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Chris Lattner9bc02a42003-05-13 21:37:02 +00001//===-- Constants.cpp - Implement Constant nodes --------------------------===//
Misha Brukmanfd939082005-04-21 23:48:37 +00002//
John Criswellb576c942003-10-20 19:43:21 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukmanfd939082005-04-21 23:48:37 +00007//
John Criswellb576c942003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattner00950542001-06-06 20:29:01 +00009//
Chris Lattnere9bb2df2001-12-03 22:26:30 +000010// This file implements the Constant* classes...
Chris Lattner00950542001-06-06 20:29:01 +000011//
12//===----------------------------------------------------------------------===//
13
Chris Lattner31bcdb82002-04-28 19:55:58 +000014#include "llvm/Constants.h"
Chris Lattner37f077a2009-08-23 04:02:03 +000015#include "LLVMContextImpl.h"
Chris Lattner92f6fea2007-02-27 03:05:06 +000016#include "ConstantFold.h"
Chris Lattner00950542001-06-06 20:29:01 +000017#include "llvm/DerivedTypes.h"
Reid Spencer1c9c8e62004-07-17 23:48:33 +000018#include "llvm/GlobalValue.h"
Misha Brukman47b14a42004-07-29 17:30:56 +000019#include "llvm/Instructions.h"
Chris Lattnerf5ec48d2001-10-13 06:57:33 +000020#include "llvm/Module.h"
Dan Gohman5a206ee2009-07-18 01:49:22 +000021#include "llvm/Operator.h"
Nick Lewycky21cc4462009-04-04 07:22:01 +000022#include "llvm/ADT/FoldingSet.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000023#include "llvm/ADT/StringExtras.h"
Nick Lewycky21cc4462009-04-04 07:22:01 +000024#include "llvm/ADT/StringMap.h"
Chris Lattnera4f0b3a2006-08-27 12:54:02 +000025#include "llvm/Support/Compiler.h"
Bill Wendling2e3def12006-11-17 08:03:48 +000026#include "llvm/Support/Debug.h"
Torok Edwin7d696d82009-07-11 13:10:19 +000027#include "llvm/Support/ErrorHandling.h"
Chris Lattner8a94bf12006-09-28 00:35:06 +000028#include "llvm/Support/ManagedStatic.h"
Bill Wendling2e3def12006-11-17 08:03:48 +000029#include "llvm/Support/MathExtras.h"
Chris Lattner37f077a2009-08-23 04:02:03 +000030#include "llvm/Support/raw_ostream.h"
Dan Gohmane6992f72009-09-10 23:37:55 +000031#include "llvm/Support/GetElementPtrTypeIterator.h"
Owen Anderson04fb7c32009-06-20 00:24:58 +000032#include "llvm/System/Mutex.h"
Owen Anderson3e456ab2009-06-17 18:40:29 +000033#include "llvm/System/RWMutex.h"
Owen Andersone3cd5ca2009-06-18 16:54:52 +000034#include "llvm/System/Threading.h"
Chris Lattner6b6f6ba2007-02-20 06:39:57 +000035#include "llvm/ADT/DenseMap.h"
Chris Lattnerf9021ff2007-02-19 20:01:23 +000036#include "llvm/ADT/SmallVector.h"
Chris Lattner00950542001-06-06 20:29:01 +000037#include <algorithm>
Reid Spenceref9b9a72007-02-05 20:47:22 +000038#include <map>
Chris Lattner31f84992003-11-21 20:23:48 +000039using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000040
Chris Lattner00950542001-06-06 20:29:01 +000041//===----------------------------------------------------------------------===//
Chris Lattnere9bb2df2001-12-03 22:26:30 +000042// Constant Class
Chris Lattner00950542001-06-06 20:29:01 +000043//===----------------------------------------------------------------------===//
44
Owen Andersona7235ea2009-07-31 20:28:14 +000045// Constructor to create a '0' constant of arbitrary type...
46static const uint64_t zero[2] = {0, 0};
47Constant* Constant::getNullValue(const Type* Ty) {
48 switch (Ty->getTypeID()) {
49 case Type::IntegerTyID:
50 return ConstantInt::get(Ty, 0);
51 case Type::FloatTyID:
52 return ConstantFP::get(Ty->getContext(), APFloat(APInt(32, 0)));
53 case Type::DoubleTyID:
54 return ConstantFP::get(Ty->getContext(), APFloat(APInt(64, 0)));
55 case Type::X86_FP80TyID:
56 return ConstantFP::get(Ty->getContext(), APFloat(APInt(80, 2, zero)));
57 case Type::FP128TyID:
58 return ConstantFP::get(Ty->getContext(),
59 APFloat(APInt(128, 2, zero), true));
60 case Type::PPC_FP128TyID:
61 return ConstantFP::get(Ty->getContext(), APFloat(APInt(128, 2, zero)));
62 case Type::PointerTyID:
63 return ConstantPointerNull::get(cast<PointerType>(Ty));
64 case Type::StructTyID:
65 case Type::ArrayTyID:
66 case Type::VectorTyID:
67 return ConstantAggregateZero::get(Ty);
68 default:
69 // Function, Label, or Opaque type?
70 assert(!"Cannot create a null constant of that type!");
71 return 0;
72 }
73}
74
Dan Gohman43ee5f72009-08-03 22:07:33 +000075Constant* Constant::getIntegerValue(const Type* Ty, const APInt &V) {
76 const Type *ScalarTy = Ty->getScalarType();
77
78 // Create the base integer constant.
79 Constant *C = ConstantInt::get(Ty->getContext(), V);
80
81 // Convert an integer to a pointer, if necessary.
82 if (const PointerType *PTy = dyn_cast<PointerType>(ScalarTy))
83 C = ConstantExpr::getIntToPtr(C, PTy);
84
85 // Broadcast a scalar to a vector, if necessary.
86 if (const VectorType *VTy = dyn_cast<VectorType>(Ty))
87 C = ConstantVector::get(std::vector<Constant *>(VTy->getNumElements(), C));
88
89 return C;
90}
91
Owen Andersona7235ea2009-07-31 20:28:14 +000092Constant* Constant::getAllOnesValue(const Type* Ty) {
93 if (const IntegerType* ITy = dyn_cast<IntegerType>(Ty))
94 return ConstantInt::get(Ty->getContext(),
95 APInt::getAllOnesValue(ITy->getBitWidth()));
96
97 std::vector<Constant*> Elts;
98 const VectorType* VTy = cast<VectorType>(Ty);
99 Elts.resize(VTy->getNumElements(), getAllOnesValue(VTy->getElementType()));
100 assert(Elts[0] && "Not a vector integer type!");
101 return cast<ConstantVector>(ConstantVector::get(Elts));
102}
103
Chris Lattnere9bb2df2001-12-03 22:26:30 +0000104void Constant::destroyConstantImpl() {
105 // When a Constant is destroyed, there may be lingering
Chris Lattnerf5ec48d2001-10-13 06:57:33 +0000106 // references to the constant by other constants in the constant pool. These
Misha Brukmanef6a6a62003-08-21 22:14:26 +0000107 // constants are implicitly dependent on the module that is being deleted,
Chris Lattnerf5ec48d2001-10-13 06:57:33 +0000108 // but they don't know that. Because we only find out when the CPV is
109 // deleted, we must now notify all of our users (that should only be
Chris Lattnere9bb2df2001-12-03 22:26:30 +0000110 // Constants) that they are, in fact, invalid now and should be deleted.
Chris Lattnerf5ec48d2001-10-13 06:57:33 +0000111 //
112 while (!use_empty()) {
113 Value *V = use_back();
114#ifndef NDEBUG // Only in -g mode...
Chris Lattner37f077a2009-08-23 04:02:03 +0000115 if (!isa<Constant>(V)) {
116 errs() << "While deleting: " << *this
117 << "\n\nUse still stuck around after Def is destroyed: "
118 << *V << "\n\n";
119 }
Chris Lattnerf5ec48d2001-10-13 06:57:33 +0000120#endif
Vikram S. Adve345e0cf2002-07-14 23:13:17 +0000121 assert(isa<Constant>(V) && "References remain to Constant being destroyed");
Reid Spencer1c9c8e62004-07-17 23:48:33 +0000122 Constant *CV = cast<Constant>(V);
123 CV->destroyConstant();
Chris Lattnerf5ec48d2001-10-13 06:57:33 +0000124
125 // The constant should remove itself from our use list...
Vikram S. Adve345e0cf2002-07-14 23:13:17 +0000126 assert((use_empty() || use_back() != V) && "Constant not removed!");
Chris Lattnerf5ec48d2001-10-13 06:57:33 +0000127 }
128
129 // Value has no outstanding references it is safe to delete it now...
130 delete this;
Chris Lattner1d87bcf2001-10-01 20:11:19 +0000131}
Chris Lattner00950542001-06-06 20:29:01 +0000132
Chris Lattner35b89fa2006-10-20 00:27:06 +0000133/// canTrap - Return true if evaluation of this constant could trap. This is
134/// true for things like constant expressions that could divide by zero.
135bool Constant::canTrap() const {
136 assert(getType()->isFirstClassType() && "Cannot evaluate aggregate vals!");
137 // The only thing that could possibly trap are constant exprs.
138 const ConstantExpr *CE = dyn_cast<ConstantExpr>(this);
139 if (!CE) return false;
140
141 // ConstantExpr traps if any operands can trap.
142 for (unsigned i = 0, e = getNumOperands(); i != e; ++i)
143 if (getOperand(i)->canTrap())
144 return true;
145
146 // Otherwise, only specific operations can trap.
147 switch (CE->getOpcode()) {
148 default:
149 return false;
Reid Spencer1628cec2006-10-26 06:15:43 +0000150 case Instruction::UDiv:
151 case Instruction::SDiv:
152 case Instruction::FDiv:
Reid Spencer0a783f72006-11-02 01:53:59 +0000153 case Instruction::URem:
154 case Instruction::SRem:
155 case Instruction::FRem:
Chris Lattner35b89fa2006-10-20 00:27:06 +0000156 // Div and rem can trap if the RHS is not known to be non-zero.
157 if (!isa<ConstantInt>(getOperand(1)) || getOperand(1)->isNullValue())
158 return true;
159 return false;
160 }
161}
162
Chris Lattner7cf12c72009-07-22 00:05:44 +0000163
164/// getRelocationInfo - This method classifies the entry according to
165/// whether or not it may generate a relocation entry. This must be
166/// conservative, so if it might codegen to a relocatable entry, it should say
167/// so. The return values are:
168///
Chris Lattner083a1e02009-07-24 03:27:21 +0000169/// NoRelocation: This constant pool entry is guaranteed to never have a
170/// relocation applied to it (because it holds a simple constant like
171/// '4').
172/// LocalRelocation: This entry has relocations, but the entries are
173/// guaranteed to be resolvable by the static linker, so the dynamic
174/// linker will never see them.
175/// GlobalRelocations: This entry may have arbitrary relocations.
Chris Lattner7cf12c72009-07-22 00:05:44 +0000176///
177/// FIXME: This really should not be in VMCore.
Chris Lattner083a1e02009-07-24 03:27:21 +0000178Constant::PossibleRelocationsTy Constant::getRelocationInfo() const {
179 if (const GlobalValue *GV = dyn_cast<GlobalValue>(this)) {
Chris Lattner7cf12c72009-07-22 00:05:44 +0000180 if (GV->hasLocalLinkage() || GV->hasHiddenVisibility())
Chris Lattner083a1e02009-07-24 03:27:21 +0000181 return LocalRelocation; // Local to this file/library.
182 return GlobalRelocations; // Global reference.
Anton Korobeynikovab267a22009-03-29 17:13:18 +0000183 }
Chris Lattner7cf12c72009-07-22 00:05:44 +0000184
Chris Lattner083a1e02009-07-24 03:27:21 +0000185 PossibleRelocationsTy Result = NoRelocation;
Evan Chengafe15812007-03-08 00:59:12 +0000186 for (unsigned i = 0, e = getNumOperands(); i != e; ++i)
Chris Lattner7cf12c72009-07-22 00:05:44 +0000187 Result = std::max(Result, getOperand(i)->getRelocationInfo());
188
189 return Result;
Evan Chengafe15812007-03-08 00:59:12 +0000190}
191
Chris Lattner7cf12c72009-07-22 00:05:44 +0000192
Chris Lattner86381442008-07-10 00:28:11 +0000193/// getVectorElements - This method, which is only valid on constant of vector
194/// type, returns the elements of the vector in the specified smallvector.
Chris Lattner071aade2008-07-14 05:10:41 +0000195/// This handles breaking down a vector undef into undef elements, etc. For
196/// constant exprs and other cases we can't handle, we return an empty vector.
Owen Anderson0a5372e2009-07-13 04:09:18 +0000197void Constant::getVectorElements(LLVMContext &Context,
198 SmallVectorImpl<Constant*> &Elts) const {
Chris Lattner86381442008-07-10 00:28:11 +0000199 assert(isa<VectorType>(getType()) && "Not a vector constant!");
200
201 if (const ConstantVector *CV = dyn_cast<ConstantVector>(this)) {
202 for (unsigned i = 0, e = CV->getNumOperands(); i != e; ++i)
203 Elts.push_back(CV->getOperand(i));
204 return;
205 }
206
207 const VectorType *VT = cast<VectorType>(getType());
208 if (isa<ConstantAggregateZero>(this)) {
209 Elts.assign(VT->getNumElements(),
Owen Andersona7235ea2009-07-31 20:28:14 +0000210 Constant::getNullValue(VT->getElementType()));
Chris Lattner86381442008-07-10 00:28:11 +0000211 return;
212 }
213
Chris Lattner071aade2008-07-14 05:10:41 +0000214 if (isa<UndefValue>(this)) {
Owen Anderson9e9a0d52009-07-30 23:03:37 +0000215 Elts.assign(VT->getNumElements(), UndefValue::get(VT->getElementType()));
Chris Lattner071aade2008-07-14 05:10:41 +0000216 return;
217 }
218
219 // Unknown type, must be constant expr etc.
Chris Lattner86381442008-07-10 00:28:11 +0000220}
221
222
223
Chris Lattner00950542001-06-06 20:29:01 +0000224//===----------------------------------------------------------------------===//
Chris Lattner6b6f6ba2007-02-20 06:39:57 +0000225// ConstantInt
Chris Lattner00950542001-06-06 20:29:01 +0000226//===----------------------------------------------------------------------===//
227
Reid Spencer532d0ce2007-02-26 23:54:03 +0000228ConstantInt::ConstantInt(const IntegerType *Ty, const APInt& V)
Chris Lattnereb41bdd2007-02-20 05:55:46 +0000229 : Constant(Ty, ConstantIntVal, 0, 0), Val(V) {
Reid Spencer532d0ce2007-02-26 23:54:03 +0000230 assert(V.getBitWidth() == Ty->getBitWidth() && "Invalid constant for type");
Chris Lattner00950542001-06-06 20:29:01 +0000231}
232
Owen Anderson5defacc2009-07-31 17:39:07 +0000233ConstantInt* ConstantInt::getTrue(LLVMContext &Context) {
234 LLVMContextImpl *pImpl = Context.pImpl;
235 sys::SmartScopedWriter<true>(pImpl->ConstantsLock);
236 if (pImpl->TheTrueVal)
237 return pImpl->TheTrueVal;
238 else
Owen Anderson1d0be152009-08-13 21:58:54 +0000239 return (pImpl->TheTrueVal =
240 ConstantInt::get(IntegerType::get(Context, 1), 1));
Owen Anderson5defacc2009-07-31 17:39:07 +0000241}
242
243ConstantInt* ConstantInt::getFalse(LLVMContext &Context) {
244 LLVMContextImpl *pImpl = Context.pImpl;
245 sys::SmartScopedWriter<true>(pImpl->ConstantsLock);
246 if (pImpl->TheFalseVal)
247 return pImpl->TheFalseVal;
248 else
Owen Anderson1d0be152009-08-13 21:58:54 +0000249 return (pImpl->TheFalseVal =
250 ConstantInt::get(IntegerType::get(Context, 1), 0));
Owen Anderson5defacc2009-07-31 17:39:07 +0000251}
252
253
Owen Andersoneed707b2009-07-24 23:12:02 +0000254// Get a ConstantInt from an APInt. Note that the value stored in the DenseMap
255// as the key, is a DenseMapAPIntKeyInfo::KeyTy which has provided the
256// operator== and operator!= to ensure that the DenseMap doesn't attempt to
257// compare APInt's of different widths, which would violate an APInt class
258// invariant which generates an assertion.
259ConstantInt *ConstantInt::get(LLVMContext &Context, const APInt& V) {
260 // Get the corresponding integer type for the bit width of the value.
Owen Anderson1d0be152009-08-13 21:58:54 +0000261 const IntegerType *ITy = IntegerType::get(Context, V.getBitWidth());
Owen Andersoneed707b2009-07-24 23:12:02 +0000262 // get an existing value or the insertion position
263 DenseMapAPIntKeyInfo::KeyTy Key(V, ITy);
264
265 Context.pImpl->ConstantsLock.reader_acquire();
266 ConstantInt *&Slot = Context.pImpl->IntConstants[Key];
267 Context.pImpl->ConstantsLock.reader_release();
268
269 if (!Slot) {
270 sys::SmartScopedWriter<true> Writer(Context.pImpl->ConstantsLock);
271 ConstantInt *&NewSlot = Context.pImpl->IntConstants[Key];
272 if (!Slot) {
273 NewSlot = new ConstantInt(ITy, V);
274 }
275
276 return NewSlot;
277 } else {
278 return Slot;
279 }
280}
281
282Constant* ConstantInt::get(const Type* Ty, uint64_t V, bool isSigned) {
283 Constant *C = get(cast<IntegerType>(Ty->getScalarType()),
284 V, isSigned);
285
286 // For vectors, broadcast the value.
287 if (const VectorType *VTy = dyn_cast<VectorType>(Ty))
Owen Andersonaf7ec972009-07-28 21:19:26 +0000288 return ConstantVector::get(
Owen Andersoneed707b2009-07-24 23:12:02 +0000289 std::vector<Constant *>(VTy->getNumElements(), C));
290
291 return C;
292}
293
294ConstantInt* ConstantInt::get(const IntegerType* Ty, uint64_t V,
295 bool isSigned) {
296 return get(Ty->getContext(), APInt(Ty->getBitWidth(), V, isSigned));
297}
298
299ConstantInt* ConstantInt::getSigned(const IntegerType* Ty, int64_t V) {
300 return get(Ty, V, true);
301}
302
303Constant *ConstantInt::getSigned(const Type *Ty, int64_t V) {
304 return get(Ty, V, true);
305}
306
307Constant* ConstantInt::get(const Type* Ty, const APInt& V) {
308 ConstantInt *C = get(Ty->getContext(), V);
309 assert(C->getType() == Ty->getScalarType() &&
310 "ConstantInt type doesn't match the type implied by its value!");
311
312 // For vectors, broadcast the value.
