35#include "llvm/Support/ErrorHandling.h"
36#include "llvm/Support/Format.h"
37#include "llvm/Support/raw_ostream.h"
49 if (
auto *BO = dyn_cast<BinaryOperator>(
E)) {
50 if (BO->getOpcode() == BO_Comma) {
57 if (
auto *MTE = dyn_cast<MaterializeTemporaryExpr>(
E)) {
58 E = MTE->getSubExpr();
79 return cast<CXXRecordDecl>(
D);
89 if (
const auto *CE = dyn_cast<CastExpr>(
E)) {
90 if ((CE->getCastKind() == CK_DerivedToBase ||
91 CE->getCastKind() == CK_UncheckedDerivedToBase) &&
100 if (CE->getCastKind() == CK_NoOp) {
101 E = CE->getSubExpr();
104 }
else if (
const auto *ME = dyn_cast<MemberExpr>(
E)) {
105 if (!ME->isArrow()) {
106 assert(ME->getBase()->getType()->getAsRecordDecl());
107 if (
const auto *Field = dyn_cast<FieldDecl>(ME->getMemberDecl())) {
108 if (!Field->isBitField() && !Field->getType()->isReferenceType()) {
115 }
else if (
const auto *BO = dyn_cast<BinaryOperator>(
E)) {
116 if (BO->getOpcode() == BO_PtrMemD) {
117 assert(BO->getRHS()->isPRValue());
123 if (BO->getOpcode() == BO_Comma) {
124 CommaLHSs.push_back(BO->getLHS());
145 switch (UO->getOpcode()) {
147 return UO->getSubExpr()->isKnownToHaveBooleanValue(Semantic);
159 return CE->getSubExpr()->isKnownToHaveBooleanValue(Semantic);
162 switch (BO->getOpcode()) {
163 default:
return false;
178 return BO->getLHS()->isKnownToHaveBooleanValue(Semantic) &&
179 BO->getRHS()->isKnownToHaveBooleanValue(Semantic);
183 return BO->getRHS()->isKnownToHaveBooleanValue(Semantic);
188 return CO->getTrueExpr()->isKnownToHaveBooleanValue(Semantic) &&
189 CO->getFalseExpr()->isKnownToHaveBooleanValue(Semantic);
191 if (isa<ObjCBoolLiteralExpr>(
E))
194 if (
const auto *OVE = dyn_cast<OpaqueValueExpr>(
E))
195 return OVE->getSourceExpr()->isKnownToHaveBooleanValue(Semantic);
198 if (!Semantic && FD->getType()->isUnsignedIntegerType() &&
199 !FD->getBitWidth()->isValueDependent() && FD->getBitWidthValue() == 1)
208 bool IgnoreTemplateOrMacroSubstitution)
const {
210 const Decl *
D =
nullptr;
212 if (
const auto *ME = dyn_cast<MemberExpr>(
E))
213 D = ME->getMemberDecl();
214 else if (
const auto *DRE = dyn_cast<DeclRefExpr>(
E))
216 else if (
const auto *IRE = dyn_cast<ObjCIvarRefExpr>(
E))
220 StrictFlexArraysLevel,
221 IgnoreTemplateOrMacroSubstitution);
231 if (
Value.isMemberPointer())
232 return Value.getMemberPointerDecl();
234 if (
Value.isLValue() &&
Value.getLValueOffset().isZero())
248 template <
class E,
class T>
251 return static_cast<const E*
>(
expr)->getExprLoc();
261 return static_cast<const E *
>(
expr)->getBeginLoc();
269 const auto *ED = cast<EnumDecl>(ECD->getDeclContext());
270 if (ED->isCompleteDefinition())
279#define ABSTRACT_STMT(type)
280#define STMT(type, base) \
281 case Stmt::type##Class: break;
282#define EXPR(type, base) \
283 case Stmt::type##Class: return getExprLocImpl<type>(this, &type::getExprLoc);
284#include "clang/AST/StmtNodes.inc"
286 llvm_unreachable(
"unknown expression kind");
297 "Invalid StorageKind Value");
307 if (!
Value.getInt().needsCleanup())
323 bool IsImmediateInvocation)
324 :
FullExpr(ConstantExprClass, SubExpr) {
333 ::new (getTrailingObjects<APValue>())
APValue();
338 bool IsImmediateInvocation) {
339 assert(!isa<ConstantExpr>(
E));
342 unsigned Size = totalSizeToAlloc<APValue, uint64_t>(
346 return new (Mem)
ConstantExpr(
E, StorageKind, IsImmediateInvocation);
357ConstantExpr::ConstantExpr(EmptyShell
Empty,
363 ::new (getTrailingObjects<APValue>())
APValue();
370 unsigned Size = totalSizeToAlloc<APValue, uint64_t>(
379 "Invalid storage for this value kind");
385 Int64Result() = *
Value.getInt().getRawData();
394 APValueResult() = std::move(
Value);
397 llvm_unreachable(
"Invalid ResultKind Bits");
403 return APValueResult().
getInt();
408 llvm_unreachable(
"invalid Accessor");
416 return APValueResult();
426 llvm_unreachable(
"invalid ResultKind");
430 bool RefersToEnclosingVariableOrCapture,
QualType T,
440 RefersToEnclosingVariableOrCapture;
441 DeclRefExprBits.CapturedByCopyInLambdaWithExplicitObjectParameter =
false;
448DeclRefExpr::DeclRefExpr(
const ASTContext &Ctx,
451 bool RefersToEnclosingVariableOrCapture,
460 new (getTrailingObjects<NestedNameSpecifierLoc>())
464 *getTrailingObjects<NamedDecl *>() = FoundD;
466 = (TemplateArgs || TemplateKWLoc.
isValid()) ? 1 : 0;
468 RefersToEnclosingVariableOrCapture;
469 DeclRefExprBits.CapturedByCopyInLambdaWithExplicitObjectParameter =
false;
472 auto Deps = TemplateArgumentDependence::None;
473 getTrailingObjects<ASTTemplateKWAndArgsInfo>()->initializeFrom(
474 TemplateKWLoc, *TemplateArgs, getTrailingObjects<TemplateArgumentLoc>(),
476 assert(!(Deps & TemplateArgumentDependence::Dependent) &&
477 "built a DeclRefExpr with dependent template args");
478 }
else if (TemplateKWLoc.
isValid()) {
479 getTrailingObjects<ASTTemplateKWAndArgsInfo>()->initializeFrom(
490 bool RefersToEnclosingVariableOrCapture,
495 return Create(Context, QualifierLoc, TemplateKWLoc,
D,
496 RefersToEnclosingVariableOrCapture,
498 T, VK, FoundD, TemplateArgs, NOUR);
504 bool RefersToEnclosingVariableOrCapture,
514 bool HasTemplateKWAndArgsInfo = TemplateArgs || TemplateKWLoc.
isValid();
518 QualifierLoc ? 1 : 0, FoundD ? 1 : 0,
519 HasTemplateKWAndArgsInfo ? 1 : 0,
520 TemplateArgs ? TemplateArgs->
size() : 0);
523 return new (Mem)
DeclRefExpr(Context, QualifierLoc, TemplateKWLoc,
D,
524 RefersToEnclosingVariableOrCapture, NameInfo,
525 FoundD, TemplateArgs,
T, VK, NOUR);
531 bool HasTemplateKWAndArgsInfo,
532 unsigned NumTemplateArgs) {
533 assert(NumTemplateArgs == 0 || HasTemplateKWAndArgsInfo);
537 HasQualifier ? 1 : 0, HasFoundDecl ? 1 : 0, HasTemplateKWAndArgsInfo,
545 if (
getType()->isUndeducedType())
561SYCLUniqueStableNameExpr::SYCLUniqueStableNameExpr(
SourceLocation OpLoc,
567 OpLoc(OpLoc), LParen(LParen), RParen(RParen) {
568 setTypeSourceInfo(TSI);
572SYCLUniqueStableNameExpr::SYCLUniqueStableNameExpr(EmptyShell
Empty,
599 const NamedDecl *ND) -> std::optional<unsigned> {
600 if (
const auto *RD = dyn_cast<CXXRecordDecl>(ND))
601 return RD->getDeviceLambdaManglingNumber();
610 llvm::raw_string_ostream Out(Buffer);
611 Ctx->mangleCanonicalTypeName(Ty, Out);
621 assert((getIdentKind() == IK) &&
622 "IdentKind do not fit in PredefinedExprBitfields!");
623 bool HasFunctionName = SL !=
nullptr;
632PredefinedExpr::PredefinedExpr(EmptyShell
Empty,
bool HasFunctionName)
640 bool HasFunctionName = SL !=
nullptr;
641 void *Mem = Ctx.
Allocate(totalSizeToAlloc<Stmt *>(HasFunctionName),
647 bool HasFunctionName) {
648 void *Mem = Ctx.
Allocate(totalSizeToAlloc<Stmt *>(HasFunctionName),
658 return "__FUNCTION__";
660 return "__FUNCDNAME__";
662 return "L__FUNCTION__";
664 return "__PRETTY_FUNCTION__";
666 return "__FUNCSIG__";
668 return "L__FUNCSIG__";
672 llvm_unreachable(
"Unknown ident kind for PredefinedExpr");
678 const Decl *CurrentDecl,
679 bool ForceElaboratedPrinting) {
683 if (
const NamedDecl *ND = dyn_cast<NamedDecl>(CurrentDecl)) {
684 std::unique_ptr<MangleContext> MC;
687 if (MC->shouldMangleDeclName(ND)) {
689 llvm::raw_svector_ostream Out(Buffer);
695 else if (ND->hasAttr<CUDAGlobalAttr>())
699 MC->mangleName(GD, Out);
701 if (!Buffer.empty() && Buffer.front() ==
'\01')
702 return std::string(Buffer.substr(1));
703 return std::string(Buffer);
705 return std::string(ND->getIdentifier()->getName());
709 if (isa<BlockDecl>(CurrentDecl)) {
714 if (DC->isFileContext())
718 llvm::raw_svector_ostream Out(Buffer);
719 if (
auto *DCBlock = dyn_cast<BlockDecl>(DC))
722 else if (
auto *DCDecl = dyn_cast<Decl>(DC))
724 return std::string(Out.str());
726 if (
const FunctionDecl *FD = dyn_cast<FunctionDecl>(CurrentDecl)) {
728 bool IsFuncOrFunctionInNonMSVCCompatEnv =
730 IK == PredefinedIdentKind ::Function) &&
732 bool IsLFunctionInMSVCCommpatEnv =
734 bool IsFuncOrFunctionOrLFunctionOrFuncDName =
739 if ((ForceElaboratedPrinting &&
740 (IsFuncOrFunctionInNonMSVCCompatEnv || IsLFunctionInMSVCCommpatEnv)) ||
741 (!ForceElaboratedPrinting && IsFuncOrFunctionOrLFunctionOrFuncDName))
742 return FD->getNameAsString();
745 llvm::raw_svector_ostream Out(Name);
757 std::string remapPath(StringRef
Path)
const override {
760 return std::string(p);
772 llvm::raw_string_ostream POut(Proto);
781 const Type *Ty =
Decl->getType().getTypePtrOrNull();
787 if (FD->hasWrittenPrototype())
788 FT = dyn_cast<FunctionProtoType>(AFT);
793 case CC_C: POut <<
"__cdecl ";
break;
804 FD->printQualifiedName(POut, Policy);
808 return std::string(Name);
813 for (
unsigned i = 0, e =
Decl->getNumParams(); i != e; ++i) {
815 POut <<
Decl->getParamDecl(i)->getType().stream(Policy);
818 if (FT->isVariadic()) {
819 if (FD->getNumParams()) POut <<
", ";
824 !
