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Chris Lattnerb542afe2008-07-11 19:10:17 +00001//===--- ExprConstant.cpp - Expression Constant Evaluator -----------------===//
Anders Carlssonc44eec62008-07-03 04:20:39 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the Expr constant evaluator.
11//
Richard Smith745f5142012-01-27 01:14:48 +000012// Constant expression evaluation produces four main results:
13//
14// * A success/failure flag indicating whether constant folding was successful.
15// This is the 'bool' return value used by most of the code in this file. A
16// 'false' return value indicates that constant folding has failed, and any
17// appropriate diagnostic has already been produced.
18//
19// * An evaluated result, valid only if constant folding has not failed.
20//
21// * A flag indicating if evaluation encountered (unevaluated) side-effects.
22// These arise in cases such as (sideEffect(), 0) and (sideEffect() || 1),
23// where it is possible to determine the evaluated result regardless.
24//
25// * A set of notes indicating why the evaluation was not a constant expression
26// (under the C++11 rules only, at the moment), or, if folding failed too,
27// why the expression could not be folded.
28//
29// If we are checking for a potential constant expression, failure to constant
30// fold a potential constant sub-expression will be indicated by a 'false'
31// return value (the expression could not be folded) and no diagnostic (the
32// expression is not necessarily non-constant).
33//
Anders Carlssonc44eec62008-07-03 04:20:39 +000034//===----------------------------------------------------------------------===//
35
36#include "clang/AST/APValue.h"
37#include "clang/AST/ASTContext.h"
Ken Dyck199c3d62010-01-11 17:06:35 +000038#include "clang/AST/CharUnits.h"
Anders Carlsson19cc4ab2009-07-18 19:43:29 +000039#include "clang/AST/RecordLayout.h"
Seo Sanghyeon0fe52e12008-07-08 07:23:12 +000040#include "clang/AST/StmtVisitor.h"
Douglas Gregor8ecdb652010-04-28 22:16:22 +000041#include "clang/AST/TypeLoc.h"
Chris Lattner500d3292009-01-29 05:15:15 +000042#include "clang/AST/ASTDiagnostic.h"
Douglas Gregor8ecdb652010-04-28 22:16:22 +000043#include "clang/AST/Expr.h"
Chris Lattner1b63e4f2009-06-14 01:54:56 +000044#include "clang/Basic/Builtins.h"
Anders Carlsson06a36752008-07-08 05:49:43 +000045#include "clang/Basic/TargetInfo.h"
Mike Stump7462b392009-05-30 14:43:18 +000046#include "llvm/ADT/SmallString.h"
Mike Stump4572bab2009-05-30 03:56:50 +000047#include <cstring>
Richard Smith7b48a292012-02-01 05:53:12 +000048#include <functional>
Mike Stump4572bab2009-05-30 03:56:50 +000049
Anders Carlssonc44eec62008-07-03 04:20:39 +000050using namespace clang;
Chris Lattnerf5eeb052008-07-11 18:11:29 +000051using llvm::APSInt;
Eli Friedmand8bfe7f2008-08-22 00:06:13 +000052using llvm::APFloat;
Anders Carlssonc44eec62008-07-03 04:20:39 +000053
Chris Lattner87eae5e2008-07-11 22:52:41 +000054/// EvalInfo - This is a private struct used by the evaluator to capture
55/// information about a subexpression as it is folded. It retains information
56/// about the AST context, but also maintains information about the folded
57/// expression.
58///
59/// If an expression could be evaluated, it is still possible it is not a C
60/// "integer constant expression" or constant expression. If not, this struct
61/// captures information about how and why not.
62///
63/// One bit of information passed *into* the request for constant folding
64/// indicates whether the subexpression is "evaluated" or not according to C
65/// rules. For example, the RHS of (0 && foo()) is not evaluated. We can
66/// evaluate the expression regardless of what the RHS is, but C only allows
67/// certain things in certain situations.
John McCallf4cf1a12010-05-07 17:22:02 +000068namespace {
Richard Smith180f4792011-11-10 06:34:14 +000069 struct LValue;
Richard Smithd0dccea2011-10-28 22:34:42 +000070 struct CallStackFrame;
Richard Smithbd552ef2011-10-31 05:52:43 +000071 struct EvalInfo;
Richard Smithd0dccea2011-10-28 22:34:42 +000072
Richard Smith1bf9a9e2011-11-12 22:28:03 +000073 QualType getType(APValue::LValueBase B) {
74 if (!B) return QualType();
75 if (const ValueDecl *D = B.dyn_cast<const ValueDecl*>())
76 return D->getType();
77 return B.get<const Expr*>()->getType();
78 }
79
Richard Smith180f4792011-11-10 06:34:14 +000080 /// Get an LValue path entry, which is known to not be an array index, as a
Richard Smithf15fda02012-02-02 01:16:57 +000081 /// field or base class.
82 APValue::BaseOrMemberType getAsBaseOrMember(APValue::LValuePathEntry E) {
Richard Smith180f4792011-11-10 06:34:14 +000083 APValue::BaseOrMemberType Value;
84 Value.setFromOpaqueValue(E.BaseOrMember);
Richard Smithf15fda02012-02-02 01:16:57 +000085 return Value;
86 }
87
88 /// Get an LValue path entry, which is known to not be an array index, as a
89 /// field declaration.
90 const FieldDecl *getAsField(APValue::LValuePathEntry E) {
91 return dyn_cast<FieldDecl>(getAsBaseOrMember(E).getPointer());
Richard Smith180f4792011-11-10 06:34:14 +000092 }
93 /// Get an LValue path entry, which is known to not be an array index, as a
94 /// base class declaration.
95 const CXXRecordDecl *getAsBaseClass(APValue::LValuePathEntry E) {
Richard Smithf15fda02012-02-02 01:16:57 +000096 return dyn_cast<CXXRecordDecl>(getAsBaseOrMember(E).getPointer());
Richard Smith180f4792011-11-10 06:34:14 +000097 }
98 /// Determine whether this LValue path entry for a base class names a virtual
99 /// base class.
100 bool isVirtualBaseClass(APValue::LValuePathEntry E) {
Richard Smithf15fda02012-02-02 01:16:57 +0000101 return getAsBaseOrMember(E).getInt();
Richard Smith180f4792011-11-10 06:34:14 +0000102 }
103
Richard Smithb4e85ed2012-01-06 16:39:00 +0000104 /// Find the path length and type of the most-derived subobject in the given
105 /// path, and find the size of the containing array, if any.
106 static
107 unsigned findMostDerivedSubobject(ASTContext &Ctx, QualType Base,
108 ArrayRef<APValue::LValuePathEntry> Path,
109 uint64_t &ArraySize, QualType &Type) {
110 unsigned MostDerivedLength = 0;
111 Type = Base;
Richard Smith9a17a682011-11-07 05:07:52 +0000112 for (unsigned I = 0, N = Path.size(); I != N; ++I) {
Richard Smithb4e85ed2012-01-06 16:39:00 +0000113 if (Type->isArrayType()) {
114 const ConstantArrayType *CAT =
115 cast<ConstantArrayType>(Ctx.getAsArrayType(Type));
116 Type = CAT->getElementType();
117 ArraySize = CAT->getSize().getZExtValue();
118 MostDerivedLength = I + 1;
119 } else if (const FieldDecl *FD = getAsField(Path[I])) {
120 Type = FD->getType();
121 ArraySize = 0;
122 MostDerivedLength = I + 1;
123 } else {
Richard Smith9a17a682011-11-07 05:07:52 +0000124 // Path[I] describes a base class.
Richard Smithb4e85ed2012-01-06 16:39:00 +0000125 ArraySize = 0;
126 }
Richard Smith9a17a682011-11-07 05:07:52 +0000127 }
Richard Smithb4e85ed2012-01-06 16:39:00 +0000128 return MostDerivedLength;
Richard Smith9a17a682011-11-07 05:07:52 +0000129 }
130
Richard Smithb4e85ed2012-01-06 16:39:00 +0000131 // The order of this enum is important for diagnostics.
132 enum CheckSubobjectKind {
Richard Smithb04035a2012-02-01 02:39:43 +0000133 CSK_Base, CSK_Derived, CSK_Field, CSK_ArrayToPointer, CSK_ArrayIndex,
134 CSK_This
Richard Smithb4e85ed2012-01-06 16:39:00 +0000135 };
136
Richard Smith0a3bdb62011-11-04 02:25:55 +0000137 /// A path from a glvalue to a subobject of that glvalue.
138 struct SubobjectDesignator {
139 /// True if the subobject was named in a manner not supported by C++11. Such
140 /// lvalues can still be folded, but they are not core constant expressions
141 /// and we cannot perform lvalue-to-rvalue conversions on them.
142 bool Invalid : 1;
143
Richard Smithb4e85ed2012-01-06 16:39:00 +0000144 /// Is this a pointer one past the end of an object?
145 bool IsOnePastTheEnd : 1;
Richard Smith0a3bdb62011-11-04 02:25:55 +0000146
Richard Smithb4e85ed2012-01-06 16:39:00 +0000147 /// The length of the path to the most-derived object of which this is a
148 /// subobject.
149 unsigned MostDerivedPathLength : 30;
150
151 /// The size of the array of which the most-derived object is an element, or
152 /// 0 if the most-derived object is not an array element.
153 uint64_t MostDerivedArraySize;
154
155 /// The type of the most derived object referred to by this address.
156 QualType MostDerivedType;
Richard Smith0a3bdb62011-11-04 02:25:55 +0000157
Richard Smith9a17a682011-11-07 05:07:52 +0000158 typedef APValue::LValuePathEntry PathEntry;
159
Richard Smith0a3bdb62011-11-04 02:25:55 +0000160 /// The entries on the path from the glvalue to the designated subobject.
161 SmallVector<PathEntry, 8> Entries;
162
Richard Smithb4e85ed2012-01-06 16:39:00 +0000163 SubobjectDesignator() : Invalid(true) {}
Richard Smith0a3bdb62011-11-04 02:25:55 +0000164
Richard Smithb4e85ed2012-01-06 16:39:00 +0000165 explicit SubobjectDesignator(QualType T)
166 : Invalid(false), IsOnePastTheEnd(false), MostDerivedPathLength(0),
167 MostDerivedArraySize(0), MostDerivedType(T) {}
168
169 SubobjectDesignator(ASTContext &Ctx, const APValue &V)
170 : Invalid(!V.isLValue() || !V.hasLValuePath()), IsOnePastTheEnd(false),
171 MostDerivedPathLength(0), MostDerivedArraySize(0) {
Richard Smith9a17a682011-11-07 05:07:52 +0000172 if (!Invalid) {
Richard Smithb4e85ed2012-01-06 16:39:00 +0000173 IsOnePastTheEnd = V.isLValueOnePastTheEnd();
Richard Smith9a17a682011-11-07 05:07:52 +0000174 ArrayRef<PathEntry> VEntries = V.getLValuePath();
175 Entries.insert(Entries.end(), VEntries.begin(), VEntries.end());
176 if (V.getLValueBase())
Richard Smithb4e85ed2012-01-06 16:39:00 +0000177 MostDerivedPathLength =
178 findMostDerivedSubobject(Ctx, getType(V.getLValueBase()),
179 V.getLValuePath(), MostDerivedArraySize,
180 MostDerivedType);
Richard Smith9a17a682011-11-07 05:07:52 +0000181 }
182 }
183
Richard Smith0a3bdb62011-11-04 02:25:55 +0000184 void setInvalid() {
185 Invalid = true;
186 Entries.clear();
187 }
Richard Smithb4e85ed2012-01-06 16:39:00 +0000188
189 /// Determine whether this is a one-past-the-end pointer.
190 bool isOnePastTheEnd() const {
191 if (IsOnePastTheEnd)
192 return true;
193 if (MostDerivedArraySize &&
194 Entries[MostDerivedPathLength - 1].ArrayIndex == MostDerivedArraySize)
195 return true;
196 return false;
197 }
198
199 /// Check that this refers to a valid subobject.
200 bool isValidSubobject() const {
201 if (Invalid)
202 return false;
203 return !isOnePastTheEnd();
204 }
205 /// Check that this refers to a valid subobject, and if not, produce a
206 /// relevant diagnostic and set the designator as invalid.
207 bool checkSubobject(EvalInfo &Info, const Expr *E, CheckSubobjectKind CSK);
208
209 /// Update this designator to refer to the first element within this array.
210 void addArrayUnchecked(const ConstantArrayType *CAT) {
Richard Smith0a3bdb62011-11-04 02:25:55 +0000211 PathEntry Entry;
Richard Smithb4e85ed2012-01-06 16:39:00 +0000212 Entry.ArrayIndex = 0;
Richard Smith0a3bdb62011-11-04 02:25:55 +0000213 Entries.push_back(Entry);
Richard Smithb4e85ed2012-01-06 16:39:00 +0000214
215 // This is a most-derived object.
216 MostDerivedType = CAT->getElementType();
217 MostDerivedArraySize = CAT->getSize().getZExtValue();
218 MostDerivedPathLength = Entries.size();
Richard Smith0a3bdb62011-11-04 02:25:55 +0000219 }
220 /// Update this designator to refer to the given base or member of this
221 /// object.
Richard Smithb4e85ed2012-01-06 16:39:00 +0000222 void addDeclUnchecked(const Decl *D, bool Virtual = false) {
Richard Smith0a3bdb62011-11-04 02:25:55 +0000223 PathEntry Entry;
Richard Smith180f4792011-11-10 06:34:14 +0000224 APValue::BaseOrMemberType Value(D, Virtual);
225 Entry.BaseOrMember = Value.getOpaqueValue();
Richard Smith0a3bdb62011-11-04 02:25:55 +0000226 Entries.push_back(Entry);
Richard Smithb4e85ed2012-01-06 16:39:00 +0000227
228 // If this isn't a base class, it's a new most-derived object.
229 if (const FieldDecl *FD = dyn_cast<FieldDecl>(D)) {
230 MostDerivedType = FD->getType();
231 MostDerivedArraySize = 0;
232 MostDerivedPathLength = Entries.size();
233 }
Richard Smith0a3bdb62011-11-04 02:25:55 +0000234 }
Richard Smithb4e85ed2012-01-06 16:39:00 +0000235 void diagnosePointerArithmetic(EvalInfo &Info, const Expr *E, uint64_t N);
Richard Smith0a3bdb62011-11-04 02:25:55 +0000236 /// Add N to the address of this subobject.
Richard Smithb4e85ed2012-01-06 16:39:00 +0000237 void adjustIndex(EvalInfo &Info, const Expr *E, uint64_t N) {
Richard Smith0a3bdb62011-11-04 02:25:55 +0000238 if (Invalid) return;
Richard Smithb4e85ed2012-01-06 16:39:00 +0000239 if (MostDerivedPathLength == Entries.size() && MostDerivedArraySize) {
Richard Smith9a17a682011-11-07 05:07:52 +0000240 Entries.back().ArrayIndex += N;
Richard Smithb4e85ed2012-01-06 16:39:00 +0000241 if (Entries.back().ArrayIndex > MostDerivedArraySize) {
242 diagnosePointerArithmetic(Info, E, Entries.back().ArrayIndex);
243 setInvalid();
244 }
Richard Smith0a3bdb62011-11-04 02:25:55 +0000245 return;
246 }
Richard Smithb4e85ed2012-01-06 16:39:00 +0000247 // [expr.add]p4: For the purposes of these operators, a pointer to a
248 // nonarray object behaves the same as a pointer to the first element of
249 // an array of length one with the type of the object as its element type.
250 if (IsOnePastTheEnd && N == (uint64_t)-1)
251 IsOnePastTheEnd = false;
252 else if (!IsOnePastTheEnd && N == 1)
253 IsOnePastTheEnd = true;
254 else if (N != 0) {
255 diagnosePointerArithmetic(Info, E, uint64_t(IsOnePastTheEnd) + N);
Richard Smith0a3bdb62011-11-04 02:25:55 +0000256 setInvalid();
Richard Smithb4e85ed2012-01-06 16:39:00 +0000257 }
Richard Smith0a3bdb62011-11-04 02:25:55 +0000258 }
259 };
260
Richard Smith47a1eed2011-10-29 20:57:55 +0000261 /// A core constant value. This can be the value of any constant expression,
262 /// or a pointer or reference to a non-static object or function parameter.
Richard Smithe24f5fc2011-11-17 22:56:20 +0000263 ///
264 /// For an LValue, the base and offset are stored in the APValue subobject,
265 /// but the other information is stored in the SubobjectDesignator. For all
266 /// other value kinds, the value is stored directly in the APValue subobject.
Richard Smith47a1eed2011-10-29 20:57:55 +0000267 class CCValue : public APValue {
268 typedef llvm::APSInt APSInt;
269 typedef llvm::APFloat APFloat;
Richard Smith177dce72011-11-01 16:57:24 +0000270 /// If the value is a reference or pointer into a parameter or temporary,
271 /// this is the corresponding call stack frame.
272 CallStackFrame *CallFrame;
Richard Smith0a3bdb62011-11-04 02:25:55 +0000273 /// If the value is a reference or pointer, this is a description of how the
274 /// subobject was specified.
275 SubobjectDesignator Designator;
Richard Smith47a1eed2011-10-29 20:57:55 +0000276 public:
Richard Smith177dce72011-11-01 16:57:24 +0000277 struct GlobalValue {};
278
Richard Smith47a1eed2011-10-29 20:57:55 +0000279 CCValue() {}
280 explicit CCValue(const APSInt &I) : APValue(I) {}
281 explicit CCValue(const APFloat &F) : APValue(F) {}
282 CCValue(const APValue *E, unsigned N) : APValue(E, N) {}
283 CCValue(const APSInt &R, const APSInt &I) : APValue(R, I) {}
284 CCValue(const APFloat &R, const APFloat &I) : APValue(R, I) {}
Richard Smith177dce72011-11-01 16:57:24 +0000285 CCValue(const CCValue &V) : APValue(V), CallFrame(V.CallFrame) {}
Richard Smith1bf9a9e2011-11-12 22:28:03 +0000286 CCValue(LValueBase B, const CharUnits &O, CallStackFrame *F,
Richard Smith0a3bdb62011-11-04 02:25:55 +0000287 const SubobjectDesignator &D) :
Richard Smith9a17a682011-11-07 05:07:52 +0000288 APValue(B, O, APValue::NoLValuePath()), CallFrame(F), Designator(D) {}
Richard Smithb4e85ed2012-01-06 16:39:00 +0000289 CCValue(ASTContext &Ctx, const APValue &V, GlobalValue) :
290 APValue(V), CallFrame(0), Designator(Ctx, V) {}
Richard Smithe24f5fc2011-11-17 22:56:20 +0000291 CCValue(const ValueDecl *D, bool IsDerivedMember,
292 ArrayRef<const CXXRecordDecl*> Path) :
293 APValue(D, IsDerivedMember, Path) {}
Eli Friedman65639282012-01-04 23:13:47 +0000294 CCValue(const AddrLabelExpr* LHSExpr, const AddrLabelExpr* RHSExpr) :
295 APValue(LHSExpr, RHSExpr) {}
Richard Smith47a1eed2011-10-29 20:57:55 +0000296
Richard Smith177dce72011-11-01 16:57:24 +0000297 CallStackFrame *getLValueFrame() const {
Richard Smith47a1eed2011-10-29 20:57:55 +0000298 assert(getKind() == LValue);
Richard Smith177dce72011-11-01 16:57:24 +0000299 return CallFrame;
Richard Smith47a1eed2011-10-29 20:57:55 +0000300 }
Richard Smith0a3bdb62011-11-04 02:25:55 +0000301 SubobjectDesignator &getLValueDesignator() {
302 assert(getKind() == LValue);
303 return Designator;
304 }
305 const SubobjectDesignator &getLValueDesignator() const {
306 return const_cast<CCValue*>(this)->getLValueDesignator();
307 }
Richard Smith47a1eed2011-10-29 20:57:55 +0000308 };
309
Richard Smithd0dccea2011-10-28 22:34:42 +0000310 /// A stack frame in the constexpr call stack.
311 struct CallStackFrame {
312 EvalInfo &Info;
313
314 /// Parent - The caller of this stack frame.
Richard Smithbd552ef2011-10-31 05:52:43 +0000315 CallStackFrame *Caller;
Richard Smithd0dccea2011-10-28 22:34:42 +0000316
Richard Smith08d6e032011-12-16 19:06:07 +0000317 /// CallLoc - The location of the call expression for this call.
318 SourceLocation CallLoc;
319
320 /// Callee - The function which was called.
321 const FunctionDecl *Callee;
322
Richard Smith180f4792011-11-10 06:34:14 +0000323 /// This - The binding for the this pointer in this call, if any.
324 const LValue *This;
325
Richard Smithd0dccea2011-10-28 22:34:42 +0000326 /// ParmBindings - Parameter bindings for this function call, indexed by
327 /// parameters' function scope indices.
Richard Smith47a1eed2011-10-29 20:57:55 +0000328 const CCValue *Arguments;
Richard Smithd0dccea2011-10-28 22:34:42 +0000329
Richard Smithbd552ef2011-10-31 05:52:43 +0000330 typedef llvm::DenseMap<const Expr*, CCValue> MapTy;
331 typedef MapTy::const_iterator temp_iterator;
332 /// Temporaries - Temporary lvalues materialized within this stack frame.
333 MapTy Temporaries;
334
Richard Smith08d6e032011-12-16 19:06:07 +0000335 CallStackFrame(EvalInfo &Info, SourceLocation CallLoc,
336 const FunctionDecl *Callee, const LValue *This,
Richard Smith180f4792011-11-10 06:34:14 +0000337 const CCValue *Arguments);
Richard Smithbd552ef2011-10-31 05:52:43 +0000338 ~CallStackFrame();
Richard Smithd0dccea2011-10-28 22:34:42 +0000339 };
340
Richard Smithdd1f29b2011-12-12 09:28:41 +0000341 /// A partial diagnostic which we might know in advance that we are not going
342 /// to emit.
343 class OptionalDiagnostic {
344 PartialDiagnostic *Diag;
345
346 public:
347 explicit OptionalDiagnostic(PartialDiagnostic *Diag = 0) : Diag(Diag) {}
348
349 template<typename T>
350 OptionalDiagnostic &operator<<(const T &v) {
351 if (Diag)
352 *Diag << v;
353 return *this;
354 }
Richard Smith789f9b62012-01-31 04:08:20 +0000355
356 OptionalDiagnostic &operator<<(const APSInt &I) {
357 if (Diag) {
358 llvm::SmallVector<char, 32> Buffer;
359 I.toString(Buffer);
360 *Diag << StringRef(Buffer.data(), Buffer.size());
361 }
362 return *this;
363 }
364
365 OptionalDiagnostic &operator<<(const APFloat &F) {
366 if (Diag) {
367 llvm::SmallVector<char, 32> Buffer;
368 F.toString(Buffer);
369 *Diag << StringRef(Buffer.data(), Buffer.size());
370 }
371 return *this;
372 }
Richard Smithdd1f29b2011-12-12 09:28:41 +0000373 };
374
Richard Smithbd552ef2011-10-31 05:52:43 +0000375 struct EvalInfo {
Richard Smithdd1f29b2011-12-12 09:28:41 +0000376 ASTContext &Ctx;
Richard Smithbd552ef2011-10-31 05:52:43 +0000377
378 /// EvalStatus - Contains information about the evaluation.
379 Expr::EvalStatus &EvalStatus;
380
381 /// CurrentCall - The top of the constexpr call stack.
382 CallStackFrame *CurrentCall;
383
Richard Smithbd552ef2011-10-31 05:52:43 +0000384 /// CallStackDepth - The number of calls in the call stack right now.
385 unsigned CallStackDepth;
386
387 typedef llvm::DenseMap<const OpaqueValueExpr*, CCValue> MapTy;
388 /// OpaqueValues - Values used as the common expression in a
389 /// BinaryConditionalOperator.
390 MapTy OpaqueValues;
391
392 /// BottomFrame - The frame in which evaluation started. This must be
Richard Smith745f5142012-01-27 01:14:48 +0000393 /// initialized after CurrentCall and CallStackDepth.
Richard Smithbd552ef2011-10-31 05:52:43 +0000394 CallStackFrame BottomFrame;
395
Richard Smith180f4792011-11-10 06:34:14 +0000396 /// EvaluatingDecl - This is the declaration whose initializer is being
397 /// evaluated, if any.
398 const VarDecl *EvaluatingDecl;
399
400 /// EvaluatingDeclValue - This is the value being constructed for the
401 /// declaration whose initializer is being evaluated, if any.
402 APValue *EvaluatingDeclValue;
403
Richard Smithc1c5f272011-12-13 06:39:58 +0000404 /// HasActiveDiagnostic - Was the previous diagnostic stored? If so, further
405 /// notes attached to it will also be stored, otherwise they will not be.
406 bool HasActiveDiagnostic;
407
Richard Smith745f5142012-01-27 01:14:48 +0000408 /// CheckingPotentialConstantExpression - Are we checking whether the
409 /// expression is a potential constant expression? If so, some diagnostics
410 /// are suppressed.
411 bool CheckingPotentialConstantExpression;
412
Richard Smithbd552ef2011-10-31 05:52:43 +0000413
414 EvalInfo(const ASTContext &C, Expr::EvalStatus &S)
Richard Smithdd1f29b2011-12-12 09:28:41 +0000415 : Ctx(const_cast<ASTContext&>(C)), EvalStatus(S), CurrentCall(0),
Richard Smith08d6e032011-12-16 19:06:07 +0000416 CallStackDepth(0), BottomFrame(*this, SourceLocation(), 0, 0, 0),
Richard Smith745f5142012-01-27 01:14:48 +0000417 EvaluatingDecl(0), EvaluatingDeclValue(0), HasActiveDiagnostic(false),
418 CheckingPotentialConstantExpression(false) {}
Richard Smithbd552ef2011-10-31 05:52:43 +0000419
Richard Smithbd552ef2011-10-31 05:52:43 +0000420 const CCValue *getOpaqueValue(const OpaqueValueExpr *e) const {
421 MapTy::const_iterator i = OpaqueValues.find(e);
422 if (i == OpaqueValues.end()) return 0;
423 return &i->second;
424 }
425
Richard Smith180f4792011-11-10 06:34:14 +0000426 void setEvaluatingDecl(const VarDecl *VD, APValue &Value) {
427 EvaluatingDecl = VD;
428 EvaluatingDeclValue = &Value;
429 }
430
Richard Smithc18c4232011-11-21 19:36:32 +0000431 const LangOptions &getLangOpts() const { return Ctx.getLangOptions(); }
432
Richard Smithc1c5f272011-12-13 06:39:58 +0000433 bool CheckCallLimit(SourceLocation Loc) {
Richard Smith745f5142012-01-27 01:14:48 +0000434 // Don't perform any constexpr calls (other than the call we're checking)
435 // when checking a potential constant expression.
436 if (CheckingPotentialConstantExpression && CallStackDepth > 1)
437 return false;
Richard Smithc1c5f272011-12-13 06:39:58 +0000438 if (CallStackDepth <= getLangOpts().ConstexprCallDepth)
439 return true;
440 Diag(Loc, diag::note_constexpr_depth_limit_exceeded)
441 << getLangOpts().ConstexprCallDepth;
442 return false;
Richard Smithc18c4232011-11-21 19:36:32 +0000443 }
Richard Smithf48fdb02011-12-09 22:58:01 +0000444
Richard Smithc1c5f272011-12-13 06:39:58 +0000445 private:
446 /// Add a diagnostic to the diagnostics list.
447 PartialDiagnostic &addDiag(SourceLocation Loc, diag::kind DiagId) {
448 PartialDiagnostic PD(DiagId, Ctx.getDiagAllocator());
449 EvalStatus.Diag->push_back(std::make_pair(Loc, PD));
450 return EvalStatus.Diag->back().second;
451 }
452
Richard Smith08d6e032011-12-16 19:06:07 +0000453 /// Add notes containing a call stack to the current point of evaluation.
454 void addCallStack(unsigned Limit);
455
Richard Smithc1c5f272011-12-13 06:39:58 +0000456 public:
Richard Smithf48fdb02011-12-09 22:58:01 +0000457 /// Diagnose that the evaluation cannot be folded.
Richard Smith7098cbd2011-12-21 05:04:46 +0000458 OptionalDiagnostic Diag(SourceLocation Loc, diag::kind DiagId
459 = diag::note_invalid_subexpr_in_const_expr,
Richard Smithc1c5f272011-12-13 06:39:58 +0000460 unsigned ExtraNotes = 0) {
Richard Smithf48fdb02011-12-09 22:58:01 +0000461 // If we have a prior diagnostic, it will be noting that the expression
462 // isn't a constant expression. This diagnostic is more important.
463 // FIXME: We might want to show both diagnostics to the user.
Richard Smithdd1f29b2011-12-12 09:28:41 +0000464 if (EvalStatus.Diag) {
Richard Smith08d6e032011-12-16 19:06:07 +0000465 unsigned CallStackNotes = CallStackDepth - 1;
466 unsigned Limit = Ctx.getDiagnostics().getConstexprBacktraceLimit();
467 if (Limit)
468 CallStackNotes = std::min(CallStackNotes, Limit + 1);
Richard Smith745f5142012-01-27 01:14:48 +0000469 if (CheckingPotentialConstantExpression)
470 CallStackNotes = 0;
Richard Smith08d6e032011-12-16 19:06:07 +0000471
Richard Smithc1c5f272011-12-13 06:39:58 +0000472 HasActiveDiagnostic = true;
Richard Smithdd1f29b2011-12-12 09:28:41 +0000473 EvalStatus.Diag->clear();
Richard Smith08d6e032011-12-16 19:06:07 +0000474 EvalStatus.Diag->reserve(1 + ExtraNotes + CallStackNotes);
475 addDiag(Loc, DiagId);
Richard Smith745f5142012-01-27 01:14:48 +0000476 if (!CheckingPotentialConstantExpression)
477 addCallStack(Limit);
Richard Smith08d6e032011-12-16 19:06:07 +0000478 return OptionalDiagnostic(&(*EvalStatus.Diag)[0].second);
Richard Smithdd1f29b2011-12-12 09:28:41 +0000479 }
Richard Smithc1c5f272011-12-13 06:39:58 +0000480 HasActiveDiagnostic = false;
Richard Smithdd1f29b2011-12-12 09:28:41 +0000481 return OptionalDiagnostic();
482 }
483
484 /// Diagnose that the evaluation does not produce a C++11 core constant
485 /// expression.
Richard Smith7098cbd2011-12-21 05:04:46 +0000486 OptionalDiagnostic CCEDiag(SourceLocation Loc, diag::kind DiagId
487 = diag::note_invalid_subexpr_in_const_expr,
Richard Smithc1c5f272011-12-13 06:39:58 +0000488 unsigned ExtraNotes = 0) {
Richard Smithdd1f29b2011-12-12 09:28:41 +0000489 // Don't override a previous diagnostic.
490 if (!EvalStatus.Diag || !EvalStatus.Diag->empty())
491 return OptionalDiagnostic();
Richard Smithc1c5f272011-12-13 06:39:58 +0000492 return Diag(Loc, DiagId, ExtraNotes);
493 }
494
495 /// Add a note to a prior diagnostic.
496 OptionalDiagnostic Note(SourceLocation Loc, diag::kind DiagId) {
497 if (!HasActiveDiagnostic)
498 return OptionalDiagnostic();
499 return OptionalDiagnostic(&addDiag(Loc, DiagId));
Richard Smithf48fdb02011-12-09 22:58:01 +0000500 }
Richard Smith099e7f62011-12-19 06:19:21 +0000501
502 /// Add a stack of notes to a prior diagnostic.
503 void addNotes(ArrayRef<PartialDiagnosticAt> Diags) {
504 if (HasActiveDiagnostic) {
505 EvalStatus.Diag->insert(EvalStatus.Diag->end(),
506 Diags.begin(), Diags.end());
507 }
508 }
Richard Smith745f5142012-01-27 01:14:48 +0000509
510 /// Should we continue evaluation as much as possible after encountering a
511 /// construct which can't be folded?
512 bool keepEvaluatingAfterFailure() {
513 return CheckingPotentialConstantExpression && EvalStatus.Diag->empty();
514 }
Richard Smithbd552ef2011-10-31 05:52:43 +0000515 };
Richard Smithf15fda02012-02-02 01:16:57 +0000516
517 /// Object used to treat all foldable expressions as constant expressions.
518 struct FoldConstant {
519 bool Enabled;
520
521 explicit FoldConstant(EvalInfo &Info)
522 : Enabled(Info.EvalStatus.Diag && Info.EvalStatus.Diag->empty() &&
523 !Info.EvalStatus.HasSideEffects) {
524 }
525 // Treat the value we've computed since this object was created as constant.
526 void Fold(EvalInfo &Info) {
527 if (Enabled && !Info.EvalStatus.Diag->empty() &&
528 !Info.EvalStatus.HasSideEffects)
529 Info.EvalStatus.Diag->clear();
530 }
531 };
Richard Smith08d6e032011-12-16 19:06:07 +0000532}
Richard Smithbd552ef2011-10-31 05:52:43 +0000533
Richard Smithb4e85ed2012-01-06 16:39:00 +0000534bool SubobjectDesignator::checkSubobject(EvalInfo &Info, const Expr *E,
535 CheckSubobjectKind CSK) {
536 if (Invalid)
537 return false;
538 if (isOnePastTheEnd()) {
539 Info.CCEDiag(E->getExprLoc(), diag::note_constexpr_past_end_subobject)
540 << CSK;
541 setInvalid();
542 return false;
543 }
544 return true;
545}
546
547void SubobjectDesignator::diagnosePointerArithmetic(EvalInfo &Info,
548 const Expr *E, uint64_t N) {
549 if (MostDerivedPathLength == Entries.size() && MostDerivedArraySize)
550 Info.CCEDiag(E->getExprLoc(), diag::note_constexpr_array_index)
551 << static_cast<int>(N) << /*array*/ 0
552 << static_cast<unsigned>(MostDerivedArraySize);
553 else
554 Info.CCEDiag(E->getExprLoc(), diag::note_constexpr_array_index)
555 << static_cast<int>(N) << /*non-array*/ 1;
556 setInvalid();
557}
558
Richard Smith08d6e032011-12-16 19:06:07 +0000559CallStackFrame::CallStackFrame(EvalInfo &Info, SourceLocation CallLoc,
560 const FunctionDecl *Callee, const LValue *This,
561 const CCValue *Arguments)
562 : Info(Info), Caller(Info.CurrentCall), CallLoc(CallLoc), Callee(Callee),
563 This(This), Arguments(Arguments) {
564 Info.CurrentCall = this;
565 ++Info.CallStackDepth;
566}
567
568CallStackFrame::~CallStackFrame() {
569 assert(Info.CurrentCall == this && "calls retired out of order");
570 --Info.CallStackDepth;
571 Info.CurrentCall = Caller;
572}
573
574/// Produce a string describing the given constexpr call.
575static void describeCall(CallStackFrame *Frame, llvm::raw_ostream &Out) {
576 unsigned ArgIndex = 0;
577 bool IsMemberCall = isa<CXXMethodDecl>(Frame->Callee) &&
Richard Smith5ba73e12012-02-04 00:33:54 +0000578 !isa<CXXConstructorDecl>(Frame->Callee) &&
579 cast<CXXMethodDecl>(Frame->Callee)->isInstance();
Richard Smith08d6e032011-12-16 19:06:07 +0000580
581 if (!IsMemberCall)
582 Out << *Frame->Callee << '(';
583
584 for (FunctionDecl::param_const_iterator I = Frame->Callee->param_begin(),
585 E = Frame->Callee->param_end(); I != E; ++I, ++ArgIndex) {
NAKAMURA Takumi5fe31222012-01-26 09:37:36 +0000586 if (ArgIndex > (unsigned)IsMemberCall)
Richard Smith08d6e032011-12-16 19:06:07 +0000587 Out << ", ";
588
589 const ParmVarDecl *Param = *I;
590 const CCValue &Arg = Frame->Arguments[ArgIndex];
591 if (!Arg.isLValue() || Arg.getLValueDesignator().Invalid)
592 Arg.printPretty(Out, Frame->Info.Ctx, Param->getType());
593 else {
594 // Deliberately slice off the frame to form an APValue we can print.
595 APValue Value(Arg.getLValueBase(), Arg.getLValueOffset(),
596 Arg.getLValueDesignator().Entries,
Richard Smithb4e85ed2012-01-06 16:39:00 +0000597 Arg.getLValueDesignator().IsOnePastTheEnd);
Richard Smith08d6e032011-12-16 19:06:07 +0000598 Value.printPretty(Out, Frame->Info.Ctx, Param->getType());
599 }
600
601 if (ArgIndex == 0 && IsMemberCall)
602 Out << "->" << *Frame->Callee << '(';
Richard Smithbd552ef2011-10-31 05:52:43 +0000603 }
604
Richard Smith08d6e032011-12-16 19:06:07 +0000605 Out << ')';
606}
607
608void EvalInfo::addCallStack(unsigned Limit) {
609 // Determine which calls to skip, if any.
610 unsigned ActiveCalls = CallStackDepth - 1;
611 unsigned SkipStart = ActiveCalls, SkipEnd = SkipStart;
612 if (Limit && Limit < ActiveCalls) {
613 SkipStart = Limit / 2 + Limit % 2;
614 SkipEnd = ActiveCalls - Limit / 2;
Richard Smithbd552ef2011-10-31 05:52:43 +0000615 }
616
Richard Smith08d6e032011-12-16 19:06:07 +0000617 // Walk the call stack and add the diagnostics.
618 unsigned CallIdx = 0;
619 for (CallStackFrame *Frame = CurrentCall; Frame != &BottomFrame;
620 Frame = Frame->Caller, ++CallIdx) {
621 // Skip this call?
622 if (CallIdx >= SkipStart && CallIdx < SkipEnd) {
623 if (CallIdx == SkipStart) {
624 // Note that we're skipping calls.
625 addDiag(Frame->CallLoc, diag::note_constexpr_calls_suppressed)
626 << unsigned(ActiveCalls - Limit);
627 }
628 continue;
629 }
630
631 llvm::SmallVector<char, 128> Buffer;
632 llvm::raw_svector_ostream Out(Buffer);
633 describeCall(Frame, Out);
634 addDiag(Frame->CallLoc, diag::note_constexpr_call_here) << Out.str();
635 }
636}
637
638namespace {
John McCallf4cf1a12010-05-07 17:22:02 +0000639 struct ComplexValue {
640 private:
641 bool IsInt;
642
643 public:
644 APSInt IntReal, IntImag;
645 APFloat FloatReal, FloatImag;
646
647 ComplexValue() : FloatReal(APFloat::Bogus), FloatImag(APFloat::Bogus) {}
648
649 void makeComplexFloat() { IsInt = false; }
650 bool isComplexFloat() const { return !IsInt; }
651 APFloat &getComplexFloatReal() { return FloatReal; }
652 APFloat &getComplexFloatImag() { return FloatImag; }
653
654 void makeComplexInt() { IsInt = true; }
655 bool isComplexInt() const { return IsInt; }
656 APSInt &getComplexIntReal() { return IntReal; }
657 APSInt &getComplexIntImag() { return IntImag; }
658
Richard Smith47a1eed2011-10-29 20:57:55 +0000659 void moveInto(CCValue &v) const {
John McCallf4cf1a12010-05-07 17:22:02 +0000660 if (isComplexFloat())
Richard Smith47a1eed2011-10-29 20:57:55 +0000661 v = CCValue(FloatReal, FloatImag);
John McCallf4cf1a12010-05-07 17:22:02 +0000662 else
Richard Smith47a1eed2011-10-29 20:57:55 +0000663 v = CCValue(IntReal, IntImag);
John McCallf4cf1a12010-05-07 17:22:02 +0000664 }
Richard Smith47a1eed2011-10-29 20:57:55 +0000665 void setFrom(const CCValue &v) {
John McCall56ca35d2011-02-17 10:25:35 +0000666 assert(v.isComplexFloat() || v.isComplexInt());
667 if (v.isComplexFloat()) {
668 makeComplexFloat();
669 FloatReal = v.getComplexFloatReal();
670 FloatImag = v.getComplexFloatImag();
671 } else {
672 makeComplexInt();
673 IntReal = v.getComplexIntReal();
674 IntImag = v.getComplexIntImag();
675 }
676 }
John McCallf4cf1a12010-05-07 17:22:02 +0000677 };
John McCallefdb83e2010-05-07 21:00:08 +0000678
679 struct LValue {
Richard Smith1bf9a9e2011-11-12 22:28:03 +0000680 APValue::LValueBase Base;
John McCallefdb83e2010-05-07 21:00:08 +0000681 CharUnits Offset;
Richard Smith177dce72011-11-01 16:57:24 +0000682 CallStackFrame *Frame;
Richard Smith0a3bdb62011-11-04 02:25:55 +0000683 SubobjectDesignator Designator;
John McCallefdb83e2010-05-07 21:00:08 +0000684
Richard Smith1bf9a9e2011-11-12 22:28:03 +0000685 const APValue::LValueBase getLValueBase() const { return Base; }
Richard Smith47a1eed2011-10-29 20:57:55 +0000686 CharUnits &getLValueOffset() { return Offset; }
Richard Smith625b8072011-10-31 01:37:14 +0000687 const CharUnits &getLValueOffset() const { return Offset; }
Richard Smith177dce72011-11-01 16:57:24 +0000688 CallStackFrame *getLValueFrame() const { return Frame; }
Richard Smith0a3bdb62011-11-04 02:25:55 +0000689 SubobjectDesignator &getLValueDesignator() { return Designator; }
690 const SubobjectDesignator &getLValueDesignator() const { return Designator;}
John McCallefdb83e2010-05-07 21:00:08 +0000691
Richard Smith47a1eed2011-10-29 20:57:55 +0000692 void moveInto(CCValue &V) const {
Richard Smith0a3bdb62011-11-04 02:25:55 +0000693 V = CCValue(Base, Offset, Frame, Designator);
John McCallefdb83e2010-05-07 21:00:08 +0000694 }
Richard Smith47a1eed2011-10-29 20:57:55 +0000695 void setFrom(const CCValue &V) {
696 assert(V.isLValue());
697 Base = V.getLValueBase();
698 Offset = V.getLValueOffset();
Richard Smith177dce72011-11-01 16:57:24 +0000699 Frame = V.getLValueFrame();
Richard Smith0a3bdb62011-11-04 02:25:55 +0000700 Designator = V.getLValueDesignator();
701 }
702
Richard Smith1bf9a9e2011-11-12 22:28:03 +0000703 void set(APValue::LValueBase B, CallStackFrame *F = 0) {
704 Base = B;
Richard Smith0a3bdb62011-11-04 02:25:55 +0000705 Offset = CharUnits::Zero();
706 Frame = F;
Richard Smithb4e85ed2012-01-06 16:39:00 +0000707 Designator = SubobjectDesignator(getType(B));
708 }
709
710 // Check that this LValue is not based on a null pointer. If it is, produce
711 // a diagnostic and mark the designator as invalid.
712 bool checkNullPointer(EvalInfo &Info, const Expr *E,
713 CheckSubobjectKind CSK) {
714 if (Designator.Invalid)
715 return false;
716 if (!Base) {
717 Info.CCEDiag(E->getExprLoc(), diag::note_constexpr_null_subobject)
718 << CSK;
719 Designator.setInvalid();
720 return false;
721 }
722 return true;
723 }
724
725 // Check this LValue refers to an object. If not, set the designator to be
726 // invalid and emit a diagnostic.
727 bool checkSubobject(EvalInfo &Info, const Expr *E, CheckSubobjectKind CSK) {
728 return checkNullPointer(Info, E, CSK) &&
729 Designator.checkSubobject(Info, E, CSK);
730 }
731
732 void addDecl(EvalInfo &Info, const Expr *E,
733 const Decl *D, bool Virtual = false) {
734 checkSubobject(Info, E, isa<FieldDecl>(D) ? CSK_Field : CSK_Base);
735 Designator.addDeclUnchecked(D, Virtual);
736 }
737 void addArray(EvalInfo &Info, const Expr *E, const ConstantArrayType *CAT) {
738 checkSubobject(Info, E, CSK_ArrayToPointer);
739 Designator.addArrayUnchecked(CAT);
740 }
741 void adjustIndex(EvalInfo &Info, const Expr *E, uint64_t N) {
742 if (!checkNullPointer(Info, E, CSK_ArrayIndex))
743 return;
744 Designator.adjustIndex(Info, E, N);
John McCall56ca35d2011-02-17 10:25:35 +0000745 }
John McCallefdb83e2010-05-07 21:00:08 +0000746 };
Richard Smithe24f5fc2011-11-17 22:56:20 +0000747
748 struct MemberPtr {
749 MemberPtr() {}
750 explicit MemberPtr(const ValueDecl *Decl) :
751 DeclAndIsDerivedMember(Decl, false), Path() {}
752
753 /// The member or (direct or indirect) field referred to by this member
754 /// pointer, or 0 if this is a null member pointer.
755 const ValueDecl *getDecl() const {
756 return DeclAndIsDerivedMember.getPointer();
757 }
758 /// Is this actually a member of some type derived from the relevant class?
759 bool isDerivedMember() const {
760 return DeclAndIsDerivedMember.getInt();
761 }
762 /// Get the class which the declaration actually lives in.
763 const CXXRecordDecl *getContainingRecord() const {
764 return cast<CXXRecordDecl>(
765 DeclAndIsDerivedMember.getPointer()->getDeclContext());
766 }
767
768 void moveInto(CCValue &V) const {
769 V = CCValue(getDecl(), isDerivedMember(), Path);
770 }
771 void setFrom(const CCValue &V) {
772 assert(V.isMemberPointer());
773 DeclAndIsDerivedMember.setPointer(V.getMemberPointerDecl());
774 DeclAndIsDerivedMember.setInt(V.isMemberPointerToDerivedMember());
775 Path.clear();
776 ArrayRef<const CXXRecordDecl*> P = V.getMemberPointerPath();
777 Path.insert(Path.end(), P.begin(), P.end());
778 }
779
780 /// DeclAndIsDerivedMember - The member declaration, and a flag indicating
781 /// whether the member is a member of some class derived from the class type
782 /// of the member pointer.
783 llvm::PointerIntPair<const ValueDecl*, 1, bool> DeclAndIsDerivedMember;
784 /// Path - The path of base/derived classes from the member declaration's
785 /// class (exclusive) to the class type of the member pointer (inclusive).
786 SmallVector<const CXXRecordDecl*, 4> Path;
787
788 /// Perform a cast towards the class of the Decl (either up or down the
789 /// hierarchy).
790 bool castBack(const CXXRecordDecl *Class) {
791 assert(!Path.empty());
792 const CXXRecordDecl *Expected;
793 if (Path.size() >= 2)
794 Expected = Path[Path.size() - 2];
795 else
796 Expected = getContainingRecord();
797 if (Expected->getCanonicalDecl() != Class->getCanonicalDecl()) {
798 // C++11 [expr.static.cast]p12: In a conversion from (D::*) to (B::*),
799 // if B does not contain the original member and is not a base or
800 // derived class of the class containing the original member, the result
801 // of the cast is undefined.
802 // C++11 [conv.mem]p2 does not cover this case for a cast from (B::*) to
803 // (D::*). We consider that to be a language defect.
804 return false;
805 }
806 Path.pop_back();
807 return true;
808 }
809 /// Perform a base-to-derived member pointer cast.
810 bool castToDerived(const CXXRecordDecl *Derived) {
811 if (!getDecl())
812 return true;
813 if (!isDerivedMember()) {
814 Path.push_back(Derived);
815 return true;
816 }
817 if (!castBack(Derived))
818 return false;
819 if (Path.empty())
820 DeclAndIsDerivedMember.setInt(false);
821 return true;
822 }
823 /// Perform a derived-to-base member pointer cast.
824 bool castToBase(const CXXRecordDecl *Base) {
825 if (!getDecl())
826 return true;
827 if (Path.empty())
828 DeclAndIsDerivedMember.setInt(true);
829 if (isDerivedMember()) {
830 Path.push_back(Base);
831 return true;
832 }
833 return castBack(Base);
834 }
835 };
Richard Smithc1c5f272011-12-13 06:39:58 +0000836
Richard Smithb02e4622012-02-01 01:42:44 +0000837 /// Compare two member pointers, which are assumed to be of the same type.
838 static bool operator==(const MemberPtr &LHS, const MemberPtr &RHS) {
839 if (!LHS.getDecl() || !RHS.getDecl())
840 return !LHS.getDecl() && !RHS.getDecl();
841 if (LHS.getDecl()->getCanonicalDecl() != RHS.getDecl()->getCanonicalDecl())
842 return false;
843 return LHS.Path == RHS.Path;
844 }
845
Richard Smithc1c5f272011-12-13 06:39:58 +0000846 /// Kinds of constant expression checking, for diagnostics.
847 enum CheckConstantExpressionKind {
848 CCEK_Constant, ///< A normal constant.
849 CCEK_ReturnValue, ///< A constexpr function return value.
850 CCEK_MemberInit ///< A constexpr constructor mem-initializer.
851 };
John McCallf4cf1a12010-05-07 17:22:02 +0000852}
Chris Lattner87eae5e2008-07-11 22:52:41 +0000853
Richard Smith47a1eed2011-10-29 20:57:55 +0000854static bool Evaluate(CCValue &Result, EvalInfo &Info, const Expr *E);
Richard Smith69c2c502011-11-04 05:33:44 +0000855static bool EvaluateConstantExpression(APValue &Result, EvalInfo &Info,
Richard Smithc1c5f272011-12-13 06:39:58 +0000856 const LValue &This, const Expr *E,
857 CheckConstantExpressionKind CCEK
858 = CCEK_Constant);
John McCallefdb83e2010-05-07 21:00:08 +0000859static bool EvaluateLValue(const Expr *E, LValue &Result, EvalInfo &Info);
860static bool EvaluatePointer(const Expr *E, LValue &Result, EvalInfo &Info);
Richard Smithe24f5fc2011-11-17 22:56:20 +0000861static bool EvaluateMemberPointer(const Expr *E, MemberPtr &Result,
862 EvalInfo &Info);
863static bool EvaluateTemporary(const Expr *E, LValue &Result, EvalInfo &Info);
Chris Lattner87eae5e2008-07-11 22:52:41 +0000864static bool EvaluateInteger(const Expr *E, APSInt &Result, EvalInfo &Info);
Richard Smith47a1eed2011-10-29 20:57:55 +0000865static bool EvaluateIntegerOrLValue(const Expr *E, CCValue &Result,
Chris Lattnerd9becd12009-10-28 23:59:40 +0000866 EvalInfo &Info);
Eli Friedmand8bfe7f2008-08-22 00:06:13 +0000867static bool EvaluateFloat(const Expr *E, APFloat &Result, EvalInfo &Info);
John McCallf4cf1a12010-05-07 17:22:02 +0000868static bool EvaluateComplex(const Expr *E, ComplexValue &Res, EvalInfo &Info);
Chris Lattnerf5eeb052008-07-11 18:11:29 +0000869
870//===----------------------------------------------------------------------===//
Eli Friedman4efaa272008-11-12 09:44:48 +0000871// Misc utilities
872//===----------------------------------------------------------------------===//
873
Richard Smith180f4792011-11-10 06:34:14 +0000874/// Should this call expression be treated as a string literal?
875static bool IsStringLiteralCall(const CallExpr *E) {
876 unsigned Builtin = E->isBuiltinCall();
877 return (Builtin == Builtin::BI__builtin___CFStringMakeConstantString ||
878 Builtin == Builtin::BI__builtin___NSStringMakeConstantString);
879}
880
Richard Smith1bf9a9e2011-11-12 22:28:03 +0000881static bool IsGlobalLValue(APValue::LValueBase B) {
Richard Smith180f4792011-11-10 06:34:14 +0000882 // C++11 [expr.const]p3 An address constant expression is a prvalue core
883 // constant expression of pointer type that evaluates to...