313 if (const VectorType *VTy = dyn_cast<VectorType>(Ty))
Owen Andersonaf7ec972009-07-28 21:19:26 +0000314 return ConstantVector::get(
Owen Andersoneed707b2009-07-24 23:12:02 +0000315 std::vector<Constant *>(VTy->getNumElements(), C));
316
317 return C;
318}
319
Erick Tryzelaar0e81f662009-08-16 23:36:33 +0000320ConstantInt* ConstantInt::get(const IntegerType* Ty, const StringRef& Str,
321 uint8_t radix) {
322 return get(Ty->getContext(), APInt(Ty->getBitWidth(), Str, radix));
323}
324
Chris Lattner6b6f6ba2007-02-20 06:39:57 +0000325//===----------------------------------------------------------------------===//
Chris Lattner9b4ee0c2007-02-20 07:17:17 +0000326// ConstantFP
Chris Lattner6b6f6ba2007-02-20 06:39:57 +0000327//===----------------------------------------------------------------------===//
328
Rafael Espindola87d1f472009-07-15 17:40:42 +0000329static const fltSemantics *TypeToFloatSemantics(const Type *Ty) {
Chris Lattnercf0fe8d2009-10-05 05:54:46 +0000330 if (Ty->isFloatTy())
Rafael Espindola87d1f472009-07-15 17:40:42 +0000331 return &APFloat::IEEEsingle;
Chris Lattnercf0fe8d2009-10-05 05:54:46 +0000332 if (Ty->isDoubleTy())
Rafael Espindola87d1f472009-07-15 17:40:42 +0000333 return &APFloat::IEEEdouble;
Chris Lattnercf0fe8d2009-10-05 05:54:46 +0000334 if (Ty->isX86_FP80Ty())
Rafael Espindola87d1f472009-07-15 17:40:42 +0000335 return &APFloat::x87DoubleExtended;
Chris Lattnercf0fe8d2009-10-05 05:54:46 +0000336 else if (Ty->isFP128Ty())
Rafael Espindola87d1f472009-07-15 17:40:42 +0000337 return &APFloat::IEEEquad;
338
Chris Lattnercf0fe8d2009-10-05 05:54:46 +0000339 assert(Ty->isPPC_FP128Ty() && "Unknown FP format");
Rafael Espindola87d1f472009-07-15 17:40:42 +0000340 return &APFloat::PPCDoubleDouble;
341}
342
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000343/// get() - This returns a constant fp for the specified value in the
344/// specified type. This should only be used for simple constant values like
345/// 2.0/1.0 etc, that are known-valid both as double and as the target format.
346Constant* ConstantFP::get(const Type* Ty, double V) {
347 LLVMContext &Context = Ty->getContext();
348
349 APFloat FV(V);
350 bool ignored;
351 FV.convert(*TypeToFloatSemantics(Ty->getScalarType()),
352 APFloat::rmNearestTiesToEven, &ignored);
353 Constant *C = get(Context, FV);
354
355 // For vectors, broadcast the value.
356 if (const VectorType *VTy = dyn_cast<VectorType>(Ty))
Owen Andersonaf7ec972009-07-28 21:19:26 +0000357 return ConstantVector::get(
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000358 std::vector<Constant *>(VTy->getNumElements(), C));
359
360 return C;
361}
362
Erick Tryzelaar0e81f662009-08-16 23:36:33 +0000363
364Constant* ConstantFP::get(const Type* Ty, const StringRef& Str) {
365 LLVMContext &Context = Ty->getContext();
366
367 APFloat FV(*TypeToFloatSemantics(Ty->getScalarType()), Str);
368 Constant *C = get(Context, FV);
369
370 // For vectors, broadcast the value.
371 if (const VectorType *VTy = dyn_cast<VectorType>(Ty))
372 return ConstantVector::get(
373 std::vector<Constant *>(VTy->getNumElements(), C));
374
375 return C;
376}
377
378
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000379ConstantFP* ConstantFP::getNegativeZero(const Type* Ty) {
380 LLVMContext &Context = Ty->getContext();
Owen Andersona7235ea2009-07-31 20:28:14 +0000381 APFloat apf = cast <ConstantFP>(Constant::getNullValue(Ty))->getValueAPF();
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000382 apf.changeSign();
383 return get(Context, apf);
384}
385
386
387Constant* ConstantFP::getZeroValueForNegation(const Type* Ty) {
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000388 if (const VectorType *PTy = dyn_cast<VectorType>(Ty))
389 if (PTy->getElementType()->isFloatingPoint()) {
390 std::vector<Constant*> zeros(PTy->getNumElements(),
391 getNegativeZero(PTy->getElementType()));
Owen Andersonaf7ec972009-07-28 21:19:26 +0000392 return ConstantVector::get(PTy, zeros);
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000393 }
394
395 if (Ty->isFloatingPoint())
396 return getNegativeZero(Ty);
397
Owen Andersona7235ea2009-07-31 20:28:14 +0000398 return Constant::getNullValue(Ty);
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000399}
400
401
402// ConstantFP accessors.
403ConstantFP* ConstantFP::get(LLVMContext &Context, const APFloat& V) {
404 DenseMapAPFloatKeyInfo::KeyTy Key(V);
405
406 LLVMContextImpl* pImpl = Context.pImpl;
407
408 pImpl->ConstantsLock.reader_acquire();
409 ConstantFP *&Slot = pImpl->FPConstants[Key];
410 pImpl->ConstantsLock.reader_release();
411
412 if (!Slot) {
413 sys::SmartScopedWriter<true> Writer(pImpl->ConstantsLock);
414 ConstantFP *&NewSlot = pImpl->FPConstants[Key];
415 if (!NewSlot) {
416 const Type *Ty;
417 if (&V.getSemantics() == &APFloat::IEEEsingle)
Owen Anderson1d0be152009-08-13 21:58:54 +0000418 Ty = Type::getFloatTy(Context);
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000419 else if (&V.getSemantics() == &APFloat::IEEEdouble)
Owen Anderson1d0be152009-08-13 21:58:54 +0000420 Ty = Type::getDoubleTy(Context);
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000421 else if (&V.getSemantics() == &APFloat::x87DoubleExtended)
Owen Anderson1d0be152009-08-13 21:58:54 +0000422 Ty = Type::getX86_FP80Ty(Context);
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000423 else if (&V.getSemantics() == &APFloat::IEEEquad)
Owen Anderson1d0be152009-08-13 21:58:54 +0000424 Ty = Type::getFP128Ty(Context);
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000425 else {
426 assert(&V.getSemantics() == &APFloat::PPCDoubleDouble &&
427 "Unknown FP format");
Owen Anderson1d0be152009-08-13 21:58:54 +0000428 Ty = Type::getPPC_FP128Ty(Context);
Owen Anderson6f83c9c2009-07-27 20:59:43 +0000429 }
430 NewSlot = new ConstantFP(Ty, V);
431 }
432
433 return NewSlot;
434 }
435
436 return Slot;
437}
438
Dan Gohmana23643d2009-09-25 23:40:21 +0000439ConstantFP *ConstantFP::getInfinity(const Type *Ty, bool Negative) {
Dan Gohmanf344f7f2009-09-25 23:00:48 +0000440 const fltSemantics &Semantics = *TypeToFloatSemantics(Ty);
441 return ConstantFP::get(Ty->getContext(),
442 APFloat::getInf(Semantics, Negative));
443}
444
Dale Johannesenf04afdb2007-08-30 00:23:21 +0000445ConstantFP::ConstantFP(const Type *Ty, const APFloat& V)
446 : Constant(Ty, ConstantFPVal, 0, 0), Val(V) {
Chris Lattner288e78f2008-04-09 06:38:30 +0000447 assert(&V.getSemantics() == TypeToFloatSemantics(Ty) &&
448 "FP type Mismatch");
Chris Lattner00950542001-06-06 20:29:01 +0000449}
450
Chris Lattner9b4ee0c2007-02-20 07:17:17 +0000451bool ConstantFP::isNullValue() const {
Dale Johannesen343e7702007-08-24 00:56:33 +0000452 return Val.isZero() && !Val.isNegative();
Chris Lattner9b4ee0c2007-02-20 07:17:17 +0000453}
454
Dale Johannesenf04afdb2007-08-30 00:23:21 +0000455bool ConstantFP::isExactlyValue(const APFloat& V) const {
456 return Val.bitwiseIsEqual(V);
Chris Lattner9b4ee0c2007-02-20 07:17:17 +0000457}
458
Chris Lattner9b4ee0c2007-02-20 07:17:17 +0000459//===----------------------------------------------------------------------===//
460// ConstantXXX Classes
461//===----------------------------------------------------------------------===//
462
463
Chris Lattnere9bb2df2001-12-03 22:26:30 +0000464ConstantArray::ConstantArray(const ArrayType *T,
Chris Lattnere4671472005-01-29 00:34:39 +0000465 const std::vector<Constant*> &V)
Gabor Greifefe65362008-05-10 08:32:32 +0000466 : Constant(T, ConstantArrayVal,
467 OperandTraits<ConstantArray>::op_end(this) - V.size(),
468 V.size()) {
Alkis Evlogimenose0de1d62004-09-15 02:32:15 +0000469 assert(V.size() == T->getNumElements() &&
470 "Invalid initializer vector for constant array");
Chris Lattnere4671472005-01-29 00:34:39 +0000471 Use *OL = OperandList;
Chris Lattnerdfdd6c52005-10-03 21:56:24 +0000472 for (std::vector<Constant*>::const_iterator I = V.begin(), E = V.end();
473 I != E; ++I, ++OL) {
Chris Lattner71abaab2005-10-07 05:23:36 +0000474 Constant *C = *I;
Nick Lewyckyb13105f2009-10-03 19:30:43 +0000475 assert(C->getType() == T->getElementType() &&
Alkis Evlogimenoscad90ad2004-09-10 04:16:59 +0000476 "Initializer for array element doesn't match array element type!");
Gabor Greif6c80c382008-05-26 21:33:52 +0000477 *OL = C;
Chris Lattner00950542001-06-06 20:29:01 +0000478 }
479}
480
Owen Anderson1fd70962009-07-28 18:32:17 +0000481Constant *ConstantArray::get(const ArrayType *Ty,
482 const std::vector<Constant*> &V) {
Jeffrey Yasskin1fb613c2009-09-30 21:08:08 +0000483 for (unsigned i = 0, e = V.size(); i != e; ++i) {
484 assert(V[i]->getType() == Ty->getElementType() &&
485 "Wrong type in array element initializer");
486 }
Owen Anderson1fd70962009-07-28 18:32:17 +0000487 LLVMContextImpl *pImpl = Ty->getContext().pImpl;
488 // If this is an all-zero array, return a ConstantAggregateZero object
489 if (!V.empty()) {
490 Constant *C = V[0];
491 if (!C->isNullValue()) {
492 // Implicitly locked.
493 return pImpl->ArrayConstants.getOrCreate(Ty, V);
494 }
495 for (unsigned i = 1, e = V.size(); i != e; ++i)
496 if (V[i] != C) {
497 // Implicitly locked.
498 return pImpl->ArrayConstants.getOrCreate(Ty, V);
499 }
500 }
501
Owen Anderson9e9a0d52009-07-30 23:03:37 +0000502 return ConstantAggregateZero::get(Ty);
Owen Anderson1fd70962009-07-28 18:32:17 +0000503}
504
505
506Constant* ConstantArray::get(const ArrayType* T, Constant* const* Vals,
507 unsigned NumVals) {
508 // FIXME: make this the primary ctor method.
509 return get(T, std::vector<Constant*>(Vals, Vals+NumVals));
510}
511
512/// ConstantArray::get(const string&) - Return an array that is initialized to
513/// contain the specified string. If length is zero then a null terminator is
514/// added to the specified string so that it may be used in a natural way.
515/// Otherwise, the length parameter specifies how much of the string to use
516/// and it won't be null terminated.
517///
Owen Anderson1d0be152009-08-13 21:58:54 +0000518Constant* ConstantArray::get(LLVMContext &Context, const StringRef &Str,
519 bool AddNull) {
Owen Anderson1fd70962009-07-28 18:32:17 +0000520 std::vector<Constant*> ElementVals;
521 for (unsigned i = 0; i < Str.size(); ++i)
Owen Anderson1d0be152009-08-13 21:58:54 +0000522 ElementVals.push_back(ConstantInt::get(Type::getInt8Ty(Context), Str[i]));
Owen Anderson1fd70962009-07-28 18:32:17 +0000523
524 // Add a null terminator to the string...
525 if (AddNull) {
Owen Anderson1d0be152009-08-13 21:58:54 +0000526 ElementVals.push_back(ConstantInt::get(Type::getInt8Ty(Context), 0));
Owen Anderson1fd70962009-07-28 18:32:17 +0000527 }
528
Owen Anderson1d0be152009-08-13 21:58:54 +0000529 ArrayType *ATy = ArrayType::get(Type::getInt8Ty(Context), ElementVals.size());
Owen Anderson1fd70962009-07-28 18:32:17 +0000530 return get(ATy, ElementVals);
531}
532
533
Chris Lattnere4671472005-01-29 00:34:39 +0000534
Chris Lattnere9bb2df2001-12-03 22:26:30 +0000535ConstantStruct::ConstantStruct(const StructType *T,
Chris Lattnere4671472005-01-29 00:34:39 +0000536 const std::vector<Constant*> &V)
Gabor Greifefe65362008-05-10 08:32:32 +0000537 : Constant(T, ConstantStructVal,
538 OperandTraits<ConstantStruct>::op_end(this) - V.size(),
539 V.size()) {
Chris Lattnerd21cd802004-02-09 04:37:31 +0000540 assert(V.size() == T->getNumElements() &&
Vikram S. Adve345e0cf2002-07-14 23:13:17 +0000541 "Invalid initializer vector for constant structure");
Chris Lattnere4671472005-01-29 00:34:39 +0000542 Use *OL = OperandList;
Chris Lattnerdfdd6c52005-10-03 21:56:24 +0000543 for (std::vector<Constant*>::const_iterator I = V.begin(), E = V.end();
544 I != E; ++I, ++OL) {
Chris Lattner71abaab2005-10-07 05:23:36 +0000545 Constant *C = *I;
Nick Lewyckyb13105f2009-10-03 19:30:43 +0000546 assert(C->getType() == T->getElementType(I-V.begin()) &&
Chris Lattnerb8438892003-06-02 17:42:47 +0000547 "Initializer for struct element doesn't match struct element type!");
Gabor Greif6c80c382008-05-26 21:33:52 +0000548 *OL = C;
Chris Lattner00950542001-06-06 20:29:01 +0000549 }
550}
551
Owen Anderson8fa33382009-07-27 22:29:26 +0000552// ConstantStruct accessors.
553Constant* ConstantStruct::get(const StructType* T,
554 const std::vector<Constant*>& V) {
555 LLVMContextImpl* pImpl = T->getContext().pImpl;
556
557 // Create a ConstantAggregateZero value if all elements are zeros...
558 for (unsigned i = 0, e = V.size(); i != e; ++i)
559 if (!V[i]->isNullValue())
560 // Implicitly locked.
561 return pImpl->StructConstants.getOrCreate(T, V);
562
Owen Anderson9e9a0d52009-07-30 23:03:37 +0000563 return ConstantAggregateZero::get(T);
Owen Anderson8fa33382009-07-27 22:29:26 +0000564}
565
Owen Andersond7f2a6c2009-08-05 23:16:16 +0000566Constant* ConstantStruct::get(LLVMContext &Context,
567 const std::vector<Constant*>& V, bool packed) {
Owen Anderson8fa33382009-07-27 22:29:26 +0000568 std::vector<const Type*> StructEls;
569 StructEls.reserve(V.size());
570 for (unsigned i = 0, e = V.size(); i != e; ++i)
571 StructEls.push_back(V[i]->getType());
Owen Andersond7f2a6c2009-08-05 23:16:16 +0000572 return get(StructType::get(Context, StructEls, packed), V);
Owen Anderson8fa33382009-07-27 22:29:26 +0000573}
574
Owen Andersond7f2a6c2009-08-05 23:16:16 +0000575Constant* ConstantStruct::get(LLVMContext &Context,
576 Constant* const *Vals, unsigned NumVals,
Owen Anderson8fa33382009-07-27 22:29:26 +0000577 bool Packed) {
578 // FIXME: make this the primary ctor method.
Owen Andersond7f2a6c2009-08-05 23:16:16 +0000579 return get(Context, std::vector<Constant*>(Vals, Vals+NumVals), Packed);
Owen Anderson8fa33382009-07-27 22:29:26 +0000580}
Chris Lattnere4671472005-01-29 00:34:39 +0000581
Reid Spencer9d6565a2007-02-15 02:26:10 +0000582ConstantVector::ConstantVector(const VectorType *T,
Chris Lattnere4671472005-01-29 00:34:39 +0000583 const std::vector<Constant*> &V)
Gabor Greifefe65362008-05-10 08:32:32 +0000584 : Constant(T, ConstantVectorVal,
585 OperandTraits<ConstantVector>::op_end(this) - V.size(),
586 V.size()) {
Chris Lattnere4671472005-01-29 00:34:39 +0000587 Use *OL = OperandList;
Chris Lattnerdfdd6c52005-10-03 21:56:24 +0000588 for (std::vector<Constant*>::const_iterator I = V.begin(), E = V.end();
589 I != E; ++I, ++OL) {
Chris Lattner71abaab2005-10-07 05:23:36 +0000590 Constant *C = *I;
Nick Lewyckyb13105f2009-10-03 19:30:43 +0000591 assert(C->getType() == T->getElementType() &&
Dan Gohmanfa73ea22007-05-24 14:36:04 +0000592 "Initializer for vector element doesn't match vector element type!");
Gabor Greif6c80c382008-05-26 21:33:52 +0000593 *OL = C;
Brian Gaeke715c90b2004-08-20 06:00:58 +0000594 }
595}
596
Owen Andersonaf7ec972009-07-28 21:19:26 +0000597// ConstantVector accessors.
598Constant* ConstantVector::get(const VectorType* T,
599 const std::vector<Constant*>& V) {
600 assert(!V.empty() && "Vectors can't be empty");
601 LLVMContext &Context = T->getContext();
602 LLVMContextImpl *pImpl = Context.pImpl;
603
604 // If this is an all-undef or alll-zero vector, return a
605 // ConstantAggregateZero or UndefValue.