Decl->getNumParams()) {
831 assert(FT &&
"We must have a written prototype in this case.");
834 if (FT->isVolatile())
846 while (isa_and_nonnull<NamedDecl>(Ctx)) {
848 = dyn_cast<ClassTemplateSpecializationDecl>(Ctx);
850 Specs.push_back(Spec);
851 Ctx = Ctx->getParent();
854 std::string TemplateParams;
855 llvm::raw_string_ostream TOut(TemplateParams);
858 D->getSpecializedTemplate()->getTemplateParameters();
860 assert(Params->
size() == Args.
size());
861 for (
unsigned i = 0, numParams = Params->
size(); i != numParams; ++i) {
863 if (Param.empty())
continue;
864 TOut << Param <<
" = ";
873 = FD->getTemplateSpecializationInfo();
878 assert(Params->
size() == Args->
size());
879 for (
unsigned i = 0, e = Params->
size(); i != e; ++i) {
881 if (Param.empty())
continue;
882 TOut << Param <<
" = ";
883 Args->
get(i).
print(Policy, TOut,
true);
888 if (!TemplateParams.empty()) {
890 TemplateParams.resize(TemplateParams.size() - 2);
891 POut <<
" [" << TemplateParams <<
"]";
899 Proto =
"auto " + Proto;
900 else if (FT && FT->getReturnType()->getAs<
DecltypeType>())
905 else if (!isa<CXXConstructorDecl>(FD) && !isa<CXXDestructorDecl>(FD))
910 return std::string(Name);
912 if (
const CapturedDecl *CD = dyn_cast<CapturedDecl>(CurrentDecl)) {
916 if (DC->isFunctionOrMethod() && (DC->getDeclKind() != Decl::Captured)) {
920 llvm_unreachable(
"CapturedDecl not inside a function or method");
922 if (
const ObjCMethodDecl *MD = dyn_cast<ObjCMethodDecl>(CurrentDecl)) {
924 llvm::raw_svector_ostream Out(Name);
925 Out << (MD->isInstanceMethod() ?
'-' :
'+');
934 dyn_cast<ObjCCategoryImplDecl>(MD->getDeclContext()))
935 Out <<
'(' << *CID <<
')';
938 MD->getSelector().print(Out);
941 return std::string(Name);
943 if (isa<TranslationUnitDecl>(CurrentDecl) &&
952 const llvm::APInt &Val) {
956 BitWidth = Val.getBitWidth();
957 unsigned NumWords = Val.getNumWords();
958 const uint64_t* Words = Val.getRawData();
960 pVal =
new (
C) uint64_t[NumWords];
961 std::copy(Words, Words + NumWords,
pVal);
962 }
else if (NumWords == 1)
968IntegerLiteral::IntegerLiteral(
const ASTContext &
C,
const llvm::APInt &
V,
971 assert(
type->isIntegerType() &&
"Illegal type in IntegerLiteral");
972 assert(
V.getBitWidth() ==
C.getIntWidth(
type) &&
973 "Integer type is not the correct size for constant.");
989FixedPointLiteral::FixedPointLiteral(
const ASTContext &
C,
const llvm::APInt &
V,
994 assert(
type->isFixedPointType() &&
"Illegal type in FixedPointLiteral");
995 assert(
V.getBitWidth() ==
C.getTypeInfo(
type).Width &&
996 "Fixed point type is not the correct size for constant.");
1002 const llvm::APInt &
V,
1020 S, llvm::APSInt::getUnsigned(
getValue().getZExtValue()), Scale);
1021 return std::string(S);
1043 StringRef Escaped = escapeCStyle<EscapeChar::Single>(Val);
1044 if (!Escaped.empty()) {
1045 OS <<
"'" << Escaped <<
"'";
1054 OS <<
"'" << (char)Val <<
"'";
1056 OS <<
"'\\x" << llvm::format(
"%02x", Val) <<
"'";
1057 else if (Val <= 0xFFFF)
1058 OS <<
"'\\u" << llvm::format(
"%04x", Val) <<
"'";
1060 OS <<
"'\\U" << llvm::format(
"%08x", Val) <<
"'";
1064FloatingLiteral::FloatingLiteral(
const ASTContext &
C,
const llvm::APFloat &
V,
1067 setSemantics(
V.getSemantics());
1075 setRawSemantics(llvm::APFloatBase::S_IEEEhalf);
1096 V.convert(llvm::APFloat::IEEEdouble(), llvm::APFloat::rmNearestTiesToEven,
1098 return V.convertToDouble();
1103 unsigned CharByteWidth = 0;
1107 CharByteWidth =
Target.getCharWidth();
1110 CharByteWidth =
Target.getWCharWidth();
1113 CharByteWidth =
Target.getChar16Width();
1116 CharByteWidth =
Target.getChar32Width();
1119 return sizeof(char);
1121 assert((CharByteWidth & 7) == 0 &&
"Assumes character size is byte multiple");
1123 assert((CharByteWidth == 1 || CharByteWidth == 2 || CharByteWidth == 4) &&
1124 "The only supported character byte widths are 1,2 and 4!");
1125 return CharByteWidth;
1128StringLiteral::StringLiteral(
const ASTContext &Ctx, StringRef Str,
1131 unsigned NumConcatenated)
1134 unsigned Length = Str.size();
1141 "StringLiteral must be of constant array type!");
1142 unsigned CharByteWidth = mapCharByteWidth(Ctx.
getTargetInfo(), Kind);
1143 unsigned ByteLength = Str.size();
1144 assert((ByteLength % CharByteWidth == 0) &&
1145 "The size of the data must be a multiple of CharByteWidth!");
1150 switch (CharByteWidth) {
1152 Length = ByteLength;
1155 Length = ByteLength / 2;
1158 Length = ByteLength / 4;
1161 llvm_unreachable(
"Unsupported character width!");
1167 assert(!Pascal &&
"Can't make an unevaluated Pascal string");
1172 *getTrailingObjects<unsigned>() = Length;
1176 std::memcpy(getTrailingObjects<SourceLocation>(), Loc,
1180 std::memcpy(getTrailingObjects<char>(), Str.data(), Str.size());
1185StringLiteral::StringLiteral(EmptyShell
Empty,
unsigned NumConcatenated,
1186 unsigned Length,
unsigned CharByteWidth)
1190 *getTrailingObjects<unsigned>() = Length;
1196 unsigned NumConcatenated) {
1197 void *Mem = Ctx.
Allocate(totalSizeToAlloc<unsigned, SourceLocation, char>(
1198 1, NumConcatenated, Str.size()),
1205 unsigned NumConcatenated,
1207 unsigned CharByteWidth) {
1208 void *Mem = Ctx.