884
885 // ... a null pointer value, or a prvalue core constant expression of type
886 // std::nullptr_t.
Richard Smith1bf9a9e2011-11-12 22:28:03 +0000887 if (!B) return true;
John McCall42c8f872010-05-10 23:27:23 +0000888
Richard Smith1bf9a9e2011-11-12 22:28:03 +0000889 if (const ValueDecl *D = B.dyn_cast<const ValueDecl*>()) {
890 // ... the address of an object with static storage duration,
891 if (const VarDecl *VD = dyn_cast<VarDecl>(D))
892 return VD->hasGlobalStorage();
893 // ... the address of a function,
894 return isa<FunctionDecl>(D);
895 }
896
897 const Expr *E = B.get<const Expr*>();
Richard Smith180f4792011-11-10 06:34:14 +0000898 switch (E->getStmtClass()) {
899 default:
900 return false;
Richard Smith180f4792011-11-10 06:34:14 +0000901 case Expr::CompoundLiteralExprClass:
902 return cast<CompoundLiteralExpr>(E)->isFileScope();
903 // A string literal has static storage duration.
904 case Expr::StringLiteralClass:
905 case Expr::PredefinedExprClass:
906 case Expr::ObjCStringLiteralClass:
907 case Expr::ObjCEncodeExprClass:
Richard Smith47d21452011-12-27 12:18:28 +0000908 case Expr::CXXTypeidExprClass:
Richard Smith180f4792011-11-10 06:34:14 +0000909 return true;
910 case Expr::CallExprClass:
911 return IsStringLiteralCall(cast<CallExpr>(E));
912 // For GCC compatibility, &&label has static storage duration.
913 case Expr::AddrLabelExprClass:
914 return true;
915 // A Block literal expression may be used as the initialization value for
916 // Block variables at global or local static scope.
917 case Expr::BlockExprClass:
918 return !cast<BlockExpr>(E)->getBlockDecl()->hasCaptures();
Richard Smith745f5142012-01-27 01:14:48 +0000919 case Expr::ImplicitValueInitExprClass:
920 // FIXME:
921 // We can never form an lvalue with an implicit value initialization as its
922 // base through expression evaluation, so these only appear in one case: the
923 // implicit variable declaration we invent when checking whether a constexpr
924 // constructor can produce a constant expression. We must assume that such
925 // an expression might be a global lvalue.
926 return true;
Richard Smith180f4792011-11-10 06:34:14 +0000927 }
John McCall42c8f872010-05-10 23:27:23 +0000928}
929
Richard Smith9a17a682011-11-07 05:07:52 +0000930/// Check that this reference or pointer core constant expression is a valid
Richard Smithb4e85ed2012-01-06 16:39:00 +0000931/// value for an address or reference constant expression. Type T should be
Richard Smith61e61622012-01-12 06:08:57 +0000932/// either LValue or CCValue. Return true if we can fold this expression,
933/// whether or not it's a constant expression.
Richard Smith9a17a682011-11-07 05:07:52 +0000934template<typename T>
Richard Smithf48fdb02011-12-09 22:58:01 +0000935static bool CheckLValueConstantExpression(EvalInfo &Info, const Expr *E,
Richard Smithc1c5f272011-12-13 06:39:58 +0000936 const T &LVal, APValue &Value,
937 CheckConstantExpressionKind CCEK) {
938 APValue::LValueBase Base = LVal.getLValueBase();
939 const SubobjectDesignator &Designator = LVal.getLValueDesignator();
940
941 if (!IsGlobalLValue(Base)) {
942 if (Info.getLangOpts().CPlusPlus0x) {
943 const ValueDecl *VD = Base.dyn_cast<const ValueDecl*>();
944 Info.Diag(E->getExprLoc(), diag::note_constexpr_non_global, 1)
945 << E->isGLValue() << !Designator.Entries.empty()
946 << !!VD << CCEK << VD;
947 if (VD)
948 Info.Note(VD->getLocation(), diag::note_declared_at);
949 else
950 Info.Note(Base.dyn_cast<const Expr*>()->getExprLoc(),
951 diag::note_constexpr_temporary_here);
952 } else {
Richard Smith7098cbd2011-12-21 05:04:46 +0000953 Info.Diag(E->getExprLoc());
Richard Smithc1c5f272011-12-13 06:39:58 +0000954 }
Richard Smith61e61622012-01-12 06:08:57 +0000955 // Don't allow references to temporaries to escape.
Richard Smith9a17a682011-11-07 05:07:52 +0000956 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +0000957 }
Richard Smith9a17a682011-11-07 05:07:52 +0000958
Richard Smithb4e85ed2012-01-06 16:39:00 +0000959 bool IsReferenceType = E->isGLValue();
960
961 if (Designator.Invalid) {
Richard Smith61e61622012-01-12 06:08:57 +0000962 // This is not a core constant expression. An appropriate diagnostic will
963 // have already been produced.
Richard Smith9a17a682011-11-07 05:07:52 +0000964 Value = APValue(LVal.getLValueBase(), LVal.getLValueOffset(),
965 APValue::NoLValuePath());
966 return true;
967 }
968
Richard Smithb4e85ed2012-01-06 16:39:00 +0000969 Value = APValue(LVal.getLValueBase(), LVal.getLValueOffset(),
970 Designator.Entries, Designator.IsOnePastTheEnd);
971
972 // Allow address constant expressions to be past-the-end pointers. This is
973 // an extension: the standard requires them to point to an object.
974 if (!IsReferenceType)
975 return true;
976
977 // A reference constant expression must refer to an object.
978 if (!Base) {
979 // FIXME: diagnostic
980 Info.CCEDiag(E->getExprLoc());
Richard Smith61e61622012-01-12 06:08:57 +0000981 return true;
Richard Smithb4e85ed2012-01-06 16:39:00 +0000982 }
983
Richard Smithc1c5f272011-12-13 06:39:58 +0000984 // Does this refer one past the end of some object?
Richard Smithb4e85ed2012-01-06 16:39:00 +0000985 if (Designator.isOnePastTheEnd()) {
Richard Smithc1c5f272011-12-13 06:39:58 +0000986 const ValueDecl *VD = Base.dyn_cast<const ValueDecl*>();
987 Info.Diag(E->getExprLoc(), diag::note_constexpr_past_end, 1)
988 << !Designator.Entries.empty() << !!VD << VD;
989 if (VD)
990 Info.Note(VD->getLocation(), diag::note_declared_at);
991 else
992 Info.Note(Base.dyn_cast<const Expr*>()->getExprLoc(),
993 diag::note_constexpr_temporary_here);
Richard Smithc1c5f272011-12-13 06:39:58 +0000994 }
995
Richard Smith9a17a682011-11-07 05:07:52 +0000996 return true;
997}
998
Richard Smith51201882011-12-30 21:15:51 +0000999/// Check that this core constant expression is of literal type, and if not,
1000/// produce an appropriate diagnostic.
1001static bool CheckLiteralType(EvalInfo &Info, const Expr *E) {
1002 if (!E->isRValue() || E->getType()->isLiteralType())
1003 return true;
1004
1005 // Prvalue constant expressions must be of literal types.
1006 if (Info.getLangOpts().CPlusPlus0x)
1007 Info.Diag(E->getExprLoc(), diag::note_constexpr_nonliteral)
1008 << E->getType();
1009 else
1010 Info.Diag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
1011 return false;
1012}
1013
Richard Smith47a1eed2011-10-29 20:57:55 +00001014/// Check that this core constant expression value is a valid value for a
Richard Smith69c2c502011-11-04 05:33:44 +00001015/// constant expression, and if it is, produce the corresponding constant value.
Richard Smith51201882011-12-30 21:15:51 +00001016/// If not, report an appropriate diagnostic. Does not check that the expression
1017/// is of literal type.
Richard Smithf48fdb02011-12-09 22:58:01 +00001018static bool CheckConstantExpression(EvalInfo &Info, const Expr *E,
Richard Smithc1c5f272011-12-13 06:39:58 +00001019 const CCValue &CCValue, APValue &Value,
1020 CheckConstantExpressionKind CCEK
1021 = CCEK_Constant) {
Richard Smith9a17a682011-11-07 05:07:52 +00001022 if (!CCValue.isLValue()) {
1023 Value = CCValue;
1024 return true;
1025 }
Richard Smithc1c5f272011-12-13 06:39:58 +00001026 return CheckLValueConstantExpression(Info, E, CCValue, Value, CCEK);
Richard Smith47a1eed2011-10-29 20:57:55 +00001027}
1028
Richard Smith9e36b532011-10-31 05:11:32 +00001029const ValueDecl *GetLValueBaseDecl(const LValue &LVal) {
Richard Smith1bf9a9e2011-11-12 22:28:03 +00001030 return LVal.Base.dyn_cast<const ValueDecl*>();
Richard Smith9e36b532011-10-31 05:11:32 +00001031}
1032
1033static bool IsLiteralLValue(const LValue &Value) {
Richard Smith1bf9a9e2011-11-12 22:28:03 +00001034 return Value.Base.dyn_cast<const Expr*>() && !Value.Frame;
Richard Smith9e36b532011-10-31 05:11:32 +00001035}
1036
Richard Smith65ac5982011-11-01 21:06:14 +00001037static bool IsWeakLValue(const LValue &Value) {
1038 const ValueDecl *Decl = GetLValueBaseDecl(Value);
Lang Hames0dd7a252011-12-05 20:16:26 +00001039 return Decl && Decl->isWeak();
Richard Smith65ac5982011-11-01 21:06:14 +00001040}
1041
Richard Smithe24f5fc2011-11-17 22:56:20 +00001042static bool EvalPointerValueAsBool(const CCValue &Value, bool &Result) {
John McCall35542832010-05-07 21:34:32 +00001043 // A null base expression indicates a null pointer. These are always
1044 // evaluatable, and they are false unless the offset is zero.
Richard Smithe24f5fc2011-11-17 22:56:20 +00001045 if (!Value.getLValueBase()) {
1046 Result = !Value.getLValueOffset().isZero();
John McCall35542832010-05-07 21:34:32 +00001047 return true;
1048 }
Rafael Espindolaa7d3c042010-05-07 15:18:43 +00001049
Richard Smithe24f5fc2011-11-17 22:56:20 +00001050 // We have a non-null base. These are generally known to be true, but if it's
1051 // a weak declaration it can be null at runtime.
John McCall35542832010-05-07 21:34:32 +00001052 Result = true;
Richard Smithe24f5fc2011-11-17 22:56:20 +00001053 const ValueDecl *Decl = Value.getLValueBase().dyn_cast<const ValueDecl*>();
Lang Hames0dd7a252011-12-05 20:16:26 +00001054 return !Decl || !Decl->isWeak();
Eli Friedman5bc86102009-06-14 02:17:33 +00001055}
1056
Richard Smith47a1eed2011-10-29 20:57:55 +00001057static bool HandleConversionToBool(const CCValue &Val, bool &Result) {
Richard Smithc49bd112011-10-28 17:51:58 +00001058 switch (Val.getKind()) {
1059 case APValue::Uninitialized:
1060 return false;
1061 case APValue::Int:
1062 Result = Val.getInt().getBoolValue();
Eli Friedman4efaa272008-11-12 09:44:48 +00001063 return true;
Richard Smithc49bd112011-10-28 17:51:58 +00001064 case APValue::Float:
1065 Result = !Val.getFloat().isZero();
Eli Friedman4efaa272008-11-12 09:44:48 +00001066 return true;
Richard Smithc49bd112011-10-28 17:51:58 +00001067 case APValue::ComplexInt:
1068 Result = Val.getComplexIntReal().getBoolValue() ||
1069 Val.getComplexIntImag().getBoolValue();
1070 return true;
1071 case APValue::ComplexFloat:
1072 Result = !Val.getComplexFloatReal().isZero() ||
1073 !Val.getComplexFloatImag().isZero();
1074 return true;
Richard Smithe24f5fc2011-11-17 22:56:20 +00001075 case APValue::LValue:
1076 return EvalPointerValueAsBool(Val, Result);
1077 case APValue::MemberPointer:
1078 Result = Val.getMemberPointerDecl();
1079 return true;
Richard Smithc49bd112011-10-28 17:51:58 +00001080 case APValue::Vector:
Richard Smithcc5d4f62011-11-07 09:22:26 +00001081 case APValue::Array:
Richard Smith180f4792011-11-10 06:34:14 +00001082 case APValue::Struct:
1083 case APValue::Union:
Eli Friedman65639282012-01-04 23:13:47 +00001084 case APValue::AddrLabelDiff:
Richard Smithc49bd112011-10-28 17:51:58 +00001085 return false;
Eli Friedman4efaa272008-11-12 09:44:48 +00001086 }
1087
Richard Smithc49bd112011-10-28 17:51:58 +00001088 llvm_unreachable("unknown APValue kind");
1089}
1090
1091static bool EvaluateAsBooleanCondition(const Expr *E, bool &Result,
1092 EvalInfo &Info) {
1093 assert(E->isRValue() && "missing lvalue-to-rvalue conv in bool condition");
Richard Smith47a1eed2011-10-29 20:57:55 +00001094 CCValue Val;
Richard Smithc49bd112011-10-28 17:51:58 +00001095 if (!Evaluate(Val, Info, E))
1096 return false;
1097 return HandleConversionToBool(Val, Result);
Eli Friedman4efaa272008-11-12 09:44:48 +00001098}
1099
Richard Smithc1c5f272011-12-13 06:39:58 +00001100template<typename T>
1101static bool HandleOverflow(EvalInfo &Info, const Expr *E,
1102 const T &SrcValue, QualType DestType) {
Richard Smithc1c5f272011-12-13 06:39:58 +00001103 Info.Diag(E->getExprLoc(), diag::note_constexpr_overflow)
Richard Smith789f9b62012-01-31 04:08:20 +00001104 << SrcValue << DestType;
Richard Smithc1c5f272011-12-13 06:39:58 +00001105 return false;
1106}
1107
1108static bool HandleFloatToIntCast(EvalInfo &Info, const Expr *E,
1109 QualType SrcType, const APFloat &Value,
1110 QualType DestType, APSInt &Result) {
1111 unsigned DestWidth = Info.Ctx.getIntWidth(DestType);
Daniel Dunbara2cfd342009-01-29 06:16:07 +00001112 // Determine whether we are converting to unsigned or signed.
Douglas Gregor575a1c92011-05-20 16:38:50 +00001113 bool DestSigned = DestType->isSignedIntegerOrEnumerationType();
Mike Stump1eb44332009-09-09 15:08:12 +00001114
Richard Smithc1c5f272011-12-13 06:39:58 +00001115 Result = APSInt(DestWidth, !DestSigned);
Daniel Dunbara2cfd342009-01-29 06:16:07 +00001116 bool ignored;
Richard Smithc1c5f272011-12-13 06:39:58 +00001117 if (Value.convertToInteger(Result, llvm::APFloat::rmTowardZero, &ignored)
1118 & APFloat::opInvalidOp)
1119 return HandleOverflow(Info, E, Value, DestType);
1120 return true;
Daniel Dunbara2cfd342009-01-29 06:16:07 +00001121}
1122
Richard Smithc1c5f272011-12-13 06:39:58 +00001123static bool HandleFloatToFloatCast(EvalInfo &Info, const Expr *E,
1124 QualType SrcType, QualType DestType,
1125 APFloat &Result) {
1126 APFloat Value = Result;
Daniel Dunbara2cfd342009-01-29 06:16:07 +00001127 bool ignored;
Richard Smithc1c5f272011-12-13 06:39:58 +00001128 if (Result.convert(Info.Ctx.getFloatTypeSemantics(DestType),
1129 APFloat::rmNearestTiesToEven, &ignored)
1130 & APFloat::opOverflow)
1131 return HandleOverflow(Info, E, Value, DestType);
1132 return true;
Daniel Dunbara2cfd342009-01-29 06:16:07 +00001133}
1134
Richard Smithf72fccf2012-01-30 22:27:01 +00001135static APSInt HandleIntToIntCast(EvalInfo &Info, const Expr *E,
1136 QualType DestType, QualType SrcType,
1137 APSInt &Value) {
1138 unsigned DestWidth = Info.Ctx.getIntWidth(DestType);
Daniel Dunbara2cfd342009-01-29 06:16:07 +00001139 APSInt Result = Value;
1140 // Figure out if this is a truncate, extend or noop cast.
1141 // If the input is signed, do a sign extend, noop, or truncate.
Jay Foad9f71a8f2010-12-07 08:25:34 +00001142 Result = Result.extOrTrunc(DestWidth);
Douglas Gregor575a1c92011-05-20 16:38:50 +00001143 Result.setIsUnsigned(DestType->isUnsignedIntegerOrEnumerationType());
Daniel Dunbara2cfd342009-01-29 06:16:07 +00001144 return Result;
1145}
1146
Richard Smithc1c5f272011-12-13 06:39:58 +00001147static bool HandleIntToFloatCast(EvalInfo &Info, const Expr *E,
1148 QualType SrcType, const APSInt &Value,
1149 QualType DestType, APFloat &Result) {
1150 Result = APFloat(Info.Ctx.getFloatTypeSemantics(DestType), 1);
1151 if (Result.convertFromAPInt(Value, Value.isSigned(),
1152 APFloat::rmNearestTiesToEven)
1153 & APFloat::opOverflow)
1154 return HandleOverflow(Info, E, Value, DestType);
1155 return true;
Daniel Dunbara2cfd342009-01-29 06:16:07 +00001156}
1157
Eli Friedmane6a24e82011-12-22 03:51:45 +00001158static bool EvalAndBitcastToAPInt(EvalInfo &Info, const Expr *E,
1159 llvm::APInt &Res) {
1160 CCValue SVal;
1161 if (!Evaluate(SVal, Info, E))
1162 return false;
1163 if (SVal.isInt()) {
1164 Res = SVal.getInt();
1165 return true;
1166 }
1167 if (SVal.isFloat()) {
1168 Res = SVal.getFloat().bitcastToAPInt();
1169 return true;
1170 }
1171 if (SVal.isVector()) {
1172 QualType VecTy = E->getType();
1173 unsigned VecSize = Info.Ctx.getTypeSize(VecTy);
1174 QualType EltTy = VecTy->castAs<VectorType>()->getElementType();
1175 unsigned EltSize = Info.Ctx.getTypeSize(EltTy);
1176 bool BigEndian = Info.Ctx.getTargetInfo().isBigEndian();
1177 Res = llvm::APInt::getNullValue(VecSize);
1178 for (unsigned i = 0; i < SVal.getVectorLength(); i++) {
1179 APValue &Elt = SVal.getVectorElt(i);
1180 llvm::APInt EltAsInt;
1181 if (Elt.isInt()) {
1182 EltAsInt = Elt.getInt();
1183 } else if (Elt.isFloat()) {
1184 EltAsInt = Elt.getFloat().bitcastToAPInt();
1185 } else {
1186 // Don't try to handle vectors of anything other than int or float
1187 // (not sure if it's possible to hit this case).
1188 Info.Diag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
1189 return false;
1190 }
1191 unsigned BaseEltSize = EltAsInt.getBitWidth();
1192 if (BigEndian)
1193 Res |= EltAsInt.zextOrTrunc(VecSize).rotr(i*EltSize+BaseEltSize);
1194 else
1195 Res |= EltAsInt.zextOrTrunc(VecSize).rotl(i*EltSize);
1196 }
1197 return true;
1198 }
1199 // Give up if the input isn't an int, float, or vector. For example, we
1200 // reject "(v4i16)(intptr_t)&a".
1201 Info.Diag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
1202 return false;
1203}
1204
Richard Smithb4e85ed2012-01-06 16:39:00 +00001205/// Cast an lvalue referring to a base subobject to a derived class, by
1206/// truncating the lvalue's path to the given length.
1207static bool CastToDerivedClass(EvalInfo &Info, const Expr *E, LValue &Result,
1208 const RecordDecl *TruncatedType,
1209 unsigned TruncatedElements) {
Richard Smithe24f5fc2011-11-17 22:56:20 +00001210 SubobjectDesignator &D = Result.Designator;
Richard Smithb4e85ed2012-01-06 16:39:00 +00001211
1212 // Check we actually point to a derived class object.
1213 if (TruncatedElements == D.Entries.size())
1214 return true;
1215 assert(TruncatedElements >= D.MostDerivedPathLength &&
1216 "not casting to a derived class");
1217 if (!Result.checkSubobject(Info, E, CSK_Derived))
1218 return false;
1219
1220 // Truncate the path to the subobject, and remove any derived-to-base offsets.
Richard Smithe24f5fc2011-11-17 22:56:20 +00001221 const RecordDecl *RD = TruncatedType;
1222 for (unsigned I = TruncatedElements, N = D.Entries.size(); I != N; ++I) {
Richard Smith180f4792011-11-10 06:34:14 +00001223 const ASTRecordLayout &Layout = Info.Ctx.getASTRecordLayout(RD);
1224 const CXXRecordDecl *Base = getAsBaseClass(D.Entries[I]);
Richard Smithe24f5fc2011-11-17 22:56:20 +00001225 if (isVirtualBaseClass(D.Entries[I]))
Richard Smith180f4792011-11-10 06:34:14 +00001226 Result.Offset -= Layout.getVBaseClassOffset(Base);
Richard Smithe24f5fc2011-11-17 22:56:20 +00001227 else
Richard Smith180f4792011-11-10 06:34:14 +00001228 Result.Offset -= Layout.getBaseClassOffset(Base);
1229 RD = Base;
1230 }
Richard Smithe24f5fc2011-11-17 22:56:20 +00001231 D.Entries.resize(TruncatedElements);
Richard Smith180f4792011-11-10 06:34:14 +00001232 return true;
1233}
1234
Richard Smithb4e85ed2012-01-06 16:39:00 +00001235static void HandleLValueDirectBase(EvalInfo &Info, const Expr *E, LValue &Obj,
Richard Smith180f4792011-11-10 06:34:14 +00001236 const CXXRecordDecl *Derived,
1237 const CXXRecordDecl *Base,
1238 const ASTRecordLayout *RL = 0) {
1239 if (!RL) RL = &Info.Ctx.getASTRecordLayout(Derived);
1240 Obj.getLValueOffset() += RL->getBaseClassOffset(Base);
Richard Smithb4e85ed2012-01-06 16:39:00 +00001241 Obj.addDecl(Info, E, Base, /*Virtual*/ false);
Richard Smith180f4792011-11-10 06:34:14 +00001242}
1243
Richard Smithb4e85ed2012-01-06 16:39:00 +00001244static bool HandleLValueBase(EvalInfo &Info, const Expr *E, LValue &Obj,
Richard Smith180f4792011-11-10 06:34:14 +00001245 const CXXRecordDecl *DerivedDecl,
1246 const CXXBaseSpecifier *Base) {
1247 const CXXRecordDecl *BaseDecl = Base->getType()->getAsCXXRecordDecl();
1248
1249 if (!Base->isVirtual()) {
Richard Smithb4e85ed2012-01-06 16:39:00 +00001250 HandleLValueDirectBase(Info, E, Obj, DerivedDecl, BaseDecl);
Richard Smith180f4792011-11-10 06:34:14 +00001251 return true;
1252 }
1253
Richard Smithb4e85ed2012-01-06 16:39:00 +00001254 SubobjectDesignator &D = Obj.Designator;
1255 if (D.Invalid)
Richard Smith180f4792011-11-10 06:34:14 +00001256 return false;
1257
Richard Smithb4e85ed2012-01-06 16:39:00 +00001258 // Extract most-derived object and corresponding type.
1259 DerivedDecl = D.MostDerivedType->getAsCXXRecordDecl();
1260 if (!CastToDerivedClass(Info, E, Obj, DerivedDecl, D.MostDerivedPathLength))
1261 return false;
1262
1263 // Find the virtual base class.
Richard Smith180f4792011-11-10 06:34:14 +00001264 const ASTRecordLayout &Layout = Info.Ctx.getASTRecordLayout(DerivedDecl);
1265 Obj.getLValueOffset() += Layout.getVBaseClassOffset(BaseDecl);
Richard Smithb4e85ed2012-01-06 16:39:00 +00001266 Obj.addDecl(Info, E, BaseDecl, /*Virtual*/ true);
Richard Smith180f4792011-11-10 06:34:14 +00001267 return true;
1268}
1269
1270/// Update LVal to refer to the given field, which must be a member of the type
1271/// currently described by LVal.
Richard Smithb4e85ed2012-01-06 16:39:00 +00001272static void HandleLValueMember(EvalInfo &Info, const Expr *E, LValue &LVal,
Richard Smith180f4792011-11-10 06:34:14 +00001273 const FieldDecl *FD,
1274 const ASTRecordLayout *RL = 0) {
1275 if (!RL)
1276 RL = &Info.Ctx.getASTRecordLayout(FD->getParent());
1277
1278 unsigned I = FD->getFieldIndex();
1279 LVal.Offset += Info.Ctx.toCharUnitsFromBits(RL->getFieldOffset(I));
Richard Smithb4e85ed2012-01-06 16:39:00 +00001280 LVal.addDecl(Info, E, FD);
Richard Smith180f4792011-11-10 06:34:14 +00001281}
1282
Richard Smithd9b02e72012-01-25 22:15:11 +00001283/// Update LVal to refer to the given indirect field.
1284static void HandleLValueIndirectMember(EvalInfo &Info, const Expr *E,
1285 LValue &LVal,
1286 const IndirectFieldDecl *IFD) {
1287 for (IndirectFieldDecl::chain_iterator C = IFD->chain_begin(),
1288 CE = IFD->chain_end(); C != CE; ++C)
1289 HandleLValueMember(Info, E, LVal, cast<FieldDecl>(*C));
1290}
1291
Richard Smith180f4792011-11-10 06:34:14 +00001292/// Get the size of the given type in char units.
1293static bool HandleSizeof(EvalInfo &Info, QualType Type, CharUnits &Size) {
1294 // sizeof(void), __alignof__(void), sizeof(function) = 1 as a gcc
1295 // extension.
1296 if (Type->isVoidType() || Type->isFunctionType()) {
1297 Size = CharUnits::One();
1298 return true;
1299 }
1300
1301 if (!Type->isConstantSizeType()) {
1302 // sizeof(vla) is not a constantexpr: C99 6.5.3.4p2.
Richard Smithb4e85ed2012-01-06 16:39:00 +00001303 // FIXME: Diagnostic.
Richard Smith180f4792011-11-10 06:34:14 +00001304 return false;
1305 }
1306
1307 Size = Info.Ctx.getTypeSizeInChars(Type);
1308 return true;
1309}
1310
1311/// Update a pointer value to model pointer arithmetic.
1312/// \param Info - Information about the ongoing evaluation.
Richard Smithb4e85ed2012-01-06 16:39:00 +00001313/// \param E - The expression being evaluated, for diagnostic purposes.
Richard Smith180f4792011-11-10 06:34:14 +00001314/// \param LVal - The pointer value to be updated.
1315/// \param EltTy - The pointee type represented by LVal.
1316/// \param Adjustment - The adjustment, in objects of type EltTy, to add.
Richard Smithb4e85ed2012-01-06 16:39:00 +00001317static bool HandleLValueArrayAdjustment(EvalInfo &Info, const Expr *E,
1318 LValue &LVal, QualType EltTy,
1319 int64_t Adjustment) {
Richard Smith180f4792011-11-10 06:34:14 +00001320 CharUnits SizeOfPointee;
1321 if (!HandleSizeof(Info, EltTy, SizeOfPointee))
1322 return false;
1323
1324 // Compute the new offset in the appropriate width.
1325 LVal.Offset += Adjustment * SizeOfPointee;
Richard Smithb4e85ed2012-01-06 16:39:00 +00001326 LVal.adjustIndex(Info, E, Adjustment);
Richard Smith180f4792011-11-10 06:34:14 +00001327 return true;
1328}
1329
Richard Smith03f96112011-10-24 17:54:18 +00001330/// Try to evaluate the initializer for a variable declaration.
Richard Smithf48fdb02011-12-09 22:58:01 +00001331static bool EvaluateVarDeclInit(EvalInfo &Info, const Expr *E,
1332 const VarDecl *VD,
Richard Smith177dce72011-11-01 16:57:24 +00001333 CallStackFrame *Frame, CCValue &Result) {
Richard Smithd0dccea2011-10-28 22:34:42 +00001334 // If this is a parameter to an active constexpr function call, perform
1335 // argument substitution.
1336 if (const ParmVarDecl *PVD = dyn_cast<ParmVarDecl>(VD)) {
Richard Smith745f5142012-01-27 01:14:48 +00001337 // Assume arguments of a potential constant expression are unknown
1338 // constant expressions.
1339 if (Info.CheckingPotentialConstantExpression)
1340 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001341 if (!Frame || !Frame->Arguments) {
Richard Smithdd1f29b2011-12-12 09:28:41 +00001342 Info.Diag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
Richard Smith177dce72011-11-01 16:57:24 +00001343 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001344 }
Richard Smith177dce72011-11-01 16:57:24 +00001345 Result = Frame->Arguments[PVD->getFunctionScopeIndex()];
1346 return true;
Richard Smithd0dccea2011-10-28 22:34:42 +00001347 }
Richard Smith03f96112011-10-24 17:54:18 +00001348
Richard Smith099e7f62011-12-19 06:19:21 +00001349 // Dig out the initializer, and use the declaration which it's attached to.
1350 const Expr *Init = VD->getAnyInitializer(VD);
1351 if (!Init || Init->isValueDependent()) {
Richard Smith745f5142012-01-27 01:14:48 +00001352 // If we're checking a potential constant expression, the variable could be
1353 // initialized later.
1354 if (!Info.CheckingPotentialConstantExpression)
1355 Info.Diag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
Richard Smith099e7f62011-12-19 06:19:21 +00001356 return false;
1357 }
1358
Richard Smith180f4792011-11-10 06:34:14 +00001359 // If we're currently evaluating the initializer of this declaration, use that
1360 // in-flight value.
1361 if (Info.EvaluatingDecl == VD) {
Richard Smithb4e85ed2012-01-06 16:39:00 +00001362 Result = CCValue(Info.Ctx, *Info.EvaluatingDeclValue,
1363 CCValue::GlobalValue());
Richard Smith180f4792011-11-10 06:34:14 +00001364 return !Result.isUninit();
1365 }
1366
Richard Smith65ac5982011-11-01 21:06:14 +00001367 // Never evaluate the initializer of a weak variable. We can't be sure that
1368 // this is the definition which will be used.
Richard Smithf48fdb02011-12-09 22:58:01 +00001369 if (VD->isWeak()) {
Richard Smithdd1f29b2011-12-12 09:28:41 +00001370 Info.Diag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
Richard Smith65ac5982011-11-01 21:06:14 +00001371 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001372 }
Richard Smith65ac5982011-11-01 21:06:14 +00001373
Richard Smith099e7f62011-12-19 06:19:21 +00001374 // Check that we can fold the initializer. In C++, we will have already done
1375 // this in the cases where it matters for conformance.
1376 llvm::SmallVector<PartialDiagnosticAt, 8> Notes;
1377 if (!VD->evaluateValue(Notes)) {
1378 Info.Diag(E->getExprLoc(), diag::note_constexpr_var_init_non_constant,
1379 Notes.size() + 1) << VD;
1380 Info.Note(VD->getLocation(), diag::note_declared_at);
1381 Info.addNotes(Notes);
Richard Smith47a1eed2011-10-29 20:57:55 +00001382 return false;
Richard Smith099e7f62011-12-19 06:19:21 +00001383 } else if (!VD->checkInitIsICE()) {
1384 Info.CCEDiag(E->getExprLoc(), diag::note_constexpr_var_init_non_constant,
1385 Notes.size() + 1) << VD;
1386 Info.Note(VD->getLocation(), diag::note_declared_at);
1387 Info.addNotes(Notes);
Richard Smithf48fdb02011-12-09 22:58:01 +00001388 }
Richard Smith03f96112011-10-24 17:54:18 +00001389
Richard Smithb4e85ed2012-01-06 16:39:00 +00001390 Result = CCValue(Info.Ctx, *VD->getEvaluatedValue(), CCValue::GlobalValue());
Richard Smith47a1eed2011-10-29 20:57:55 +00001391 return true;
Richard Smith03f96112011-10-24 17:54:18 +00001392}
1393
Richard Smithc49bd112011-10-28 17:51:58 +00001394static bool IsConstNonVolatile(QualType T) {
Richard Smith03f96112011-10-24 17:54:18 +00001395 Qualifiers Quals = T.getQualifiers();
1396 return Quals.hasConst() && !Quals.hasVolatile();
1397}
1398
Richard Smith59efe262011-11-11 04:05:33 +00001399/// Get the base index of the given base class within an APValue representing
1400/// the given derived class.
1401static unsigned getBaseIndex(const CXXRecordDecl *Derived,
1402 const CXXRecordDecl *Base) {
1403 Base = Base->getCanonicalDecl();
1404 unsigned Index = 0;
1405 for (CXXRecordDecl::base_class_const_iterator I = Derived->bases_begin(),
1406 E = Derived->bases_end(); I != E; ++I, ++Index) {
1407 if (I->getType()->getAsCXXRecordDecl()->getCanonicalDecl() == Base)
1408 return Index;
1409 }
1410
1411 llvm_unreachable("base class missing from derived class's bases list");
1412}
1413
Richard Smithcc5d4f62011-11-07 09:22:26 +00001414/// Extract the designated sub-object of an rvalue.
Richard Smithf48fdb02011-12-09 22:58:01 +00001415static bool ExtractSubobject(EvalInfo &Info, const Expr *E,
1416 CCValue &Obj, QualType ObjType,
Richard Smithcc5d4f62011-11-07 09:22:26 +00001417 const SubobjectDesignator &Sub, QualType SubType) {
Richard Smithb4e85ed2012-01-06 16:39:00 +00001418 if (Sub.Invalid)
1419 // A diagnostic will have already been produced.
Richard Smithcc5d4f62011-11-07 09:22:26 +00001420 return false;
Richard Smithb4e85ed2012-01-06 16:39:00 +00001421 if (Sub.isOnePastTheEnd()) {
Richard Smith7098cbd2011-12-21 05:04:46 +00001422 Info.Diag(E->getExprLoc(), Info.getLangOpts().CPlusPlus0x ?
Matt Beaumont-Gayaa5d5332011-12-21 19:36:37 +00001423 (unsigned)diag::note_constexpr_read_past_end :
1424 (unsigned)diag::note_invalid_subexpr_in_const_expr);
Richard Smith7098cbd2011-12-21 05:04:46 +00001425 return false;
1426 }
Richard Smithf64699e2011-11-11 08:28:03 +00001427 if (Sub.Entries.empty())
Richard Smithcc5d4f62011-11-07 09:22:26 +00001428 return true;
Richard Smith745f5142012-01-27 01:14:48 +00001429 if (Info.CheckingPotentialConstantExpression && Obj.isUninit())
1430 // This object might be initialized later.
1431 return false;
Richard Smithcc5d4f62011-11-07 09:22:26 +00001432
1433 assert(!Obj.isLValue() && "extracting subobject of lvalue");
1434 const APValue *O = &Obj;
Richard Smith180f4792011-11-10 06:34:14 +00001435 // Walk the designator's path to find the subobject.
Richard Smithcc5d4f62011-11-07 09:22:26 +00001436 for (unsigned I = 0, N = Sub.Entries.size(); I != N; ++I) {
Richard Smithcc5d4f62011-11-07 09:22:26 +00001437 if (ObjType->isArrayType()) {
Richard Smith180f4792011-11-10 06:34:14 +00001438 // Next subobject is an array element.
Richard Smithcc5d4f62011-11-07 09:22:26 +00001439 const ConstantArrayType *CAT = Info.Ctx.getAsConstantArrayType(ObjType);
Richard Smithf48fdb02011-12-09 22:58:01 +00001440 assert(CAT && "vla in literal type?");
Richard Smithcc5d4f62011-11-07 09:22:26 +00001441 uint64_t Index = Sub.Entries[I].ArrayIndex;
Richard Smithf48fdb02011-12-09 22:58:01 +00001442 if (CAT->getSize().ule(Index)) {
Richard Smith7098cbd2011-12-21 05:04:46 +00001443 // Note, it should not be possible to form a pointer with a valid
1444 // designator which points more than one past the end of the array.
1445 Info.Diag(E->getExprLoc(), Info.getLangOpts().CPlusPlus0x ?
Matt Beaumont-Gayaa5d5332011-12-21 19:36:37 +00001446 (unsigned)diag::note_constexpr_read_past_end :
1447 (unsigned)diag::note_invalid_subexpr_in_const_expr);
Richard Smithcc5d4f62011-11-07 09:22:26 +00001448 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001449 }
Richard Smithcc5d4f62011-11-07 09:22:26 +00001450 if (O->getArrayInitializedElts() > Index)
1451 O = &O->getArrayInitializedElt(Index);
1452 else
1453 O = &O->getArrayFiller();
1454 ObjType = CAT->getElementType();
Richard Smith180f4792011-11-10 06:34:14 +00001455 } else if (const FieldDecl *Field = getAsField(Sub.Entries[I])) {
1456 // Next subobject is a class, struct or union field.
1457 RecordDecl *RD = ObjType->castAs<RecordType>()->getDecl();
1458 if (RD->isUnion()) {
1459 const FieldDecl *UnionField = O->getUnionField();
1460 if (!UnionField ||
Richard Smithf48fdb02011-12-09 22:58:01 +00001461 UnionField->getCanonicalDecl() != Field->getCanonicalDecl()) {
Richard Smith7098cbd2011-12-21 05:04:46 +00001462 Info.Diag(E->getExprLoc(),
1463 diag::note_constexpr_read_inactive_union_member)
1464 << Field << !UnionField << UnionField;
Richard Smith180f4792011-11-10 06:34:14 +00001465 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001466 }
Richard Smith180f4792011-11-10 06:34:14 +00001467 O = &O->getUnionValue();
1468 } else
1469 O = &O->getStructField(Field->getFieldIndex());
1470 ObjType = Field->getType();
Richard Smith7098cbd2011-12-21 05:04:46 +00001471
1472 if (ObjType.isVolatileQualified()) {
1473 if (Info.getLangOpts().CPlusPlus) {
1474 // FIXME: Include a description of the path to the volatile subobject.
1475 Info.Diag(E->getExprLoc(), diag::note_constexpr_ltor_volatile_obj, 1)
1476 << 2 << Field;
1477 Info.Note(Field->getLocation(), diag::note_declared_at);
1478 } else {
1479 Info.Diag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
1480 }
1481 return false;
1482 }
Richard Smithcc5d4f62011-11-07 09:22:26 +00001483 } else {
Richard Smith180f4792011-11-10 06:34:14 +00001484 // Next subobject is a base class.
Richard Smith59efe262011-11-11 04:05:33 +00001485 const CXXRecordDecl *Derived = ObjType->getAsCXXRecordDecl();
1486 const CXXRecordDecl *Base = getAsBaseClass(Sub.Entries[I]);
1487 O = &O->getStructBase(getBaseIndex(Derived, Base));
1488 ObjType = Info.Ctx.getRecordType(Base);
Richard Smithcc5d4f62011-11-07 09:22:26 +00001489 }
Richard Smith180f4792011-11-10 06:34:14 +00001490
Richard Smithf48fdb02011-12-09 22:58:01 +00001491 if (O->isUninit()) {
Richard Smith745f5142012-01-27 01:14:48 +00001492 if (!Info.CheckingPotentialConstantExpression)
1493 Info.Diag(E->getExprLoc(), diag::note_constexpr_read_uninit);
Richard Smith180f4792011-11-10 06:34:14 +00001494 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001495 }
Richard Smithcc5d4f62011-11-07 09:22:26 +00001496 }
1497
Richard Smithb4e85ed2012-01-06 16:39:00 +00001498 Obj = CCValue(Info.Ctx, *O, CCValue::GlobalValue());
Richard Smithcc5d4f62011-11-07 09:22:26 +00001499 return true;
1500}
1501
Richard Smithf15fda02012-02-02 01:16:57 +00001502/// Find the position where two subobject designators diverge, or equivalently
1503/// the length of the common initial subsequence.
1504static unsigned FindDesignatorMismatch(QualType ObjType,
1505 const SubobjectDesignator &A,
1506 const SubobjectDesignator &B,
1507 bool &WasArrayIndex) {
1508 unsigned I = 0, N = std::min(A.Entries.size(), B.Entries.size());
1509 for (/**/; I != N; ++I) {
1510 if (!ObjType.isNull() && ObjType->isArrayType()) {
1511 // Next subobject is an array element.
1512 if (A.Entries[I].ArrayIndex != B.Entries[I].ArrayIndex) {
1513 WasArrayIndex = true;
1514 return I;
1515 }
1516 ObjType = ObjType->castAsArrayTypeUnsafe()->getElementType();
1517 } else {
1518 if (A.Entries[I].BaseOrMember != B.Entries[I].BaseOrMember) {
1519 WasArrayIndex = false;
1520 return I;
1521 }
1522 if (const FieldDecl *FD = getAsField(A.Entries[I]))
1523 // Next subobject is a field.
1524 ObjType = FD->getType();
1525 else
1526 // Next subobject is a base class.
1527 ObjType = QualType();
1528 }
1529 }
1530 WasArrayIndex = false;
1531 return I;
1532}
1533
1534/// Determine whether the given subobject designators refer to elements of the
1535/// same array object.
1536static bool AreElementsOfSameArray(QualType ObjType,
1537 const SubobjectDesignator &A,
1538 const SubobjectDesignator &B) {
1539 if (A.Entries.size() != B.Entries.size())
1540 return false;
1541
1542 bool IsArray = A.MostDerivedArraySize != 0;
1543 if (IsArray && A.MostDerivedPathLength != A.Entries.size())
1544 // A is a subobject of the array element.
1545 return false;
1546
1547 // If A (and B) designates an array element, the last entry will be the array
1548 // index. That doesn't have to match. Otherwise, we're in the 'implicit array
1549 // of length 1' case, and the entire path must match.
1550 bool WasArrayIndex;
1551 unsigned CommonLength = FindDesignatorMismatch(ObjType, A, B, WasArrayIndex);
1552 return CommonLength >= A.Entries.size() - IsArray;
1553}
1554
Richard Smith180f4792011-11-10 06:34:14 +00001555/// HandleLValueToRValueConversion - Perform an lvalue-to-rvalue conversion on
1556/// the given lvalue. This can also be used for 'lvalue-to-lvalue' conversions
1557/// for looking up the glvalue referred to by an entity of reference type.
1558///
1559/// \param Info - Information about the ongoing evaluation.
Richard Smithf48fdb02011-12-09 22:58:01 +00001560/// \param Conv - The expression for which we are performing the conversion.
1561/// Used for diagnostics.
Richard Smith180f4792011-11-10 06:34:14 +00001562/// \param Type - The type we expect this conversion to produce.
1563/// \param LVal - The glvalue on which we are attempting to perform this action.
1564/// \param RVal - The produced value will be placed here.
Richard Smithf48fdb02011-12-09 22:58:01 +00001565static bool HandleLValueToRValueConversion(EvalInfo &Info, const Expr *Conv,
1566 QualType Type,
Richard Smithcc5d4f62011-11-07 09:22:26 +00001567 const LValue &LVal, CCValue &RVal) {
Richard Smith7098cbd2011-12-21 05:04:46 +00001568 // In C, an lvalue-to-rvalue conversion is never a constant expression.
1569 if (!Info.getLangOpts().CPlusPlus)
1570 Info.CCEDiag(Conv->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
1571
Richard Smithb4e85ed2012-01-06 16:39:00 +00001572 if (LVal.Designator.Invalid)
1573 // A diagnostic will have already been produced.
1574 return false;
1575
Richard Smith1bf9a9e2011-11-12 22:28:03 +00001576 const Expr *Base = LVal.Base.dyn_cast<const Expr*>();
Richard Smith177dce72011-11-01 16:57:24 +00001577 CallStackFrame *Frame = LVal.Frame;
Richard Smith7098cbd2011-12-21 05:04:46 +00001578 SourceLocation Loc = Conv->getExprLoc();
Richard Smithc49bd112011-10-28 17:51:58 +00001579
Richard Smithf48fdb02011-12-09 22:58:01 +00001580 if (!LVal.Base) {
1581 // FIXME: Indirection through a null pointer deserves a specific diagnostic.
Richard Smith7098cbd2011-12-21 05:04:46 +00001582 Info.Diag(Loc, diag::note_invalid_subexpr_in_const_expr);
1583 return false;
1584 }
1585
1586 // C++11 DR1311: An lvalue-to-rvalue conversion on a volatile-qualified type
1587 // is not a constant expression (even if the object is non-volatile). We also
1588 // apply this rule to C++98, in order to conform to the expected 'volatile'
1589 // semantics.
1590 if (Type.isVolatileQualified()) {
1591 if (Info.getLangOpts().CPlusPlus)
1592 Info.Diag(Loc, diag::note_constexpr_ltor_volatile_type) << Type;
1593 else
1594 Info.Diag(Loc);
Richard Smithc49bd112011-10-28 17:51:58 +00001595 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001596 }
Richard Smithc49bd112011-10-28 17:51:58 +00001597
Richard Smith1bf9a9e2011-11-12 22:28:03 +00001598 if (const ValueDecl *D = LVal.Base.dyn_cast<const ValueDecl*>()) {
Richard Smithc49bd112011-10-28 17:51:58 +00001599 // In C++98, const, non-volatile integers initialized with ICEs are ICEs.
1600 // In C++11, constexpr, non-volatile variables initialized with constant
Richard Smithd0dccea2011-10-28 22:34:42 +00001601 // expressions are constant expressions too. Inside constexpr functions,
1602 // parameters are constant expressions even if they're non-const.
Richard Smithc49bd112011-10-28 17:51:58 +00001603 // In C, such things can also be folded, although they are not ICEs.
Richard Smithc49bd112011-10-28 17:51:58 +00001604 const VarDecl *VD = dyn_cast<VarDecl>(D);
Richard Smithf15fda02012-02-02 01:16:57 +00001605 if (const VarDecl *VDef = VD->getDefinition())
1606 VD = VDef;
Richard Smithf48fdb02011-12-09 22:58:01 +00001607 if (!VD || VD->isInvalidDecl()) {
Richard Smith7098cbd2011-12-21 05:04:46 +00001608 Info.Diag(Loc);
Richard Smith0a3bdb62011-11-04 02:25:55 +00001609 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001610 }
1611
Richard Smith7098cbd2011-12-21 05:04:46 +00001612 // DR1313: If the object is volatile-qualified but the glvalue was not,
1613 // behavior is undefined so the result is not a constant expression.
Richard Smith1bf9a9e2011-11-12 22:28:03 +00001614 QualType VT = VD->getType();
Richard Smith7098cbd2011-12-21 05:04:46 +00001615 if (VT.isVolatileQualified()) {
1616 if (Info.getLangOpts().CPlusPlus) {
1617 Info.Diag(Loc, diag::note_constexpr_ltor_volatile_obj, 1) << 1 << VD;
1618 Info.Note(VD->getLocation(), diag::note_declared_at);
1619 } else {
1620 Info.Diag(Loc);
Richard Smithf48fdb02011-12-09 22:58:01 +00001621 }
Richard Smith7098cbd2011-12-21 05:04:46 +00001622 return false;
1623 }
1624
1625 if (!isa<ParmVarDecl>(VD)) {
1626 if (VD->isConstexpr()) {
1627 // OK, we can read this variable.
1628 } else if (VT->isIntegralOrEnumerationType()) {
1629 if (!VT.isConstQualified()) {
1630 if (Info.getLangOpts().CPlusPlus) {
1631 Info.Diag(Loc, diag::note_constexpr_ltor_non_const_int, 1) << VD;
1632 Info.Note(VD->getLocation(), diag::note_declared_at);
1633 } else {
1634 Info.Diag(Loc);
1635 }
1636 return false;
1637 }
1638 } else if (VT->isFloatingType() && VT.isConstQualified()) {
1639 // We support folding of const floating-point types, in order to make
1640 // static const data members of such types (supported as an extension)
1641 // more useful.
1642 if (Info.getLangOpts().CPlusPlus0x) {
1643 Info.CCEDiag(Loc, diag::note_constexpr_ltor_non_constexpr, 1) << VD;
1644 Info.Note(VD->getLocation(), diag::note_declared_at);
1645 } else {
1646 Info.CCEDiag(Loc);
1647 }
1648 } else {
1649 // FIXME: Allow folding of values of any literal type in all languages.
1650 if (Info.getLangOpts().CPlusPlus0x) {
1651 Info.Diag(Loc, diag::note_constexpr_ltor_non_constexpr, 1) << VD;
1652 Info.Note(VD->getLocation(), diag::note_declared_at);
1653 } else {
1654 Info.Diag(Loc);
1655 }
Richard Smith0a3bdb62011-11-04 02:25:55 +00001656 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001657 }
Richard Smith0a3bdb62011-11-04 02:25:55 +00001658 }
Richard Smith7098cbd2011-12-21 05:04:46 +00001659
Richard Smithf48fdb02011-12-09 22:58:01 +00001660 if (!EvaluateVarDeclInit(Info, Conv, VD, Frame, RVal))
Richard Smithc49bd112011-10-28 17:51:58 +00001661 return false;
1662
Richard Smith47a1eed2011-10-29 20:57:55 +00001663 if (isa<ParmVarDecl>(VD) || !VD->getAnyInitializer()->isLValue())
Richard Smithf48fdb02011-12-09 22:58:01 +00001664 return ExtractSubobject(Info, Conv, RVal, VT, LVal.Designator, Type);
Richard Smithc49bd112011-10-28 17:51:58 +00001665
1666 // The declaration was initialized by an lvalue, with no lvalue-to-rvalue
1667 // conversion. This happens when the declaration and the lvalue should be
1668 // considered synonymous, for instance when initializing an array of char
1669 // from a string literal. Continue as if the initializer lvalue was the
1670 // value we were originally given.
Richard Smith0a3bdb62011-11-04 02:25:55 +00001671 assert(RVal.getLValueOffset().isZero() &&
1672 "offset for lvalue init of non-reference");
Richard Smith1bf9a9e2011-11-12 22:28:03 +00001673 Base = RVal.getLValueBase().get<const Expr*>();
Richard Smith177dce72011-11-01 16:57:24 +00001674 Frame = RVal.getLValueFrame();
Richard Smithc49bd112011-10-28 17:51:58 +00001675 }
1676
Richard Smith7098cbd2011-12-21 05:04:46 +00001677 // Volatile temporary objects cannot be read in constant expressions.
1678 if (Base->getType().isVolatileQualified()) {
1679 if (Info.getLangOpts().CPlusPlus) {
1680 Info.Diag(Loc, diag::note_constexpr_ltor_volatile_obj, 1) << 0;
1681 Info.Note(Base->getExprLoc(), diag::note_constexpr_temporary_here);
1682 } else {
1683 Info.Diag(Loc);
1684 }
1685 return false;
1686 }
1687
Richard Smith0a3bdb62011-11-04 02:25:55 +00001688 // FIXME: Support PredefinedExpr, ObjCEncodeExpr, MakeStringConstant
1689 if (const StringLiteral *S = dyn_cast<StringLiteral>(Base)) {
1690 const SubobjectDesignator &Designator = LVal.Designator;
Richard Smithf48fdb02011-12-09 22:58:01 +00001691 if (Designator.Invalid || Designator.Entries.size() != 1) {
Richard Smithdd1f29b2011-12-12 09:28:41 +00001692 Info.Diag(Conv->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
Richard Smith0a3bdb62011-11-04 02:25:55 +00001693 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001694 }
Richard Smith0a3bdb62011-11-04 02:25:55 +00001695
1696 assert(Type->isIntegerType() && "string element not integer type");
Richard Smith9a17a682011-11-07 05:07:52 +00001697 uint64_t Index = Designator.Entries[0].ArrayIndex;
Richard Smith7098cbd2011-12-21 05:04:46 +00001698 const ConstantArrayType *CAT =
1699 Info.Ctx.getAsConstantArrayType(S->getType());
1700 if (Index >= CAT->getSize().getZExtValue()) {
1701 // Note, it should not be possible to form a pointer which points more
1702 // than one past the end of the array without producing a prior const expr
1703 // diagnostic.