606 Constant *C = V[0];
607 bool isZero = C->isNullValue();
608 bool isUndef = isa<UndefValue>(C);
609
610 if (isZero || isUndef) {
611 for (unsigned i = 1, e = V.size(); i != e; ++i)
612 if (V[i] != C) {
613 isZero = isUndef = false;
614 break;
615 }
616 }
617
618 if (isZero)
Owen Anderson9e9a0d52009-07-30 23:03:37 +0000619 return ConstantAggregateZero::get(T);
Owen Andersonaf7ec972009-07-28 21:19:26 +0000620 if (isUndef)
Owen Anderson9e9a0d52009-07-30 23:03:37 +0000621 return UndefValue::get(T);
Owen Andersonaf7ec972009-07-28 21:19:26 +0000622
623 // Implicitly locked.
624 return pImpl->VectorConstants.getOrCreate(T, V);
625}
626
627Constant* ConstantVector::get(const std::vector<Constant*>& V) {
628 assert(!V.empty() && "Cannot infer type if V is empty");
629 return get(VectorType::get(V.front()->getType(),V.size()), V);
630}
631
632Constant* ConstantVector::get(Constant* const* Vals, unsigned NumVals) {
633 // FIXME: make this the primary ctor method.
634 return get(std::vector<Constant*>(Vals, Vals+NumVals));
635}
636
Dan Gohman6e7ad952009-09-03 23:34:49 +0000637Constant* ConstantExpr::getNSWAdd(Constant* C1, Constant* C2) {
Dan Gohmanf8dbee72009-09-07 23:54:19 +0000638 return getTy(C1->getType(), Instruction::Add, C1, C2,
639 OverflowingBinaryOperator::NoSignedWrap);
Dan Gohman6e7ad952009-09-03 23:34:49 +0000640}
641
Duncan Sands3548ea82009-09-26 15:35:35 +0000642Constant* ConstantExpr::getNSWSub(Constant* C1, Constant* C2) {
643 return getTy(C1->getType(), Instruction::Sub, C1, C2,
644 OverflowingBinaryOperator::NoSignedWrap);
645}
646
Dan Gohman6e7ad952009-09-03 23:34:49 +0000647Constant* ConstantExpr::getExactSDiv(Constant* C1, Constant* C2) {
Dan Gohmanf8dbee72009-09-07 23:54:19 +0000648 return getTy(C1->getType(), Instruction::SDiv, C1, C2,
649 SDivOperator::IsExact);
Dan Gohman6e7ad952009-09-03 23:34:49 +0000650}
651
Reid Spencer3da59db2006-11-27 01:05:10 +0000652// Utility function for determining if a ConstantExpr is a CastOp or not. This
653// can't be inline because we don't want to #include Instruction.h into
654// Constant.h
655bool ConstantExpr::isCast() const {
656 return Instruction::isCast(getOpcode());
657}
658
Reid Spencer077d0eb2006-12-04 05:19:50 +0000659bool ConstantExpr::isCompare() const {
Nick Lewycky7f6aa2b2009-07-08 03:04:38 +0000660 return getOpcode() == Instruction::ICmp || getOpcode() == Instruction::FCmp;
Reid Spencer077d0eb2006-12-04 05:19:50 +0000661}
662
Dan Gohmane6992f72009-09-10 23:37:55 +0000663bool ConstantExpr::isGEPWithNoNotionalOverIndexing() const {
664 if (getOpcode() != Instruction::GetElementPtr) return false;
665
666 gep_type_iterator GEPI = gep_type_begin(this), E = gep_type_end(this);
667 User::const_op_iterator OI = next(this->op_begin());
668
669 // Skip the first index, as it has no static limit.
670 ++GEPI;
671 ++OI;
672
673 // The remaining indices must be compile-time known integers within the
674 // bounds of the corresponding notional static array types.
675 for (; GEPI != E; ++GEPI, ++OI) {
676 ConstantInt *CI = dyn_cast<ConstantInt>(*OI);
677 if (!CI) return false;
678 if (const ArrayType *ATy = dyn_cast<ArrayType>(*GEPI))
679 if (CI->getValue().getActiveBits() > 64 ||
680 CI->getZExtValue() >= ATy->getNumElements())
681 return false;
682 }
683
684 // All the indices checked out.
685 return true;
686}
687
Dan Gohman81a0c0b2008-05-31 00:58:22 +0000688bool ConstantExpr::hasIndices() const {
689 return getOpcode() == Instruction::ExtractValue ||
690 getOpcode() == Instruction::InsertValue;
691}
692
693const SmallVector<unsigned, 4> &ConstantExpr::getIndices() const {
694 if (const ExtractValueConstantExpr *EVCE =
695 dyn_cast<ExtractValueConstantExpr>(this))
696 return EVCE->Indices;
Dan Gohman1a203572008-06-23 16:39:44 +0000697
698 return cast<InsertValueConstantExpr>(this)->Indices;
Dan Gohman81a0c0b2008-05-31 00:58:22 +0000699}
700
Reid Spencer728b6db2006-12-03 05:48:19 +0000701unsigned ConstantExpr::getPredicate() const {
Nate Begemanac80ade2008-05-12 19:01:56 +0000702 assert(getOpcode() == Instruction::FCmp ||
Nick Lewycky7f6aa2b2009-07-08 03:04:38 +0000703 getOpcode() == Instruction::ICmp);
Chris Lattnerb7daa842007-10-18 16:26:24 +0000704 return ((const CompareConstantExpr*)this)->predicate;
Reid Spencer728b6db2006-12-03 05:48:19 +0000705}
Chris Lattnerf4ba6c72001-10-03 06:12:09 +0000706
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000707/// getWithOperandReplaced - Return a constant expression identical to this
708/// one, but with the specified operand set to the specified value.
Reid Spencer3da59db2006-11-27 01:05:10 +0000709Constant *
710ConstantExpr::getWithOperandReplaced(unsigned OpNo, Constant *Op) const {
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000711 assert(OpNo < getNumOperands() && "Operand num is out of range!");
712 assert(Op->getType() == getOperand(OpNo)->getType() &&
713 "Replacing operand with value of different type!");
Chris Lattnerb88a7fb2006-07-14 22:20:01 +0000714 if (getOperand(OpNo) == Op)
715 return const_cast<ConstantExpr*>(this);
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000716
Chris Lattnerb88a7fb2006-07-14 22:20:01 +0000717 Constant *Op0, *Op1, *Op2;
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000718 switch (getOpcode()) {
Reid Spencer3da59db2006-11-27 01:05:10 +0000719 case Instruction::Trunc:
720 case Instruction::ZExt:
721 case Instruction::SExt:
722 case Instruction::FPTrunc:
723 case Instruction::FPExt:
724 case Instruction::UIToFP:
725 case Instruction::SIToFP:
726 case Instruction::FPToUI:
727 case Instruction::FPToSI:
728 case Instruction::PtrToInt:
729 case Instruction::IntToPtr:
730 case Instruction::BitCast:
731 return ConstantExpr::getCast(getOpcode(), Op, getType());
Chris Lattnerb88a7fb2006-07-14 22:20:01 +0000732 case Instruction::Select:
733 Op0 = (OpNo == 0) ? Op : getOperand(0);
734 Op1 = (OpNo == 1) ? Op : getOperand(1);
735 Op2 = (OpNo == 2) ? Op : getOperand(2);
736 return ConstantExpr::getSelect(Op0, Op1, Op2);
737 case Instruction::InsertElement:
738 Op0 = (OpNo == 0) ? Op : getOperand(0);
739 Op1 = (OpNo == 1) ? Op : getOperand(1);
740 Op2 = (OpNo == 2) ? Op : getOperand(2);
741 return ConstantExpr::getInsertElement(Op0, Op1, Op2);
742 case Instruction::ExtractElement:
743 Op0 = (OpNo == 0) ? Op : getOperand(0);
744 Op1 = (OpNo == 1) ? Op : getOperand(1);
745 return ConstantExpr::getExtractElement(Op0, Op1);
746 case Instruction::ShuffleVector:
747 Op0 = (OpNo == 0) ? Op : getOperand(0);
748 Op1 = (OpNo == 1) ? Op : getOperand(1);
749 Op2 = (OpNo == 2) ? Op : getOperand(2);
750 return ConstantExpr::getShuffleVector(Op0, Op1, Op2);
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000751 case Instruction::GetElementPtr: {
Chris Lattnerf9021ff2007-02-19 20:01:23 +0000752 SmallVector<Constant*, 8> Ops;
Dan Gohman041e2eb2008-05-15 19:50:34 +0000753 Ops.resize(getNumOperands()-1);
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000754 for (unsigned i = 1, e = getNumOperands(); i != e; ++i)
Dan Gohman041e2eb2008-05-15 19:50:34 +0000755 Ops[i-1] = getOperand(i);
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000756 if (OpNo == 0)
Dan Gohmanf8dbee72009-09-07 23:54:19 +0000757 return cast<GEPOperator>(this)->isInBounds() ?
758 ConstantExpr::getInBoundsGetElementPtr(Op, &Ops[0], Ops.size()) :
759 ConstantExpr::getGetElementPtr(Op, &Ops[0], Ops.size());
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000760 Ops[OpNo-1] = Op;
Dan Gohmanf8dbee72009-09-07 23:54:19 +0000761 return cast<GEPOperator>(this)->isInBounds() ?
762 ConstantExpr::getInBoundsGetElementPtr(getOperand(0), &Ops[0], Ops.size()) :
763 ConstantExpr::getGetElementPtr(getOperand(0), &Ops[0], Ops.size());
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000764 }
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000765 default:
766 assert(getNumOperands() == 2 && "Must be binary operator?");
Chris Lattnerb88a7fb2006-07-14 22:20:01 +0000767 Op0 = (OpNo == 0) ? Op : getOperand(0);
768 Op1 = (OpNo == 1) ? Op : getOperand(1);
Dan Gohmanf8dbee72009-09-07 23:54:19 +0000769 return ConstantExpr::get(getOpcode(), Op0, Op1, SubclassData);
Chris Lattnerb88a7fb2006-07-14 22:20:01 +0000770 }
771}
772
773/// getWithOperands - This returns the current constant expression with the
774/// operands replaced with the specified values. The specified operands must
775/// match count and type with the existing ones.
776Constant *ConstantExpr::
Chris Lattnerb054bfd2008-08-20 22:27:40 +0000777getWithOperands(Constant* const *Ops, unsigned NumOps) const {
778 assert(NumOps == getNumOperands() && "Operand count mismatch!");
Chris Lattnerb88a7fb2006-07-14 22:20:01 +0000779 bool AnyChange = false;
Chris Lattnerb054bfd2008-08-20 22:27:40 +0000780 for (unsigned i = 0; i != NumOps; ++i) {
Chris Lattnerb88a7fb2006-07-14 22:20:01 +0000781 assert(Ops[i]->getType() == getOperand(i)->getType() &&
782 "Operand type mismatch!");
783 AnyChange |= Ops[i] != getOperand(i);
784 }
785 if (!AnyChange) // No operands changed, return self.
786 return const_cast<ConstantExpr*>(this);
787
788 switch (getOpcode()) {
Reid Spencer3da59db2006-11-27 01:05:10 +0000789 case Instruction::Trunc:
790 case Instruction::ZExt:
791 case Instruction::SExt:
792 case Instruction::FPTrunc:
793 case Instruction::FPExt:
794 case Instruction::UIToFP:
795 case Instruction::SIToFP:
796 case Instruction::FPToUI:
797 case Instruction::FPToSI:
798 case Instruction::PtrToInt:
799 case Instruction::IntToPtr:
800 case Instruction::BitCast:
801 return ConstantExpr::getCast(getOpcode(), Ops[0], getType());
Chris Lattnerb88a7fb2006-07-14 22:20:01 +0000802 case Instruction::Select:
803 return ConstantExpr::getSelect(Ops[0], Ops[1], Ops[2]);
804 case Instruction::InsertElement:
805 return ConstantExpr::getInsertElement(Ops[0], Ops[1], Ops[2]);
806 case Instruction::ExtractElement:
807 return ConstantExpr::getExtractElement(Ops[0], Ops[1]);
808 case Instruction::ShuffleVector:
809 return ConstantExpr::getShuffleVector(Ops[0], Ops[1], Ops[2]);
Chris Lattnerf9021ff2007-02-19 20:01:23 +0000810 case Instruction::GetElementPtr:
Dan Gohmanf8dbee72009-09-07 23:54:19 +0000811 return cast<GEPOperator>(this)->isInBounds() ?
812 ConstantExpr::getInBoundsGetElementPtr(Ops[0], &Ops[1], NumOps-1) :
813 ConstantExpr::getGetElementPtr(Ops[0], &Ops[1], NumOps-1);
Reid Spencere4d87aa2006-12-23 06:05:41 +0000814 case Instruction::ICmp:
815 case Instruction::FCmp:
816 return ConstantExpr::getCompare(getPredicate(), Ops[0], Ops[1]);
Chris Lattnerb88a7fb2006-07-14 22:20:01 +0000817 default:
818 assert(getNumOperands() == 2 && "Must be binary operator?");
Dan Gohmanf8dbee72009-09-07 23:54:19 +0000819 return ConstantExpr::get(getOpcode(), Ops[0], Ops[1], SubclassData);
Chris Lattner1fe8f6b2006-07-14 19:37:40 +0000820 }
821}
822
Chris Lattner00950542001-06-06 20:29:01 +0000823
824//===----------------------------------------------------------------------===//
Chris Lattner00950542001-06-06 20:29:01 +0000825// isValueValidForType implementations
826
Reid Spencer9b11d512006-12-19 01:28:19 +0000827bool ConstantInt::isValueValidForType(const Type *Ty, uint64_t Val) {
Reid Spencera54b7cb2007-01-12 07:05:14 +0000828 unsigned NumBits = cast<IntegerType>(Ty)->getBitWidth(); // assert okay
Owen Anderson1d0be152009-08-13 21:58:54 +0000829 if (Ty == Type::getInt1Ty(Ty->getContext()))
Reid Spencera54b7cb2007-01-12 07:05:14 +0000830 return Val == 0 || Val == 1;
Reid Spencer554cec62007-02-05 23:47:56 +0000831 if (NumBits >= 64)
Reid Spencera54b7cb2007-01-12 07:05:14 +0000832 return true; // always true, has to fit in largest type
833 uint64_t Max = (1ll << NumBits) - 1;
834 return Val <= Max;
Reid Spencer9b11d512006-12-19 01:28:19 +0000835}
836
Reid Spencerb83eb642006-10-20 07:07:24 +0000837bool ConstantInt::isValueValidForType(const Type *Ty, int64_t Val) {
Reid Spencera54b7cb2007-01-12 07:05:14 +0000838 unsigned NumBits = cast<IntegerType>(Ty)->getBitWidth(); // assert okay
Owen Anderson1d0be152009-08-13 21:58:54 +0000839 if (Ty == Type::getInt1Ty(Ty->getContext()))
Reid Spencerc1030572007-01-19 21:13:56 +0000840 return Val == 0 || Val == 1 || Val == -1;
Reid Spencer554cec62007-02-05 23:47:56 +0000841 if (NumBits >= 64)
Reid Spencera54b7cb2007-01-12 07:05:14 +0000842 return true; // always true, has to fit in largest type
843 int64_t Min = -(1ll << (NumBits-1));
844 int64_t Max = (1ll << (NumBits-1)) - 1;
845 return (Val >= Min && Val <= Max);
Chris Lattner00950542001-06-06 20:29:01 +0000846}
847
Dale Johannesenf04afdb2007-08-30 00:23:21 +0000848bool ConstantFP::isValueValidForType(const Type *Ty, const APFloat& Val) {
849 // convert modifies in place, so make a copy.
850 APFloat Val2 = APFloat(Val);
Dale Johannesen23a98552008-10-09 23:00:39 +0000851 bool losesInfo;
Chris Lattnerf70c22b2004-06-17 18:19:28 +0000852 switch (Ty->getTypeID()) {
Chris Lattner00950542001-06-06 20:29:01 +0000853 default:
854 return false; // These can't be represented as floating point!
855
Dale Johannesenf04afdb2007-08-30 00:23:21 +0000856 // FIXME rounding mode needs to be more flexible
Dale Johannesen23a98552008-10-09 23:00:39 +0000857 case Type::FloatTyID: {
858 if (&Val2.getSemantics() == &APFloat::IEEEsingle)
859 return true;
860 Val2.convert(APFloat::IEEEsingle, APFloat::rmNearestTiesToEven, &losesInfo);
861 return !losesInfo;
862 }
863 case Type::DoubleTyID: {
864 if (&Val2.getSemantics() == &APFloat::IEEEsingle ||
865 &Val2.getSemantics() == &APFloat::IEEEdouble)
866 return true;
867 Val2.convert(APFloat::IEEEdouble, APFloat::rmNearestTiesToEven, &losesInfo);
868 return !losesInfo;
869 }
Dale Johannesenebbc95d2007-08-09 22:51:36 +0000870 case Type::X86_FP80TyID:
Dale Johannesen9d5f4562007-09-12 03:30:33 +0000871 return &Val2.getSemantics() == &APFloat::IEEEsingle ||
872 &Val2.getSemantics() == &APFloat::IEEEdouble ||
873 &Val2.getSemantics() == &APFloat::x87DoubleExtended;
Dale Johannesenebbc95d2007-08-09 22:51:36 +0000874 case Type::FP128TyID:
Dale Johannesen9d5f4562007-09-12 03:30:33 +0000875 return &Val2.getSemantics() == &APFloat::IEEEsingle ||
876 &Val2.getSemantics() == &APFloat::IEEEdouble ||
877 &Val2.getSemantics() == &APFloat::IEEEquad;
Dale Johannesena471c2e2007-10-11 18:07:22 +0000878 case Type::PPC_FP128TyID:
879 return &Val2.getSemantics() == &APFloat::IEEEsingle ||
880 &Val2.getSemantics() == &APFloat::IEEEdouble ||
881 &Val2.getSemantics() == &APFloat::PPCDoubleDouble;
Chris Lattner00950542001-06-06 20:29:01 +0000882 }
Chris Lattnerd74ea2b2006-05-24 17:04:05 +0000883}
Chris Lattner37bf6302001-07-20 19:16:02 +0000884
Chris Lattner531daef2001-09-07 16:46:31 +0000885//===----------------------------------------------------------------------===//
Chris Lattner531daef2001-09-07 16:46:31 +0000886// Factory Function Implementation
887
Owen Anderson9e9a0d52009-07-30 23:03:37 +0000888ConstantAggregateZero* ConstantAggregateZero::get(const Type* Ty) {
889 assert((isa<StructType>(Ty) || isa<ArrayType>(Ty) || isa<VectorType>(Ty)) &&
890 "Cannot create an aggregate zero of non-aggregate type!");
891
892 LLVMContextImpl *pImpl = Ty->getContext().pImpl;
893 // Implicitly locked.