Allocate(totalSizeToAlloc<unsigned, SourceLocation, char>(
1209 1, NumConcatenated, Length * CharByteWidth),
1234 static const char Hex[] =
"0123456789ABCDEF";
1237 for (
unsigned I = 0, N =
getLength(); I != N; ++I) {
1239 StringRef Escaped = escapeCStyle<EscapeChar::Double>(Char);
1240 if (Escaped.empty()) {
1246 Char >= 0xd800 && Char <= 0xdbff) {
1248 if (Trail >= 0xdc00 && Trail <= 0xdfff) {
1249 Char = 0x10000 + ((Char - 0xd800) << 10) + (Trail - 0xdc00);
1259 (Char >= 0xd800 && Char <= 0xdfff) || Char >= 0x110000) {
1263 while ((Char >> Shift) == 0)
1265 for (; Shift >= 0; Shift -= 4)
1266 OS << Hex[(Char >> Shift) & 15];
1273 << Hex[(Char >> 20) & 15]
1274 << Hex[(Char >> 16) & 15];
1277 OS << Hex[(Char >> 12) & 15]
1278 << Hex[(Char >> 8) & 15]
1279 << Hex[(Char >> 4) & 15]
1280 << Hex[(Char >> 0) & 15];
1286 if (LastSlashX + 1 == I) {
1288 case '0':
case '1':
case '2':
case '3':
case '4':
1289 case '5':
case '6':
case '7':
case '8':
case '9':
1290 case 'a':
case 'b':
case 'c':
case 'd':
case 'e':
case 'f':
1291 case 'A':
case 'B':
case 'C':
case 'D':
case 'E':
case 'F':
1296 assert(Char <= 0xff &&
1297 "Characters above 0xff should already have been handled.");
1303 << (char)(
'0' + ((Char >> 6) & 7))
1304 << (char)(
'0' + ((Char >> 3) & 7))
1305 << (char)(
'0' + ((Char >> 0) & 7));
1334 unsigned *StartTokenByteOffset)
const {
1338 "Only narrow string literals are currently supported");
1343 unsigned StringOffset = 0;
1345 TokNo = *StartToken;
1346 if (StartTokenByteOffset) {
1347 StringOffset = *StartTokenByteOffset;
1348 ByteNo -= StringOffset;
1360 std::pair<FileID, unsigned> LocInfo =
1361 SM.getDecomposedLoc(StrTokSpellingLoc);
1363 StringRef Buffer =
SM.getBufferData(LocInfo.first, &
Invalid);
1365 if (StartTokenByteOffset !=
nullptr)
1366 *StartTokenByteOffset = StringOffset;
1367 if (StartToken !=
nullptr)
1368 *StartToken = TokNo;
1369 return StrTokSpellingLoc;
1372 const char *StrData = Buffer.data()+LocInfo.second;
1375 Lexer TheLexer(
SM.getLocForStartOfFile(LocInfo.first), Features,
1376 Buffer.begin(), StrData, Buffer.end());
1385 if (ByteNo < TokNumBytes ||
1391 if (StartTokenByteOffset !=
nullptr)
1392 *StartTokenByteOffset = StringOffset;
1393 if (StartToken !=
nullptr)
1394 *StartToken = TokNo;
1399 StringOffset += TokNumBytes;
1401 ByteNo -= TokNumBytes;
1409#define UNARY_OPERATION(Name, Spelling) case UO_##Name: return Spelling;
1410#include "clang/AST/OperationKinds.def"
1412 llvm_unreachable(
"Unknown unary operator");
1418 default: llvm_unreachable(
"No unary operator for overloaded function");
1419 case OO_PlusPlus:
return Postfix ? UO_PostInc : UO_PreInc;
1420 case OO_MinusMinus:
return Postfix ? UO_PostDec : UO_PreDec;
1421 case OO_Amp:
return UO_AddrOf;
1422 case OO_Star:
return UO_Deref;
1423 case OO_Plus:
return UO_Plus;
1424 case OO_Minus:
return UO_Minus;
1425 case OO_Tilde:
return UO_Not;
1426 case OO_Exclaim:
return UO_LNot;
1427 case OO_Coawait:
return UO_Coawait;
1433 case UO_PostInc:
case UO_PreInc:
return OO_PlusPlus;
1434 case UO_PostDec:
case UO_PreDec:
return OO_MinusMinus;
1435 case UO_AddrOf:
return OO_Amp;
1436 case UO_Deref:
return OO_Star;
1437 case UO_Plus:
return OO_Plus;
1438 case UO_Minus:
return OO_Minus;
1439 case UO_Not:
return OO_Tilde;
1440 case UO_LNot:
return OO_Exclaim;
1441 case UO_Coawait:
return OO_Coawait;
1456 NumArgs = std::max<unsigned>(Args.size(), MinNumArgs);
1457 unsigned NumPreArgs = PreArgs.size();
1459 assert((NumPreArgs ==
getNumPreArgs()) &&
"NumPreArgs overflow!");
1461 unsigned OffsetToTrailingObjects = offsetToTrailingObjects(SC);
1462 CallExprBits.OffsetToTrailingObjects = OffsetToTrailingObjects;
1463 assert((
CallExprBits.OffsetToTrailingObjects == OffsetToTrailingObjects) &&
1464 "OffsetToTrailingObjects overflow!");
1469 for (
unsigned I = 0; I != NumPreArgs; ++I)
1471 for (
unsigned I = 0; I != Args.size(); ++I)
1473 for (
unsigned I = Args.size(); I != NumArgs; ++I)
1488 assert((NumPreArgs ==
getNumPreArgs()) &&
"NumPreArgs overflow!");
1490 unsigned OffsetToTrailingObjects = offsetToTrailingObjects(SC);
1491 CallExprBits.OffsetToTrailingObjects = OffsetToTrailingObjects;
1492 assert((
CallExprBits.OffsetToTrailingObjects == OffsetToTrailingObjects) &&
1493 "OffsetToTrailingObjects overflow!");
1503 unsigned NumArgs = std::max<unsigned>(Args.size(), MinNumArgs);
1508 return new (Mem)
CallExpr(CallExprClass, Fn, {}, Args, Ty, VK,
1509 RParenLoc, FPFeatures, MinNumArgs,
UsesADL);
1516 "Misaligned memory in CallExpr::CreateTemporary!");
1517 return new (Mem)
CallExpr(CallExprClass, Fn, {}, {}, Ty,
1524 unsigned SizeOfTrailingObjects =
1532unsigned CallExpr::offsetToTrailingObjects(StmtClass SC) {
1536 case CXXOperatorCallExprClass:
1538 case CXXMemberCallExprClass:
1540 case UserDefinedLiteralClass:
1542 case CUDAKernelCallExprClass:
1545 llvm_unreachable(
"unexpected class deriving from CallExpr!");
1552 while (
auto *NTTP = dyn_cast<SubstNonTypeTemplateParmExpr>(CEE))
1557 if (
auto *BO = dyn_cast<BinaryOperator>(CEE)) {
1558 if (BO->isPtrMemOp()) {
1562 }
else if (
auto *UO = dyn_cast<UnaryOperator>(CEE)) {
1563 if (UO->getOpcode() == UO_Deref || UO->getOpcode() == UO_AddrOf ||
1564 UO->getOpcode() == UO_Plus) {
1572 if (
auto *DRE = dyn_cast<DeclRefExpr>(CEE))
1573 return DRE->getDecl();
1574 if (
auto *ME = dyn_cast<MemberExpr>(CEE))
1575 return ME->getMemberDecl();
1576 if (
auto *BE = dyn_cast<BlockExpr>(CEE))
1577 return BE->getBlockDecl();
1585 return FDecl ? FDecl->getBuiltinID() : 0;
1596 QualType CalleeType = Callee->getType();
1602 if (isa<CXXPseudoDestructorExpr>(Callee->IgnoreParens()))
1605 if (isa<UnresolvedMemberExpr>(Callee->IgnoreParens()))
1610 assert(!CalleeType.
isNull());
1624std::pair<const NamedDecl *, const Attr *>
1628 if (
const auto *A =
D->
getAttr<WarnUnusedResultAttr>())
1629 return {
nullptr, A};
1634 if (
const auto *A = TD->getAttr<WarnUnusedResultAttr>())
1638 TD = TD->desugar()->getAs<TypedefType>())
1639 if (
const auto *A = TD->getDecl()->getAttr<WarnUnusedResultAttr>())
1640 return {TD->getDecl(), A};
1641 return {
nullptr,
nullptr};
1645 if (
const auto *OCE = dyn_cast<CXXOperatorCallExpr>(
this))
1646 return OCE->getBeginLoc();
1648 if (
const auto *Method =
1650 Method && Method->isExplicitObjectMemberFunction()) {
1662 if (
const auto *OCE = dyn_cast<CXXOperatorCallExpr>(
this))
1663 return OCE->getEndLoc();
1677 void *Mem =
C.Allocate(
1678 totalSizeToAlloc<OffsetOfNode, Expr *>(comps.size(), exprs.size()));
1685 unsigned numComps,
unsigned numExprs) {
1687 C.Allocate(totalSizeToAlloc<OffsetOfNode, Expr *>(numComps, numExprs));
1696 OperatorLoc(OperatorLoc), RParenLoc(RParenLoc), TSInfo(tsi),
1697 NumComps(comps.size()), NumExprs(exprs.size()) {
1698 for (
unsigned i = 0; i != comps.size(); ++i)
1700 for (
unsigned i = 0; i != exprs.size(); ++i)
1718 OpLoc(op), RParenLoc(rp) {
1719 assert(ExprKind <=
UETT_Last &&
"invalid enum value!");
1722 "UnaryExprOrTypeTraitExprBits.Kind overflow!");
1736 :
Expr(MemberExprClass,
T, VK, OK),
Base(
Base), MemberDecl(MemberDecl),
1737 MemberDNLoc(NameInfo.
getInfo()), MemberLoc(NameInfo.getLoc()) {
1743 FoundDecl.getDecl() != MemberDecl ||
1746 TemplateArgs || TemplateKWLoc.
isValid();
1752 new (getTrailingObjects<NestedNameSpecifierLoc>())
1755 *getTrailingObjects<DeclAccessPair>() = FoundDecl;
1757 auto Deps = TemplateArgumentDependence::None;
1758 getTrailingObjects<ASTTemplateKWAndArgsInfo>()->initializeFrom(
1759 TemplateKWLoc, *TemplateArgs, getTrailingObjects<TemplateArgumentLoc>(),
1761 }
else if (TemplateKWLoc.
isValid()) {
1762 getTrailingObjects<ASTTemplateKWAndArgsInfo>()->initializeFrom(
1775 bool HasFoundDecl = FoundDecl.getDecl() != MemberDecl ||
1777 bool HasTemplateKWAndArgsInfo = TemplateArgs || TemplateKWLoc.
isValid();
1781 HasQualifier, HasFoundDecl, HasTemplateKWAndArgsInfo,
1782 TemplateArgs ? TemplateArgs->
size() : 0);
1784 void *Mem =
C.Allocate(Size,
alignof(
MemberExpr));
1785 return new (Mem)
MemberExpr(
Base, IsArrow, OperatorLoc, QualifierLoc,
1786 TemplateKWLoc, MemberDecl, FoundDecl, NameInfo,
1787 TemplateArgs,
T, VK, OK, NOUR);
1791 bool HasQualifier,
bool HasFoundDecl,
1792 bool HasTemplateKWAndArgsInfo,
1793 unsigned NumTemplateArgs) {
1794 assert((!NumTemplateArgs || HasTemplateKWAndArgsInfo) &&
1795 "template args but no template arg info?");
1799 HasQualifier, HasFoundDecl, HasTemplateKWAndArgsInfo,
1807 if (
getType()->isUndeducedType())
1823 return BaseStartLoc;
1835bool CastExpr::CastConsistency()
const {
1837 case CK_DerivedToBase:
1838 case CK_UncheckedDerivedToBase:
1839 case CK_DerivedToBaseMemberPointer:
1840 case CK_BaseToDerived:
1841 case CK_BaseToDerivedMemberPointer:
1842 assert(!
path_empty() &&
"Cast kind should have a base path!");
1845 case CK_CPointerToObjCPointerCast:
1846 assert(
getType()->isObjCObjectPointerType());
1848 goto CheckNoBasePath;
1850 case CK_BlockPointerToObjCPointerCast:
1851 assert(
getType()->isObjCObjectPointerType());
1853 goto CheckNoBasePath;
1855 case CK_ReinterpretMemberPointer:
1856 assert(
getType()->isMemberPointerType());
1858 goto CheckNoBasePath;
1864 if (!