1704 Info.Diag(Loc, diag::note_constexpr_read_past_end);
Richard Smith0a3bdb62011-11-04 02:25:55 +00001705 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001706 }
Richard Smith0a3bdb62011-11-04 02:25:55 +00001707 APSInt Value(S->getCharByteWidth() * Info.Ctx.getCharWidth(),
1708 Type->isUnsignedIntegerType());
1709 if (Index < S->getLength())
1710 Value = S->getCodeUnit(Index);
1711 RVal = CCValue(Value);
1712 return true;
1713 }
1714
Richard Smithcc5d4f62011-11-07 09:22:26 +00001715 if (Frame) {
1716 // If this is a temporary expression with a nontrivial initializer, grab the
1717 // value from the relevant stack frame.
1718 RVal = Frame->Temporaries[Base];
1719 } else if (const CompoundLiteralExpr *CLE
1720 = dyn_cast<CompoundLiteralExpr>(Base)) {
1721 // In C99, a CompoundLiteralExpr is an lvalue, and we defer evaluating the
1722 // initializer until now for such expressions. Such an expression can't be
1723 // an ICE in C, so this only matters for fold.
1724 assert(!Info.getLangOpts().CPlusPlus && "lvalue compound literal in c++?");
1725 if (!Evaluate(RVal, Info, CLE->getInitializer()))
1726 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001727 } else {
Richard Smithdd1f29b2011-12-12 09:28:41 +00001728 Info.Diag(Conv->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
Richard Smith0a3bdb62011-11-04 02:25:55 +00001729 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00001730 }
Richard Smith0a3bdb62011-11-04 02:25:55 +00001731
Richard Smithf48fdb02011-12-09 22:58:01 +00001732 return ExtractSubobject(Info, Conv, RVal, Base->getType(), LVal.Designator,
1733 Type);
Richard Smithc49bd112011-10-28 17:51:58 +00001734}
1735
Richard Smith59efe262011-11-11 04:05:33 +00001736/// Build an lvalue for the object argument of a member function call.
1737static bool EvaluateObjectArgument(EvalInfo &Info, const Expr *Object,
1738 LValue &This) {
1739 if (Object->getType()->isPointerType())
1740 return EvaluatePointer(Object, This, Info);
1741
1742 if (Object->isGLValue())
1743 return EvaluateLValue(Object, This, Info);
1744
Richard Smithe24f5fc2011-11-17 22:56:20 +00001745 if (Object->getType()->isLiteralType())
1746 return EvaluateTemporary(Object, This, Info);
1747
1748 return false;
1749}
1750
1751/// HandleMemberPointerAccess - Evaluate a member access operation and build an
1752/// lvalue referring to the result.
1753///
1754/// \param Info - Information about the ongoing evaluation.
1755/// \param BO - The member pointer access operation.
1756/// \param LV - Filled in with a reference to the resulting object.
1757/// \param IncludeMember - Specifies whether the member itself is included in
1758/// the resulting LValue subobject designator. This is not possible when
1759/// creating a bound member function.
1760/// \return The field or method declaration to which the member pointer refers,
1761/// or 0 if evaluation fails.
1762static const ValueDecl *HandleMemberPointerAccess(EvalInfo &Info,
1763 const BinaryOperator *BO,
1764 LValue &LV,
1765 bool IncludeMember = true) {
1766 assert(BO->getOpcode() == BO_PtrMemD || BO->getOpcode() == BO_PtrMemI);
1767
Richard Smith745f5142012-01-27 01:14:48 +00001768 bool EvalObjOK = EvaluateObjectArgument(Info, BO->getLHS(), LV);
1769 if (!EvalObjOK && !Info.keepEvaluatingAfterFailure())
Richard Smithe24f5fc2011-11-17 22:56:20 +00001770 return 0;
1771
1772 MemberPtr MemPtr;
1773 if (!EvaluateMemberPointer(BO->getRHS(), MemPtr, Info))
1774 return 0;
1775
1776 // C++11 [expr.mptr.oper]p6: If the second operand is the null pointer to
1777 // member value, the behavior is undefined.
1778 if (!MemPtr.getDecl())
1779 return 0;
1780
Richard Smith745f5142012-01-27 01:14:48 +00001781 if (!EvalObjOK)
1782 return 0;
1783
Richard Smithe24f5fc2011-11-17 22:56:20 +00001784 if (MemPtr.isDerivedMember()) {
1785 // This is a member of some derived class. Truncate LV appropriately.
Richard Smithe24f5fc2011-11-17 22:56:20 +00001786 // The end of the derived-to-base path for the base object must match the
1787 // derived-to-base path for the member pointer.
Richard Smithb4e85ed2012-01-06 16:39:00 +00001788 if (LV.Designator.MostDerivedPathLength + MemPtr.Path.size() >
Richard Smithe24f5fc2011-11-17 22:56:20 +00001789 LV.Designator.Entries.size())
1790 return 0;
1791 unsigned PathLengthToMember =
1792 LV.Designator.Entries.size() - MemPtr.Path.size();
1793 for (unsigned I = 0, N = MemPtr.Path.size(); I != N; ++I) {
1794 const CXXRecordDecl *LVDecl = getAsBaseClass(
1795 LV.Designator.Entries[PathLengthToMember + I]);
1796 const CXXRecordDecl *MPDecl = MemPtr.Path[I];
1797 if (LVDecl->getCanonicalDecl() != MPDecl->getCanonicalDecl())
1798 return 0;
1799 }
1800
1801 // Truncate the lvalue to the appropriate derived class.
Richard Smithb4e85ed2012-01-06 16:39:00 +00001802 if (!CastToDerivedClass(Info, BO, LV, MemPtr.getContainingRecord(),
1803 PathLengthToMember))
1804 return 0;
Richard Smithe24f5fc2011-11-17 22:56:20 +00001805 } else if (!MemPtr.Path.empty()) {
1806 // Extend the LValue path with the member pointer's path.
1807 LV.Designator.Entries.reserve(LV.Designator.Entries.size() +
1808 MemPtr.Path.size() + IncludeMember);
1809
1810 // Walk down to the appropriate base class.
1811 QualType LVType = BO->getLHS()->getType();
1812 if (const PointerType *PT = LVType->getAs<PointerType>())
1813 LVType = PT->getPointeeType();
1814 const CXXRecordDecl *RD = LVType->getAsCXXRecordDecl();
1815 assert(RD && "member pointer access on non-class-type expression");
1816 // The first class in the path is that of the lvalue.
1817 for (unsigned I = 1, N = MemPtr.Path.size(); I != N; ++I) {
1818 const CXXRecordDecl *Base = MemPtr.Path[N - I - 1];
Richard Smithb4e85ed2012-01-06 16:39:00 +00001819 HandleLValueDirectBase(Info, BO, LV, RD, Base);
Richard Smithe24f5fc2011-11-17 22:56:20 +00001820 RD = Base;
1821 }
1822 // Finally cast to the class containing the member.
Richard Smithb4e85ed2012-01-06 16:39:00 +00001823 HandleLValueDirectBase(Info, BO, LV, RD, MemPtr.getContainingRecord());
Richard Smithe24f5fc2011-11-17 22:56:20 +00001824 }
1825
1826 // Add the member. Note that we cannot build bound member functions here.
1827 if (IncludeMember) {
Richard Smithd9b02e72012-01-25 22:15:11 +00001828 if (const FieldDecl *FD = dyn_cast<FieldDecl>(MemPtr.getDecl()))
1829 HandleLValueMember(Info, BO, LV, FD);
1830 else if (const IndirectFieldDecl *IFD =
1831 dyn_cast<IndirectFieldDecl>(MemPtr.getDecl()))
1832 HandleLValueIndirectMember(Info, BO, LV, IFD);
1833 else
1834 llvm_unreachable("can't construct reference to bound member function");
Richard Smithe24f5fc2011-11-17 22:56:20 +00001835 }
1836
1837 return MemPtr.getDecl();
1838}
1839
1840/// HandleBaseToDerivedCast - Apply the given base-to-derived cast operation on
1841/// the provided lvalue, which currently refers to the base object.
1842static bool HandleBaseToDerivedCast(EvalInfo &Info, const CastExpr *E,
1843 LValue &Result) {
Richard Smithe24f5fc2011-11-17 22:56:20 +00001844 SubobjectDesignator &D = Result.Designator;
Richard Smithb4e85ed2012-01-06 16:39:00 +00001845 if (D.Invalid || !Result.checkNullPointer(Info, E, CSK_Derived))
Richard Smithe24f5fc2011-11-17 22:56:20 +00001846 return false;
1847
Richard Smithb4e85ed2012-01-06 16:39:00 +00001848 QualType TargetQT = E->getType();
1849 if (const PointerType *PT = TargetQT->getAs<PointerType>())
1850 TargetQT = PT->getPointeeType();
1851
1852 // Check this cast lands within the final derived-to-base subobject path.
1853 if (D.MostDerivedPathLength + E->path_size() > D.Entries.size()) {
1854 Info.CCEDiag(E->getExprLoc(), diag::note_constexpr_invalid_downcast)
1855 << D.MostDerivedType << TargetQT;
1856 return false;
1857 }
1858
Richard Smithe24f5fc2011-11-17 22:56:20 +00001859 // Check the type of the final cast. We don't need to check the path,
1860 // since a cast can only be formed if the path is unique.
1861 unsigned NewEntriesSize = D.Entries.size() - E->path_size();
Richard Smithe24f5fc2011-11-17 22:56:20 +00001862 const CXXRecordDecl *TargetType = TargetQT->getAsCXXRecordDecl();
1863 const CXXRecordDecl *FinalType;
Richard Smithb4e85ed2012-01-06 16:39:00 +00001864 if (NewEntriesSize == D.MostDerivedPathLength)
1865 FinalType = D.MostDerivedType->getAsCXXRecordDecl();
1866 else
Richard Smithe24f5fc2011-11-17 22:56:20 +00001867 FinalType = getAsBaseClass(D.Entries[NewEntriesSize - 1]);
Richard Smithb4e85ed2012-01-06 16:39:00 +00001868 if (FinalType->getCanonicalDecl() != TargetType->getCanonicalDecl()) {
1869 Info.CCEDiag(E->getExprLoc(), diag::note_constexpr_invalid_downcast)
1870 << D.MostDerivedType << TargetQT;
Richard Smithe24f5fc2011-11-17 22:56:20 +00001871 return false;
Richard Smithb4e85ed2012-01-06 16:39:00 +00001872 }
Richard Smithe24f5fc2011-11-17 22:56:20 +00001873
1874 // Truncate the lvalue to the appropriate derived class.
Richard Smithb4e85ed2012-01-06 16:39:00 +00001875 return CastToDerivedClass(Info, E, Result, TargetType, NewEntriesSize);
Richard Smith59efe262011-11-11 04:05:33 +00001876}
1877
Mike Stumpc4c90452009-10-27 22:09:17 +00001878namespace {
Richard Smithd0dccea2011-10-28 22:34:42 +00001879enum EvalStmtResult {
1880 /// Evaluation failed.
1881 ESR_Failed,
1882 /// Hit a 'return' statement.
1883 ESR_Returned,
1884 /// Evaluation succeeded.
1885 ESR_Succeeded
1886};
1887}
1888
1889// Evaluate a statement.
Richard Smithc1c5f272011-12-13 06:39:58 +00001890static EvalStmtResult EvaluateStmt(APValue &Result, EvalInfo &Info,
Richard Smithd0dccea2011-10-28 22:34:42 +00001891 const Stmt *S) {
1892 switch (S->getStmtClass()) {
1893 default:
1894 return ESR_Failed;
1895
1896 case Stmt::NullStmtClass:
1897 case Stmt::DeclStmtClass:
1898 return ESR_Succeeded;
1899
Richard Smithc1c5f272011-12-13 06:39:58 +00001900 case Stmt::ReturnStmtClass: {
1901 CCValue CCResult;
1902 const Expr *RetExpr = cast<ReturnStmt>(S)->getRetValue();
1903 if (!Evaluate(CCResult, Info, RetExpr) ||
1904 !CheckConstantExpression(Info, RetExpr, CCResult, Result,
1905 CCEK_ReturnValue))
1906 return ESR_Failed;
1907 return ESR_Returned;
1908 }
Richard Smithd0dccea2011-10-28 22:34:42 +00001909
1910 case Stmt::CompoundStmtClass: {
1911 const CompoundStmt *CS = cast<CompoundStmt>(S);
1912 for (CompoundStmt::const_body_iterator BI = CS->body_begin(),
1913 BE = CS->body_end(); BI != BE; ++BI) {
1914 EvalStmtResult ESR = EvaluateStmt(Result, Info, *BI);
1915 if (ESR != ESR_Succeeded)
1916 return ESR;
1917 }
1918 return ESR_Succeeded;
1919 }
1920 }
1921}
1922
Richard Smith61802452011-12-22 02:22:31 +00001923/// CheckTrivialDefaultConstructor - Check whether a constructor is a trivial
1924/// default constructor. If so, we'll fold it whether or not it's marked as
1925/// constexpr. If it is marked as constexpr, we will never implicitly define it,
1926/// so we need special handling.
1927static bool CheckTrivialDefaultConstructor(EvalInfo &Info, SourceLocation Loc,
Richard Smith51201882011-12-30 21:15:51 +00001928 const CXXConstructorDecl *CD,
1929 bool IsValueInitialization) {
Richard Smith61802452011-12-22 02:22:31 +00001930 if (!CD->isTrivial() || !CD->isDefaultConstructor())
1931 return false;
1932
Richard Smith4c3fc9b2012-01-18 05:21:49 +00001933 // Value-initialization does not call a trivial default constructor, so such a
1934 // call is a core constant expression whether or not the constructor is
1935 // constexpr.
1936 if (!CD->isConstexpr() && !IsValueInitialization) {
Richard Smith61802452011-12-22 02:22:31 +00001937 if (Info.getLangOpts().CPlusPlus0x) {
Richard Smith4c3fc9b2012-01-18 05:21:49 +00001938 // FIXME: If DiagDecl is an implicitly-declared special member function,
1939 // we should be much more explicit about why it's not constexpr.
1940 Info.CCEDiag(Loc, diag::note_constexpr_invalid_function, 1)
1941 << /*IsConstexpr*/0 << /*IsConstructor*/1 << CD;
1942 Info.Note(CD->getLocation(), diag::note_declared_at);
Richard Smith61802452011-12-22 02:22:31 +00001943 } else {
1944 Info.CCEDiag(Loc, diag::note_invalid_subexpr_in_const_expr);
1945 }
1946 }
1947 return true;
1948}
1949
Richard Smithc1c5f272011-12-13 06:39:58 +00001950/// CheckConstexprFunction - Check that a function can be called in a constant
1951/// expression.
1952static bool CheckConstexprFunction(EvalInfo &Info, SourceLocation CallLoc,
1953 const FunctionDecl *Declaration,
1954 const FunctionDecl *Definition) {
Richard Smith745f5142012-01-27 01:14:48 +00001955 // Potential constant expressions can contain calls to declared, but not yet
1956 // defined, constexpr functions.
1957 if (Info.CheckingPotentialConstantExpression && !Definition &&
1958 Declaration->isConstexpr())
1959 return false;
1960
Richard Smithc1c5f272011-12-13 06:39:58 +00001961 // Can we evaluate this function call?
1962 if (Definition && Definition->isConstexpr() && !Definition->isInvalidDecl())
1963 return true;
1964
1965 if (Info.getLangOpts().CPlusPlus0x) {
1966 const FunctionDecl *DiagDecl = Definition ? Definition : Declaration;
Richard Smith099e7f62011-12-19 06:19:21 +00001967 // FIXME: If DiagDecl is an implicitly-declared special member function, we
1968 // should be much more explicit about why it's not constexpr.
Richard Smithc1c5f272011-12-13 06:39:58 +00001969 Info.Diag(CallLoc, diag::note_constexpr_invalid_function, 1)
1970 << DiagDecl->isConstexpr() << isa<CXXConstructorDecl>(DiagDecl)
1971 << DiagDecl;
1972 Info.Note(DiagDecl->getLocation(), diag::note_declared_at);
1973 } else {
1974 Info.Diag(CallLoc, diag::note_invalid_subexpr_in_const_expr);
1975 }
1976 return false;
1977}
1978
Richard Smith180f4792011-11-10 06:34:14 +00001979namespace {
Richard Smithcd99b072011-11-11 05:48:57 +00001980typedef SmallVector<CCValue, 8> ArgVector;
Richard Smith180f4792011-11-10 06:34:14 +00001981}
1982
1983/// EvaluateArgs - Evaluate the arguments to a function call.
1984static bool EvaluateArgs(ArrayRef<const Expr*> Args, ArgVector &ArgValues,
1985 EvalInfo &Info) {
Richard Smith745f5142012-01-27 01:14:48 +00001986 bool Success = true;
Richard Smith180f4792011-11-10 06:34:14 +00001987 for (ArrayRef<const Expr*>::iterator I = Args.begin(), E = Args.end();
Richard Smith745f5142012-01-27 01:14:48 +00001988 I != E; ++I) {
1989 if (!Evaluate(ArgValues[I - Args.begin()], Info, *I)) {
1990 // If we're checking for a potential constant expression, evaluate all
1991 // initializers even if some of them fail.
1992 if (!Info.keepEvaluatingAfterFailure())
1993 return false;
1994 Success = false;
1995 }
1996 }
1997 return Success;
Richard Smith180f4792011-11-10 06:34:14 +00001998}
1999
Richard Smithd0dccea2011-10-28 22:34:42 +00002000/// Evaluate a function call.
Richard Smith745f5142012-01-27 01:14:48 +00002001static bool HandleFunctionCall(SourceLocation CallLoc,
2002 const FunctionDecl *Callee, const LValue *This,
Richard Smithf48fdb02011-12-09 22:58:01 +00002003 ArrayRef<const Expr*> Args, const Stmt *Body,
Richard Smithc1c5f272011-12-13 06:39:58 +00002004 EvalInfo &Info, APValue &Result) {
Richard Smith180f4792011-11-10 06:34:14 +00002005 ArgVector ArgValues(Args.size());
2006 if (!EvaluateArgs(Args, ArgValues, Info))
2007 return false;
Richard Smithd0dccea2011-10-28 22:34:42 +00002008
Richard Smith745f5142012-01-27 01:14:48 +00002009 if (!Info.CheckCallLimit(CallLoc))
2010 return false;
2011
2012 CallStackFrame Frame(Info, CallLoc, Callee, This, ArgValues.data());
Richard Smithd0dccea2011-10-28 22:34:42 +00002013 return EvaluateStmt(Result, Info, Body) == ESR_Returned;
2014}
2015
Richard Smith180f4792011-11-10 06:34:14 +00002016/// Evaluate a constructor call.
Richard Smith745f5142012-01-27 01:14:48 +00002017static bool HandleConstructorCall(SourceLocation CallLoc, const LValue &This,
Richard Smith59efe262011-11-11 04:05:33 +00002018 ArrayRef<const Expr*> Args,
Richard Smith180f4792011-11-10 06:34:14 +00002019 const CXXConstructorDecl *Definition,
Richard Smith51201882011-12-30 21:15:51 +00002020 EvalInfo &Info, APValue &Result) {
Richard Smith180f4792011-11-10 06:34:14 +00002021 ArgVector ArgValues(Args.size());
2022 if (!EvaluateArgs(Args, ArgValues, Info))
2023 return false;
2024
Richard Smith745f5142012-01-27 01:14:48 +00002025 if (!Info.CheckCallLimit(CallLoc))
2026 return false;
2027
2028 CallStackFrame Frame(Info, CallLoc, Definition, &This, ArgValues.data());
Richard Smith180f4792011-11-10 06:34:14 +00002029
2030 // If it's a delegating constructor, just delegate.
2031 if (Definition->isDelegatingConstructor()) {
2032 CXXConstructorDecl::init_const_iterator I = Definition->init_begin();
2033 return EvaluateConstantExpression(Result, Info, This, (*I)->getInit());
2034 }
2035
Richard Smith610a60c2012-01-10 04:32:03 +00002036 // For a trivial copy or move constructor, perform an APValue copy. This is
2037 // essential for unions, where the operations performed by the constructor
2038 // cannot be represented by ctor-initializers.
Richard Smith180f4792011-11-10 06:34:14 +00002039 const CXXRecordDecl *RD = Definition->getParent();
Richard Smith610a60c2012-01-10 04:32:03 +00002040 if (Definition->isDefaulted() &&
2041 ((Definition->isCopyConstructor() && RD->hasTrivialCopyConstructor()) ||
2042 (Definition->isMoveConstructor() && RD->hasTrivialMoveConstructor()))) {
2043 LValue RHS;
2044 RHS.setFrom(ArgValues[0]);
2045 CCValue Value;
Richard Smith745f5142012-01-27 01:14:48 +00002046 if (!HandleLValueToRValueConversion(Info, Args[0], Args[0]->getType(),
2047 RHS, Value))
2048 return false;
2049 assert((Value.isStruct() || Value.isUnion()) &&
2050 "trivial copy/move from non-class type?");
2051 // Any CCValue of class type must already be a constant expression.
2052 Result = Value;
2053 return true;
Richard Smith610a60c2012-01-10 04:32:03 +00002054 }
2055
2056 // Reserve space for the struct members.
Richard Smith51201882011-12-30 21:15:51 +00002057 if (!RD->isUnion() && Result.isUninit())
Richard Smith180f4792011-11-10 06:34:14 +00002058 Result = APValue(APValue::UninitStruct(), RD->getNumBases(),
2059 std::distance(RD->field_begin(), RD->field_end()));
2060
2061 const ASTRecordLayout &Layout = Info.Ctx.getASTRecordLayout(RD);
2062
Richard Smith745f5142012-01-27 01:14:48 +00002063 bool Success = true;
Richard Smith180f4792011-11-10 06:34:14 +00002064 unsigned BasesSeen = 0;
2065#ifndef NDEBUG
2066 CXXRecordDecl::base_class_const_iterator BaseIt = RD->bases_begin();
2067#endif
2068 for (CXXConstructorDecl::init_const_iterator I = Definition->init_begin(),
2069 E = Definition->init_end(); I != E; ++I) {
Richard Smith745f5142012-01-27 01:14:48 +00002070 LValue Subobject = This;
2071 APValue *Value = &Result;
2072
2073 // Determine the subobject to initialize.
Richard Smith180f4792011-11-10 06:34:14 +00002074 if ((*I)->isBaseInitializer()) {
2075 QualType BaseType((*I)->getBaseClass(), 0);
2076#ifndef NDEBUG
2077 // Non-virtual base classes are initialized in the order in the class
2078 // definition. We cannot have a virtual base class for a literal type.
2079 assert(!BaseIt->isVirtual() && "virtual base for literal type");
2080 assert(Info.Ctx.hasSameType(BaseIt->getType(), BaseType) &&
2081 "base class initializers not in expected order");
2082 ++BaseIt;
2083#endif
Richard Smithb4e85ed2012-01-06 16:39:00 +00002084 HandleLValueDirectBase(Info, (*I)->getInit(), Subobject, RD,
Richard Smith180f4792011-11-10 06:34:14 +00002085 BaseType->getAsCXXRecordDecl(), &Layout);
Richard Smith745f5142012-01-27 01:14:48 +00002086 Value = &Result.getStructBase(BasesSeen++);
Richard Smith180f4792011-11-10 06:34:14 +00002087 } else if (FieldDecl *FD = (*I)->getMember()) {
Richard Smithb4e85ed2012-01-06 16:39:00 +00002088 HandleLValueMember(Info, (*I)->getInit(), Subobject, FD, &Layout);
Richard Smith180f4792011-11-10 06:34:14 +00002089 if (RD->isUnion()) {
2090 Result = APValue(FD);
Richard Smith745f5142012-01-27 01:14:48 +00002091 Value = &Result.getUnionValue();
2092 } else {
2093 Value = &Result.getStructField(FD->getFieldIndex());
2094 }
Richard Smithd9b02e72012-01-25 22:15:11 +00002095 } else if (IndirectFieldDecl *IFD = (*I)->getIndirectMember()) {
Richard Smithd9b02e72012-01-25 22:15:11 +00002096 // Walk the indirect field decl's chain to find the object to initialize,
2097 // and make sure we've initialized every step along it.
2098 for (IndirectFieldDecl::chain_iterator C = IFD->chain_begin(),
2099 CE = IFD->chain_end();
2100 C != CE; ++C) {
2101 FieldDecl *FD = cast<FieldDecl>(*C);
2102 CXXRecordDecl *CD = cast<CXXRecordDecl>(FD->getParent());
2103 // Switch the union field if it differs. This happens if we had
2104 // preceding zero-initialization, and we're now initializing a union
2105 // subobject other than the first.
2106 // FIXME: In this case, the values of the other subobjects are
2107 // specified, since zero-initialization sets all padding bits to zero.
2108 if (Value->isUninit() ||
2109 (Value->isUnion() && Value->getUnionField() != FD)) {
2110 if (CD->isUnion())
2111 *Value = APValue(FD);
2112 else
2113 *Value = APValue(APValue::UninitStruct(), CD->getNumBases(),
2114 std::distance(CD->field_begin(), CD->field_end()));
2115 }
Richard Smith745f5142012-01-27 01:14:48 +00002116 HandleLValueMember(Info, (*I)->getInit(), Subobject, FD);
Richard Smithd9b02e72012-01-25 22:15:11 +00002117 if (CD->isUnion())
2118 Value = &Value->getUnionValue();
2119 else
2120 Value = &Value->getStructField(FD->getFieldIndex());
Richard Smithd9b02e72012-01-25 22:15:11 +00002121 }
Richard Smith180f4792011-11-10 06:34:14 +00002122 } else {
Richard Smithd9b02e72012-01-25 22:15:11 +00002123 llvm_unreachable("unknown base initializer kind");
Richard Smith180f4792011-11-10 06:34:14 +00002124 }
Richard Smith745f5142012-01-27 01:14:48 +00002125
2126 if (!EvaluateConstantExpression(*Value, Info, Subobject, (*I)->getInit(),
2127 (*I)->isBaseInitializer()
2128 ? CCEK_Constant : CCEK_MemberInit)) {
2129 // If we're checking for a potential constant expression, evaluate all
2130 // initializers even if some of them fail.
2131 if (!Info.keepEvaluatingAfterFailure())
2132 return false;
2133 Success = false;
2134 }
Richard Smith180f4792011-11-10 06:34:14 +00002135 }
2136
Richard Smith745f5142012-01-27 01:14:48 +00002137 return Success;
Richard Smith180f4792011-11-10 06:34:14 +00002138}
2139
Richard Smithd0dccea2011-10-28 22:34:42 +00002140namespace {
Benjamin Kramer770b4a82009-11-28 19:03:38 +00002141class HasSideEffect
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002142 : public ConstStmtVisitor<HasSideEffect, bool> {
Richard Smith1e12c592011-10-16 21:26:27 +00002143 const ASTContext &Ctx;
Mike Stumpc4c90452009-10-27 22:09:17 +00002144public:
2145
Richard Smith1e12c592011-10-16 21:26:27 +00002146 HasSideEffect(const ASTContext &C) : Ctx(C) {}
Mike Stumpc4c90452009-10-27 22:09:17 +00002147
2148 // Unhandled nodes conservatively default to having side effects.
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002149 bool VisitStmt(const Stmt *S) {
Mike Stumpc4c90452009-10-27 22:09:17 +00002150 return true;
2151 }
2152
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002153 bool VisitParenExpr(const ParenExpr *E) { return Visit(E->getSubExpr()); }
2154 bool VisitGenericSelectionExpr(const GenericSelectionExpr *E) {
Peter Collingbournef111d932011-04-15 00:35:48 +00002155 return Visit(E->getResultExpr());
2156 }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002157 bool VisitDeclRefExpr(const DeclRefExpr *E) {
Richard Smith1e12c592011-10-16 21:26:27 +00002158 if (Ctx.getCanonicalType(E->getType()).isVolatileQualified())
Mike Stumpc4c90452009-10-27 22:09:17 +00002159 return true;
2160 return false;
2161 }
John McCallf85e1932011-06-15 23:02:42 +00002162 bool VisitObjCIvarRefExpr(const ObjCIvarRefExpr *E) {
Richard Smith1e12c592011-10-16 21:26:27 +00002163 if (Ctx.getCanonicalType(E->getType()).isVolatileQualified())
John McCallf85e1932011-06-15 23:02:42 +00002164 return true;
2165 return false;
2166 }
2167 bool VisitBlockDeclRefExpr (const BlockDeclRefExpr *E) {
Richard Smith1e12c592011-10-16 21:26:27 +00002168 if (Ctx.getCanonicalType(E->getType()).isVolatileQualified())
John McCallf85e1932011-06-15 23:02:42 +00002169 return true;
2170 return false;
2171 }
2172
Mike Stumpc4c90452009-10-27 22:09:17 +00002173 // We don't want to evaluate BlockExprs multiple times, as they generate
2174 // a ton of code.
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002175 bool VisitBlockExpr(const BlockExpr *E) { return true; }
2176 bool VisitPredefinedExpr(const PredefinedExpr *E) { return false; }
2177 bool VisitCompoundLiteralExpr(const CompoundLiteralExpr *E)
Mike Stumpc4c90452009-10-27 22:09:17 +00002178 { return Visit(E->getInitializer()); }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002179 bool VisitMemberExpr(const MemberExpr *E) { return Visit(E->getBase()); }
2180 bool VisitIntegerLiteral(const IntegerLiteral *E) { return false; }
2181 bool VisitFloatingLiteral(const FloatingLiteral *E) { return false; }
2182 bool VisitStringLiteral(const StringLiteral *E) { return false; }
2183 bool VisitCharacterLiteral(const CharacterLiteral *E) { return false; }
2184 bool VisitUnaryExprOrTypeTraitExpr(const UnaryExprOrTypeTraitExpr *E)
Peter Collingbournef4e3cfb2011-03-11 19:24:49 +00002185 { return false; }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002186 bool VisitArraySubscriptExpr(const ArraySubscriptExpr *E)
Mike Stump980ca222009-10-29 20:48:09 +00002187 { return Visit(E->getLHS()) || Visit(E->getRHS()); }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002188 bool VisitChooseExpr(const ChooseExpr *E)
Richard Smith1e12c592011-10-16 21:26:27 +00002189 { return Visit(E->getChosenSubExpr(Ctx)); }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002190 bool VisitCastExpr(const CastExpr *E) { return Visit(E->getSubExpr()); }
2191 bool VisitBinAssign(const BinaryOperator *E) { return true; }
2192 bool VisitCompoundAssignOperator(const BinaryOperator *E) { return true; }
2193 bool VisitBinaryOperator(const BinaryOperator *E)
Mike Stump980ca222009-10-29 20:48:09 +00002194 { return Visit(E->getLHS()) || Visit(E->getRHS()); }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002195 bool VisitUnaryPreInc(const UnaryOperator *E) { return true; }
2196 bool VisitUnaryPostInc(const UnaryOperator *E) { return true; }
2197 bool VisitUnaryPreDec(const UnaryOperator *E) { return true; }
2198 bool VisitUnaryPostDec(const UnaryOperator *E) { return true; }
2199 bool VisitUnaryDeref(const UnaryOperator *E) {
Richard Smith1e12c592011-10-16 21:26:27 +00002200 if (Ctx.getCanonicalType(E->getType()).isVolatileQualified())
Mike Stumpc4c90452009-10-27 22:09:17 +00002201 return true;
Mike Stump980ca222009-10-29 20:48:09 +00002202 return Visit(E->getSubExpr());
Mike Stumpc4c90452009-10-27 22:09:17 +00002203 }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002204 bool VisitUnaryOperator(const UnaryOperator *E) { return Visit(E->getSubExpr()); }
Chris Lattner363ff232010-04-13 17:34:23 +00002205
2206 // Has side effects if any element does.
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002207 bool VisitInitListExpr(const InitListExpr *E) {
Chris Lattner363ff232010-04-13 17:34:23 +00002208 for (unsigned i = 0, e = E->getNumInits(); i != e; ++i)
2209 if (Visit(E->getInit(i))) return true;
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002210 if (const Expr *filler = E->getArrayFiller())
Argyrios Kyrtzidis4423ac02011-04-21 00:27:41 +00002211 return Visit(filler);
Chris Lattner363ff232010-04-13 17:34:23 +00002212 return false;
2213 }
Douglas Gregoree8aff02011-01-04 17:33:58 +00002214
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002215 bool VisitSizeOfPackExpr(const SizeOfPackExpr *) { return false; }
Mike Stumpc4c90452009-10-27 22:09:17 +00002216};
2217
John McCall56ca35d2011-02-17 10:25:35 +00002218class OpaqueValueEvaluation {
2219 EvalInfo &info;
2220 OpaqueValueExpr *opaqueValue;
2221
2222public:
2223 OpaqueValueEvaluation(EvalInfo &info, OpaqueValueExpr *opaqueValue,
2224 Expr *value)
2225 : info(info), opaqueValue(opaqueValue) {
2226
2227 // If evaluation fails, fail immediately.
Richard Smith1e12c592011-10-16 21:26:27 +00002228 if (!Evaluate(info.OpaqueValues[opaqueValue], info, value)) {
John McCall56ca35d2011-02-17 10:25:35 +00002229 this->opaqueValue = 0;
2230 return;
2231 }
John McCall56ca35d2011-02-17 10:25:35 +00002232 }
2233
2234 bool hasError() const { return opaqueValue == 0; }
2235
2236 ~OpaqueValueEvaluation() {
Richard Smith1e12c592011-10-16 21:26:27 +00002237 // FIXME: This will not work for recursive constexpr functions using opaque
2238 // values. Restore the former value.
John McCall56ca35d2011-02-17 10:25:35 +00002239 if (opaqueValue) info.OpaqueValues.erase(opaqueValue);
2240 }
2241};
2242
Mike Stumpc4c90452009-10-27 22:09:17 +00002243} // end anonymous namespace
2244
Eli Friedman4efaa272008-11-12 09:44:48 +00002245//===----------------------------------------------------------------------===//
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002246// Generic Evaluation
2247//===----------------------------------------------------------------------===//
2248namespace {
2249
Richard Smithf48fdb02011-12-09 22:58:01 +00002250// FIXME: RetTy is always bool. Remove it.
2251template <class Derived, typename RetTy=bool>
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002252class ExprEvaluatorBase
2253 : public ConstStmtVisitor<Derived, RetTy> {
2254private:
Richard Smith47a1eed2011-10-29 20:57:55 +00002255 RetTy DerivedSuccess(const CCValue &V, const Expr *E) {
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002256 return static_cast<Derived*>(this)->Success(V, E);
2257 }
Richard Smith51201882011-12-30 21:15:51 +00002258 RetTy DerivedZeroInitialization(const Expr *E) {
2259 return static_cast<Derived*>(this)->ZeroInitialization(E);
Richard Smithf10d9172011-10-11 21:43:33 +00002260 }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002261
2262protected:
2263 EvalInfo &Info;
2264 typedef ConstStmtVisitor<Derived, RetTy> StmtVisitorTy;
2265 typedef ExprEvaluatorBase ExprEvaluatorBaseTy;
2266
Richard Smithdd1f29b2011-12-12 09:28:41 +00002267 OptionalDiagnostic CCEDiag(const Expr *E, diag::kind D) {
Richard Smithd5093422011-12-12 09:41:58 +00002268 return Info.CCEDiag(E->getExprLoc(), D);
Richard Smithf48fdb02011-12-09 22:58:01 +00002269 }
2270
2271 /// Report an evaluation error. This should only be called when an error is
2272 /// first discovered. When propagating an error, just return false.
2273 bool Error(const Expr *E, diag::kind D) {
Richard Smithdd1f29b2011-12-12 09:28:41 +00002274 Info.Diag(E->getExprLoc(), D);
Richard Smithf48fdb02011-12-09 22:58:01 +00002275 return false;
2276 }
2277 bool Error(const Expr *E) {
2278 return Error(E, diag::note_invalid_subexpr_in_const_expr);
2279 }
2280
Richard Smith51201882011-12-30 21:15:51 +00002281 RetTy ZeroInitialization(const Expr *E) { return Error(E); }
Richard Smithf10d9172011-10-11 21:43:33 +00002282
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002283public:
2284 ExprEvaluatorBase(EvalInfo &Info) : Info(Info) {}
2285
2286 RetTy VisitStmt(const Stmt *) {
David Blaikieb219cfc2011-09-23 05:06:16 +00002287 llvm_unreachable("Expression evaluator should not be called on stmts");
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002288 }
2289 RetTy VisitExpr(const Expr *E) {
Richard Smithf48fdb02011-12-09 22:58:01 +00002290 return Error(E);
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002291 }
2292
2293 RetTy VisitParenExpr(const ParenExpr *E)
2294 { return StmtVisitorTy::Visit(E->getSubExpr()); }
2295 RetTy VisitUnaryExtension(const UnaryOperator *E)
2296 { return StmtVisitorTy::Visit(E->getSubExpr()); }
2297 RetTy VisitUnaryPlus(const UnaryOperator *E)
2298 { return StmtVisitorTy::Visit(E->getSubExpr()); }
2299 RetTy VisitChooseExpr(const ChooseExpr *E)
2300 { return StmtVisitorTy::Visit(E->getChosenSubExpr(Info.Ctx)); }
2301 RetTy VisitGenericSelectionExpr(const GenericSelectionExpr *E)
2302 { return StmtVisitorTy::Visit(E->getResultExpr()); }
John McCall91a57552011-07-15 05:09:51 +00002303 RetTy VisitSubstNonTypeTemplateParmExpr(const SubstNonTypeTemplateParmExpr *E)
2304 { return StmtVisitorTy::Visit(E->getReplacement()); }
Richard Smith3d75ca82011-11-09 02:12:41 +00002305 RetTy VisitCXXDefaultArgExpr(const CXXDefaultArgExpr *E)
2306 { return StmtVisitorTy::Visit(E->getExpr()); }
Richard Smithbc6abe92011-12-19 22:12:41 +00002307 // We cannot create any objects for which cleanups are required, so there is
2308 // nothing to do here; all cleanups must come from unevaluated subexpressions.
2309 RetTy VisitExprWithCleanups(const ExprWithCleanups *E)
2310 { return StmtVisitorTy::Visit(E->getSubExpr()); }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002311
Richard Smithc216a012011-12-12 12:46:16 +00002312 RetTy VisitCXXReinterpretCastExpr(const CXXReinterpretCastExpr *E) {
2313 CCEDiag(E, diag::note_constexpr_invalid_cast) << 0;
2314 return static_cast<Derived*>(this)->VisitCastExpr(E);
2315 }
2316 RetTy VisitCXXDynamicCastExpr(const CXXDynamicCastExpr *E) {
2317 CCEDiag(E, diag::note_constexpr_invalid_cast) << 1;
2318 return static_cast<Derived*>(this)->VisitCastExpr(E);
2319 }
2320
Richard Smithe24f5fc2011-11-17 22:56:20 +00002321 RetTy VisitBinaryOperator(const BinaryOperator *E) {
2322 switch (E->getOpcode()) {
2323 default:
Richard Smithf48fdb02011-12-09 22:58:01 +00002324 return Error(E);
Richard Smithe24f5fc2011-11-17 22:56:20 +00002325
2326 case BO_Comma:
2327 VisitIgnoredValue(E->getLHS());
2328 return StmtVisitorTy::Visit(E->getRHS());
2329
2330 case BO_PtrMemD:
2331 case BO_PtrMemI: {
2332 LValue Obj;
2333 if (!HandleMemberPointerAccess(Info, E, Obj))
2334 return false;
2335 CCValue Result;
Richard Smithf48fdb02011-12-09 22:58:01 +00002336 if (!HandleLValueToRValueConversion(Info, E, E->getType(), Obj, Result))
Richard Smithe24f5fc2011-11-17 22:56:20 +00002337 return false;
2338 return DerivedSuccess(Result, E);
2339 }
2340 }
2341 }
2342
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002343 RetTy VisitBinaryConditionalOperator(const BinaryConditionalOperator *E) {
2344 OpaqueValueEvaluation opaque(Info, E->getOpaqueValue(), E->getCommon());
2345 if (opaque.hasError())
Richard Smithf48fdb02011-12-09 22:58:01 +00002346 return false;
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002347
2348 bool cond;
Richard Smithc49bd112011-10-28 17:51:58 +00002349 if (!EvaluateAsBooleanCondition(E->getCond(), cond, Info))
Richard Smithf48fdb02011-12-09 22:58:01 +00002350 return false;
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002351
2352 return StmtVisitorTy::Visit(cond ? E->getTrueExpr() : E->getFalseExpr());
2353 }
2354
2355 RetTy VisitConditionalOperator(const ConditionalOperator *E) {
Richard Smithf15fda02012-02-02 01:16:57 +00002356 bool IsBcpCall = false;
2357 // If the condition (ignoring parens) is a __builtin_constant_p call,
2358 // the result is a constant expression if it can be folded without
2359 // side-effects. This is an important GNU extension. See GCC PR38377
2360 // for discussion.
2361 if (const CallExpr *CallCE =
2362 dyn_cast<CallExpr>(E->getCond()->IgnoreParenCasts()))
2363 if (CallCE->isBuiltinCall() == Builtin::BI__builtin_constant_p)
2364 IsBcpCall = true;
2365
2366 // Always assume __builtin_constant_p(...) ? ... : ... is a potential
2367 // constant expression; we can't check whether it's potentially foldable.
2368 if (Info.CheckingPotentialConstantExpression && IsBcpCall)
2369 return false;
2370
2371 FoldConstant Fold(Info);
2372
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002373 bool BoolResult;
Richard Smithc49bd112011-10-28 17:51:58 +00002374 if (!EvaluateAsBooleanCondition(E->getCond(), BoolResult, Info))
Richard Smithf48fdb02011-12-09 22:58:01 +00002375 return false;
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002376
Richard Smithc49bd112011-10-28 17:51:58 +00002377 Expr *EvalExpr = BoolResult ? E->getTrueExpr() : E->getFalseExpr();
Richard Smithf15fda02012-02-02 01:16:57 +00002378 if (!StmtVisitorTy::Visit(EvalExpr))
2379 return false;
2380
2381 if (IsBcpCall)
2382 Fold.Fold(Info);
2383
2384 return true;
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002385 }
2386
2387 RetTy VisitOpaqueValueExpr(const OpaqueValueExpr *E) {
Richard Smith47a1eed2011-10-29 20:57:55 +00002388 const CCValue *Value = Info.getOpaqueValue(E);
Argyrios Kyrtzidis42786832011-12-09 02:44:48 +00002389 if (!Value) {
2390 const Expr *Source = E->getSourceExpr();
2391 if (!Source)
Richard Smithf48fdb02011-12-09 22:58:01 +00002392 return Error(E);
Argyrios Kyrtzidis42786832011-12-09 02:44:48 +00002393 if (Source == E) { // sanity checking.
2394 assert(0 && "OpaqueValueExpr recursively refers to itself");
Richard Smithf48fdb02011-12-09 22:58:01 +00002395 return Error(E);
Argyrios Kyrtzidis42786832011-12-09 02:44:48 +00002396 }
2397 return StmtVisitorTy::Visit(Source);
2398 }
Richard Smith47a1eed2011-10-29 20:57:55 +00002399 return DerivedSuccess(*Value, E);
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002400 }
Richard Smithf10d9172011-10-11 21:43:33 +00002401
Richard Smithd0dccea2011-10-28 22:34:42 +00002402 RetTy VisitCallExpr(const CallExpr *E) {
Richard Smithe24f5fc2011-11-17 22:56:20 +00002403 const Expr *Callee = E->getCallee()->IgnoreParens();
Richard Smithd0dccea2011-10-28 22:34:42 +00002404 QualType CalleeType = Callee->getType();
2405
Richard Smithd0dccea2011-10-28 22:34:42 +00002406 const FunctionDecl *FD = 0;
Richard Smith59efe262011-11-11 04:05:33 +00002407 LValue *This = 0, ThisVal;
2408 llvm::ArrayRef<const Expr*> Args(E->getArgs(), E->getNumArgs());
Richard Smith6c957872011-11-10 09:31:24 +00002409
Richard Smith59efe262011-11-11 04:05:33 +00002410 // Extract function decl and 'this' pointer from the callee.
2411 if (CalleeType->isSpecificBuiltinType(BuiltinType::BoundMember)) {
Richard Smithf48fdb02011-12-09 22:58:01 +00002412 const ValueDecl *Member = 0;
Richard Smithe24f5fc2011-11-17 22:56:20 +00002413 if (const MemberExpr *ME = dyn_cast<MemberExpr>(Callee)) {
2414 // Explicit bound member calls, such as x.f() or p->g();
2415 if (!EvaluateObjectArgument(Info, ME->getBase(), ThisVal))
Richard Smithf48fdb02011-12-09 22:58:01 +00002416 return false;
2417 Member = ME->getMemberDecl();
Richard Smithe24f5fc2011-11-17 22:56:20 +00002418 This = &ThisVal;
Richard Smithe24f5fc2011-11-17 22:56:20 +00002419 } else if (const BinaryOperator *BE = dyn_cast<BinaryOperator>(Callee)) {
2420 // Indirect bound member calls ('.*' or '->*').
Richard Smithf48fdb02011-12-09 22:58:01 +00002421 Member = HandleMemberPointerAccess(Info, BE, ThisVal, false);
2422 if (!Member) return false;
Richard Smithe24f5fc2011-11-17 22:56:20 +00002423 This = &ThisVal;
Richard Smithe24f5fc2011-11-17 22:56:20 +00002424 } else
Richard Smithf48fdb02011-12-09 22:58:01 +00002425 return Error(Callee);
2426
2427 FD = dyn_cast<FunctionDecl>(Member);
2428 if (!FD)
2429 return Error(Callee);
Richard Smith59efe262011-11-11 04:05:33 +00002430 } else if (CalleeType->isFunctionPointerType()) {
Richard Smithb4e85ed2012-01-06 16:39:00 +00002431 LValue Call;
2432 if (!EvaluatePointer(Callee, Call, Info))
Richard Smithf48fdb02011-12-09 22:58:01 +00002433 return false;
Richard Smith59efe262011-11-11 04:05:33 +00002434
Richard Smithb4e85ed2012-01-06 16:39:00 +00002435 if (!Call.getLValueOffset().isZero())
Richard Smithf48fdb02011-12-09 22:58:01 +00002436 return Error(Callee);
Richard Smith1bf9a9e2011-11-12 22:28:03 +00002437 FD = dyn_cast_or_null<FunctionDecl>(
2438 Call.getLValueBase().dyn_cast<const ValueDecl*>());
Richard Smith59efe262011-11-11 04:05:33 +00002439 if (!FD)
Richard Smithf48fdb02011-12-09 22:58:01 +00002440 return Error(Callee);
Richard Smith59efe262011-11-11 04:05:33 +00002441
2442 // Overloaded operator calls to member functions are represented as normal
2443 // calls with '*this' as the first argument.
2444 const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(FD);
2445 if (MD && !MD->isStatic()) {
Richard Smithf48fdb02011-12-09 22:58:01 +00002446 // FIXME: When selecting an implicit conversion for an overloaded
2447 // operator delete, we sometimes try to evaluate calls to conversion
2448 // operators without a 'this' parameter!
2449 if (Args.empty())
2450 return Error(E);
2451
Richard Smith59efe262011-11-11 04:05:33 +00002452 if (!EvaluateObjectArgument(Info, Args[0], ThisVal))
2453 return false;
2454 This = &ThisVal;
2455 Args = Args.slice(1);
2456 }
2457
2458 // Don't call function pointers which have been cast to some other type.
2459 if (!Info.Ctx.hasSameType(CalleeType->getPointeeType(), FD->getType()))
Richard Smithf48fdb02011-12-09 22:58:01 +00002460 return Error(E);
Richard Smith59efe262011-11-11 04:05:33 +00002461 } else
Richard Smithf48fdb02011-12-09 22:58:01 +00002462 return Error(E);
Richard Smithd0dccea2011-10-28 22:34:42 +00002463
Richard Smithb04035a2012-02-01 02:39:43 +00002464 if (This && !This->checkSubobject(Info, E, CSK_This))
2465 return false;
2466
Richard Smithc1c5f272011-12-13 06:39:58 +00002467 const FunctionDecl *Definition = 0;
Richard Smithd0dccea2011-10-28 22:34:42 +00002468 Stmt *Body = FD->getBody(Definition);
Richard Smith69c2c502011-11-04 05:33:44 +00002469 APValue Result;
Richard Smithd0dccea2011-10-28 22:34:42 +00002470
Richard Smithc1c5f272011-12-13 06:39:58 +00002471 if (!CheckConstexprFunction(Info, E->getExprLoc(), FD, Definition) ||
Richard Smith745f5142012-01-27 01:14:48 +00002472 !HandleFunctionCall(E->getExprLoc(), Definition, This, Args, Body,
2473 Info, Result))
Richard Smithf48fdb02011-12-09 22:58:01 +00002474 return false;
2475
Richard Smithb4e85ed2012-01-06 16:39:00 +00002476 return DerivedSuccess(CCValue(Info.Ctx, Result, CCValue::GlobalValue()), E);
Richard Smithd0dccea2011-10-28 22:34:42 +00002477 }
2478
Richard Smithc49bd112011-10-28 17:51:58 +00002479 RetTy VisitCompoundLiteralExpr(const CompoundLiteralExpr *E) {
2480 return StmtVisitorTy::Visit(E->getInitializer());
2481 }
Richard Smithf10d9172011-10-11 21:43:33 +00002482 RetTy VisitInitListExpr(const InitListExpr *E) {
Eli Friedman71523d62012-01-03 23:54:05 +00002483 if (E->getNumInits() == 0)
2484 return DerivedZeroInitialization(E);
2485 if (E->getNumInits() == 1)
2486 return StmtVisitorTy::Visit(E->getInit(0));
Richard Smithf48fdb02011-12-09 22:58:01 +00002487 return Error(E);
Richard Smithf10d9172011-10-11 21:43:33 +00002488 }
2489 RetTy VisitImplicitValueInitExpr(const ImplicitValueInitExpr *E) {
Richard Smith51201882011-12-30 21:15:51 +00002490 return DerivedZeroInitialization(E);
Richard Smithf10d9172011-10-11 21:43:33 +00002491 }
2492 RetTy VisitCXXScalarValueInitExpr(const CXXScalarValueInitExpr *E) {
Richard Smith51201882011-12-30 21:15:51 +00002493 return DerivedZeroInitialization(E);
Richard Smithf10d9172011-10-11 21:43:33 +00002494 }
Richard Smithe24f5fc2011-11-17 22:56:20 +00002495 RetTy VisitCXXNullPtrLiteralExpr(const CXXNullPtrLiteralExpr *E) {
Richard Smith51201882011-12-30 21:15:51 +00002496 return DerivedZeroInitialization(E);
Richard Smithe24f5fc2011-11-17 22:56:20 +00002497 }
Richard Smithf10d9172011-10-11 21:43:33 +00002498
Richard Smith180f4792011-11-10 06:34:14 +00002499 /// A member expression where the object is a prvalue is itself a prvalue.