894 return pImpl->AggZeroConstants.getOrCreate(Ty, 0);
895}
896
Dan Gohman0f8b53f2009-03-03 02:55:14 +0000897/// destroyConstant - Remove the constant from the constant table...
898///
Owen Anderson04fb7c32009-06-20 00:24:58 +0000899void ConstantAggregateZero::destroyConstant() {
Owen Anderson31c36f02009-06-17 20:10:08 +0000900 // Implicitly locked.
Owen Anderson9e9a0d52009-07-30 23:03:37 +0000901 getType()->getContext().pImpl->AggZeroConstants.remove(this);
Chris Lattner40bbeb52004-02-15 05:53:04 +0000902 destroyConstantImpl();
903}
904
Dan Gohman0f8b53f2009-03-03 02:55:14 +0000905/// destroyConstant - Remove the constant from the constant table...
906///
Owen Anderson04fb7c32009-06-20 00:24:58 +0000907void ConstantArray::destroyConstant() {
Owen Anderson1f0ba8c2009-06-19 18:34:09 +0000908 // Implicitly locked.
Owen Anderson1fd70962009-07-28 18:32:17 +0000909 getType()->getContext().pImpl->ArrayConstants.remove(this);
Chris Lattner02ec5ed2003-05-23 20:03:32 +0000910 destroyConstantImpl();
911}
912
Reid Spencer3d10b0b2007-01-26 07:37:34 +0000913/// isString - This method returns true if the array is an array of i8, and
914/// if the elements of the array are all ConstantInt's.
Chris Lattner13cfdea2004-01-14 17:06:38 +0000915bool ConstantArray::isString() const {
Reid Spencer3d10b0b2007-01-26 07:37:34 +0000916 // Check the element type for i8...
Owen Anderson1d0be152009-08-13 21:58:54 +0000917 if (getType()->getElementType() != Type::getInt8Ty(getContext()))
Chris Lattner13cfdea2004-01-14 17:06:38 +0000918 return false;
919 // Check the elements to make sure they are all integers, not constant
920 // expressions.
921 for (unsigned i = 0, e = getNumOperands(); i != e; ++i)
922 if (!isa<ConstantInt>(getOperand(i)))
923 return false;
924 return true;
925}
926
Evan Cheng22c70302006-10-26 19:15:05 +0000927/// isCString - This method returns true if the array is a string (see
Dan Gohman0f8b53f2009-03-03 02:55:14 +0000928/// isString) and it ends in a null byte \\0 and does not contains any other
Evan Cheng22c70302006-10-26 19:15:05 +0000929/// null bytes except its terminator.
Owen Anderson1ca29d32009-07-13 21:27:19 +0000930bool ConstantArray::isCString() const {
Reid Spencer3d10b0b2007-01-26 07:37:34 +0000931 // Check the element type for i8...
Owen Anderson1d0be152009-08-13 21:58:54 +0000932 if (getType()->getElementType() != Type::getInt8Ty(getContext()))
Evan Chengabf63452006-10-26 21:48:03 +0000933 return false;
Owen Anderson1ca29d32009-07-13 21:27:19 +0000934
Evan Chengabf63452006-10-26 21:48:03 +0000935 // Last element must be a null.
Owen Anderson1ca29d32009-07-13 21:27:19 +0000936 if (!getOperand(getNumOperands()-1)->isNullValue())
Evan Chengabf63452006-10-26 21:48:03 +0000937 return false;
938 // Other elements must be non-null integers.
939 for (unsigned i = 0, e = getNumOperands()-1; i != e; ++i) {
940 if (!isa<ConstantInt>(getOperand(i)))
Evan Cheng22c70302006-10-26 19:15:05 +0000941 return false;
Owen Anderson1ca29d32009-07-13 21:27:19 +0000942 if (getOperand(i)->isNullValue())
Evan Chengabf63452006-10-26 21:48:03 +0000943 return false;
944 }
Evan Cheng22c70302006-10-26 19:15:05 +0000945 return true;
946}
947
948
Dan Gohman0f8b53f2009-03-03 02:55:14 +0000949/// getAsString - If the sub-element type of this array is i8
950/// then this method converts the array to an std::string and returns it.
951/// Otherwise, it asserts out.
952///
Chris Lattner93aeea32002-08-26 17:53:56 +0000953std::string ConstantArray::getAsString() const {
Chris Lattner13cfdea2004-01-14 17:06:38 +0000954 assert(isString() && "Not a string!");
Chris Lattner93aeea32002-08-26 17:53:56 +0000955 std::string Result;
Owen Anderson45e39582008-06-24 21:58:29 +0000956 Result.reserve(getNumOperands());
Chris Lattnerc07736a2003-07-23 15:22:26 +0000957 for (unsigned i = 0, e = getNumOperands(); i != e; ++i)
Owen Andersone4f6ee52008-06-25 01:05:05 +0000958 Result.push_back((char)cast<ConstantInt>(getOperand(i))->getZExtValue());
Chris Lattner93aeea32002-08-26 17:53:56 +0000959 return Result;
960}
961
962
Chris Lattnere9bb2df2001-12-03 22:26:30 +0000963//---- ConstantStruct::get() implementation...
Chris Lattner531daef2001-09-07 16:46:31 +0000964//
Chris Lattnered468e372003-10-05 00:17:43 +0000965
Chris Lattner31f84992003-11-21 20:23:48 +0000966namespace llvm {
Misha Brukmanfd939082005-04-21 23:48:37 +0000967
Chris Lattner531daef2001-09-07 16:46:31 +0000968}
Chris Lattner6a57baa2001-10-03 15:39:36 +0000969
Chris Lattnerf5ec48d2001-10-13 06:57:33 +0000970// destroyConstant - Remove the constant from the constant table...
Chris Lattner6a57baa2001-10-03 15:39:36 +0000971//
Owen Anderson04fb7c32009-06-20 00:24:58 +0000972void ConstantStruct::destroyConstant() {
Owen Anderson1f0ba8c2009-06-19 18:34:09 +0000973 // Implicitly locked.
Owen Anderson8fa33382009-07-27 22:29:26 +0000974 getType()->getContext().pImpl->StructConstants.remove(this);
Chris Lattnerf5ec48d2001-10-13 06:57:33 +0000975 destroyConstantImpl();
976}
Chris Lattner6a57baa2001-10-03 15:39:36 +0000977
Brian Gaeke715c90b2004-08-20 06:00:58 +0000978// destroyConstant - Remove the constant from the constant table...
979//
Owen Anderson04fb7c32009-06-20 00:24:58 +0000980void ConstantVector::destroyConstant() {
Owen Anderson1f0ba8c2009-06-19 18:34:09 +0000981 // Implicitly locked.
Owen Andersonaf7ec972009-07-28 21:19:26 +0000982 getType()->getContext().pImpl->VectorConstants.remove(this);
Brian Gaeke715c90b2004-08-20 06:00:58 +0000983 destroyConstantImpl();
984}
985
Dan Gohmanfa73ea22007-05-24 14:36:04 +0000986/// This function will return true iff every element in this vector constant
Jim Laskeyfa301822007-01-12 22:39:14 +0000987/// is set to all ones.
988/// @returns true iff this constant's emements are all set to all ones.
989/// @brief Determine if the value is all ones.
Reid Spencer9d6565a2007-02-15 02:26:10 +0000990bool ConstantVector::isAllOnesValue() const {
Jim Laskeyfa301822007-01-12 22:39:14 +0000991 // Check out first element.
992 const Constant *Elt = getOperand(0);
993 const ConstantInt *CI = dyn_cast<ConstantInt>(Elt);
994 if (!CI || !CI->isAllOnesValue()) return false;
995 // Then make sure all remaining elements point to the same value.
996 for (unsigned I = 1, E = getNumOperands(); I < E; ++I) {
997 if (getOperand(I) != Elt) return false;
998 }
999 return true;
1000}
1001
Dan Gohman3b7cf0a2007-10-17 17:51:30 +00001002/// getSplatValue - If this is a splat constant, where all of the
1003/// elements have the same value, return that value. Otherwise return null.
1004Constant *ConstantVector::getSplatValue() {
1005 // Check out first element.
1006 Constant *Elt = getOperand(0);
1007 // Then make sure all remaining elements point to the same value.
1008 for (unsigned I = 1, E = getNumOperands(); I < E; ++I)
1009 if (getOperand(I) != Elt) return 0;
1010 return Elt;
1011}
1012
Chris Lattnere9bb2df2001-12-03 22:26:30 +00001013//---- ConstantPointerNull::get() implementation...
Chris Lattnerf5ec48d2001-10-13 06:57:33 +00001014//
Chris Lattner02ec5ed2003-05-23 20:03:32 +00001015
Owen Anderson04fb7c32009-06-20 00:24:58 +00001016ConstantPointerNull *ConstantPointerNull::get(const PointerType *Ty) {
Owen Anderson31c36f02009-06-17 20:10:08 +00001017 // Implicitly locked.
Owen Anderson7e3142b2009-07-31 22:45:43 +00001018 return Ty->getContext().pImpl->NullPtrConstants.getOrCreate(Ty, 0);
Chris Lattner6a57baa2001-10-03 15:39:36 +00001019}
1020
Chris Lattner41661fd2002-08-18 00:40:04 +00001021// destroyConstant - Remove the constant from the constant table...
1022//
Owen Anderson04fb7c32009-06-20 00:24:58 +00001023void ConstantPointerNull::destroyConstant() {
Owen Anderson1f0ba8c2009-06-19 18:34:09 +00001024 // Implicitly locked.
Owen Anderson7e3142b2009-07-31 22:45:43 +00001025 getType()->getContext().pImpl->NullPtrConstants.remove(this);
Chris Lattner41661fd2002-08-18 00:40:04 +00001026 destroyConstantImpl();
1027}
1028
1029
Chris Lattnerb9f18592004-10-16 18:07:16 +00001030//---- UndefValue::get() implementation...
1031//
1032
Owen Anderson04fb7c32009-06-20 00:24:58 +00001033UndefValue *UndefValue::get(const Type *Ty) {
1034 // Implicitly locked.
Owen Anderson7e3142b2009-07-31 22:45:43 +00001035 return Ty->getContext().pImpl->UndefValueConstants.getOrCreate(Ty, 0);
Chris Lattnerb9f18592004-10-16 18:07:16 +00001036}
1037
1038// destroyConstant - Remove the constant from the constant table.
1039//
Owen Anderson04fb7c32009-06-20 00:24:58 +00001040void UndefValue::destroyConstant() {
Owen Anderson31c36f02009-06-17 20:10:08 +00001041 // Implicitly locked.
Owen Anderson7e3142b2009-07-31 22:45:43 +00001042 getType()->getContext().pImpl->UndefValueConstants.remove(this);
Chris Lattnerb9f18592004-10-16 18:07:16 +00001043 destroyConstantImpl();
1044}
1045
Vikram S. Adve345e0cf2002-07-14 23:13:17 +00001046//---- ConstantExpr::get() implementations...
Vikram S. Adve345e0cf2002-07-14 23:13:17 +00001047//
Reid Spencer79e21d32006-12-31 05:26:44 +00001048
Reid Spencer3da59db2006-11-27 01:05:10 +00001049/// This is a utility function to handle folding of casts and lookup of the
Duncan Sands66a1a052008-03-30 19:38:55 +00001050/// cast in the ExprConstants map. It is used by the various get* methods below.
Reid Spencer3da59db2006-11-27 01:05:10 +00001051static inline Constant *getFoldedCast(
Owen Anderson04fb7c32009-06-20 00:24:58 +00001052 Instruction::CastOps opc, Constant *C, const Type *Ty) {
Chris Lattner9eacf8a2003-10-07 22:19:19 +00001053 assert(Ty->isFirstClassType() && "Cannot cast to an aggregate type!");
Reid Spencer3da59db2006-11-27 01:05:10 +00001054 // Fold a few common cases
Owen Anderson5defacc2009-07-31 17:39:07 +00001055 if (Constant *FC = ConstantFoldCastInstruction(Ty->getContext(), opc, C, Ty))
Reid Spencer3da59db2006-11-27 01:05:10 +00001056 return FC;
Chris Lattnerd628f6a2003-04-17 19:24:48 +00001057
Owen Andersond03eecd2009-08-04 20:25:11 +00001058 LLVMContextImpl *pImpl = Ty->getContext().pImpl;
1059
Vikram S. Adved0b1bb02002-07-15 18:19:33 +00001060 // Look up the constant in the table first to ensure uniqueness
Chris Lattner9bc02a42003-05-13 21:37:02 +00001061 std::vector<Constant*> argVec(1, C);
Reid Spencer077d0eb2006-12-04 05:19:50 +00001062 ExprMapKeyType Key(opc, argVec);
Owen Anderson3e456ab2009-06-17 18:40:29 +00001063
Owen Anderson31c36f02009-06-17 20:10:08 +00001064 // Implicitly locked.