getType()->isPointerType()) {
1865 assert(
getType()->isObjCObjectPointerType() ==
1867 assert(
getType()->isBlockPointerType() ==
1870 goto CheckNoBasePath;
1872 case CK_AnyPointerToBlockPointerCast:
1873 assert(
getType()->isBlockPointerType());
1876 goto CheckNoBasePath;
1878 case CK_CopyAndAutoreleaseBlockObject:
1879 assert(
getType()->isBlockPointerType());
1881 goto CheckNoBasePath;
1883 case CK_FunctionToPointerDecay:
1884 assert(
getType()->isPointerType());
1886 goto CheckNoBasePath;
1888 case CK_AddressSpaceConversion: {
1897 (!Ty.
isNull() && !SETy.isNull() &&
1899 goto CheckNoBasePath;
1904 case CK_ArrayToPointerDecay:
1905 case CK_NullToMemberPointer:
1906 case CK_NullToPointer:
1907 case CK_ConstructorConversion:
1908 case CK_IntegralToPointer:
1909 case CK_PointerToIntegral:
1911 case CK_VectorSplat:
1912 case CK_IntegralCast:
1913 case CK_BooleanToSignedIntegral:
1914 case CK_IntegralToFloating:
1915 case CK_FloatingToIntegral:
1916 case CK_FloatingCast:
1917 case CK_ObjCObjectLValueCast:
1918 case CK_FloatingRealToComplex:
1919 case CK_FloatingComplexToReal:
1920 case CK_FloatingComplexCast:
1921 case CK_FloatingComplexToIntegralComplex:
1922 case CK_IntegralRealToComplex:
1923 case CK_IntegralComplexToReal:
1924 case CK_IntegralComplexCast:
1925 case CK_IntegralComplexToFloatingComplex:
1926 case CK_ARCProduceObject:
1927 case CK_ARCConsumeObject:
1928 case CK_ARCReclaimReturnedObject:
1929 case CK_ARCExtendBlockObject:
1930 case CK_ZeroToOCLOpaqueType:
1931 case CK_IntToOCLSampler:
1932 case CK_FloatingToFixedPoint:
1933 case CK_FixedPointToFloating:
1934 case CK_FixedPointCast:
1935 case CK_FixedPointToIntegral:
1936 case CK_IntegralToFixedPoint:
1939 goto CheckNoBasePath;
1942 case CK_LValueToRValue:
1944 case CK_AtomicToNonAtomic:
1945 case CK_NonAtomicToAtomic:
1946 case CK_PointerToBoolean:
1947 case CK_IntegralToBoolean:
1948 case CK_FloatingToBoolean:
1949 case CK_MemberPointerToBoolean:
1950 case CK_FloatingComplexToBoolean:
1951 case CK_IntegralComplexToBoolean:
1952 case CK_LValueBitCast:
1953 case CK_LValueToRValueBitCast:
1954 case CK_UserDefinedConversion:
1955 case CK_BuiltinFnToFnPtr:
1956 case CK_FixedPointToBoolean:
1957 case CK_HLSLArrayRValue:
1958 case CK_HLSLVectorTruncation:
1960 assert(
path_empty() &&
"Cast kind should not have a base path!");
1968#define CAST_OPERATION(Name) case CK_##Name: return #Name;
1969#include "clang/AST/OperationKinds.def"
1971 llvm_unreachable(
"Unhandled cast kind!");
1977static Expr *ignoreImplicitSemaNodes(
Expr *
E) {
1978 if (
auto *Materialize = dyn_cast<MaterializeTemporaryExpr>(
E))
1979 return Materialize->getSubExpr();
1981 if (
auto *Binder = dyn_cast<CXXBindTemporaryExpr>(
E))
1982 return Binder->getSubExpr();
1984 if (
auto *Full = dyn_cast<FullExpr>(
E))
1985 return Full->getSubExpr();
1987 if (
auto *CPLIE = dyn_cast<CXXParenListInitExpr>(
E);
1988 CPLIE && CPLIE->getInitExprs().size() == 1)
1989 return CPLIE->getInitExprs()[0];
1996 const Expr *SubExpr =
nullptr;
1998 for (
const CastExpr *
E =
this;
E;
E = dyn_cast<ImplicitCastExpr>(SubExpr)) {
2003 if (
E->getCastKind() == CK_ConstructorConversion) {
2005 ignoreImplicitSemaNodes);
2006 }
else if (
E->getCastKind() == CK_UserDefinedConversion) {
2007 assert((isa<CallExpr, BlockExpr>(SubExpr)) &&
2008 "Unexpected SubExpr for CK_UserDefinedConversion.");
2009 if (
auto *MCE = dyn_cast<CXXMemberCallExpr>(SubExpr))
2010 SubExpr = MCE->getImplicitObjectArgument();
2014 return const_cast<Expr *
>(SubExpr);
2018 const Expr *SubExpr =
nullptr;
2020 for (
const CastExpr *
E =
this;
E;
E = dyn_cast<ImplicitCastExpr>(SubExpr)) {
2023 if (
E->getCastKind() == CK_ConstructorConversion)
2024 return cast<CXXConstructExpr>(SubExpr)->getConstructor();
2026 if (
E->getCastKind() == CK_UserDefinedConversion) {
2027 if (
auto *MCE = dyn_cast<CXXMemberCallExpr>(SubExpr))
2028 return MCE->getMethodDecl();
2037#define ABSTRACT_STMT(x)
2038#define CASTEXPR(Type, Base) \
2039 case Stmt::Type##Class: \
2040 return static_cast<Type *>(this)->getTrailingObjects<CXXBaseSpecifier *>();
2041#define STMT(Type, Base)
2042#include "clang/AST/StmtNodes.inc"
2044 llvm_unreachable(
"non-cast expressions not possible here");
2059 Field != FieldEnd; ++Field) {
2061 !Field->isUnnamedBitField()) {
2071 case ImplicitCastExprClass:
2073 ->getTrailingObjects<FPOptionsOverride>();
2074 case CStyleCastExprClass:
2076 ->getTrailingObjects<FPOptionsOverride>();
2077 case CXXFunctionalCastExprClass:
2079 ->getTrailingObjects<FPOptionsOverride>();
2080 case CXXStaticCastExprClass:
2082 ->getTrailingObjects<FPOptionsOverride>();
2084 llvm_unreachable(
"Cast does not have FPFeatures");
2093 unsigned PathSize = (BasePath ? BasePath->size() : 0);
2095 C.Allocate(totalSizeToAlloc<CXXBaseSpecifier *, FPOptionsOverride>(
2099 assert((Kind != CK_LValueToRValue ||
2101 "invalid type for lvalue-to-rvalue conversion");
2105 std::uninitialized_copy_n(BasePath->data(), BasePath->size(),
2112 bool HasFPFeatures) {
2114 C.Allocate(totalSizeToAlloc<CXXBaseSpecifier *, FPOptionsOverride>(
2115 PathSize, HasFPFeatures));
2125 unsigned PathSize = (BasePath ? BasePath->size() : 0);
2127 C.Allocate(totalSizeToAlloc<CXXBaseSpecifier *, FPOptionsOverride>(
2130 new (Buffer)
CStyleCastExpr(
T, VK, K, Op, PathSize, FPO, WrittenTy, L, R);
2132 std::uninitialized_copy_n(BasePath->data(), BasePath->size(),
2139 bool HasFPFeatures) {
2141 C.Allocate(totalSizeToAlloc<CXXBaseSpecifier *, FPOptionsOverride>(
2142 PathSize, HasFPFeatures));
2150#define BINARY_OPERATION(Name, Spelling) case BO_##Name: return Spelling;
2151#include "clang/AST/OperationKinds.def"
2153 llvm_unreachable(
"Invalid OpCode!");
2159 default: llvm_unreachable(
"Not an overloadable binary operator");
2160 case OO_Plus:
return BO_Add;
2161 case OO_Minus:
return BO_Sub;
2162 case OO_Star:
return BO_Mul;
2163 case OO_Slash:
return BO_Div;
2164 case OO_Percent:
return BO_Rem;
2165 case OO_Caret:
return BO_Xor;
2166 case OO_Amp:
return BO_And;
2167 case OO_Pipe:
return BO_Or;
2168 case OO_Equal:
return BO_Assign;
2169 case OO_Spaceship:
return BO_Cmp;
2170 case OO_Less:
return BO_LT;
2171 case OO_Greater:
return BO_GT;
2172 case OO_PlusEqual:
return BO_AddAssign;
2173 case OO_MinusEqual:
return BO_SubAssign;
2174 case OO_StarEqual:
return BO_MulAssign;
2175 case OO_SlashEqual:
return BO_DivAssign;
2176 case OO_PercentEqual:
return BO_RemAssign;
2177 case OO_CaretEqual:
return BO_XorAssign;
2178 case OO_AmpEqual:
return BO_AndAssign;
2179 case OO_PipeEqual:
return BO_OrAssign;
2180 case OO_LessLess:
return BO_Shl;
2181 case OO_GreaterGreater:
return BO_Shr;
2182 case OO_LessLessEqual:
return BO_ShlAssign;
2183 case OO_GreaterGreaterEqual:
return BO_ShrAssign;
2184 case OO_EqualEqual:
return BO_EQ;
2185 case OO_ExclaimEqual:
return BO_NE;
2186 case OO_LessEqual:
return BO_LE;
2187 case OO_GreaterEqual:
return BO_GE;
2188 case OO_AmpAmp:
return BO_LAnd;
2189 case OO_PipePipe:
return BO_LOr;
2190 case OO_Comma:
return BO_Comma;
2191 case OO_ArrowStar:
return BO_PtrMemI;
2198 OO_Star, OO_Slash, OO_Percent,
2200 OO_LessLess, OO_GreaterGreater,
2202 OO_Less, OO_Greater, OO_LessEqual, OO_GreaterEqual,
2203 OO_EqualEqual, OO_ExclaimEqual,
2209 OO_Equal, OO_StarEqual,
2210 OO_SlashEqual, OO_PercentEqual,
2211 OO_PlusEqual, OO_MinusEqual,
2212 OO_LessLessEqual, OO_GreaterGreaterEqual,
2213 OO_AmpEqual, OO_CaretEqual,
2217 return OverOps[Opc];
2259 BuiltinLoc(BLoc), RParenLoc(RParenLoc), ParentContext(ParentContext) {
2263 ? ExprDependence::Value
2264 : ExprDependence::None);
2270 return "__builtin_FILE";
2272 return "__builtin_FILE_NAME";
2274 return "__builtin_FUNCTION";
2276 return "__builtin_FUNCSIG";
2278 return "__builtin_LINE";
2280 return "__builtin_COLUMN";
2282 return "__builtin_source_location";
2284 llvm_unreachable(
"unexpected IdentKind!");
2288 const Expr *DefaultExpr)
const {
2292 if (
const auto *DIE = dyn_cast_if_present<CXXDefaultInitExpr>(DefaultExpr)) {
2293 Loc = DIE->getUsedLocation();
2294 Context = DIE->getUsedContext();
2295 }
else if (
const auto *DAE =
2296 dyn_cast_if_present<CXXDefaultArgExpr>(DefaultExpr)) {
2297 Loc = DAE->getUsedLocation();
2298 Context = DAE->getUsedContext();
2309 if (
const auto *
D = dyn_cast<CXXMethodDecl>(Context);
2311 Context =
D->getParent()->getParent();
2316 auto MakeStringLiteral = [&](StringRef Tmp) {
2320 LValuePathEntry
Path[1] = {LValuePathEntry::ArrayIndex(0)};
2331 return MakeStringLiteral(
FileName);
2337 return MakeStringLiteral(
Path);
2341 const auto *CurDecl = dyn_cast<Decl>(Context);
2345 return MakeStringLiteral(
2365 StringRef Name = F->getName();
2366 if (Name ==
"_M_file_name") {
2370 Value.getStructField(F->getFieldIndex()) = MakeStringLiteral(
Path);
2371 }
else if (Name ==
"_M_function_name") {
2374 const auto *CurDecl = dyn_cast<Decl>(Context);
2375 Value.getStructField(F->getFieldIndex()) = MakeStringLiteral(
2376 CurDecl && !isa<TranslationUnitDecl>(CurDecl)
2380 }
else if (Name ==
"_M_line") {
2382 Value.getStructField(F->getFieldIndex()) =
APValue(IntVal);
2383 }
else if (Name ==
"_M_column") {
2385 Value.getStructField(F->getFieldIndex()) =
APValue(IntVal);
2396 llvm_unreachable(
"unhandled case");
2401 unsigned NumOfElements)