2500 RetTy VisitMemberExpr(const MemberExpr *E) {
2501 assert(!E->isArrow() && "missing call to bound member function?");
2502
2503 CCValue Val;
2504 if (!Evaluate(Val, Info, E->getBase()))
2505 return false;
2506
2507 QualType BaseTy = E->getBase()->getType();
2508
2509 const FieldDecl *FD = dyn_cast<FieldDecl>(E->getMemberDecl());
Richard Smithf48fdb02011-12-09 22:58:01 +00002510 if (!FD) return Error(E);
Richard Smith180f4792011-11-10 06:34:14 +00002511 assert(!FD->getType()->isReferenceType() && "prvalue reference?");
2512 assert(BaseTy->getAs<RecordType>()->getDecl()->getCanonicalDecl() ==
2513 FD->getParent()->getCanonicalDecl() && "record / field mismatch");
2514
Richard Smithb4e85ed2012-01-06 16:39:00 +00002515 SubobjectDesignator Designator(BaseTy);
2516 Designator.addDeclUnchecked(FD);
Richard Smith180f4792011-11-10 06:34:14 +00002517
Richard Smithf48fdb02011-12-09 22:58:01 +00002518 return ExtractSubobject(Info, E, Val, BaseTy, Designator, E->getType()) &&
Richard Smith180f4792011-11-10 06:34:14 +00002519 DerivedSuccess(Val, E);
2520 }
2521
Richard Smithc49bd112011-10-28 17:51:58 +00002522 RetTy VisitCastExpr(const CastExpr *E) {
2523 switch (E->getCastKind()) {
2524 default:
2525 break;
2526
David Chisnall7a7ee302012-01-16 17:27:18 +00002527 case CK_AtomicToNonAtomic:
2528 case CK_NonAtomicToAtomic:
Richard Smithc49bd112011-10-28 17:51:58 +00002529 case CK_NoOp:
Richard Smith7d580a42012-01-17 21:17:26 +00002530 case CK_UserDefinedConversion:
Richard Smithc49bd112011-10-28 17:51:58 +00002531 return StmtVisitorTy::Visit(E->getSubExpr());
2532
2533 case CK_LValueToRValue: {
2534 LValue LVal;
Richard Smithf48fdb02011-12-09 22:58:01 +00002535 if (!EvaluateLValue(E->getSubExpr(), LVal, Info))
2536 return false;
2537 CCValue RVal;
2538 if (!HandleLValueToRValueConversion(Info, E, E->getType(), LVal, RVal))
2539 return false;
2540 return DerivedSuccess(RVal, E);
Richard Smithc49bd112011-10-28 17:51:58 +00002541 }
2542 }
2543
Richard Smithf48fdb02011-12-09 22:58:01 +00002544 return Error(E);
Richard Smithc49bd112011-10-28 17:51:58 +00002545 }
2546
Richard Smith8327fad2011-10-24 18:44:57 +00002547 /// Visit a value which is evaluated, but whose value is ignored.
2548 void VisitIgnoredValue(const Expr *E) {
Richard Smith47a1eed2011-10-29 20:57:55 +00002549 CCValue Scratch;
Richard Smith8327fad2011-10-24 18:44:57 +00002550 if (!Evaluate(Scratch, Info, E))
2551 Info.EvalStatus.HasSideEffects = true;
2552 }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002553};
2554
2555}
2556
2557//===----------------------------------------------------------------------===//
Richard Smithe24f5fc2011-11-17 22:56:20 +00002558// Common base class for lvalue and temporary evaluation.
2559//===----------------------------------------------------------------------===//
2560namespace {
2561template<class Derived>
2562class LValueExprEvaluatorBase
2563 : public ExprEvaluatorBase<Derived, bool> {
2564protected:
2565 LValue &Result;
2566 typedef LValueExprEvaluatorBase LValueExprEvaluatorBaseTy;
2567 typedef ExprEvaluatorBase<Derived, bool> ExprEvaluatorBaseTy;
2568
2569 bool Success(APValue::LValueBase B) {
2570 Result.set(B);
2571 return true;
2572 }
2573
2574public:
2575 LValueExprEvaluatorBase(EvalInfo &Info, LValue &Result) :
2576 ExprEvaluatorBaseTy(Info), Result(Result) {}
2577
2578 bool Success(const CCValue &V, const Expr *E) {
2579 Result.setFrom(V);
2580 return true;
2581 }
Richard Smithe24f5fc2011-11-17 22:56:20 +00002582
Richard Smithe24f5fc2011-11-17 22:56:20 +00002583 bool VisitMemberExpr(const MemberExpr *E) {
2584 // Handle non-static data members.
2585 QualType BaseTy;
2586 if (E->isArrow()) {
2587 if (!EvaluatePointer(E->getBase(), Result, this->Info))
2588 return false;
2589 BaseTy = E->getBase()->getType()->getAs<PointerType>()->getPointeeType();
Richard Smithc1c5f272011-12-13 06:39:58 +00002590 } else if (E->getBase()->isRValue()) {
Richard Smithaf2c7a12011-12-19 22:01:37 +00002591 assert(E->getBase()->getType()->isRecordType());
Richard Smithc1c5f272011-12-13 06:39:58 +00002592 if (!EvaluateTemporary(E->getBase(), Result, this->Info))
2593 return false;
2594 BaseTy = E->getBase()->getType();
Richard Smithe24f5fc2011-11-17 22:56:20 +00002595 } else {
2596 if (!this->Visit(E->getBase()))
2597 return false;
2598 BaseTy = E->getBase()->getType();
2599 }
Richard Smithe24f5fc2011-11-17 22:56:20 +00002600
Richard Smithd9b02e72012-01-25 22:15:11 +00002601 const ValueDecl *MD = E->getMemberDecl();
2602 if (const FieldDecl *FD = dyn_cast<FieldDecl>(E->getMemberDecl())) {
2603 assert(BaseTy->getAs<RecordType>()->getDecl()->getCanonicalDecl() ==
2604 FD->getParent()->getCanonicalDecl() && "record / field mismatch");
2605 (void)BaseTy;
2606 HandleLValueMember(this->Info, E, Result, FD);
2607 } else if (const IndirectFieldDecl *IFD = dyn_cast<IndirectFieldDecl>(MD)) {
2608 HandleLValueIndirectMember(this->Info, E, Result, IFD);
2609 } else
2610 return this->Error(E);
Richard Smithe24f5fc2011-11-17 22:56:20 +00002611
Richard Smithd9b02e72012-01-25 22:15:11 +00002612 if (MD->getType()->isReferenceType()) {
Richard Smithe24f5fc2011-11-17 22:56:20 +00002613 CCValue RefValue;
Richard Smithd9b02e72012-01-25 22:15:11 +00002614 if (!HandleLValueToRValueConversion(this->Info, E, MD->getType(), Result,
Richard Smithe24f5fc2011-11-17 22:56:20 +00002615 RefValue))
2616 return false;
2617 return Success(RefValue, E);
2618 }
2619 return true;
2620 }
2621
2622 bool VisitBinaryOperator(const BinaryOperator *E) {
2623 switch (E->getOpcode()) {
2624 default:
2625 return ExprEvaluatorBaseTy::VisitBinaryOperator(E);
2626
2627 case BO_PtrMemD:
2628 case BO_PtrMemI:
2629 return HandleMemberPointerAccess(this->Info, E, Result);
2630 }
2631 }
2632
2633 bool VisitCastExpr(const CastExpr *E) {
2634 switch (E->getCastKind()) {
2635 default:
2636 return ExprEvaluatorBaseTy::VisitCastExpr(E);
2637
2638 case CK_DerivedToBase:
2639 case CK_UncheckedDerivedToBase: {
2640 if (!this->Visit(E->getSubExpr()))
2641 return false;
Richard Smithe24f5fc2011-11-17 22:56:20 +00002642
2643 // Now figure out the necessary offset to add to the base LV to get from
2644 // the derived class to the base class.
2645 QualType Type = E->getSubExpr()->getType();
2646
2647 for (CastExpr::path_const_iterator PathI = E->path_begin(),
2648 PathE = E->path_end(); PathI != PathE; ++PathI) {
Richard Smithb4e85ed2012-01-06 16:39:00 +00002649 if (!HandleLValueBase(this->Info, E, Result, Type->getAsCXXRecordDecl(),
Richard Smithe24f5fc2011-11-17 22:56:20 +00002650 *PathI))
2651 return false;
2652 Type = (*PathI)->getType();
2653 }
2654
2655 return true;
2656 }
2657 }
2658 }
2659};
2660}
2661
2662//===----------------------------------------------------------------------===//
Eli Friedman4efaa272008-11-12 09:44:48 +00002663// LValue Evaluation
Richard Smithc49bd112011-10-28 17:51:58 +00002664//
2665// This is used for evaluating lvalues (in C and C++), xvalues (in C++11),
2666// function designators (in C), decl references to void objects (in C), and
2667// temporaries (if building with -Wno-address-of-temporary).
2668//
2669// LValue evaluation produces values comprising a base expression of one of the
2670// following types:
Richard Smith1bf9a9e2011-11-12 22:28:03 +00002671// - Declarations
2672// * VarDecl
2673// * FunctionDecl
2674// - Literals
Richard Smithc49bd112011-10-28 17:51:58 +00002675// * CompoundLiteralExpr in C
2676// * StringLiteral
Richard Smith47d21452011-12-27 12:18:28 +00002677// * CXXTypeidExpr
Richard Smithc49bd112011-10-28 17:51:58 +00002678// * PredefinedExpr
Richard Smith180f4792011-11-10 06:34:14 +00002679// * ObjCStringLiteralExpr
Richard Smithc49bd112011-10-28 17:51:58 +00002680// * ObjCEncodeExpr
2681// * AddrLabelExpr
2682// * BlockExpr
2683// * CallExpr for a MakeStringConstant builtin
Richard Smith1bf9a9e2011-11-12 22:28:03 +00002684// - Locals and temporaries
2685// * Any Expr, with a Frame indicating the function in which the temporary was
2686// evaluated.
2687// plus an offset in bytes.
Eli Friedman4efaa272008-11-12 09:44:48 +00002688//===----------------------------------------------------------------------===//
2689namespace {
Benjamin Kramer770b4a82009-11-28 19:03:38 +00002690class LValueExprEvaluator
Richard Smithe24f5fc2011-11-17 22:56:20 +00002691 : public LValueExprEvaluatorBase<LValueExprEvaluator> {
Eli Friedman4efaa272008-11-12 09:44:48 +00002692public:
Richard Smithe24f5fc2011-11-17 22:56:20 +00002693 LValueExprEvaluator(EvalInfo &Info, LValue &Result) :
2694 LValueExprEvaluatorBaseTy(Info, Result) {}
Mike Stump1eb44332009-09-09 15:08:12 +00002695
Richard Smithc49bd112011-10-28 17:51:58 +00002696 bool VisitVarDecl(const Expr *E, const VarDecl *VD);
2697
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002698 bool VisitDeclRefExpr(const DeclRefExpr *E);
2699 bool VisitPredefinedExpr(const PredefinedExpr *E) { return Success(E); }
Richard Smithbd552ef2011-10-31 05:52:43 +00002700 bool VisitMaterializeTemporaryExpr(const MaterializeTemporaryExpr *E);
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002701 bool VisitCompoundLiteralExpr(const CompoundLiteralExpr *E);
2702 bool VisitMemberExpr(const MemberExpr *E);
2703 bool VisitStringLiteral(const StringLiteral *E) { return Success(E); }
2704 bool VisitObjCEncodeExpr(const ObjCEncodeExpr *E) { return Success(E); }
Richard Smith47d21452011-12-27 12:18:28 +00002705 bool VisitCXXTypeidExpr(const CXXTypeidExpr *E);
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002706 bool VisitArraySubscriptExpr(const ArraySubscriptExpr *E);
2707 bool VisitUnaryDeref(const UnaryOperator *E);
Anders Carlsson26bc2202009-10-03 16:30:22 +00002708
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002709 bool VisitCastExpr(const CastExpr *E) {
Anders Carlsson26bc2202009-10-03 16:30:22 +00002710 switch (E->getCastKind()) {
2711 default:
Richard Smithe24f5fc2011-11-17 22:56:20 +00002712 return LValueExprEvaluatorBaseTy::VisitCastExpr(E);
Anders Carlsson26bc2202009-10-03 16:30:22 +00002713
Eli Friedmandb924222011-10-11 00:13:24 +00002714 case CK_LValueBitCast:
Richard Smithc216a012011-12-12 12:46:16 +00002715 this->CCEDiag(E, diag::note_constexpr_invalid_cast) << 2;
Richard Smith0a3bdb62011-11-04 02:25:55 +00002716 if (!Visit(E->getSubExpr()))
2717 return false;
2718 Result.Designator.setInvalid();
2719 return true;
Eli Friedmandb924222011-10-11 00:13:24 +00002720
Richard Smithe24f5fc2011-11-17 22:56:20 +00002721 case CK_BaseToDerived:
Richard Smith180f4792011-11-10 06:34:14 +00002722 if (!Visit(E->getSubExpr()))
2723 return false;
Richard Smithe24f5fc2011-11-17 22:56:20 +00002724 return HandleBaseToDerivedCast(Info, E, Result);
Anders Carlsson26bc2202009-10-03 16:30:22 +00002725 }
2726 }
Sebastian Redlcea8d962011-09-24 17:48:14 +00002727
Eli Friedmanba98d6b2009-03-23 04:56:01 +00002728 // FIXME: Missing: __real__, __imag__
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002729
Eli Friedman4efaa272008-11-12 09:44:48 +00002730};
2731} // end anonymous namespace
2732
Richard Smithc49bd112011-10-28 17:51:58 +00002733/// Evaluate an expression as an lvalue. This can be legitimately called on
2734/// expressions which are not glvalues, in a few cases:
2735/// * function designators in C,
2736/// * "extern void" objects,
2737/// * temporaries, if building with -Wno-address-of-temporary.
John McCallefdb83e2010-05-07 21:00:08 +00002738static bool EvaluateLValue(const Expr* E, LValue& Result, EvalInfo &Info) {
Richard Smithc49bd112011-10-28 17:51:58 +00002739 assert((E->isGLValue() || E->getType()->isFunctionType() ||
2740 E->getType()->isVoidType() || isa<CXXTemporaryObjectExpr>(E)) &&
2741 "can't evaluate expression as an lvalue");
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002742 return LValueExprEvaluator(Info, Result).Visit(E);
Eli Friedman4efaa272008-11-12 09:44:48 +00002743}
2744
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002745bool LValueExprEvaluator::VisitDeclRefExpr(const DeclRefExpr *E) {
Richard Smith1bf9a9e2011-11-12 22:28:03 +00002746 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(E->getDecl()))
2747 return Success(FD);
2748 if (const VarDecl *VD = dyn_cast<VarDecl>(E->getDecl()))
Richard Smithc49bd112011-10-28 17:51:58 +00002749 return VisitVarDecl(E, VD);
2750 return Error(E);
2751}
Richard Smith436c8892011-10-24 23:14:33 +00002752
Richard Smithc49bd112011-10-28 17:51:58 +00002753bool LValueExprEvaluator::VisitVarDecl(const Expr *E, const VarDecl *VD) {
Richard Smith177dce72011-11-01 16:57:24 +00002754 if (!VD->getType()->isReferenceType()) {
2755 if (isa<ParmVarDecl>(VD)) {
Richard Smith1bf9a9e2011-11-12 22:28:03 +00002756 Result.set(VD, Info.CurrentCall);
Richard Smith177dce72011-11-01 16:57:24 +00002757 return true;
2758 }
Richard Smith1bf9a9e2011-11-12 22:28:03 +00002759 return Success(VD);
Richard Smith177dce72011-11-01 16:57:24 +00002760 }
Eli Friedman50c39ea2009-05-27 06:04:58 +00002761
Richard Smith47a1eed2011-10-29 20:57:55 +00002762 CCValue V;
Richard Smithf48fdb02011-12-09 22:58:01 +00002763 if (!EvaluateVarDeclInit(Info, E, VD, Info.CurrentCall, V))
2764 return false;
2765 return Success(V, E);
Anders Carlsson35873c42008-11-24 04:41:22 +00002766}
2767
Richard Smithbd552ef2011-10-31 05:52:43 +00002768bool LValueExprEvaluator::VisitMaterializeTemporaryExpr(
2769 const MaterializeTemporaryExpr *E) {
Richard Smithe24f5fc2011-11-17 22:56:20 +00002770 if (E->GetTemporaryExpr()->isRValue()) {
Richard Smithaf2c7a12011-12-19 22:01:37 +00002771 if (E->getType()->isRecordType())
Richard Smithe24f5fc2011-11-17 22:56:20 +00002772 return EvaluateTemporary(E->GetTemporaryExpr(), Result, Info);
2773
2774 Result.set(E, Info.CurrentCall);
2775 return EvaluateConstantExpression(Info.CurrentCall->Temporaries[E], Info,
2776 Result, E->GetTemporaryExpr());
2777 }
2778
2779 // Materialization of an lvalue temporary occurs when we need to force a copy
2780 // (for instance, if it's a bitfield).
2781 // FIXME: The AST should contain an lvalue-to-rvalue node for such cases.
2782 if (!Visit(E->GetTemporaryExpr()))
2783 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00002784 if (!HandleLValueToRValueConversion(Info, E, E->getType(), Result,
Richard Smithe24f5fc2011-11-17 22:56:20 +00002785 Info.CurrentCall->Temporaries[E]))
2786 return false;
Richard Smith1bf9a9e2011-11-12 22:28:03 +00002787 Result.set(E, Info.CurrentCall);
Richard Smithe24f5fc2011-11-17 22:56:20 +00002788 return true;
Richard Smithbd552ef2011-10-31 05:52:43 +00002789}
2790
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002791bool
2792LValueExprEvaluator::VisitCompoundLiteralExpr(const CompoundLiteralExpr *E) {
Richard Smithc49bd112011-10-28 17:51:58 +00002793 assert(!Info.getLangOpts().CPlusPlus && "lvalue compound literal in c++?");
2794 // Defer visiting the literal until the lvalue-to-rvalue conversion. We can
2795 // only see this when folding in C, so there's no standard to follow here.
John McCallefdb83e2010-05-07 21:00:08 +00002796 return Success(E);
Eli Friedman4efaa272008-11-12 09:44:48 +00002797}
2798
Richard Smith47d21452011-12-27 12:18:28 +00002799bool LValueExprEvaluator::VisitCXXTypeidExpr(const CXXTypeidExpr *E) {
2800 if (E->isTypeOperand())
2801 return Success(E);
2802 CXXRecordDecl *RD = E->getExprOperand()->getType()->getAsCXXRecordDecl();
2803 if (RD && RD->isPolymorphic()) {
2804 Info.Diag(E->getExprLoc(), diag::note_constexpr_typeid_polymorphic)
2805 << E->getExprOperand()->getType()
2806 << E->getExprOperand()->getSourceRange();
2807 return false;
2808 }
2809 return Success(E);
2810}
2811
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002812bool LValueExprEvaluator::VisitMemberExpr(const MemberExpr *E) {
Richard Smithc49bd112011-10-28 17:51:58 +00002813 // Handle static data members.
2814 if (const VarDecl *VD = dyn_cast<VarDecl>(E->getMemberDecl())) {
2815 VisitIgnoredValue(E->getBase());
2816 return VisitVarDecl(E, VD);
2817 }
2818
Richard Smithd0dccea2011-10-28 22:34:42 +00002819 // Handle static member functions.
2820 if (const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(E->getMemberDecl())) {
2821 if (MD->isStatic()) {
2822 VisitIgnoredValue(E->getBase());
Richard Smith1bf9a9e2011-11-12 22:28:03 +00002823 return Success(MD);
Richard Smithd0dccea2011-10-28 22:34:42 +00002824 }
2825 }
2826
Richard Smith180f4792011-11-10 06:34:14 +00002827 // Handle non-static data members.
Richard Smithe24f5fc2011-11-17 22:56:20 +00002828 return LValueExprEvaluatorBaseTy::VisitMemberExpr(E);
Eli Friedman4efaa272008-11-12 09:44:48 +00002829}
2830
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002831bool LValueExprEvaluator::VisitArraySubscriptExpr(const ArraySubscriptExpr *E) {
Richard Smithc49bd112011-10-28 17:51:58 +00002832 // FIXME: Deal with vectors as array subscript bases.
2833 if (E->getBase()->getType()->isVectorType())
Richard Smithf48fdb02011-12-09 22:58:01 +00002834 return Error(E);
Richard Smithc49bd112011-10-28 17:51:58 +00002835
Anders Carlsson3068d112008-11-16 19:01:22 +00002836 if (!EvaluatePointer(E->getBase(), Result, Info))
John McCallefdb83e2010-05-07 21:00:08 +00002837 return false;
Mike Stump1eb44332009-09-09 15:08:12 +00002838
Anders Carlsson3068d112008-11-16 19:01:22 +00002839 APSInt Index;
2840 if (!EvaluateInteger(E->getIdx(), Index, Info))
John McCallefdb83e2010-05-07 21:00:08 +00002841 return false;
Richard Smith180f4792011-11-10 06:34:14 +00002842 int64_t IndexValue
2843 = Index.isSigned() ? Index.getSExtValue()
2844 : static_cast<int64_t>(Index.getZExtValue());
Anders Carlsson3068d112008-11-16 19:01:22 +00002845
Richard Smithb4e85ed2012-01-06 16:39:00 +00002846 return HandleLValueArrayAdjustment(Info, E, Result, E->getType(), IndexValue);
Anders Carlsson3068d112008-11-16 19:01:22 +00002847}
Eli Friedman4efaa272008-11-12 09:44:48 +00002848
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002849bool LValueExprEvaluator::VisitUnaryDeref(const UnaryOperator *E) {
John McCallefdb83e2010-05-07 21:00:08 +00002850 return EvaluatePointer(E->getSubExpr(), Result, Info);
Eli Friedmane8761c82009-02-20 01:57:15 +00002851}
2852
Eli Friedman4efaa272008-11-12 09:44:48 +00002853//===----------------------------------------------------------------------===//
Chris Lattnerf5eeb052008-07-11 18:11:29 +00002854// Pointer Evaluation
2855//===----------------------------------------------------------------------===//
2856
Anders Carlssonc754aa62008-07-08 05:13:58 +00002857namespace {
Benjamin Kramer770b4a82009-11-28 19:03:38 +00002858class PointerExprEvaluator
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002859 : public ExprEvaluatorBase<PointerExprEvaluator, bool> {
John McCallefdb83e2010-05-07 21:00:08 +00002860 LValue &Result;
2861
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002862 bool Success(const Expr *E) {
Richard Smith1bf9a9e2011-11-12 22:28:03 +00002863 Result.set(E);
John McCallefdb83e2010-05-07 21:00:08 +00002864 return true;
2865 }
Anders Carlsson2bad1682008-07-08 14:30:00 +00002866public:
Mike Stump1eb44332009-09-09 15:08:12 +00002867
John McCallefdb83e2010-05-07 21:00:08 +00002868 PointerExprEvaluator(EvalInfo &info, LValue &Result)
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002869 : ExprEvaluatorBaseTy(info), Result(Result) {}
Chris Lattnerf5eeb052008-07-11 18:11:29 +00002870
Richard Smith47a1eed2011-10-29 20:57:55 +00002871 bool Success(const CCValue &V, const Expr *E) {
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002872 Result.setFrom(V);
2873 return true;
2874 }
Richard Smith51201882011-12-30 21:15:51 +00002875 bool ZeroInitialization(const Expr *E) {
Richard Smithf10d9172011-10-11 21:43:33 +00002876 return Success((Expr*)0);
2877 }
Anders Carlsson2bad1682008-07-08 14:30:00 +00002878
John McCallefdb83e2010-05-07 21:00:08 +00002879 bool VisitBinaryOperator(const BinaryOperator *E);
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002880 bool VisitCastExpr(const CastExpr* E);
John McCallefdb83e2010-05-07 21:00:08 +00002881 bool VisitUnaryAddrOf(const UnaryOperator *E);
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002882 bool VisitObjCStringLiteral(const ObjCStringLiteral *E)
John McCallefdb83e2010-05-07 21:00:08 +00002883 { return Success(E); }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002884 bool VisitAddrLabelExpr(const AddrLabelExpr *E)
John McCallefdb83e2010-05-07 21:00:08 +00002885 { return Success(E); }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002886 bool VisitCallExpr(const CallExpr *E);
2887 bool VisitBlockExpr(const BlockExpr *E) {
John McCall469a1eb2011-02-02 13:00:07 +00002888 if (!E->getBlockDecl()->hasCaptures())
John McCallefdb83e2010-05-07 21:00:08 +00002889 return Success(E);
Richard Smithf48fdb02011-12-09 22:58:01 +00002890 return Error(E);
Mike Stumpb83d2872009-02-19 22:01:56 +00002891 }
Richard Smith180f4792011-11-10 06:34:14 +00002892 bool VisitCXXThisExpr(const CXXThisExpr *E) {
2893 if (!Info.CurrentCall->This)
Richard Smithf48fdb02011-12-09 22:58:01 +00002894 return Error(E);
Richard Smith180f4792011-11-10 06:34:14 +00002895 Result = *Info.CurrentCall->This;
2896 return true;
2897 }
John McCall56ca35d2011-02-17 10:25:35 +00002898
Eli Friedmanba98d6b2009-03-23 04:56:01 +00002899 // FIXME: Missing: @protocol, @selector
Anders Carlsson650c92f2008-07-08 15:34:11 +00002900};
Chris Lattnerf5eeb052008-07-11 18:11:29 +00002901} // end anonymous namespace
Anders Carlsson650c92f2008-07-08 15:34:11 +00002902
John McCallefdb83e2010-05-07 21:00:08 +00002903static bool EvaluatePointer(const Expr* E, LValue& Result, EvalInfo &Info) {
Richard Smithc49bd112011-10-28 17:51:58 +00002904 assert(E->isRValue() && E->getType()->hasPointerRepresentation());
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002905 return PointerExprEvaluator(Info, Result).Visit(E);
Chris Lattnerf5eeb052008-07-11 18:11:29 +00002906}
2907
John McCallefdb83e2010-05-07 21:00:08 +00002908bool PointerExprEvaluator::VisitBinaryOperator(const BinaryOperator *E) {
John McCall2de56d12010-08-25 11:45:40 +00002909 if (E->getOpcode() != BO_Add &&
2910 E->getOpcode() != BO_Sub)
Richard Smithe24f5fc2011-11-17 22:56:20 +00002911 return ExprEvaluatorBaseTy::VisitBinaryOperator(E);
Mike Stump1eb44332009-09-09 15:08:12 +00002912
Chris Lattnerf5eeb052008-07-11 18:11:29 +00002913 const Expr *PExp = E->getLHS();
2914 const Expr *IExp = E->getRHS();
2915 if (IExp->getType()->isPointerType())
2916 std::swap(PExp, IExp);
Mike Stump1eb44332009-09-09 15:08:12 +00002917
Richard Smith745f5142012-01-27 01:14:48 +00002918 bool EvalPtrOK = EvaluatePointer(PExp, Result, Info);
2919 if (!EvalPtrOK && !Info.keepEvaluatingAfterFailure())
John McCallefdb83e2010-05-07 21:00:08 +00002920 return false;
Mike Stump1eb44332009-09-09 15:08:12 +00002921
John McCallefdb83e2010-05-07 21:00:08 +00002922 llvm::APSInt Offset;
Richard Smith745f5142012-01-27 01:14:48 +00002923 if (!EvaluateInteger(IExp, Offset, Info) || !EvalPtrOK)
John McCallefdb83e2010-05-07 21:00:08 +00002924 return false;
2925 int64_t AdditionalOffset
2926 = Offset.isSigned() ? Offset.getSExtValue()
2927 : static_cast<int64_t>(Offset.getZExtValue());
Richard Smith0a3bdb62011-11-04 02:25:55 +00002928 if (E->getOpcode() == BO_Sub)
2929 AdditionalOffset = -AdditionalOffset;
Chris Lattnerf5eeb052008-07-11 18:11:29 +00002930
Richard Smith180f4792011-11-10 06:34:14 +00002931 QualType Pointee = PExp->getType()->getAs<PointerType>()->getPointeeType();
Richard Smithb4e85ed2012-01-06 16:39:00 +00002932 return HandleLValueArrayAdjustment(Info, E, Result, Pointee,
2933 AdditionalOffset);
Chris Lattnerf5eeb052008-07-11 18:11:29 +00002934}
Eli Friedman4efaa272008-11-12 09:44:48 +00002935
John McCallefdb83e2010-05-07 21:00:08 +00002936bool PointerExprEvaluator::VisitUnaryAddrOf(const UnaryOperator *E) {
2937 return EvaluateLValue(E->getSubExpr(), Result, Info);
Eli Friedman4efaa272008-11-12 09:44:48 +00002938}
Mike Stump1eb44332009-09-09 15:08:12 +00002939
Peter Collingbourne8cad3042011-05-13 03:29:01 +00002940bool PointerExprEvaluator::VisitCastExpr(const CastExpr* E) {
2941 const Expr* SubExpr = E->getSubExpr();
Chris Lattnerf5eeb052008-07-11 18:11:29 +00002942
Eli Friedman09a8a0e2009-12-27 05:43:15 +00002943 switch (E->getCastKind()) {
2944 default:
2945 break;
2946
John McCall2de56d12010-08-25 11:45:40 +00002947 case CK_BitCast:
John McCall1d9b3b22011-09-09 05:25:32 +00002948 case CK_CPointerToObjCPointerCast:
2949 case CK_BlockPointerToObjCPointerCast:
John McCall2de56d12010-08-25 11:45:40 +00002950 case CK_AnyPointerToBlockPointerCast:
Richard Smith28c1ce72012-01-15 03:25:41 +00002951 if (!Visit(SubExpr))
2952 return false;
Richard Smithc216a012011-12-12 12:46:16 +00002953 // Bitcasts to cv void* are static_casts, not reinterpret_casts, so are
2954 // permitted in constant expressions in C++11. Bitcasts from cv void* are
2955 // also static_casts, but we disallow them as a resolution to DR1312.
Richard Smith4cd9b8f2011-12-12 19:10:03 +00002956 if (!E->getType()->isVoidPointerType()) {
Richard Smith28c1ce72012-01-15 03:25:41 +00002957 Result.Designator.setInvalid();
Richard Smith4cd9b8f2011-12-12 19:10:03 +00002958 if (SubExpr->getType()->isVoidPointerType())
2959 CCEDiag(E, diag::note_constexpr_invalid_cast)
2960 << 3 << SubExpr->getType();
2961 else
2962 CCEDiag(E, diag::note_constexpr_invalid_cast) << 2;
2963 }
Richard Smith0a3bdb62011-11-04 02:25:55 +00002964 return true;
Eli Friedman09a8a0e2009-12-27 05:43:15 +00002965
Anders Carlsson5c5a7642010-10-31 20:41:46 +00002966 case CK_DerivedToBase:
2967 case CK_UncheckedDerivedToBase: {
Richard Smith47a1eed2011-10-29 20:57:55 +00002968 if (!EvaluatePointer(E->getSubExpr(), Result, Info))
Anders Carlsson5c5a7642010-10-31 20:41:46 +00002969 return false;
Richard Smithe24f5fc2011-11-17 22:56:20 +00002970 if (!Result.Base && Result.Offset.isZero())
2971 return true;
Anders Carlsson5c5a7642010-10-31 20:41:46 +00002972
Richard Smith180f4792011-11-10 06:34:14 +00002973 // Now figure out the necessary offset to add to the base LV to get from
Anders Carlsson5c5a7642010-10-31 20:41:46 +00002974 // the derived class to the base class.
Richard Smith180f4792011-11-10 06:34:14 +00002975 QualType Type =
2976 E->getSubExpr()->getType()->castAs<PointerType>()->getPointeeType();
Anders Carlsson5c5a7642010-10-31 20:41:46 +00002977
Richard Smith180f4792011-11-10 06:34:14 +00002978 for (CastExpr::path_const_iterator PathI = E->path_begin(),
Anders Carlsson5c5a7642010-10-31 20:41:46 +00002979 PathE = E->path_end(); PathI != PathE; ++PathI) {
Richard Smithb4e85ed2012-01-06 16:39:00 +00002980 if (!HandleLValueBase(Info, E, Result, Type->getAsCXXRecordDecl(),
2981 *PathI))
Anders Carlsson5c5a7642010-10-31 20:41:46 +00002982 return false;
Richard Smith180f4792011-11-10 06:34:14 +00002983 Type = (*PathI)->getType();
Anders Carlsson5c5a7642010-10-31 20:41:46 +00002984 }
2985
Anders Carlsson5c5a7642010-10-31 20:41:46 +00002986 return true;
2987 }
2988
Richard Smithe24f5fc2011-11-17 22:56:20 +00002989 case CK_BaseToDerived:
2990 if (!Visit(E->getSubExpr()))
2991 return false;
2992 if (!Result.Base && Result.Offset.isZero())
2993 return true;
2994 return HandleBaseToDerivedCast(Info, E, Result);
2995
Richard Smith47a1eed2011-10-29 20:57:55 +00002996 case CK_NullToPointer:
Richard Smith51201882011-12-30 21:15:51 +00002997 return ZeroInitialization(E);
John McCall404cd162010-11-13 01:35:44 +00002998
John McCall2de56d12010-08-25 11:45:40 +00002999 case CK_IntegralToPointer: {
Richard Smithc216a012011-12-12 12:46:16 +00003000 CCEDiag(E, diag::note_constexpr_invalid_cast) << 2;
3001
Richard Smith47a1eed2011-10-29 20:57:55 +00003002 CCValue Value;
John McCallefdb83e2010-05-07 21:00:08 +00003003 if (!EvaluateIntegerOrLValue(SubExpr, Value, Info))
Eli Friedman09a8a0e2009-12-27 05:43:15 +00003004 break;
Daniel Dunbar69ab26a2009-02-20 18:22:23 +00003005
John McCallefdb83e2010-05-07 21:00:08 +00003006 if (Value.isInt()) {
Richard Smith47a1eed2011-10-29 20:57:55 +00003007 unsigned Size = Info.Ctx.getTypeSize(E->getType());
3008 uint64_t N = Value.getInt().extOrTrunc(Size).getZExtValue();
Richard Smith1bf9a9e2011-11-12 22:28:03 +00003009 Result.Base = (Expr*)0;
Richard Smith47a1eed2011-10-29 20:57:55 +00003010 Result.Offset = CharUnits::fromQuantity(N);
Richard Smith177dce72011-11-01 16:57:24 +00003011 Result.Frame = 0;
Richard Smith0a3bdb62011-11-04 02:25:55 +00003012 Result.Designator.setInvalid();
John McCallefdb83e2010-05-07 21:00:08 +00003013 return true;
3014 } else {
3015 // Cast is of an lvalue, no need to change value.
Richard Smith47a1eed2011-10-29 20:57:55 +00003016 Result.setFrom(Value);
John McCallefdb83e2010-05-07 21:00:08 +00003017 return true;
Chris Lattnerf5eeb052008-07-11 18:11:29 +00003018 }
3019 }
John McCall2de56d12010-08-25 11:45:40 +00003020 case CK_ArrayToPointerDecay:
Richard Smithe24f5fc2011-11-17 22:56:20 +00003021 if (SubExpr->isGLValue()) {
3022 if (!EvaluateLValue(SubExpr, Result, Info))
3023 return false;
3024 } else {
3025 Result.set(SubExpr, Info.CurrentCall);
3026 if (!EvaluateConstantExpression(Info.CurrentCall->Temporaries[SubExpr],
3027 Info, Result, SubExpr))
3028 return false;
3029 }
Richard Smith0a3bdb62011-11-04 02:25:55 +00003030 // The result is a pointer to the first element of the array.
Richard Smithb4e85ed2012-01-06 16:39:00 +00003031 if (const ConstantArrayType *CAT
3032 = Info.Ctx.getAsConstantArrayType(SubExpr->getType()))
3033 Result.addArray(Info, E, CAT);
3034 else
3035 Result.Designator.setInvalid();
Richard Smith0a3bdb62011-11-04 02:25:55 +00003036 return true;
Richard Smith6a7c94a2011-10-31 20:57:44 +00003037
John McCall2de56d12010-08-25 11:45:40 +00003038 case CK_FunctionToPointerDecay:
Richard Smith6a7c94a2011-10-31 20:57:44 +00003039 return EvaluateLValue(SubExpr, Result, Info);
Eli Friedman4efaa272008-11-12 09:44:48 +00003040 }
3041
Richard Smithc49bd112011-10-28 17:51:58 +00003042 return ExprEvaluatorBaseTy::VisitCastExpr(E);
Mike Stump1eb44332009-09-09 15:08:12 +00003043}
Chris Lattnerf5eeb052008-07-11 18:11:29 +00003044
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003045bool PointerExprEvaluator::VisitCallExpr(const CallExpr *E) {
Richard Smith180f4792011-11-10 06:34:14 +00003046 if (IsStringLiteralCall(E))
John McCallefdb83e2010-05-07 21:00:08 +00003047 return Success(E);
Eli Friedman3941b182009-01-25 01:54:01 +00003048
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003049 return ExprEvaluatorBaseTy::VisitCallExpr(E);
Eli Friedman4efaa272008-11-12 09:44:48 +00003050}
Chris Lattnerf5eeb052008-07-11 18:11:29 +00003051
3052//===----------------------------------------------------------------------===//
Richard Smithe24f5fc2011-11-17 22:56:20 +00003053// Member Pointer Evaluation
3054//===----------------------------------------------------------------------===//
3055
3056namespace {
3057class MemberPointerExprEvaluator
3058 : public ExprEvaluatorBase<MemberPointerExprEvaluator, bool> {
3059 MemberPtr &Result;
3060
3061 bool Success(const ValueDecl *D) {
3062 Result = MemberPtr(D);
3063 return true;
3064 }
3065public:
3066
3067 MemberPointerExprEvaluator(EvalInfo &Info, MemberPtr &Result)
3068 : ExprEvaluatorBaseTy(Info), Result(Result) {}
3069
3070 bool Success(const CCValue &V, const Expr *E) {
3071 Result.setFrom(V);
3072 return true;
3073 }
Richard Smith51201882011-12-30 21:15:51 +00003074 bool ZeroInitialization(const Expr *E) {
Richard Smithe24f5fc2011-11-17 22:56:20 +00003075 return Success((const ValueDecl*)0);
3076 }
3077
3078 bool VisitCastExpr(const CastExpr *E);
3079 bool VisitUnaryAddrOf(const UnaryOperator *E);
3080};
3081} // end anonymous namespace
3082
3083static bool EvaluateMemberPointer(const Expr *E, MemberPtr &Result,
3084 EvalInfo &Info) {
3085 assert(E->isRValue() && E->getType()->isMemberPointerType());
3086 return MemberPointerExprEvaluator(Info, Result).Visit(E);
3087}
3088
3089bool MemberPointerExprEvaluator::VisitCastExpr(const CastExpr *E) {
3090 switch (E->getCastKind()) {
3091 default:
3092 return ExprEvaluatorBaseTy::VisitCastExpr(E);
3093
3094 case CK_NullToMemberPointer:
Richard Smith51201882011-12-30 21:15:51 +00003095 return ZeroInitialization(E);
Richard Smithe24f5fc2011-11-17 22:56:20 +00003096
3097 case CK_BaseToDerivedMemberPointer: {
3098 if (!Visit(E->getSubExpr()))
3099 return false;
3100 if (E->path_empty())
3101 return true;
3102 // Base-to-derived member pointer casts store the path in derived-to-base
3103 // order, so iterate backwards. The CXXBaseSpecifier also provides us with
3104 // the wrong end of the derived->base arc, so stagger the path by one class.
3105 typedef std::reverse_iterator<CastExpr::path_const_iterator> ReverseIter;
3106 for (ReverseIter PathI(E->path_end() - 1), PathE(E->path_begin());
3107 PathI != PathE; ++PathI) {
3108 assert(!(*PathI)->isVirtual() && "memptr cast through vbase");
3109 const CXXRecordDecl *Derived = (*PathI)->getType()->getAsCXXRecordDecl();
3110 if (!Result.castToDerived(Derived))
Richard Smithf48fdb02011-12-09 22:58:01 +00003111 return Error(E);
Richard Smithe24f5fc2011-11-17 22:56:20 +00003112 }
3113 const Type *FinalTy = E->getType()->castAs<MemberPointerType>()->getClass();
3114 if (!Result.castToDerived(FinalTy->getAsCXXRecordDecl()))
Richard Smithf48fdb02011-12-09 22:58:01 +00003115 return Error(E);
Richard Smithe24f5fc2011-11-17 22:56:20 +00003116 return true;
3117 }
3118
3119 case CK_DerivedToBaseMemberPointer:
3120 if (!Visit(E->getSubExpr()))
3121 return false;
3122 for (CastExpr::path_const_iterator PathI = E->path_begin(),
3123 PathE = E->path_end(); PathI != PathE; ++PathI) {
3124 assert(!(*PathI)->isVirtual() && "memptr cast through vbase");
3125 const CXXRecordDecl *Base = (*PathI)->getType()->getAsCXXRecordDecl();
3126 if (!Result.castToBase(Base))
Richard Smithf48fdb02011-12-09 22:58:01 +00003127 return Error(E);
Richard Smithe24f5fc2011-11-17 22:56:20 +00003128 }
3129 return true;
3130 }
3131}
3132
3133bool MemberPointerExprEvaluator::VisitUnaryAddrOf(const UnaryOperator *E) {
3134 // C++11 [expr.unary.op]p3 has very strict rules on how the address of a
3135 // member can be formed.
3136 return Success(cast<DeclRefExpr>(E->getSubExpr())->getDecl());
3137}
3138
3139//===----------------------------------------------------------------------===//
Richard Smith180f4792011-11-10 06:34:14 +00003140// Record Evaluation
3141//===----------------------------------------------------------------------===//
3142
3143namespace {
3144 class RecordExprEvaluator
3145 : public ExprEvaluatorBase<RecordExprEvaluator, bool> {
3146 const LValue &This;
3147 APValue &Result;
3148 public:
3149
3150 RecordExprEvaluator(EvalInfo &info, const LValue &This, APValue &Result)
3151 : ExprEvaluatorBaseTy(info), This(This), Result(Result) {}
3152
3153 bool Success(const CCValue &V, const Expr *E) {
Richard Smithf48fdb02011-12-09 22:58:01 +00003154 return CheckConstantExpression(Info, E, V, Result);
Richard Smith180f4792011-11-10 06:34:14 +00003155 }
Richard Smith51201882011-12-30 21:15:51 +00003156 bool ZeroInitialization(const Expr *E);
Richard Smith180f4792011-11-10 06:34:14 +00003157
Richard Smith59efe262011-11-11 04:05:33 +00003158 bool VisitCastExpr(const CastExpr *E);
Richard Smith180f4792011-11-10 06:34:14 +00003159 bool VisitInitListExpr(const InitListExpr *E);
3160 bool VisitCXXConstructExpr(const CXXConstructExpr *E);
3161 };
3162}
3163
Richard Smith51201882011-12-30 21:15:51 +00003164/// Perform zero-initialization on an object of non-union class type.
3165/// C++11 [dcl.init]p5:
3166/// To zero-initialize an object or reference of type T means:
3167/// [...]
3168/// -- if T is a (possibly cv-qualified) non-union class type,
3169/// each non-static data member and each base-class subobject is
3170/// zero-initialized
Richard Smithb4e85ed2012-01-06 16:39:00 +00003171static bool HandleClassZeroInitialization(EvalInfo &Info, const Expr *E,
3172 const RecordDecl *RD,
Richard Smith51201882011-12-30 21:15:51 +00003173 const LValue &This, APValue &Result) {
3174 assert(!RD->isUnion() && "Expected non-union class type");
3175 const CXXRecordDecl *CD = dyn_cast<CXXRecordDecl>(RD);
3176 Result = APValue(APValue::UninitStruct(), CD ? CD->getNumBases() : 0,
3177 std::distance(RD->field_begin(), RD->field_end()));
3178
3179 const ASTRecordLayout &Layout = Info.Ctx.getASTRecordLayout(RD);
3180
3181 if (CD) {
3182 unsigned Index = 0;
3183 for (CXXRecordDecl::base_class_const_iterator I = CD->bases_begin(),
Richard Smithb4e85ed2012-01-06 16:39:00 +00003184 End = CD->bases_end(); I != End; ++I, ++Index) {
Richard Smith51201882011-12-30 21:15:51 +00003185 const CXXRecordDecl *Base = I->getType()->getAsCXXRecordDecl();
3186 LValue Subobject = This;
Richard Smithb4e85ed2012-01-06 16:39:00 +00003187 HandleLValueDirectBase(Info, E, Subobject, CD, Base, &Layout);
3188 if (!HandleClassZeroInitialization(Info, E, Base, Subobject,
Richard Smith51201882011-12-30 21:15:51 +00003189 Result.getStructBase(Index)))
3190 return false;
3191 }
3192 }
3193
Richard Smithb4e85ed2012-01-06 16:39:00 +00003194 for (RecordDecl::field_iterator I = RD->field_begin(), End = RD->field_end();
3195 I != End; ++I) {
Richard Smith51201882011-12-30 21:15:51 +00003196 // -- if T is a reference type, no initialization is performed.
3197 if ((*I)->getType()->isReferenceType())
3198 continue;
3199
3200 LValue Subobject = This;
Richard Smithb4e85ed2012-01-06 16:39:00 +00003201 HandleLValueMember(Info, E, Subobject, *I, &Layout);
Richard Smith51201882011-12-30 21:15:51 +00003202
3203 ImplicitValueInitExpr VIE((*I)->getType());
3204 if (!EvaluateConstantExpression(
3205 Result.getStructField((*I)->getFieldIndex()), Info, Subobject, &VIE))
3206 return false;
3207 }
3208
3209 return true;
3210}
3211
3212bool RecordExprEvaluator::ZeroInitialization(const Expr *E) {
3213 const RecordDecl *RD = E->getType()->castAs<RecordType>()->getDecl();
3214 if (RD->isUnion()) {
3215 // C++11 [dcl.init]p5: If T is a (possibly cv-qualified) union type, the
3216 // object's first non-static named data member is zero-initialized
3217 RecordDecl::field_iterator I = RD->field_begin();
3218 if (I == RD->field_end()) {
3219 Result = APValue((const FieldDecl*)0);
3220 return true;
3221 }
3222
3223 LValue Subobject = This;
Richard Smithb4e85ed2012-01-06 16:39:00 +00003224 HandleLValueMember(Info, E, Subobject, *I);
Richard Smith51201882011-12-30 21:15:51 +00003225 Result = APValue(*I);
3226 ImplicitValueInitExpr VIE((*I)->getType());
3227 return EvaluateConstantExpression(Result.getUnionValue(), Info,
3228 Subobject, &VIE);
3229 }
3230
Richard Smithb4e85ed2012-01-06 16:39:00 +00003231 return HandleClassZeroInitialization(Info, E, RD, This, Result);
Richard Smith51201882011-12-30 21:15:51 +00003232}
3233
Richard Smith59efe262011-11-11 04:05:33 +00003234bool RecordExprEvaluator::VisitCastExpr(const CastExpr *E) {
3235 switch (E->getCastKind()) {
3236 default:
3237 return ExprEvaluatorBaseTy::VisitCastExpr(E);
3238
3239 case CK_ConstructorConversion:
3240 return Visit(E->getSubExpr());
3241
3242 case CK_DerivedToBase:
3243 case CK_UncheckedDerivedToBase: {
3244 CCValue DerivedObject;
Richard Smithf48fdb02011-12-09 22:58:01 +00003245 if (!Evaluate(DerivedObject, Info, E->getSubExpr()))
Richard Smith59efe262011-11-11 04:05:33 +00003246 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00003247 if (!DerivedObject.isStruct())
3248 return Error(E->getSubExpr());
Richard Smith59efe262011-11-11 04:05:33 +00003249
3250 // Derived-to-base rvalue conversion: just slice off the derived part.
3251 APValue *Value = &DerivedObject;
3252 const CXXRecordDecl *RD = E->getSubExpr()->getType()->getAsCXXRecordDecl();
3253 for (CastExpr::path_const_iterator PathI = E->path_begin(),
3254 PathE = E->path_end(); PathI != PathE; ++PathI) {
3255 assert(!(*PathI)->isVirtual() && "record rvalue with virtual base");
3256 const CXXRecordDecl *Base = (*PathI)->getType()->getAsCXXRecordDecl();
3257 Value = &Value->getStructBase(getBaseIndex(RD, Base));
3258 RD = Base;
3259 }
3260 Result = *Value;
3261 return true;
3262 }
3263 }
3264}
3265
Richard Smith180f4792011-11-10 06:34:14 +00003266bool RecordExprEvaluator::VisitInitListExpr(const InitListExpr *E) {
3267 const RecordDecl *RD = E->getType()->castAs<RecordType>()->getDecl();
3268 const ASTRecordLayout &Layout = Info.Ctx.getASTRecordLayout(RD);
3269
3270 if (RD->isUnion()) {
Richard Smithec789162012-01-12 18:54:33 +00003271 const FieldDecl *Field = E->getInitializedFieldInUnion();
3272 Result = APValue(Field);
3273 if (!Field)
Richard Smith180f4792011-11-10 06:34:14 +00003274 return true;
Richard Smithec789162012-01-12 18:54:33 +00003275
3276 // If the initializer list for a union does not contain any elements, the
3277 // first element of the union is value-initialized.
3278 ImplicitValueInitExpr VIE(Field->getType());
3279 const Expr *InitExpr = E->getNumInits() ? E->getInit(0) : &VIE;
3280
Richard Smith180f4792011-11-10 06:34:14 +00003281 LValue Subobject = This;
Richard Smithec789162012-01-12 18:54:33 +00003282 HandleLValueMember(Info, InitExpr, Subobject, Field, &Layout);
Richard Smith180f4792011-11-10 06:34:14 +00003283 return EvaluateConstantExpression(Result.getUnionValue(), Info,
Richard Smithec789162012-01-12 18:54:33 +00003284 Subobject, InitExpr);
Richard Smith180f4792011-11-10 06:34:14 +00003285 }
3286
3287 assert((!isa<CXXRecordDecl>(RD) || !cast<CXXRecordDecl>(RD)->getNumBases()) &&
3288 "initializer list for class with base classes");
3289 Result = APValue(APValue::UninitStruct(), 0,
3290 std::distance(RD->field_begin(), RD->field_end()));
3291 unsigned ElementNo = 0;
Richard Smith745f5142012-01-27 01:14:48 +00003292 bool Success = true;
Richard Smith180f4792011-11-10 06:34:14 +00003293 for (RecordDecl::field_iterator Field = RD->field_begin(),
3294 FieldEnd = RD->field_end(); Field != FieldEnd; ++Field) {
3295 // Anonymous bit-fields are not considered members of the class for
3296 // purposes of aggregate initialization.
3297 if (Field->isUnnamedBitfield())
3298 continue;
3299
3300 LValue Subobject = This;
Richard Smith180f4792011-11-10 06:34:14 +00003301
Richard Smith745f5142012-01-27 01:14:48 +00003302 bool HaveInit = ElementNo < E->getNumInits();
3303
3304 // FIXME: Diagnostics here should point to the end of the initializer
3305 // list, not the start.
3306 HandleLValueMember(Info, HaveInit ? E->getInit(ElementNo) : E, Subobject,
3307 *Field, &Layout);
3308
3309 // Perform an implicit value-initialization for members beyond the end of
3310 // the initializer list.
3311 ImplicitValueInitExpr VIE(HaveInit ? Info.Ctx.IntTy : Field->getType());
3312
3313 if (!EvaluateConstantExpression(
3314 Result.getStructField((*Field)->getFieldIndex()),
3315 Info, Subobject, HaveInit ? E->getInit(ElementNo++) : &VIE)) {
3316 if (!Info.keepEvaluatingAfterFailure())
Richard Smith180f4792011-11-10 06:34:14 +00003317 return false;
Richard Smith745f5142012-01-27 01:14:48 +00003318 Success = false;
Richard Smith180f4792011-11-10 06:34:14 +00003319 }
3320 }
3321
Richard Smith745f5142012-01-27 01:14:48 +00003322 return Success;
Richard Smith180f4792011-11-10 06:34:14 +00003323}
3324
3325bool RecordExprEvaluator::VisitCXXConstructExpr(const CXXConstructExpr *E) {
3326 const CXXConstructorDecl *FD = E->getConstructor();
Richard Smith51201882011-12-30 21:15:51 +00003327 bool ZeroInit = E->requiresZeroInitialization();
3328 if (CheckTrivialDefaultConstructor(Info, E->getExprLoc(), FD, ZeroInit)) {
Richard Smithec789162012-01-12 18:54:33 +00003329 // If we've already performed zero-initialization, we're already done.