Owen Andersond03eecd2009-08-04 20:25:11 +00001065 return pImpl->ExprConstants.getOrCreate(Ty, Key);
Vikram S. Adve345e0cf2002-07-14 23:13:17 +00001066}
Reid Spencer7858b332006-12-05 19:14:13 +00001067
Owen Anderson04fb7c32009-06-20 00:24:58 +00001068Constant *ConstantExpr::getCast(unsigned oc, Constant *C, const Type *Ty) {
Reid Spencer3da59db2006-11-27 01:05:10 +00001069 Instruction::CastOps opc = Instruction::CastOps(oc);
1070 assert(Instruction::isCast(opc) && "opcode out of range");
1071 assert(C && Ty && "Null arguments to getCast");
1072 assert(Ty->isFirstClassType() && "Cannot cast to an aggregate type!");
1073
1074 switch (opc) {
1075 default:
Torok Edwinc23197a2009-07-14 16:55:14 +00001076 llvm_unreachable("Invalid cast opcode");
Reid Spencer3da59db2006-11-27 01:05:10 +00001077 break;
Owen Anderson04fb7c32009-06-20 00:24:58 +00001078 case Instruction::Trunc: return getTrunc(C, Ty);
1079 case Instruction::ZExt: return getZExt(C, Ty);
1080 case Instruction::SExt: return getSExt(C, Ty);
1081 case Instruction::FPTrunc: return getFPTrunc(C, Ty);
1082 case Instruction::FPExt: return getFPExtend(C, Ty);
1083 case Instruction::UIToFP: return getUIToFP(C, Ty);
1084 case Instruction::SIToFP: return getSIToFP(C, Ty);
1085 case Instruction::FPToUI: return getFPToUI(C, Ty);
1086 case Instruction::FPToSI: return getFPToSI(C, Ty);
1087 case Instruction::PtrToInt: return getPtrToInt(C, Ty);
1088 case Instruction::IntToPtr: return getIntToPtr(C, Ty);
1089 case Instruction::BitCast: return getBitCast(C, Ty);
Chris Lattnerf5ac6c22005-01-01 15:59:57 +00001090 }
Reid Spencer3da59db2006-11-27 01:05:10 +00001091 return 0;
Reid Spencer7858b332006-12-05 19:14:13 +00001092}
1093
Reid Spencer848414e2006-12-04 20:17:56 +00001094Constant *ConstantExpr::getZExtOrBitCast(Constant *C, const Type *Ty) {
Dan Gohman6de29f82009-06-15 22:12:54 +00001095 if (C->getType()->getScalarSizeInBits() == Ty->getScalarSizeInBits())
Reid Spencer848414e2006-12-04 20:17:56 +00001096 return getCast(Instruction::BitCast, C, Ty);
1097 return getCast(Instruction::ZExt, C, Ty);
1098}
1099
Owen Anderson04fb7c32009-06-20 00:24:58 +00001100Constant *ConstantExpr::getSExtOrBitCast(Constant *C, const Type *Ty) {
Dan Gohman6de29f82009-06-15 22:12:54 +00001101 if (C->getType()->getScalarSizeInBits() == Ty->getScalarSizeInBits())
Owen Anderson04fb7c32009-06-20 00:24:58 +00001102 return getCast(Instruction::BitCast, C, Ty);
1103 return getCast(Instruction::SExt, C, Ty);
Reid Spencer848414e2006-12-04 20:17:56 +00001104}
1105
1106Constant *ConstantExpr::getTruncOrBitCast(Constant *C, const Type *Ty) {
Dan Gohman6de29f82009-06-15 22:12:54 +00001107 if (C->getType()->getScalarSizeInBits() == Ty->getScalarSizeInBits())
Reid Spencer848414e2006-12-04 20:17:56 +00001108 return getCast(Instruction::BitCast, C, Ty);
1109 return getCast(Instruction::Trunc, C, Ty);
1110}
1111
Owen Anderson04fb7c32009-06-20 00:24:58 +00001112Constant *ConstantExpr::getPointerCast(Constant *S, const Type *Ty) {
Reid Spencerc0459fb2006-12-05 03:25:26 +00001113 assert(isa<PointerType>(S->getType()) && "Invalid cast");
Chris Lattner42a75512007-01-15 02:27:26 +00001114 assert((Ty->isInteger() || isa<PointerType>(Ty)) && "Invalid cast");
Reid Spencerc0459fb2006-12-05 03:25:26 +00001115
Chris Lattner42a75512007-01-15 02:27:26 +00001116 if (Ty->isInteger())
Owen Anderson04fb7c32009-06-20 00:24:58 +00001117 return getCast(Instruction::PtrToInt, S, Ty);
1118 return getCast(Instruction::BitCast, S, Ty);
Reid Spencerc0459fb2006-12-05 03:25:26 +00001119}
1120
Reid Spencer84f3eab2006-12-12 00:51:07 +00001121Constant *ConstantExpr::getIntegerCast(Constant *C, const Type *Ty,
1122 bool isSigned) {
Dan Gohman6de29f82009-06-15 22:12:54 +00001123 assert(C->getType()->isIntOrIntVector() &&
1124 Ty->isIntOrIntVector() && "Invalid cast");
1125 unsigned SrcBits = C->getType()->getScalarSizeInBits();
1126 unsigned DstBits = Ty->getScalarSizeInBits();
Reid Spencer84f3eab2006-12-12 00:51:07 +00001127 Instruction::CastOps opcode =
1128 (SrcBits == DstBits ? Instruction::BitCast :
1129 (SrcBits > DstBits ? Instruction::Trunc :
1130 (isSigned ? Instruction::SExt : Instruction::ZExt)));
1131 return getCast(opcode, C, Ty);
1132}
1133
1134Constant *ConstantExpr::getFPCast(Constant *C, const Type *Ty) {
Dan Gohman6de29f82009-06-15 22:12:54 +00001135 assert(C->getType()->isFPOrFPVector() && Ty->isFPOrFPVector() &&
Reid Spencer84f3eab2006-12-12 00:51:07 +00001136 "Invalid cast");
Dan Gohman6de29f82009-06-15 22:12:54 +00001137 unsigned SrcBits = C->getType()->getScalarSizeInBits();
1138 unsigned DstBits = Ty->getScalarSizeInBits();
Reid Spencerf25212a2006-12-12 05:38:50 +00001139 if (SrcBits == DstBits)
1140 return C; // Avoid a useless cast
Reid Spencer84f3eab2006-12-12 00:51:07 +00001141 Instruction::CastOps opcode =
Reid Spencerf25212a2006-12-12 05:38:50 +00001142 (SrcBits > DstBits ? Instruction::FPTrunc : Instruction::FPExt);
Reid Spencer84f3eab2006-12-12 00:51:07 +00001143 return getCast(opcode, C, Ty);
1144}
1145
Owen Anderson04fb7c32009-06-20 00:24:58 +00001146Constant *ConstantExpr::getTrunc(Constant *C, const Type *Ty) {
Dan Gohman6de29f82009-06-15 22:12:54 +00001147#ifndef NDEBUG
1148 bool fromVec = C->getType()->getTypeID() == Type::VectorTyID;
1149 bool toVec = Ty->getTypeID() == Type::VectorTyID;
1150#endif
1151 assert((fromVec == toVec) && "Cannot convert from scalar to/from vector");
1152 assert(C->getType()->isIntOrIntVector() && "Trunc operand must be integer");
1153 assert(Ty->isIntOrIntVector() && "Trunc produces only integral");
1154 assert(C->getType()->getScalarSizeInBits() > Ty->getScalarSizeInBits()&&
Reid Spencer3da59db2006-11-27 01:05:10 +00001155 "SrcTy must be larger than DestTy for Trunc!");
1156
Owen Anderson04fb7c32009-06-20 00:24:58 +00001157 return getFoldedCast(Instruction::Trunc, C, Ty);
Reid Spencer3da59db2006-11-27 01:05:10 +00001158}
1159
Owen Anderson04fb7c32009-06-20 00:24:58 +00001160Constant *ConstantExpr::getSExt(Constant *C, const Type *Ty) {
Dan Gohman6de29f82009-06-15 22:12:54 +00001161#ifndef NDEBUG
1162 bool fromVec = C->getType()->getTypeID() == Type::VectorTyID;
1163 bool toVec = Ty->getTypeID() == Type::VectorTyID;
1164#endif
1165 assert((fromVec == toVec) && "Cannot convert from scalar to/from vector");
1166 assert(C->getType()->isIntOrIntVector() && "SExt operand must be integral");
1167 assert(Ty->isIntOrIntVector() && "SExt produces only integer");
1168 assert(C->getType()->getScalarSizeInBits() < Ty->getScalarSizeInBits()&&
Reid Spencer3da59db2006-11-27 01:05:10 +00001169 "SrcTy must be smaller than DestTy for SExt!");
1170
Owen Anderson04fb7c32009-06-20 00:24:58 +00001171 return getFoldedCast(Instruction::SExt, C, Ty);
Chris Lattnerd144f422004-04-04 23:20:30 +00001172}
1173
Owen Anderson04fb7c32009-06-20 00:24:58 +00001174Constant *ConstantExpr::getZExt(Constant *C, const Type *Ty) {
Dan Gohman6de29f82009-06-15 22:12:54 +00001175#ifndef NDEBUG
1176 bool fromVec = C->getType()->getTypeID() == Type::VectorTyID;
1177 bool toVec = Ty->getTypeID() == Type::VectorTyID;
1178#endif
1179 assert((fromVec == toVec) && "Cannot convert from scalar to/from vector");
1180 assert(C->getType()->isIntOrIntVector() && "ZEXt operand must be integral");
1181 assert(Ty->isIntOrIntVector() && "ZExt produces only integer");
1182 assert(C->getType()->getScalarSizeInBits() < Ty->getScalarSizeInBits()&&
Reid Spencer3da59db2006-11-27 01:05:10 +00001183 "SrcTy must be smaller than DestTy for ZExt!");
1184
Owen Anderson04fb7c32009-06-20 00:24:58 +00001185 return getFoldedCast(Instruction::ZExt, C, Ty);
Reid Spencer3da59db2006-11-27 01:05:10 +00001186}
1187
Owen Anderson04fb7c32009-06-20 00:24:58 +00001188Constant *ConstantExpr::getFPTrunc(Constant *C, const Type *Ty) {
Dan Gohman6de29f82009-06-15 22:12:54 +00001189#ifndef NDEBUG
1190 bool fromVec = C->getType()->getTypeID() == Type::VectorTyID;
1191 bool toVec = Ty->getTypeID() == Type::VectorTyID;
1192#endif
1193 assert((fromVec == toVec) && "Cannot convert from scalar to/from vector");
1194 assert(C->getType()->isFPOrFPVector() && Ty->isFPOrFPVector() &&
1195 C->getType()->getScalarSizeInBits() > Ty->getScalarSizeInBits()&&
Reid Spencer3da59db2006-11-27 01:05:10 +00001196 "This is an illegal floating point truncation!");
Owen Anderson04fb7c32009-06-20 00:24:58 +00001197 return getFoldedCast(Instruction::FPTrunc, C, Ty);
Reid Spencer3da59db2006-11-27 01:05:10 +00001198}
1199
Owen Anderson04fb7c32009-06-20 00:24:58 +00001200Constant *ConstantExpr::getFPExtend(Constant *C, const Type *Ty) {
Dan Gohman6de29f82009-06-15 22:12:54 +00001201#ifndef NDEBUG
1202 bool fromVec = C->getType()->getTypeID() == Type::VectorTyID;
1203 bool toVec = Ty->getTypeID() == Type::VectorTyID;
1204#endif
1205 assert((fromVec == toVec) && "Cannot convert from scalar to/from vector");
1206 assert(C->getType()->isFPOrFPVector() && Ty->isFPOrFPVector() &&
1207 C->getType()->getScalarSizeInBits() < Ty->getScalarSizeInBits()&&
Reid Spencer3da59db2006-11-27 01:05:10 +00001208 "This is an illegal floating point extension!");
Owen Anderson04fb7c32009-06-20 00:24:58 +00001209 return getFoldedCast(Instruction::FPExt, C, Ty);
Reid Spencer3da59db2006-11-27 01:05:10 +00001210}
1211
Owen Anderson04fb7c32009-06-20 00:24:58 +00001212Constant *ConstantExpr::getUIToFP(Constant *C, const Type *Ty) {
Devang Patelb6dc9352008-11-03 23:20:04 +00001213#ifndef NDEBUG
Nate Begemanb348d182007-11-17 03:58:34 +00001214 bool fromVec = C->getType()->getTypeID() == Type::VectorTyID;
1215 bool toVec = Ty->getTypeID() == Type::VectorTyID;
Devang Patelb6dc9352008-11-03 23:20:04 +00001216#endif
Nate Begemanb348d182007-11-17 03:58:34 +00001217 assert((fromVec == toVec) && "Cannot convert from scalar to/from vector");
1218 assert(C->getType()->isIntOrIntVector() && Ty->isFPOrFPVector() &&
1219 "This is an illegal uint to floating point cast!");
Owen Anderson04fb7c32009-06-20 00:24:58 +00001220 return getFoldedCast(Instruction::UIToFP, C, Ty);
Reid Spencer3da59db2006-11-27 01:05:10 +00001221}
1222
Owen Anderson04fb7c32009-06-20 00:24:58 +00001223Constant *ConstantExpr::getSIToFP(Constant *C, const Type *Ty) {
Devang Patelb6dc9352008-11-03 23:20:04 +00001224#ifndef NDEBUG
Nate Begemanb348d182007-11-17 03:58:34 +00001225 bool fromVec = C->getType()->getTypeID() == Type::VectorTyID;
1226 bool toVec = Ty->getTypeID() == Type::VectorTyID;
Devang Patelb6dc9352008-11-03 23:20:04 +00001227#endif
Nate Begemanb348d182007-11-17 03:58:34 +00001228 assert((fromVec == toVec) && "Cannot convert from scalar to/from vector");
1229 assert(C->getType()->isIntOrIntVector() && Ty->isFPOrFPVector() &&
Reid Spencer3da59db2006-11-27 01:05:10 +00001230 "This is an illegal sint to floating point cast!");
Owen Anderson04fb7c32009-06-20 00:24:58 +00001231 return getFoldedCast(Instruction::SIToFP, C, Ty);
Reid Spencer3da59db2006-11-27 01:05:10 +00001232}
1233
Owen Anderson04fb7c32009-06-20 00:24:58 +00001234Constant *ConstantExpr::getFPToUI(Constant *C, const Type *Ty) {
Devang Patelb6dc9352008-11-03 23:20:04 +00001235#ifndef NDEBUG
Nate Begemanb348d182007-11-17 03:58:34 +00001236 bool fromVec = C->getType()->getTypeID() == Type::VectorTyID;
1237 bool toVec = Ty->getTypeID() == Type::VectorTyID;
Devang Patelb6dc9352008-11-03 23:20:04 +00001238#endif
Nate Begemanb348d182007-11-17 03:58:34 +00001239 assert((fromVec == toVec) && "Cannot convert from scalar to/from vector");
1240 assert(C->getType()->isFPOrFPVector() && Ty->isIntOrIntVector() &&
1241 "This is an illegal floating point to uint cast!");
Owen Anderson04fb7c32009-06-20 00:24:58 +00001242 return getFoldedCast(Instruction::FPToUI, C, Ty);
Reid Spencer3da59db2006-11-27 01:05:10 +00001243}
1244
Owen Anderson04fb7c32009-06-20 00:24:58 +00001245Constant *ConstantExpr::getFPToSI(Constant *C, const Type *Ty) {
Devang Patelb6dc9352008-11-03 23:20:04 +00001246#ifndef NDEBUG
Nate Begemanb348d182007-11-17 03:58:34 +00001247 bool fromVec = C->getType()->getTypeID() == Type::VectorTyID;
1248 bool toVec = Ty->getTypeID() == Type::VectorTyID;
Devang Patelb6dc9352008-11-03 23:20:04 +00001249#endif
Nate Begemanb348d182007-11-17 03:58:34 +00001250 assert((fromVec == toVec) && "Cannot convert from scalar to/from vector");
1251 assert(C->getType()->isFPOrFPVector() && Ty->isIntOrIntVector() &&
1252 "This is an illegal floating point to sint cast!");
Owen Anderson04fb7c32009-06-20 00:24:58 +00001253 return getFoldedCast(Instruction::FPToSI, C, Ty);
Reid Spencer3da59db2006-11-27 01:05:10 +00001254}
1255
Owen Anderson04fb7c32009-06-20 00:24:58 +00001256Constant *ConstantExpr::getPtrToInt(Constant *C, const Type *DstTy) {
Reid Spencer3da59db2006-11-27 01:05:10 +00001257 assert(isa<PointerType>(C->getType()) && "PtrToInt source must be pointer");
Chris Lattner42a75512007-01-15 02:27:26 +00001258 assert(DstTy->isInteger() && "PtrToInt destination must be integral");
Owen Anderson04fb7c32009-06-20 00:24:58 +00001259 return getFoldedCast(Instruction::PtrToInt, C, DstTy);
Reid Spencer3da59db2006-11-27 01:05:10 +00001260}
1261
Owen Anderson04fb7c32009-06-20 00:24:58 +00001262Constant *ConstantExpr::getIntToPtr(Constant *C, const Type *DstTy) {
Chris Lattner42a75512007-01-15 02:27:26 +00001263 assert(C->getType()->isInteger() && "IntToPtr source must be integral");
Reid Spencer3da59db2006-11-27 01:05:10 +00001264 assert(isa<PointerType>(DstTy) && "IntToPtr destination must be a pointer");
Owen Anderson04fb7c32009-06-20 00:24:58 +00001265 return getFoldedCast(Instruction::IntToPtr, C, DstTy);
Reid Spencer3da59db2006-11-27 01:05:10 +00001266}
1267
Owen Anderson04fb7c32009-06-20 00:24:58 +00001268Constant *ConstantExpr::getBitCast(Constant *C, const Type *DstTy) {
Reid Spencer3da59db2006-11-27 01:05:10 +00001269 // BitCast implies a no-op cast of type only. No bits change. However, you
1270 // can't cast pointers to anything but pointers.
Devang Patelb6dc9352008-11-03 23:20:04 +00001271#ifndef NDEBUG
Reid Spencer3da59db2006-11-27 01:05:10 +00001272 const Type *SrcTy = C->getType();
1273 assert((isa<PointerType>(SrcTy) == isa<PointerType>(DstTy)) &&
Reid Spencer848414e2006-12-04 20:17:56 +00001274 "BitCast cannot cast pointer to non-pointer and vice versa");
Reid Spencer3da59db2006-11-27 01:05:10 +00001275
1276 // Now we know we're not dealing with mismatched pointer casts (ptr->nonptr
1277 // or nonptr->ptr). For all the other types, the cast is okay if source and
1278 // destination bit widths are identical.
1279 unsigned SrcBitSize = SrcTy->getPrimitiveSizeInBits();
1280 unsigned DstBitSize = DstTy->getPrimitiveSizeInBits();
Devang Patelb6dc9352008-11-03 23:20:04 +00001281#endif
Chris Lattnercf1bb082009-03-08 04:06:26 +00001282 assert(SrcBitSize == DstBitSize && "BitCast requires types of same width");
Chris Lattner8c7f24a2009-03-21 06:55:54 +00001283
1284 // It is common to ask for a bitcast of a value to its own type, handle this
1285 // speedily.
1286 if (C->getType() == DstTy) return C;
1287
Owen Anderson04fb7c32009-06-20 00:24:58 +00001288 return getFoldedCast(Instruction::BitCast, C, DstTy);
Chris Lattnerd144f422004-04-04 23:20:30 +00001289}
1290
Chris Lattnered468e372003-10-05 00:17:43 +00001291Constant *ConstantExpr::getTy(const Type *ReqTy, unsigned Opcode,
Dan Gohmanf8dbee72009-09-07 23:54:19 +00001292 Constant *C1, Constant *C2,
1293 unsigned Flags) {
Chris Lattnerf31f5832003-05-21 17:49:25 +00001294 // Check the operands for consistency first
Reid Spencer0a783f72006-11-02 01:53:59 +00001295 assert(Opcode >= Instruction::BinaryOpsBegin &&
1296 Opcode < Instruction::BinaryOpsEnd &&
Chris Lattnerf31f5832003-05-21 17:49:25 +00001297 "Invalid opcode in binary constant expression");
1298 assert(C1->getType() == C2->getType() &&
1299 "Operand types in binary constant expression should match");
Chris Lattnered468e372003-10-05 00:17:43 +00001300
Owen Anderson1d0be152009-08-13 21:58:54 +00001301 if (ReqTy == C1->getType() || ReqTy == Type::getInt1Ty(ReqTy->getContext()))
Owen Anderson5defacc2009-07-31 17:39:07 +00001302 if (Constant *FC = ConstantFoldBinaryInstruction(ReqTy->getContext(),
1303 Opcode, C1, C2))
Chris Lattnered468e372003-10-05 00:17:43 +00001304 return FC; // Fold a few common cases...
Chris Lattnerd628f6a2003-04-17 19:24:48 +00001305
Chris Lattner9bc02a42003-05-13 21:37:02 +00001306 std::vector<Constant*> argVec(1, C1); argVec.push_back(C2);
Dan Gohmanf8dbee72009-09-07 23:54:19 +00001307 ExprMapKeyType Key(Opcode, argVec, 0, Flags);
Owen Anderson31c36f02009-06-17 20:10:08 +00001308
Owen Andersond03eecd2009-08-04 20:25:11 +00001309 LLVMContextImpl *pImpl = ReqTy->getContext().pImpl;
1310
Owen Anderson04fb7c32009-06-20 00:24:58 +00001311 // Implicitly locked.
Owen Andersond03eecd2009-08-04 20:25:11 +00001312 return pImpl->ExprConstants.getOrCreate(ReqTy, Key);
Vikram S. Adve345e0cf2002-07-14 23:13:17 +00001313}
1314
Reid Spencere4d87aa2006-12-23 06:05:41 +00001315Constant *ConstantExpr::getCompareTy(unsigned short predicate,
Nate Begemanff795a82008-07-25 17:56:27 +00001316 Constant *C1, Constant *C2) {
Reid Spencere4d87aa2006-12-23 06:05:41 +00001317 switch (predicate) {
Torok Edwinc23197a2009-07-14 16:55:14 +00001318 default: llvm_unreachable("Invalid CmpInst predicate");
Nate Begemanb5557ab2008-07-25 17:35:37 +00001319 case CmpInst::FCMP_FALSE: case CmpInst::FCMP_OEQ: case CmpInst::FCMP_OGT:
1320 case CmpInst::FCMP_OGE: case CmpInst::FCMP_OLT: case CmpInst::FCMP_OLE:
1321 case CmpInst::FCMP_ONE: case CmpInst::FCMP_ORD: case CmpInst::FCMP_UNO:
1322 case CmpInst::FCMP_UEQ: case CmpInst::FCMP_UGT: case CmpInst::FCMP_UGE:
1323 case CmpInst::FCMP_ULT: case CmpInst::FCMP_ULE: case CmpInst::FCMP_UNE:
1324 case CmpInst::FCMP_TRUE:
Nick Lewycky7f6aa2b2009-07-08 03:04:38 +00001325 return getFCmp(predicate, C1, C2);
1326
Nate Begemanb5557ab2008-07-25 17:35:37 +00001327 case CmpInst::ICMP_EQ: case CmpInst::ICMP_NE: case CmpInst::ICMP_UGT:
1328 case CmpInst::ICMP_UGE: case CmpInst::ICMP_ULT: case CmpInst::ICMP_ULE:
1329 case CmpInst::ICMP_SGT: case CmpInst::ICMP_SGE: case CmpInst::ICMP_SLT:
1330 case CmpInst::ICMP_SLE:
Nick Lewycky7f6aa2b2009-07-08 03:04:38 +00001331 return getICmp(predicate, C1, C2);
Reid Spencere4d87aa2006-12-23 06:05:41 +00001332 }
Reid Spencer67263fe2006-12-04 21:35:24 +00001333}
1334
Dan Gohmanf8dbee72009-09-07 23:54:19 +00001335Constant *ConstantExpr::get(unsigned Opcode, Constant *C1, Constant *C2,
1336 unsigned Flags) {
Dan Gohmanae3a0be2009-06-04 22:49:04 +00001337 // API compatibility: Adjust integer opcodes to floating-point opcodes.
