2006-10-20 07:07:24 +0000516 Amt = ConstantInt::get(Type::UIntTy, 1);
Chris Lattnerbb7ff662006-05-10 04:32:43 +0000517 else {
518 assert(!isa<BasicBlock>(Amt) &&
519 "Passed basic block into allocation size parameter! Ue other ctor");
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000520 assert(Amt->getType() == Type::UIntTy &&
521 "Malloc/Allocation array size != UIntTy!");
Chris Lattnerbb7ff662006-05-10 04:32:43 +0000522 }
Misha Brukmanb1c93172005-04-21 23:48:37 +0000523 return Amt;
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000524}
525
Misha Brukmanb1c93172005-04-21 23:48:37 +0000526AllocationInst::AllocationInst(const Type *Ty, Value *ArraySize, unsigned iTy,
Nate Begeman848622f2005-11-05 09:21:28 +0000527 unsigned Align, const std::string &Name,
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000528 Instruction *InsertBefore)
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000529 : UnaryInstruction(PointerType::get(Ty), iTy, getAISize(ArraySize),
Nate Begeman848622f2005-11-05 09:21:28 +0000530 Name, InsertBefore), Alignment(Align) {
Chris Lattner79b8c792005-11-05 21:57:54 +0000531 assert((Align & (Align-1)) == 0 && "Alignment is not a power of 2!");
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000532 assert(Ty != Type::VoidTy && "Cannot allocate void!");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000533}
534
Misha Brukmanb1c93172005-04-21 23:48:37 +0000535AllocationInst::AllocationInst(const Type *Ty, Value *ArraySize, unsigned iTy,
Nate Begeman848622f2005-11-05 09:21:28 +0000536 unsigned Align, const std::string &Name,
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000537 BasicBlock *InsertAtEnd)
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000538 : UnaryInstruction(PointerType::get(Ty), iTy, getAISize(ArraySize),
Nate Begeman848622f2005-11-05 09:21:28 +0000539 Name, InsertAtEnd), Alignment(Align) {
Chris Lattner79b8c792005-11-05 21:57:54 +0000540 assert((Align & (Align-1)) == 0 && "Alignment is not a power of 2!");
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000541 assert(Ty != Type::VoidTy && "Cannot allocate void!");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000542}
543
Chris Lattner1c12a882006-06-21 16:53:47 +0000544// Out of line virtual method, so the vtable, etc has a home.
545AllocationInst::~AllocationInst() {
546}
547
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000548bool AllocationInst::isArrayAllocation() const {
Reid Spencere0fc4df2006-10-20 07:07:24 +0000549 if (ConstantInt *CUI = dyn_cast<ConstantInt>(getOperand(0)))
550 return CUI->getZExtValue() != 1;
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000551 return true;
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000552}
553
554const Type *AllocationInst::getAllocatedType() const {
555 return getType()->getElementType();
556}
557
558AllocaInst::AllocaInst(const AllocaInst &AI)
559 : AllocationInst(AI.getType()->getElementType(), (Value*)AI.getOperand(0),
Nate Begeman848622f2005-11-05 09:21:28 +0000560 Instruction::Alloca, AI.getAlignment()) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000561}
562
563MallocInst::MallocInst(const MallocInst &MI)
564 : AllocationInst(MI.getType()->getElementType(), (Value*)MI.getOperand(0),
Nate Begeman848622f2005-11-05 09:21:28 +0000565 Instruction::Malloc, MI.getAlignment()) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000566}
567
568//===----------------------------------------------------------------------===//
569// FreeInst Implementation
570//===----------------------------------------------------------------------===//
571
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000572void FreeInst::AssertOK() {
573 assert(isa<PointerType>(getOperand(0)->getType()) &&
574 "Can not free something of nonpointer type!");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000575}
576
577FreeInst::FreeInst(Value *Ptr, Instruction *InsertBefore)
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000578 : UnaryInstruction(Type::VoidTy, Free, Ptr, "", InsertBefore) {
579 AssertOK();
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000580}
581
582FreeInst::FreeInst(Value *Ptr, BasicBlock *InsertAtEnd)
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000583 : UnaryInstruction(Type::VoidTy, Free, Ptr, "", InsertAtEnd) {
584 AssertOK();
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000585}
586
587
588//===----------------------------------------------------------------------===//
589// LoadInst Implementation
590//===----------------------------------------------------------------------===//
591
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000592void LoadInst::AssertOK() {
Misha Brukmanb1c93172005-04-21 23:48:37 +0000593 assert(isa<PointerType>(getOperand(0)->getType()) &&
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000594 "Ptr must have pointer type.");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000595}
596
597LoadInst::LoadInst(Value *Ptr, const std::string &Name, Instruction *InsertBef)
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000598 : UnaryInstruction(cast<PointerType>(Ptr->getType())->getElementType(),
Chris Lattnerdf57a022005-02-05 01:38:38 +0000599 Load, Ptr, Name, InsertBef) {
600 setVolatile(false);
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000601 AssertOK();
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000602}
603
604LoadInst::LoadInst(Value *Ptr, const std::string &Name, BasicBlock *InsertAE)
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000605 : UnaryInstruction(cast<PointerType>(Ptr->getType())->getElementType(),
Chris Lattnerdf57a022005-02-05 01:38:38 +0000606 Load, Ptr, Name, InsertAE) {
607 setVolatile(false);
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000608 AssertOK();
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000609}
610
611LoadInst::LoadInst(Value *Ptr, const std::string &Name, bool isVolatile,
612 Instruction *InsertBef)
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000613 : UnaryInstruction(cast<PointerType>(Ptr->getType())->getElementType(),
Chris Lattnerdf57a022005-02-05 01:38:38 +0000614 Load, Ptr, Name, InsertBef) {
615 setVolatile(isVolatile);
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000616 AssertOK();
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000617}
618
619LoadInst::LoadInst(Value *Ptr, const std::string &Name, bool isVolatile,
620 BasicBlock *InsertAE)
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000621 : UnaryInstruction(cast<PointerType>(Ptr->getType())->getElementType(),
Chris Lattnerdf57a022005-02-05 01:38:38 +0000622 Load, Ptr, Name, InsertAE) {
623 setVolatile(isVolatile);
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000624 AssertOK();
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000625}
626
627
628//===----------------------------------------------------------------------===//
629// StoreInst Implementation
630//===----------------------------------------------------------------------===//
631
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000632void StoreInst::AssertOK() {
633 assert(isa<PointerType>(getOperand(1)->getType()) &&
634 "Ptr must have pointer type!");
635 assert(getOperand(0)->getType() ==
636 cast<PointerType>(getOperand(1)->getType())->getElementType()
Alkis Evlogimenos079fbde2004-08-06 14:33:37 +0000637 && "Ptr must be a pointer to Val type!");
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000638}
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000639
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000640
641StoreInst::StoreInst(Value *val, Value *addr, Instruction *InsertBefore)
Chris Lattnerdf57a022005-02-05 01:38:38 +0000642 : Instruction(Type::VoidTy, Store, Ops, 2, "", InsertBefore) {
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000643 Ops[0].init(val, this);
644 Ops[1].init(addr, this);
Chris Lattnerdf57a022005-02-05 01:38:38 +0000645 setVolatile(false);
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000646 AssertOK();
647}
648
649StoreInst::StoreInst(Value *val, Value *addr, BasicBlock *InsertAtEnd)
Chris Lattnerdf57a022005-02-05 01:38:38 +0000650 : Instruction(Type::VoidTy, Store, Ops, 2, "", InsertAtEnd) {
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000651 Ops[0].init(val, this);
652 Ops[1].init(addr, this);
Chris Lattnerdf57a022005-02-05 01:38:38 +0000653 setVolatile(false);
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000654 AssertOK();
655}
656
Misha Brukmanb1c93172005-04-21 23:48:37 +0000657StoreInst::StoreInst(Value *val, Value *addr, bool isVolatile,
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000658 Instruction *InsertBefore)
Chris Lattnerdf57a022005-02-05 01:38:38 +0000659 : Instruction(Type::VoidTy, Store, Ops, 2, "", InsertBefore) {
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000660 Ops[0].init(val, this);
661 Ops[1].init(addr, this);
Chris Lattnerdf57a022005-02-05 01:38:38 +0000662 setVolatile(isVolatile);
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000663 AssertOK();
664}
665
Misha Brukmanb1c93172005-04-21 23:48:37 +0000666StoreInst::StoreInst(Value *val, Value *addr, bool isVolatile,
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000667 BasicBlock *InsertAtEnd)
Chris Lattnerdf57a022005-02-05 01:38:38 +0000668 : Instruction(Type::VoidTy, Store, Ops, 2, "", InsertAtEnd) {
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000669 Ops[0].init(val, this);
670 Ops[1].init(addr, this);
Chris Lattnerdf57a022005-02-05 01:38:38 +0000671 setVolatile(isVolatile);
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000672 AssertOK();
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000673}
674
675//===----------------------------------------------------------------------===//
676// GetElementPtrInst Implementation
677//===----------------------------------------------------------------------===//
678
679// checkType - Simple wrapper function to give a better assertion failure
680// message on bad indexes for a gep instruction.
681//
682static inline const Type *checkType(const Type *Ty) {
Chris Lattner47a6e632006-05-14 18:34:36 +0000683 assert(Ty && "Invalid GetElementPtrInst indices for type!");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000684 return Ty;
685}
686
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000687void GetElementPtrInst::init(Value *Ptr, const std::vector<Value*> &Idx) {
688 NumOperands = 1+Idx.size();
689 Use *OL = OperandList = new Use[NumOperands];
690 OL[0].init(Ptr, this);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000691
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000692 for (unsigned i = 0, e = Idx.size(); i != e; ++i)
693 OL[i+1].init(Idx[i], this);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000694}
695
696void GetElementPtrInst::init(Value *Ptr, Value *Idx0, Value *Idx1) {
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000697 NumOperands = 3;
698 Use *OL = OperandList = new Use[3];
699 OL[0].init(Ptr, this);
700 OL[1].init(Idx0, this);
701 OL[2].init(Idx1, this);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000702}
703
Chris Lattner82981202005-05-03 05:43:30 +0000704void GetElementPtrInst::init(Value *Ptr, Value *Idx) {
705 NumOperands = 2;
706 Use *OL = OperandList = new Use[2];
707 OL[0].init(Ptr, this);
708 OL[1].init(Idx, this);
709}
710
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000711GetElementPtrInst::GetElementPtrInst(Value *Ptr, const std::vector<Value*> &Idx,
Misha Brukman96eb8782005-03-16 05:42:00 +0000712 const std::string &Name, Instruction *InBe)
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000713 : Instruction(PointerType::get(checkType(getIndexedType(Ptr->getType(),
714 Idx, true))),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000715 GetElementPtr, 0, 0, Name, InBe) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000716 init(Ptr, Idx);
717}
718
719GetElementPtrInst::GetElementPtrInst(Value *Ptr, const std::vector<Value*> &Idx,
Misha Brukman96eb8782005-03-16 05:42:00 +0000720 const std::string &Name, BasicBlock *IAE)
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000721 : Instruction(PointerType::get(checkType(getIndexedType(Ptr->getType(),
722 Idx, true))),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000723 GetElementPtr, 0, 0, Name, IAE) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000724 init(Ptr, Idx);
725}
726
Chris Lattner82981202005-05-03 05:43:30 +0000727GetElementPtrInst::GetElementPtrInst(Value *Ptr, Value *Idx,
728 const std::string &Name, Instruction *InBe)
729 : Instruction(PointerType::get(checkType(getIndexedType(Ptr->getType(),Idx))),
730 GetElementPtr, 0, 0, Name, InBe) {
731 init(Ptr, Idx);
732}
733
734GetElementPtrInst::GetElementPtrInst(Value *Ptr, Value *Idx,
735 const std::string &Name, BasicBlock *IAE)
736 : Instruction(PointerType::get(checkType(getIndexedType(Ptr->getType(),Idx))),
737 GetElementPtr, 0, 0, Name, IAE) {
738 init(Ptr, Idx);
739}
740
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000741GetElementPtrInst::GetElementPtrInst(Value *Ptr, Value *Idx0, Value *Idx1,
742 const std::string &Name, Instruction *InBe)
743 : Instruction(PointerType::get(checkType(getIndexedType(Ptr->getType(),
744 Idx0, Idx1, true))),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000745 GetElementPtr, 0, 0, Name, InBe) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000746 init(Ptr, Idx0, Idx1);
747}
748
749GetElementPtrInst::GetElementPtrInst(Value *Ptr, Value *Idx0, Value *Idx1,
Misha Brukman96eb8782005-03-16 05:42:00 +0000750 const std::string &Name, BasicBlock *IAE)
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000751 : Instruction(PointerType::get(checkType(getIndexedType(Ptr->getType(),
752 Idx0, Idx1, true))),
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000753 GetElementPtr, 0, 0, Name, IAE) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000754 init(Ptr, Idx0, Idx1);
755}
756
Chris Lattnerafdb3de2005-01-29 00:35:16 +0000757GetElementPtrInst::~GetElementPtrInst() {
758 delete[] OperandList;
759}
760
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000761// getIndexedType - Returns the type of the element that would be loaded with
762// a load instruction with the specified parameters.