3330 if (!Result.isUninit())
3331 return true;
3332
Richard Smith51201882011-12-30 21:15:51 +00003333 if (ZeroInit)
3334 return ZeroInitialization(E);
3335
Richard Smith61802452011-12-22 02:22:31 +00003336 const CXXRecordDecl *RD = FD->getParent();
3337 if (RD->isUnion())
3338 Result = APValue((FieldDecl*)0);
3339 else
3340 Result = APValue(APValue::UninitStruct(), RD->getNumBases(),
3341 std::distance(RD->field_begin(), RD->field_end()));
3342 return true;
3343 }
3344
Richard Smith180f4792011-11-10 06:34:14 +00003345 const FunctionDecl *Definition = 0;
3346 FD->getBody(Definition);
3347
Richard Smithc1c5f272011-12-13 06:39:58 +00003348 if (!CheckConstexprFunction(Info, E->getExprLoc(), FD, Definition))
3349 return false;
Richard Smith180f4792011-11-10 06:34:14 +00003350
Richard Smith610a60c2012-01-10 04:32:03 +00003351 // Avoid materializing a temporary for an elidable copy/move constructor.
Richard Smith51201882011-12-30 21:15:51 +00003352 if (E->isElidable() && !ZeroInit)
Richard Smith180f4792011-11-10 06:34:14 +00003353 if (const MaterializeTemporaryExpr *ME
3354 = dyn_cast<MaterializeTemporaryExpr>(E->getArg(0)))
3355 return Visit(ME->GetTemporaryExpr());
3356
Richard Smith51201882011-12-30 21:15:51 +00003357 if (ZeroInit && !ZeroInitialization(E))
3358 return false;
3359
Richard Smith180f4792011-11-10 06:34:14 +00003360 llvm::ArrayRef<const Expr*> Args(E->getArgs(), E->getNumArgs());
Richard Smith745f5142012-01-27 01:14:48 +00003361 return HandleConstructorCall(E->getExprLoc(), This, Args,
Richard Smithf48fdb02011-12-09 22:58:01 +00003362 cast<CXXConstructorDecl>(Definition), Info,
3363 Result);
Richard Smith180f4792011-11-10 06:34:14 +00003364}
3365
3366static bool EvaluateRecord(const Expr *E, const LValue &This,
3367 APValue &Result, EvalInfo &Info) {
3368 assert(E->isRValue() && E->getType()->isRecordType() &&
Richard Smith180f4792011-11-10 06:34:14 +00003369 "can't evaluate expression as a record rvalue");
3370 return RecordExprEvaluator(Info, This, Result).Visit(E);
3371}
3372
3373//===----------------------------------------------------------------------===//
Richard Smithe24f5fc2011-11-17 22:56:20 +00003374// Temporary Evaluation
3375//
3376// Temporaries are represented in the AST as rvalues, but generally behave like
3377// lvalues. The full-object of which the temporary is a subobject is implicitly
3378// materialized so that a reference can bind to it.
3379//===----------------------------------------------------------------------===//
3380namespace {
3381class TemporaryExprEvaluator
3382 : public LValueExprEvaluatorBase<TemporaryExprEvaluator> {
3383public:
3384 TemporaryExprEvaluator(EvalInfo &Info, LValue &Result) :
3385 LValueExprEvaluatorBaseTy(Info, Result) {}
3386
3387 /// Visit an expression which constructs the value of this temporary.
3388 bool VisitConstructExpr(const Expr *E) {
3389 Result.set(E, Info.CurrentCall);
3390 return EvaluateConstantExpression(Info.CurrentCall->Temporaries[E], Info,
3391 Result, E);
3392 }
3393
3394 bool VisitCastExpr(const CastExpr *E) {
3395 switch (E->getCastKind()) {
3396 default:
3397 return LValueExprEvaluatorBaseTy::VisitCastExpr(E);
3398
3399 case CK_ConstructorConversion:
3400 return VisitConstructExpr(E->getSubExpr());
3401 }
3402 }
3403 bool VisitInitListExpr(const InitListExpr *E) {
3404 return VisitConstructExpr(E);
3405 }
3406 bool VisitCXXConstructExpr(const CXXConstructExpr *E) {
3407 return VisitConstructExpr(E);
3408 }
3409 bool VisitCallExpr(const CallExpr *E) {
3410 return VisitConstructExpr(E);
3411 }
3412};
3413} // end anonymous namespace
3414
3415/// Evaluate an expression of record type as a temporary.
3416static bool EvaluateTemporary(const Expr *E, LValue &Result, EvalInfo &Info) {
Richard Smithaf2c7a12011-12-19 22:01:37 +00003417 assert(E->isRValue() && E->getType()->isRecordType());
Richard Smithe24f5fc2011-11-17 22:56:20 +00003418 return TemporaryExprEvaluator(Info, Result).Visit(E);
3419}
3420
3421//===----------------------------------------------------------------------===//
Nate Begeman59b5da62009-01-18 03:20:47 +00003422// Vector Evaluation
3423//===----------------------------------------------------------------------===//
3424
3425namespace {
Benjamin Kramer770b4a82009-11-28 19:03:38 +00003426 class VectorExprEvaluator
Richard Smith07fc6572011-10-22 21:10:00 +00003427 : public ExprEvaluatorBase<VectorExprEvaluator, bool> {
3428 APValue &Result;
Nate Begeman59b5da62009-01-18 03:20:47 +00003429 public:
Mike Stump1eb44332009-09-09 15:08:12 +00003430
Richard Smith07fc6572011-10-22 21:10:00 +00003431 VectorExprEvaluator(EvalInfo &info, APValue &Result)
3432 : ExprEvaluatorBaseTy(info), Result(Result) {}
Mike Stump1eb44332009-09-09 15:08:12 +00003433
Richard Smith07fc6572011-10-22 21:10:00 +00003434 bool Success(const ArrayRef<APValue> &V, const Expr *E) {
3435 assert(V.size() == E->getType()->castAs<VectorType>()->getNumElements());
3436 // FIXME: remove this APValue copy.
3437 Result = APValue(V.data(), V.size());
3438 return true;
3439 }
Richard Smith69c2c502011-11-04 05:33:44 +00003440 bool Success(const CCValue &V, const Expr *E) {
3441 assert(V.isVector());
Richard Smith07fc6572011-10-22 21:10:00 +00003442 Result = V;
3443 return true;
3444 }
Richard Smith51201882011-12-30 21:15:51 +00003445 bool ZeroInitialization(const Expr *E);
Mike Stump1eb44332009-09-09 15:08:12 +00003446
Richard Smith07fc6572011-10-22 21:10:00 +00003447 bool VisitUnaryReal(const UnaryOperator *E)
Eli Friedman91110ee2009-02-23 04:23:56 +00003448 { return Visit(E->getSubExpr()); }
Richard Smith07fc6572011-10-22 21:10:00 +00003449 bool VisitCastExpr(const CastExpr* E);
Richard Smith07fc6572011-10-22 21:10:00 +00003450 bool VisitInitListExpr(const InitListExpr *E);
3451 bool VisitUnaryImag(const UnaryOperator *E);
Eli Friedman91110ee2009-02-23 04:23:56 +00003452 // FIXME: Missing: unary -, unary ~, binary add/sub/mul/div,
Eli Friedman2217c872009-02-22 11:46:18 +00003453 // binary comparisons, binary and/or/xor,
Eli Friedman91110ee2009-02-23 04:23:56 +00003454 // shufflevector, ExtVectorElementExpr
Nate Begeman59b5da62009-01-18 03:20:47 +00003455 };
3456} // end anonymous namespace
3457
3458static bool EvaluateVector(const Expr* E, APValue& Result, EvalInfo &Info) {
Richard Smithc49bd112011-10-28 17:51:58 +00003459 assert(E->isRValue() && E->getType()->isVectorType() &&"not a vector rvalue");
Richard Smith07fc6572011-10-22 21:10:00 +00003460 return VectorExprEvaluator(Info, Result).Visit(E);
Nate Begeman59b5da62009-01-18 03:20:47 +00003461}
3462
Richard Smith07fc6572011-10-22 21:10:00 +00003463bool VectorExprEvaluator::VisitCastExpr(const CastExpr* E) {
3464 const VectorType *VTy = E->getType()->castAs<VectorType>();
Nate Begemanc0b8b192009-07-01 07:50:47 +00003465 unsigned NElts = VTy->getNumElements();
Mike Stump1eb44332009-09-09 15:08:12 +00003466
Richard Smithd62ca372011-12-06 22:44:34 +00003467 const Expr *SE = E->getSubExpr();
Nate Begemane8c9e922009-06-26 18:22:18 +00003468 QualType SETy = SE->getType();
Nate Begeman59b5da62009-01-18 03:20:47 +00003469
Eli Friedman46a52322011-03-25 00:43:55 +00003470 switch (E->getCastKind()) {
3471 case CK_VectorSplat: {
Richard Smith07fc6572011-10-22 21:10:00 +00003472 APValue Val = APValue();
Eli Friedman46a52322011-03-25 00:43:55 +00003473 if (SETy->isIntegerType()) {
3474 APSInt IntResult;
3475 if (!EvaluateInteger(SE, IntResult, Info))
Richard Smithf48fdb02011-12-09 22:58:01 +00003476 return false;
Richard Smith07fc6572011-10-22 21:10:00 +00003477 Val = APValue(IntResult);
Eli Friedman46a52322011-03-25 00:43:55 +00003478 } else if (SETy->isRealFloatingType()) {
3479 APFloat F(0.0);
3480 if (!EvaluateFloat(SE, F, Info))
Richard Smithf48fdb02011-12-09 22:58:01 +00003481 return false;
Richard Smith07fc6572011-10-22 21:10:00 +00003482 Val = APValue(F);
Eli Friedman46a52322011-03-25 00:43:55 +00003483 } else {
Richard Smith07fc6572011-10-22 21:10:00 +00003484 return Error(E);
Eli Friedman46a52322011-03-25 00:43:55 +00003485 }
Nate Begemanc0b8b192009-07-01 07:50:47 +00003486
3487 // Splat and create vector APValue.
Richard Smith07fc6572011-10-22 21:10:00 +00003488 SmallVector<APValue, 4> Elts(NElts, Val);
3489 return Success(Elts, E);
Nate Begemane8c9e922009-06-26 18:22:18 +00003490 }
Eli Friedmane6a24e82011-12-22 03:51:45 +00003491 case CK_BitCast: {
3492 // Evaluate the operand into an APInt we can extract from.
3493 llvm::APInt SValInt;
3494 if (!EvalAndBitcastToAPInt(Info, SE, SValInt))
3495 return false;
3496 // Extract the elements
3497 QualType EltTy = VTy->getElementType();
3498 unsigned EltSize = Info.Ctx.getTypeSize(EltTy);
3499 bool BigEndian = Info.Ctx.getTargetInfo().isBigEndian();
3500 SmallVector<APValue, 4> Elts;
3501 if (EltTy->isRealFloatingType()) {
3502 const llvm::fltSemantics &Sem = Info.Ctx.getFloatTypeSemantics(EltTy);
3503 bool isIEESem = &Sem != &APFloat::PPCDoubleDouble;
3504 unsigned FloatEltSize = EltSize;
3505 if (&Sem == &APFloat::x87DoubleExtended)
3506 FloatEltSize = 80;
3507 for (unsigned i = 0; i < NElts; i++) {
3508 llvm::APInt Elt;
3509 if (BigEndian)
3510 Elt = SValInt.rotl(i*EltSize+FloatEltSize).trunc(FloatEltSize);
3511 else
3512 Elt = SValInt.rotr(i*EltSize).trunc(FloatEltSize);
3513 Elts.push_back(APValue(APFloat(Elt, isIEESem)));
3514 }
3515 } else if (EltTy->isIntegerType()) {
3516 for (unsigned i = 0; i < NElts; i++) {
3517 llvm::APInt Elt;
3518 if (BigEndian)
3519 Elt = SValInt.rotl(i*EltSize+EltSize).zextOrTrunc(EltSize);
3520 else
3521 Elt = SValInt.rotr(i*EltSize).zextOrTrunc(EltSize);
3522 Elts.push_back(APValue(APSInt(Elt, EltTy->isSignedIntegerType())));
3523 }
3524 } else {
3525 return Error(E);
3526 }
3527 return Success(Elts, E);
3528 }
Eli Friedman46a52322011-03-25 00:43:55 +00003529 default:
Richard Smithc49bd112011-10-28 17:51:58 +00003530 return ExprEvaluatorBaseTy::VisitCastExpr(E);
Eli Friedman46a52322011-03-25 00:43:55 +00003531 }
Nate Begeman59b5da62009-01-18 03:20:47 +00003532}
3533
Richard Smith07fc6572011-10-22 21:10:00 +00003534bool
Nate Begeman59b5da62009-01-18 03:20:47 +00003535VectorExprEvaluator::VisitInitListExpr(const InitListExpr *E) {
Richard Smith07fc6572011-10-22 21:10:00 +00003536 const VectorType *VT = E->getType()->castAs<VectorType>();
Nate Begeman59b5da62009-01-18 03:20:47 +00003537 unsigned NumInits = E->getNumInits();
Eli Friedman91110ee2009-02-23 04:23:56 +00003538 unsigned NumElements = VT->getNumElements();
Mike Stump1eb44332009-09-09 15:08:12 +00003539
Nate Begeman59b5da62009-01-18 03:20:47 +00003540 QualType EltTy = VT->getElementType();
Chris Lattner5f9e2722011-07-23 10:55:15 +00003541 SmallVector<APValue, 4> Elements;
Nate Begeman59b5da62009-01-18 03:20:47 +00003542
Eli Friedman3edd5a92012-01-03 23:24:20 +00003543 // The number of initializers can be less than the number of
3544 // vector elements. For OpenCL, this can be due to nested vector
3545 // initialization. For GCC compatibility, missing trailing elements
3546 // should be initialized with zeroes.
3547 unsigned CountInits = 0, CountElts = 0;
3548 while (CountElts < NumElements) {
3549 // Handle nested vector initialization.
3550 if (CountInits < NumInits
3551 && E->getInit(CountInits)->getType()->isExtVectorType()) {
3552 APValue v;
3553 if (!EvaluateVector(E->getInit(CountInits), v, Info))
3554 return Error(E);
3555 unsigned vlen = v.getVectorLength();
3556 for (unsigned j = 0; j < vlen; j++)
3557 Elements.push_back(v.getVectorElt(j));
3558 CountElts += vlen;
3559 } else if (EltTy->isIntegerType()) {
Nate Begeman59b5da62009-01-18 03:20:47 +00003560 llvm::APSInt sInt(32);
Eli Friedman3edd5a92012-01-03 23:24:20 +00003561 if (CountInits < NumInits) {
3562 if (!EvaluateInteger(E->getInit(CountInits), sInt, Info))
3563 return Error(E);
3564 } else // trailing integer zero.
3565 sInt = Info.Ctx.MakeIntValue(0, EltTy);
3566 Elements.push_back(APValue(sInt));
3567 CountElts++;
Nate Begeman59b5da62009-01-18 03:20:47 +00003568 } else {
3569 llvm::APFloat f(0.0);
Eli Friedman3edd5a92012-01-03 23:24:20 +00003570 if (CountInits < NumInits) {
3571 if (!EvaluateFloat(E->getInit(CountInits), f, Info))
3572 return Error(E);
3573 } else // trailing float zero.
3574 f = APFloat::getZero(Info.Ctx.getFloatTypeSemantics(EltTy));
3575 Elements.push_back(APValue(f));
3576 CountElts++;
John McCalla7d6c222010-06-11 17:54:15 +00003577 }
Eli Friedman3edd5a92012-01-03 23:24:20 +00003578 CountInits++;
Nate Begeman59b5da62009-01-18 03:20:47 +00003579 }
Richard Smith07fc6572011-10-22 21:10:00 +00003580 return Success(Elements, E);
Nate Begeman59b5da62009-01-18 03:20:47 +00003581}
3582
Richard Smith07fc6572011-10-22 21:10:00 +00003583bool
Richard Smith51201882011-12-30 21:15:51 +00003584VectorExprEvaluator::ZeroInitialization(const Expr *E) {
Richard Smith07fc6572011-10-22 21:10:00 +00003585 const VectorType *VT = E->getType()->getAs<VectorType>();
Eli Friedman91110ee2009-02-23 04:23:56 +00003586 QualType EltTy = VT->getElementType();
3587 APValue ZeroElement;
3588 if (EltTy->isIntegerType())
3589 ZeroElement = APValue(Info.Ctx.MakeIntValue(0, EltTy));
3590 else
3591 ZeroElement =
3592 APValue(APFloat::getZero(Info.Ctx.getFloatTypeSemantics(EltTy)));
3593
Chris Lattner5f9e2722011-07-23 10:55:15 +00003594 SmallVector<APValue, 4> Elements(VT->getNumElements(), ZeroElement);
Richard Smith07fc6572011-10-22 21:10:00 +00003595 return Success(Elements, E);
Eli Friedman91110ee2009-02-23 04:23:56 +00003596}
3597
Richard Smith07fc6572011-10-22 21:10:00 +00003598bool VectorExprEvaluator::VisitUnaryImag(const UnaryOperator *E) {
Richard Smith8327fad2011-10-24 18:44:57 +00003599 VisitIgnoredValue(E->getSubExpr());
Richard Smith51201882011-12-30 21:15:51 +00003600 return ZeroInitialization(E);
Eli Friedman91110ee2009-02-23 04:23:56 +00003601}
3602
Nate Begeman59b5da62009-01-18 03:20:47 +00003603//===----------------------------------------------------------------------===//
Richard Smithcc5d4f62011-11-07 09:22:26 +00003604// Array Evaluation
3605//===----------------------------------------------------------------------===//
3606
3607namespace {
3608 class ArrayExprEvaluator
3609 : public ExprEvaluatorBase<ArrayExprEvaluator, bool> {
Richard Smith180f4792011-11-10 06:34:14 +00003610 const LValue &This;
Richard Smithcc5d4f62011-11-07 09:22:26 +00003611 APValue &Result;
3612 public:
3613
Richard Smith180f4792011-11-10 06:34:14 +00003614 ArrayExprEvaluator(EvalInfo &Info, const LValue &This, APValue &Result)
3615 : ExprEvaluatorBaseTy(Info), This(This), Result(Result) {}
Richard Smithcc5d4f62011-11-07 09:22:26 +00003616
3617 bool Success(const APValue &V, const Expr *E) {
3618 assert(V.isArray() && "Expected array type");
3619 Result = V;
3620 return true;
3621 }
Richard Smithcc5d4f62011-11-07 09:22:26 +00003622
Richard Smith51201882011-12-30 21:15:51 +00003623 bool ZeroInitialization(const Expr *E) {
Richard Smith180f4792011-11-10 06:34:14 +00003624 const ConstantArrayType *CAT =
3625 Info.Ctx.getAsConstantArrayType(E->getType());
3626 if (!CAT)
Richard Smithf48fdb02011-12-09 22:58:01 +00003627 return Error(E);
Richard Smith180f4792011-11-10 06:34:14 +00003628
3629 Result = APValue(APValue::UninitArray(), 0,
3630 CAT->getSize().getZExtValue());
3631 if (!Result.hasArrayFiller()) return true;
3632
Richard Smith51201882011-12-30 21:15:51 +00003633 // Zero-initialize all elements.
Richard Smith180f4792011-11-10 06:34:14 +00003634 LValue Subobject = This;
Richard Smithb4e85ed2012-01-06 16:39:00 +00003635 Subobject.addArray(Info, E, CAT);
Richard Smith180f4792011-11-10 06:34:14 +00003636 ImplicitValueInitExpr VIE(CAT->getElementType());
3637 return EvaluateConstantExpression(Result.getArrayFiller(), Info,
3638 Subobject, &VIE);
3639 }
3640
Richard Smithcc5d4f62011-11-07 09:22:26 +00003641 bool VisitInitListExpr(const InitListExpr *E);
Richard Smithe24f5fc2011-11-17 22:56:20 +00003642 bool VisitCXXConstructExpr(const CXXConstructExpr *E);
Richard Smithcc5d4f62011-11-07 09:22:26 +00003643 };
3644} // end anonymous namespace
3645
Richard Smith180f4792011-11-10 06:34:14 +00003646static bool EvaluateArray(const Expr *E, const LValue &This,
3647 APValue &Result, EvalInfo &Info) {
Richard Smith51201882011-12-30 21:15:51 +00003648 assert(E->isRValue() && E->getType()->isArrayType() && "not an array rvalue");
Richard Smith180f4792011-11-10 06:34:14 +00003649 return ArrayExprEvaluator(Info, This, Result).Visit(E);
Richard Smithcc5d4f62011-11-07 09:22:26 +00003650}
3651
3652bool ArrayExprEvaluator::VisitInitListExpr(const InitListExpr *E) {
3653 const ConstantArrayType *CAT = Info.Ctx.getAsConstantArrayType(E->getType());
3654 if (!CAT)
Richard Smithf48fdb02011-12-09 22:58:01 +00003655 return Error(E);
Richard Smithcc5d4f62011-11-07 09:22:26 +00003656
Richard Smith974c5f92011-12-22 01:07:19 +00003657 // C++11 [dcl.init.string]p1: A char array [...] can be initialized by [...]
3658 // an appropriately-typed string literal enclosed in braces.
Richard Smithec789162012-01-12 18:54:33 +00003659 if (E->getNumInits() == 1 && E->getInit(0)->isGLValue() &&
Richard Smith974c5f92011-12-22 01:07:19 +00003660 Info.Ctx.hasSameUnqualifiedType(E->getType(), E->getInit(0)->getType())) {
3661 LValue LV;
3662 if (!EvaluateLValue(E->getInit(0), LV, Info))
3663 return false;
3664 uint64_t NumElements = CAT->getSize().getZExtValue();
3665 Result = APValue(APValue::UninitArray(), NumElements, NumElements);
3666
3667 // Copy the string literal into the array. FIXME: Do this better.
Richard Smithb4e85ed2012-01-06 16:39:00 +00003668 LV.addArray(Info, E, CAT);
Richard Smith974c5f92011-12-22 01:07:19 +00003669 for (uint64_t I = 0; I < NumElements; ++I) {
3670 CCValue Char;
3671 if (!HandleLValueToRValueConversion(Info, E->getInit(0),
Richard Smith745f5142012-01-27 01:14:48 +00003672 CAT->getElementType(), LV, Char) ||
3673 !CheckConstantExpression(Info, E->getInit(0), Char,
3674 Result.getArrayInitializedElt(I)) ||
3675 !HandleLValueArrayAdjustment(Info, E->getInit(0), LV,
Richard Smithb4e85ed2012-01-06 16:39:00 +00003676 CAT->getElementType(), 1))
Richard Smith974c5f92011-12-22 01:07:19 +00003677 return false;
3678 }
3679 return true;
3680 }
3681
Richard Smith745f5142012-01-27 01:14:48 +00003682 bool Success = true;
3683
Richard Smithcc5d4f62011-11-07 09:22:26 +00003684 Result = APValue(APValue::UninitArray(), E->getNumInits(),
3685 CAT->getSize().getZExtValue());
Richard Smith180f4792011-11-10 06:34:14 +00003686 LValue Subobject = This;
Richard Smithb4e85ed2012-01-06 16:39:00 +00003687 Subobject.addArray(Info, E, CAT);
Richard Smith180f4792011-11-10 06:34:14 +00003688 unsigned Index = 0;
Richard Smithcc5d4f62011-11-07 09:22:26 +00003689 for (InitListExpr::const_iterator I = E->begin(), End = E->end();
Richard Smith180f4792011-11-10 06:34:14 +00003690 I != End; ++I, ++Index) {
3691 if (!EvaluateConstantExpression(Result.getArrayInitializedElt(Index),
Richard Smith745f5142012-01-27 01:14:48 +00003692 Info, Subobject, cast<Expr>(*I)) ||
3693 !HandleLValueArrayAdjustment(Info, cast<Expr>(*I), Subobject,
3694 CAT->getElementType(), 1)) {
3695 if (!Info.keepEvaluatingAfterFailure())
3696 return false;
3697 Success = false;
3698 }
Richard Smith180f4792011-11-10 06:34:14 +00003699 }
Richard Smithcc5d4f62011-11-07 09:22:26 +00003700
Richard Smith745f5142012-01-27 01:14:48 +00003701 if (!Result.hasArrayFiller()) return Success;
Richard Smithcc5d4f62011-11-07 09:22:26 +00003702 assert(E->hasArrayFiller() && "no array filler for incomplete init list");
Richard Smith180f4792011-11-10 06:34:14 +00003703 // FIXME: The Subobject here isn't necessarily right. This rarely matters,
3704 // but sometimes does:
3705 // struct S { constexpr S() : p(&p) {} void *p; };
3706 // S s[10] = {};
Richard Smithcc5d4f62011-11-07 09:22:26 +00003707 return EvaluateConstantExpression(Result.getArrayFiller(), Info,
Richard Smith745f5142012-01-27 01:14:48 +00003708 Subobject, E->getArrayFiller()) && Success;
Richard Smithcc5d4f62011-11-07 09:22:26 +00003709}
3710
Richard Smithe24f5fc2011-11-17 22:56:20 +00003711bool ArrayExprEvaluator::VisitCXXConstructExpr(const CXXConstructExpr *E) {
3712 const ConstantArrayType *CAT = Info.Ctx.getAsConstantArrayType(E->getType());
3713 if (!CAT)
Richard Smithf48fdb02011-12-09 22:58:01 +00003714 return Error(E);
Richard Smithe24f5fc2011-11-17 22:56:20 +00003715
Richard Smithec789162012-01-12 18:54:33 +00003716 bool HadZeroInit = !Result.isUninit();
3717 if (!HadZeroInit)
3718 Result = APValue(APValue::UninitArray(), 0, CAT->getSize().getZExtValue());
Richard Smithe24f5fc2011-11-17 22:56:20 +00003719 if (!Result.hasArrayFiller())
3720 return true;
3721
3722 const CXXConstructorDecl *FD = E->getConstructor();
Richard Smith61802452011-12-22 02:22:31 +00003723
Richard Smith51201882011-12-30 21:15:51 +00003724 bool ZeroInit = E->requiresZeroInitialization();
3725 if (CheckTrivialDefaultConstructor(Info, E->getExprLoc(), FD, ZeroInit)) {
Richard Smithec789162012-01-12 18:54:33 +00003726 if (HadZeroInit)
3727 return true;
3728
Richard Smith51201882011-12-30 21:15:51 +00003729 if (ZeroInit) {
3730 LValue Subobject = This;
Richard Smithb4e85ed2012-01-06 16:39:00 +00003731 Subobject.addArray(Info, E, CAT);
Richard Smith51201882011-12-30 21:15:51 +00003732 ImplicitValueInitExpr VIE(CAT->getElementType());
3733 return EvaluateConstantExpression(Result.getArrayFiller(), Info,
3734 Subobject, &VIE);
3735 }
3736
Richard Smith61802452011-12-22 02:22:31 +00003737 const CXXRecordDecl *RD = FD->getParent();
3738 if (RD->isUnion())
3739 Result.getArrayFiller() = APValue((FieldDecl*)0);
3740 else
3741 Result.getArrayFiller() =
3742 APValue(APValue::UninitStruct(), RD->getNumBases(),
3743 std::distance(RD->field_begin(), RD->field_end()));
3744 return true;
3745 }
3746
Richard Smithe24f5fc2011-11-17 22:56:20 +00003747 const FunctionDecl *Definition = 0;
3748 FD->getBody(Definition);
3749
Richard Smithc1c5f272011-12-13 06:39:58 +00003750 if (!CheckConstexprFunction(Info, E->getExprLoc(), FD, Definition))
3751 return false;
Richard Smithe24f5fc2011-11-17 22:56:20 +00003752
3753 // FIXME: The Subobject here isn't necessarily right. This rarely matters,
3754 // but sometimes does:
3755 // struct S { constexpr S() : p(&p) {} void *p; };
3756 // S s[10];
3757 LValue Subobject = This;
Richard Smithb4e85ed2012-01-06 16:39:00 +00003758 Subobject.addArray(Info, E, CAT);
Richard Smith51201882011-12-30 21:15:51 +00003759
Richard Smithec789162012-01-12 18:54:33 +00003760 if (ZeroInit && !HadZeroInit) {
Richard Smith51201882011-12-30 21:15:51 +00003761 ImplicitValueInitExpr VIE(CAT->getElementType());
3762 if (!EvaluateConstantExpression(Result.getArrayFiller(), Info, Subobject,
3763 &VIE))
3764 return false;
3765 }
3766
Richard Smithe24f5fc2011-11-17 22:56:20 +00003767 llvm::ArrayRef<const Expr*> Args(E->getArgs(), E->getNumArgs());
Richard Smith745f5142012-01-27 01:14:48 +00003768 return HandleConstructorCall(E->getExprLoc(), Subobject, Args,
Richard Smithe24f5fc2011-11-17 22:56:20 +00003769 cast<CXXConstructorDecl>(Definition),
3770 Info, Result.getArrayFiller());
3771}
3772
Richard Smithcc5d4f62011-11-07 09:22:26 +00003773//===----------------------------------------------------------------------===//
Chris Lattnerf5eeb052008-07-11 18:11:29 +00003774// Integer Evaluation
Richard Smithc49bd112011-10-28 17:51:58 +00003775//
3776// As a GNU extension, we support casting pointers to sufficiently-wide integer
3777// types and back in constant folding. Integer values are thus represented
3778// either as an integer-valued APValue, or as an lvalue-valued APValue.
Chris Lattnerf5eeb052008-07-11 18:11:29 +00003779//===----------------------------------------------------------------------===//
Chris Lattnerf5eeb052008-07-11 18:11:29 +00003780
3781namespace {
Benjamin Kramer770b4a82009-11-28 19:03:38 +00003782class IntExprEvaluator
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003783 : public ExprEvaluatorBase<IntExprEvaluator, bool> {
Richard Smith47a1eed2011-10-29 20:57:55 +00003784 CCValue &Result;
Anders Carlssonc754aa62008-07-08 05:13:58 +00003785public:
Richard Smith47a1eed2011-10-29 20:57:55 +00003786 IntExprEvaluator(EvalInfo &info, CCValue &result)
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003787 : ExprEvaluatorBaseTy(info), Result(result) {}
Chris Lattnerf5eeb052008-07-11 18:11:29 +00003788
Abramo Bagnara973c4fc2011-07-02 13:13:53 +00003789 bool Success(const llvm::APSInt &SI, const Expr *E) {
3790 assert(E->getType()->isIntegralOrEnumerationType() &&
Douglas Gregor2ade35e2010-06-16 00:17:44 +00003791 "Invalid evaluation result.");
Abramo Bagnara973c4fc2011-07-02 13:13:53 +00003792 assert(SI.isSigned() == E->getType()->isSignedIntegerOrEnumerationType() &&
Daniel Dunbar3f7d9952009-02-19 18:37:50 +00003793 "Invalid evaluation result.");
Abramo Bagnara973c4fc2011-07-02 13:13:53 +00003794 assert(SI.getBitWidth() == Info.Ctx.getIntWidth(E->getType()) &&
Daniel Dunbar3f7d9952009-02-19 18:37:50 +00003795 "Invalid evaluation result.");
Richard Smith47a1eed2011-10-29 20:57:55 +00003796 Result = CCValue(SI);
Daniel Dunbar3f7d9952009-02-19 18:37:50 +00003797 return true;
3798 }
3799
Daniel Dunbar131eb432009-02-19 09:06:44 +00003800 bool Success(const llvm::APInt &I, const Expr *E) {
Douglas Gregor2ade35e2010-06-16 00:17:44 +00003801 assert(E->getType()->isIntegralOrEnumerationType() &&
3802 "Invalid evaluation result.");
Daniel Dunbar30c37f42009-02-19 20:17:33 +00003803 assert(I.getBitWidth() == Info.Ctx.getIntWidth(E->getType()) &&
Daniel Dunbar3f7d9952009-02-19 18:37:50 +00003804 "Invalid evaluation result.");
Richard Smith47a1eed2011-10-29 20:57:55 +00003805 Result = CCValue(APSInt(I));
Douglas Gregor575a1c92011-05-20 16:38:50 +00003806 Result.getInt().setIsUnsigned(
3807 E->getType()->isUnsignedIntegerOrEnumerationType());
Daniel Dunbar131eb432009-02-19 09:06:44 +00003808 return true;
3809 }
3810
3811 bool Success(uint64_t Value, const Expr *E) {
Douglas Gregor2ade35e2010-06-16 00:17:44 +00003812 assert(E->getType()->isIntegralOrEnumerationType() &&
3813 "Invalid evaluation result.");
Richard Smith47a1eed2011-10-29 20:57:55 +00003814 Result = CCValue(Info.Ctx.MakeIntValue(Value, E->getType()));
Daniel Dunbar131eb432009-02-19 09:06:44 +00003815 return true;
3816 }
3817
Ken Dyck4f3bc8f2011-03-11 02:13:43 +00003818 bool Success(CharUnits Size, const Expr *E) {
3819 return Success(Size.getQuantity(), E);
3820 }
3821
Richard Smith47a1eed2011-10-29 20:57:55 +00003822 bool Success(const CCValue &V, const Expr *E) {
Eli Friedman5930a4c2012-01-05 23:59:40 +00003823 if (V.isLValue() || V.isAddrLabelDiff()) {
Richard Smith342f1f82011-10-29 22:55:55 +00003824 Result = V;
3825 return true;
3826 }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003827 return Success(V.getInt(), E);
Chris Lattner32fea9d2008-11-12 07:43:42 +00003828 }
Mike Stump1eb44332009-09-09 15:08:12 +00003829
Richard Smith51201882011-12-30 21:15:51 +00003830 bool ZeroInitialization(const Expr *E) { return Success(0, E); }
Richard Smithf10d9172011-10-11 21:43:33 +00003831
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003832 //===--------------------------------------------------------------------===//
3833 // Visitor Methods
3834 //===--------------------------------------------------------------------===//
Anders Carlssonc754aa62008-07-08 05:13:58 +00003835
Chris Lattner4c4867e2008-07-12 00:38:25 +00003836 bool VisitIntegerLiteral(const IntegerLiteral *E) {
Daniel Dunbar131eb432009-02-19 09:06:44 +00003837 return Success(E->getValue(), E);
Chris Lattner4c4867e2008-07-12 00:38:25 +00003838 }
3839 bool VisitCharacterLiteral(const CharacterLiteral *E) {
Daniel Dunbar131eb432009-02-19 09:06:44 +00003840 return Success(E->getValue(), E);
Chris Lattner4c4867e2008-07-12 00:38:25 +00003841 }
Eli Friedman04309752009-11-24 05:28:59 +00003842
3843 bool CheckReferencedDecl(const Expr *E, const Decl *D);
3844 bool VisitDeclRefExpr(const DeclRefExpr *E) {
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003845 if (CheckReferencedDecl(E, E->getDecl()))
3846 return true;
3847
3848 return ExprEvaluatorBaseTy::VisitDeclRefExpr(E);
Eli Friedman04309752009-11-24 05:28:59 +00003849 }
3850 bool VisitMemberExpr(const MemberExpr *E) {
3851 if (CheckReferencedDecl(E, E->getMemberDecl())) {
Richard Smithc49bd112011-10-28 17:51:58 +00003852 VisitIgnoredValue(E->getBase());
Eli Friedman04309752009-11-24 05:28:59 +00003853 return true;
3854 }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003855
3856 return ExprEvaluatorBaseTy::VisitMemberExpr(E);
Eli Friedman04309752009-11-24 05:28:59 +00003857 }
3858
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003859 bool VisitCallExpr(const CallExpr *E);
Chris Lattnerb542afe2008-07-11 19:10:17 +00003860 bool VisitBinaryOperator(const BinaryOperator *E);
Douglas Gregor8ecdb652010-04-28 22:16:22 +00003861 bool VisitOffsetOfExpr(const OffsetOfExpr *E);
Chris Lattnerb542afe2008-07-11 19:10:17 +00003862 bool VisitUnaryOperator(const UnaryOperator *E);
Anders Carlsson06a36752008-07-08 05:49:43 +00003863
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003864 bool VisitCastExpr(const CastExpr* E);
Peter Collingbournef4e3cfb2011-03-11 19:24:49 +00003865 bool VisitUnaryExprOrTypeTraitExpr(const UnaryExprOrTypeTraitExpr *E);
Sebastian Redl05189992008-11-11 17:56:53 +00003866
Anders Carlsson3068d112008-11-16 19:01:22 +00003867 bool VisitCXXBoolLiteralExpr(const CXXBoolLiteralExpr *E) {
Daniel Dunbar131eb432009-02-19 09:06:44 +00003868 return Success(E->getValue(), E);
Anders Carlsson3068d112008-11-16 19:01:22 +00003869 }
Mike Stump1eb44332009-09-09 15:08:12 +00003870
Richard Smithf10d9172011-10-11 21:43:33 +00003871 // Note, GNU defines __null as an integer, not a pointer.
Anders Carlsson3f704562008-12-21 22:39:40 +00003872 bool VisitGNUNullExpr(const GNUNullExpr *E) {
Richard Smith51201882011-12-30 21:15:51 +00003873 return ZeroInitialization(E);
Eli Friedman664a1042009-02-27 04:45:43 +00003874 }
3875
Sebastian Redl64b45f72009-01-05 20:52:13 +00003876 bool VisitUnaryTypeTraitExpr(const UnaryTypeTraitExpr *E) {
Sebastian Redl0dfd8482010-09-13 20:56:31 +00003877 return Success(E->getValue(), E);
Sebastian Redl64b45f72009-01-05 20:52:13 +00003878 }
3879
Francois Pichet6ad6f282010-12-07 00:08:36 +00003880 bool VisitBinaryTypeTraitExpr(const BinaryTypeTraitExpr *E) {
3881 return Success(E->getValue(), E);
3882 }
3883
John Wiegley21ff2e52011-04-28 00:16:57 +00003884 bool VisitArrayTypeTraitExpr(const ArrayTypeTraitExpr *E) {
3885 return Success(E->getValue(), E);
3886 }
3887
John Wiegley55262202011-04-25 06:54:41 +00003888 bool VisitExpressionTraitExpr(const ExpressionTraitExpr *E) {
3889 return Success(E->getValue(), E);
3890 }
3891
Eli Friedman722c7172009-02-28 03:59:05 +00003892 bool VisitUnaryReal(const UnaryOperator *E);
Eli Friedman664a1042009-02-27 04:45:43 +00003893 bool VisitUnaryImag(const UnaryOperator *E);
3894
Sebastian Redl295995c2010-09-10 20:55:47 +00003895 bool VisitCXXNoexceptExpr(const CXXNoexceptExpr *E);
Douglas Gregoree8aff02011-01-04 17:33:58 +00003896 bool VisitSizeOfPackExpr(const SizeOfPackExpr *E);
Sebastian Redlcea8d962011-09-24 17:48:14 +00003897
Chris Lattnerfcee0012008-07-11 21:24:13 +00003898private:
Ken Dyck8b752f12010-01-27 17:10:57 +00003899 CharUnits GetAlignOfExpr(const Expr *E);
3900 CharUnits GetAlignOfType(QualType T);
Richard Smith1bf9a9e2011-11-12 22:28:03 +00003901 static QualType GetObjectType(APValue::LValueBase B);
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003902 bool TryEvaluateBuiltinObjectSize(const CallExpr *E);
Eli Friedman664a1042009-02-27 04:45:43 +00003903 // FIXME: Missing: array subscript of vector, member of vector
Anders Carlssona25ae3d2008-07-08 14:35:21 +00003904};
Chris Lattnerf5eeb052008-07-11 18:11:29 +00003905} // end anonymous namespace
Anders Carlsson650c92f2008-07-08 15:34:11 +00003906
Richard Smithc49bd112011-10-28 17:51:58 +00003907/// EvaluateIntegerOrLValue - Evaluate an rvalue integral-typed expression, and
3908/// produce either the integer value or a pointer.
3909///
3910/// GCC has a heinous extension which folds casts between pointer types and
3911/// pointer-sized integral types. We support this by allowing the evaluation of
3912/// an integer rvalue to produce a pointer (represented as an lvalue) instead.
3913/// Some simple arithmetic on such values is supported (they are treated much
3914/// like char*).
Richard Smithf48fdb02011-12-09 22:58:01 +00003915static bool EvaluateIntegerOrLValue(const Expr *E, CCValue &Result,
Richard Smith47a1eed2011-10-29 20:57:55 +00003916 EvalInfo &Info) {
Richard Smithc49bd112011-10-28 17:51:58 +00003917 assert(E->isRValue() && E->getType()->isIntegralOrEnumerationType());
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003918 return IntExprEvaluator(Info, Result).Visit(E);
Daniel Dunbar69ab26a2009-02-20 18:22:23 +00003919}
Daniel Dunbar30c37f42009-02-19 20:17:33 +00003920
Richard Smithf48fdb02011-12-09 22:58:01 +00003921static bool EvaluateInteger(const Expr *E, APSInt &Result, EvalInfo &Info) {
Richard Smith47a1eed2011-10-29 20:57:55 +00003922 CCValue Val;
Richard Smithf48fdb02011-12-09 22:58:01 +00003923 if (!EvaluateIntegerOrLValue(E, Val, Info))
Daniel Dunbar69ab26a2009-02-20 18:22:23 +00003924 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00003925 if (!Val.isInt()) {
3926 // FIXME: It would be better to produce the diagnostic for casting
3927 // a pointer to an integer.
Richard Smithdd1f29b2011-12-12 09:28:41 +00003928 Info.Diag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
Richard Smithf48fdb02011-12-09 22:58:01 +00003929 return false;
3930 }
Daniel Dunbar30c37f42009-02-19 20:17:33 +00003931 Result = Val.getInt();
3932 return true;
Anders Carlsson650c92f2008-07-08 15:34:11 +00003933}
Anders Carlsson650c92f2008-07-08 15:34:11 +00003934
Richard Smithf48fdb02011-12-09 22:58:01 +00003935/// Check whether the given declaration can be directly converted to an integral
3936/// rvalue. If not, no diagnostic is produced; there are other things we can
3937/// try.
Eli Friedman04309752009-11-24 05:28:59 +00003938bool IntExprEvaluator::CheckReferencedDecl(const Expr* E, const Decl* D) {
Chris Lattner4c4867e2008-07-12 00:38:25 +00003939 // Enums are integer constant exprs.
Abramo Bagnarabfbdcd82011-06-30 09:36:05 +00003940 if (const EnumConstantDecl *ECD = dyn_cast<EnumConstantDecl>(D)) {
Abramo Bagnara973c4fc2011-07-02 13:13:53 +00003941 // Check for signedness/width mismatches between E type and ECD value.
3942 bool SameSign = (ECD->getInitVal().isSigned()
3943 == E->getType()->isSignedIntegerOrEnumerationType());
3944 bool SameWidth = (ECD->getInitVal().getBitWidth()
3945 == Info.Ctx.getIntWidth(E->getType()));
3946 if (SameSign && SameWidth)
3947 return Success(ECD->getInitVal(), E);
3948 else {
3949 // Get rid of mismatch (otherwise Success assertions will fail)
3950 // by computing a new value matching the type of E.
3951 llvm::APSInt Val = ECD->getInitVal();
3952 if (!SameSign)
3953 Val.setIsSigned(!ECD->getInitVal().isSigned());
3954 if (!SameWidth)
3955 Val = Val.extOrTrunc(Info.Ctx.getIntWidth(E->getType()));
3956 return Success(Val, E);
3957 }
Abramo Bagnarabfbdcd82011-06-30 09:36:05 +00003958 }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00003959 return false;
Chris Lattner4c4867e2008-07-12 00:38:25 +00003960}
3961
Chris Lattnera4d55d82008-10-06 06:40:35 +00003962/// EvaluateBuiltinClassifyType - Evaluate __builtin_classify_type the same way
3963/// as GCC.
3964static int EvaluateBuiltinClassifyType(const CallExpr *E) {
3965 // The following enum mimics the values returned by GCC.
Sebastian Redl7c80bd62009-03-16 23:22:08 +00003966 // FIXME: Does GCC differ between lvalue and rvalue references here?
Chris Lattnera4d55d82008-10-06 06:40:35 +00003967 enum gcc_type_class {
3968 no_type_class = -1,
3969 void_type_class, integer_type_class, char_type_class,
3970 enumeral_type_class, boolean_type_class,
3971 pointer_type_class, reference_type_class, offset_type_class,
3972 real_type_class, complex_type_class,
3973 function_type_class, method_type_class,
3974 record_type_class, union_type_class,
3975 array_type_class, string_type_class,
3976 lang_type_class
3977 };
Mike Stump1eb44332009-09-09 15:08:12 +00003978
3979 // If no argument was supplied, default to "no_type_class". This isn't
Chris Lattnera4d55d82008-10-06 06:40:35 +00003980 // ideal, however it is what gcc does.
3981 if (E->getNumArgs() == 0)
3982 return no_type_class;
Mike Stump1eb44332009-09-09 15:08:12 +00003983
Chris Lattnera4d55d82008-10-06 06:40:35 +00003984 QualType ArgTy = E->getArg(0)->getType();
3985 if (ArgTy->isVoidType())
3986 return void_type_class;
3987 else if (ArgTy->isEnumeralType())
3988 return enumeral_type_class;
3989 else if (ArgTy->isBooleanType())
3990 return boolean_type_class;
3991 else if (ArgTy->isCharType())
3992 return string_type_class; // gcc doesn't appear to use char_type_class
3993 else if (ArgTy->isIntegerType())
3994 return integer_type_class;
3995 else if (ArgTy->isPointerType())
3996 return pointer_type_class;
3997 else if (ArgTy->isReferenceType())
3998 return reference_type_class;
3999 else if (ArgTy->isRealType())
4000 return real_type_class;
4001 else if (ArgTy->isComplexType())
4002 return complex_type_class;
4003 else if (ArgTy->isFunctionType())
4004 return function_type_class;
Douglas Gregorfb87b892010-04-26 21:31:17 +00004005 else if (ArgTy->isStructureOrClassType())
Chris Lattnera4d55d82008-10-06 06:40:35 +00004006 return record_type_class;
4007 else if (ArgTy->isUnionType())
4008 return union_type_class;
4009 else if (ArgTy->isArrayType())
4010 return array_type_class;
4011 else if (ArgTy->isUnionType())
4012 return union_type_class;
4013 else // FIXME: offset_type_class, method_type_class, & lang_type_class?
David Blaikieb219cfc2011-09-23 05:06:16 +00004014 llvm_unreachable("CallExpr::isBuiltinClassifyType(): unimplemented type");
Chris Lattnera4d55d82008-10-06 06:40:35 +00004015}
4016
Richard Smith80d4b552011-12-28 19:48:30 +00004017/// EvaluateBuiltinConstantPForLValue - Determine the result of
4018/// __builtin_constant_p when applied to the given lvalue.
4019///
4020/// An lvalue is only "constant" if it is a pointer or reference to the first
4021/// character of a string literal.
4022template<typename LValue>
4023static bool EvaluateBuiltinConstantPForLValue(const LValue &LV) {
4024 const Expr *E = LV.getLValueBase().dyn_cast<const Expr*>();
4025 return E && isa<StringLiteral>(E) && LV.getLValueOffset().isZero();
4026}
4027
4028/// EvaluateBuiltinConstantP - Evaluate __builtin_constant_p as similarly to
4029/// GCC as we can manage.
4030static bool EvaluateBuiltinConstantP(ASTContext &Ctx, const Expr *Arg) {
4031 QualType ArgType = Arg->getType();
4032
4033 // __builtin_constant_p always has one operand. The rules which gcc follows
4034 // are not precisely documented, but are as follows:
4035 //
4036 // - If the operand is of integral, floating, complex or enumeration type,
4037 // and can be folded to a known value of that type, it returns 1.
4038 // - If the operand and can be folded to a pointer to the first character
4039 // of a string literal (or such a pointer cast to an integral type), it
4040 // returns 1.
4041 //
4042 // Otherwise, it returns 0.
4043 //
4044 // FIXME: GCC also intends to return 1 for literals of aggregate types, but
4045 // its support for this does not currently work.
4046 if (ArgType->isIntegralOrEnumerationType()) {
4047 Expr::EvalResult Result;
4048 if (!Arg->EvaluateAsRValue(Result, Ctx) || Result.HasSideEffects)
4049 return false;
4050
4051 APValue &V = Result.Val;
4052 if (V.getKind() == APValue::Int)
4053 return true;
4054
4055 return EvaluateBuiltinConstantPForLValue(V);
4056 } else if (ArgType->isFloatingType() || ArgType->isAnyComplexType()) {
4057 return Arg->isEvaluatable(Ctx);
4058 } else if (ArgType->isPointerType() || Arg->isGLValue()) {
4059 LValue LV;
4060 Expr::EvalStatus Status;
4061 EvalInfo Info(Ctx, Status);
4062 if ((Arg->isGLValue() ? EvaluateLValue(Arg, LV, Info)
4063 : EvaluatePointer(Arg, LV, Info)) &&
4064 !Status.HasSideEffects)
4065 return EvaluateBuiltinConstantPForLValue(LV);
4066 }
4067
4068 // Anything else isn't considered to be sufficiently constant.
4069 return false;
4070}
4071
John McCall42c8f872010-05-10 23:27:23 +00004072/// Retrieves the "underlying object type" of the given expression,
4073/// as used by __builtin_object_size.
Richard Smith1bf9a9e2011-11-12 22:28:03 +00004074QualType IntExprEvaluator::GetObjectType(APValue::LValueBase B) {
4075 if (const ValueDecl *D = B.dyn_cast<const ValueDecl*>()) {
4076 if (const VarDecl *VD = dyn_cast<VarDecl>(D))
John McCall42c8f872010-05-10 23:27:23 +00004077 return VD->getType();
Richard Smith1bf9a9e2011-11-12 22:28:03 +00004078 } else if (const Expr *E = B.get<const Expr*>()) {
4079 if (isa<CompoundLiteralExpr>(E))
4080 return E->getType();
John McCall42c8f872010-05-10 23:27:23 +00004081 }
4082
4083 return QualType();
4084}
4085
Peter Collingbourne8cad3042011-05-13 03:29:01 +00004086bool IntExprEvaluator::TryEvaluateBuiltinObjectSize(const CallExpr *E) {
John McCall42c8f872010-05-10 23:27:23 +00004087 // TODO: Perhaps we should let LLVM lower this?
4088 LValue Base;
4089 if (!EvaluatePointer(E->getArg(0), Base, Info))
4090 return false;
4091
4092 // If we can prove the base is null, lower to zero now.