2404 NumOfElements(NumOfElements) {
2413 InitExprs(
C, initExprs.size()), LBraceLoc(lbraceloc),
2414 RBraceLoc(rbraceloc), AltForm(nullptr,
true) {
2416 InitExprs.
insert(
C, InitExprs.
end(), initExprs.begin(), initExprs.end());
2422 if (NumInits > InitExprs.
size())
2427 InitExprs.
resize(
C, NumInits,
nullptr);
2444 ArrayFillerOrUnionFieldInit = filler;
2447 for (
unsigned i = 0, e =
getNumInits(); i != e; ++i)
2448 if (
inits[i] ==
nullptr)
2462 Init =
Init->IgnoreParenImpCasts();
2463 return isa<StringLiteral>(
Init) || isa<ObjCEncodeExpr>(
Init);
2467 assert(
isSemanticForm() &&
"syntactic form never semantically transparent");
2471 assert(
getNumInits() == 1 &&
"multiple inits in glvalue init list");
2490 assert(
isSyntacticForm() &&
"only test syntactic form as zero initializer");
2497 return Lit && Lit->
getValue() == 0;
2502 return SyntacticForm->getBeginLoc();
2507 E = InitExprs.
end();
2510 Beg = S->getBeginLoc();
2520 return SyntacticForm->getEndLoc();
2522 if (End.isInvalid()) {
2524 for (
Stmt *S : llvm::reverse(InitExprs)) {
2526 End = S->getEndLoc();
2538 return cast<BlockPointerType>(
getType())
2569 if (isa<DeclRefExpr>(
E))
2573 if (isa<ArraySubscriptExpr>(
E))
2577 if (isa<MemberExpr>(
E))
2581 if (
auto *UO = dyn_cast<UnaryOperator>(
E))
2582 if (UO->getOpcode() == UO_Deref)
2585 if (
auto *BO = dyn_cast<BinaryOperator>(
E)) {
2587 if (BO->isPtrMemOp())
2591 if (BO->getOpcode() == BO_Comma)
2592 return BO->getRHS()->isReadIfDiscardedInCPlusPlus11();
2597 if (
auto *CO = dyn_cast<ConditionalOperator>(
E))
2598 return CO->getTrueExpr()->isReadIfDiscardedInCPlusPlus11() &&
2599 CO->getFalseExpr()->isReadIfDiscardedInCPlusPlus11();
2602 dyn_cast<BinaryConditionalOperator>(
E)) {
2603 if (
auto *OVE = dyn_cast<OpaqueValueExpr>(BCO->getTrueExpr()))
2604 return OVE->getSourceExpr()->isReadIfDiscardedInCPlusPlus11() &&
2605 BCO->getFalseExpr()->isReadIfDiscardedInCPlusPlus11();
2609 if (isa<ObjCIvarRefExpr>(
E))
2611 if (
const auto *POE = dyn_cast<PseudoObjectExpr>(
E)) {
2612 if (isa<ObjCPropertyRefExpr, ObjCSubscriptRefExpr>(POE->getSyntacticForm()))
2639 case ParenExprClass:
2640 return cast<ParenExpr>(
this)->getSubExpr()->
2642 case GenericSelectionExprClass:
2643 return cast<GenericSelectionExpr>(
this)->getResultExpr()->
2645 case CoawaitExprClass:
2646 case CoyieldExprClass:
2647 return cast<CoroutineSuspendExpr>(
this)->getResumeExpr()->
2649 case ChooseExprClass:
2650 return cast<ChooseExpr>(
this)->getChosenSubExpr()->
2652 case UnaryOperatorClass: {
2686 case BinaryOperatorClass: {
2698 if (IE->getValue() == 0)
2717 case CompoundAssignOperatorClass:
2718 case VAArgExprClass:
2719 case AtomicExprClass:
2722 case ConditionalOperatorClass: {
2726 const auto *Exp = cast<ConditionalOperator>(
this);
2727 return Exp->getLHS()->isUnusedResultAWarning(WarnE,
Loc, R1, R2, Ctx) &&
2728 Exp->getRHS()->isUnusedResultAWarning(WarnE,
Loc, R1, R2, Ctx);
2730 case BinaryConditionalOperatorClass: {
2731 const auto *Exp = cast<BinaryConditionalOperator>(
this);
2732 return Exp->getFalseExpr()->isUnusedResultAWarning(WarnE,
Loc, R1, R2, Ctx);
2735 case MemberExprClass:
2737 Loc = cast<MemberExpr>(
this)->getMemberLoc();
2739 R2 = cast<MemberExpr>(
this)->getBase()->getSourceRange();
2742 case ArraySubscriptExprClass:
2744 Loc = cast<ArraySubscriptExpr>(
this)->getRBracketLoc();
2745 R1 = cast<ArraySubscriptExpr>(
this)->getLHS()->getSourceRange();
2746 R2 = cast<ArraySubscriptExpr>(
this)->getRHS()->getSourceRange();
2749 case CXXOperatorCallExprClass: {
2761 case OO_ExclaimEqual:
2764 case OO_GreaterEqual:
2779 case CXXMemberCallExprClass:
2780 case UserDefinedLiteralClass: {
2782 const CallExpr *CE = cast<CallExpr>(
this);
2790 FD->hasAttr<PureAttr>() || FD->hasAttr<ConstAttr>()) {
2805 case UnresolvedLookupExprClass:
2806 case CXXUnresolvedConstructExprClass:
2807 case RecoveryExprClass:
2810 case CXXTemporaryObjectExprClass:
2811 case CXXConstructExprClass: {
2813 const auto *WarnURAttr =
Type->getAttr<WarnUnusedResultAttr>();
2815 (WarnURAttr && WarnURAttr->IsCXX11NoDiscard())) {
2823 const auto *CE = cast<CXXConstructExpr>(
this);
2825 const auto *WarnURAttr = Ctor->getAttr<WarnUnusedResultAttr>();
2826 if (WarnURAttr && WarnURAttr->IsCXX11NoDiscard()) {
2831 if (
unsigned NumArgs = CE->getNumArgs())
2833 CE->getArg(NumArgs - 1)->getEndLoc());
2841 case ObjCMessageExprClass: {
2854 if (MD->hasAttr<WarnUnusedResultAttr>()) {
2863 case ObjCPropertyRefExprClass:
2864 case ObjCSubscriptRefExprClass:
2870 case PseudoObjectExprClass: {
2871 const auto *POE = cast<PseudoObjectExpr>(
this);
2874 if (isa<ObjCPropertyRefExpr, ObjCSubscriptRefExpr>(
2875 POE->getSyntacticForm())) {
2883 if (
auto *BO = dyn_cast<BinaryOperator>(POE->getSyntacticForm()))
2884 if (BO->isAssignmentOp())
2886 if (
auto *UO = dyn_cast<UnaryOperator>(POE->getSyntacticForm()))
2887 if (UO->isIncrementDecrementOp())
2892 return Result &&
Result->isUnusedResultAWarning(WarnE,
Loc, R1, R2, Ctx);
2895 case StmtExprClass: {
2901 const CompoundStmt *CS = cast<StmtExpr>(
this)->getSubStmt();
2906 if (
const Expr *
E = dyn_cast<Expr>(
Label->getSubStmt()))
2913 Loc = cast<StmtExpr>(
this)->getLParenLoc();
2917 case CXXFunctionalCastExprClass:
2918 case CStyleCastExprClass: {
2925 const CastExpr *CE = cast<CastExpr>(
this);
2932 if (
auto *DRE = dyn_cast<DeclRefExpr>(SubE))
2933 if (
auto *VD = dyn_cast<VarDecl>(DRE->getDecl()))
2934 if (!VD->isExternallyVisible())
2950 if (CE->
getCastKind() == CK_ConstructorConversion)
2957 dyn_cast<CXXFunctionalCastExpr>(
this)) {
2958 Loc = CXXCE->getBeginLoc();
2959 R1 = CXXCE->getSubExpr()->getSourceRange();
2967 case ImplicitCastExprClass: {
2968 const CastExpr *ICE = cast<ImplicitCastExpr>(
this);
2977 case CXXDefaultArgExprClass:
2978 return (cast<CXXDefaultArgExpr>(
this)
2980 case CXXDefaultInitExprClass:
2981 return (cast<CXXDefaultInitExpr>(
this)
2984 case CXXNewExprClass:
2987 case CXXDeleteExprClass:
2989 case MaterializeTemporaryExprClass:
2990 return cast<MaterializeTemporaryExpr>(
this)
2992 ->isUnusedResultAWarning(WarnE,
Loc, R1, R2, Ctx);
2993 case CXXBindTemporaryExprClass:
2994 return cast<CXXBindTemporaryExpr>(
this)->getSubExpr()
2995 ->isUnusedResultAWarning(WarnE,
Loc, R1, R2, Ctx);
2996 case ExprWithCleanupsClass:
2997 return cast<ExprWithCleanups>(
this)->getSubExpr()
2998 ->isUnusedResultAWarning(WarnE,
Loc, R1, R2, Ctx);
2999 case OpaqueValueExprClass:
3000 return cast<OpaqueValueExpr>(
this)->getSourceExpr()->isUnusedResultAWarning(
3001 WarnE,
Loc, R1, R2, Ctx);
3012 case ObjCIvarRefExprClass:
3014 case Expr::UnaryOperatorClass:
3015 return cast<UnaryOperator>(
E)->getSubExpr()->isOBJCGCCandidate(Ctx);
3016 case ImplicitCastExprClass:
3017 return cast<ImplicitCastExpr>(
E)->getSubExpr()->isOBJCGCCandidate(Ctx);
3018 case MaterializeTemporaryExprClass:
3019 return cast<MaterializeTemporaryExpr>(
E)->getSubExpr()->isOBJCGCCandidate(
3021 case CStyleCastExprClass:
3022 return cast<CStyleCastExpr>(
E)->getSubExpr()->isOBJCGCCandidate(Ctx);
3023 case DeclRefExprClass: {
3024 const Decl *
D = cast<DeclRefExpr>(
E)->getDecl();
3026 if (
const VarDecl *VD = dyn_cast<VarDecl>(
D)) {
3027 if (VD->hasGlobalStorage())
3037 case MemberExprClass: {
3041 case ArraySubscriptExprClass:
3042 return cast<ArraySubscriptExpr>(
E)->getBase()->isOBJCGCCandidate(Ctx);
3053 assert(
expr->hasPlaceholderType(BuiltinType::BoundMember));
3061 assert(isa<CXXMethodDecl>(mem->getMemberDecl()));
3062 return mem->getMemberDecl()->getType();
3068 assert(
type->isFunctionType());
3072 assert(isa<UnresolvedMemberExpr>(
expr) || isa<CXXPseudoDestructorExpr>(
expr));
3106 if (