763//
Misha Brukmanb1c93172005-04-21 23:48:37 +0000764// A null type is returned if the indices are invalid for the specified
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000765// pointer type.
766//
Misha Brukmanb1c93172005-04-21 23:48:37 +0000767const Type* GetElementPtrInst::getIndexedType(const Type *Ptr,
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000768 const std::vector<Value*> &Idx,
769 bool AllowCompositeLeaf) {
770 if (!isa<PointerType>(Ptr)) return 0; // Type isn't a pointer type!
771
772 // Handle the special case of the empty set index set...
773 if (Idx.empty())
774 if (AllowCompositeLeaf ||
775 cast<PointerType>(Ptr)->getElementType()->isFirstClassType())
776 return cast<PointerType>(Ptr)->getElementType();
777 else
778 return 0;
Misha Brukmanb1c93172005-04-21 23:48:37 +0000779
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000780 unsigned CurIdx = 0;
781 while (const CompositeType *CT = dyn_cast<CompositeType>(Ptr)) {
782 if (Idx.size() == CurIdx) {
783 if (AllowCompositeLeaf || CT->isFirstClassType()) return Ptr;
784 return 0; // Can't load a whole structure or array!?!?
785 }
786
787 Value *Index = Idx[CurIdx++];
788 if (isa<PointerType>(CT) && CurIdx != 1)
789 return 0; // Can only index into pointer types at the first index!
790 if (!CT->indexValid(Index)) return 0;
791 Ptr = CT->getTypeAtIndex(Index);
792
793 // If the new type forwards to another type, then it is in the middle
794 // of being refined to another type (and hence, may have dropped all
795 // references to what it was using before). So, use the new forwarded
796 // type.
797 if (const Type * Ty = Ptr->getForwardedType()) {
798 Ptr = Ty;
799 }
800 }
801 return CurIdx == Idx.size() ? Ptr : 0;
802}
803
Misha Brukmanb1c93172005-04-21 23:48:37 +0000804const Type* GetElementPtrInst::getIndexedType(const Type *Ptr,
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000805 Value *Idx0, Value *Idx1,
806 bool AllowCompositeLeaf) {
807 const PointerType *PTy = dyn_cast<PointerType>(Ptr);
808 if (!PTy) return 0; // Type isn't a pointer type!
809
810 // Check the pointer index.
811 if (!PTy->indexValid(Idx0)) return 0;
812
813 const CompositeType *CT = dyn_cast<CompositeType>(PTy->getElementType());
814 if (!CT || !CT->indexValid(Idx1)) return 0;
815
816 const Type *ElTy = CT->getTypeAtIndex(Idx1);
817 if (AllowCompositeLeaf || ElTy->isFirstClassType())
818 return ElTy;
819 return 0;
820}
821
Chris Lattner82981202005-05-03 05:43:30 +0000822const Type* GetElementPtrInst::getIndexedType(const Type *Ptr, Value *Idx) {
823 const PointerType *PTy = dyn_cast<PointerType>(Ptr);
824 if (!PTy) return 0; // Type isn't a pointer type!
825
826 // Check the pointer index.
827 if (!PTy->indexValid(Idx)) return 0;
828
Chris Lattnerc2233332005-05-03 16:44:45 +0000829 return PTy->getElementType();
Chris Lattner82981202005-05-03 05:43:30 +0000830}
831
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +0000832//===----------------------------------------------------------------------===//
Robert Bocchino23004482006-01-10 19:05:34 +0000833// ExtractElementInst Implementation
834//===----------------------------------------------------------------------===//
835
836ExtractElementInst::ExtractElementInst(Value *Val, Value *Index,
Chris Lattnerbbe0a422006-04-08 01:18:18 +0000837 const std::string &Name,
838 Instruction *InsertBef)
Robert Bocchino23004482006-01-10 19:05:34 +0000839 : Instruction(cast<PackedType>(Val->getType())->getElementType(),
840 ExtractElement, Ops, 2, Name, InsertBef) {
Chris Lattner54865b32006-04-08 04:05:48 +0000841 assert(isValidOperands(Val, Index) &&
842 "Invalid extractelement instruction operands!");
Robert Bocchino23004482006-01-10 19:05:34 +0000843 Ops[0].init(Val, this);
844 Ops[1].init(Index, this);
845}
846
Chris Lattner65511ff2006-10-05 06:24:58 +0000847ExtractElementInst::ExtractElementInst(Value *Val, unsigned IndexV,
848 const std::string &Name,
849 Instruction *InsertBef)
850 : Instruction(cast<PackedType>(Val->getType())->getElementType(),
851 ExtractElement, Ops, 2, Name, InsertBef) {
Reid Spencere0fc4df2006-10-20 07:07:24 +0000852 Constant *Index = ConstantInt::get(Type::UIntTy, IndexV);
Chris Lattner65511ff2006-10-05 06:24:58 +0000853 assert(isValidOperands(Val, Index) &&
854 "Invalid extractelement instruction operands!");
855 Ops[0].init(Val, this);
856 Ops[1].init(Index, this);
857}
858
859
Robert Bocchino23004482006-01-10 19:05:34 +0000860ExtractElementInst::ExtractElementInst(Value *Val, Value *Index,
Chris Lattnerbbe0a422006-04-08 01:18:18 +0000861 const std::string &Name,
862 BasicBlock *InsertAE)
Robert Bocchino23004482006-01-10 19:05:34 +0000863 : Instruction(cast<PackedType>(Val->getType())->getElementType(),
864 ExtractElement, Ops, 2, Name, InsertAE) {
Chris Lattner54865b32006-04-08 04:05:48 +0000865 assert(isValidOperands(Val, Index) &&
866 "Invalid extractelement instruction operands!");
867
Robert Bocchino23004482006-01-10 19:05:34 +0000868 Ops[0].init(Val, this);
869 Ops[1].init(Index, this);
870}
871
Chris Lattner65511ff2006-10-05 06:24:58 +0000872ExtractElementInst::ExtractElementInst(Value *Val, unsigned IndexV,
873 const std::string &Name,
874 BasicBlock *InsertAE)
875 : Instruction(cast<PackedType>(Val->getType())->getElementType(),
876 ExtractElement, Ops, 2, Name, InsertAE) {
Reid Spencere0fc4df2006-10-20 07:07:24 +0000877 Constant *Index = ConstantInt::get(Type::UIntTy, IndexV);
Chris Lattner65511ff2006-10-05 06:24:58 +0000878 assert(isValidOperands(Val, Index) &&
879 "Invalid extractelement instruction operands!");
880
881 Ops[0].init(Val, this);
882 Ops[1].init(Index, this);
883}
884
885
Chris Lattner54865b32006-04-08 04:05:48 +0000886bool ExtractElementInst::isValidOperands(const Value *Val, const Value *Index) {
887 if (!isa<PackedType>(Val->getType()) || Index->getType() != Type::UIntTy)
888 return false;
889 return true;
890}
891
892
Robert Bocchino23004482006-01-10 19:05:34 +0000893//===----------------------------------------------------------------------===//
Robert Bocchinoca27f032006-01-17 20:07:22 +0000894// InsertElementInst Implementation
895//===----------------------------------------------------------------------===//
896
Chris Lattner0875d942006-04-14 22:20:32 +0000897InsertElementInst::InsertElementInst(const InsertElementInst &IE)
898 : Instruction(IE.getType(), InsertElement, Ops, 3) {
899 Ops[0].init(IE.Ops[0], this);
900 Ops[1].init(IE.Ops[1], this);
901 Ops[2].init(IE.Ops[2], this);
902}
Chris Lattner54865b32006-04-08 04:05:48 +0000903InsertElementInst::InsertElementInst(Value *Vec, Value *Elt, Value *Index,
Chris Lattnerbbe0a422006-04-08 01:18:18 +0000904 const std::string &Name,
905 Instruction *InsertBef)
Chris Lattner54865b32006-04-08 04:05:48 +0000906 : Instruction(Vec->getType(), InsertElement, Ops, 3, Name, InsertBef) {
907 assert(isValidOperands(Vec, Elt, Index) &&
908 "Invalid insertelement instruction operands!");
909 Ops[0].init(Vec, this);
Robert Bocchinoca27f032006-01-17 20:07:22 +0000910 Ops[1].init(Elt, this);
911 Ops[2].init(Index, this);
912}
913
Chris Lattner65511ff2006-10-05 06:24:58 +0000914InsertElementInst::InsertElementInst(Value *Vec, Value *Elt, unsigned IndexV,
915 const std::string &Name,
916 Instruction *InsertBef)
917 : Instruction(Vec->getType(), InsertElement, Ops, 3, Name, InsertBef) {
Reid Spencere0fc4df2006-10-20 07:07:24 +0000918 Constant *Index = ConstantInt::get(Type::UIntTy, IndexV);
Chris Lattner65511ff2006-10-05 06:24:58 +0000919 assert(isValidOperands(Vec, Elt, Index) &&
920 "Invalid insertelement instruction operands!");
921 Ops[0].init(Vec, this);
922 Ops[1].init(Elt, this);
923 Ops[2].init(Index, this);
924}
925
926
Chris Lattner54865b32006-04-08 04:05:48 +0000927InsertElementInst::InsertElementInst(Value *Vec, Value *Elt, Value *Index,
Chris Lattnerbbe0a422006-04-08 01:18:18 +0000928 const std::string &Name,
929 BasicBlock *InsertAE)
Chris Lattner54865b32006-04-08 04:05:48 +0000930 : Instruction(Vec->getType(), InsertElement, Ops, 3, Name, InsertAE) {
931 assert(isValidOperands(Vec, Elt, Index) &&
932 "Invalid insertelement instruction operands!");
933
934 Ops[0].init(Vec, this);
Robert Bocchinoca27f032006-01-17 20:07:22 +0000935 Ops[1].init(Elt, this);
936 Ops[2].init(Index, this);
937}
938
Chris Lattner65511ff2006-10-05 06:24:58 +0000939InsertElementInst::InsertElementInst(Value *Vec, Value *Elt, unsigned IndexV,
940 const std::string &Name,
941 BasicBlock *InsertAE)
942: Instruction(Vec->getType(), InsertElement, Ops, 3, Name, InsertAE) {
Reid Spencere0fc4df2006-10-20 07:07:24 +0000943 Constant *Index = ConstantInt::get(Type::UIntTy, IndexV);
Chris Lattner65511ff2006-10-05 06:24:58 +0000944 assert(isValidOperands(Vec, Elt, Index) &&
945 "Invalid insertelement instruction operands!");
946
947 Ops[0].init(Vec, this);
948 Ops[1].init(Elt, this);
949 Ops[2].init(Index, this);
950}
951
Chris Lattner54865b32006-04-08 04:05:48 +0000952bool InsertElementInst::isValidOperands(const Value *Vec, const Value *Elt,
953 const Value *Index) {
954 if (!isa<PackedType>(Vec->getType()))
955 return false; // First operand of insertelement must be packed type.