Richard Smith1bf9a9e2011-11-12 22:28:03 +00004093 if (!Base.getLValueBase()) return Success(0, E);
John McCall42c8f872010-05-10 23:27:23 +00004094
Richard Smith1bf9a9e2011-11-12 22:28:03 +00004095 QualType T = GetObjectType(Base.getLValueBase());
John McCall42c8f872010-05-10 23:27:23 +00004096 if (T.isNull() ||
4097 T->isIncompleteType() ||
Eli Friedman13578692010-08-05 02:49:48 +00004098 T->isFunctionType() ||
John McCall42c8f872010-05-10 23:27:23 +00004099 T->isVariablyModifiedType() ||
4100 T->isDependentType())
Richard Smithf48fdb02011-12-09 22:58:01 +00004101 return Error(E);
John McCall42c8f872010-05-10 23:27:23 +00004102
4103 CharUnits Size = Info.Ctx.getTypeSizeInChars(T);
4104 CharUnits Offset = Base.getLValueOffset();
4105
4106 if (!Offset.isNegative() && Offset <= Size)
4107 Size -= Offset;
4108 else
4109 Size = CharUnits::Zero();
Ken Dyck4f3bc8f2011-03-11 02:13:43 +00004110 return Success(Size, E);
John McCall42c8f872010-05-10 23:27:23 +00004111}
4112
Peter Collingbourne8cad3042011-05-13 03:29:01 +00004113bool IntExprEvaluator::VisitCallExpr(const CallExpr *E) {
Richard Smith180f4792011-11-10 06:34:14 +00004114 switch (E->isBuiltinCall()) {
Chris Lattner019f4e82008-10-06 05:28:25 +00004115 default:
Peter Collingbourne8cad3042011-05-13 03:29:01 +00004116 return ExprEvaluatorBaseTy::VisitCallExpr(E);
Mike Stump64eda9e2009-10-26 18:35:08 +00004117
4118 case Builtin::BI__builtin_object_size: {
John McCall42c8f872010-05-10 23:27:23 +00004119 if (TryEvaluateBuiltinObjectSize(E))
4120 return true;
Mike Stump64eda9e2009-10-26 18:35:08 +00004121
Eric Christopherb2aaf512010-01-19 22:58:35 +00004122 // If evaluating the argument has side-effects we can't determine
4123 // the size of the object and lower it to unknown now.
Fariborz Jahanian393c2472009-11-05 18:03:03 +00004124 if (E->getArg(0)->HasSideEffects(Info.Ctx)) {
Richard Smitha6b8b2c2011-10-10 18:28:20 +00004125 if (E->getArg(1)->EvaluateKnownConstInt(Info.Ctx).getZExtValue() <= 1)
Chris Lattnercf184652009-11-03 19:48:51 +00004126 return Success(-1ULL, E);
Mike Stump64eda9e2009-10-26 18:35:08 +00004127 return Success(0, E);
4128 }
Mike Stumpc4c90452009-10-27 22:09:17 +00004129
Richard Smithf48fdb02011-12-09 22:58:01 +00004130 return Error(E);
Mike Stump64eda9e2009-10-26 18:35:08 +00004131 }
4132
Chris Lattner019f4e82008-10-06 05:28:25 +00004133 case Builtin::BI__builtin_classify_type:
Daniel Dunbar131eb432009-02-19 09:06:44 +00004134 return Success(EvaluateBuiltinClassifyType(E), E);
Mike Stump1eb44332009-09-09 15:08:12 +00004135
Richard Smith80d4b552011-12-28 19:48:30 +00004136 case Builtin::BI__builtin_constant_p:
4137 return Success(EvaluateBuiltinConstantP(Info.Ctx, E->getArg(0)), E);
Richard Smithe052d462011-12-09 02:04:48 +00004138
Chris Lattner21fb98e2009-09-23 06:06:36 +00004139 case Builtin::BI__builtin_eh_return_data_regno: {
Richard Smitha6b8b2c2011-10-10 18:28:20 +00004140 int Operand = E->getArg(0)->EvaluateKnownConstInt(Info.Ctx).getZExtValue();
Douglas Gregorbcfd1f52011-09-02 00:18:52 +00004141 Operand = Info.Ctx.getTargetInfo().getEHDataRegisterNumber(Operand);
Chris Lattner21fb98e2009-09-23 06:06:36 +00004142 return Success(Operand, E);
4143 }
Eli Friedmanc4a26382010-02-13 00:10:10 +00004144
4145 case Builtin::BI__builtin_expect:
4146 return Visit(E->getArg(0));
Richard Smith40b993a2012-01-18 03:06:12 +00004147
Douglas Gregor5726d402010-09-10 06:27:15 +00004148 case Builtin::BIstrlen:
Richard Smith40b993a2012-01-18 03:06:12 +00004149 // A call to strlen is not a constant expression.
4150 if (Info.getLangOpts().CPlusPlus0x)
4151 Info.CCEDiag(E->getExprLoc(), diag::note_constexpr_invalid_function)
4152 << /*isConstexpr*/0 << /*isConstructor*/0 << "'strlen'";
4153 else
4154 Info.CCEDiag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
4155 // Fall through.
Douglas Gregor5726d402010-09-10 06:27:15 +00004156 case Builtin::BI__builtin_strlen:
4157 // As an extension, we support strlen() and __builtin_strlen() as constant
4158 // expressions when the argument is a string literal.
Peter Collingbourne8cad3042011-05-13 03:29:01 +00004159 if (const StringLiteral *S
Douglas Gregor5726d402010-09-10 06:27:15 +00004160 = dyn_cast<StringLiteral>(E->getArg(0)->IgnoreParenImpCasts())) {
4161 // The string literal may have embedded null characters. Find the first
4162 // one and truncate there.
Chris Lattner5f9e2722011-07-23 10:55:15 +00004163 StringRef Str = S->getString();
4164 StringRef::size_type Pos = Str.find(0);
4165 if (Pos != StringRef::npos)
Douglas Gregor5726d402010-09-10 06:27:15 +00004166 Str = Str.substr(0, Pos);
4167
4168 return Success(Str.size(), E);
4169 }
4170
Richard Smithf48fdb02011-12-09 22:58:01 +00004171 return Error(E);
Eli Friedman454b57a2011-10-17 21:44:23 +00004172
4173 case Builtin::BI__atomic_is_lock_free: {
4174 APSInt SizeVal;
4175 if (!EvaluateInteger(E->getArg(0), SizeVal, Info))
4176 return false;
4177
4178 // For __atomic_is_lock_free(sizeof(_Atomic(T))), if the size is a power
4179 // of two less than the maximum inline atomic width, we know it is
4180 // lock-free. If the size isn't a power of two, or greater than the
4181 // maximum alignment where we promote atomics, we know it is not lock-free
4182 // (at least not in the sense of atomic_is_lock_free). Otherwise,
4183 // the answer can only be determined at runtime; for example, 16-byte
4184 // atomics have lock-free implementations on some, but not all,
4185 // x86-64 processors.
4186
4187 // Check power-of-two.
4188 CharUnits Size = CharUnits::fromQuantity(SizeVal.getZExtValue());
4189 if (!Size.isPowerOfTwo())
4190#if 0
4191 // FIXME: Suppress this folding until the ABI for the promotion width
4192 // settles.
4193 return Success(0, E);
4194#else
Richard Smithf48fdb02011-12-09 22:58:01 +00004195 return Error(E);
Eli Friedman454b57a2011-10-17 21:44:23 +00004196#endif
4197
4198#if 0
4199 // Check against promotion width.
4200 // FIXME: Suppress this folding until the ABI for the promotion width
4201 // settles.
4202 unsigned PromoteWidthBits =
4203 Info.Ctx.getTargetInfo().getMaxAtomicPromoteWidth();
4204 if (Size > Info.Ctx.toCharUnitsFromBits(PromoteWidthBits))
4205 return Success(0, E);
4206#endif
4207
4208 // Check against inlining width.
4209 unsigned InlineWidthBits =
4210 Info.Ctx.getTargetInfo().getMaxAtomicInlineWidth();
4211 if (Size <= Info.Ctx.toCharUnitsFromBits(InlineWidthBits))
4212 return Success(1, E);
4213
Richard Smithf48fdb02011-12-09 22:58:01 +00004214 return Error(E);
Eli Friedman454b57a2011-10-17 21:44:23 +00004215 }
Chris Lattner019f4e82008-10-06 05:28:25 +00004216 }
Chris Lattner4c4867e2008-07-12 00:38:25 +00004217}
Anders Carlsson650c92f2008-07-08 15:34:11 +00004218
Richard Smith625b8072011-10-31 01:37:14 +00004219static bool HasSameBase(const LValue &A, const LValue &B) {
4220 if (!A.getLValueBase())
4221 return !B.getLValueBase();
4222 if (!B.getLValueBase())
4223 return false;
4224
Richard Smith1bf9a9e2011-11-12 22:28:03 +00004225 if (A.getLValueBase().getOpaqueValue() !=
4226 B.getLValueBase().getOpaqueValue()) {
Richard Smith625b8072011-10-31 01:37:14 +00004227 const Decl *ADecl = GetLValueBaseDecl(A);
4228 if (!ADecl)
4229 return false;
4230 const Decl *BDecl = GetLValueBaseDecl(B);
Richard Smith9a17a682011-11-07 05:07:52 +00004231 if (!BDecl || ADecl->getCanonicalDecl() != BDecl->getCanonicalDecl())
Richard Smith625b8072011-10-31 01:37:14 +00004232 return false;
4233 }
4234
4235 return IsGlobalLValue(A.getLValueBase()) ||
Richard Smith177dce72011-11-01 16:57:24 +00004236 A.getLValueFrame() == B.getLValueFrame();
Richard Smith625b8072011-10-31 01:37:14 +00004237}
4238
Richard Smith7b48a292012-02-01 05:53:12 +00004239/// Perform the given integer operation, which is known to need at most BitWidth
4240/// bits, and check for overflow in the original type (if that type was not an
4241/// unsigned type).
4242template<typename Operation>
4243static APSInt CheckedIntArithmetic(EvalInfo &Info, const Expr *E,
4244 const APSInt &LHS, const APSInt &RHS,
4245 unsigned BitWidth, Operation Op) {
4246 if (LHS.isUnsigned())
4247 return Op(LHS, RHS);
4248
4249 APSInt Value(Op(LHS.extend(BitWidth), RHS.extend(BitWidth)), false);
4250 APSInt Result = Value.trunc(LHS.getBitWidth());
4251 if (Result.extend(BitWidth) != Value)
4252 HandleOverflow(Info, E, Value, E->getType());
4253 return Result;
4254}
4255
Chris Lattnerb542afe2008-07-11 19:10:17 +00004256bool IntExprEvaluator::VisitBinaryOperator(const BinaryOperator *E) {
Richard Smithc49bd112011-10-28 17:51:58 +00004257 if (E->isAssignmentOp())
Richard Smithf48fdb02011-12-09 22:58:01 +00004258 return Error(E);
Richard Smithc49bd112011-10-28 17:51:58 +00004259
John McCall2de56d12010-08-25 11:45:40 +00004260 if (E->getOpcode() == BO_Comma) {
Richard Smith8327fad2011-10-24 18:44:57 +00004261 VisitIgnoredValue(E->getLHS());
4262 return Visit(E->getRHS());
Eli Friedmana6afa762008-11-13 06:09:17 +00004263 }
4264
4265 if (E->isLogicalOp()) {
4266 // These need to be handled specially because the operands aren't
4267 // necessarily integral
Anders Carlssonfcb4d092008-11-30 16:51:17 +00004268 bool lhsResult, rhsResult;
Mike Stump1eb44332009-09-09 15:08:12 +00004269
Richard Smithc49bd112011-10-28 17:51:58 +00004270 if (EvaluateAsBooleanCondition(E->getLHS(), lhsResult, Info)) {
Anders Carlsson51fe9962008-11-22 21:04:56 +00004271 // We were able to evaluate the LHS, see if we can get away with not
4272 // evaluating the RHS: 0 && X -> 0, 1 || X -> 1
John McCall2de56d12010-08-25 11:45:40 +00004273 if (lhsResult == (E->getOpcode() == BO_LOr))
Daniel Dunbar3f7d9952009-02-19 18:37:50 +00004274 return Success(lhsResult, E);
Anders Carlsson4bbc0e02008-11-24 04:21:33 +00004275
Richard Smithc49bd112011-10-28 17:51:58 +00004276 if (EvaluateAsBooleanCondition(E->getRHS(), rhsResult, Info)) {
John McCall2de56d12010-08-25 11:45:40 +00004277 if (E->getOpcode() == BO_LOr)
Daniel Dunbar131eb432009-02-19 09:06:44 +00004278 return Success(lhsResult || rhsResult, E);
Anders Carlsson4bbc0e02008-11-24 04:21:33 +00004279 else
Daniel Dunbar131eb432009-02-19 09:06:44 +00004280 return Success(lhsResult && rhsResult, E);
Anders Carlsson4bbc0e02008-11-24 04:21:33 +00004281 }
4282 } else {
Richard Smithf48fdb02011-12-09 22:58:01 +00004283 // FIXME: If both evaluations fail, we should produce the diagnostic from
4284 // the LHS. If the LHS is non-constant and the RHS is unevaluatable, it's
4285 // less clear how to diagnose this.
Richard Smithc49bd112011-10-28 17:51:58 +00004286 if (EvaluateAsBooleanCondition(E->getRHS(), rhsResult, Info)) {
Anders Carlsson4bbc0e02008-11-24 04:21:33 +00004287 // We can't evaluate the LHS; however, sometimes the result
4288 // is determined by the RHS: X && 0 -> 0, X || 1 -> 1.
Richard Smithf48fdb02011-12-09 22:58:01 +00004289 if (rhsResult == (E->getOpcode() == BO_LOr)) {
Daniel Dunbar131eb432009-02-19 09:06:44 +00004290 // Since we weren't able to evaluate the left hand side, it
Anders Carlssonfcb4d092008-11-30 16:51:17 +00004291 // must have had side effects.
Richard Smith1e12c592011-10-16 21:26:27 +00004292 Info.EvalStatus.HasSideEffects = true;
Daniel Dunbar131eb432009-02-19 09:06:44 +00004293
4294 return Success(rhsResult, E);
Anders Carlsson4bbc0e02008-11-24 04:21:33 +00004295 }
4296 }
Anders Carlsson51fe9962008-11-22 21:04:56 +00004297 }
Eli Friedmana6afa762008-11-13 06:09:17 +00004298
Eli Friedmana6afa762008-11-13 06:09:17 +00004299 return false;
4300 }
4301
Anders Carlsson286f85e2008-11-16 07:17:21 +00004302 QualType LHSTy = E->getLHS()->getType();
4303 QualType RHSTy = E->getRHS()->getType();
Daniel Dunbar4087e242009-01-29 06:43:41 +00004304
4305 if (LHSTy->isAnyComplexType()) {
4306 assert(RHSTy->isAnyComplexType() && "Invalid comparison");
John McCallf4cf1a12010-05-07 17:22:02 +00004307 ComplexValue LHS, RHS;
Daniel Dunbar4087e242009-01-29 06:43:41 +00004308
Richard Smith745f5142012-01-27 01:14:48 +00004309 bool LHSOK = EvaluateComplex(E->getLHS(), LHS, Info);
4310 if (!LHSOK && !Info.keepEvaluatingAfterFailure())
Daniel Dunbar4087e242009-01-29 06:43:41 +00004311 return false;
4312
Richard Smith745f5142012-01-27 01:14:48 +00004313 if (!EvaluateComplex(E->getRHS(), RHS, Info) || !LHSOK)
Daniel Dunbar4087e242009-01-29 06:43:41 +00004314 return false;
4315
4316 if (LHS.isComplexFloat()) {
Mike Stump1eb44332009-09-09 15:08:12 +00004317 APFloat::cmpResult CR_r =
Daniel Dunbar4087e242009-01-29 06:43:41 +00004318 LHS.getComplexFloatReal().compare(RHS.getComplexFloatReal());
Mike Stump1eb44332009-09-09 15:08:12 +00004319 APFloat::cmpResult CR_i =
Daniel Dunbar4087e242009-01-29 06:43:41 +00004320 LHS.getComplexFloatImag().compare(RHS.getComplexFloatImag());
4321
John McCall2de56d12010-08-25 11:45:40 +00004322 if (E->getOpcode() == BO_EQ)
Daniel Dunbar131eb432009-02-19 09:06:44 +00004323 return Success((CR_r == APFloat::cmpEqual &&
4324 CR_i == APFloat::cmpEqual), E);
4325 else {
John McCall2de56d12010-08-25 11:45:40 +00004326 assert(E->getOpcode() == BO_NE &&
Daniel Dunbar131eb432009-02-19 09:06:44 +00004327 "Invalid complex comparison.");
Mike Stump1eb44332009-09-09 15:08:12 +00004328 return Success(((CR_r == APFloat::cmpGreaterThan ||
Mon P Wangfc39dc42010-04-29 05:53:29 +00004329 CR_r == APFloat::cmpLessThan ||
4330 CR_r == APFloat::cmpUnordered) ||
Mike Stump1eb44332009-09-09 15:08:12 +00004331 (CR_i == APFloat::cmpGreaterThan ||
Mon P Wangfc39dc42010-04-29 05:53:29 +00004332 CR_i == APFloat::cmpLessThan ||
4333 CR_i == APFloat::cmpUnordered)), E);
Daniel Dunbar131eb432009-02-19 09:06:44 +00004334 }
Daniel Dunbar4087e242009-01-29 06:43:41 +00004335 } else {
John McCall2de56d12010-08-25 11:45:40 +00004336 if (E->getOpcode() == BO_EQ)
Daniel Dunbar131eb432009-02-19 09:06:44 +00004337 return Success((LHS.getComplexIntReal() == RHS.getComplexIntReal() &&
4338 LHS.getComplexIntImag() == RHS.getComplexIntImag()), E);
4339 else {
John McCall2de56d12010-08-25 11:45:40 +00004340 assert(E->getOpcode() == BO_NE &&
Daniel Dunbar131eb432009-02-19 09:06:44 +00004341 "Invalid compex comparison.");
4342 return Success((LHS.getComplexIntReal() != RHS.getComplexIntReal() ||
4343 LHS.getComplexIntImag() != RHS.getComplexIntImag()), E);
4344 }
Daniel Dunbar4087e242009-01-29 06:43:41 +00004345 }
4346 }
Mike Stump1eb44332009-09-09 15:08:12 +00004347
Anders Carlsson286f85e2008-11-16 07:17:21 +00004348 if (LHSTy->isRealFloatingType() &&
4349 RHSTy->isRealFloatingType()) {
4350 APFloat RHS(0.0), LHS(0.0);
Mike Stump1eb44332009-09-09 15:08:12 +00004351
Richard Smith745f5142012-01-27 01:14:48 +00004352 bool LHSOK = EvaluateFloat(E->getRHS(), RHS, Info);
4353 if (!LHSOK && !Info.keepEvaluatingAfterFailure())
Anders Carlsson286f85e2008-11-16 07:17:21 +00004354 return false;
Mike Stump1eb44332009-09-09 15:08:12 +00004355
Richard Smith745f5142012-01-27 01:14:48 +00004356 if (!EvaluateFloat(E->getLHS(), LHS, Info) || !LHSOK)
Anders Carlsson286f85e2008-11-16 07:17:21 +00004357 return false;
Mike Stump1eb44332009-09-09 15:08:12 +00004358
Anders Carlsson286f85e2008-11-16 07:17:21 +00004359 APFloat::cmpResult CR = LHS.compare(RHS);
Anders Carlsson529569e2008-11-16 22:46:56 +00004360
Anders Carlsson286f85e2008-11-16 07:17:21 +00004361 switch (E->getOpcode()) {
4362 default:
David Blaikieb219cfc2011-09-23 05:06:16 +00004363 llvm_unreachable("Invalid binary operator!");
John McCall2de56d12010-08-25 11:45:40 +00004364 case BO_LT:
Daniel Dunbar131eb432009-02-19 09:06:44 +00004365 return Success(CR == APFloat::cmpLessThan, E);
John McCall2de56d12010-08-25 11:45:40 +00004366 case BO_GT:
Daniel Dunbar131eb432009-02-19 09:06:44 +00004367 return Success(CR == APFloat::cmpGreaterThan, E);
John McCall2de56d12010-08-25 11:45:40 +00004368 case BO_LE:
Daniel Dunbar131eb432009-02-19 09:06:44 +00004369 return Success(CR == APFloat::cmpLessThan || CR == APFloat::cmpEqual, E);
John McCall2de56d12010-08-25 11:45:40 +00004370 case BO_GE:
Mike Stump1eb44332009-09-09 15:08:12 +00004371 return Success(CR == APFloat::cmpGreaterThan || CR == APFloat::cmpEqual,
Daniel Dunbar131eb432009-02-19 09:06:44 +00004372 E);
John McCall2de56d12010-08-25 11:45:40 +00004373 case BO_EQ:
Daniel Dunbar131eb432009-02-19 09:06:44 +00004374 return Success(CR == APFloat::cmpEqual, E);
John McCall2de56d12010-08-25 11:45:40 +00004375 case BO_NE:
Mike Stump1eb44332009-09-09 15:08:12 +00004376 return Success(CR == APFloat::cmpGreaterThan
Mon P Wangfc39dc42010-04-29 05:53:29 +00004377 || CR == APFloat::cmpLessThan
4378 || CR == APFloat::cmpUnordered, E);
Anders Carlsson286f85e2008-11-16 07:17:21 +00004379 }
Anders Carlsson286f85e2008-11-16 07:17:21 +00004380 }
Mike Stump1eb44332009-09-09 15:08:12 +00004381
Eli Friedmanad02d7d2009-04-28 19:17:36 +00004382 if (LHSTy->isPointerType() && RHSTy->isPointerType()) {
Richard Smith625b8072011-10-31 01:37:14 +00004383 if (E->getOpcode() == BO_Sub || E->isComparisonOp()) {
Richard Smith745f5142012-01-27 01:14:48 +00004384 LValue LHSValue, RHSValue;
4385
4386 bool LHSOK = EvaluatePointer(E->getLHS(), LHSValue, Info);
4387 if (!LHSOK && Info.keepEvaluatingAfterFailure())
Anders Carlsson3068d112008-11-16 19:01:22 +00004388 return false;
Eli Friedmana1f47c42009-03-23 04:38:34 +00004389
Richard Smith745f5142012-01-27 01:14:48 +00004390 if (!EvaluatePointer(E->getRHS(), RHSValue, Info) || !LHSOK)
Anders Carlsson3068d112008-11-16 19:01:22 +00004391 return false;
Eli Friedmana1f47c42009-03-23 04:38:34 +00004392
Richard Smith625b8072011-10-31 01:37:14 +00004393 // Reject differing bases from the normal codepath; we special-case
4394 // comparisons to null.
4395 if (!HasSameBase(LHSValue, RHSValue)) {
Eli Friedman65639282012-01-04 23:13:47 +00004396 if (E->getOpcode() == BO_Sub) {
4397 // Handle &&A - &&B.
Eli Friedman65639282012-01-04 23:13:47 +00004398 if (!LHSValue.Offset.isZero() || !RHSValue.Offset.isZero())
4399 return false;
4400 const Expr *LHSExpr = LHSValue.Base.dyn_cast<const Expr*>();
4401 const Expr *RHSExpr = LHSValue.Base.dyn_cast<const Expr*>();
4402 if (!LHSExpr || !RHSExpr)
4403 return false;
4404 const AddrLabelExpr *LHSAddrExpr = dyn_cast<AddrLabelExpr>(LHSExpr);
4405 const AddrLabelExpr *RHSAddrExpr = dyn_cast<AddrLabelExpr>(RHSExpr);
4406 if (!LHSAddrExpr || !RHSAddrExpr)
4407 return false;
Eli Friedman5930a4c2012-01-05 23:59:40 +00004408 // Make sure both labels come from the same function.
4409 if (LHSAddrExpr->getLabel()->getDeclContext() !=
4410 RHSAddrExpr->getLabel()->getDeclContext())
4411 return false;
Eli Friedman65639282012-01-04 23:13:47 +00004412 Result = CCValue(LHSAddrExpr, RHSAddrExpr);
4413 return true;
4414 }
Richard Smith9e36b532011-10-31 05:11:32 +00004415 // Inequalities and subtractions between unrelated pointers have
4416 // unspecified or undefined behavior.
Eli Friedman5bc86102009-06-14 02:17:33 +00004417 if (!E->isEqualityOp())
Richard Smithf48fdb02011-12-09 22:58:01 +00004418 return Error(E);
Eli Friedmanffbda402011-10-31 22:28:05 +00004419 // A constant address may compare equal to the address of a symbol.
4420 // The one exception is that address of an object cannot compare equal
Eli Friedmanc45061b2011-10-31 22:54:30 +00004421 // to a null pointer constant.
Eli Friedmanffbda402011-10-31 22:28:05 +00004422 if ((!LHSValue.Base && !LHSValue.Offset.isZero()) ||
4423 (!RHSValue.Base && !RHSValue.Offset.isZero()))
Richard Smithf48fdb02011-12-09 22:58:01 +00004424 return Error(E);
Richard Smith9e36b532011-10-31 05:11:32 +00004425 // It's implementation-defined whether distinct literals will have
Richard Smithb02e4622012-02-01 01:42:44 +00004426 // distinct addresses. In clang, the result of such a comparison is
4427 // unspecified, so it is not a constant expression. However, we do know
4428 // that the address of a literal will be non-null.
Richard Smith74f46342011-11-04 01:10:57 +00004429 if ((IsLiteralLValue(LHSValue) || IsLiteralLValue(RHSValue)) &&
4430 LHSValue.Base && RHSValue.Base)
Richard Smithf48fdb02011-12-09 22:58:01 +00004431 return Error(E);
Richard Smith9e36b532011-10-31 05:11:32 +00004432 // We can't tell whether weak symbols will end up pointing to the same
4433 // object.
4434 if (IsWeakLValue(LHSValue) || IsWeakLValue(RHSValue))
Richard Smithf48fdb02011-12-09 22:58:01 +00004435 return Error(E);
Richard Smith9e36b532011-10-31 05:11:32 +00004436 // Pointers with different bases cannot represent the same object.
Eli Friedmanc45061b2011-10-31 22:54:30 +00004437 // (Note that clang defaults to -fmerge-all-constants, which can
4438 // lead to inconsistent results for comparisons involving the address
4439 // of a constant; this generally doesn't matter in practice.)
Richard Smith9e36b532011-10-31 05:11:32 +00004440 return Success(E->getOpcode() == BO_NE, E);
Eli Friedman5bc86102009-06-14 02:17:33 +00004441 }
Eli Friedmana1f47c42009-03-23 04:38:34 +00004442
Richard Smith15efc4d2012-02-01 08:10:20 +00004443 const CharUnits &LHSOffset = LHSValue.getLValueOffset();
4444 const CharUnits &RHSOffset = RHSValue.getLValueOffset();
4445
Richard Smithf15fda02012-02-02 01:16:57 +00004446 SubobjectDesignator &LHSDesignator = LHSValue.getLValueDesignator();
4447 SubobjectDesignator &RHSDesignator = RHSValue.getLValueDesignator();
4448
John McCall2de56d12010-08-25 11:45:40 +00004449 if (E->getOpcode() == BO_Sub) {
Richard Smithf15fda02012-02-02 01:16:57 +00004450 // C++11 [expr.add]p6:
4451 // Unless both pointers point to elements of the same array object, or
4452 // one past the last element of the array object, the behavior is
4453 // undefined.
4454 if (!LHSDesignator.Invalid && !RHSDesignator.Invalid &&
4455 !AreElementsOfSameArray(getType(LHSValue.Base),
4456 LHSDesignator, RHSDesignator))
4457 CCEDiag(E, diag::note_constexpr_pointer_subtraction_not_same_array);
4458
Chris Lattner4992bdd2010-04-20 17:13:14 +00004459 QualType Type = E->getLHS()->getType();
4460 QualType ElementType = Type->getAs<PointerType>()->getPointeeType();
Anders Carlsson3068d112008-11-16 19:01:22 +00004461
Richard Smith180f4792011-11-10 06:34:14 +00004462 CharUnits ElementSize;
4463 if (!HandleSizeof(Info, ElementType, ElementSize))
4464 return false;
Eli Friedmana1f47c42009-03-23 04:38:34 +00004465
Richard Smith15efc4d2012-02-01 08:10:20 +00004466 // FIXME: LLVM and GCC both compute LHSOffset - RHSOffset at runtime,
4467 // and produce incorrect results when it overflows. Such behavior
4468 // appears to be non-conforming, but is common, so perhaps we should
4469 // assume the standard intended for such cases to be undefined behavior
4470 // and check for them.
Richard Smith625b8072011-10-31 01:37:14 +00004471
Richard Smith15efc4d2012-02-01 08:10:20 +00004472 // Compute (LHSOffset - RHSOffset) / Size carefully, checking for
4473 // overflow in the final conversion to ptrdiff_t.
4474 APSInt LHS(
4475 llvm::APInt(65, (int64_t)LHSOffset.getQuantity(), true), false);
4476 APSInt RHS(
4477 llvm::APInt(65, (int64_t)RHSOffset.getQuantity(), true), false);
4478 APSInt ElemSize(
4479 llvm::APInt(65, (int64_t)ElementSize.getQuantity(), true), false);
4480 APSInt TrueResult = (LHS - RHS) / ElemSize;
4481 APSInt Result = TrueResult.trunc(Info.Ctx.getIntWidth(E->getType()));
4482
4483 if (Result.extend(65) != TrueResult)
4484 HandleOverflow(Info, E, TrueResult, E->getType());
4485 return Success(Result, E);
4486 }
Richard Smith82f28582012-01-31 06:41:30 +00004487
4488 // C++11 [expr.rel]p3:
4489 // Pointers to void (after pointer conversions) can be compared, with a
4490 // result defined as follows: If both pointers represent the same
4491 // address or are both the null pointer value, the result is true if the
4492 // operator is <= or >= and false otherwise; otherwise the result is
4493 // unspecified.
4494 // We interpret this as applying to pointers to *cv* void.
4495 if (LHSTy->isVoidPointerType() && LHSOffset != RHSOffset &&
Richard Smithf15fda02012-02-02 01:16:57 +00004496 E->isRelationalOp())
Richard Smith82f28582012-01-31 06:41:30 +00004497 CCEDiag(E, diag::note_constexpr_void_comparison);
4498
Richard Smithf15fda02012-02-02 01:16:57 +00004499 // C++11 [expr.rel]p2:
4500 // - If two pointers point to non-static data members of the same object,
4501 // or to subobjects or array elements fo such members, recursively, the
4502 // pointer to the later declared member compares greater provided the
4503 // two members have the same access control and provided their class is
4504 // not a union.
4505 // [...]
4506 // - Otherwise pointer comparisons are unspecified.
4507 if (!LHSDesignator.Invalid && !RHSDesignator.Invalid &&
4508 E->isRelationalOp()) {
4509 bool WasArrayIndex;
4510 unsigned Mismatch =
4511 FindDesignatorMismatch(getType(LHSValue.Base), LHSDesignator,
4512 RHSDesignator, WasArrayIndex);
4513 // At the point where the designators diverge, the comparison has a
4514 // specified value if:
4515 // - we are comparing array indices
4516 // - we are comparing fields of a union, or fields with the same access
4517 // Otherwise, the result is unspecified and thus the comparison is not a
4518 // constant expression.
4519 if (!WasArrayIndex && Mismatch < LHSDesignator.Entries.size() &&
4520 Mismatch < RHSDesignator.Entries.size()) {
4521 const FieldDecl *LF = getAsField(LHSDesignator.Entries[Mismatch]);
4522 const FieldDecl *RF = getAsField(RHSDesignator.Entries[Mismatch]);
4523 if (!LF && !RF)
4524 CCEDiag(E, diag::note_constexpr_pointer_comparison_base_classes);
4525 else if (!LF)
4526 CCEDiag(E, diag::note_constexpr_pointer_comparison_base_field)
4527 << getAsBaseClass(LHSDesignator.Entries[Mismatch])
4528 << RF->getParent() << RF;
4529 else if (!RF)
4530 CCEDiag(E, diag::note_constexpr_pointer_comparison_base_field)
4531 << getAsBaseClass(RHSDesignator.Entries[Mismatch])
4532 << LF->getParent() << LF;
4533 else if (!LF->getParent()->isUnion() &&
4534 LF->getAccess() != RF->getAccess())
4535 CCEDiag(E, diag::note_constexpr_pointer_comparison_differing_access)
4536 << LF << LF->getAccess() << RF << RF->getAccess()
4537 << LF->getParent();
4538 }
4539 }
4540
Richard Smith625b8072011-10-31 01:37:14 +00004541 switch (E->getOpcode()) {
4542 default: llvm_unreachable("missing comparison operator");
4543 case BO_LT: return Success(LHSOffset < RHSOffset, E);
4544 case BO_GT: return Success(LHSOffset > RHSOffset, E);
4545 case BO_LE: return Success(LHSOffset <= RHSOffset, E);
4546 case BO_GE: return Success(LHSOffset >= RHSOffset, E);
4547 case BO_EQ: return Success(LHSOffset == RHSOffset, E);
4548 case BO_NE: return Success(LHSOffset != RHSOffset, E);
Eli Friedmanad02d7d2009-04-28 19:17:36 +00004549 }
Anders Carlsson3068d112008-11-16 19:01:22 +00004550 }
4551 }
Richard Smithb02e4622012-02-01 01:42:44 +00004552
4553 if (LHSTy->isMemberPointerType()) {
4554 assert(E->isEqualityOp() && "unexpected member pointer operation");
4555 assert(RHSTy->isMemberPointerType() && "invalid comparison");
4556
4557 MemberPtr LHSValue, RHSValue;
4558
4559 bool LHSOK = EvaluateMemberPointer(E->getLHS(), LHSValue, Info);
4560 if (!LHSOK && Info.keepEvaluatingAfterFailure())
4561 return false;
4562
4563 if (!EvaluateMemberPointer(E->getRHS(), RHSValue, Info) || !LHSOK)
4564 return false;
4565
4566 // C++11 [expr.eq]p2:
4567 // If both operands are null, they compare equal. Otherwise if only one is
4568 // null, they compare unequal.
4569 if (!LHSValue.getDecl() || !RHSValue.getDecl()) {
4570 bool Equal = !LHSValue.getDecl() && !RHSValue.getDecl();
4571 return Success(E->getOpcode() == BO_EQ ? Equal : !Equal, E);
4572 }
4573
4574 // Otherwise if either is a pointer to a virtual member function, the
4575 // result is unspecified.
4576 if (const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(LHSValue.getDecl()))
4577 if (MD->isVirtual())
4578 CCEDiag(E, diag::note_constexpr_compare_virtual_mem_ptr) << MD;
4579 if (const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(RHSValue.getDecl()))
4580 if (MD->isVirtual())
4581 CCEDiag(E, diag::note_constexpr_compare_virtual_mem_ptr) << MD;
4582
4583 // Otherwise they compare equal if and only if they would refer to the
4584 // same member of the same most derived object or the same subobject if
4585 // they were dereferenced with a hypothetical object of the associated
4586 // class type.
4587 bool Equal = LHSValue == RHSValue;
4588 return Success(E->getOpcode() == BO_EQ ? Equal : !Equal, E);
4589 }
4590
Douglas Gregor2ade35e2010-06-16 00:17:44 +00004591 if (!LHSTy->isIntegralOrEnumerationType() ||
4592 !RHSTy->isIntegralOrEnumerationType()) {
Richard Smithe24f5fc2011-11-17 22:56:20 +00004593 // We can't continue from here for non-integral types.
4594 return ExprEvaluatorBaseTy::VisitBinaryOperator(E);
Eli Friedmana6afa762008-11-13 06:09:17 +00004595 }
4596
Anders Carlssona25ae3d2008-07-08 14:35:21 +00004597 // The LHS of a constant expr is always evaluated and needed.
Richard Smith47a1eed2011-10-29 20:57:55 +00004598 CCValue LHSVal;
Richard Smith745f5142012-01-27 01:14:48 +00004599
4600 bool LHSOK = EvaluateIntegerOrLValue(E->getLHS(), LHSVal, Info);
4601 if (!LHSOK && !Info.keepEvaluatingAfterFailure())
Richard Smithf48fdb02011-12-09 22:58:01 +00004602 return false;
Eli Friedmand9f4bcd2008-07-27 05:46:18 +00004603
Richard Smith745f5142012-01-27 01:14:48 +00004604 if (!Visit(E->getRHS()) || !LHSOK)
Daniel Dunbar30c37f42009-02-19 20:17:33 +00004605 return false;
Richard Smith745f5142012-01-27 01:14:48 +00004606
Richard Smith47a1eed2011-10-29 20:57:55 +00004607 CCValue &RHSVal = Result;
Eli Friedman42edd0d2009-03-24 01:14:50 +00004608
4609 // Handle cases like (unsigned long)&a + 4.
Richard Smithc49bd112011-10-28 17:51:58 +00004610 if (E->isAdditiveOp() && LHSVal.isLValue() && RHSVal.isInt()) {
Ken Dycka7305832010-01-15 12:37:54 +00004611 CharUnits AdditionalOffset = CharUnits::fromQuantity(
4612 RHSVal.getInt().getZExtValue());
John McCall2de56d12010-08-25 11:45:40 +00004613 if (E->getOpcode() == BO_Add)
Richard Smith47a1eed2011-10-29 20:57:55 +00004614 LHSVal.getLValueOffset() += AdditionalOffset;
Eli Friedman42edd0d2009-03-24 01:14:50 +00004615 else
Richard Smith47a1eed2011-10-29 20:57:55 +00004616 LHSVal.getLValueOffset() -= AdditionalOffset;
4617 Result = LHSVal;
Eli Friedman42edd0d2009-03-24 01:14:50 +00004618 return true;
4619 }
4620
4621 // Handle cases like 4 + (unsigned long)&a
John McCall2de56d12010-08-25 11:45:40 +00004622 if (E->getOpcode() == BO_Add &&
Richard Smithc49bd112011-10-28 17:51:58 +00004623 RHSVal.isLValue() && LHSVal.isInt()) {
Richard Smith47a1eed2011-10-29 20:57:55 +00004624 RHSVal.getLValueOffset() += CharUnits::fromQuantity(
4625 LHSVal.getInt().getZExtValue());
4626 // Note that RHSVal is Result.
Eli Friedman42edd0d2009-03-24 01:14:50 +00004627 return true;
4628 }
4629
Eli Friedman65639282012-01-04 23:13:47 +00004630 if (E->getOpcode() == BO_Sub && LHSVal.isLValue() && RHSVal.isLValue()) {
4631 // Handle (intptr_t)&&A - (intptr_t)&&B.
Eli Friedman65639282012-01-04 23:13:47 +00004632 if (!LHSVal.getLValueOffset().isZero() ||
4633 !RHSVal.getLValueOffset().isZero())
4634 return false;
4635 const Expr *LHSExpr = LHSVal.getLValueBase().dyn_cast<const Expr*>();
4636 const Expr *RHSExpr = RHSVal.getLValueBase().dyn_cast<const Expr*>();
4637 if (!LHSExpr || !RHSExpr)
4638 return false;
4639 const AddrLabelExpr *LHSAddrExpr = dyn_cast<AddrLabelExpr>(LHSExpr);
4640 const AddrLabelExpr *RHSAddrExpr = dyn_cast<AddrLabelExpr>(RHSExpr);
4641 if (!LHSAddrExpr || !RHSAddrExpr)
4642 return false;
Eli Friedman5930a4c2012-01-05 23:59:40 +00004643 // Make sure both labels come from the same function.
4644 if (LHSAddrExpr->getLabel()->getDeclContext() !=
4645 RHSAddrExpr->getLabel()->getDeclContext())
4646 return false;
Eli Friedman65639282012-01-04 23:13:47 +00004647 Result = CCValue(LHSAddrExpr, RHSAddrExpr);
4648 return true;
4649 }
4650
Eli Friedman42edd0d2009-03-24 01:14:50 +00004651 // All the following cases expect both operands to be an integer
Richard Smithc49bd112011-10-28 17:51:58 +00004652 if (!LHSVal.isInt() || !RHSVal.isInt())
Richard Smithf48fdb02011-12-09 22:58:01 +00004653 return Error(E);
Eli Friedmana6afa762008-11-13 06:09:17 +00004654
Richard Smithc49bd112011-10-28 17:51:58 +00004655 APSInt &LHS = LHSVal.getInt();
4656 APSInt &RHS = RHSVal.getInt();
Eli Friedman42edd0d2009-03-24 01:14:50 +00004657
Anders Carlssona25ae3d2008-07-08 14:35:21 +00004658 switch (E->getOpcode()) {
Chris Lattner32fea9d2008-11-12 07:43:42 +00004659 default:
Richard Smithf48fdb02011-12-09 22:58:01 +00004660 return Error(E);
Richard Smith7b48a292012-02-01 05:53:12 +00004661 case BO_Mul:
4662 return Success(CheckedIntArithmetic(Info, E, LHS, RHS,
4663 LHS.getBitWidth() * 2,
4664 std::multiplies<APSInt>()), E);
4665 case BO_Add:
4666 return Success(CheckedIntArithmetic(Info, E, LHS, RHS,
4667 LHS.getBitWidth() + 1,
4668 std::plus<APSInt>()), E);
4669 case BO_Sub:
4670 return Success(CheckedIntArithmetic(Info, E, LHS, RHS,
4671 LHS.getBitWidth() + 1,
4672 std::minus<APSInt>()), E);
Richard Smithc49bd112011-10-28 17:51:58 +00004673 case BO_And: return Success(LHS & RHS, E);
4674 case BO_Xor: return Success(LHS ^ RHS, E);
4675 case BO_Or: return Success(LHS | RHS, E);
John McCall2de56d12010-08-25 11:45:40 +00004676 case BO_Div:
John McCall2de56d12010-08-25 11:45:40 +00004677 case BO_Rem:
Chris Lattner54176fd2008-07-12 00:14:42 +00004678 if (RHS == 0)
Richard Smithf48fdb02011-12-09 22:58:01 +00004679 return Error(E, diag::note_expr_divide_by_zero);
Richard Smith3df61302012-01-31 23:24:19 +00004680 // Check for overflow case: INT_MIN / -1 or INT_MIN % -1. The latter is not
4681 // actually undefined behavior in C++11 due to a language defect.
4682 if (RHS.isNegative() && RHS.isAllOnesValue() &&
4683 LHS.isSigned() && LHS.isMinSignedValue())
4684 HandleOverflow(Info, E, -LHS.extend(LHS.getBitWidth() + 1), E->getType());
4685 return Success(E->getOpcode() == BO_Rem ? LHS % RHS : LHS / RHS, E);
John McCall2de56d12010-08-25 11:45:40 +00004686 case BO_Shl: {
Richard Smith789f9b62012-01-31 04:08:20 +00004687 // During constant-folding, a negative shift is an opposite shift. Such a
4688 // shift is not a constant expression.
John McCall091f23f2010-11-09 22:22:12 +00004689 if (RHS.isSigned() && RHS.isNegative()) {
Richard Smith789f9b62012-01-31 04:08:20 +00004690 CCEDiag(E, diag::note_constexpr_negative_shift) << RHS;
John McCall091f23f2010-11-09 22:22:12 +00004691 RHS = -RHS;
4692 goto shift_right;
4693 }
4694
4695 shift_left:
Richard Smith789f9b62012-01-31 04:08:20 +00004696 // C++11 [expr.shift]p1: Shift width must be less than the bit width of the
4697 // shifted type.
4698 unsigned SA = (unsigned) RHS.getLimitedValue(LHS.getBitWidth()-1);
4699 if (SA != RHS) {
4700 CCEDiag(E, diag::note_constexpr_large_shift)
4701 << RHS << E->getType() << LHS.getBitWidth();
4702 } else if (LHS.isSigned()) {
4703 // C++11 [expr.shift]p2: A signed left shift must have a non-negative
4704 // operand, and must not overflow.
4705 if (LHS.isNegative())
4706 CCEDiag(E, diag::note_constexpr_lshift_of_negative) << LHS;
4707 else if (LHS.countLeadingZeros() <= SA)
4708 HandleOverflow(Info, E, LHS.extend(LHS.getBitWidth() + SA) << SA,
4709 E->getType());
4710 }
4711
Richard Smithc49bd112011-10-28 17:51:58 +00004712 return Success(LHS << SA, E);
Daniel Dunbar3f7d9952009-02-19 18:37:50 +00004713 }
John McCall2de56d12010-08-25 11:45:40 +00004714 case BO_Shr: {
Richard Smith789f9b62012-01-31 04:08:20 +00004715 // During constant-folding, a negative shift is an opposite shift. Such a
4716 // shift is not a constant expression.
John McCall091f23f2010-11-09 22:22:12 +00004717 if (RHS.isSigned() && RHS.isNegative()) {
Richard Smith789f9b62012-01-31 04:08:20 +00004718 CCEDiag(E, diag::note_constexpr_negative_shift) << RHS;
John McCall091f23f2010-11-09 22:22:12 +00004719 RHS = -RHS;
4720 goto shift_left;
4721 }
4722
4723 shift_right:
Richard Smith789f9b62012-01-31 04:08:20 +00004724 // C++11 [expr.shift]p1: Shift width must be less than the bit width of the
4725 // shifted type.
4726 unsigned SA = (unsigned) RHS.getLimitedValue(LHS.getBitWidth()-1);
4727 if (SA != RHS)
4728 CCEDiag(E, diag::note_constexpr_large_shift)
4729 << RHS << E->getType() << LHS.getBitWidth();
4730
Richard Smithc49bd112011-10-28 17:51:58 +00004731 return Success(LHS >> SA, E);
Daniel Dunbar3f7d9952009-02-19 18:37:50 +00004732 }
Mike Stump1eb44332009-09-09 15:08:12 +00004733
Richard Smithc49bd112011-10-28 17:51:58 +00004734 case BO_LT: return Success(LHS < RHS, E);
4735 case BO_GT: return Success(LHS > RHS, E);
4736 case BO_LE: return Success(LHS <= RHS, E);
4737 case BO_GE: return Success(LHS >= RHS, E);
4738 case BO_EQ: return Success(LHS == RHS, E);
4739 case BO_NE: return Success(LHS != RHS, E);
Eli Friedmanb11e7782008-11-13 02:13:11 +00004740 }
Anders Carlssona25ae3d2008-07-08 14:35:21 +00004741}
4742
Ken Dyck8b752f12010-01-27 17:10:57 +00004743CharUnits IntExprEvaluator::GetAlignOfType(QualType T) {
Sebastian Redl5d484e82009-11-23 17:18:46 +00004744 // C++ [expr.sizeof]p2: "When applied to a reference or a reference type,
4745 // the result is the size of the referenced type."
4746 // C++ [expr.alignof]p3: "When alignof is applied to a reference type, the
4747 // result shall be the alignment of the referenced type."
4748 if (const ReferenceType *Ref = T->getAs<ReferenceType>())
4749 T = Ref->getPointeeType();
Chad Rosier9f1210c2011-07-26 07:03:04 +00004750
4751 // __alignof is defined to return the preferred alignment.
4752 return Info.Ctx.toCharUnitsFromBits(
4753 Info.Ctx.getPreferredTypeAlign(T.getTypePtr()));
Chris Lattnere9feb472009-01-24 21:09:06 +00004754}
4755
Ken Dyck8b752f12010-01-27 17:10:57 +00004756CharUnits IntExprEvaluator::GetAlignOfExpr(const Expr *E) {
Chris Lattneraf707ab2009-01-24 21:53:27 +00004757 E = E->IgnoreParens();
4758
4759 // alignof decl is always accepted, even if it doesn't make sense: we default
Mike Stump1eb44332009-09-09 15:08:12 +00004760 // to 1 in those cases.
Chris Lattneraf707ab2009-01-24 21:53:27 +00004761 if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(E))
Ken Dyck8b752f12010-01-27 17:10:57 +00004762 return Info.Ctx.getDeclAlign(DRE->getDecl(),
4763 /*RefAsPointee*/true);
Eli Friedmana1f47c42009-03-23 04:38:34 +00004764
Chris Lattneraf707ab2009-01-24 21:53:27 +00004765 if (const MemberExpr *ME = dyn_cast<MemberExpr>(E))
Ken Dyck8b752f12010-01-27 17:10:57 +00004766 return Info.Ctx.getDeclAlign(ME->getMemberDecl(),
4767 /*RefAsPointee*/true);
Chris Lattneraf707ab2009-01-24 21:53:27 +00004768
Chris Lattnere9feb472009-01-24 21:09:06 +00004769 return GetAlignOfType(E->getType());
4770}
4771
4772
Peter Collingbournef4e3cfb2011-03-11 19:24:49 +00004773/// VisitUnaryExprOrTypeTraitExpr - Evaluate a sizeof, alignof or vec_step with
4774/// a result as the expression's type.
4775bool IntExprEvaluator::VisitUnaryExprOrTypeTraitExpr(
4776 const UnaryExprOrTypeTraitExpr *E) {
4777 switch(E->getKind()) {
4778 case UETT_AlignOf: {
Chris Lattnere9feb472009-01-24 21:09:06 +00004779 if (E->isArgumentType())
Ken Dyck4f3bc8f2011-03-11 02:13:43 +00004780 return Success(GetAlignOfType(E->getArgumentType()), E);
Chris Lattnere9feb472009-01-24 21:09:06 +00004781 else
Ken Dyck4f3bc8f2011-03-11 02:13:43 +00004782 return Success(GetAlignOfExpr(E->getArgumentExpr()), E);
Chris Lattnere9feb472009-01-24 21:09:06 +00004783 }
Eli Friedmana1f47c42009-03-23 04:38:34 +00004784
Peter Collingbournef4e3cfb2011-03-11 19:24:49 +00004785 case UETT_VecStep: {
4786 QualType Ty = E->getTypeOfArgument();
Sebastian Redl05189992008-11-11 17:56:53 +00004787
Peter Collingbournef4e3cfb2011-03-11 19:24:49 +00004788 if (Ty->isVectorType()) {
4789 unsigned n = Ty->getAs<VectorType>()->getNumElements();
Eli Friedmana1f47c42009-03-23 04:38:34 +00004790
Peter Collingbournef4e3cfb2011-03-11 19:24:49 +00004791 // The vec_step built-in functions that take a 3-component
4792 // vector return 4. (OpenCL 1.1 spec 6.11.12)
4793 if (n == 3)
4794 n = 4;
Eli Friedmanf2da9df2009-01-24 22:19:05 +00004795
Peter Collingbournef4e3cfb2011-03-11 19:24:49 +00004796 return Success(n, E);
4797 } else
4798 return Success(1, E);
4799 }
4800
4801 case UETT_SizeOf: {
4802 QualType SrcTy = E->getTypeOfArgument();
4803 // C++ [expr.sizeof]p2: "When applied to a reference or a reference type,
4804 // the result is the size of the referenced type."
4805 // C++ [expr.alignof]p3: "When alignof is applied to a reference type, the
4806 // result shall be the alignment of the referenced type."