auto *MCE = dyn_cast<CXXMemberCallExpr>(
this)) {
3107 if (isa_and_nonnull<CXXConversionDecl>(MCE->getMethodDecl()))
3108 return MCE->getImplicitObjectArgument();
3124 auto IgnoreNoopCastsSingleStep = [&Ctx](
Expr *
E) {
3125 if (
auto *CE = dyn_cast<CastExpr>(
E)) {
3128 Expr *SubExpr = CE->getSubExpr();
3129 bool IsIdentityCast =
3138 if (IsIdentityCast || IsSameWidthCast)
3140 }
else if (
auto *NTTP = dyn_cast<SubstNonTypeTemplateParmExpr>(
E))
3141 return NTTP->getReplacement();
3146 IgnoreNoopCastsSingleStep);
3151 if (
auto *Cast = dyn_cast<CXXFunctionalCastExpr>(
E)) {
3152 auto *SE = Cast->getSubExpr();
3157 if (
auto *
C = dyn_cast<CXXConstructExpr>(
E)) {
3158 auto NumArgs =
C->getNumArgs();
3160 (NumArgs > 1 && isa<CXXDefaultArgExpr>(
C->getArg(1)))) {
3161 Expr *A =
C->getArg(0);
3168 auto IgnoreImplicitMemberCallSingleStep = [](
Expr *
E) {
3169 if (
auto *
C = dyn_cast<CXXMemberCallExpr>(
E)) {
3170 Expr *ExprNode =
C->getImplicitObjectArgument();
3174 if (
auto *PE = dyn_cast<ParenExpr>(ExprNode)) {
3175 if (PE->getSourceRange() ==
C->getSourceRange()) {
3176 return cast<Expr>(PE);
3188 IgnoreImplicitMemberCallSingleStep);
3192 const Expr *
E =
this;
3194 E = M->getSubExpr();
3197 E = ICE->getSubExprAsWritten();
3199 return isa<CXXDefaultArgExpr>(
E);
3206 E = M->getSubExpr();
3209 if (ICE->getCastKind() == CK_NoOp)
3210 E = ICE->getSubExpr();
3216 E = BE->getSubExpr();
3219 if (ICE->getCastKind() == CK_NoOp)
3220 E = ICE->getSubExpr();
3231 if (!
C.hasSameUnqualifiedType(
getType(),
C.getTypeDeclType(TempTy)))
3239 if (!isa<ObjCPropertyRefExpr>(
E))
3247 if (isa<ImplicitCastExpr>(
E)) {
3248 switch (cast<ImplicitCastExpr>(
E)->getCastKind()) {
3249 case CK_DerivedToBase:
3250 case CK_UncheckedDerivedToBase:
3258 if (isa<MemberExpr>(
E))
3262 if (BO->isPtrMemOp())
3266 if (isa<OpaqueValueExpr>(
E))
3273 const Expr *
E =
this;
3283 if (ICE->getCastKind() == CK_NoOp ||
3284 ICE->getCastKind() == CK_LValueToRValue ||
3285 ICE->getCastKind() == CK_DerivedToBase ||
3286 ICE->getCastKind() == CK_UncheckedDerivedToBase) {
3287 E = ICE->getSubExpr();
3293 if (UnOp->getOpcode() == UO_Extension) {
3294 E = UnOp->getSubExpr();
3300 = dyn_cast<MaterializeTemporaryExpr>(
E)) {
3301 E = M->getSubExpr();
3308 if (
const CXXThisExpr *This = dyn_cast<CXXThisExpr>(
E))
3309 return This->isImplicit();
3317 for (
unsigned I = 0; I < Exprs.size(); ++I)
3325 const Expr **Culprit)
const {
3327 "Expression evaluator can't be called on a dependent expression.");
3339 if (
auto *EWC = dyn_cast<ExprWithCleanups>(
this))
3340 return EWC->getSubExpr()->isConstantInitializer(Ctx,
true, Culprit);
3341 if (
auto *MTE = dyn_cast<MaterializeTemporaryExpr>(
this))
3342 return MTE->getSubExpr()->isConstantInitializer(Ctx,
false, Culprit);
3353 case Stmt::ExprWithCleanupsClass:
3355 Ctx, IsForRef, Culprit);
3356 case StringLiteralClass:
3357 case ObjCEncodeExprClass:
3359 case CXXTemporaryObjectExprClass:
3360 case CXXConstructExprClass: {
3369 assert(CE->
getNumArgs() == 1 &&
"trivial ctor with > 1 argument");
3375 case ConstantExprClass: {
3378 const Expr *Exp = cast<ConstantExpr>(
this)->getSubExpr();
3381 case CompoundLiteralExprClass: {
3385 const Expr *Exp = cast<CompoundLiteralExpr>(
this)->getInitializer();
3388 case DesignatedInitUpdateExprClass: {
3393 case InitListExprClass: {
3401 assert(ILE->
isSemanticForm() &&
"InitListExpr must be in semantic form");
3404 for (
unsigned i = 0; i < numInits; i++) {
3412 unsigned ElementNo = 0;
3417 if (
const auto *CXXRD = dyn_cast<CXXRecordDecl>(RD)) {
3418 for (
unsigned i = 0, e = CXXRD->getNumBases(); i < e; i++) {
3419 if (ElementNo < ILE->getNumInits()) {
3427 for (
const auto *Field : RD->
fields()) {
3433 if (Field->isUnnamedBitField())
3436 if (ElementNo < ILE->getNumInits()) {
3438 if (Field->isBitField()) {
3447 bool RefType = Field->getType()->isReferenceType();
3458 case ImplicitValueInitExprClass:
3459 case NoInitExprClass:
3461 case ParenExprClass:
3462 return cast<ParenExpr>(
this)->getSubExpr()
3463 ->isConstantInitializer(Ctx, IsForRef, Culprit);
3464 case GenericSelectionExprClass:
3465 return cast<GenericSelectionExpr>(
this)->getResultExpr()
3466 ->isConstantInitializer(Ctx, IsForRef, Culprit);
3467 case ChooseExprClass:
3468 if (cast<ChooseExpr>(
this)->isConditionDependent()) {
3473 return cast<ChooseExpr>(
this)->getChosenSubExpr()
3475 case UnaryOperatorClass: {
3481 case PackIndexingExprClass: {
3482 return cast<PackIndexingExpr>(
this)
3484 ->isConstantInitializer(Ctx,
false, Culprit);
3486 case CXXFunctionalCastExprClass:
3487 case CXXStaticCastExprClass:
3488 case ImplicitCastExprClass:
3489 case CStyleCastExprClass:
3490 case ObjCBridgedCastExprClass:
3491 case CXXDynamicCastExprClass:
3492 case CXXReinterpretCastExprClass:
3493 case CXXAddrspaceCastExprClass:
3494 case CXXConstCastExprClass: {
3495 const CastExpr *CE = cast<CastExpr>(
this);
3510 case MaterializeTemporaryExprClass:
3511 return cast<MaterializeTemporaryExpr>(
this)
3513 ->isConstantInitializer(Ctx,
false, Culprit);
3515 case SubstNonTypeTemplateParmExprClass:
3516 return cast<SubstNonTypeTemplateParmExpr>(
this)->getReplacement()
3517 ->isConstantInitializer(Ctx,
false, Culprit);
3518 case CXXDefaultArgExprClass:
3519 return cast<CXXDefaultArgExpr>(
this)->getExpr()
3520 ->isConstantInitializer(Ctx,
false, Culprit);
3521 case CXXDefaultInitExprClass:
3522 return cast<CXXDefaultInitExpr>(
this)->getExpr()
3523 ->isConstantInitializer(Ctx,
false, Culprit);
3537 if (BuiltinID != Builtin::BI__assume &&
3538 BuiltinID != Builtin::BI__builtin_assume)
3555 const bool IncludePossibleEffects;
3556 bool HasSideEffects;
3559 explicit SideEffectFinder(
const ASTContext &Context,
bool IncludePossible)
3560 : Inherited(Context),
3561 IncludePossibleEffects(IncludePossible), HasSideEffects(
false) { }
3563 bool hasSideEffects()
const {
return HasSideEffects; }
3565 void VisitDecl(
const Decl *
D) {
3571 if (
auto *VD = dyn_cast<VarDecl>(
D)) {
3573 if (IncludePossibleEffects && VD->isThisDeclarationADefinition() &&
3574 VD->needsDestruction(Context))
3575 HasSideEffects =
true;
3579 void VisitDeclStmt(
const DeclStmt *DS) {
3580 for (
auto *
D : DS->
decls())
3582 Inherited::VisitDeclStmt(DS);
3585 void VisitExpr(
const Expr *
E) {
3586 if (!HasSideEffects &&
3588 HasSideEffects =
true;
3594 bool IncludePossibleEffects)
const {
3598 if (!IncludePossibleEffects &&
getExprLoc().isMacroID())
3603 #define ABSTRACT_STMT(Type)
3604 #define STMT(Type, Base) case Type##Class:
3605 #define EXPR(Type, Base)
3606 #include "clang/AST/StmtNodes.inc"
3607 llvm_unreachable(
"unexpected Expr kind");
3609 case DependentScopeDeclRefExprClass:
3610 case CXXUnresolvedConstructExprClass:
3611 case CXXDependentScopeMemberExprClass:
3612 case UnresolvedLookupExprClass:
3613 case UnresolvedMemberExprClass:
3614 case PackExpansionExprClass:
3615 case SubstNonTypeTemplateParmPackExprClass:
3616 case FunctionParmPackExprClass:
3618 case RecoveryExprClass:
3619 case CXXFoldExprClass:
3621 return IncludePossibleEffects;
3623 case DeclRefExprClass:
3624 case ObjCIvarRefExprClass:
3625 case PredefinedExprClass:
3626 case IntegerLiteralClass:
3627 case FixedPointLiteralClass:
3628 case FloatingLiteralClass:
3629 case ImaginaryLiteralClass:
3630 case StringLiteralClass:
3631 case CharacterLiteralClass:
3632 case OffsetOfExprClass:
3633 case ImplicitValueInitExprClass:
3634 case UnaryExprOrTypeTraitExprClass:
3635 case AddrLabelExprClass:
3636 case GNUNullExprClass:
3637 case ArrayInitIndexExprClass:
3638 case NoInitExprClass:
3639 case CXXBoolLiteralExprClass:
3640 case CXXNullPtrLiteralExprClass:
3641 case CXXThisExprClass:
3642 case CXXScalarValueInitExprClass:
3643 case TypeTraitExprClass:
3644 case ArrayTypeTraitExprClass:
3645 case ExpressionTraitExprClass:
3646 case CXXNoexceptExprClass:
3647 case SizeOfPackExprClass:
3648 case ObjCStringLiteralClass:
3649 case ObjCEncodeExprClass:
3650 case ObjCBoolLiteralExprClass:
3651 case ObjCAvailabilityCheckExprClass:
3652 case CXXUuidofExprClass:
3653 case OpaqueValueExprClass:
3654 case SourceLocExprClass:
3655 case EmbedExprClass:
3656 case ConceptSpecializationExprClass:
3657 case RequiresExprClass:
3658 case SYCLUniqueStableNameExprClass:
3659 case PackIndexingExprClass:
3660 case HLSLOutArgExprClass:
3661 case OpenACCAsteriskSizeExprClass:
3662 case ResolvedUnexpandedPackExprClass:
3666 case ConstantExprClass:
3668 return cast<ConstantExpr>(
this)->getSubExpr()->HasSideEffects(
3669 Ctx, IncludePossibleEffects);
3672 case CXXOperatorCallExprClass:
3673 case CXXMemberCallExprClass:
3674 case CUDAKernelCallExprClass:
3675 case UserDefinedLiteralClass: {
3679 const Decl *FD = cast<CallExpr>(
this)->getCalleeDecl();
3680 bool IsPure = FD && (FD->
hasAttr<ConstAttr>() || FD->
hasAttr<PureAttr>());
3681 if (IsPure || !IncludePossibleEffects)
3686 case BlockExprClass:
3687 case CXXBindTemporaryExprClass:
3688 if (!IncludePossibleEffects)
3692 case MSPropertyRefExprClass:
3693 case MSPropertySubscriptExprClass:
3694 case CompoundAssignOperatorClass:
3695 case VAArgExprClass:
3696 case AtomicExprClass:
3697 case CXXThrowExprClass:
3698 case CXXNewExprClass:
3699 case CXXDeleteExprClass:
3700 case CoawaitExprClass:
3701 case DependentCoawaitExprClass:
3702 case CoyieldExprClass:
3706 case StmtExprClass: {
3708 SideEffectFinder Finder(Ctx, IncludePossibleEffects);
3709 Finder.Visit(cast<StmtExpr>(
this)->getSubStmt());
3710 return Finder.hasSideEffects();
3713 case ExprWithCleanupsClass:
3714 if (IncludePossibleEffects)
3715 if (cast<ExprWithCleanups>(
this)->cleanupsHaveSideEffects())
3719 case ParenExprClass:
3720 case ArraySubscriptExprClass:
3721 case MatrixSubscriptExprClass:
3722 case ArraySectionExprClass:
3723 case OMPArrayShapingExprClass:
3724 case OMPIteratorExprClass:
3725 case MemberExprClass:
3726 case ConditionalOperatorClass:
3727 case BinaryConditionalOperatorClass:
3728 case CompoundLiteralExprClass:
3729 case ExtVectorElementExprClass:
3730 case DesignatedInitExprClass:
3731 case DesignatedInitUpdateExprClass:
3732 case ArrayInitLoopExprClass:
3733 case ParenListExprClass:
3734 case CXXPseudoDestructorExprClass:
3735 case CXXRewrittenBinaryOperatorClass:
3736 case CXXStdInitializerListExprClass:
3737 case SubstNonTypeTemplateParmExprClass:
3738 case MaterializeTemporaryExprClass:
3739 case ShuffleVectorExprClass:
3740 case ConvertVectorExprClass:
3741 case AsTypeExprClass:
3742 case CXXParenListInitExprClass:
3746 case UnaryOperatorClass:
3747 if (cast<UnaryOperator>(
this)->isIncrementDecrementOp())
3751 case BinaryOperatorClass:
3752 if (cast<BinaryOperator>(
this)->isAssignmentOp())
3756 case InitListExprClass:
3758 if (
const Expr *
E = cast<InitListExpr>(
this)->getArrayFiller())
3763 case GenericSelectionExprClass:
3764 return cast<GenericSelectionExpr>(
this)->getResultExpr()->
3767 case ChooseExprClass:
3768 return cast<ChooseExpr>(
this)->getChosenSubExpr()->HasSideEffects(
3769 Ctx, IncludePossibleEffects);
3771 case CXXDefaultArgExprClass:
3772 return cast<CXXDefaultArgExpr>(
this)->getExpr()->HasSideEffects(
3773 Ctx, IncludePossibleEffects);
3775 case CXXDefaultInitExprClass: {
3776 const FieldDecl *FD = cast<CXXDefaultInitExpr>(
this)->getField();
3783 case CXXDynamicCastExprClass: {
3791 case ImplicitCastExprClass:
3792 case CStyleCastExprClass:
3793 case CXXStaticCastExprClass:
3794 case CXXReinterpretCastExprClass:
3795 case CXXConstCastExprClass:
3796 case CXXAddrspaceCastExprClass:
3797 case CXXFunctionalCastExprClass:
3798 case BuiltinBitCastExprClass: {
3803 if (!IncludePossibleEffects)
3806 const CastExpr *CE = cast<CastExpr>(
this);
3813 case CXXTypeidExprClass: {
3814 const auto *TE = cast<CXXTypeidExpr>(
this);
3815 if (!TE->isPotentiallyEvaluated())
3820 if (IncludePossibleEffects && TE->hasNullCheck())
3826 case CXXConstructExprClass:
3827 case CXXTemporaryObjectExprClass: {
3836 case CXXInheritedCtorInitExprClass: {
3837 const auto *ICIE = cast<CXXInheritedCtorInitExpr>(
this);
3838 if (!ICIE->getConstructor()->isTrivial() && IncludePossibleEffects)
3843 case LambdaExprClass: {
3844 const LambdaExpr *LE = cast<LambdaExpr>(
this);
3845 for (
Expr *
E : LE->capture_inits())
3851 case PseudoObjectExprClass: {
3858 const Expr *Subexpr = *I;
3860 Subexpr = OVE->getSourceExpr();
3867 case ObjCBoxedExprClass:
3868 case ObjCArrayLiteralClass:
3869 case ObjCDictionaryLiteralClass:
3870 case ObjCSelectorExprClass:
3871 case ObjCProtocolExprClass:
3872 case ObjCIsaExprClass:
3873 case ObjCIndirectCopyRestoreExprClass:
3874 case ObjCSubscriptRefExprClass:
3875 case ObjCBridgedCastExprClass:
3876 case ObjCMessageExprClass:
3877 case ObjCPropertyRefExprClass:
3879 if (IncludePossibleEffects)
3887 cast<Expr>(SubStmt)->
HasSideEffects(Ctx, IncludePossibleEffects))
3894 if (
auto Call = dyn_cast<CallExpr>(
this))
3895 return Call->getFPFeaturesInEffect(LO);
3896 if (
auto UO = dyn_cast<UnaryOperator>(
this))
3897 return UO->getFPFeaturesInEffect(LO);
3898 if (
auto BO = dyn_cast<BinaryOperator>(
this))
3899 return BO->getFPFeaturesInEffect(LO);
3900 if (
auto Cast = dyn_cast<CastExpr>(
this))
3901 return Cast->getFPFeaturesInEffect(LO);
3914 explicit NonTrivialCallFinder(
const ASTContext &Context)
3915 : Inherited(Context), NonTrivial(
false) { }
3917 bool hasNonTrivialCall()
const {
return NonTrivial; }
3921 = dyn_cast_or_null<const CXXMethodDecl>(
E->getCalleeDecl())) {
3922 if (Method->isTrivial()) {
3924 Inherited::VisitStmt(
E);
3933 if (
E->getConstructor()->isTrivial()) {
3935 Inherited::VisitStmt(
E);
3946 E->getTemporary()->getDestructor()) {
3947 if (DtorDecl->isTrivial()) {
3948 Inherited::VisitStmt(
E);
3959 NonTrivialCallFinder Finder(Ctx);
3961 return Finder.hasNonTrivialCall();
3979 llvm_unreachable(
"Unexpected value dependent expression!");
4007 CE->getSubExpr()->getType()->isIntegerType())
4008 return CE->getSubExpr()->isNullPointerConstant(Ctx, NPC);
4011 }
else if (
const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(
this)) {
4013 return ICE->getSubExpr()->isNullPointerConstant(Ctx, NPC);
4014 }
else if (
const ParenExpr *PE = dyn_cast<ParenExpr>(
this)) {
4017 return PE->getSubExpr()->isNullPointerConstant(Ctx, NPC);
4019 dyn_cast<GenericSelectionExpr>(
this)) {
4020 if (GE->isResultDependent())
4022 return GE->getResultExpr()->isNullPointerConstant(Ctx, NPC);
4023 }
else if (
const ChooseExpr *CE = dyn_cast<ChooseExpr>(
this)) {
4024 if (CE->isConditionDependent())
4026 return CE->getChosenSubExpr()->isNullPointerConstant(Ctx, NPC);
4028 = dyn_cast<CXXDefaultArgExpr>(
this)) {
4030 return DefaultArg->getExpr()->isNullPointerConstant(Ctx, NPC);
4032 = dyn_cast<CXXDefaultInitExpr>(
this)) {
4034 return DefaultInit->getExpr()->isNullPointerConstant(Ctx, NPC);
4035 }
else if (isa<GNUNullExpr>(
this)) {
4039 = dyn_cast<MaterializeTemporaryExpr>(
this)) {
4040 return M->getSubExpr()->isNullPointerConstant(Ctx, NPC);
4041 }
else if (
const OpaqueValueExpr *OVE = dyn_cast<OpaqueValueExpr>(
this)) {
4042 if (
const Expr *Source = OVE->getSourceExpr())
4043 return Source->isNullPointerConstant(Ctx, NPC);
4052 if (
getType()->isNullPtrType())
4057 UT && UT->getDecl()->hasAttr<TransparentUnionAttr>())
4059 const Expr *InitExpr = CLE->getInitializer();
4060 if (
const InitListExpr *ILE = dyn_cast<InitListExpr>(InitExpr))
4064 if (!