956
957 if (Elt->getType() != cast<PackedType>(Vec->getType())->getElementType())
958 return false;// Second operand of insertelement must be packed element type.
959
960 if (Index->getType() != Type::UIntTy)
961 return false; // Third operand of insertelement must be uint.
962 return true;
963}
964
965
Robert Bocchinoca27f032006-01-17 20:07:22 +0000966//===----------------------------------------------------------------------===//
Chris Lattnerbbe0a422006-04-08 01:18:18 +0000967// ShuffleVectorInst Implementation
968//===----------------------------------------------------------------------===//
969
Chris Lattner0875d942006-04-14 22:20:32 +0000970ShuffleVectorInst::ShuffleVectorInst(const ShuffleVectorInst &SV)
971 : Instruction(SV.getType(), ShuffleVector, Ops, 3) {
972 Ops[0].init(SV.Ops[0], this);
973 Ops[1].init(SV.Ops[1], this);
974 Ops[2].init(SV.Ops[2], this);
975}
976
Chris Lattnerbbe0a422006-04-08 01:18:18 +0000977ShuffleVectorInst::ShuffleVectorInst(Value *V1, Value *V2, Value *Mask,
978 const std::string &Name,
979 Instruction *InsertBefore)
980 : Instruction(V1->getType(), ShuffleVector, Ops, 3, Name, InsertBefore) {
981 assert(isValidOperands(V1, V2, Mask) &&
982 "Invalid shuffle vector instruction operands!");
983 Ops[0].init(V1, this);
984 Ops[1].init(V2, this);
985 Ops[2].init(Mask, this);
986}
987
988ShuffleVectorInst::ShuffleVectorInst(Value *V1, Value *V2, Value *Mask,
989 const std::string &Name,
990 BasicBlock *InsertAtEnd)
991 : Instruction(V1->getType(), ShuffleVector, Ops, 3, Name, InsertAtEnd) {
992 assert(isValidOperands(V1, V2, Mask) &&
993 "Invalid shuffle vector instruction operands!");
994
995 Ops[0].init(V1, this);
996 Ops[1].init(V2, this);
997 Ops[2].init(Mask, this);
998}
999
1000bool ShuffleVectorInst::isValidOperands(const Value *V1, const Value *V2,
1001 const Value *Mask) {
1002 if (!isa<PackedType>(V1->getType())) return false;
1003 if (V1->getType() != V2->getType()) return false;
1004 if (!isa<PackedType>(Mask->getType()) ||
1005 cast<PackedType>(Mask->getType())->getElementType() != Type::UIntTy ||
1006 cast<PackedType>(Mask->getType())->getNumElements() !=
1007 cast<PackedType>(V1->getType())->getNumElements())
1008 return false;
1009 return true;
1010}
1011
1012
1013//===----------------------------------------------------------------------===//
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001014// BinaryOperator Class
1015//===----------------------------------------------------------------------===//
1016
Chris Lattnerafdb3de2005-01-29 00:35:16 +00001017void BinaryOperator::init(BinaryOps iType)
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001018{
Chris Lattnerafdb3de2005-01-29 00:35:16 +00001019 Value *LHS = getOperand(0), *RHS = getOperand(1);
1020 assert(LHS->getType() == RHS->getType() &&
1021 "Binary operator operand types must match!");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001022#ifndef NDEBUG
1023 switch (iType) {
1024 case Add: case Sub:
Reid Spencer7e80b0b2006-10-26 06:15:43 +00001025 case Mul:
Chris Lattnerafdb3de2005-01-29 00:35:16 +00001026 assert(getType() == LHS->getType() &&
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001027 "Arithmetic operation should return same type as operands!");
Chris Lattnerdca56cb2005-12-21 18:22:19 +00001028 assert((getType()->isInteger() || getType()->isFloatingPoint() ||
1029 isa<PackedType>(getType())) &&
Brian Gaeke02209042004-08-20 06:00:58 +00001030 "Tried to create an arithmetic operation on a non-arithmetic type!");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001031 break;
Reid Spencer7e80b0b2006-10-26 06:15:43 +00001032 case UDiv:
1033 case SDiv:
1034 assert(getType() == LHS->getType() &&
1035 "Arithmetic operation should return same type as operands!");
1036 assert((getType()->isInteger() || (isa<PackedType>(getType()) &&
1037 cast<PackedType>(getType())->getElementType()->isInteger())) &&
1038 "Incorrect operand type (not integer) for S/UDIV");
1039 break;
1040 case FDiv:
1041 assert(getType() == LHS->getType() &&
1042 "Arithmetic operation should return same type as operands!");
1043 assert((getType()->isFloatingPoint() || (isa<PackedType>(getType()) &&
1044 cast<PackedType>(getType())->getElementType()->isFloatingPoint()))
1045 && "Incorrect operand type (not floating point) for FDIV");
1046 break;
Reid Spencer7eb55b32006-11-02 01:53:59 +00001047 case URem:
1048 case SRem:
1049 assert(getType() == LHS->getType() &&
1050 "Arithmetic operation should return same type as operands!");
1051 assert((getType()->isInteger() || (isa<PackedType>(getType()) &&
1052 cast<PackedType>(getType())->getElementType()->isInteger())) &&
1053 "Incorrect operand type (not integer) for S/UREM");
1054 break;
1055 case FRem:
1056 assert(getType() == LHS->getType() &&
1057 "Arithmetic operation should return same type as operands!");
1058 assert((getType()->isFloatingPoint() || (isa<PackedType>(getType()) &&
1059 cast<PackedType>(getType())->getElementType()->isFloatingPoint()))
1060 && "Incorrect operand type (not floating point) for FREM");
1061 break;
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001062 case And: case Or:
1063 case Xor:
Chris Lattnerafdb3de2005-01-29 00:35:16 +00001064 assert(getType() == LHS->getType() &&
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001065 "Logical operation should return same type as operands!");
Chris Lattnerdca56cb2005-12-21 18:22:19 +00001066 assert((getType()->isIntegral() ||
1067 (isa<PackedType>(getType()) &&
1068 cast<PackedType>(getType())->getElementType()->isIntegral())) &&
Misha Brukman3852f652005-01-27 06:46:38 +00001069 "Tried to create a logical operation on a non-integral type!");
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001070 break;
1071 case SetLT: case SetGT: case SetLE:
1072 case SetGE: case SetEQ: case SetNE:
1073 assert(getType() == Type::BoolTy && "Setcc must return bool!");
1074 default:
1075 break;
1076 }
1077#endif
1078}
1079
1080BinaryOperator *BinaryOperator::create(BinaryOps Op, Value *S1, Value *S2,
Misha Brukman96eb8782005-03-16 05:42:00 +00001081 const std::string &Name,
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001082 Instruction *InsertBefore) {
1083 assert(S1->getType() == S2->getType() &&
1084 "Cannot create binary operator with two operands of differing type!");
1085 switch (Op) {
1086 // Binary comparison operators...
1087 case SetLT: case SetGT: case SetLE:
1088 case SetGE: case SetEQ: case SetNE:
1089 return new SetCondInst(Op, S1, S2, Name, InsertBefore);
1090
1091 default:
1092 return new BinaryOperator(Op, S1, S2, S1->getType(), Name, InsertBefore);
1093 }
1094}
1095
1096BinaryOperator *BinaryOperator::create(BinaryOps Op, Value *S1, Value *S2,
Misha Brukman96eb8782005-03-16 05:42:00 +00001097 const std::string &Name,
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001098 BasicBlock *InsertAtEnd) {
1099 BinaryOperator *Res = create(Op, S1, S2, Name);
1100 InsertAtEnd->getInstList().push_back(Res);
1101 return Res;
1102}
1103
1104BinaryOperator *BinaryOperator::createNeg(Value *Op, const std::string &Name,
1105 Instruction *InsertBefore) {
1106 if (!Op->getType()->isFloatingPoint())
1107 return new BinaryOperator(Instruction::Sub,
1108 Constant::getNullValue(Op->getType()), Op,
1109 Op->getType(), Name, InsertBefore);
1110 else
1111 return new BinaryOperator(Instruction::Sub,
1112 ConstantFP::get(Op->getType(), -0.0), Op,
1113 Op->getType(), Name, InsertBefore);
1114}
1115
1116BinaryOperator *BinaryOperator::createNeg(Value *Op, const std::string &Name,
1117 BasicBlock *InsertAtEnd) {
1118 if (!Op->getType()->isFloatingPoint())
1119 return new BinaryOperator(Instruction::Sub,
1120 Constant::getNullValue(Op->getType()), Op,
1121 Op->getType(), Name, InsertAtEnd);
1122 else
1123 return new BinaryOperator(Instruction::Sub,
1124 ConstantFP::get(Op->getType(), -0.0), Op,
1125 Op->getType(), Name, InsertAtEnd);
1126}
1127
1128BinaryOperator *BinaryOperator::createNot(Value *Op, const std::string &Name,
1129 Instruction *InsertBefore) {
Chris Lattnere8e7ac42006-03-25 21:54:21 +00001130 Constant *C;
1131 if (const PackedType *PTy = dyn_cast<PackedType>(Op->getType())) {
1132 C = ConstantIntegral::getAllOnesValue(PTy->getElementType());
1133 C = ConstantPacked::get(std::vector<Constant*>(PTy->getNumElements(), C));
1134 } else {
1135 C = ConstantIntegral::getAllOnesValue(Op->getType());
1136 }
1137
1138 return new BinaryOperator(Instruction::Xor, Op, C,
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001139 Op->getType(), Name, InsertBefore);
1140}
1141
1142BinaryOperator *BinaryOperator::createNot(Value *Op, const std::string &Name,
1143 BasicBlock *InsertAtEnd) {
Chris Lattnerdca56cb2005-12-21 18:22:19 +00001144 Constant *AllOnes;
1145 if (const PackedType *PTy = dyn_cast<PackedType>(Op->getType())) {
1146 // Create a vector of all ones values.
1147 Constant *Elt = ConstantIntegral::getAllOnesValue(PTy->getElementType());
1148 AllOnes =
1149 ConstantPacked::get(std::vector<Constant*>(PTy->getNumElements(), Elt));
1150 } else {
1151 AllOnes = ConstantIntegral::getAllOnesValue(Op->getType());
1152 }
1153
1154 return new BinaryOperator(Instruction::Xor, Op, AllOnes,
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001155 Op->getType(), Name, InsertAtEnd);
1156}
1157
1158
1159// isConstantAllOnes - Helper function for several functions below
1160static inline bool isConstantAllOnes(const Value *V) {
1161 return isa<ConstantIntegral>(V) &&cast<ConstantIntegral>(V)->isAllOnesValue();
1162}
1163
1164bool BinaryOperator::isNeg(const Value *V) {
1165 if (const BinaryOperator *Bop = dyn_cast<BinaryOperator>(V))
1166 if (Bop->getOpcode() == Instruction::Sub)
1167 if (!V->getType()->isFloatingPoint())
1168 return Bop->getOperand(0) == Constant::getNullValue(Bop->getType());
1169 else
1170 return Bop->getOperand(0) == ConstantFP::get(Bop->getType(), -0.0);
1171 return false;
1172}
1173
1174bool BinaryOperator::isNot(const Value *V) {
1175 if (const BinaryOperator *Bop = dyn_cast<BinaryOperator>(V))
1176 return (Bop->getOpcode() == Instruction::Xor &&
1177 (isConstantAllOnes(Bop->getOperand(1)) ||
1178 isConstantAllOnes(Bop->getOperand(0))));
1179 return false;
1180}
1181
Chris Lattner2c7d1772005-04-24 07:28:37 +00001182Value *BinaryOperator::getNegArgument(Value *BinOp) {
1183 assert(isNeg(BinOp) && "getNegArgument from non-'neg' instruction!");
1184 return cast<BinaryOperator>(BinOp)->getOperand(1);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001185}
1186
Chris Lattner2c7d1772005-04-24 07:28:37 +00001187const Value *BinaryOperator::getNegArgument(const Value *BinOp) {
1188 return getNegArgument(const_cast<Value*>(BinOp));
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001189}
1190
Chris Lattner2c7d1772005-04-24 07:28:37 +00001191Value *BinaryOperator::getNotArgument(Value *BinOp) {
1192 assert(isNot(BinOp) && "getNotArgument on non-'not' instruction!");
1193 BinaryOperator *BO = cast<BinaryOperator>(BinOp);
1194 Value *Op0 = BO->getOperand(0);
1195 Value *Op1 = BO->getOperand(1);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001196 if (isConstantAllOnes(Op0)) return Op1;
1197
1198 assert(isConstantAllOnes(Op1));
1199 return Op0;
1200}
1201
Chris Lattner2c7d1772005-04-24 07:28:37 +00001202const Value *BinaryOperator::getNotArgument(const Value *BinOp) {
1203 return getNotArgument(const_cast<Value*>(BinOp));
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001204}
1205
1206
1207// swapOperands - Exchange the two operands to this instruction. This
1208// instruction is safe to use on any binary instruction and does not
1209// modify the semantics of the instruction. If the instruction is
1210// order dependent (SetLT f.e.) the opcode is changed.