4807 if (const ReferenceType *Ref = SrcTy->getAs<ReferenceType>())
4808 SrcTy = Ref->getPointeeType();
4809
Richard Smith180f4792011-11-10 06:34:14 +00004810 CharUnits Sizeof;
4811 if (!HandleSizeof(Info, SrcTy, Sizeof))
Peter Collingbournef4e3cfb2011-03-11 19:24:49 +00004812 return false;
Richard Smith180f4792011-11-10 06:34:14 +00004813 return Success(Sizeof, E);
Peter Collingbournef4e3cfb2011-03-11 19:24:49 +00004814 }
4815 }
4816
4817 llvm_unreachable("unknown expr/type trait");
Chris Lattnerfcee0012008-07-11 21:24:13 +00004818}
4819
Peter Collingbourne8cad3042011-05-13 03:29:01 +00004820bool IntExprEvaluator::VisitOffsetOfExpr(const OffsetOfExpr *OOE) {
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004821 CharUnits Result;
Peter Collingbourne8cad3042011-05-13 03:29:01 +00004822 unsigned n = OOE->getNumComponents();
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004823 if (n == 0)
Richard Smithf48fdb02011-12-09 22:58:01 +00004824 return Error(OOE);
Peter Collingbourne8cad3042011-05-13 03:29:01 +00004825 QualType CurrentType = OOE->getTypeSourceInfo()->getType();
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004826 for (unsigned i = 0; i != n; ++i) {
4827 OffsetOfExpr::OffsetOfNode ON = OOE->getComponent(i);
4828 switch (ON.getKind()) {
4829 case OffsetOfExpr::OffsetOfNode::Array: {
Peter Collingbourne8cad3042011-05-13 03:29:01 +00004830 const Expr *Idx = OOE->getIndexExpr(ON.getArrayExprIndex());
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004831 APSInt IdxResult;
4832 if (!EvaluateInteger(Idx, IdxResult, Info))
4833 return false;
4834 const ArrayType *AT = Info.Ctx.getAsArrayType(CurrentType);
4835 if (!AT)
Richard Smithf48fdb02011-12-09 22:58:01 +00004836 return Error(OOE);
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004837 CurrentType = AT->getElementType();
4838 CharUnits ElementSize = Info.Ctx.getTypeSizeInChars(CurrentType);
4839 Result += IdxResult.getSExtValue() * ElementSize;
4840 break;
4841 }
Richard Smithf48fdb02011-12-09 22:58:01 +00004842
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004843 case OffsetOfExpr::OffsetOfNode::Field: {
4844 FieldDecl *MemberDecl = ON.getField();
4845 const RecordType *RT = CurrentType->getAs<RecordType>();
Richard Smithf48fdb02011-12-09 22:58:01 +00004846 if (!RT)
4847 return Error(OOE);
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004848 RecordDecl *RD = RT->getDecl();
4849 const ASTRecordLayout &RL = Info.Ctx.getASTRecordLayout(RD);
John McCallba4f5d52011-01-20 07:57:12 +00004850 unsigned i = MemberDecl->getFieldIndex();
Douglas Gregorcc8a5d52010-04-29 00:18:15 +00004851 assert(i < RL.getFieldCount() && "offsetof field in wrong type");
Ken Dyckfb1e3bc2011-01-18 01:56:16 +00004852 Result += Info.Ctx.toCharUnitsFromBits(RL.getFieldOffset(i));
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004853 CurrentType = MemberDecl->getType().getNonReferenceType();
4854 break;
4855 }
Richard Smithf48fdb02011-12-09 22:58:01 +00004856
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004857 case OffsetOfExpr::OffsetOfNode::Identifier:
4858 llvm_unreachable("dependent __builtin_offsetof");
Richard Smithf48fdb02011-12-09 22:58:01 +00004859
Douglas Gregorcc8a5d52010-04-29 00:18:15 +00004860 case OffsetOfExpr::OffsetOfNode::Base: {
4861 CXXBaseSpecifier *BaseSpec = ON.getBase();
4862 if (BaseSpec->isVirtual())
Richard Smithf48fdb02011-12-09 22:58:01 +00004863 return Error(OOE);
Douglas Gregorcc8a5d52010-04-29 00:18:15 +00004864
4865 // Find the layout of the class whose base we are looking into.
4866 const RecordType *RT = CurrentType->getAs<RecordType>();
Richard Smithf48fdb02011-12-09 22:58:01 +00004867 if (!RT)
4868 return Error(OOE);
Douglas Gregorcc8a5d52010-04-29 00:18:15 +00004869 RecordDecl *RD = RT->getDecl();
4870 const ASTRecordLayout &RL = Info.Ctx.getASTRecordLayout(RD);
4871
4872 // Find the base class itself.
4873 CurrentType = BaseSpec->getType();
4874 const RecordType *BaseRT = CurrentType->getAs<RecordType>();
4875 if (!BaseRT)
Richard Smithf48fdb02011-12-09 22:58:01 +00004876 return Error(OOE);
Douglas Gregorcc8a5d52010-04-29 00:18:15 +00004877
4878 // Add the offset to the base.
Ken Dyck7c7f8202011-01-26 02:17:08 +00004879 Result += RL.getBaseClassOffset(cast<CXXRecordDecl>(BaseRT->getDecl()));
Douglas Gregorcc8a5d52010-04-29 00:18:15 +00004880 break;
4881 }
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004882 }
4883 }
Peter Collingbourne8cad3042011-05-13 03:29:01 +00004884 return Success(Result, OOE);
Douglas Gregor8ecdb652010-04-28 22:16:22 +00004885}
4886
Chris Lattnerb542afe2008-07-11 19:10:17 +00004887bool IntExprEvaluator::VisitUnaryOperator(const UnaryOperator *E) {
Richard Smithf48fdb02011-12-09 22:58:01 +00004888 switch (E->getOpcode()) {
4889 default:
4890 // Address, indirect, pre/post inc/dec, etc are not valid constant exprs.
4891 // See C99 6.6p3.
4892 return Error(E);
4893 case UO_Extension:
4894 // FIXME: Should extension allow i-c-e extension expressions in its scope?
4895 // If so, we could clear the diagnostic ID.
4896 return Visit(E->getSubExpr());
4897 case UO_Plus:
4898 // The result is just the value.
4899 return Visit(E->getSubExpr());
4900 case UO_Minus: {
4901 if (!Visit(E->getSubExpr()))
4902 return false;
4903 if (!Result.isInt()) return Error(E);
Richard Smith789f9b62012-01-31 04:08:20 +00004904 const APSInt &Value = Result.getInt();
4905 if (Value.isSigned() && Value.isMinSignedValue())
4906 HandleOverflow(Info, E, -Value.extend(Value.getBitWidth() + 1),
4907 E->getType());
4908 return Success(-Value, E);
Richard Smithf48fdb02011-12-09 22:58:01 +00004909 }
4910 case UO_Not: {
4911 if (!Visit(E->getSubExpr()))
4912 return false;
4913 if (!Result.isInt()) return Error(E);
4914 return Success(~Result.getInt(), E);
4915 }
4916 case UO_LNot: {
Eli Friedmana6afa762008-11-13 06:09:17 +00004917 bool bres;
Richard Smithc49bd112011-10-28 17:51:58 +00004918 if (!EvaluateAsBooleanCondition(E->getSubExpr(), bres, Info))
Eli Friedmana6afa762008-11-13 06:09:17 +00004919 return false;
Daniel Dunbar131eb432009-02-19 09:06:44 +00004920 return Success(!bres, E);
Eli Friedmana6afa762008-11-13 06:09:17 +00004921 }
Anders Carlssona25ae3d2008-07-08 14:35:21 +00004922 }
Anders Carlssona25ae3d2008-07-08 14:35:21 +00004923}
Mike Stump1eb44332009-09-09 15:08:12 +00004924
Chris Lattner732b2232008-07-12 01:15:53 +00004925/// HandleCast - This is used to evaluate implicit or explicit casts where the
4926/// result type is integer.
Peter Collingbourne8cad3042011-05-13 03:29:01 +00004927bool IntExprEvaluator::VisitCastExpr(const CastExpr *E) {
4928 const Expr *SubExpr = E->getSubExpr();
Anders Carlsson82206e22008-11-30 18:14:57 +00004929 QualType DestType = E->getType();
Daniel Dunbarb92dac82009-02-19 22:16:29 +00004930 QualType SrcType = SubExpr->getType();
Anders Carlsson82206e22008-11-30 18:14:57 +00004931
Eli Friedman46a52322011-03-25 00:43:55 +00004932 switch (E->getCastKind()) {
Eli Friedman46a52322011-03-25 00:43:55 +00004933 case CK_BaseToDerived:
4934 case CK_DerivedToBase:
4935 case CK_UncheckedDerivedToBase:
4936 case CK_Dynamic:
4937 case CK_ToUnion:
4938 case CK_ArrayToPointerDecay:
4939 case CK_FunctionToPointerDecay:
4940 case CK_NullToPointer:
4941 case CK_NullToMemberPointer:
4942 case CK_BaseToDerivedMemberPointer:
4943 case CK_DerivedToBaseMemberPointer:
4944 case CK_ConstructorConversion:
4945 case CK_IntegralToPointer:
4946 case CK_ToVoid:
4947 case CK_VectorSplat:
4948 case CK_IntegralToFloating:
4949 case CK_FloatingCast:
John McCall1d9b3b22011-09-09 05:25:32 +00004950 case CK_CPointerToObjCPointerCast:
4951 case CK_BlockPointerToObjCPointerCast:
Eli Friedman46a52322011-03-25 00:43:55 +00004952 case CK_AnyPointerToBlockPointerCast:
4953 case CK_ObjCObjectLValueCast:
4954 case CK_FloatingRealToComplex:
4955 case CK_FloatingComplexToReal:
4956 case CK_FloatingComplexCast:
4957 case CK_FloatingComplexToIntegralComplex:
4958 case CK_IntegralRealToComplex:
4959 case CK_IntegralComplexCast:
4960 case CK_IntegralComplexToFloatingComplex:
4961 llvm_unreachable("invalid cast kind for integral value");
4962
Eli Friedmane50c2972011-03-25 19:07:11 +00004963 case CK_BitCast:
Eli Friedman46a52322011-03-25 00:43:55 +00004964 case CK_Dependent:
Eli Friedman46a52322011-03-25 00:43:55 +00004965 case CK_LValueBitCast:
John McCall33e56f32011-09-10 06:18:15 +00004966 case CK_ARCProduceObject:
4967 case CK_ARCConsumeObject:
4968 case CK_ARCReclaimReturnedObject:
4969 case CK_ARCExtendBlockObject:
Richard Smithf48fdb02011-12-09 22:58:01 +00004970 return Error(E);
Eli Friedman46a52322011-03-25 00:43:55 +00004971
Richard Smith7d580a42012-01-17 21:17:26 +00004972 case CK_UserDefinedConversion:
Eli Friedman46a52322011-03-25 00:43:55 +00004973 case CK_LValueToRValue:
David Chisnall7a7ee302012-01-16 17:27:18 +00004974 case CK_AtomicToNonAtomic:
4975 case CK_NonAtomicToAtomic:
Eli Friedman46a52322011-03-25 00:43:55 +00004976 case CK_NoOp:
Richard Smithc49bd112011-10-28 17:51:58 +00004977 return ExprEvaluatorBaseTy::VisitCastExpr(E);
Eli Friedman46a52322011-03-25 00:43:55 +00004978
4979 case CK_MemberPointerToBoolean:
4980 case CK_PointerToBoolean:
4981 case CK_IntegralToBoolean:
4982 case CK_FloatingToBoolean:
4983 case CK_FloatingComplexToBoolean:
4984 case CK_IntegralComplexToBoolean: {
Eli Friedman4efaa272008-11-12 09:44:48 +00004985 bool BoolResult;
Richard Smithc49bd112011-10-28 17:51:58 +00004986 if (!EvaluateAsBooleanCondition(SubExpr, BoolResult, Info))
Eli Friedman4efaa272008-11-12 09:44:48 +00004987 return false;
Daniel Dunbar131eb432009-02-19 09:06:44 +00004988 return Success(BoolResult, E);
Eli Friedman4efaa272008-11-12 09:44:48 +00004989 }
4990
Eli Friedman46a52322011-03-25 00:43:55 +00004991 case CK_IntegralCast: {
Chris Lattner732b2232008-07-12 01:15:53 +00004992 if (!Visit(SubExpr))
Chris Lattnerb542afe2008-07-11 19:10:17 +00004993 return false;
Daniel Dunbara2cfd342009-01-29 06:16:07 +00004994
Eli Friedmanbe265702009-02-20 01:15:07 +00004995 if (!Result.isInt()) {
Eli Friedman65639282012-01-04 23:13:47 +00004996 // Allow casts of address-of-label differences if they are no-ops
4997 // or narrowing. (The narrowing case isn't actually guaranteed to
4998 // be constant-evaluatable except in some narrow cases which are hard
4999 // to detect here. We let it through on the assumption the user knows
5000 // what they are doing.)
5001 if (Result.isAddrLabelDiff())
5002 return Info.Ctx.getTypeSize(DestType) <= Info.Ctx.getTypeSize(SrcType);
Eli Friedmanbe265702009-02-20 01:15:07 +00005003 // Only allow casts of lvalues if they are lossless.
5004 return Info.Ctx.getTypeSize(DestType) == Info.Ctx.getTypeSize(SrcType);
5005 }
Daniel Dunbar30c37f42009-02-19 20:17:33 +00005006
Richard Smithf72fccf2012-01-30 22:27:01 +00005007 return Success(HandleIntToIntCast(Info, E, DestType, SrcType,
5008 Result.getInt()), E);
Chris Lattner732b2232008-07-12 01:15:53 +00005009 }
Mike Stump1eb44332009-09-09 15:08:12 +00005010
Eli Friedman46a52322011-03-25 00:43:55 +00005011 case CK_PointerToIntegral: {
Richard Smithc216a012011-12-12 12:46:16 +00005012 CCEDiag(E, diag::note_constexpr_invalid_cast) << 2;
5013
John McCallefdb83e2010-05-07 21:00:08 +00005014 LValue LV;
Chris Lattner87eae5e2008-07-11 22:52:41 +00005015 if (!EvaluatePointer(SubExpr, LV, Info))
Chris Lattnerb542afe2008-07-11 19:10:17 +00005016 return false;
Eli Friedman4efaa272008-11-12 09:44:48 +00005017
Daniel Dunbardd211642009-02-19 22:24:01 +00005018 if (LV.getLValueBase()) {
5019 // Only allow based lvalue casts if they are lossless.
Richard Smithf72fccf2012-01-30 22:27:01 +00005020 // FIXME: Allow a larger integer size than the pointer size, and allow
5021 // narrowing back down to pointer width in subsequent integral casts.
5022 // FIXME: Check integer type's active bits, not its type size.
Daniel Dunbardd211642009-02-19 22:24:01 +00005023 if (Info.Ctx.getTypeSize(DestType) != Info.Ctx.getTypeSize(SrcType))
Richard Smithf48fdb02011-12-09 22:58:01 +00005024 return Error(E);
Eli Friedman4efaa272008-11-12 09:44:48 +00005025
Richard Smithb755a9d2011-11-16 07:18:12 +00005026 LV.Designator.setInvalid();
John McCallefdb83e2010-05-07 21:00:08 +00005027 LV.moveInto(Result);
Daniel Dunbardd211642009-02-19 22:24:01 +00005028 return true;
5029 }
5030
Ken Dycka7305832010-01-15 12:37:54 +00005031 APSInt AsInt = Info.Ctx.MakeIntValue(LV.getLValueOffset().getQuantity(),
5032 SrcType);
Richard Smithf72fccf2012-01-30 22:27:01 +00005033 return Success(HandleIntToIntCast(Info, E, DestType, SrcType, AsInt), E);
Anders Carlsson2bad1682008-07-08 14:30:00 +00005034 }
Eli Friedman4efaa272008-11-12 09:44:48 +00005035
Eli Friedman46a52322011-03-25 00:43:55 +00005036 case CK_IntegralComplexToReal: {
John McCallf4cf1a12010-05-07 17:22:02 +00005037 ComplexValue C;
Eli Friedman1725f682009-04-22 19:23:09 +00005038 if (!EvaluateComplex(SubExpr, C, Info))
5039 return false;
Eli Friedman46a52322011-03-25 00:43:55 +00005040 return Success(C.getComplexIntReal(), E);
Eli Friedman1725f682009-04-22 19:23:09 +00005041 }
Eli Friedman2217c872009-02-22 11:46:18 +00005042
Eli Friedman46a52322011-03-25 00:43:55 +00005043 case CK_FloatingToIntegral: {
5044 APFloat F(0.0);
5045 if (!EvaluateFloat(SubExpr, F, Info))
5046 return false;
Chris Lattner732b2232008-07-12 01:15:53 +00005047
Richard Smithc1c5f272011-12-13 06:39:58 +00005048 APSInt Value;
5049 if (!HandleFloatToIntCast(Info, E, SrcType, F, DestType, Value))
5050 return false;
5051 return Success(Value, E);
Eli Friedman46a52322011-03-25 00:43:55 +00005052 }
5053 }
Mike Stump1eb44332009-09-09 15:08:12 +00005054
Eli Friedman46a52322011-03-25 00:43:55 +00005055 llvm_unreachable("unknown cast resulting in integral value");
Anders Carlssona25ae3d2008-07-08 14:35:21 +00005056}
Anders Carlsson2bad1682008-07-08 14:30:00 +00005057
Eli Friedman722c7172009-02-28 03:59:05 +00005058bool IntExprEvaluator::VisitUnaryReal(const UnaryOperator *E) {
5059 if (E->getSubExpr()->getType()->isAnyComplexType()) {
John McCallf4cf1a12010-05-07 17:22:02 +00005060 ComplexValue LV;
Richard Smithf48fdb02011-12-09 22:58:01 +00005061 if (!EvaluateComplex(E->getSubExpr(), LV, Info))
5062 return false;
5063 if (!LV.isComplexInt())
5064 return Error(E);
Eli Friedman722c7172009-02-28 03:59:05 +00005065 return Success(LV.getComplexIntReal(), E);
5066 }
5067
5068 return Visit(E->getSubExpr());
5069}
5070
Eli Friedman664a1042009-02-27 04:45:43 +00005071bool IntExprEvaluator::VisitUnaryImag(const UnaryOperator *E) {
Eli Friedman722c7172009-02-28 03:59:05 +00005072 if (E->getSubExpr()->getType()->isComplexIntegerType()) {
John McCallf4cf1a12010-05-07 17:22:02 +00005073 ComplexValue LV;
Richard Smithf48fdb02011-12-09 22:58:01 +00005074 if (!EvaluateComplex(E->getSubExpr(), LV, Info))
5075 return false;
5076 if (!LV.isComplexInt())
5077 return Error(E);
Eli Friedman722c7172009-02-28 03:59:05 +00005078 return Success(LV.getComplexIntImag(), E);
5079 }
5080
Richard Smith8327fad2011-10-24 18:44:57 +00005081 VisitIgnoredValue(E->getSubExpr());
Eli Friedman664a1042009-02-27 04:45:43 +00005082 return Success(0, E);
5083}
5084
Douglas Gregoree8aff02011-01-04 17:33:58 +00005085bool IntExprEvaluator::VisitSizeOfPackExpr(const SizeOfPackExpr *E) {
5086 return Success(E->getPackLength(), E);
5087}
5088
Sebastian Redl295995c2010-09-10 20:55:47 +00005089bool IntExprEvaluator::VisitCXXNoexceptExpr(const CXXNoexceptExpr *E) {
5090 return Success(E->getValue(), E);
5091}
5092
Chris Lattnerf5eeb052008-07-11 18:11:29 +00005093//===----------------------------------------------------------------------===//
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005094// Float Evaluation
5095//===----------------------------------------------------------------------===//
5096
5097namespace {
Benjamin Kramer770b4a82009-11-28 19:03:38 +00005098class FloatExprEvaluator
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005099 : public ExprEvaluatorBase<FloatExprEvaluator, bool> {
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005100 APFloat &Result;
5101public:
5102 FloatExprEvaluator(EvalInfo &info, APFloat &result)
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005103 : ExprEvaluatorBaseTy(info), Result(result) {}
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005104
Richard Smith47a1eed2011-10-29 20:57:55 +00005105 bool Success(const CCValue &V, const Expr *e) {
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005106 Result = V.getFloat();
5107 return true;
5108 }
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005109
Richard Smith51201882011-12-30 21:15:51 +00005110 bool ZeroInitialization(const Expr *E) {
Richard Smithf10d9172011-10-11 21:43:33 +00005111 Result = APFloat::getZero(Info.Ctx.getFloatTypeSemantics(E->getType()));
5112 return true;
5113 }
5114
Chris Lattner019f4e82008-10-06 05:28:25 +00005115 bool VisitCallExpr(const CallExpr *E);
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005116
Daniel Dunbar5db4b3f2008-10-16 03:51:50 +00005117 bool VisitUnaryOperator(const UnaryOperator *E);
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005118 bool VisitBinaryOperator(const BinaryOperator *E);
5119 bool VisitFloatingLiteral(const FloatingLiteral *E);
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005120 bool VisitCastExpr(const CastExpr *E);
Eli Friedman2217c872009-02-22 11:46:18 +00005121
John McCallabd3a852010-05-07 22:08:54 +00005122 bool VisitUnaryReal(const UnaryOperator *E);
5123 bool VisitUnaryImag(const UnaryOperator *E);
Eli Friedmanba98d6b2009-03-23 04:56:01 +00005124
Richard Smith51201882011-12-30 21:15:51 +00005125 // FIXME: Missing: array subscript of vector, member of vector
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005126};
5127} // end anonymous namespace
5128
5129static bool EvaluateFloat(const Expr* E, APFloat& Result, EvalInfo &Info) {
Richard Smithc49bd112011-10-28 17:51:58 +00005130 assert(E->isRValue() && E->getType()->isRealFloatingType());
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005131 return FloatExprEvaluator(Info, Result).Visit(E);
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005132}
5133
Jay Foad4ba2a172011-01-12 09:06:06 +00005134static bool TryEvaluateBuiltinNaN(const ASTContext &Context,
John McCalldb7b72a2010-02-28 13:00:19 +00005135 QualType ResultTy,
5136 const Expr *Arg,
5137 bool SNaN,
5138 llvm::APFloat &Result) {
5139 const StringLiteral *S = dyn_cast<StringLiteral>(Arg->IgnoreParenCasts());
5140 if (!S) return false;
5141
5142 const llvm::fltSemantics &Sem = Context.getFloatTypeSemantics(ResultTy);
5143
5144 llvm::APInt fill;
5145
5146 // Treat empty strings as if they were zero.
5147 if (S->getString().empty())
5148 fill = llvm::APInt(32, 0);
5149 else if (S->getString().getAsInteger(0, fill))
5150 return false;
5151
5152 if (SNaN)
5153 Result = llvm::APFloat::getSNaN(Sem, false, &fill);
5154 else
5155 Result = llvm::APFloat::getQNaN(Sem, false, &fill);
5156 return true;
5157}
5158
Chris Lattner019f4e82008-10-06 05:28:25 +00005159bool FloatExprEvaluator::VisitCallExpr(const CallExpr *E) {
Richard Smith180f4792011-11-10 06:34:14 +00005160 switch (E->isBuiltinCall()) {
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005161 default:
5162 return ExprEvaluatorBaseTy::VisitCallExpr(E);
5163
Chris Lattner019f4e82008-10-06 05:28:25 +00005164 case Builtin::BI__builtin_huge_val:
5165 case Builtin::BI__builtin_huge_valf:
5166 case Builtin::BI__builtin_huge_vall:
5167 case Builtin::BI__builtin_inf:
5168 case Builtin::BI__builtin_inff:
Daniel Dunbar7cbed032008-10-14 05:41:12 +00005169 case Builtin::BI__builtin_infl: {
5170 const llvm::fltSemantics &Sem =
5171 Info.Ctx.getFloatTypeSemantics(E->getType());
Chris Lattner34a74ab2008-10-06 05:53:16 +00005172 Result = llvm::APFloat::getInf(Sem);
5173 return true;
Daniel Dunbar7cbed032008-10-14 05:41:12 +00005174 }
Mike Stump1eb44332009-09-09 15:08:12 +00005175
John McCalldb7b72a2010-02-28 13:00:19 +00005176 case Builtin::BI__builtin_nans:
5177 case Builtin::BI__builtin_nansf:
5178 case Builtin::BI__builtin_nansl:
Richard Smithf48fdb02011-12-09 22:58:01 +00005179 if (!TryEvaluateBuiltinNaN(Info.Ctx, E->getType(), E->getArg(0),
5180 true, Result))
5181 return Error(E);
5182 return true;
John McCalldb7b72a2010-02-28 13:00:19 +00005183
Chris Lattner9e621712008-10-06 06:31:58 +00005184 case Builtin::BI__builtin_nan:
5185 case Builtin::BI__builtin_nanf:
5186 case Builtin::BI__builtin_nanl:
Mike Stump4572bab2009-05-30 03:56:50 +00005187 // If this is __builtin_nan() turn this into a nan, otherwise we
Chris Lattner9e621712008-10-06 06:31:58 +00005188 // can't constant fold it.
Richard Smithf48fdb02011-12-09 22:58:01 +00005189 if (!TryEvaluateBuiltinNaN(Info.Ctx, E->getType(), E->getArg(0),
5190 false, Result))
5191 return Error(E);
5192 return true;
Daniel Dunbar5db4b3f2008-10-16 03:51:50 +00005193
5194 case Builtin::BI__builtin_fabs:
5195 case Builtin::BI__builtin_fabsf:
5196 case Builtin::BI__builtin_fabsl:
5197 if (!EvaluateFloat(E->getArg(0), Result, Info))
5198 return false;
Mike Stump1eb44332009-09-09 15:08:12 +00005199
Daniel Dunbar5db4b3f2008-10-16 03:51:50 +00005200 if (Result.isNegative())
5201 Result.changeSign();
5202 return true;
5203
Mike Stump1eb44332009-09-09 15:08:12 +00005204 case Builtin::BI__builtin_copysign:
5205 case Builtin::BI__builtin_copysignf:
Daniel Dunbar5db4b3f2008-10-16 03:51:50 +00005206 case Builtin::BI__builtin_copysignl: {
5207 APFloat RHS(0.);
5208 if (!EvaluateFloat(E->getArg(0), Result, Info) ||
5209 !EvaluateFloat(E->getArg(1), RHS, Info))
5210 return false;
5211 Result.copySign(RHS);
5212 return true;
5213 }
Chris Lattner019f4e82008-10-06 05:28:25 +00005214 }
5215}
5216
John McCallabd3a852010-05-07 22:08:54 +00005217bool FloatExprEvaluator::VisitUnaryReal(const UnaryOperator *E) {
Eli Friedman43efa312010-08-14 20:52:13 +00005218 if (E->getSubExpr()->getType()->isAnyComplexType()) {
5219 ComplexValue CV;
5220 if (!EvaluateComplex(E->getSubExpr(), CV, Info))
5221 return false;
5222 Result = CV.FloatReal;
5223 return true;
5224 }
5225
5226 return Visit(E->getSubExpr());
John McCallabd3a852010-05-07 22:08:54 +00005227}
5228
5229bool FloatExprEvaluator::VisitUnaryImag(const UnaryOperator *E) {
Eli Friedman43efa312010-08-14 20:52:13 +00005230 if (E->getSubExpr()->getType()->isAnyComplexType()) {
5231 ComplexValue CV;
5232 if (!EvaluateComplex(E->getSubExpr(), CV, Info))
5233 return false;
5234 Result = CV.FloatImag;
5235 return true;
5236 }
5237
Richard Smith8327fad2011-10-24 18:44:57 +00005238 VisitIgnoredValue(E->getSubExpr());
Eli Friedman43efa312010-08-14 20:52:13 +00005239 const llvm::fltSemantics &Sem = Info.Ctx.getFloatTypeSemantics(E->getType());
5240 Result = llvm::APFloat::getZero(Sem);
John McCallabd3a852010-05-07 22:08:54 +00005241 return true;
5242}
5243
Daniel Dunbar5db4b3f2008-10-16 03:51:50 +00005244bool FloatExprEvaluator::VisitUnaryOperator(const UnaryOperator *E) {
Daniel Dunbar5db4b3f2008-10-16 03:51:50 +00005245 switch (E->getOpcode()) {
Richard Smithf48fdb02011-12-09 22:58:01 +00005246 default: return Error(E);
John McCall2de56d12010-08-25 11:45:40 +00005247 case UO_Plus:
Richard Smith7993e8a2011-10-30 23:17:09 +00005248 return EvaluateFloat(E->getSubExpr(), Result, Info);
John McCall2de56d12010-08-25 11:45:40 +00005249 case UO_Minus:
Richard Smith7993e8a2011-10-30 23:17:09 +00005250 if (!EvaluateFloat(E->getSubExpr(), Result, Info))
5251 return false;
Daniel Dunbar5db4b3f2008-10-16 03:51:50 +00005252 Result.changeSign();
5253 return true;
5254 }
5255}
Chris Lattner019f4e82008-10-06 05:28:25 +00005256
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005257bool FloatExprEvaluator::VisitBinaryOperator(const BinaryOperator *E) {
Richard Smithe24f5fc2011-11-17 22:56:20 +00005258 if (E->isPtrMemOp() || E->isAssignmentOp() || E->getOpcode() == BO_Comma)
5259 return ExprEvaluatorBaseTy::VisitBinaryOperator(E);
Eli Friedman7f92f032009-11-16 04:25:37 +00005260
Daniel Dunbar5db4b3f2008-10-16 03:51:50 +00005261 APFloat RHS(0.0);
Richard Smith745f5142012-01-27 01:14:48 +00005262 bool LHSOK = EvaluateFloat(E->getLHS(), Result, Info);
5263 if (!LHSOK && !Info.keepEvaluatingAfterFailure())
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005264 return false;
Richard Smith745f5142012-01-27 01:14:48 +00005265 if (!EvaluateFloat(E->getRHS(), RHS, Info) || !LHSOK)
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005266 return false;
5267
5268 switch (E->getOpcode()) {
Richard Smithf48fdb02011-12-09 22:58:01 +00005269 default: return Error(E);
John McCall2de56d12010-08-25 11:45:40 +00005270 case BO_Mul:
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005271 Result.multiply(RHS, APFloat::rmNearestTiesToEven);
Richard Smith7b48a292012-02-01 05:53:12 +00005272 break;
John McCall2de56d12010-08-25 11:45:40 +00005273 case BO_Add:
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005274 Result.add(RHS, APFloat::rmNearestTiesToEven);
Richard Smith7b48a292012-02-01 05:53:12 +00005275 break;
John McCall2de56d12010-08-25 11:45:40 +00005276 case BO_Sub:
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005277 Result.subtract(RHS, APFloat::rmNearestTiesToEven);
Richard Smith7b48a292012-02-01 05:53:12 +00005278 break;
John McCall2de56d12010-08-25 11:45:40 +00005279 case BO_Div:
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005280 Result.divide(RHS, APFloat::rmNearestTiesToEven);
Richard Smith7b48a292012-02-01 05:53:12 +00005281 break;
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005282 }
Richard Smith7b48a292012-02-01 05:53:12 +00005283
5284 if (Result.isInfinity() || Result.isNaN())
5285 CCEDiag(E, diag::note_constexpr_float_arithmetic) << Result.isNaN();
5286 return true;
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005287}
5288
5289bool FloatExprEvaluator::VisitFloatingLiteral(const FloatingLiteral *E) {
5290 Result = E->getValue();
5291 return true;
5292}
5293
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005294bool FloatExprEvaluator::VisitCastExpr(const CastExpr *E) {
5295 const Expr* SubExpr = E->getSubExpr();
Mike Stump1eb44332009-09-09 15:08:12 +00005296
Eli Friedman2a523ee2011-03-25 00:54:52 +00005297 switch (E->getCastKind()) {
5298 default:
Richard Smithc49bd112011-10-28 17:51:58 +00005299 return ExprEvaluatorBaseTy::VisitCastExpr(E);
Eli Friedman2a523ee2011-03-25 00:54:52 +00005300
5301 case CK_IntegralToFloating: {
Eli Friedman4efaa272008-11-12 09:44:48 +00005302 APSInt IntResult;
Richard Smithc1c5f272011-12-13 06:39:58 +00005303 return EvaluateInteger(SubExpr, IntResult, Info) &&
5304 HandleIntToFloatCast(Info, E, SubExpr->getType(), IntResult,
5305 E->getType(), Result);
Eli Friedman4efaa272008-11-12 09:44:48 +00005306 }
Eli Friedman2a523ee2011-03-25 00:54:52 +00005307
5308 case CK_FloatingCast: {
Eli Friedman4efaa272008-11-12 09:44:48 +00005309 if (!Visit(SubExpr))
5310 return false;
Richard Smithc1c5f272011-12-13 06:39:58 +00005311 return HandleFloatToFloatCast(Info, E, SubExpr->getType(), E->getType(),
5312 Result);
Eli Friedman4efaa272008-11-12 09:44:48 +00005313 }
John McCallf3ea8cf2010-11-14 08:17:51 +00005314
Eli Friedman2a523ee2011-03-25 00:54:52 +00005315 case CK_FloatingComplexToReal: {
John McCallf3ea8cf2010-11-14 08:17:51 +00005316 ComplexValue V;
5317 if (!EvaluateComplex(SubExpr, V, Info))
5318 return false;
5319 Result = V.getComplexFloatReal();
5320 return true;
5321 }
Eli Friedman2a523ee2011-03-25 00:54:52 +00005322 }
Eli Friedman4efaa272008-11-12 09:44:48 +00005323}
5324
Eli Friedmand8bfe7f2008-08-22 00:06:13 +00005325//===----------------------------------------------------------------------===//
Daniel Dunbara5fd07b2009-01-28 22:24:07 +00005326// Complex Evaluation (for float and integer)
Anders Carlsson9ad16ae2008-11-16 20:27:53 +00005327//===----------------------------------------------------------------------===//
5328
5329namespace {
Benjamin Kramer770b4a82009-11-28 19:03:38 +00005330class ComplexExprEvaluator
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005331 : public ExprEvaluatorBase<ComplexExprEvaluator, bool> {
John McCallf4cf1a12010-05-07 17:22:02 +00005332 ComplexValue &Result;
Mike Stump1eb44332009-09-09 15:08:12 +00005333
Anders Carlsson9ad16ae2008-11-16 20:27:53 +00005334public:
John McCallf4cf1a12010-05-07 17:22:02 +00005335 ComplexExprEvaluator(EvalInfo &info, ComplexValue &Result)
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005336 : ExprEvaluatorBaseTy(info), Result(Result) {}
5337
Richard Smith47a1eed2011-10-29 20:57:55 +00005338 bool Success(const CCValue &V, const Expr *e) {
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005339 Result.setFrom(V);
5340 return true;
5341 }
Mike Stump1eb44332009-09-09 15:08:12 +00005342
Eli Friedman7ead5c72012-01-10 04:58:17 +00005343 bool ZeroInitialization(const Expr *E);
5344
Anders Carlsson9ad16ae2008-11-16 20:27:53 +00005345 //===--------------------------------------------------------------------===//
5346 // Visitor Methods
5347 //===--------------------------------------------------------------------===//
5348
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005349 bool VisitImaginaryLiteral(const ImaginaryLiteral *E);
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005350 bool VisitCastExpr(const CastExpr *E);
John McCallf4cf1a12010-05-07 17:22:02 +00005351 bool VisitBinaryOperator(const BinaryOperator *E);
Abramo Bagnara96fc8e42010-12-11 16:05:48 +00005352 bool VisitUnaryOperator(const UnaryOperator *E);
Eli Friedman7ead5c72012-01-10 04:58:17 +00005353 bool VisitInitListExpr(const InitListExpr *E);
Anders Carlsson9ad16ae2008-11-16 20:27:53 +00005354};
5355} // end anonymous namespace
5356
John McCallf4cf1a12010-05-07 17:22:02 +00005357static bool EvaluateComplex(const Expr *E, ComplexValue &Result,
5358 EvalInfo &Info) {
Richard Smithc49bd112011-10-28 17:51:58 +00005359 assert(E->isRValue() && E->getType()->isAnyComplexType());
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005360 return ComplexExprEvaluator(Info, Result).Visit(E);
Anders Carlsson9ad16ae2008-11-16 20:27:53 +00005361}
5362
Eli Friedman7ead5c72012-01-10 04:58:17 +00005363bool ComplexExprEvaluator::ZeroInitialization(const Expr *E) {
Eli Friedmanf6c17a42012-01-13 23:34:56 +00005364 QualType ElemTy = E->getType()->getAs<ComplexType>()->getElementType();
Eli Friedman7ead5c72012-01-10 04:58:17 +00005365 if (ElemTy->isRealFloatingType()) {
5366 Result.makeComplexFloat();
5367 APFloat Zero = APFloat::getZero(Info.Ctx.getFloatTypeSemantics(ElemTy));
5368 Result.FloatReal = Zero;
5369 Result.FloatImag = Zero;
5370 } else {
5371 Result.makeComplexInt();
5372 APSInt Zero = Info.Ctx.MakeIntValue(0, ElemTy);
5373 Result.IntReal = Zero;
5374 Result.IntImag = Zero;
5375 }
5376 return true;
5377}
5378
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005379bool ComplexExprEvaluator::VisitImaginaryLiteral(const ImaginaryLiteral *E) {
5380 const Expr* SubExpr = E->getSubExpr();
Eli Friedmanb2dc7f52010-08-16 23:27:44 +00005381
5382 if (SubExpr->getType()->isRealFloatingType()) {
5383 Result.makeComplexFloat();
5384 APFloat &Imag = Result.FloatImag;
5385 if (!EvaluateFloat(SubExpr, Imag, Info))
5386 return false;
5387
5388 Result.FloatReal = APFloat(Imag.getSemantics());
5389 return true;
5390 } else {
5391 assert(SubExpr->getType()->isIntegerType() &&
5392 "Unexpected imaginary literal.");
5393
5394 Result.makeComplexInt();
5395 APSInt &Imag = Result.IntImag;
5396 if (!EvaluateInteger(SubExpr, Imag, Info))
5397 return false;
5398
5399 Result.IntReal = APSInt(Imag.getBitWidth(), !Imag.isSigned());
5400 return true;
5401 }
5402}
5403
Peter Collingbourne8cad3042011-05-13 03:29:01 +00005404bool ComplexExprEvaluator::VisitCastExpr(const CastExpr *E) {
Eli Friedmanb2dc7f52010-08-16 23:27:44 +00005405
John McCall8786da72010-12-14 17:51:41 +00005406 switch (E->getCastKind()) {
5407 case CK_BitCast:
John McCall8786da72010-12-14 17:51:41 +00005408 case CK_BaseToDerived:
5409 case CK_DerivedToBase:
5410 case CK_UncheckedDerivedToBase:
5411 case CK_Dynamic:
5412 case CK_ToUnion:
5413 case CK_ArrayToPointerDecay:
5414 case CK_FunctionToPointerDecay:
5415 case CK_NullToPointer:
5416 case CK_NullToMemberPointer:
5417 case CK_BaseToDerivedMemberPointer:
5418 case CK_DerivedToBaseMemberPointer:
5419 case CK_MemberPointerToBoolean:
5420 case CK_ConstructorConversion:
5421 case CK_IntegralToPointer:
5422 case CK_PointerToIntegral:
5423 case CK_PointerToBoolean:
5424 case CK_ToVoid:
5425 case CK_VectorSplat:
5426 case CK_IntegralCast:
5427 case CK_IntegralToBoolean:
5428 case CK_IntegralToFloating:
5429 case CK_FloatingToIntegral:
5430 case CK_FloatingToBoolean:
5431 case CK_FloatingCast:
John McCall1d9b3b22011-09-09 05:25:32 +00005432 case CK_CPointerToObjCPointerCast:
5433 case CK_BlockPointerToObjCPointerCast:
John McCall8786da72010-12-14 17:51:41 +00005434 case CK_AnyPointerToBlockPointerCast:
5435 case CK_ObjCObjectLValueCast:
5436 case CK_FloatingComplexToReal:
5437 case CK_FloatingComplexToBoolean:
5438 case CK_IntegralComplexToReal:
5439 case CK_IntegralComplexToBoolean:
John McCall33e56f32011-09-10 06:18:15 +00005440 case CK_ARCProduceObject:
5441 case CK_ARCConsumeObject:
5442 case CK_ARCReclaimReturnedObject:
5443 case CK_ARCExtendBlockObject:
John McCall8786da72010-12-14 17:51:41 +00005444 llvm_unreachable("invalid cast kind for complex value");
John McCall2bb5d002010-11-13 09:02:35 +00005445
John McCall8786da72010-12-14 17:51:41 +00005446 case CK_LValueToRValue:
David Chisnall7a7ee302012-01-16 17:27:18 +00005447 case CK_AtomicToNonAtomic:
5448 case CK_NonAtomicToAtomic:
John McCall8786da72010-12-14 17:51:41 +00005449 case CK_NoOp:
Richard Smithc49bd112011-10-28 17:51:58 +00005450 return ExprEvaluatorBaseTy::VisitCastExpr(E);
John McCall8786da72010-12-14 17:51:41 +00005451
5452 case CK_Dependent:
Eli Friedman46a52322011-03-25 00:43:55 +00005453 case CK_LValueBitCast:
John McCall8786da72010-12-14 17:51:41 +00005454 case CK_UserDefinedConversion:
Richard Smithf48fdb02011-12-09 22:58:01 +00005455 return Error(E);
John McCall8786da72010-12-14 17:51:41 +00005456
5457 case CK_FloatingRealToComplex: {
Eli Friedmanb2dc7f52010-08-16 23:27:44 +00005458 APFloat &Real = Result.FloatReal;
John McCall8786da72010-12-14 17:51:41 +00005459 if (!EvaluateFloat(E->getSubExpr(), Real, Info))
Eli Friedmanb2dc7f52010-08-16 23:27:44 +00005460 return false;
5461
John McCall8786da72010-12-14 17:51:41 +00005462 Result.makeComplexFloat();
5463 Result.FloatImag = APFloat(Real.getSemantics());
5464 return true;
Eli Friedmanb2dc7f52010-08-16 23:27:44 +00005465 }
5466
John McCall8786da72010-12-14 17:51:41 +00005467 case CK_FloatingComplexCast: {
5468 if (!Visit(E->getSubExpr()))
5469 return false;
5470
5471 QualType To = E->getType()->getAs<ComplexType>()->getElementType();
5472 QualType From
5473 = E->getSubExpr()->getType()->getAs<ComplexType>()->getElementType();
5474
Richard Smithc1c5f272011-12-13 06:39:58 +00005475 return HandleFloatToFloatCast(Info, E, From, To, Result.FloatReal) &&
5476 HandleFloatToFloatCast(Info, E, From, To, Result.FloatImag);
John McCall8786da72010-12-14 17:51:41 +00005477 }
5478
5479 case CK_FloatingComplexToIntegralComplex: {
5480 if (!Visit(E->getSubExpr()))
5481 return false;
5482
5483 QualType To = E->getType()->getAs<ComplexType>()->getElementType();
5484 QualType From
5485 = E->getSubExpr()->getType()->getAs<ComplexType>()->getElementType();
5486 Result.makeComplexInt();
Richard Smithc1c5f272011-12-13 06:39:58 +00005487 return HandleFloatToIntCast(Info, E, From, Result.FloatReal,
5488 To, Result.IntReal) &&
5489 HandleFloatToIntCast(Info, E, From, Result.FloatImag,
5490 To, Result.IntImag);
John McCall8786da72010-12-14 17:51:41 +00005491 }
5492
5493 case CK_IntegralRealToComplex: {
5494 APSInt &Real = Result.IntReal;
5495 if (!EvaluateInteger(E->getSubExpr(), Real, Info))
5496 return false;
5497
5498 Result.makeComplexInt();
5499 Result.IntImag = APSInt(Real.getBitWidth(), !Real.isSigned());
5500 return true;
5501 }
5502
5503 case CK_IntegralComplexCast: {
5504 if (!Visit(E->getSubExpr()))
5505 return false;
5506
5507 QualType To = E->getType()->getAs<ComplexType>()->getElementType();
5508 QualType From
5509 = E->getSubExpr()->getType()->getAs<ComplexType>()->getElementType();
5510
Richard Smithf72fccf2012-01-30 22:27:01 +00005511 Result.IntReal = HandleIntToIntCast(Info, E, To, From, Result.IntReal);
5512 Result.IntImag = HandleIntToIntCast(Info, E, To, From, Result.IntImag);
John McCall8786da72010-12-14 17:51:41 +00005513 return true;
5514 }
5515
5516 case CK_IntegralComplexToFloatingComplex: {
5517 if (!Visit(E->getSubExpr()))
5518 return false;
5519
5520 QualType To = E->getType()->getAs<ComplexType>()->getElementType();
5521 QualType From
5522 = E->getSubExpr()->getType()->getAs<ComplexType>()->getElementType();
5523 Result.makeComplexFloat();
Richard Smithc1c5f272011-12-13 06:39:58 +00005524 return HandleIntToFloatCast(Info, E, From, Result.IntReal,
5525 To, Result.FloatReal) &&
5526 HandleIntToFloatCast(Info, E, From, Result.IntImag,
5527 To, Result.FloatImag);
John McCall8786da72010-12-14 17:51:41 +00005528 }
5529 }
5530
5531 llvm_unreachable("unknown cast resulting in complex value");
Eli Friedmanb2dc7f52010-08-16 23:27:44 +00005532}
5533
John McCallf4cf1a12010-05-07 17:22:02 +00005534bool ComplexExprEvaluator::VisitBinaryOperator(const BinaryOperator *E) {
Richard Smithe24f5fc2011-11-17 22:56:20 +00005535 if (E->isPtrMemOp() || E->isAssignmentOp() || E->getOpcode() == BO_Comma)
Richard Smith2ad226b2011-11-16 17:22:48 +00005536 return ExprEvaluatorBaseTy::VisitBinaryOperator(E);
5537
Richard Smith745f5142012-01-27 01:14:48 +00005538 bool LHSOK = Visit(E->getLHS());
5539 if (!LHSOK && !Info.keepEvaluatingAfterFailure())
John McCallf4cf1a12010-05-07 17:22:02 +00005540 return false;
Mike Stump1eb44332009-09-09 15:08:12 +00005541
John McCallf4cf1a12010-05-07 17:22:02 +00005542 ComplexValue RHS;
Richard Smith745f5142012-01-27 01:14:48 +00005543 if (!EvaluateComplex(E->getRHS(), RHS, Info) || !LHSOK)
John McCallf4cf1a12010-05-07 17:22:02 +00005544 return false;
Daniel Dunbara5fd07b2009-01-28 22:24:07 +00005545
Daniel Dunbar3f279872009-01-29 01:32:56 +00005546 assert(Result.isComplexFloat() == RHS.isComplexFloat() &&
5547 "Invalid operands to binary operator.");
Anders Carlssonccc3fce2008-11-16 21:51:21 +00005548 switch (E->getOpcode()) {
Richard Smithf48fdb02011-12-09 22:58:01 +00005549 default: return Error(E);
John McCall2de56d12010-08-25 11:45:40 +00005550 case BO_Add:
Daniel Dunbara5fd07b2009-01-28 22:24:07 +00005551 if (Result.isComplexFloat()) {
5552 Result.getComplexFloatReal().add(RHS.getComplexFloatReal(),
5553 APFloat::rmNearestTiesToEven);
5554 Result.getComplexFloatImag().add(RHS.getComplexFloatImag(),
5555 APFloat::rmNearestTiesToEven);
5556 } else {
5557 Result.getComplexIntReal() += RHS.getComplexIntReal();
5558 Result.getComplexIntImag() += RHS.getComplexIntImag();
5559 }
Daniel Dunbar3f279872009-01-29 01:32:56 +00005560 break;
John McCall2de56d12010-08-25 11:45:40 +00005561 case BO_Sub:
Daniel Dunbara5fd07b2009-01-28 22:24:07 +00005562 if (Result.isComplexFloat()) {
5563 Result.getComplexFloatReal().subtract(RHS.getComplexFloatReal(),
5564 APFloat::rmNearestTiesToEven);
5565 Result.getComplexFloatImag().subtract(RHS.getComplexFloatImag(),
5566 APFloat::rmNearestTiesToEven);
5567 } else {
5568 Result.getComplexIntReal() -= RHS.getComplexIntReal();
5569 Result.getComplexIntImag() -= RHS.getComplexIntImag();
5570 }
Daniel Dunbar3f279872009-01-29 01:32:56 +00005571 break;
John McCall2de56d12010-08-25 11:45:40 +00005572 case BO_Mul:
Daniel Dunbar3f279872009-01-29 01:32:56 +00005573 if (Result.isComplexFloat()) {
John McCallf4cf1a12010-05-07 17:22:02 +00005574 ComplexValue LHS = Result;
Daniel Dunbar3f279872009-01-29 01:32:56 +00005575 APFloat &LHS_r = LHS.getComplexFloatReal();
5576 APFloat &LHS_i = LHS.getComplexFloatImag();
5577 APFloat &RHS_r = RHS.getComplexFloatReal();
5578 APFloat &RHS_i = RHS.getComplexFloatImag();
Mike Stump1eb44332009-09-09 15:08:12 +00005579
Daniel Dunbar3f279872009-01-29 01:32:56 +00005580 APFloat Tmp = LHS_r;
5581 Tmp.multiply(RHS_r, APFloat::rmNearestTiesToEven);
5582 Result.getComplexFloatReal() = Tmp;
5583 Tmp = LHS_i;
5584 Tmp.multiply(RHS_i, APFloat::rmNearestTiesToEven);
5585 Result.getComplexFloatReal().subtract(Tmp, APFloat::rmNearestTiesToEven);
5586
5587 Tmp = LHS_r;
5588 Tmp.multiply(RHS_i, APFloat::rmNearestTiesToEven);
5589 Result.getComplexFloatImag() = Tmp;
5590 Tmp = LHS_i;
5591 Tmp.multiply(RHS_r, APFloat::rmNearestTiesToEven);
5592 Result.getComplexFloatImag().add(Tmp, APFloat::rmNearestTiesToEven);
5593 } else {
John McCallf4cf1a12010-05-07 17:22:02 +00005594 ComplexValue LHS = Result;
Mike Stump1eb44332009-09-09 15:08:12 +00005595 Result.getComplexIntReal() =
Daniel Dunbar3f279872009-01-29 01:32:56 +00005596 (LHS.getComplexIntReal() * RHS.getComplexIntReal() -
5597 LHS.getComplexIntImag() * RHS.getComplexIntImag());
Mike Stump1eb44332009-09-09 15:08:12 +00005598 Result.getComplexIntImag() =
Daniel Dunbar3f279872009-01-29 01:32:56 +00005599 (LHS.getComplexIntReal() * RHS.getComplexIntImag() +
5600 LHS.getComplexIntImag() * RHS.getComplexIntReal());
5601 }
5602 break;
Abramo Bagnara96fc8e42010-12-11 16:05:48 +00005603 case BO_Div:
5604 if (Result.isComplexFloat()) {
5605 ComplexValue LHS = Result;
5606 APFloat &LHS_r = LHS.getComplexFloatReal();
5607 APFloat &LHS_i = LHS.getComplexFloatImag();
5608 APFloat &RHS_r = RHS.getComplexFloatReal();
5609 APFloat &RHS_i = RHS.getComplexFloatImag();
5610 APFloat &Res_r = Result.getComplexFloatReal();
5611 APFloat &Res_i = Result.getComplexFloatImag();
5612
5613 APFloat Den = RHS_r;
5614 Den.multiply(RHS_r, APFloat::rmNearestTiesToEven);
5615 APFloat Tmp = RHS_i;
5616 Tmp.multiply(RHS_i, APFloat::rmNearestTiesToEven);
5617 Den.add(Tmp, APFloat::rmNearestTiesToEven);
5618
5619 Res_r = LHS_r;
5620 Res_r.multiply(RHS_r, APFloat::rmNearestTiesToEven);
5621 Tmp = LHS_i;
5622 Tmp.multiply(RHS_i, APFloat::rmNearestTiesToEven);
5623 Res_r.add(Tmp, APFloat::rmNearestTiesToEven);
5624 Res_r.divide(Den, APFloat::rmNearestTiesToEven);
5625
5626 Res_i = LHS_i;
5627 Res_i.multiply(RHS_r, APFloat::rmNearestTiesToEven);
5628 Tmp = LHS_r;
5629 Tmp.multiply(RHS_i, APFloat::rmNearestTiesToEven);
5630 Res_i.subtract(Tmp, APFloat::rmNearestTiesToEven);
5631 Res_i.divide(Den, APFloat::rmNearestTiesToEven);
5632 } else {
Richard Smithf48fdb02011-12-09 22:58:01 +00005633 if (RHS.getComplexIntReal() == 0 && RHS.getComplexIntImag() == 0)
5634 return Error(E, diag::note_expr_divide_by_zero);
5635
Abramo Bagnara96fc8e42010-12-11 16:05:48 +00005636 ComplexValue LHS = Result;
5637 APSInt Den = RHS.getComplexIntReal() * RHS.getComplexIntReal() +
5638 RHS.getComplexIntImag() * RHS.getComplexIntImag();
5639 Result.getComplexIntReal() =
5640 (LHS.getComplexIntReal() * RHS.getComplexIntReal() +
5641 LHS.getComplexIntImag() * RHS.getComplexIntImag()) / Den;
5642 Result.getComplexIntImag() =
5643 (LHS.getComplexIntImag() * RHS.getComplexIntReal() -
5644 LHS.getComplexIntReal() * RHS.getComplexIntImag()) / Den;
5645 }
5646 break;
Anders Carlssonccc3fce2008-11-16 21:51:21 +00005647 }
5648
John McCallf4cf1a12010-05-07 17:22:02 +00005649 return true;
Anders Carlssonccc3fce2008-11-16 21:51:21 +00005650}
5651
Abramo Bagnara96fc8e42010-12-11 16:05:48 +00005652bool ComplexExprEvaluator::VisitUnaryOperator(const UnaryOperator *E) {
5653 // Get the operand value into 'Result'.