1338 if (C1->getType()->isFPOrFPVector()) {
1339 if (Opcode == Instruction::Add) Opcode = Instruction::FAdd;
1340 else if (Opcode == Instruction::Sub) Opcode = Instruction::FSub;
1341 else if (Opcode == Instruction::Mul) Opcode = Instruction::FMul;
1342 }
Chris Lattner91b362b2004-08-17 17:28:46 +00001343#ifndef NDEBUG
1344 switch (Opcode) {
Dan Gohmanae3a0be2009-06-04 22:49:04 +00001345 case Instruction::Add:
Reid Spencer0a783f72006-11-02 01:53:59 +00001346 case Instruction::Sub:
Dan Gohmanae3a0be2009-06-04 22:49:04 +00001347 case Instruction::Mul:
Chris Lattner91b362b2004-08-17 17:28:46 +00001348 assert(C1->getType() == C2->getType() && "Op types should be identical!");
Dan Gohmanae3a0be2009-06-04 22:49:04 +00001349 assert(C1->getType()->isIntOrIntVector() &&
1350 "Tried to create an integer operation on a non-integer type!");
1351 break;
1352 case Instruction::FAdd:
1353 case Instruction::FSub:
1354 case Instruction::FMul:
1355 assert(C1->getType() == C2->getType() && "Op types should be identical!");
1356 assert(C1->getType()->isFPOrFPVector() &&
1357 "Tried to create a floating-point operation on a "
1358 "non-floating-point type!");
Chris Lattner91b362b2004-08-17 17:28:46 +00001359 break;
Reid Spencer1628cec2006-10-26 06:15:43 +00001360 case Instruction::UDiv:
1361 case Instruction::SDiv:
1362 assert(C1->getType() == C2->getType() && "Op types should be identical!");
Dan Gohmanf57478f2009-06-15 22:25:12 +00001363 assert(C1->getType()->isIntOrIntVector() &&
Reid Spencer1628cec2006-10-26 06:15:43 +00001364 "Tried to create an arithmetic operation on a non-arithmetic type!");
1365 break;
1366 case Instruction::FDiv:
1367 assert(C1->getType() == C2->getType() && "Op types should be identical!");
Dan Gohmanf57478f2009-06-15 22:25:12 +00001368 assert(C1->getType()->isFPOrFPVector() &&
1369 "Tried to create an arithmetic operation on a non-arithmetic type!");
Reid Spencer1628cec2006-10-26 06:15:43 +00001370 break;
Reid Spencer0a783f72006-11-02 01:53:59 +00001371 case Instruction::URem:
1372 case Instruction::SRem:
1373 assert(C1->getType() == C2->getType() && "Op types should be identical!");
Dan Gohmanf57478f2009-06-15 22:25:12 +00001374 assert(C1->getType()->isIntOrIntVector() &&
Reid Spencer0a783f72006-11-02 01:53:59 +00001375 "Tried to create an arithmetic operation on a non-arithmetic type!");
1376 break;
1377 case Instruction::FRem:
1378 assert(C1->getType() == C2->getType() && "Op types should be identical!");
Dan Gohmanf57478f2009-06-15 22:25:12 +00001379 assert(C1->getType()->isFPOrFPVector() &&
1380 "Tried to create an arithmetic operation on a non-arithmetic type!");
Reid Spencer0a783f72006-11-02 01:53:59 +00001381 break;
Chris Lattner91b362b2004-08-17 17:28:46 +00001382 case Instruction::And:
1383 case Instruction::Or:
1384 case Instruction::Xor:
1385 assert(C1->getType() == C2->getType() && "Op types should be identical!");
Dan Gohmanf57478f2009-06-15 22:25:12 +00001386 assert(C1->getType()->isIntOrIntVector() &&
Misha Brukman1bae2912005-01-27 06:46:38 +00001387 "Tried to create a logical operation on a non-integral type!");
Chris Lattner91b362b2004-08-17 17:28:46 +00001388 break;
Chris Lattner91b362b2004-08-17 17:28:46 +00001389 case Instruction::Shl:
Reid Spencer3822ff52006-11-08 06:47:33 +00001390 case Instruction::LShr:
1391 case Instruction::AShr:
Reid Spencer832254e2007-02-02 02:16:23 +00001392 assert(C1->getType() == C2->getType() && "Op types should be identical!");
Dan Gohmanc1317932009-03-14 17:09:17 +00001393 assert(C1->getType()->isIntOrIntVector() &&
Chris Lattner91b362b2004-08-17 17:28:46 +00001394 "Tried to create a shift operation on a non-integer type!");
1395 break;
1396 default:
1397 break;
1398 }
1399#endif
1400
Dan Gohmanf8dbee72009-09-07 23:54:19 +00001401 return getTy(C1->getType(), Opcode, C1, C2, Flags);
Reid Spencer67263fe2006-12-04 21:35:24 +00001402}
1403
Owen Andersonbaf3c402009-07-29 18:55:55 +00001404Constant* ConstantExpr::getSizeOf(const Type* Ty) {
1405 // sizeof is implemented as: (i64) gep (Ty*)null, 1
1406 // Note that a non-inbounds gep is used, as null isn't within any object.
Owen Anderson1d0be152009-08-13 21:58:54 +00001407 Constant *GEPIdx = ConstantInt::get(Type::getInt32Ty(Ty->getContext()), 1);
Owen Andersonbaf3c402009-07-29 18:55:55 +00001408 Constant *GEP = getGetElementPtr(
Owen Andersona7235ea2009-07-31 20:28:14 +00001409 Constant::getNullValue(PointerType::getUnqual(Ty)), &GEPIdx, 1);
Owen Anderson1d0be152009-08-13 21:58:54 +00001410 return getCast(Instruction::PtrToInt, GEP,
1411 Type::getInt64Ty(Ty->getContext()));
Owen Andersonbaf3c402009-07-29 18:55:55 +00001412}
1413
1414Constant* ConstantExpr::getAlignOf(const Type* Ty) {
Owen Andersonbaf3c402009-07-29 18:55:55 +00001415 // alignof is implemented as: (i64) gep ({i8,Ty}*)null, 0, 1
Dan Gohmane2574d32009-08-11 17:57:01 +00001416 // Note that a non-inbounds gep is used, as null isn't within any object.
Owen Andersond7f2a6c2009-08-05 23:16:16 +00001417 const Type *AligningTy = StructType::get(Ty->getContext(),
Owen Anderson1d0be152009-08-13 21:58:54 +00001418 Type::getInt8Ty(Ty->getContext()), Ty, NULL);
Owen Andersona7235ea2009-07-31 20:28:14 +00001419 Constant *NullPtr = Constant::getNullValue(AligningTy->getPointerTo());
Owen Anderson1d0be152009-08-13 21:58:54 +00001420 Constant *Zero = ConstantInt::get(Type::getInt32Ty(Ty->getContext()), 0);
1421 Constant *One = ConstantInt::get(Type::getInt32Ty(Ty->getContext()), 1);
Owen Andersonbaf3c402009-07-29 18:55:55 +00001422 Constant *Indices[2] = { Zero, One };
1423 Constant *GEP = getGetElementPtr(NullPtr, Indices, 2);
Owen Anderson1d0be152009-08-13 21:58:54 +00001424 return getCast(Instruction::PtrToInt, GEP,
1425 Type::getInt32Ty(Ty->getContext()));
Owen Andersonbaf3c402009-07-29 18:55:55 +00001426}
1427
Dan Gohman3778f212009-08-16 21:26:11 +00001428Constant* ConstantExpr::getOffsetOf(const StructType* STy, unsigned FieldNo) {
1429 // offsetof is implemented as: (i64) gep (Ty*)null, 0, FieldNo
1430 // Note that a non-inbounds gep is used, as null isn't within any object.
1431 Constant *GEPIdx[] = {
1432 ConstantInt::get(Type::getInt64Ty(STy->getContext()), 0),
1433 ConstantInt::get(Type::getInt32Ty(STy->getContext()), FieldNo)
1434 };
1435 Constant *GEP = getGetElementPtr(
1436 Constant::getNullValue(PointerType::getUnqual(STy)), GEPIdx, 2);
1437 return getCast(Instruction::PtrToInt, GEP,
1438 Type::getInt64Ty(STy->getContext()));
1439}
Owen Andersonbaf3c402009-07-29 18:55:55 +00001440
Reid Spencere4d87aa2006-12-23 06:05:41 +00001441Constant *ConstantExpr::getCompare(unsigned short pred,
Reid Spencer67263fe2006-12-04 21:35:24 +00001442 Constant *C1, Constant *C2) {
1443 assert(C1->getType() == C2->getType() && "Op types should be identical!");
Reid Spencere4d87aa2006-12-23 06:05:41 +00001444 return getCompareTy(pred, C1, C2);
Chris Lattnerc3d12f02004-08-04 18:50:09 +00001445}
1446
Chris Lattner08a45cc2004-03-12 05:54:04 +00001447Constant *ConstantExpr::getSelectTy(const Type *ReqTy, Constant *C,
Owen Anderson04fb7c32009-06-20 00:24:58 +00001448 Constant *V1, Constant *V2) {
Chris Lattner9ace0cd2008-12-29 00:16:12 +00001449 assert(!SelectInst::areInvalidOperands(C, V1, V2)&&"Invalid select operands");
Chris Lattner08a45cc2004-03-12 05:54:04 +00001450
1451 if (ReqTy == V1->getType())
Owen Anderson0a5372e2009-07-13 04:09:18 +00001452 if (Constant *SC = ConstantFoldSelectInstruction(
Owen Anderson5defacc2009-07-31 17:39:07 +00001453 ReqTy->getContext(), C, V1, V2))
Chris Lattner08a45cc2004-03-12 05:54:04 +00001454 return SC; // Fold common cases
1455
1456 std::vector<Constant*> argVec(3, C);
1457 argVec[1] = V1;
1458 argVec[2] = V2;
Reid Spencer077d0eb2006-12-04 05:19:50 +00001459 ExprMapKeyType Key(Instruction::Select, argVec);
Owen Anderson31c36f02009-06-17 20:10:08 +00001460
Owen Andersond03eecd2009-08-04 20:25:11 +00001461 LLVMContextImpl *pImpl = ReqTy->getContext().pImpl;
1462
Owen Anderson04fb7c32009-06-20 00:24:58 +00001463 // Implicitly locked.
Owen Andersond03eecd2009-08-04 20:25:11 +00001464 return pImpl->ExprConstants.getOrCreate(ReqTy, Key);
Chris Lattner08a45cc2004-03-12 05:54:04 +00001465}
1466
Chris Lattnered468e372003-10-05 00:17:43 +00001467Constant *ConstantExpr::getGetElementPtrTy(const Type *ReqTy, Constant *C,
Chris Lattner2b9a5da2007-01-31 04:40:28 +00001468 Value* const *Idxs,
Owen Anderson04fb7c32009-06-20 00:24:58 +00001469 unsigned NumIdx) {
Dan Gohman041e2eb2008-05-15 19:50:34 +00001470 assert(GetElementPtrInst::getIndexedType(C->getType(), Idxs,
1471 Idxs+NumIdx) ==
1472 cast<PointerType>(ReqTy)->getElementType() &&
1473 "GEP indices invalid!");
Chris Lattner2e9bb1a2004-02-16 20:46:13 +00001474
Owen Anderson0a5372e2009-07-13 04:09:18 +00001475 if (Constant *FC = ConstantFoldGetElementPtr(
Dan Gohman3bfbc452009-09-11 00:04:14 +00001476 ReqTy->getContext(), C, /*inBounds=*/false,
1477 (Constant**)Idxs, NumIdx))
Chris Lattnerd628f6a2003-04-17 19:24:48 +00001478 return FC; // Fold a few common cases...
Chris Lattner2e9bb1a2004-02-16 20:46:13 +00001479
Chris Lattnered468e372003-10-05 00:17:43 +00001480 assert(isa<PointerType>(C->getType()) &&
Chris Lattner02ec5ed2003-05-23 20:03:32 +00001481 "Non-pointer type for constant GetElementPtr expression");
Vikram S. Adved0b1bb02002-07-15 18:19:33 +00001482 // Look up the constant in the table first to ensure uniqueness
Chris Lattner7fa6e662004-10-11 22:52:25 +00001483 std::vector<Constant*> ArgVec;
Chris Lattner2b9a5da2007-01-31 04:40:28 +00001484 ArgVec.reserve(NumIdx+1);
Chris Lattner7fa6e662004-10-11 22:52:25 +00001485 ArgVec.push_back(C);
Chris Lattner2b9a5da2007-01-31 04:40:28 +00001486 for (unsigned i = 0; i != NumIdx; ++i)
1487 ArgVec.push_back(cast<Constant>(Idxs[i]));
1488 const ExprMapKeyType Key(Instruction::GetElementPtr, ArgVec);
Owen Anderson31c36f02009-06-17 20:10:08 +00001489
Owen Andersond03eecd2009-08-04 20:25:11 +00001490 LLVMContextImpl *pImpl = ReqTy->getContext().pImpl;
1491
Owen Anderson31c36f02009-06-17 20:10:08 +00001492 // Implicitly locked.
Owen Andersond03eecd2009-08-04 20:25:11 +00001493 return pImpl->ExprConstants.getOrCreate(ReqTy, Key);
Vikram S. Adved0b1bb02002-07-15 18:19:33 +00001494}
1495
Dan Gohmanf8dbee72009-09-07 23:54:19 +00001496Constant *ConstantExpr::getInBoundsGetElementPtrTy(const Type *ReqTy,
1497 Constant *C,
1498 Value* const *Idxs,
1499 unsigned NumIdx) {
1500 assert(GetElementPtrInst::getIndexedType(C->getType(), Idxs,
1501 Idxs+NumIdx) ==
1502 cast<PointerType>(ReqTy)->getElementType() &&
1503 "GEP indices invalid!");
1504
1505 if (Constant *FC = ConstantFoldGetElementPtr(
Dan Gohman3bfbc452009-09-11 00:04:14 +00001506 ReqTy->getContext(), C, /*inBounds=*/true,
1507 (Constant**)Idxs, NumIdx))
Dan Gohmanf8dbee72009-09-07 23:54:19 +00001508 return FC; // Fold a few common cases...
1509
1510 assert(isa<PointerType>(C->getType()) &&
1511 "Non-pointer type for constant GetElementPtr expression");
1512 // Look up the constant in the table first to ensure uniqueness
1513 std::vector<Constant*> ArgVec;
1514 ArgVec.reserve(NumIdx+1);
1515 ArgVec.push_back(C);
1516 for (unsigned i = 0; i != NumIdx; ++i)
1517 ArgVec.push_back(cast<Constant>(Idxs[i]));
1518 const ExprMapKeyType Key(Instruction::GetElementPtr, ArgVec, 0,
1519 GEPOperator::IsInBounds);
1520
1521 LLVMContextImpl *pImpl = ReqTy->getContext().pImpl;
1522
1523 // Implicitly locked.
1524 return pImpl->ExprConstants.getOrCreate(ReqTy, Key);
1525}
1526
Chris Lattner2b9a5da2007-01-31 04:40:28 +00001527Constant *ConstantExpr::getGetElementPtr(Constant *C, Value* const *Idxs,
Owen Anderson04fb7c32009-06-20 00:24:58 +00001528 unsigned NumIdx) {
Chris Lattnered468e372003-10-05 00:17:43 +00001529 // Get the result type of the getelementptr!
Chris Lattner2b9a5da2007-01-31 04:40:28 +00001530 const Type *Ty =
Dan Gohman041e2eb2008-05-15 19:50:34 +00001531 GetElementPtrInst::getIndexedType(C->getType(), Idxs, Idxs+NumIdx);
Chris Lattnered468e372003-10-05 00:17:43 +00001532 assert(Ty && "GEP indices invalid!");
Christopher Lambfe63fb92007-12-11 08:59:05 +00001533 unsigned As = cast<PointerType>(C->getType())->getAddressSpace();
Owen Anderson04fb7c32009-06-20 00:24:58 +00001534 return getGetElementPtrTy(PointerType::get(Ty, As), C, Idxs, NumIdx);
Chris Lattner7fa6e662004-10-11 22:52:25 +00001535}
1536
Dan Gohman6e7ad952009-09-03 23:34:49 +00001537Constant *ConstantExpr::getInBoundsGetElementPtr(Constant *C,
1538 Value* const *Idxs,
1539 unsigned NumIdx) {
Dan Gohmanf8dbee72009-09-07 23:54:19 +00001540 // Get the result type of the getelementptr!
1541 const Type *Ty =
1542 GetElementPtrInst::getIndexedType(C->getType(), Idxs, Idxs+NumIdx);
1543 assert(Ty && "GEP indices invalid!");
1544 unsigned As = cast<PointerType>(C->getType())->getAddressSpace();
1545 return getInBoundsGetElementPtrTy(PointerType::get(Ty, As), C, Idxs, NumIdx);
Dan Gohman6e7ad952009-09-03 23:34:49 +00001546}
1547
Chris Lattner2b9a5da2007-01-31 04:40:28 +00001548Constant *ConstantExpr::getGetElementPtr(Constant *C, Constant* const *Idxs,
Owen Anderson04fb7c32009-06-20 00:24:58 +00001549 unsigned NumIdx) {
1550 return getGetElementPtr(C, (Value* const *)Idxs, NumIdx);
Chris Lattnered468e372003-10-05 00:17:43 +00001551}
1552
Dan Gohman6e7ad952009-09-03 23:34:49 +00001553Constant *ConstantExpr::getInBoundsGetElementPtr(Constant *C,
1554 Constant* const *Idxs,
1555 unsigned NumIdx) {
1556 return getInBoundsGetElementPtr(C, (Value* const *)Idxs, NumIdx);
1557}
1558
Reid Spencer077d0eb2006-12-04 05:19:50 +00001559Constant *
1560ConstantExpr::getICmp(unsigned short pred, Constant* LHS, Constant* RHS) {
1561 assert(LHS->getType() == RHS->getType());
1562 assert(pred >= ICmpInst::FIRST_ICMP_PREDICATE &&
1563 pred <= ICmpInst::LAST_ICMP_PREDICATE && "Invalid ICmp Predicate");
1564
Owen Anderson0a5372e2009-07-13 04:09:18 +00001565 if (Constant *FC = ConstantFoldCompareInstruction(
Owen Anderson5defacc2009-07-31 17:39:07 +00001566 LHS->getContext(), pred, LHS, RHS))
Reid Spencer077d0eb2006-12-04 05:19:50 +00001567 return FC; // Fold a few common cases...