1211//
1212bool BinaryOperator::swapOperands() {
1213 if (isCommutative())
1214 ; // If the instruction is commutative, it is safe to swap the operands
1215 else if (SetCondInst *SCI = dyn_cast<SetCondInst>(this))
1216 /// FIXME: SetCC instructions shouldn't all have different opcodes.
1217 setOpcode(SCI->getSwappedCondition());
1218 else
1219 return true; // Can't commute operands
1220
Chris Lattnerafdb3de2005-01-29 00:35:16 +00001221 std::swap(Ops[0], Ops[1]);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001222 return false;
1223}
1224
Chris Lattnerb0b8ddd2006-09-18 04:54:57 +00001225//===----------------------------------------------------------------------===//
1226// CastInst Class
1227//===----------------------------------------------------------------------===//
1228
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001229// Just determine if this cast only deals with integral->integral conversion.
1230bool CastInst::isIntegerCast() const {
1231 switch (getOpcode()) {
1232 default: return false;
1233 case Instruction::ZExt:
1234 case Instruction::SExt:
1235 case Instruction::Trunc:
1236 return true;
1237 case Instruction::BitCast:
1238 return getOperand(0)->getType()->isIntegral() && getType()->isIntegral();
1239 }
Chris Lattnerb0b8ddd2006-09-18 04:54:57 +00001240}
1241
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001242bool CastInst::isLosslessCast() const {
1243 // Only BitCast can be lossless, exit fast if we're not BitCast
1244 if (getOpcode() != Instruction::BitCast)
1245 return false;
1246
1247 // Identity cast is always lossless
1248 const Type* SrcTy = getOperand(0)->getType();
1249 const Type* DstTy = getType();
1250 if (SrcTy == DstTy)
1251 return true;
1252
1253 // The remaining possibilities are lossless if the typeID of the source type
1254 // matches the type ID of the destination in size and fundamental type. This
1255 // prevents things like int -> ptr, int -> float, packed -> int, mismatched
1256 // packed types of the same size, and etc.
1257 switch (SrcTy->getTypeID()) {
1258 case Type::UByteTyID: return DstTy == Type::SByteTy;
1259 case Type::SByteTyID: return DstTy == Type::UByteTy;
1260 case Type::UShortTyID: return DstTy == Type::ShortTy;
1261 case Type::ShortTyID: return DstTy == Type::UShortTy;
1262 case Type::UIntTyID: return DstTy == Type::IntTy;
1263 case Type::IntTyID: return DstTy == Type::UIntTy;
1264 case Type::ULongTyID: return DstTy == Type::LongTy;
1265 case Type::LongTyID: return DstTy == Type::ULongTy;
1266 case Type::PointerTyID: return isa<PointerType>(DstTy);
1267 default:
1268 break;
1269 }
1270 return false; // Other types have no identity values
1271}
1272
1273/// This function determines if the CastInst does not require any bits to be
1274/// changed in order to effect the cast. Essentially, it identifies cases where
1275/// no code gen is necessary for the cast, hence the name no-op cast. For
1276/// example, the following are all no-op casts:
1277/// # bitcast uint %X, int
1278/// # bitcast uint* %x, sbyte*
1279/// # bitcast packed< 2 x int > %x, packed< 4 x short>
1280/// # ptrtoint uint* %x, uint ; on 32-bit plaforms only
1281/// @brief Determine if a cast is a no-op.
1282bool CastInst::isNoopCast(const Type *IntPtrTy) const {
1283 switch (getOpcode()) {
1284 default:
1285 assert(!"Invalid CastOp");
1286 case Instruction::Trunc:
1287 case Instruction::ZExt:
1288 case Instruction::SExt:
1289 case Instruction::FPTrunc:
1290 case Instruction::FPExt:
1291 case Instruction::UIToFP:
1292 case Instruction::SIToFP:
1293 case Instruction::FPToUI:
1294 case Instruction::FPToSI:
1295 return false; // These always modify bits
1296 case Instruction::BitCast:
1297 return true; // BitCast never modifies bits.
1298 case Instruction::PtrToInt:
1299 return IntPtrTy->getPrimitiveSizeInBits() ==
1300 getType()->getPrimitiveSizeInBits();
1301 case Instruction::IntToPtr:
1302 return IntPtrTy->getPrimitiveSizeInBits() ==
1303 getOperand(0)->getType()->getPrimitiveSizeInBits();
1304 }
1305}
1306
1307/// This function determines if a pair of casts can be eliminated and what
1308/// opcode should be used in the elimination. This assumes that there are two
1309/// instructions like this:
1310/// * %F = firstOpcode SrcTy %x to MidTy
1311/// * %S = secondOpcode MidTy %F to DstTy
1312/// The function returns a resultOpcode so these two casts can be replaced with:
1313/// * %Replacement = resultOpcode %SrcTy %x to DstTy
1314/// If no such cast is permited, the function returns 0.
1315unsigned CastInst::isEliminableCastPair(
1316 Instruction::CastOps firstOp, Instruction::CastOps secondOp,
1317 const Type *SrcTy, const Type *MidTy, const Type *DstTy, const Type *IntPtrTy)
1318{
1319 // Define the 144 possibilities for these two cast instructions. The values
1320 // in this matrix determine what to do in a given situation and select the
1321 // case in the switch below. The rows correspond to firstOp, the columns
1322 // correspond to secondOp. In looking at the table below, keep in mind
1323 // the following cast properties:
1324 //
1325 // Size Compare Source Destination
1326 // Operator Src ? Size Type Sign Type Sign
1327 // -------- ------------ ------------------- ---------------------
1328 // TRUNC > Integer Any Integral Any
1329 // ZEXT < Integral Unsigned Integer Any
1330 // SEXT < Integral Signed Integer Any
1331 // FPTOUI n/a FloatPt n/a Integral Unsigned
1332 // FPTOSI n/a FloatPt n/a Integral Signed
1333 // UITOFP n/a Integral Unsigned FloatPt n/a
1334 // SITOFP n/a Integral Signed FloatPt n/a
1335 // FPTRUNC > FloatPt n/a FloatPt n/a
1336 // FPEXT < FloatPt n/a FloatPt n/a
1337 // PTRTOINT n/a Pointer n/a Integral Unsigned
1338 // INTTOPTR n/a Integral Unsigned Pointer n/a
1339 // BITCONVERT = FirstClass n/a FirstClass n/a
Chris Lattner6f6b4972006-12-05 23:43:59 +00001340 //
1341 // NOTE: some transforms are safe, but we consider them to be non-profitable.
1342 // For example, we could merge "fptoui double to uint" + "zext uint to ulong",
1343 // into "fptoui double to ulong", but this loses information about the range
1344 // of the produced value (we no longer know the top-part is all zeros).
1345 // Further this conversion is often much more expensive for typical hardware,
1346 // and causes issues when building libgcc. We disallow fptosi+sext for the
1347 // same reason.
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001348 const unsigned numCastOps =
1349 Instruction::CastOpsEnd - Instruction::CastOpsBegin;
1350 static const uint8_t CastResults[numCastOps][numCastOps] = {
1351 // T F F U S F F P I B -+
1352 // R Z S P P I I T P 2 N T |
1353 // U E E 2 2 2 2 R E I T C +- secondOp
1354 // N X X U S F F N X N 2 V |
1355 // C T T I I P P C T T P T -+
1356 { 1, 0, 0,99,99, 0, 0,99,99,99, 0, 3 }, // Trunc -+
1357 { 8, 1, 9,99,99, 2, 0,99,99,99, 2, 3 }, // ZExt |
1358 { 8, 0, 1,99,99, 0, 2,99,99,99, 0, 3 }, // SExt |
Chris Lattner6f6b4972006-12-05 23:43:59 +00001359 { 0, 0, 0,99,99, 0, 0,99,99,99, 0, 3 }, // FPToUI |
1360 { 0, 0, 0,99,99, 0, 0,99,99,99, 0, 3 }, // FPToSI |
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001361 { 99,99,99, 0, 0,99,99, 0, 0,99,99, 4 }, // UIToFP +- firstOp
1362 { 99,99,99, 0, 0,99,99, 0, 0,99,99, 4 }, // SIToFP |
1363 { 99,99,99, 0, 0,99,99, 1, 0,99,99, 4 }, // FPTrunc |
1364 { 99,99,99, 2, 2,99,99,10, 2,99,99, 4 }, // FPExt |
1365 { 1, 0, 0,99,99, 0, 0,99,99,99, 7, 3 }, // PtrToInt |
1366 { 99,99,99,99,99,99,99,99,99,13,99,12 }, // IntToPtr |
1367 { 5, 5, 5, 6, 6, 5, 5, 6, 6,11, 5, 1 }, // BitCast -+
1368 };
1369
1370 int ElimCase = CastResults[firstOp-Instruction::CastOpsBegin]
1371 [secondOp-Instruction::CastOpsBegin];
1372 switch (ElimCase) {
1373 case 0:
1374 // categorically disallowed
1375 return 0;
1376 case 1:
1377 // allowed, use first cast's opcode
1378 return firstOp;
1379 case 2:
1380 // allowed, use second cast's opcode
1381 return secondOp;
1382 case 3:
1383 // no-op cast in second op implies firstOp as long as the DestTy
1384 // is integer
1385 if (DstTy->isInteger())
1386 return firstOp;
1387 return 0;
1388 case 4:
1389 // no-op cast in second op implies firstOp as long as the DestTy
1390 // is floating point
1391 if (DstTy->isFloatingPoint())
1392 return firstOp;
1393 return 0;
1394 case 5:
1395 // no-op cast in first op implies secondOp as long as the SrcTy
1396 // is an integer
1397 if (SrcTy->isInteger())
1398 return secondOp;
1399 return 0;
1400 case 6:
1401 // no-op cast in first op implies secondOp as long as the SrcTy
1402 // is a floating point
1403 if (SrcTy->isFloatingPoint())
1404 return secondOp;
1405 return 0;
1406 case 7: {
1407 // ptrtoint, inttoptr -> bitcast (ptr -> ptr) if int size is >= ptr size
1408 unsigned PtrSize = IntPtrTy->getPrimitiveSizeInBits();
1409 unsigned MidSize = MidTy->getPrimitiveSizeInBits();
1410 if (MidSize >= PtrSize)
1411 return Instruction::BitCast;
1412 return 0;
1413 }
1414 case 8: {
1415 // ext, trunc -> bitcast, if the SrcTy and DstTy are same size
1416 // ext, trunc -> ext, if sizeof(SrcTy) < sizeof(DstTy)
1417 // ext, trunc -> trunc, if sizeof(SrcTy) > sizeof(DstTy)
1418 unsigned SrcSize = SrcTy->getPrimitiveSizeInBits();
1419 unsigned DstSize = DstTy->getPrimitiveSizeInBits();
1420 if (SrcSize == DstSize)
1421 return Instruction::BitCast;
1422 else if (SrcSize < DstSize)
1423 return firstOp;
1424 return secondOp;
1425 }
1426 case 9: // zext, sext -> zext, because sext can't sign extend after zext
1427 return Instruction::ZExt;
1428 case 10:
1429 // fpext followed by ftrunc is allowed if the bit size returned to is
1430 // the same as the original, in which case its just a bitcast
1431 if (SrcTy == DstTy)
1432 return Instruction::BitCast;
1433 return 0; // If the types are not the same we can't eliminate it.