5654 if (!Visit(E->getSubExpr()))
5655 return false;
5656
5657 switch (E->getOpcode()) {
5658 default:
Richard Smithf48fdb02011-12-09 22:58:01 +00005659 return Error(E);
Abramo Bagnara96fc8e42010-12-11 16:05:48 +00005660 case UO_Extension:
5661 return true;
5662 case UO_Plus:
5663 // The result is always just the subexpr.
5664 return true;
5665 case UO_Minus:
5666 if (Result.isComplexFloat()) {
5667 Result.getComplexFloatReal().changeSign();
5668 Result.getComplexFloatImag().changeSign();
5669 }
5670 else {
5671 Result.getComplexIntReal() = -Result.getComplexIntReal();
5672 Result.getComplexIntImag() = -Result.getComplexIntImag();
5673 }
5674 return true;
5675 case UO_Not:
5676 if (Result.isComplexFloat())
5677 Result.getComplexFloatImag().changeSign();
5678 else
5679 Result.getComplexIntImag() = -Result.getComplexIntImag();
5680 return true;
5681 }
5682}
5683
Eli Friedman7ead5c72012-01-10 04:58:17 +00005684bool ComplexExprEvaluator::VisitInitListExpr(const InitListExpr *E) {
5685 if (E->getNumInits() == 2) {
5686 if (E->getType()->isComplexType()) {
5687 Result.makeComplexFloat();
5688 if (!EvaluateFloat(E->getInit(0), Result.FloatReal, Info))
5689 return false;
5690 if (!EvaluateFloat(E->getInit(1), Result.FloatImag, Info))
5691 return false;
5692 } else {
5693 Result.makeComplexInt();
5694 if (!EvaluateInteger(E->getInit(0), Result.IntReal, Info))
5695 return false;
5696 if (!EvaluateInteger(E->getInit(1), Result.IntImag, Info))
5697 return false;
5698 }
5699 return true;
5700 }
5701 return ExprEvaluatorBaseTy::VisitInitListExpr(E);
5702}
5703
Anders Carlsson9ad16ae2008-11-16 20:27:53 +00005704//===----------------------------------------------------------------------===//
Richard Smithaa9c3502011-12-07 00:43:50 +00005705// Void expression evaluation, primarily for a cast to void on the LHS of a
5706// comma operator
5707//===----------------------------------------------------------------------===//
5708
5709namespace {
5710class VoidExprEvaluator
5711 : public ExprEvaluatorBase<VoidExprEvaluator, bool> {
5712public:
5713 VoidExprEvaluator(EvalInfo &Info) : ExprEvaluatorBaseTy(Info) {}
5714
5715 bool Success(const CCValue &V, const Expr *e) { return true; }
Richard Smithaa9c3502011-12-07 00:43:50 +00005716
5717 bool VisitCastExpr(const CastExpr *E) {
5718 switch (E->getCastKind()) {
5719 default:
5720 return ExprEvaluatorBaseTy::VisitCastExpr(E);
5721 case CK_ToVoid:
5722 VisitIgnoredValue(E->getSubExpr());
5723 return true;
5724 }
5725 }
5726};
5727} // end anonymous namespace
5728
5729static bool EvaluateVoid(const Expr *E, EvalInfo &Info) {
5730 assert(E->isRValue() && E->getType()->isVoidType());
5731 return VoidExprEvaluator(Info).Visit(E);
5732}
5733
5734//===----------------------------------------------------------------------===//
Richard Smith51f47082011-10-29 00:50:52 +00005735// Top level Expr::EvaluateAsRValue method.
Chris Lattnerf5eeb052008-07-11 18:11:29 +00005736//===----------------------------------------------------------------------===//
5737
Richard Smith47a1eed2011-10-29 20:57:55 +00005738static bool Evaluate(CCValue &Result, EvalInfo &Info, const Expr *E) {
Richard Smithc49bd112011-10-28 17:51:58 +00005739 // In C, function designators are not lvalues, but we evaluate them as if they
5740 // are.
5741 if (E->isGLValue() || E->getType()->isFunctionType()) {
5742 LValue LV;
5743 if (!EvaluateLValue(E, LV, Info))
5744 return false;
5745 LV.moveInto(Result);
5746 } else if (E->getType()->isVectorType()) {
Richard Smith1e12c592011-10-16 21:26:27 +00005747 if (!EvaluateVector(E, Result, Info))
Nate Begeman59b5da62009-01-18 03:20:47 +00005748 return false;
Douglas Gregor575a1c92011-05-20 16:38:50 +00005749 } else if (E->getType()->isIntegralOrEnumerationType()) {
Richard Smith1e12c592011-10-16 21:26:27 +00005750 if (!IntExprEvaluator(Info, Result).Visit(E))
Anders Carlsson6dde0d52008-11-22 21:50:49 +00005751 return false;
John McCallefdb83e2010-05-07 21:00:08 +00005752 } else if (E->getType()->hasPointerRepresentation()) {
5753 LValue LV;
5754 if (!EvaluatePointer(E, LV, Info))
Anders Carlsson6dde0d52008-11-22 21:50:49 +00005755 return false;
Richard Smith1e12c592011-10-16 21:26:27 +00005756 LV.moveInto(Result);
John McCallefdb83e2010-05-07 21:00:08 +00005757 } else if (E->getType()->isRealFloatingType()) {
5758 llvm::APFloat F(0.0);
5759 if (!EvaluateFloat(E, F, Info))
Anders Carlsson6dde0d52008-11-22 21:50:49 +00005760 return false;
Richard Smith47a1eed2011-10-29 20:57:55 +00005761 Result = CCValue(F);
John McCallefdb83e2010-05-07 21:00:08 +00005762 } else if (E->getType()->isAnyComplexType()) {
5763 ComplexValue C;
5764 if (!EvaluateComplex(E, C, Info))
Anders Carlsson6dde0d52008-11-22 21:50:49 +00005765 return false;
Richard Smith1e12c592011-10-16 21:26:27 +00005766 C.moveInto(Result);
Richard Smith69c2c502011-11-04 05:33:44 +00005767 } else if (E->getType()->isMemberPointerType()) {
Richard Smithe24f5fc2011-11-17 22:56:20 +00005768 MemberPtr P;
5769 if (!EvaluateMemberPointer(E, P, Info))
5770 return false;
5771 P.moveInto(Result);
5772 return true;
Richard Smith51201882011-12-30 21:15:51 +00005773 } else if (E->getType()->isArrayType()) {
Richard Smith180f4792011-11-10 06:34:14 +00005774 LValue LV;
Richard Smith1bf9a9e2011-11-12 22:28:03 +00005775 LV.set(E, Info.CurrentCall);
Richard Smith180f4792011-11-10 06:34:14 +00005776 if (!EvaluateArray(E, LV, Info.CurrentCall->Temporaries[E], Info))
Richard Smithcc5d4f62011-11-07 09:22:26 +00005777 return false;
Richard Smith180f4792011-11-10 06:34:14 +00005778 Result = Info.CurrentCall->Temporaries[E];
Richard Smith51201882011-12-30 21:15:51 +00005779 } else if (E->getType()->isRecordType()) {
Richard Smith180f4792011-11-10 06:34:14 +00005780 LValue LV;
Richard Smith1bf9a9e2011-11-12 22:28:03 +00005781 LV.set(E, Info.CurrentCall);
Richard Smith180f4792011-11-10 06:34:14 +00005782 if (!EvaluateRecord(E, LV, Info.CurrentCall->Temporaries[E], Info))
5783 return false;
5784 Result = Info.CurrentCall->Temporaries[E];
Richard Smithaa9c3502011-12-07 00:43:50 +00005785 } else if (E->getType()->isVoidType()) {
Richard Smithc1c5f272011-12-13 06:39:58 +00005786 if (Info.getLangOpts().CPlusPlus0x)
5787 Info.CCEDiag(E->getExprLoc(), diag::note_constexpr_nonliteral)
5788 << E->getType();
5789 else
5790 Info.CCEDiag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
Richard Smithaa9c3502011-12-07 00:43:50 +00005791 if (!EvaluateVoid(E, Info))
5792 return false;
Richard Smithc1c5f272011-12-13 06:39:58 +00005793 } else if (Info.getLangOpts().CPlusPlus0x) {
5794 Info.Diag(E->getExprLoc(), diag::note_constexpr_nonliteral) << E->getType();
5795 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00005796 } else {
Richard Smithdd1f29b2011-12-12 09:28:41 +00005797 Info.Diag(E->getExprLoc(), diag::note_invalid_subexpr_in_const_expr);
Anders Carlsson9d4c1572008-11-22 22:56:32 +00005798 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00005799 }
Anders Carlsson6dde0d52008-11-22 21:50:49 +00005800
Anders Carlsson5b45d4e2008-11-30 16:58:53 +00005801 return true;
5802}
5803
Richard Smith69c2c502011-11-04 05:33:44 +00005804/// EvaluateConstantExpression - Evaluate an expression as a constant expression
5805/// in-place in an APValue. In some cases, the in-place evaluation is essential,
5806/// since later initializers for an object can indirectly refer to subobjects
5807/// which were initialized earlier.
5808static bool EvaluateConstantExpression(APValue &Result, EvalInfo &Info,
Richard Smithc1c5f272011-12-13 06:39:58 +00005809 const LValue &This, const Expr *E,
5810 CheckConstantExpressionKind CCEK) {
Richard Smith51201882011-12-30 21:15:51 +00005811 if (!CheckLiteralType(Info, E))
5812 return false;
5813
5814 if (E->isRValue()) {
Richard Smith69c2c502011-11-04 05:33:44 +00005815 // Evaluate arrays and record types in-place, so that later initializers can
5816 // refer to earlier-initialized members of the object.
Richard Smith180f4792011-11-10 06:34:14 +00005817 if (E->getType()->isArrayType())
5818 return EvaluateArray(E, This, Result, Info);
5819 else if (E->getType()->isRecordType())
5820 return EvaluateRecord(E, This, Result, Info);
Richard Smith69c2c502011-11-04 05:33:44 +00005821 }
5822
5823 // For any other type, in-place evaluation is unimportant.
5824 CCValue CoreConstResult;
5825 return Evaluate(CoreConstResult, Info, E) &&
Richard Smithc1c5f272011-12-13 06:39:58 +00005826 CheckConstantExpression(Info, E, CoreConstResult, Result, CCEK);
Richard Smith69c2c502011-11-04 05:33:44 +00005827}
5828
Richard Smithf48fdb02011-12-09 22:58:01 +00005829/// EvaluateAsRValue - Try to evaluate this expression, performing an implicit
5830/// lvalue-to-rvalue cast if it is an lvalue.
5831static bool EvaluateAsRValue(EvalInfo &Info, const Expr *E, APValue &Result) {
Richard Smith51201882011-12-30 21:15:51 +00005832 if (!CheckLiteralType(Info, E))
5833 return false;
5834
Richard Smithf48fdb02011-12-09 22:58:01 +00005835 CCValue Value;
5836 if (!::Evaluate(Value, Info, E))
5837 return false;
5838
5839 if (E->isGLValue()) {
5840 LValue LV;
5841 LV.setFrom(Value);
5842 if (!HandleLValueToRValueConversion(Info, E, E->getType(), LV, Value))
5843 return false;
5844 }
5845
5846 // Check this core constant expression is a constant expression, and if so,
5847 // convert it to one.
5848 return CheckConstantExpression(Info, E, Value, Result);
5849}
Richard Smithc49bd112011-10-28 17:51:58 +00005850
Richard Smith51f47082011-10-29 00:50:52 +00005851/// EvaluateAsRValue - Return true if this is a constant which we can fold using
John McCall56ca35d2011-02-17 10:25:35 +00005852/// any crazy technique (that has nothing to do with language standards) that
5853/// we want to. If this function returns true, it returns the folded constant
Richard Smithc49bd112011-10-28 17:51:58 +00005854/// in Result. If this expression is a glvalue, an lvalue-to-rvalue conversion
5855/// will be applied to the result.
Richard Smith51f47082011-10-29 00:50:52 +00005856bool Expr::EvaluateAsRValue(EvalResult &Result, const ASTContext &Ctx) const {
Richard Smithee19f432011-12-10 01:10:13 +00005857 // Fast-path evaluations of integer literals, since we sometimes see files
5858 // containing vast quantities of these.
5859 if (const IntegerLiteral *L = dyn_cast<IntegerLiteral>(this)) {
5860 Result.Val = APValue(APSInt(L->getValue(),
5861 L->getType()->isUnsignedIntegerType()));
5862 return true;
5863 }
5864
Richard Smith2d6a5672012-01-14 04:30:29 +00005865 // FIXME: Evaluating values of large array and record types can cause
5866 // performance problems. Only do so in C++11 for now.
Richard Smithe24f5fc2011-11-17 22:56:20 +00005867 if (isRValue() && (getType()->isArrayType() || getType()->isRecordType()) &&
5868 !Ctx.getLangOptions().CPlusPlus0x)
Richard Smith1445bba2011-11-10 03:30:42 +00005869 return false;
5870
Richard Smithf48fdb02011-12-09 22:58:01 +00005871 EvalInfo Info(Ctx, Result);
5872 return ::EvaluateAsRValue(Info, this, Result.Val);
John McCall56ca35d2011-02-17 10:25:35 +00005873}
5874
Jay Foad4ba2a172011-01-12 09:06:06 +00005875bool Expr::EvaluateAsBooleanCondition(bool &Result,
5876 const ASTContext &Ctx) const {
Richard Smithc49bd112011-10-28 17:51:58 +00005877 EvalResult Scratch;
Richard Smith51f47082011-10-29 00:50:52 +00005878 return EvaluateAsRValue(Scratch, Ctx) &&
Richard Smithb4e85ed2012-01-06 16:39:00 +00005879 HandleConversionToBool(CCValue(const_cast<ASTContext&>(Ctx),
5880 Scratch.Val, CCValue::GlobalValue()),
Richard Smith47a1eed2011-10-29 20:57:55 +00005881 Result);
John McCallcd7a4452010-01-05 23:42:56 +00005882}
5883
Richard Smith80d4b552011-12-28 19:48:30 +00005884bool Expr::EvaluateAsInt(APSInt &Result, const ASTContext &Ctx,
5885 SideEffectsKind AllowSideEffects) const {
5886 if (!getType()->isIntegralOrEnumerationType())
5887 return false;
5888
Richard Smithc49bd112011-10-28 17:51:58 +00005889 EvalResult ExprResult;
Richard Smith80d4b552011-12-28 19:48:30 +00005890 if (!EvaluateAsRValue(ExprResult, Ctx) || !ExprResult.Val.isInt() ||
5891 (!AllowSideEffects && ExprResult.HasSideEffects))
Richard Smithc49bd112011-10-28 17:51:58 +00005892 return false;
Richard Smithf48fdb02011-12-09 22:58:01 +00005893
Richard Smithc49bd112011-10-28 17:51:58 +00005894 Result = ExprResult.Val.getInt();
5895 return true;
Richard Smitha6b8b2c2011-10-10 18:28:20 +00005896}
5897
Jay Foad4ba2a172011-01-12 09:06:06 +00005898bool Expr::EvaluateAsLValue(EvalResult &Result, const ASTContext &Ctx) const {
Anders Carlsson1b782762009-04-10 04:54:13 +00005899 EvalInfo Info(Ctx, Result);
5900
John McCallefdb83e2010-05-07 21:00:08 +00005901 LValue LV;
Richard Smith9a17a682011-11-07 05:07:52 +00005902 return EvaluateLValue(this, LV, Info) && !Result.HasSideEffects &&
Richard Smithc1c5f272011-12-13 06:39:58 +00005903 CheckLValueConstantExpression(Info, this, LV, Result.Val,
5904 CCEK_Constant);
Eli Friedmanb2f295c2009-09-13 10:17:44 +00005905}
5906
Richard Smith099e7f62011-12-19 06:19:21 +00005907bool Expr::EvaluateAsInitializer(APValue &Value, const ASTContext &Ctx,
5908 const VarDecl *VD,
5909 llvm::SmallVectorImpl<PartialDiagnosticAt> &Notes) const {
Richard Smith2d6a5672012-01-14 04:30:29 +00005910 // FIXME: Evaluating initializers for large array and record types can cause
5911 // performance problems. Only do so in C++11 for now.
5912 if (isRValue() && (getType()->isArrayType() || getType()->isRecordType()) &&
5913 !Ctx.getLangOptions().CPlusPlus0x)
5914 return false;
5915
Richard Smith099e7f62011-12-19 06:19:21 +00005916 Expr::EvalStatus EStatus;
5917 EStatus.Diag = &Notes;
5918
5919 EvalInfo InitInfo(Ctx, EStatus);
5920 InitInfo.setEvaluatingDecl(VD, Value);
5921
Richard Smith51201882011-12-30 21:15:51 +00005922 if (!CheckLiteralType(InitInfo, this))
5923 return false;
5924
Richard Smith099e7f62011-12-19 06:19:21 +00005925 LValue LVal;
5926 LVal.set(VD);
5927
Richard Smith51201882011-12-30 21:15:51 +00005928 // C++11 [basic.start.init]p2:
5929 // Variables with static storage duration or thread storage duration shall be
5930 // zero-initialized before any other initialization takes place.
5931 // This behavior is not present in C.
5932 if (Ctx.getLangOptions().CPlusPlus && !VD->hasLocalStorage() &&
5933 !VD->getType()->isReferenceType()) {
5934 ImplicitValueInitExpr VIE(VD->getType());
5935 if (!EvaluateConstantExpression(Value, InitInfo, LVal, &VIE))
5936 return false;
5937 }
5938
Richard Smith099e7f62011-12-19 06:19:21 +00005939 return EvaluateConstantExpression(Value, InitInfo, LVal, this) &&
5940 !EStatus.HasSideEffects;
5941}
5942
Richard Smith51f47082011-10-29 00:50:52 +00005943/// isEvaluatable - Call EvaluateAsRValue to see if this expression can be
5944/// constant folded, but discard the result.
Jay Foad4ba2a172011-01-12 09:06:06 +00005945bool Expr::isEvaluatable(const ASTContext &Ctx) const {
Anders Carlsson4fdfb092008-12-01 06:44:05 +00005946 EvalResult Result;
Richard Smith51f47082011-10-29 00:50:52 +00005947 return EvaluateAsRValue(Result, Ctx) && !Result.HasSideEffects;
Chris Lattner45b6b9d2008-10-06 06:49:02 +00005948}
Anders Carlsson51fe9962008-11-22 21:04:56 +00005949
Jay Foad4ba2a172011-01-12 09:06:06 +00005950bool Expr::HasSideEffects(const ASTContext &Ctx) const {
Richard Smith1e12c592011-10-16 21:26:27 +00005951 return HasSideEffect(Ctx).Visit(this);
Fariborz Jahanian393c2472009-11-05 18:03:03 +00005952}
5953
Richard Smitha6b8b2c2011-10-10 18:28:20 +00005954APSInt Expr::EvaluateKnownConstInt(const ASTContext &Ctx) const {
Anders Carlsson1c0cfd42008-12-19 20:58:05 +00005955 EvalResult EvalResult;
Richard Smith51f47082011-10-29 00:50:52 +00005956 bool Result = EvaluateAsRValue(EvalResult, Ctx);
Jeffrey Yasskinc6ed7292010-12-23 01:01:28 +00005957 (void)Result;
Anders Carlsson51fe9962008-11-22 21:04:56 +00005958 assert(Result && "Could not evaluate expression");
Anders Carlsson1c0cfd42008-12-19 20:58:05 +00005959 assert(EvalResult.Val.isInt() && "Expression did not evaluate to integer");
Anders Carlsson51fe9962008-11-22 21:04:56 +00005960
Anders Carlsson1c0cfd42008-12-19 20:58:05 +00005961 return EvalResult.Val.getInt();
Anders Carlsson51fe9962008-11-22 21:04:56 +00005962}
John McCalld905f5a2010-05-07 05:32:02 +00005963
Abramo Bagnarae17a6432010-05-14 17:07:14 +00005964 bool Expr::EvalResult::isGlobalLValue() const {
5965 assert(Val.isLValue());
5966 return IsGlobalLValue(Val.getLValueBase());
5967 }
5968
5969
John McCalld905f5a2010-05-07 05:32:02 +00005970/// isIntegerConstantExpr - this recursive routine will test if an expression is
5971/// an integer constant expression.
5972
5973/// FIXME: Pass up a reason why! Invalid operation in i-c-e, division by zero,
5974/// comma, etc
5975///
5976/// FIXME: Handle offsetof. Two things to do: Handle GCC's __builtin_offsetof
5977/// to support gcc 4.0+ and handle the idiom GCC recognizes with a null pointer
5978/// cast+dereference.
5979
5980// CheckICE - This function does the fundamental ICE checking: the returned
5981// ICEDiag contains a Val of 0, 1, or 2, and a possibly null SourceLocation.
5982// Note that to reduce code duplication, this helper does no evaluation
5983// itself; the caller checks whether the expression is evaluatable, and
5984// in the rare cases where CheckICE actually cares about the evaluated
5985// value, it calls into Evalute.
5986//
5987// Meanings of Val:
Richard Smith51f47082011-10-29 00:50:52 +00005988// 0: This expression is an ICE.
John McCalld905f5a2010-05-07 05:32:02 +00005989// 1: This expression is not an ICE, but if it isn't evaluated, it's
5990// a legal subexpression for an ICE. This return value is used to handle
5991// the comma operator in C99 mode.
5992// 2: This expression is not an ICE, and is not a legal subexpression for one.
5993
Dan Gohman3c46e8d2010-07-26 21:25:24 +00005994namespace {
5995
John McCalld905f5a2010-05-07 05:32:02 +00005996struct ICEDiag {
5997 unsigned Val;
5998 SourceLocation Loc;
5999
6000 public:
6001 ICEDiag(unsigned v, SourceLocation l) : Val(v), Loc(l) {}
6002 ICEDiag() : Val(0) {}
6003};
6004
Dan Gohman3c46e8d2010-07-26 21:25:24 +00006005}
6006
6007static ICEDiag NoDiag() { return ICEDiag(); }
John McCalld905f5a2010-05-07 05:32:02 +00006008
6009static ICEDiag CheckEvalInICE(const Expr* E, ASTContext &Ctx) {
6010 Expr::EvalResult EVResult;
Richard Smith51f47082011-10-29 00:50:52 +00006011 if (!E->EvaluateAsRValue(EVResult, Ctx) || EVResult.HasSideEffects ||
John McCalld905f5a2010-05-07 05:32:02 +00006012 !EVResult.Val.isInt()) {
6013 return ICEDiag(2, E->getLocStart());
6014 }
6015 return NoDiag();
6016}
6017
6018static ICEDiag CheckICE(const Expr* E, ASTContext &Ctx) {
6019 assert(!E->isValueDependent() && "Should not see value dependent exprs!");
Douglas Gregor2ade35e2010-06-16 00:17:44 +00006020 if (!E->getType()->isIntegralOrEnumerationType()) {
John McCalld905f5a2010-05-07 05:32:02 +00006021 return ICEDiag(2, E->getLocStart());
6022 }
6023
6024 switch (E->getStmtClass()) {
John McCall63c00d72011-02-09 08:16:59 +00006025#define ABSTRACT_STMT(Node)
John McCalld905f5a2010-05-07 05:32:02 +00006026#define STMT(Node, Base) case Expr::Node##Class:
6027#define EXPR(Node, Base)
6028#include "clang/AST/StmtNodes.inc"
6029 case Expr::PredefinedExprClass:
6030 case Expr::FloatingLiteralClass:
6031 case Expr::ImaginaryLiteralClass:
6032 case Expr::StringLiteralClass:
6033 case Expr::ArraySubscriptExprClass:
6034 case Expr::MemberExprClass:
6035 case Expr::CompoundAssignOperatorClass:
6036 case Expr::CompoundLiteralExprClass:
6037 case Expr::ExtVectorElementExprClass:
John McCalld905f5a2010-05-07 05:32:02 +00006038 case Expr::DesignatedInitExprClass:
6039 case Expr::ImplicitValueInitExprClass:
6040 case Expr::ParenListExprClass:
6041 case Expr::VAArgExprClass:
6042 case Expr::AddrLabelExprClass:
6043 case Expr::StmtExprClass:
6044 case Expr::CXXMemberCallExprClass:
Peter Collingbournee08ce652011-02-09 21:07:24 +00006045 case Expr::CUDAKernelCallExprClass:
John McCalld905f5a2010-05-07 05:32:02 +00006046 case Expr::CXXDynamicCastExprClass:
6047 case Expr::CXXTypeidExprClass:
Francois Pichet9be88402010-09-08 23:47:05 +00006048 case Expr::CXXUuidofExprClass:
John McCalld905f5a2010-05-07 05:32:02 +00006049 case Expr::CXXNullPtrLiteralExprClass:
6050 case Expr::CXXThisExprClass:
6051 case Expr::CXXThrowExprClass:
6052 case Expr::CXXNewExprClass:
6053 case Expr::CXXDeleteExprClass:
6054 case Expr::CXXPseudoDestructorExprClass:
6055 case Expr::UnresolvedLookupExprClass:
6056 case Expr::DependentScopeDeclRefExprClass:
6057 case Expr::CXXConstructExprClass:
6058 case Expr::CXXBindTemporaryExprClass:
John McCall4765fa02010-12-06 08:20:24 +00006059 case Expr::ExprWithCleanupsClass:
John McCalld905f5a2010-05-07 05:32:02 +00006060 case Expr::CXXTemporaryObjectExprClass:
6061 case Expr::CXXUnresolvedConstructExprClass:
6062 case Expr::CXXDependentScopeMemberExprClass:
6063 case Expr::UnresolvedMemberExprClass:
6064 case Expr::ObjCStringLiteralClass:
6065 case Expr::ObjCEncodeExprClass:
6066 case Expr::ObjCMessageExprClass:
6067 case Expr::ObjCSelectorExprClass:
6068 case Expr::ObjCProtocolExprClass:
6069 case Expr::ObjCIvarRefExprClass:
6070 case Expr::ObjCPropertyRefExprClass:
John McCalld905f5a2010-05-07 05:32:02 +00006071 case Expr::ObjCIsaExprClass:
6072 case Expr::ShuffleVectorExprClass:
6073 case Expr::BlockExprClass:
6074 case Expr::BlockDeclRefExprClass:
6075 case Expr::NoStmtClass:
John McCall7cd7d1a2010-11-15 23:31:06 +00006076 case Expr::OpaqueValueExprClass:
Douglas Gregorbe230c32011-01-03 17:17:50 +00006077 case Expr::PackExpansionExprClass:
Douglas Gregorc7793c72011-01-15 01:15:58 +00006078 case Expr::SubstNonTypeTemplateParmPackExprClass:
Tanya Lattner61eee0c2011-06-04 00:47:47 +00006079 case Expr::AsTypeExprClass:
John McCallf85e1932011-06-15 23:02:42 +00006080 case Expr::ObjCIndirectCopyRestoreExprClass:
Douglas Gregor03e80032011-06-21 17:03:29 +00006081 case Expr::MaterializeTemporaryExprClass:
John McCall4b9c2d22011-11-06 09:01:30 +00006082 case Expr::PseudoObjectExprClass:
Eli Friedman276b0612011-10-11 02:20:01 +00006083 case Expr::AtomicExprClass:
Sebastian Redlcea8d962011-09-24 17:48:14 +00006084 case Expr::InitListExprClass:
Sebastian Redlcea8d962011-09-24 17:48:14 +00006085 return ICEDiag(2, E->getLocStart());
6086
Douglas Gregoree8aff02011-01-04 17:33:58 +00006087 case Expr::SizeOfPackExprClass:
John McCalld905f5a2010-05-07 05:32:02 +00006088 case Expr::GNUNullExprClass:
6089 // GCC considers the GNU __null value to be an integral constant expression.
6090 return NoDiag();
6091
John McCall91a57552011-07-15 05:09:51 +00006092 case Expr::SubstNonTypeTemplateParmExprClass:
6093 return
6094 CheckICE(cast<SubstNonTypeTemplateParmExpr>(E)->getReplacement(), Ctx);
6095
John McCalld905f5a2010-05-07 05:32:02 +00006096 case Expr::ParenExprClass:
6097 return CheckICE(cast<ParenExpr>(E)->getSubExpr(), Ctx);
Peter Collingbournef111d932011-04-15 00:35:48 +00006098 case Expr::GenericSelectionExprClass:
6099 return CheckICE(cast<GenericSelectionExpr>(E)->getResultExpr(), Ctx);
John McCalld905f5a2010-05-07 05:32:02 +00006100 case Expr::IntegerLiteralClass:
6101 case Expr::CharacterLiteralClass:
6102 case Expr::CXXBoolLiteralExprClass:
Douglas Gregored8abf12010-07-08 06:14:04 +00006103 case Expr::CXXScalarValueInitExprClass:
John McCalld905f5a2010-05-07 05:32:02 +00006104 case Expr::UnaryTypeTraitExprClass:
Francois Pichet6ad6f282010-12-07 00:08:36 +00006105 case Expr::BinaryTypeTraitExprClass:
John Wiegley21ff2e52011-04-28 00:16:57 +00006106 case Expr::ArrayTypeTraitExprClass:
John Wiegley55262202011-04-25 06:54:41 +00006107 case Expr::ExpressionTraitExprClass:
Sebastian Redl2e156222010-09-10 20:55:43 +00006108 case Expr::CXXNoexceptExprClass:
John McCalld905f5a2010-05-07 05:32:02 +00006109 return NoDiag();
6110 case Expr::CallExprClass:
Sean Hunt6cf75022010-08-30 17:47:05 +00006111 case Expr::CXXOperatorCallExprClass: {
Richard Smith05830142011-10-24 22:35:48 +00006112 // C99 6.6/3 allows function calls within unevaluated subexpressions of
6113 // constant expressions, but they can never be ICEs because an ICE cannot
6114 // contain an operand of (pointer to) function type.
John McCalld905f5a2010-05-07 05:32:02 +00006115 const CallExpr *CE = cast<CallExpr>(E);
Richard Smith180f4792011-11-10 06:34:14 +00006116 if (CE->isBuiltinCall())
John McCalld905f5a2010-05-07 05:32:02 +00006117 return CheckEvalInICE(E, Ctx);
6118 return ICEDiag(2, E->getLocStart());
6119 }
6120 case Expr::DeclRefExprClass:
6121 if (isa<EnumConstantDecl>(cast<DeclRefExpr>(E)->getDecl()))
6122 return NoDiag();
Richard Smith03f96112011-10-24 17:54:18 +00006123 if (Ctx.getLangOptions().CPlusPlus && IsConstNonVolatile(E->getType())) {
John McCalld905f5a2010-05-07 05:32:02 +00006124 const NamedDecl *D = cast<DeclRefExpr>(E)->getDecl();
6125
6126 // Parameter variables are never constants. Without this check,
6127 // getAnyInitializer() can find a default argument, which leads
6128 // to chaos.
6129 if (isa<ParmVarDecl>(D))
6130 return ICEDiag(2, cast<DeclRefExpr>(E)->getLocation());
6131
6132 // C++ 7.1.5.1p2
6133 // A variable of non-volatile const-qualified integral or enumeration
6134 // type initialized by an ICE can be used in ICEs.
6135 if (const VarDecl *Dcl = dyn_cast<VarDecl>(D)) {
Richard Smithdb1822c2011-11-08 01:31:09 +00006136 if (!Dcl->getType()->isIntegralOrEnumerationType())
6137 return ICEDiag(2, cast<DeclRefExpr>(E)->getLocation());
6138
Richard Smith099e7f62011-12-19 06:19:21 +00006139 const VarDecl *VD;
6140 // Look for a declaration of this variable that has an initializer, and
6141 // check whether it is an ICE.
6142 if (Dcl->getAnyInitializer(VD) && VD->checkInitIsICE())
6143 return NoDiag();
6144 else
6145 return ICEDiag(2, cast<DeclRefExpr>(E)->getLocation());
John McCalld905f5a2010-05-07 05:32:02 +00006146 }
6147 }
6148 return ICEDiag(2, E->getLocStart());
6149 case Expr::UnaryOperatorClass: {
6150 const UnaryOperator *Exp = cast<UnaryOperator>(E);
6151 switch (Exp->getOpcode()) {
John McCall2de56d12010-08-25 11:45:40 +00006152 case UO_PostInc:
6153 case UO_PostDec:
6154 case UO_PreInc:
6155 case UO_PreDec:
6156 case UO_AddrOf:
6157 case UO_Deref:
Richard Smith05830142011-10-24 22:35:48 +00006158 // C99 6.6/3 allows increment and decrement within unevaluated
6159 // subexpressions of constant expressions, but they can never be ICEs
6160 // because an ICE cannot contain an lvalue operand.
John McCalld905f5a2010-05-07 05:32:02 +00006161 return ICEDiag(2, E->getLocStart());
John McCall2de56d12010-08-25 11:45:40 +00006162 case UO_Extension:
6163 case UO_LNot:
6164 case UO_Plus:
6165 case UO_Minus:
6166 case UO_Not:
6167 case UO_Real:
6168 case UO_Imag:
John McCalld905f5a2010-05-07 05:32:02 +00006169 return CheckICE(Exp->getSubExpr(), Ctx);
John McCalld905f5a2010-05-07 05:32:02 +00006170 }
6171
6172 // OffsetOf falls through here.
6173 }
6174 case Expr::OffsetOfExprClass: {
6175 // Note that per C99, offsetof must be an ICE. And AFAIK, using
Richard Smith51f47082011-10-29 00:50:52 +00006176 // EvaluateAsRValue matches the proposed gcc behavior for cases like
Richard Smith05830142011-10-24 22:35:48 +00006177 // "offsetof(struct s{int x[4];}, x[1.0])". This doesn't affect
John McCalld905f5a2010-05-07 05:32:02 +00006178 // compliance: we should warn earlier for offsetof expressions with
6179 // array subscripts that aren't ICEs, and if the array subscripts
6180 // are ICEs, the value of the offsetof must be an integer constant.
6181 return CheckEvalInICE(E, Ctx);
6182 }
Peter Collingbournef4e3cfb2011-03-11 19:24:49 +00006183 case Expr::UnaryExprOrTypeTraitExprClass: {
6184 const UnaryExprOrTypeTraitExpr *Exp = cast<UnaryExprOrTypeTraitExpr>(E);
6185 if ((Exp->getKind() == UETT_SizeOf) &&
6186 Exp->getTypeOfArgument()->isVariableArrayType())
John McCalld905f5a2010-05-07 05:32:02 +00006187 return ICEDiag(2, E->getLocStart());
6188 return NoDiag();
6189 }
6190 case Expr::BinaryOperatorClass: {
6191 const BinaryOperator *Exp = cast<BinaryOperator>(E);
6192 switch (Exp->getOpcode()) {
John McCall2de56d12010-08-25 11:45:40 +00006193 case BO_PtrMemD:
6194 case BO_PtrMemI:
6195 case BO_Assign:
6196 case BO_MulAssign:
6197 case BO_DivAssign:
6198 case BO_RemAssign:
6199 case BO_AddAssign:
6200 case BO_SubAssign:
6201 case BO_ShlAssign:
6202 case BO_ShrAssign:
6203 case BO_AndAssign:
6204 case BO_XorAssign:
6205 case BO_OrAssign:
Richard Smith05830142011-10-24 22:35:48 +00006206 // C99 6.6/3 allows assignments within unevaluated subexpressions of
6207 // constant expressions, but they can never be ICEs because an ICE cannot
6208 // contain an lvalue operand.
John McCalld905f5a2010-05-07 05:32:02 +00006209 return ICEDiag(2, E->getLocStart());
6210
John McCall2de56d12010-08-25 11:45:40 +00006211 case BO_Mul:
6212 case BO_Div:
6213 case BO_Rem:
6214 case BO_Add:
6215 case BO_Sub:
6216 case BO_Shl:
6217 case BO_Shr:
6218 case BO_LT:
6219 case BO_GT:
6220 case BO_LE:
6221 case BO_GE:
6222 case BO_EQ:
6223 case BO_NE:
6224 case BO_And:
6225 case BO_Xor:
6226 case BO_Or:
6227 case BO_Comma: {
John McCalld905f5a2010-05-07 05:32:02 +00006228 ICEDiag LHSResult = CheckICE(Exp->getLHS(), Ctx);
6229 ICEDiag RHSResult = CheckICE(Exp->getRHS(), Ctx);
John McCall2de56d12010-08-25 11:45:40 +00006230 if (Exp->getOpcode() == BO_Div ||
6231 Exp->getOpcode() == BO_Rem) {
Richard Smith51f47082011-10-29 00:50:52 +00006232 // EvaluateAsRValue gives an error for undefined Div/Rem, so make sure
John McCalld905f5a2010-05-07 05:32:02 +00006233 // we don't evaluate one.
John McCall3b332ab2011-02-26 08:27:17 +00006234 if (LHSResult.Val == 0 && RHSResult.Val == 0) {
Richard Smitha6b8b2c2011-10-10 18:28:20 +00006235 llvm::APSInt REval = Exp->getRHS()->EvaluateKnownConstInt(Ctx);
John McCalld905f5a2010-05-07 05:32:02 +00006236 if (REval == 0)
6237 return ICEDiag(1, E->getLocStart());
6238 if (REval.isSigned() && REval.isAllOnesValue()) {
Richard Smitha6b8b2c2011-10-10 18:28:20 +00006239 llvm::APSInt LEval = Exp->getLHS()->EvaluateKnownConstInt(Ctx);
John McCalld905f5a2010-05-07 05:32:02 +00006240 if (LEval.isMinSignedValue())
6241 return ICEDiag(1, E->getLocStart());
6242 }
6243 }
6244 }
John McCall2de56d12010-08-25 11:45:40 +00006245 if (Exp->getOpcode() == BO_Comma) {
John McCalld905f5a2010-05-07 05:32:02 +00006246 if (Ctx.getLangOptions().C99) {
6247 // C99 6.6p3 introduces a strange edge case: comma can be in an ICE
6248 // if it isn't evaluated.
6249 if (LHSResult.Val == 0 && RHSResult.Val == 0)
6250 return ICEDiag(1, E->getLocStart());
6251 } else {
6252 // In both C89 and C++, commas in ICEs are illegal.
6253 return ICEDiag(2, E->getLocStart());
6254 }
6255 }
6256 if (LHSResult.Val >= RHSResult.Val)
6257 return LHSResult;
6258 return RHSResult;
6259 }
John McCall2de56d12010-08-25 11:45:40 +00006260 case BO_LAnd:
6261 case BO_LOr: {
John McCalld905f5a2010-05-07 05:32:02 +00006262 ICEDiag LHSResult = CheckICE(Exp->getLHS(), Ctx);
6263 ICEDiag RHSResult = CheckICE(Exp->getRHS(), Ctx);
6264 if (LHSResult.Val == 0 && RHSResult.Val == 1) {
6265 // Rare case where the RHS has a comma "side-effect"; we need
6266 // to actually check the condition to see whether the side
6267 // with the comma is evaluated.
John McCall2de56d12010-08-25 11:45:40 +00006268 if ((Exp->getOpcode() == BO_LAnd) !=
Richard Smitha6b8b2c2011-10-10 18:28:20 +00006269 (Exp->getLHS()->EvaluateKnownConstInt(Ctx) == 0))
John McCalld905f5a2010-05-07 05:32:02 +00006270 return RHSResult;
6271 return NoDiag();
6272 }
6273
6274 if (LHSResult.Val >= RHSResult.Val)
6275 return LHSResult;
6276 return RHSResult;
6277 }
6278 }
6279 }
6280 case Expr::ImplicitCastExprClass:
6281 case Expr::CStyleCastExprClass:
6282 case Expr::CXXFunctionalCastExprClass:
6283 case Expr::CXXStaticCastExprClass:
6284 case Expr::CXXReinterpretCastExprClass:
Richard Smith32cb4712011-10-24 18:26:35 +00006285 case Expr::CXXConstCastExprClass:
John McCallf85e1932011-06-15 23:02:42 +00006286 case Expr::ObjCBridgedCastExprClass: {
John McCalld905f5a2010-05-07 05:32:02 +00006287 const Expr *SubExpr = cast<CastExpr>(E)->getSubExpr();
Richard Smith2116b142011-12-18 02:33:09 +00006288 if (isa<ExplicitCastExpr>(E)) {
6289 if (const FloatingLiteral *FL
6290 = dyn_cast<FloatingLiteral>(SubExpr->IgnoreParenImpCasts())) {
6291 unsigned DestWidth = Ctx.getIntWidth(E->getType());
6292 bool DestSigned = E->getType()->isSignedIntegerOrEnumerationType();
6293 APSInt IgnoredVal(DestWidth, !DestSigned);
6294 bool Ignored;
6295 // If the value does not fit in the destination type, the behavior is
6296 // undefined, so we are not required to treat it as a constant
6297 // expression.
6298 if (FL->getValue().convertToInteger(IgnoredVal,
6299 llvm::APFloat::rmTowardZero,
6300 &Ignored) & APFloat::opInvalidOp)
6301 return ICEDiag(2, E->getLocStart());
6302 return NoDiag();
6303 }
6304 }
Eli Friedmaneea0e812011-09-29 21:49:34 +00006305 switch (cast<CastExpr>(E)->getCastKind()) {
6306 case CK_LValueToRValue:
David Chisnall7a7ee302012-01-16 17:27:18 +00006307 case CK_AtomicToNonAtomic:
6308 case CK_NonAtomicToAtomic:
Eli Friedmaneea0e812011-09-29 21:49:34 +00006309 case CK_NoOp:
6310 case CK_IntegralToBoolean:
6311 case CK_IntegralCast:
John McCalld905f5a2010-05-07 05:32:02 +00006312 return CheckICE(SubExpr, Ctx);
Eli Friedmaneea0e812011-09-29 21:49:34 +00006313 default:
Eli Friedmaneea0e812011-09-29 21:49:34 +00006314 return ICEDiag(2, E->getLocStart());
6315 }
John McCalld905f5a2010-05-07 05:32:02 +00006316 }
John McCall56ca35d2011-02-17 10:25:35 +00006317 case Expr::BinaryConditionalOperatorClass: {
6318 const BinaryConditionalOperator *Exp = cast<BinaryConditionalOperator>(E);
6319 ICEDiag CommonResult = CheckICE(Exp->getCommon(), Ctx);
6320 if (CommonResult.Val == 2) return CommonResult;
6321 ICEDiag FalseResult = CheckICE(Exp->getFalseExpr(), Ctx);
6322 if (FalseResult.Val == 2) return FalseResult;
6323 if (CommonResult.Val == 1) return CommonResult;
6324 if (FalseResult.Val == 1 &&
Richard Smitha6b8b2c2011-10-10 18:28:20 +00006325 Exp->getCommon()->EvaluateKnownConstInt(Ctx) == 0) return NoDiag();
John McCall56ca35d2011-02-17 10:25:35 +00006326 return FalseResult;
6327 }
John McCalld905f5a2010-05-07 05:32:02 +00006328 case Expr::ConditionalOperatorClass: {
6329 const ConditionalOperator *Exp = cast<ConditionalOperator>(E);
6330 // If the condition (ignoring parens) is a __builtin_constant_p call,
6331 // then only the true side is actually considered in an integer constant
6332 // expression, and it is fully evaluated. This is an important GNU
6333 // extension. See GCC PR38377 for discussion.
6334 if (const CallExpr *CallCE
6335 = dyn_cast<CallExpr>(Exp->getCond()->IgnoreParenCasts()))
Richard Smith80d4b552011-12-28 19:48:30 +00006336 if (CallCE->isBuiltinCall() == Builtin::BI__builtin_constant_p)
6337 return CheckEvalInICE(E, Ctx);
John McCalld905f5a2010-05-07 05:32:02 +00006338 ICEDiag CondResult = CheckICE(Exp->getCond(), Ctx);
John McCalld905f5a2010-05-07 05:32:02 +00006339 if (CondResult.Val == 2)
6340 return CondResult;
Douglas Gregor63fe6812011-05-24 16:02:01 +00006341
Richard Smithf48fdb02011-12-09 22:58:01 +00006342 ICEDiag TrueResult = CheckICE(Exp->getTrueExpr(), Ctx);
6343 ICEDiag FalseResult = CheckICE(Exp->getFalseExpr(), Ctx);
Douglas Gregor63fe6812011-05-24 16:02:01 +00006344
John McCalld905f5a2010-05-07 05:32:02 +00006345 if (TrueResult.Val == 2)
6346 return TrueResult;
6347 if (FalseResult.Val == 2)
6348 return FalseResult;
6349 if (CondResult.Val == 1)
6350 return CondResult;
6351 if (TrueResult.Val == 0 && FalseResult.Val == 0)
6352 return NoDiag();
6353 // Rare case where the diagnostics depend on which side is evaluated
6354 // Note that if we get here, CondResult is 0, and at least one of
6355 // TrueResult and FalseResult is non-zero.
Richard Smitha6b8b2c2011-10-10 18:28:20 +00006356 if (Exp->getCond()->EvaluateKnownConstInt(Ctx) == 0) {
John McCalld905f5a2010-05-07 05:32:02 +00006357 return FalseResult;
6358 }
6359 return TrueResult;
6360 }
6361 case Expr::CXXDefaultArgExprClass:
6362 return CheckICE(cast<CXXDefaultArgExpr>(E)->getExpr(), Ctx);
6363 case Expr::ChooseExprClass: {
6364 return CheckICE(cast<ChooseExpr>(E)->getChosenSubExpr(Ctx), Ctx);
6365 }
6366 }
6367
David Blaikie30263482012-01-20 21:50:17 +00006368 llvm_unreachable("Invalid StmtClass!");
John McCalld905f5a2010-05-07 05:32:02 +00006369}
6370
Richard Smithf48fdb02011-12-09 22:58:01 +00006371/// Evaluate an expression as a C++11 integral constant expression.
6372static bool EvaluateCPlusPlus11IntegralConstantExpr(ASTContext &Ctx,
6373 const Expr *E,
6374 llvm::APSInt *Value,
6375 SourceLocation *Loc) {
6376 if (!E->getType()->isIntegralOrEnumerationType()) {
6377 if (Loc) *Loc = E->getExprLoc();
6378 return false;
6379 }
6380
Richard Smith4c3fc9b2012-01-18 05:21:49 +00006381 APValue Result;
6382 if (!E->isCXX11ConstantExpr(Ctx, &Result, Loc))
Richard Smithdd1f29b2011-12-12 09:28:41 +00006383 return false;
6384
Richard Smith4c3fc9b2012-01-18 05:21:49 +00006385 assert(Result.isInt() && "pointer cast to int is not an ICE");
6386 if (Value) *Value = Result.getInt();
Richard Smithdd1f29b2011-12-12 09:28:41 +00006387 return true;
Richard Smithf48fdb02011-12-09 22:58:01 +00006388}
6389
Richard Smithdd1f29b2011-12-12 09:28:41 +00006390bool Expr::isIntegerConstantExpr(ASTContext &Ctx, SourceLocation *Loc) const {
Richard Smithf48fdb02011-12-09 22:58:01 +00006391 if (Ctx.getLangOptions().CPlusPlus0x)
6392 return EvaluateCPlusPlus11IntegralConstantExpr(Ctx, this, 0, Loc);
6393
John McCalld905f5a2010-05-07 05:32:02 +00006394 ICEDiag d = CheckICE(this, Ctx);
6395 if (d.Val != 0) {
6396 if (Loc) *Loc = d.Loc;
6397 return false;
6398 }
Richard Smithf48fdb02011-12-09 22:58:01 +00006399 return true;
6400}
6401
6402bool Expr::isIntegerConstantExpr(llvm::APSInt &Value, ASTContext &Ctx,
6403 SourceLocation *Loc, bool isEvaluated) const {
6404 if (Ctx.getLangOptions().CPlusPlus0x)
6405 return EvaluateCPlusPlus11IntegralConstantExpr(Ctx, this, &Value, Loc);
6406
6407 if (!isIntegerConstantExpr(Ctx, Loc))
6408 return false;
6409 if (!EvaluateAsInt(Value, Ctx))
John McCalld905f5a2010-05-07 05:32:02 +00006410 llvm_unreachable("ICE cannot be evaluated!");
John McCalld905f5a2010-05-07 05:32:02 +00006411 return true;
6412}
Richard Smith4c3fc9b2012-01-18 05:21:49 +00006413
6414bool Expr::isCXX11ConstantExpr(ASTContext &Ctx, APValue *Result,
6415 SourceLocation *Loc) const {
6416 // We support this checking in C++98 mode in order to diagnose compatibility
6417 // issues.
6418 assert(Ctx.getLangOptions().CPlusPlus);
6419
6420 Expr::EvalStatus Status;
6421 llvm::SmallVector<PartialDiagnosticAt, 8> Diags;
6422 Status.Diag = &Diags;
6423 EvalInfo Info(Ctx, Status);
6424
6425 APValue Scratch;
6426 bool IsConstExpr = ::EvaluateAsRValue(Info, this, Result ? *Result : Scratch);
6427
6428 if (!Diags.empty()) {
6429 IsConstExpr = false;
6430 if (Loc) *Loc = Diags[0].first;
6431 } else if (!IsConstExpr) {
6432 // FIXME: This shouldn't happen.
6433 if (Loc) *Loc = getExprLoc();
6434 }
6435
6436 return IsConstExpr;
6437}
Richard Smith745f5142012-01-27 01:14:48 +00006438
6439bool Expr::isPotentialConstantExpr(const FunctionDecl *FD,
6440 llvm::SmallVectorImpl<
6441 PartialDiagnosticAt> &Diags) {
6442 // FIXME: It would be useful to check constexpr function templates, but at the
6443 // moment the constant expression evaluator cannot cope with the non-rigorous
6444 // ASTs which we build for dependent expressions.
6445 if (FD->isDependentContext())
6446 return true;
6447
6448 Expr::EvalStatus Status;
6449 Status.Diag = &Diags;
6450
6451 EvalInfo Info(FD->getASTContext(), Status);
6452 Info.CheckingPotentialConstantExpression = true;
6453
6454 const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(FD);
6455 const CXXRecordDecl *RD = MD ? MD->getParent()->getCanonicalDecl() : 0;
6456
6457 // FIXME: Fabricate an arbitrary expression on the stack and pretend that it
6458 // is a temporary being used as the 'this' pointer.
6459 LValue This;
6460 ImplicitValueInitExpr VIE(RD ? Info.Ctx.getRecordType(RD) : Info.Ctx.IntTy);
6461 This.set(&VIE, Info.CurrentCall);
6462
6463 APValue Scratch;
6464 ArrayRef<const Expr*> Args;
6465
6466 SourceLocation Loc = FD->getLocation();
6467
6468 if (const CXXConstructorDecl *CD = dyn_cast<CXXConstructorDecl>(FD)) {
6469 HandleConstructorCall(Loc, This, Args, CD, Info, Scratch);
6470 } else
6471 HandleFunctionCall(Loc, FD, (MD && MD->isInstance()) ? &This : 0,
6472 Args, FD->getBody(), Info, Scratch);
6473
6474 return Diags.empty();
6475}