1568
1569 // Look up the constant in the table first to ensure uniqueness
1570 std::vector<Constant*> ArgVec;
1571 ArgVec.push_back(LHS);
1572 ArgVec.push_back(RHS);
Reid Spencer4fa021a2006-12-24 18:42:29 +00001573 // Get the key type with both the opcode and predicate
Reid Spencer077d0eb2006-12-04 05:19:50 +00001574 const ExprMapKeyType Key(Instruction::ICmp, ArgVec, pred);
Owen Anderson31c36f02009-06-17 20:10:08 +00001575
Owen Andersond03eecd2009-08-04 20:25:11 +00001576 LLVMContextImpl *pImpl = LHS->getType()->getContext().pImpl;
1577
Owen Anderson31c36f02009-06-17 20:10:08 +00001578 // Implicitly locked.
Owen Anderson1d0be152009-08-13 21:58:54 +00001579 return
1580 pImpl->ExprConstants.getOrCreate(Type::getInt1Ty(LHS->getContext()), Key);
Reid Spencer077d0eb2006-12-04 05:19:50 +00001581}
1582
1583Constant *
1584ConstantExpr::getFCmp(unsigned short pred, Constant* LHS, Constant* RHS) {
1585 assert(LHS->getType() == RHS->getType());
1586 assert(pred <= FCmpInst::LAST_FCMP_PREDICATE && "Invalid FCmp Predicate");
1587
Owen Anderson0a5372e2009-07-13 04:09:18 +00001588 if (Constant *FC = ConstantFoldCompareInstruction(
Owen Anderson5defacc2009-07-31 17:39:07 +00001589 LHS->getContext(), pred, LHS, RHS))
Reid Spencer077d0eb2006-12-04 05:19:50 +00001590 return FC; // Fold a few common cases...
1591
1592 // Look up the constant in the table first to ensure uniqueness
1593 std::vector<Constant*> ArgVec;
1594 ArgVec.push_back(LHS);
1595 ArgVec.push_back(RHS);
Reid Spencer4fa021a2006-12-24 18:42:29 +00001596 // Get the key type with both the opcode and predicate
Reid Spencer077d0eb2006-12-04 05:19:50 +00001597 const ExprMapKeyType Key(Instruction::FCmp, ArgVec, pred);
Owen Anderson31c36f02009-06-17 20:10:08 +00001598
Owen Andersond03eecd2009-08-04 20:25:11 +00001599 LLVMContextImpl *pImpl = LHS->getType()->getContext().pImpl;
1600
Owen Anderson31c36f02009-06-17 20:10:08 +00001601 // Implicitly locked.
Owen Anderson1d0be152009-08-13 21:58:54 +00001602 return
1603 pImpl->ExprConstants.getOrCreate(Type::getInt1Ty(LHS->getContext()), Key);
Reid Spencer077d0eb2006-12-04 05:19:50 +00001604}
1605
Robert Bocchinob52ee7f2006-01-10 19:05:34 +00001606Constant *ConstantExpr::getExtractElementTy(const Type *ReqTy, Constant *Val,
1607 Constant *Idx) {
Owen Anderson0a5372e2009-07-13 04:09:18 +00001608 if (Constant *FC = ConstantFoldExtractElementInstruction(
Owen Anderson5defacc2009-07-31 17:39:07 +00001609 ReqTy->getContext(), Val, Idx))
Robert Bocchinobb90a7a2006-01-10 20:03:46 +00001610 return FC; // Fold a few common cases...
Robert Bocchinob52ee7f2006-01-10 19:05:34 +00001611 // Look up the constant in the table first to ensure uniqueness
1612 std::vector<Constant*> ArgVec(1, Val);
1613 ArgVec.push_back(Idx);
Reid Spencer077d0eb2006-12-04 05:19:50 +00001614 const ExprMapKeyType Key(Instruction::ExtractElement,ArgVec);
Owen Anderson31c36f02009-06-17 20:10:08 +00001615
Owen Andersond03eecd2009-08-04 20:25:11 +00001616 LLVMContextImpl *pImpl = ReqTy->getContext().pImpl;
1617
Owen Anderson31c36f02009-06-17 20:10:08 +00001618 // Implicitly locked.
Owen Andersond03eecd2009-08-04 20:25:11 +00001619 return pImpl->ExprConstants.getOrCreate(ReqTy, Key);
Robert Bocchinob52ee7f2006-01-10 19:05:34 +00001620}
1621
1622Constant *ConstantExpr::getExtractElement(Constant *Val, Constant *Idx) {
Reid Spencer9d6565a2007-02-15 02:26:10 +00001623 assert(isa<VectorType>(Val->getType()) &&
Reid Spencerac9dcb92007-02-15 03:39:18 +00001624 "Tried to create extractelement operation on non-vector type!");
Owen Anderson1d0be152009-08-13 21:58:54 +00001625 assert(Idx->getType() == Type::getInt32Ty(Val->getContext()) &&
Reid Spencer3d10b0b2007-01-26 07:37:34 +00001626 "Extractelement index must be i32 type!");
Reid Spencer9d6565a2007-02-15 02:26:10 +00001627 return getExtractElementTy(cast<VectorType>(Val->getType())->getElementType(),
Robert Bocchinob52ee7f2006-01-10 19:05:34 +00001628 Val, Idx);
1629}
Chris Lattnered468e372003-10-05 00:17:43 +00001630
Robert Bocchinoc152f9c2006-01-17 20:07:22 +00001631Constant *ConstantExpr::getInsertElementTy(const Type *ReqTy, Constant *Val,
1632 Constant *Elt, Constant *Idx) {
Owen Anderson0a5372e2009-07-13 04:09:18 +00001633 if (Constant *FC = ConstantFoldInsertElementInstruction(
Owen Anderson5defacc2009-07-31 17:39:07 +00001634 ReqTy->getContext(), Val, Elt, Idx))
Robert Bocchinoc152f9c2006-01-17 20:07:22 +00001635 return FC; // Fold a few common cases...
1636 // Look up the constant in the table first to ensure uniqueness
1637 std::vector<Constant*> ArgVec(1, Val);
1638 ArgVec.push_back(Elt);
1639 ArgVec.push_back(Idx);
Reid Spencer077d0eb2006-12-04 05:19:50 +00001640 const ExprMapKeyType Key(Instruction::InsertElement,ArgVec);
Owen Anderson31c36f02009-06-17 20:10:08 +00001641
Owen Andersond03eecd2009-08-04 20:25:11 +00001642 LLVMContextImpl *pImpl = ReqTy->getContext().pImpl;
1643
Owen Anderson31c36f02009-06-17 20:10:08 +00001644 // Implicitly locked.
Owen Andersond03eecd2009-08-04 20:25:11 +00001645 return pImpl->ExprConstants.getOrCreate(ReqTy, Key);
Robert Bocchinoc152f9c2006-01-17 20:07:22 +00001646}
1647
1648Constant *ConstantExpr::getInsertElement(Constant *Val, Constant *Elt,
1649 Constant *Idx) {
Reid Spencer9d6565a2007-02-15 02:26:10 +00001650 assert(isa<VectorType>(Val->getType()) &&
Reid Spencerac9dcb92007-02-15 03:39:18 +00001651 "Tried to create insertelement operation on non-vector type!");
Reid Spencer9d6565a2007-02-15 02:26:10 +00001652 assert(Elt->getType() == cast<VectorType>(Val->getType())->getElementType()
Robert Bocchinoc152f9c2006-01-17 20:07:22 +00001653 && "Insertelement types must match!");
Owen Anderson1d0be152009-08-13 21:58:54 +00001654 assert(Idx->getType() == Type::getInt32Ty(Val->getContext()) &&
Reid Spencer3d10b0b2007-01-26 07:37:34 +00001655 "Insertelement index must be i32 type!");
Gordon Henriksen699609c2008-08-30 15:41:51 +00001656 return getInsertElementTy(Val->getType(), Val, Elt, Idx);
Robert Bocchinoc152f9c2006-01-17 20:07:22 +00001657}
1658
Chris Lattner00f10232006-04-08 01:18:18 +00001659Constant *ConstantExpr::getShuffleVectorTy(const Type *ReqTy, Constant *V1,
1660 Constant *V2, Constant *Mask) {
Owen Anderson0a5372e2009-07-13 04:09:18 +00001661 if (Constant *FC = ConstantFoldShuffleVectorInstruction(
Owen Anderson5defacc2009-07-31 17:39:07 +00001662 ReqTy->getContext(), V1, V2, Mask))
Chris Lattner00f10232006-04-08 01:18:18 +00001663 return FC; // Fold a few common cases...
1664 // Look up the constant in the table first to ensure uniqueness
1665 std::vector<Constant*> ArgVec(1, V1);
1666 ArgVec.push_back(V2);
1667 ArgVec.push_back(Mask);
Reid Spencer077d0eb2006-12-04 05:19:50 +00001668 const ExprMapKeyType Key(Instruction::ShuffleVector,ArgVec);
Owen Anderson31c36f02009-06-17 20:10:08 +00001669
Owen Andersond03eecd2009-08-04 20:25:11 +00001670 LLVMContextImpl *pImpl = ReqTy->getContext().pImpl;
1671
Owen Anderson31c36f02009-06-17 20:10:08 +00001672 // Implicitly locked.
Owen Andersond03eecd2009-08-04 20:25:11 +00001673 return pImpl->ExprConstants.getOrCreate(ReqTy, Key);
Chris Lattner00f10232006-04-08 01:18:18 +00001674}
1675
1676Constant *ConstantExpr::getShuffleVector(Constant *V1, Constant *V2,
1677 Constant *Mask) {
1678 assert(ShuffleVectorInst::isValidOperands(V1, V2, Mask) &&
1679 "Invalid shuffle vector constant expr operands!");
Nate Begeman0f123cf2009-02-12 21:28:33 +00001680
1681 unsigned NElts = cast<VectorType>(Mask->getType())->getNumElements();
1682 const Type *EltTy = cast<VectorType>(V1->getType())->getElementType();
1683 const Type *ShufTy = VectorType::get(EltTy, NElts);
1684 return getShuffleVectorTy(ShufTy, V1, V2, Mask);
Chris Lattner00f10232006-04-08 01:18:18 +00001685}
1686
Dan Gohman041e2eb2008-05-15 19:50:34 +00001687Constant *ConstantExpr::getInsertValueTy(const Type *ReqTy, Constant *Agg,
1688 Constant *Val,
Dan Gohman81a0c0b2008-05-31 00:58:22 +00001689 const unsigned *Idxs, unsigned NumIdx) {
Dan Gohman041e2eb2008-05-15 19:50:34 +00001690 assert(ExtractValueInst::getIndexedType(Agg->getType(), Idxs,
1691 Idxs+NumIdx) == Val->getType() &&
1692 "insertvalue indices invalid!");
1693 assert(Agg->getType() == ReqTy &&
1694 "insertvalue type invalid!");
Dan Gohmane4569942008-05-23 00:36:11 +00001695 assert(Agg->getType()->isFirstClassType() &&
1696 "Non-first-class type for constant InsertValue expression");
Owen Anderson0a5372e2009-07-13 04:09:18 +00001697 Constant *FC = ConstantFoldInsertValueInstruction(
Owen Anderson5defacc2009-07-31 17:39:07 +00001698 ReqTy->getContext(), Agg, Val, Idxs, NumIdx);
Dan Gohmane0891602008-07-21 23:30:30 +00001699 assert(FC && "InsertValue constant expr couldn't be folded!");
1700 return FC;
Dan Gohman041e2eb2008-05-15 19:50:34 +00001701}
1702
1703Constant *ConstantExpr::getInsertValue(Constant *Agg, Constant *Val,
Dan Gohman81a0c0b2008-05-31 00:58:22 +00001704 const unsigned *IdxList, unsigned NumIdx) {
Dan Gohmane4569942008-05-23 00:36:11 +00001705 assert(Agg->getType()->isFirstClassType() &&
1706 "Tried to create insertelement operation on non-first-class type!");
Dan Gohman041e2eb2008-05-15 19:50:34 +00001707
Dan Gohmane4569942008-05-23 00:36:11 +00001708 const Type *ReqTy = Agg->getType();
Devang Patelb6dc9352008-11-03 23:20:04 +00001709#ifndef NDEBUG
Dan Gohmane4569942008-05-23 00:36:11 +00001710 const Type *ValTy =
Dan Gohman041e2eb2008-05-15 19:50:34 +00001711 ExtractValueInst::getIndexedType(Agg->getType(), IdxList, IdxList+NumIdx);
Devang Patelb6dc9352008-11-03 23:20:04 +00001712#endif
Dan Gohmane4569942008-05-23 00:36:11 +00001713 assert(ValTy == Val->getType() && "insertvalue indices invalid!");
Dan Gohman041e2eb2008-05-15 19:50:34 +00001714 return getInsertValueTy(ReqTy, Agg, Val, IdxList, NumIdx);
1715}
1716
1717Constant *ConstantExpr::getExtractValueTy(const Type *ReqTy, Constant *Agg,
Dan Gohman81a0c0b2008-05-31 00:58:22 +00001718 const unsigned *Idxs, unsigned NumIdx) {
Dan Gohman041e2eb2008-05-15 19:50:34 +00001719 assert(ExtractValueInst::getIndexedType(Agg->getType(), Idxs,
1720 Idxs+NumIdx) == ReqTy &&
1721 "extractvalue indices invalid!");
Dan Gohmane4569942008-05-23 00:36:11 +00001722 assert(Agg->getType()->isFirstClassType() &&
1723 "Non-first-class type for constant extractvalue expression");
Owen Anderson0a5372e2009-07-13 04:09:18 +00001724 Constant *FC = ConstantFoldExtractValueInstruction(
Owen Anderson5defacc2009-07-31 17:39:07 +00001725 ReqTy->getContext(), Agg, Idxs, NumIdx);
Dan Gohmane0891602008-07-21 23:30:30 +00001726 assert(FC && "ExtractValue constant expr couldn't be folded!");
1727 return FC;
Dan Gohman041e2eb2008-05-15 19:50:34 +00001728}
1729
1730Constant *ConstantExpr::getExtractValue(Constant *Agg,
Dan Gohman81a0c0b2008-05-31 00:58:22 +00001731 const unsigned *IdxList, unsigned NumIdx) {
Dan Gohmane4569942008-05-23 00:36:11 +00001732 assert(Agg->getType()->isFirstClassType() &&
1733 "Tried to create extractelement operation on non-first-class type!");
Dan Gohman041e2eb2008-05-15 19:50:34 +00001734
1735 const Type *ReqTy =
1736 ExtractValueInst::getIndexedType(Agg->getType(), IdxList, IdxList+NumIdx);
1737 assert(ReqTy && "extractvalue indices invalid!");
1738 return getExtractValueTy(ReqTy, Agg, IdxList, NumIdx);
1739}
1740
Owen Andersonbaf3c402009-07-29 18:55:55 +00001741Constant* ConstantExpr::getNeg(Constant* C) {
1742 // API compatibility: Adjust integer opcodes to floating-point opcodes.
1743 if (C->getType()->isFPOrFPVector())
1744 return getFNeg(C);
1745 assert(C->getType()->isIntOrIntVector() &&
1746 "Cannot NEG a nonintegral value!");
1747 return get(Instruction::Sub,
1748 ConstantFP::getZeroValueForNegation(C->getType()),
1749 C);
1750}
1751
1752Constant* ConstantExpr::getFNeg(Constant* C) {
1753 assert(C->getType()->isFPOrFPVector() &&
1754 "Cannot FNEG a non-floating-point value!");
1755 return get(Instruction::FSub,
1756 ConstantFP::getZeroValueForNegation(C->getType()),
1757 C);
1758}
1759
1760Constant* ConstantExpr::getNot(Constant* C) {
1761 assert(C->getType()->isIntOrIntVector() &&
1762 "Cannot NOT a nonintegral value!");
Owen Andersona7235ea2009-07-31 20:28:14 +00001763 return get(Instruction::Xor, C, Constant::getAllOnesValue(C->getType()));
Owen Andersonbaf3c402009-07-29 18:55:55 +00001764}
1765
1766Constant* ConstantExpr::getAdd(Constant* C1, Constant* C2) {
1767 return get(Instruction::Add, C1, C2);
1768}
1769
1770Constant* ConstantExpr::getFAdd(Constant* C1, Constant* C2) {
1771 return get(Instruction::FAdd, C1, C2);
1772}
1773
1774Constant* ConstantExpr::getSub(Constant* C1, Constant* C2) {
1775 return get(Instruction::Sub, C1, C2);
1776}
1777
1778Constant* ConstantExpr::getFSub(Constant* C1, Constant* C2) {
1779 return get(Instruction::FSub, C1, C2);
1780}
1781
1782Constant* ConstantExpr::getMul(Constant* C1, Constant* C2) {
1783 return get(Instruction::Mul, C1, C2);
1784}
1785
1786Constant* ConstantExpr::getFMul(Constant* C1, Constant* C2) {
1787 return get(Instruction::FMul, C1, C2);
1788}
1789
1790Constant* ConstantExpr::getUDiv(Constant* C1, Constant* C2) {
1791 return get(Instruction::UDiv, C1, C2);
1792}
1793
1794Constant* ConstantExpr::getSDiv(Constant* C1, Constant* C2) {
1795 return get(Instruction::SDiv, C1, C2);
1796}
1797
1798Constant* ConstantExpr::getFDiv(Constant* C1, Constant* C2) {
1799 return get(Instruction::FDiv, C1, C2);
1800}
1801
1802Constant* ConstantExpr::getURem(Constant* C1, Constant* C2) {
1803 return get(Instruction::URem, C1, C2);
1804}
1805
1806Constant* ConstantExpr::getSRem(Constant* C1, Constant* C2) {
1807 return get(Instruction::SRem, C1, C2);
1808}
1809
1810Constant* ConstantExpr::getFRem(Constant* C1, Constant* C2) {
1811 return get(Instruction::FRem, C1, C2);
1812}
1813
1814Constant* ConstantExpr::getAnd(Constant* C1, Constant* C2) {
1815 return get(Instruction::And, C1, C2);
1816}
1817
1818Constant* ConstantExpr::getOr(Constant* C1, Constant* C2) {
1819 return get(Instruction::Or, C1, C2);
1820}
1821
1822Constant* ConstantExpr::getXor(Constant* C1, Constant* C2) {
1823 return get(Instruction::Xor, C1, C2);
1824}
1825
1826Constant* ConstantExpr::getShl(Constant* C1, Constant* C2) {
1827 return get(Instruction::Shl, C1, C2);
1828}
1829
1830Constant* ConstantExpr::getLShr(Constant* C1, Constant* C2) {
1831 return get(Instruction::LShr, C1, C2);
1832}
1833
1834Constant* ConstantExpr::getAShr(Constant* C1, Constant* C2) {
1835 return get(Instruction::AShr, C1, C2);
1836}
1837
Vikram S. Adved0b1bb02002-07-15 18:19:33 +00001838// destroyConstant - Remove the constant from the constant table...