1434 case 11:
1435 // bitcast followed by ptrtoint is allowed as long as the bitcast
1436 // is a pointer to pointer cast.
1437 if (isa<PointerType>(SrcTy) && isa<PointerType>(MidTy))
1438 return secondOp;
1439 return 0;
1440 case 12:
1441 // inttoptr, bitcast -> intptr if bitcast is a ptr to ptr cast
1442 if (isa<PointerType>(MidTy) && isa<PointerType>(DstTy))
1443 return firstOp;
1444 return 0;
1445 case 13: {
1446 // inttoptr, ptrtoint -> bitcast if SrcSize<=PtrSize and SrcSize==DstSize
1447 unsigned PtrSize = IntPtrTy->getPrimitiveSizeInBits();
1448 unsigned SrcSize = SrcTy->getPrimitiveSizeInBits();
1449 unsigned DstSize = DstTy->getPrimitiveSizeInBits();
1450 if (SrcSize <= PtrSize && SrcSize == DstSize)
1451 return Instruction::BitCast;
1452 return 0;
1453 }
1454 case 99:
1455 // cast combination can't happen (error in input). This is for all cases
1456 // where the MidTy is not the same for the two cast instructions.
1457 assert(!"Invalid Cast Combination");
1458 return 0;
1459 default:
1460 assert(!"Error in CastResults table!!!");
1461 return 0;
1462 }
1463 return 0;
1464}
1465
1466CastInst *CastInst::create(Instruction::CastOps op, Value *S, const Type *Ty,
1467 const std::string &Name, Instruction *InsertBefore) {
1468 // Construct and return the appropriate CastInst subclass
1469 switch (op) {
1470 case Trunc: return new TruncInst (S, Ty, Name, InsertBefore);
1471 case ZExt: return new ZExtInst (S, Ty, Name, InsertBefore);
1472 case SExt: return new SExtInst (S, Ty, Name, InsertBefore);
1473 case FPTrunc: return new FPTruncInst (S, Ty, Name, InsertBefore);
1474 case FPExt: return new FPExtInst (S, Ty, Name, InsertBefore);
1475 case UIToFP: return new UIToFPInst (S, Ty, Name, InsertBefore);
1476 case SIToFP: return new SIToFPInst (S, Ty, Name, InsertBefore);
1477 case FPToUI: return new FPToUIInst (S, Ty, Name, InsertBefore);
1478 case FPToSI: return new FPToSIInst (S, Ty, Name, InsertBefore);
1479 case PtrToInt: return new PtrToIntInst (S, Ty, Name, InsertBefore);
1480 case IntToPtr: return new IntToPtrInst (S, Ty, Name, InsertBefore);
1481 case BitCast: return new BitCastInst (S, Ty, Name, InsertBefore);
1482 default:
1483 assert(!"Invalid opcode provided");
1484 }
1485 return 0;
1486}
1487
1488CastInst *CastInst::create(Instruction::CastOps op, Value *S, const Type *Ty,
1489 const std::string &Name, BasicBlock *InsertAtEnd) {
1490 // Construct and return the appropriate CastInst subclass
1491 switch (op) {
1492 case Trunc: return new TruncInst (S, Ty, Name, InsertAtEnd);
1493 case ZExt: return new ZExtInst (S, Ty, Name, InsertAtEnd);
1494 case SExt: return new SExtInst (S, Ty, Name, InsertAtEnd);
1495 case FPTrunc: return new FPTruncInst (S, Ty, Name, InsertAtEnd);
1496 case FPExt: return new FPExtInst (S, Ty, Name, InsertAtEnd);
1497 case UIToFP: return new UIToFPInst (S, Ty, Name, InsertAtEnd);
1498 case SIToFP: return new SIToFPInst (S, Ty, Name, InsertAtEnd);
1499 case FPToUI: return new FPToUIInst (S, Ty, Name, InsertAtEnd);
1500 case FPToSI: return new FPToSIInst (S, Ty, Name, InsertAtEnd);
1501 case PtrToInt: return new PtrToIntInst (S, Ty, Name, InsertAtEnd);
1502 case IntToPtr: return new IntToPtrInst (S, Ty, Name, InsertAtEnd);
1503 case BitCast: return new BitCastInst (S, Ty, Name, InsertAtEnd);
1504 default:
1505 assert(!"Invalid opcode provided");
1506 }
1507 return 0;
1508}
1509
Reid Spencer5c140882006-12-04 20:17:56 +00001510CastInst *CastInst::createZExtOrBitCast(Value *S, const Type *Ty,
1511 const std::string &Name,
1512 Instruction *InsertBefore) {
1513 if (S->getType()->getPrimitiveSizeInBits() == Ty->getPrimitiveSizeInBits())
1514 return create(Instruction::BitCast, S, Ty, Name, InsertBefore);
1515 return create(Instruction::ZExt, S, Ty, Name, InsertBefore);
1516}
1517
1518CastInst *CastInst::createZExtOrBitCast(Value *S, const Type *Ty,
1519 const std::string &Name,
1520 BasicBlock *InsertAtEnd) {
1521 if (S->getType()->getPrimitiveSizeInBits() == Ty->getPrimitiveSizeInBits())
1522 return create(Instruction::BitCast, S, Ty, Name, InsertAtEnd);
1523 return create(Instruction::ZExt, S, Ty, Name, InsertAtEnd);
1524}
1525
1526CastInst *CastInst::createSExtOrBitCast(Value *S, const Type *Ty,
1527 const std::string &Name,
1528 Instruction *InsertBefore) {
1529 if (S->getType()->getPrimitiveSizeInBits() == Ty->getPrimitiveSizeInBits())
1530 return create(Instruction::BitCast, S, Ty, Name, InsertBefore);
1531 return create(Instruction::SExt, S, Ty, Name, InsertBefore);
1532}
1533
1534CastInst *CastInst::createSExtOrBitCast(Value *S, const Type *Ty,
1535 const std::string &Name,
1536 BasicBlock *InsertAtEnd) {
1537 if (S->getType()->getPrimitiveSizeInBits() == Ty->getPrimitiveSizeInBits())
1538 return create(Instruction::BitCast, S, Ty, Name, InsertAtEnd);
1539 return create(Instruction::SExt, S, Ty, Name, InsertAtEnd);
1540}
1541
1542CastInst *CastInst::createTruncOrBitCast(Value *S, const Type *Ty,
1543 const std::string &Name,
1544 Instruction *InsertBefore) {
1545 if (S->getType()->getPrimitiveSizeInBits() == Ty->getPrimitiveSizeInBits())
1546 return create(Instruction::BitCast, S, Ty, Name, InsertBefore);
1547 return create(Instruction::Trunc, S, Ty, Name, InsertBefore);
1548}
1549
1550CastInst *CastInst::createTruncOrBitCast(Value *S, const Type *Ty,
1551 const std::string &Name,
1552 BasicBlock *InsertAtEnd) {
1553 if (S->getType()->getPrimitiveSizeInBits() == Ty->getPrimitiveSizeInBits())
1554 return create(Instruction::BitCast, S, Ty, Name, InsertAtEnd);
1555 return create(Instruction::Trunc, S, Ty, Name, InsertAtEnd);
1556}
1557
Reid Spencerd5a3f0d2006-12-05 03:28:26 +00001558CastInst *CastInst::createPointerCast(Value *S, const Type *Ty,
1559 const std::string &Name,
1560 BasicBlock *InsertAtEnd) {
1561 assert(isa<PointerType>(S->getType()) && "Invalid cast");
1562 assert((Ty->isIntegral() || Ty->getTypeID() == Type::PointerTyID) &&
1563 "Invalid cast");
1564
1565 if (Ty->isIntegral())
1566 return create(Instruction::PtrToInt, S, Ty, Name, InsertAtEnd);
1567 return create(Instruction::BitCast, S, Ty, Name, InsertAtEnd);
1568}
1569
1570/// @brief Create a BitCast or a PtrToInt cast instruction
1571CastInst *CastInst::createPointerCast(Value *S, const Type *Ty,
1572 const std::string &Name,
1573 Instruction *InsertBefore) {
1574 assert(isa<PointerType>(S->getType()) && "Invalid cast");
1575 assert((Ty->isIntegral() || Ty->getTypeID() == Type::PointerTyID) &&
1576 "Invalid cast");
1577
1578 if (Ty->isIntegral())
1579 return create(Instruction::PtrToInt, S, Ty, Name, InsertBefore);
1580 return create(Instruction::BitCast, S, Ty, Name, InsertBefore);
1581}
1582
Reid Spencer7e933472006-12-12 00:49:44 +00001583CastInst *CastInst::createIntegerCast(Value *C, const Type *Ty,
1584 bool isSigned, const std::string &Name,
1585 Instruction *InsertBefore) {
1586 assert(C->getType()->isIntegral() && Ty->isIntegral() && "Invalid cast");
1587 unsigned SrcBits = C->getType()->getPrimitiveSizeInBits();
1588 unsigned DstBits = Ty->getPrimitiveSizeInBits();
1589 Instruction::CastOps opcode =
1590 (SrcBits == DstBits ? Instruction::BitCast :
1591 (SrcBits > DstBits ? Instruction::Trunc :
1592 (isSigned ? Instruction::SExt : Instruction::ZExt)));
1593 return create(opcode, C, Ty, Name, InsertBefore);
1594}
1595
1596CastInst *CastInst::createIntegerCast(Value *C, const Type *Ty,
1597 bool isSigned, const std::string &Name,
1598 BasicBlock *InsertAtEnd) {
1599 assert(C->getType()->isIntegral() && Ty->isIntegral() && "Invalid cast");
1600 unsigned SrcBits = C->getType()->getPrimitiveSizeInBits();
1601 unsigned DstBits = Ty->getPrimitiveSizeInBits();
1602 Instruction::CastOps opcode =
1603 (SrcBits == DstBits ? Instruction::BitCast :
1604 (SrcBits > DstBits ? Instruction::Trunc :
1605 (isSigned ? Instruction::SExt : Instruction::ZExt)));
1606 return create(opcode, C, Ty, Name, InsertAtEnd);
1607}
1608
1609CastInst *CastInst::createFPCast(Value *C, const Type *Ty,
1610 const std::string &Name,
1611 Instruction *InsertBefore) {
1612 assert(C->getType()->isFloatingPoint() && Ty->isFloatingPoint() &&
1613 "Invalid cast");
1614 unsigned SrcBits = C->getType()->getPrimitiveSizeInBits();
1615 unsigned DstBits = Ty->getPrimitiveSizeInBits();
1616 Instruction::CastOps opcode =
1617 (SrcBits == DstBits ? Instruction::BitCast :
1618 (SrcBits > DstBits ? Instruction::FPTrunc : Instruction::FPExt));
1619 return create(opcode, C, Ty, Name, InsertBefore);
1620}
1621
1622CastInst *CastInst::createFPCast(Value *C, const Type *Ty,
1623 const std::string &Name,
1624 BasicBlock *InsertAtEnd) {
1625 assert(C->getType()->isFloatingPoint() && Ty->isFloatingPoint() &&
1626 "Invalid cast");
1627 unsigned SrcBits = C->getType()->getPrimitiveSizeInBits();
1628 unsigned DstBits = Ty->getPrimitiveSizeInBits();
1629 Instruction::CastOps opcode =
1630 (SrcBits == DstBits ? Instruction::BitCast :
1631 (SrcBits > DstBits ? Instruction::FPTrunc : Instruction::FPExt));
1632 return create(opcode, C, Ty, Name, InsertAtEnd);
1633}
1634
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001635// Provide a way to get a "cast" where the cast opcode is inferred from the
1636// types and size of the operand. This, basically, is a parallel of the
1637// logic in the checkCast function below. This axiom should hold:
1638// checkCast( getCastOpcode(Val, Ty), Val, Ty)
1639// should not assert in checkCast. In other words, this produces a "correct"
1640// casting opcode for the arguments passed to it.
1641Instruction::CastOps
Reid Spencerc4dacf22006-12-04 02:43:42 +00001642CastInst::getCastOpcode(
1643 const Value *Src, bool SrcIsSigned, const Type *DestTy, bool DestIsSigned) {
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001644 // Get the bit sizes, we'll need these
1645 const Type *SrcTy = Src->getType();
1646 unsigned SrcBits = SrcTy->getPrimitiveSizeInBits(); // 0 for ptr/packed
1647 unsigned DestBits = DestTy->getPrimitiveSizeInBits(); // 0 for ptr/packed
1648
1649 // Run through the possibilities ...
1650 if (DestTy->isIntegral()) { // Casting to integral
1651 if (SrcTy->isIntegral()) { // Casting from integral
1652 if (DestBits < SrcBits)
1653 return Trunc; // int -> smaller int
1654 else if (DestBits > SrcBits) { // its an extension
Reid Spencerc4dacf22006-12-04 02:43:42 +00001655 if (SrcIsSigned)
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001656 return SExt; // signed -> SEXT
1657 else
1658 return ZExt; // unsigned -> ZEXT
1659 } else {
1660 return BitCast; // Same size, No-op cast
1661 }
1662 } else if (SrcTy->isFloatingPoint()) { // Casting from floating pt
Reid Spencerc4dacf22006-12-04 02:43:42 +00001663 if (DestIsSigned)
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001664 return FPToSI; // FP -> sint
1665 else
1666 return FPToUI; // FP -> uint
1667 } else if (const PackedType *PTy = dyn_cast<PackedType>(SrcTy)) {
1668 assert(DestBits == PTy->getBitWidth() &&
1669 "Casting packed to integer of different width");
1670 return BitCast; // Same size, no-op cast
1671 } else {
1672 assert(isa<PointerType>(SrcTy) &&
1673 "Casting from a value that is not first-class type");
1674 return PtrToInt; // ptr -> int
1675 }
1676 } else if (DestTy->isFloatingPoint()) { // Casting to floating pt
1677 if (SrcTy->isIntegral()) { // Casting from integral
Reid Spencerc4dacf22006-12-04 02:43:42 +00001678 if (SrcIsSigned)
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001679 return SIToFP; // sint -> FP
1680 else
1681 return UIToFP; // uint -> FP
1682 } else if (SrcTy->isFloatingPoint()) { // Casting from floating pt
1683 if (DestBits < SrcBits) {
1684 return FPTrunc; // FP -> smaller FP
1685 } else if (DestBits > SrcBits) {
1686 return FPExt; // FP -> larger FP
1687 } else {
1688 return BitCast; // same size, no-op cast
1689 }
1690 } else if (const PackedType *PTy = dyn_cast<PackedType>(SrcTy)) {
1691 assert(DestBits == PTy->getBitWidth() &&
1692 "Casting packed to floating point of different width");
1693 return BitCast; // same size, no-op cast
1694 } else {
1695 assert(0 && "Casting pointer or non-first class to float");
1696 }
1697 } else if (const PackedType *DestPTy = dyn_cast<PackedType>(DestTy)) {
1698 if (const PackedType *SrcPTy = dyn_cast<PackedType>(SrcTy)) {
1699 assert(DestPTy->getBitWidth() == SrcPTy->getBitWidth() &&
1700 "Casting packed to packed of different widths");
1701 return BitCast; // packed -> packed
1702 } else if (DestPTy->getBitWidth() == SrcBits) {
1703 return BitCast; // float/int -> packed
1704 } else {
1705 assert(!"Illegal cast to packed (wrong type or size)");
1706 }
1707 } else if (isa<PointerType>(DestTy)) {
1708 if (isa<PointerType>(SrcTy)) {
1709 return BitCast; // ptr -> ptr
1710 } else if (SrcTy->isIntegral()) {
1711 return IntToPtr; // int -> ptr
1712 } else {
1713 assert(!"Casting pointer to other than pointer or int");
1714 }
1715 } else {
1716 assert(!"Casting to type that is not first-class");
1717 }
1718
1719 // If we fall through to here we probably hit an assertion cast above
1720 // and assertions are not turned on. Anything we return is an error, so
1721 // BitCast is as good a choice as any.
1722 return BitCast;
1723}
1724
1725//===----------------------------------------------------------------------===//
1726// CastInst SubClass Constructors
1727//===----------------------------------------------------------------------===//
1728
1729/// Check that the construction parameters for a CastInst are correct. This
1730/// could be broken out into the separate constructors but it is useful to have
1731/// it in one place and to eliminate the redundant code for getting the sizes
1732/// of the types involved.
1733static bool
1734checkCast(Instruction::CastOps op, Value *S, const Type *DstTy) {
1735
1736 // Check for type sanity on the arguments
1737 const Type *SrcTy = S->getType();
1738 if (!SrcTy->isFirstClassType() || !DstTy->isFirstClassType())
1739 return false;
1740
1741 // Get the size of the types in bits, we'll need this later
1742 unsigned SrcBitSize = SrcTy->getPrimitiveSizeInBits();
1743 unsigned DstBitSize = DstTy->getPrimitiveSizeInBits();
1744
1745 // Switch on the opcode provided
1746 switch (op) {
1747 default: return false; // This is an input error
1748 case Instruction::Trunc:
1749 return SrcTy->isInteger() && DstTy->isIntegral() && SrcBitSize > DstBitSize;
1750 case Instruction::ZExt:
1751 return SrcTy->isIntegral() && DstTy->isInteger() && SrcBitSize < DstBitSize;
1752 case Instruction::SExt:
1753 return SrcTy->isIntegral() && DstTy->isInteger() && SrcBitSize < DstBitSize;
1754 case Instruction::FPTrunc:
1755 return SrcTy->isFloatingPoint() && DstTy->isFloatingPoint() &&
1756 SrcBitSize > DstBitSize;
1757 case Instruction::FPExt:
1758 return SrcTy->isFloatingPoint() && DstTy->isFloatingPoint() &&
1759 SrcBitSize < DstBitSize;
1760 case Instruction::UIToFP:
1761 return SrcTy->isIntegral() && DstTy->isFloatingPoint();
1762 case Instruction::SIToFP:
1763 return SrcTy->isIntegral() && DstTy->isFloatingPoint();
1764 case Instruction::FPToUI:
1765 return SrcTy->isFloatingPoint() && DstTy->isIntegral();
1766 case Instruction::FPToSI:
1767 return SrcTy->isFloatingPoint() && DstTy->isIntegral();
1768 case Instruction::PtrToInt:
1769 return isa<PointerType>(SrcTy) && DstTy->isIntegral();
1770 case Instruction::IntToPtr:
1771 return SrcTy->isIntegral() && isa<PointerType>(DstTy);
1772 case Instruction::BitCast:
1773 // BitCast implies a no-op cast of type only. No bits change.
1774 // However, you can't cast pointers to anything but pointers.
1775 if (isa<PointerType>(SrcTy) != isa<PointerType>(DstTy))
1776 return false;
1777
1778 // Now we know we're not dealing with a pointer/non-poiner mismatch. In all
1779 // these cases, the cast is okay if the source and destination bit widths
1780 // are identical.
1781 return SrcBitSize == DstBitSize;
1782 }
1783}
1784
Reid Spencerc4dacf22006-12-04 02:43:42 +00001785CastInst *CastInst::createInferredCast(
1786 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore)
1787{
1788 return createInferredCast(S, S->getType()->isSigned(), Ty, Ty->isSigned(),
1789 Name, InsertBefore);
1790}
1791
1792CastInst *CastInst::createInferredCast(
1793 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd)
1794{
1795 return createInferredCast(S, S->getType()->isSigned(), Ty, Ty->isSigned(),
1796 Name, InsertAtEnd);
1797}
1798
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001799TruncInst::TruncInst(
1800 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1801) : CastInst(Ty, Trunc, S, Name, InsertBefore) {
1802 assert(checkCast(getOpcode(), S, Ty) && "Illegal Trunc");
1803}
1804
1805TruncInst::TruncInst(
1806 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1807) : CastInst(Ty, Trunc, S, Name, InsertAtEnd) {
1808 assert(checkCast(getOpcode(), S, Ty) && "Illegal Trunc");
1809}
1810
1811ZExtInst::ZExtInst(
1812 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1813) : CastInst(Ty, ZExt, S, Name, InsertBefore) {
1814 assert(checkCast(getOpcode(), S, Ty) && "Illegal ZExt");
1815}
1816
1817ZExtInst::ZExtInst(
1818 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1819) : CastInst(Ty, ZExt, S, Name, InsertAtEnd) {
1820 assert(checkCast(getOpcode(), S, Ty) && "Illegal ZExt");
1821}
1822SExtInst::SExtInst(
1823 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1824) : CastInst(Ty, SExt, S, Name, InsertBefore) {
1825 assert(checkCast(getOpcode(), S, Ty) && "Illegal SExt");
1826}
1827
Jeff Cohencc08c832006-12-02 02:22:01 +00001828SExtInst::SExtInst(
Reid Spencer6c38f0b2006-11-27 01:05:10 +00001829 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1830) : CastInst(Ty, SExt, S, Name, InsertAtEnd) {
1831 assert(checkCast(getOpcode(), S, Ty) && "Illegal SExt");
1832}
1833
1834FPTruncInst::FPTruncInst(
1835 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1836) : CastInst(Ty, FPTrunc, S, Name, InsertBefore) {
1837 assert(checkCast(getOpcode(), S, Ty) && "Illegal FPTrunc");
1838}
1839
1840FPTruncInst::FPTruncInst(
1841 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1842) : CastInst(Ty, FPTrunc, S, Name, InsertAtEnd) {
1843 assert(checkCast(getOpcode(), S, Ty) && "Illegal FPTrunc");
1844}
1845
1846FPExtInst::FPExtInst(
1847 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1848) : CastInst(Ty, FPExt, S, Name, InsertBefore) {
1849 assert(checkCast(getOpcode(), S, Ty) && "Illegal FPExt");
1850}
1851
1852FPExtInst::FPExtInst(
1853 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1854) : CastInst(Ty, FPExt, S, Name, InsertAtEnd) {
1855 assert(checkCast(getOpcode(), S, Ty) && "Illegal FPExt");
1856}
1857
1858UIToFPInst::UIToFPInst(
1859 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1860) : CastInst(Ty, UIToFP, S, Name, InsertBefore) {
1861 assert(checkCast(getOpcode(), S, Ty) && "Illegal UIToFP");
1862}
1863
1864UIToFPInst::UIToFPInst(
1865 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1866) : CastInst(Ty, UIToFP, S, Name, InsertAtEnd) {
1867 assert(checkCast(getOpcode(), S, Ty) && "Illegal UIToFP");
1868}
1869
1870SIToFPInst::SIToFPInst(
1871 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1872) : CastInst(Ty, SIToFP, S, Name, InsertBefore) {
1873 assert(checkCast(getOpcode(), S, Ty) && "Illegal SIToFP");
1874}
1875
1876SIToFPInst::SIToFPInst(
1877 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1878) : CastInst(Ty, SIToFP, S, Name, InsertAtEnd) {
1879 assert(checkCast(getOpcode(), S, Ty) && "Illegal SIToFP");
1880}
1881
1882FPToUIInst::FPToUIInst(
1883 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1884) : CastInst(Ty, FPToUI, S, Name, InsertBefore) {
1885 assert(checkCast(getOpcode(), S, Ty) && "Illegal FPToUI");
1886}
1887
1888FPToUIInst::FPToUIInst(
1889 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1890) : CastInst(Ty, FPToUI, S, Name, InsertAtEnd) {
1891 assert(checkCast(getOpcode(), S, Ty) && "Illegal FPToUI");
1892}
1893
1894FPToSIInst::FPToSIInst(
1895 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1896) : CastInst(Ty, FPToSI, S, Name, InsertBefore) {
1897 assert(checkCast(getOpcode(), S, Ty) && "Illegal FPToSI");
1898}
1899
1900FPToSIInst::FPToSIInst(
1901 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1902) : CastInst(Ty, FPToSI, S, Name, InsertAtEnd) {
1903 assert(checkCast(getOpcode(), S, Ty) && "Illegal FPToSI");
1904}
1905
1906PtrToIntInst::PtrToIntInst(
1907 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1908) : CastInst(Ty, PtrToInt, S, Name, InsertBefore) {
1909 assert(checkCast(getOpcode(), S, Ty) && "Illegal PtrToInt");
1910}
1911
1912PtrToIntInst::PtrToIntInst(
1913 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1914) : CastInst(Ty, PtrToInt, S, Name, InsertAtEnd) {
1915 assert(checkCast(getOpcode(), S, Ty) && "Illegal PtrToInt");
1916}
1917
1918IntToPtrInst::IntToPtrInst(
1919 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1920) : CastInst(Ty, IntToPtr, S, Name, InsertBefore) {
1921 assert(checkCast(getOpcode(), S, Ty) && "Illegal IntToPtr");
1922}
1923
1924IntToPtrInst::IntToPtrInst(
1925 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1926) : CastInst(Ty, IntToPtr, S, Name, InsertAtEnd) {
1927 assert(checkCast(getOpcode(), S, Ty) && "Illegal IntToPtr");
1928}
1929
1930BitCastInst::BitCastInst(
1931 Value *S, const Type *Ty, const std::string &Name, Instruction *InsertBefore
1932) : CastInst(Ty, BitCast, S, Name, InsertBefore) {
1933 assert(checkCast(getOpcode(), S, Ty) && "Illegal BitCast");
1934}
1935
1936BitCastInst::BitCastInst(
1937 Value *S, const Type *Ty, const std::string &Name, BasicBlock *InsertAtEnd
1938) : CastInst(Ty, BitCast, S, Name, InsertAtEnd) {
1939 assert(checkCast(getOpcode(), S, Ty) && "Illegal BitCast");
1940}
Chris Lattnerf16dc002006-09-17 19:29:56 +00001941
1942//===----------------------------------------------------------------------===//
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001943// SetCondInst Class
1944//===----------------------------------------------------------------------===//
1945
Misha Brukmanb1c93172005-04-21 23:48:37 +00001946SetCondInst::SetCondInst(BinaryOps Opcode, Value *S1, Value *S2,
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001947 const std::string &Name, Instruction *InsertBefore)
1948 : BinaryOperator(Opcode, S1, S2, Type::BoolTy, Name, InsertBefore) {
1949
1950 // Make sure it's a valid type... getInverseCondition will assert out if not.