1839//
Owen Anderson04fb7c32009-06-20 00:24:58 +00001840void ConstantExpr::destroyConstant() {
1841 // Implicitly locked.
Owen Andersond03eecd2009-08-04 20:25:11 +00001842 LLVMContextImpl *pImpl = getType()->getContext().pImpl;
1843 pImpl->ExprConstants.remove(this);
Vikram S. Adved0b1bb02002-07-15 18:19:33 +00001844 destroyConstantImpl();
Vikram S. Adve345e0cf2002-07-14 23:13:17 +00001845}
1846
Chris Lattnerc188eeb2002-07-30 18:54:25 +00001847const char *ConstantExpr::getOpcodeName() const {
1848 return Instruction::getOpcodeName(getOpcode());
Vikram S. Adve345e0cf2002-07-14 23:13:17 +00001849}
Reid Spencer1c9c8e62004-07-17 23:48:33 +00001850
Chris Lattner5cbade92005-10-03 21:58:36 +00001851//===----------------------------------------------------------------------===//
1852// replaceUsesOfWithOnConstant implementations
1853
Chris Lattner54984052007-08-21 00:55:23 +00001854/// replaceUsesOfWithOnConstant - Update this constant array to change uses of
1855/// 'From' to be uses of 'To'. This must update the uniquing data structures
1856/// etc.
1857///
1858/// Note that we intentionally replace all uses of From with To here. Consider
1859/// a large array that uses 'From' 1000 times. By handling this case all here,
1860/// ConstantArray::replaceUsesOfWithOnConstant is only invoked once, and that
1861/// single invocation handles all 1000 uses. Handling them one at a time would
1862/// work, but would be really slow because it would have to unique each updated
1863/// array instance.
Owen Anderson1fd70962009-07-28 18:32:17 +00001864
Chris Lattner5cbade92005-10-03 21:58:36 +00001865void ConstantArray::replaceUsesOfWithOnConstant(Value *From, Value *To,
Chris Lattnerd0ff1ad2005-10-04 18:13:04 +00001866 Use *U) {
Owen Anderson1fd70962009-07-28 18:32:17 +00001867 assert(isa<Constant>(To) && "Cannot make Constant refer to non-constant!");
1868 Constant *ToC = cast<Constant>(To);
1869
1870 LLVMContext &Context = getType()->getContext();
1871 LLVMContextImpl *pImpl = Context.pImpl;
1872
Dan Gohmane3394d42009-09-15 15:58:07 +00001873 std::pair<LLVMContextImpl::ArrayConstantsTy::MapKey, ConstantArray*> Lookup;
Owen Anderson1fd70962009-07-28 18:32:17 +00001874 Lookup.first.first = getType();
1875 Lookup.second = this;
1876
1877 std::vector<Constant*> &Values = Lookup.first.second;
1878 Values.reserve(getNumOperands()); // Build replacement array.
1879
1880 // Fill values with the modified operands of the constant array. Also,
1881 // compute whether this turns into an all-zeros array.
1882 bool isAllZeros = false;
1883 unsigned NumUpdated = 0;
1884 if (!ToC->isNullValue()) {
1885 for (Use *O = OperandList, *E = OperandList+getNumOperands(); O != E; ++O) {
1886 Constant *Val = cast<Constant>(O->get());
1887 if (Val == From) {
1888 Val = ToC;
1889 ++NumUpdated;
1890 }
1891 Values.push_back(Val);
1892 }
1893 } else {
1894 isAllZeros = true;
1895 for (Use *O = OperandList, *E = OperandList+getNumOperands();O != E; ++O) {
1896 Constant *Val = cast<Constant>(O->get());
1897 if (Val == From) {
1898 Val = ToC;
1899 ++NumUpdated;
1900 }
1901 Values.push_back(Val);
1902 if (isAllZeros) isAllZeros = Val->isNullValue();
1903 }
1904 }
1905
1906 Constant *Replacement = 0;
1907 if (isAllZeros) {
Owen Anderson9e9a0d52009-07-30 23:03:37 +00001908 Replacement = ConstantAggregateZero::get(getType());
Owen Anderson1fd70962009-07-28 18:32:17 +00001909 } else {
1910 // Check to see if we have this array type already.
1911 sys::SmartScopedWriter<true> Writer(pImpl->ConstantsLock);
1912 bool Exists;
1913 LLVMContextImpl::ArrayConstantsTy::MapTy::iterator I =
1914 pImpl->ArrayConstants.InsertOrGetItem(Lookup, Exists);
1915
1916 if (Exists) {
Devang Patel5f4ac842009-09-03 01:39:20 +00001917 Replacement = I->second;
Owen Anderson1fd70962009-07-28 18:32:17 +00001918 } else {
1919 // Okay, the new shape doesn't exist in the system yet. Instead of
1920 // creating a new constant array, inserting it, replaceallusesof'ing the
1921 // old with the new, then deleting the old... just update the current one
1922 // in place!
1923 pImpl->ArrayConstants.MoveConstantToNewSlot(this, I);
1924
1925 // Update to the new value. Optimize for the case when we have a single
1926 // operand that we're changing, but handle bulk updates efficiently.
1927 if (NumUpdated == 1) {
1928 unsigned OperandToUpdate = U - OperandList;
1929 assert(getOperand(OperandToUpdate) == From &&
1930 "ReplaceAllUsesWith broken!");
1931 setOperand(OperandToUpdate, ToC);
1932 } else {
1933 for (unsigned i = 0, e = getNumOperands(); i != e; ++i)
1934 if (getOperand(i) == From)
1935 setOperand(i, ToC);
1936 }
1937 return;
1938 }
1939 }
Chris Lattnercea141f2005-10-03 22:51:37 +00001940
1941 // Otherwise, I do need to replace this with an existing value.
Chris Lattner5cbade92005-10-03 21:58:36 +00001942 assert(Replacement != this && "I didn't contain From!");
1943
Chris Lattnerd0ff1ad2005-10-04 18:13:04 +00001944 // Everyone using this now uses the replacement.
1945 uncheckedReplaceAllUsesWith(Replacement);
Chris Lattner5cbade92005-10-03 21:58:36 +00001946
1947 // Delete the old constant!
1948 destroyConstant();
1949}
1950
1951void ConstantStruct::replaceUsesOfWithOnConstant(Value *From, Value *To,
Chris Lattnerd0ff1ad2005-10-04 18:13:04 +00001952 Use *U) {
Owen Anderson8fa33382009-07-27 22:29:26 +00001953 assert(isa<Constant>(To) && "Cannot make Constant refer to non-constant!");
1954 Constant *ToC = cast<Constant>(To);
1955
1956 unsigned OperandToUpdate = U-OperandList;
1957 assert(getOperand(OperandToUpdate) == From && "ReplaceAllUsesWith broken!");
1958
Dan Gohmane3394d42009-09-15 15:58:07 +00001959 std::pair<LLVMContextImpl::StructConstantsTy::MapKey, ConstantStruct*> Lookup;
Owen Anderson8fa33382009-07-27 22:29:26 +00001960 Lookup.first.first = getType();
1961 Lookup.second = this;
1962 std::vector<Constant*> &Values = Lookup.first.second;
1963 Values.reserve(getNumOperands()); // Build replacement struct.
1964
1965
1966 // Fill values with the modified operands of the constant struct. Also,
1967 // compute whether this turns into an all-zeros struct.
1968 bool isAllZeros = false;
1969 if (!ToC->isNullValue()) {
1970 for (Use *O = OperandList, *E = OperandList + getNumOperands(); O != E; ++O)
1971 Values.push_back(cast<Constant>(O->get()));
1972 } else {
1973 isAllZeros = true;
1974 for (Use *O = OperandList, *E = OperandList+getNumOperands(); O != E; ++O) {
1975 Constant *Val = cast<Constant>(O->get());
1976 Values.push_back(Val);
1977 if (isAllZeros) isAllZeros = Val->isNullValue();
1978 }
1979 }
1980 Values[OperandToUpdate] = ToC;
1981
1982 LLVMContext &Context = getType()->getContext();
1983 LLVMContextImpl *pImpl = Context.pImpl;
1984
1985 Constant *Replacement = 0;
1986 if (isAllZeros) {
Owen Anderson9e9a0d52009-07-30 23:03:37 +00001987 Replacement = ConstantAggregateZero::get(getType());
Owen Anderson8fa33382009-07-27 22:29:26 +00001988 } else {
1989 // Check to see if we have this array type already.
1990 sys::SmartScopedWriter<true> Writer(pImpl->ConstantsLock);
1991 bool Exists;
1992 LLVMContextImpl::StructConstantsTy::MapTy::iterator I =
1993 pImpl->StructConstants.InsertOrGetItem(Lookup, Exists);
1994
1995 if (Exists) {
Devang Patel5f4ac842009-09-03 01:39:20 +00001996 Replacement = I->second;
Owen Anderson8fa33382009-07-27 22:29:26 +00001997 } else {
1998 // Okay, the new shape doesn't exist in the system yet. Instead of
1999 // creating a new constant struct, inserting it, replaceallusesof'ing the
2000 // old with the new, then deleting the old... just update the current one
2001 // in place!
2002 pImpl->StructConstants.MoveConstantToNewSlot(this, I);
2003
2004 // Update to the new value.
2005 setOperand(OperandToUpdate, ToC);
2006 return;
2007 }
2008 }
2009
2010 assert(Replacement != this && "I didn't contain From!");
Chris Lattner5cbade92005-10-03 21:58:36 +00002011
Chris Lattnerd0ff1ad2005-10-04 18:13:04 +00002012 // Everyone using this now uses the replacement.
2013 uncheckedReplaceAllUsesWith(Replacement);
Chris Lattner5cbade92005-10-03 21:58:36 +00002014
2015 // Delete the old constant!
2016 destroyConstant();
2017}
2018
Reid Spencer9d6565a2007-02-15 02:26:10 +00002019void ConstantVector::replaceUsesOfWithOnConstant(Value *From, Value *To,
Chris Lattnerd0ff1ad2005-10-04 18:13:04 +00002020 Use *U) {
Chris Lattner5cbade92005-10-03 21:58:36 +00002021 assert(isa<Constant>(To) && "Cannot make Constant refer to non-constant!");
2022
2023 std::vector<Constant*> Values;
2024 Values.reserve(getNumOperands()); // Build replacement array...
2025 for (unsigned i = 0, e = getNumOperands(); i != e; ++i) {
2026 Constant *Val = getOperand(i);
2027 if (Val == From) Val = cast<Constant>(To);
2028 Values.push_back(Val);
2029 }
2030
Owen Andersonaf7ec972009-07-28 21:19:26 +00002031 Constant *Replacement = get(getType(), Values);
Chris Lattner5cbade92005-10-03 21:58:36 +00002032 assert(Replacement != this && "I didn't contain From!");
2033
Chris Lattnerd0ff1ad2005-10-04 18:13:04 +00002034 // Everyone using this now uses the replacement.
2035 uncheckedReplaceAllUsesWith(Replacement);
Chris Lattner5cbade92005-10-03 21:58:36 +00002036
2037 // Delete the old constant!
2038 destroyConstant();
2039}
2040
2041void ConstantExpr::replaceUsesOfWithOnConstant(Value *From, Value *ToV,
Chris Lattnerd0ff1ad2005-10-04 18:13:04 +00002042 Use *U) {
Chris Lattner5cbade92005-10-03 21:58:36 +00002043 assert(isa<Constant>(ToV) && "Cannot make Constant refer to non-constant!");
2044 Constant *To = cast<Constant>(ToV);
2045
2046 Constant *Replacement = 0;
2047 if (getOpcode() == Instruction::GetElementPtr) {
Chris Lattnerf9021ff2007-02-19 20:01:23 +00002048 SmallVector<Constant*, 8> Indices;
Chris Lattner5cbade92005-10-03 21:58:36 +00002049 Constant *Pointer = getOperand(0);
2050 Indices.reserve(getNumOperands()-1);
2051 if (Pointer == From) Pointer = To;
2052
2053 for (unsigned i = 1, e = getNumOperands(); i != e; ++i) {
2054 Constant *Val = getOperand(i);
2055 if (Val == From) Val = To;
2056 Indices.push_back(Val);
2057 }
Chris Lattnerf9021ff2007-02-19 20:01:23 +00002058 Replacement = ConstantExpr::getGetElementPtr(Pointer,
2059 &Indices[0], Indices.size());
Dan Gohman041e2eb2008-05-15 19:50:34 +00002060 } else if (getOpcode() == Instruction::ExtractValue) {
Dan Gohman041e2eb2008-05-15 19:50:34 +00002061 Constant *Agg = getOperand(0);
Dan Gohman041e2eb2008-05-15 19:50:34 +00002062 if (Agg == From) Agg = To;
2063
Dan Gohman81a0c0b2008-05-31 00:58:22 +00002064 const SmallVector<unsigned, 4> &Indices = getIndices();
Dan Gohman041e2eb2008-05-15 19:50:34 +00002065 Replacement = ConstantExpr::getExtractValue(Agg,
2066 &Indices[0], Indices.size());
2067 } else if (getOpcode() == Instruction::InsertValue) {
Dan Gohman041e2eb2008-05-15 19:50:34 +00002068 Constant *Agg = getOperand(0);
2069 Constant *Val = getOperand(1);
Dan Gohman041e2eb2008-05-15 19:50:34 +00002070 if (Agg == From) Agg = To;
2071 if (Val == From) Val = To;
2072
Dan Gohman81a0c0b2008-05-31 00:58:22 +00002073 const SmallVector<unsigned, 4> &Indices = getIndices();
Dan Gohman041e2eb2008-05-15 19:50:34 +00002074 Replacement = ConstantExpr::getInsertValue(Agg, Val,
2075 &Indices[0], Indices.size());
Reid Spencer3da59db2006-11-27 01:05:10 +00002076 } else if (isCast()) {
Chris Lattner5cbade92005-10-03 21:58:36 +00002077 assert(getOperand(0) == From && "Cast only has one use!");
Reid Spencer3da59db2006-11-27 01:05:10 +00002078 Replacement = ConstantExpr::getCast(getOpcode(), To, getType());
Chris Lattner5cbade92005-10-03 21:58:36 +00002079 } else if (getOpcode() == Instruction::Select) {
2080 Constant *C1 = getOperand(0);
2081 Constant *C2 = getOperand(1);
2082 Constant *C3 = getOperand(2);
2083 if (C1 == From) C1 = To;
2084 if (C2 == From) C2 = To;
2085 if (C3 == From) C3 = To;
2086 Replacement = ConstantExpr::getSelect(C1, C2, C3);
Robert Bocchinob52ee7f2006-01-10 19:05:34 +00002087 } else if (getOpcode() == Instruction::ExtractElement) {
2088 Constant *C1 = getOperand(0);
2089 Constant *C2 = getOperand(1);
2090 if (C1 == From) C1 = To;
2091 if (C2 == From) C2 = To;
2092 Replacement = ConstantExpr::getExtractElement(C1, C2);
Chris Lattner42b55802006-04-08 05:09:48 +00002093 } else if (getOpcode() == Instruction::InsertElement) {
2094 Constant *C1 = getOperand(0);
2095 Constant *C2 = getOperand(1);
2096 Constant *C3 = getOperand(1);
2097 if (C1 == From) C1 = To;
2098 if (C2 == From) C2 = To;
2099 if (C3 == From) C3 = To;
2100 Replacement = ConstantExpr::getInsertElement(C1, C2, C3);
2101 } else if (getOpcode() == Instruction::ShuffleVector) {
2102 Constant *C1 = getOperand(0);
2103 Constant *C2 = getOperand(1);
2104 Constant *C3 = getOperand(2);
2105 if (C1 == From) C1 = To;
2106 if (C2 == From) C2 = To;
2107 if (C3 == From) C3 = To;
2108 Replacement = ConstantExpr::getShuffleVector(C1, C2, C3);
Reid Spencer077d0eb2006-12-04 05:19:50 +00002109 } else if (isCompare()) {
2110 Constant *C1 = getOperand(0);
2111 Constant *C2 = getOperand(1);
2112 if (C1 == From) C1 = To;
2113 if (C2 == From) C2 = To;
2114 if (getOpcode() == Instruction::ICmp)
2115 Replacement = ConstantExpr::getICmp(getPredicate(), C1, C2);
Chris Lattnerbbedb0e2008-07-14 05:17:31 +00002116 else {
Nick Lewycky7f6aa2b2009-07-08 03:04:38 +00002117 assert(getOpcode() == Instruction::FCmp);
2118 Replacement = ConstantExpr::getFCmp(getPredicate(), C1, C2);
Chris Lattnerbbedb0e2008-07-14 05:17:31 +00002119 }
Chris Lattner5cbade92005-10-03 21:58:36 +00002120 } else if (getNumOperands() == 2) {
2121 Constant *C1 = getOperand(0);
2122 Constant *C2 = getOperand(1);
2123 if (C1 == From) C1 = To;
2124 if (C2 == From) C2 = To;
Dan Gohmanf8dbee72009-09-07 23:54:19 +00002125 Replacement = ConstantExpr::get(getOpcode(), C1, C2, SubclassData);
Chris Lattner5cbade92005-10-03 21:58:36 +00002126 } else {
Torok Edwinc23197a2009-07-14 16:55:14 +00002127 llvm_unreachable("Unknown ConstantExpr type!");
Chris Lattner5cbade92005-10-03 21:58:36 +00002128 return;
2129 }
2130
2131 assert(Replacement != this && "I didn't contain From!");
2132
Chris Lattnerd0ff1ad2005-10-04 18:13:04 +00002133 // Everyone using this now uses the replacement.
2134 uncheckedReplaceAllUsesWith(Replacement);
Chris Lattner5cbade92005-10-03 21:58:36 +00002135
2136 // Delete the old constant!
2137 destroyConstant();
Matthijs Kooijman10b9de62008-07-03 07:46:41 +00002138}