1951 assert(getInverseCondition(Opcode));
1952}
1953
Misha Brukmanb1c93172005-04-21 23:48:37 +00001954SetCondInst::SetCondInst(BinaryOps Opcode, Value *S1, Value *S2,
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00001955 const std::string &Name, BasicBlock *InsertAtEnd)
1956 : BinaryOperator(Opcode, S1, S2, Type::BoolTy, Name, InsertAtEnd) {
1957
1958 // Make sure it's a valid type... getInverseCondition will assert out if not.
1959 assert(getInverseCondition(Opcode));
1960}
1961
1962// getInverseCondition - Return the inverse of the current condition opcode.
1963// For example seteq -> setne, setgt -> setle, setlt -> setge, etc...
1964//
1965Instruction::BinaryOps SetCondInst::getInverseCondition(BinaryOps Opcode) {
1966 switch (Opcode) {
1967 default:
1968 assert(0 && "Unknown setcc opcode!");
1969 case SetEQ: return SetNE;
1970 case SetNE: return SetEQ;
1971 case SetGT: return SetLE;
1972 case SetLT: return SetGE;
1973 case SetGE: return SetLT;
1974 case SetLE: return SetGT;
1975 }
1976}
1977
1978// getSwappedCondition - Return the condition opcode that would be the result
1979// of exchanging the two operands of the setcc instruction without changing
1980// the result produced. Thus, seteq->seteq, setle->setge, setlt->setgt, etc.
1981//
1982Instruction::BinaryOps SetCondInst::getSwappedCondition(BinaryOps Opcode) {
1983 switch (Opcode) {
1984 default: assert(0 && "Unknown setcc instruction!");
1985 case SetEQ: case SetNE: return Opcode;
1986 case SetGT: return SetLT;
1987 case SetLT: return SetGT;
1988 case SetGE: return SetLE;
1989 case SetLE: return SetGE;
1990 }
1991}
1992
Reid Spencerd9436b62006-11-20 01:22:35 +00001993
1994//===----------------------------------------------------------------------===//
1995// CmpInst Classes
1996//===----------------------------------------------------------------------===//
1997
1998CmpInst::CmpInst(OtherOps op, unsigned short predicate, Value *LHS, Value *RHS,
1999 const std::string &Name, Instruction *InsertBefore)
2000 : Instruction(Type::BoolTy, op, Ops, 2, Name, InsertBefore) {
2001 Ops[0].init(LHS, this);
2002 Ops[1].init(RHS, this);
2003 SubclassData = predicate;
2004 if (op == Instruction::ICmp) {
2005 assert(predicate >= ICmpInst::FIRST_ICMP_PREDICATE &&
2006 predicate <= ICmpInst::LAST_ICMP_PREDICATE &&
2007 "Invalid ICmp predicate value");
2008 const Type* Op0Ty = getOperand(0)->getType();
2009 const Type* Op1Ty = getOperand(1)->getType();
2010 assert(Op0Ty == Op1Ty &&
2011 "Both operands to ICmp instruction are not of the same type!");
2012 // Check that the operands are the right type
2013 assert(Op0Ty->isIntegral() || Op0Ty->getTypeID() == Type::PointerTyID ||
2014 (isa<PackedType>(Op0Ty) &&
2015 cast<PackedType>(Op0Ty)->getElementType()->isIntegral()) &&
2016 "Invalid operand types for ICmp instruction");
2017 return;
2018 }
2019 assert(op == Instruction::FCmp && "Invalid CmpInst opcode");
2020 assert(predicate <= FCmpInst::LAST_FCMP_PREDICATE &&
2021 "Invalid FCmp predicate value");
2022 const Type* Op0Ty = getOperand(0)->getType();
2023 const Type* Op1Ty = getOperand(1)->getType();
2024 assert(Op0Ty == Op1Ty &&
2025 "Both operands to FCmp instruction are not of the same type!");
2026 // Check that the operands are the right type
2027 assert(Op0Ty->isFloatingPoint() || (isa<PackedType>(Op0Ty) &&
2028 cast<PackedType>(Op0Ty)->getElementType()->isFloatingPoint()) &&
2029 "Invalid operand types for FCmp instruction");
2030}
2031
2032CmpInst::CmpInst(OtherOps op, unsigned short predicate, Value *LHS, Value *RHS,
2033 const std::string &Name, BasicBlock *InsertAtEnd)
2034 : Instruction(Type::BoolTy, op, Ops, 2, Name, InsertAtEnd) {
2035 Ops[0].init(LHS, this);
2036 Ops[1].init(RHS, this);
2037 SubclassData = predicate;
2038 if (op == Instruction::ICmp) {
2039 assert(predicate >= ICmpInst::FIRST_ICMP_PREDICATE &&
2040 predicate <= ICmpInst::LAST_ICMP_PREDICATE &&
2041 "Invalid ICmp predicate value");
2042
2043 const Type* Op0Ty = getOperand(0)->getType();
2044 const Type* Op1Ty = getOperand(1)->getType();
2045 assert(Op0Ty == Op1Ty &&
2046 "Both operands to ICmp instruction are not of the same type!");
2047 // Check that the operands are the right type
2048 assert(Op0Ty->isIntegral() || Op0Ty->getTypeID() == Type::PointerTyID ||
2049 (isa<PackedType>(Op0Ty) &&
2050 cast<PackedType>(Op0Ty)->getElementType()->isIntegral()) &&
2051 "Invalid operand types for ICmp instruction");
2052 return;
2053 }
2054 assert(op == Instruction::FCmp && "Invalid CmpInst opcode");
2055 assert(predicate <= FCmpInst::LAST_FCMP_PREDICATE &&
2056 "Invalid FCmp predicate value");
2057 const Type* Op0Ty = getOperand(0)->getType();
2058 const Type* Op1Ty = getOperand(1)->getType();
2059 assert(Op0Ty == Op1Ty &&
2060 "Both operands to FCmp instruction are not of the same type!");
2061 // Check that the operands are the right type
2062 assert(Op0Ty->isFloatingPoint() || (isa<PackedType>(Op0Ty) &&
2063 cast<PackedType>(Op0Ty)->getElementType()->isFloatingPoint()) &&
2064 "Invalid operand types for FCmp instruction");
2065}
2066
2067CmpInst *
2068CmpInst::create(OtherOps Op, unsigned short predicate, Value *S1, Value *S2,
2069 const std::string &Name, Instruction *InsertBefore) {
2070 if (Op == Instruction::ICmp) {
2071 return new ICmpInst(ICmpInst::Predicate(predicate), S1, S2, Name,
2072 InsertBefore);
2073 }
2074 return new FCmpInst(FCmpInst::Predicate(predicate), S1, S2, Name,
2075 InsertBefore);
2076}
2077
2078CmpInst *
2079CmpInst::create(OtherOps Op, unsigned short predicate, Value *S1, Value *S2,
2080 const std::string &Name, BasicBlock *InsertAtEnd) {
2081 if (Op == Instruction::ICmp) {
2082 return new ICmpInst(ICmpInst::Predicate(predicate), S1, S2, Name,
2083 InsertAtEnd);
2084 }
2085 return new FCmpInst(FCmpInst::Predicate(predicate), S1, S2, Name,
2086 InsertAtEnd);
2087}
2088
2089void CmpInst::swapOperands() {
2090 if (ICmpInst *IC = dyn_cast<ICmpInst>(this))
2091 IC->swapOperands();
2092 else
2093 cast<FCmpInst>(this)->swapOperands();
2094}
2095
2096bool CmpInst::isCommutative() {
2097 if (ICmpInst *IC = dyn_cast<ICmpInst>(this))
2098 return IC->isCommutative();
2099 return cast<FCmpInst>(this)->isCommutative();
2100}
2101
2102bool CmpInst::isEquality() {
2103 if (ICmpInst *IC = dyn_cast<ICmpInst>(this))
2104 return IC->isEquality();
2105 return cast<FCmpInst>(this)->isEquality();
2106}
2107
2108
2109ICmpInst::Predicate ICmpInst::getInversePredicate(Predicate pred) {
2110 switch (pred) {
2111 default:
2112 assert(!"Unknown icmp predicate!");
2113 case ICMP_EQ: return ICMP_NE;
2114 case ICMP_NE: return ICMP_EQ;
2115 case ICMP_UGT: return ICMP_ULE;
2116 case ICMP_ULT: return ICMP_UGE;
2117 case ICMP_UGE: return ICMP_ULT;
2118 case ICMP_ULE: return ICMP_UGT;
2119 case ICMP_SGT: return ICMP_SLE;
2120 case ICMP_SLT: return ICMP_SGE;
2121 case ICMP_SGE: return ICMP_SLT;
2122 case ICMP_SLE: return ICMP_SGT;
2123 }
2124}
2125
2126ICmpInst::Predicate ICmpInst::getSwappedPredicate(Predicate pred) {
2127 switch (pred) {
2128 default: assert(! "Unknown setcc instruction!");
2129 case ICMP_EQ: case ICMP_NE:
2130 return pred;
2131 case ICMP_SGT: return ICMP_SLT;
2132 case ICMP_SLT: return ICMP_SGT;
2133 case ICMP_SGE: return ICMP_SLE;
2134 case ICMP_SLE: return ICMP_SGE;
2135 case ICMP_UGT: return ICMP_ULT;
2136 case ICMP_ULT: return ICMP_UGT;
2137 case ICMP_UGE: return ICMP_ULE;
2138 case ICMP_ULE: return ICMP_UGE;
2139 }
2140}
2141
2142FCmpInst::Predicate FCmpInst::getInversePredicate(Predicate pred) {
2143 switch (pred) {
2144 default:
2145 assert(!"Unknown icmp predicate!");
2146 case FCMP_OEQ: return FCMP_UNE;
2147 case FCMP_ONE: return FCMP_UEQ;
2148 case FCMP_OGT: return FCMP_ULE;
2149 case FCMP_OLT: return FCMP_UGE;
2150 case FCMP_OGE: return FCMP_ULT;
2151 case FCMP_OLE: return FCMP_UGT;
2152 case FCMP_UEQ: return FCMP_ONE;
2153 case FCMP_UNE: return FCMP_OEQ;
2154 case FCMP_UGT: return FCMP_OLE;
2155 case FCMP_ULT: return FCMP_OGE;
2156 case FCMP_UGE: return FCMP_OLT;
2157 case FCMP_ULE: return FCMP_OGT;
2158 case FCMP_ORD: return FCMP_UNO;
2159 case FCMP_UNO: return FCMP_ORD;
2160 case FCMP_TRUE: return FCMP_FALSE;
2161 case FCMP_FALSE: return FCMP_TRUE;
2162 }
2163}
2164
2165FCmpInst::Predicate FCmpInst::getSwappedPredicate(Predicate pred) {
2166 switch (pred) {
2167 default: assert(!"Unknown setcc instruction!");
2168 case FCMP_FALSE: case FCMP_TRUE:
2169 case FCMP_OEQ: case FCMP_ONE:
2170 case FCMP_UEQ: case FCMP_UNE:
2171 case FCMP_ORD: case FCMP_UNO:
2172 return pred;
2173 case FCMP_OGT: return FCMP_OLT;
2174 case FCMP_OLT: return FCMP_OGT;
2175 case FCMP_OGE: return FCMP_OLE;
2176 case FCMP_OLE: return FCMP_OGE;
2177 case FCMP_UGT: return FCMP_ULT;
2178 case FCMP_ULT: return FCMP_UGT;
2179 case FCMP_UGE: return FCMP_ULE;
2180 case FCMP_ULE: return FCMP_UGE;
2181 }
2182}
2183
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00002184//===----------------------------------------------------------------------===//
2185// SwitchInst Implementation
2186//===----------------------------------------------------------------------===//
2187
Chris Lattnerafdb3de2005-01-29 00:35:16 +00002188void SwitchInst::init(Value *Value, BasicBlock *Default, unsigned NumCases) {
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00002189 assert(Value && Default);
Chris Lattnerafdb3de2005-01-29 00:35:16 +00002190 ReservedSpace = 2+NumCases*2;
2191 NumOperands = 2;
2192 OperandList = new Use[ReservedSpace];
2193
2194 OperandList[0].init(Value, this);
2195 OperandList[1].init(Default, this);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00002196}
2197
Misha Brukmanb1c93172005-04-21 23:48:37 +00002198SwitchInst::SwitchInst(const SwitchInst &SI)
Chris Lattnerafdb3de2005-01-29 00:35:16 +00002199 : TerminatorInst(Instruction::Switch, new Use[SI.getNumOperands()],
2200 SI.getNumOperands()) {
2201 Use *OL = OperandList, *InOL = SI.OperandList;
2202 for (unsigned i = 0, E = SI.getNumOperands(); i != E; i+=2) {
2203 OL[i].init(InOL[i], this);
2204 OL[i+1].init(InOL[i+1], this);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00002205 }
2206}
2207
Chris Lattnerafdb3de2005-01-29 00:35:16 +00002208SwitchInst::~SwitchInst() {
2209 delete [] OperandList;
2210}
2211
2212
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00002213/// addCase - Add an entry to the switch instruction...
2214///
Chris Lattner47ac1872005-02-24 05:32:09 +00002215void SwitchInst::addCase(ConstantInt *OnVal, BasicBlock *Dest) {
Chris Lattnerafdb3de2005-01-29 00:35:16 +00002216 unsigned OpNo = NumOperands;
2217 if (OpNo+2 > ReservedSpace)
2218 resizeOperands(0); // Get more space!
2219 // Initialize some new operands.
Chris Lattnerf711f8d2005-01-29 01:05:12 +00002220 assert(OpNo+1 < ReservedSpace && "Growing didn't work!");
Chris Lattnerafdb3de2005-01-29 00:35:16 +00002221 NumOperands = OpNo+2;
2222 OperandList[OpNo].init(OnVal, this);
2223 OperandList[OpNo+1].init(Dest, this);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00002224}
2225
2226/// removeCase - This method removes the specified successor from the switch
2227/// instruction. Note that this cannot be used to remove the default
2228/// destination (successor #0).
2229///
2230void SwitchInst::removeCase(unsigned idx) {
2231 assert(idx != 0 && "Cannot remove the default case!");
Chris Lattnerafdb3de2005-01-29 00:35:16 +00002232 assert(idx*2 < getNumOperands() && "Successor index out of range!!!");
2233
2234 unsigned NumOps = getNumOperands();
2235 Use *OL = OperandList;
2236
2237 // Move everything after this operand down.
2238 //
2239 // FIXME: we could just swap with the end of the list, then erase. However,
2240 // client might not expect this to happen. The code as it is thrashes the
2241 // use/def lists, which is kinda lame.
2242 for (unsigned i = (idx+1)*2; i != NumOps; i += 2) {
2243 OL[i-2] = OL[i];
2244 OL[i-2+1] = OL[i+1];
2245 }
2246
2247 // Nuke the last value.
2248 OL[NumOps-2].set(0);
2249 OL[NumOps-2+1].set(0);
2250 NumOperands = NumOps-2;
2251}
2252
2253/// resizeOperands - resize operands - This adjusts the length of the operands
2254/// list according to the following behavior:
2255/// 1. If NumOps == 0, grow the operand list in response to a push_back style
2256/// of operation. This grows the number of ops by 1.5 times.
2257/// 2. If NumOps > NumOperands, reserve space for NumOps operands.
2258/// 3. If NumOps == NumOperands, trim the reserved space.
2259///
2260void SwitchInst::resizeOperands(unsigned NumOps) {
2261 if (NumOps == 0) {
Chris Lattnerf711f8d2005-01-29 01:05:12 +00002262 NumOps = getNumOperands()/2*6;
Chris Lattnerafdb3de2005-01-29 00:35:16 +00002263 } else if (NumOps*2 > NumOperands) {
2264 // No resize needed.
2265 if (ReservedSpace >= NumOps) return;
2266 } else if (NumOps == NumOperands) {
2267 if (ReservedSpace == NumOps) return;
2268 } else {
Chris Lattnerf711f8d2005-01-29 01:05:12 +00002269 return;
Chris Lattnerafdb3de2005-01-29 00:35:16 +00002270 }
2271
2272 ReservedSpace = NumOps;
2273 Use *NewOps = new Use[NumOps];
2274 Use *OldOps = OperandList;
2275 for (unsigned i = 0, e = getNumOperands(); i != e; ++i) {
2276 NewOps[i].init(OldOps[i], this);
2277 OldOps[i].set(0);
2278 }
2279 delete [] OldOps;
2280 OperandList = NewOps;
2281}
2282
2283
2284BasicBlock *SwitchInst::getSuccessorV(unsigned idx) const {
2285 return getSuccessor(idx);
2286}
2287unsigned SwitchInst::getNumSuccessorsV() const {
2288 return getNumSuccessors();
2289}
2290void SwitchInst::setSuccessorV(unsigned idx, BasicBlock *B) {
2291 setSuccessor(idx, B);
Alkis Evlogimenos93a7c062004-07-29 12:33:25 +00002292}
Chris Lattnerf22be932004-10-15 23:52:53 +00002293
2294
2295// Define these methods here so vtables don't get emitted into every translation
2296// unit that uses these classes.
2297
2298GetElementPtrInst *GetElementPtrInst::clone() const {
2299 return new GetElementPtrInst(*this);
2300}
2301
2302BinaryOperator *BinaryOperator::clone() const {
Chris Lattnerafdb3de2005-01-29 00:35:16 +00002303 return create(getOpcode(), Ops[0], Ops[1]);
Chris Lattnerf22be932004-10-15 23:52:53 +00002304}
2305
Reid Spencerd9436b62006-11-20 01:22:35 +00002306CmpInst* CmpInst::clone() const {
Reid Spencerfcb0dd32006-12-07 04:18:31 +00002307 return create(getOpcode(), getPredicate(), Ops[0], Ops[1]);
Reid Spencerd9436b62006-11-20 01:22:35 +00002308}
2309
Reid Spencer6c38f0b2006-11-27 01:05:10 +00002310MallocInst *MallocInst::clone() const { return new MallocInst(*this); }
2311AllocaInst *AllocaInst::clone() const { return new AllocaInst(*this); }
2312FreeInst *FreeInst::clone() const { return new FreeInst(getOperand(0)); }
2313LoadInst *LoadInst::clone() const { return new LoadInst(*this); }
2314StoreInst *StoreInst::clone() const { return new StoreInst(*this); }
2315CastInst *TruncInst::clone() const { return new TruncInst(*this); }
2316CastInst *ZExtInst::clone() const { return new ZExtInst(*this); }
2317CastInst *SExtInst::clone() const { return new SExtInst(*this); }
2318CastInst *FPTruncInst::clone() const { return new FPTruncInst(*this); }
2319CastInst *FPExtInst::clone() const { return new FPExtInst(*this); }
2320CastInst *UIToFPInst::clone() const { return new UIToFPInst(*this); }
2321CastInst *SIToFPInst::clone() const { return new SIToFPInst(*this); }
2322CastInst *FPToUIInst::clone() const { return new FPToUIInst(*this); }
2323CastInst *FPToSIInst::clone() const { return new FPToSIInst(*this); }
2324CastInst *PtrToIntInst::clone() const { return new PtrToIntInst(*this); }
2325CastInst *IntToPtrInst::clone() const { return new IntToPtrInst(*this); }
2326CastInst *BitCastInst::clone() const { return new BitCastInst(*this); }
2327CallInst *CallInst::clone() const { return new CallInst(*this); }
2328ShiftInst *ShiftInst::clone() const { return new ShiftInst(*this); }
2329SelectInst *SelectInst::clone() const { return new SelectInst(*this); }
2330VAArgInst *VAArgInst::clone() const { return new VAArgInst(*this); }
2331
Chris Lattnerbbe0a422006-04-08 01:18:18 +00002332ExtractElementInst *ExtractElementInst::clone() const {
2333 return new ExtractElementInst(*this);
2334}
2335InsertElementInst *InsertElementInst::clone() const {
2336 return new InsertElementInst(*this);
2337}
2338ShuffleVectorInst *ShuffleVectorInst::clone() const {
2339 return new ShuffleVectorInst(*this);
2340}
Chris Lattnerf22be932004-10-15 23:52:53 +00002341PHINode *PHINode::clone() const { return new PHINode(*this); }
2342ReturnInst *ReturnInst::clone() const { return new ReturnInst(*this); }
2343BranchInst *BranchInst::clone() const { return new BranchInst(*this); }
2344SwitchInst *SwitchInst::clone() const { return new SwitchInst(*this); }
2345InvokeInst *InvokeInst::clone() const { return new InvokeInst(*this); }
2346UnwindInst *UnwindInst::clone() const { return new UnwindInst(); }
Chris Lattner5e0b9f22004-10-16 18:08:06 +00002347UnreachableInst *UnreachableInst::clone() const { return new UnreachableInst();}