getType()->isIntegerType() ||
4087 if (isa<IntegerLiteral>(
this))
4095 const Expr *
E =
this;
4098 "expression is not a property reference");
4101 if (BO->getOpcode() == BO_Comma) {
4110 return cast<ObjCPropertyRefExpr>(
E);
4135 if (ICE->getCastKind() == CK_LValueToRValue ||
4136 (ICE->isGLValue() && ICE->getCastKind() == CK_NoOp))
4143 if (
FieldDecl *Field = dyn_cast<FieldDecl>(MemRef->getMemberDecl()))
4144 if (Field->isBitField())
4154 if (
FieldDecl *Field = dyn_cast<FieldDecl>(DeclRef->getDecl()))
4155 if (Field->isBitField())
4158 if (
BindingDecl *BD = dyn_cast<BindingDecl>(DeclRef->getDecl()))
4159 if (
Expr *
E = BD->getBinding())
4164 if (BinOp->isAssignmentOp() && BinOp->getLHS())
4165 return BinOp->getLHS()->getSourceBitField();
4167 if (BinOp->getOpcode() == BO_Comma && BinOp->getRHS())
4168 return BinOp->getRHS()->getSourceBitField();
4172 if (UnOp->isPrefix() && UnOp->isIncrementDecrementOp())
4173 return UnOp->getSubExpr()->getSourceBitField();
4180 if (
auto *DRE = dyn_cast<DeclRefExpr>(
E))
4181 return dyn_cast<EnumConstantDecl>(DRE->getDecl());
4190 if (ICE->isGLValue() && ICE->getCastKind() == CK_NoOp)
4199 if (isa<ExtVectorElementExpr>(
E))
4202 if (
auto *DRE = dyn_cast<DeclRefExpr>(
E))
4203 if (
auto *BD = dyn_cast<BindingDecl>(DRE->getDecl()))
4204 if (
auto *
E = BD->getBinding())
4214 if (
const auto *VD = dyn_cast<VarDecl>(DRE->getDecl()))
4216 VD->hasAttr<AsmLabelAttr>() && !VD->isLocalVarDecl())
4232 case CXXThisExprClass:
4234 case DeclRefExprClass: {
4237 const auto *DRE1 = cast<DeclRefExpr>(E1);
4238 const auto *DRE2 = cast<DeclRefExpr>(E2);
4239 return DRE1->isPRValue() && DRE2->isPRValue() &&
4240 DRE1->getDecl() == DRE2->getDecl();
4242 case ImplicitCastExprClass: {
4245 const auto *ICE1 = dyn_cast<ImplicitCastExpr>(E1);
4246 const auto *ICE2 = dyn_cast<ImplicitCastExpr>(E2);
4249 if (ICE1->getCastKind() != ICE2->getCastKind())
4254 if (ICE1->getCastKind() == CK_LValueToRValue ||
4255 ICE1->getCastKind() == CK_ArrayToPointerDecay ||
4256 ICE1->getCastKind() == CK_FunctionToPointerDecay) {
4261 const auto *DRE1 = dyn_cast<DeclRefExpr>(E1);
4262 const auto *DRE2 = dyn_cast<DeclRefExpr>(E2);
4266 const auto *Ivar1 = dyn_cast<ObjCIvarRefExpr>(E1);
4267 const auto *Ivar2 = dyn_cast<ObjCIvarRefExpr>(E2);
4268 if (Ivar1 && Ivar2) {
4269 return Ivar1->isFreeIvar() && Ivar2->isFreeIvar() &&
4273 const auto *Array1 = dyn_cast<ArraySubscriptExpr>(E1);
4274 const auto *Array2 = dyn_cast<ArraySubscriptExpr>(E2);
4275 if (Array1 && Array2) {
4279 auto Idx1 = Array1->getIdx();
4280 auto Idx2 = Array2->getIdx();
4281 const auto Integer1 = dyn_cast<IntegerLiteral>(Idx1);
4282 const auto Integer2 = dyn_cast<IntegerLiteral>(Idx2);
4283 if (Integer1 && Integer2) {
4284 if (!llvm::APInt::isSameValue(Integer1->getValue(),
4285 Integer2->getValue()))
4296 while (isa<MemberExpr>(E1) && isa<MemberExpr>(E2)) {
4297 const auto *ME1 = cast<MemberExpr>(E1);
4298 const auto *ME2 = cast<MemberExpr>(E2);
4301 if (
const auto *
D = dyn_cast<VarDecl>(ME1->getMemberDecl()))
4302 if (
D->isStaticDataMember())
4308 if (isa<CXXThisExpr>(E1) && isa<CXXThisExpr>(E2))
4314 if (
const auto *DRE = dyn_cast<DeclRefExpr>(
E))
4315 return DRE->getDecl();
4316 if (
const auto *ME = dyn_cast<MemberExpr>(
E))
4317 return ME->getMemberDecl();
4336 return VT->getNumElements();
4344 StringRef Comp = Accessor->
getName();
4347 if (Comp ==
"hi" || Comp ==
"lo" || Comp ==
"even" || Comp ==
"odd")
4351 if (Comp[0] ==
's' || Comp[0] ==
'S')
4352 Comp = Comp.substr(1);
4354 for (
unsigned i = 0, e = Comp.size(); i != e; ++i)
4355 if (Comp.substr(i + 1).contains(Comp[i]))
4364 StringRef Comp = Accessor->
getName();
4365 bool isNumericAccessor =
false;
4366 if (Comp[0] ==
's' || Comp[0] ==
'S') {
4367 Comp = Comp.substr(1);
4368 isNumericAccessor =
true;
4371 bool isHi = Comp ==
"hi";
4372 bool isLo = Comp ==
"lo";
4373 bool isEven = Comp ==
"even";
4374 bool isOdd = Comp ==
"odd";
4390 Elts.push_back(Index);
4398 BuiltinLoc(BLoc), RParenLoc(RP), NumExprs(args.size()) {
4399 SubExprs =
new (
C)
Stmt*[args.size()];
4400 for (
unsigned i = 0; i != args.size(); i++)
4401 SubExprs[i] = args[i];
4407 if (SubExprs)
C.Deallocate(SubExprs);
4409 this->NumExprs = Exprs.size();
4410 SubExprs =
new (
C)
Stmt*[NumExprs];
4411 memcpy(SubExprs, Exprs.data(),
sizeof(
Expr *) * Exprs.size());
4414GenericSelectionExpr::GenericSelectionExpr(
4418 bool ContainsUnexpandedParameterPack,
unsigned ResultIndex)
4419 :
Expr(GenericSelectionExprClass, AssocExprs[ResultIndex]->getType(),
4420 AssocExprs[ResultIndex]->getValueKind(),
4421 AssocExprs[ResultIndex]->getObjectKind()),
4422 NumAssocs(AssocExprs.size()), ResultIndex(ResultIndex),
4423 IsExprPredicate(
true), DefaultLoc(DefaultLoc), RParenLoc(RParenLoc) {
4424 assert(AssocTypes.size() == AssocExprs.size() &&
4425 "Must have the same number of association expressions"
4426 " and TypeSourceInfo!");
4427 assert(ResultIndex < NumAssocs &&
"ResultIndex is out-of-bounds!");
4430 getTrailingObjects<Stmt *>()[getIndexOfControllingExpression()] =
4432 std::copy(AssocExprs.begin(), AssocExprs.end(),
4433 getTrailingObjects<Stmt *>() + getIndexOfStartOfAssociatedExprs());
4434 std::copy(AssocTypes.begin(), AssocTypes.end(),
4435 getTrailingObjects<TypeSourceInfo *>() +
4436 getIndexOfStartOfAssociatedTypes());
4441GenericSelectionExpr::GenericSelectionExpr(
4446 unsigned ResultIndex)
4447 :
Expr(GenericSelectionExprClass, AssocExprs[ResultIndex]->getType(),
4448 AssocExprs[ResultIndex]->getValueKind(),
4449 AssocExprs[ResultIndex]->getObjectKind()),
4450 NumAssocs(AssocExprs.size()), ResultIndex(ResultIndex),
4451 IsExprPredicate(
false), DefaultLoc(DefaultLoc), RParenLoc(RParenLoc) {
4452 assert(AssocTypes.size() == AssocExprs.size() &&
4453 "Must have the same number of association expressions"
4454 " and TypeSourceInfo!");
4455 assert(ResultIndex < NumAssocs &&
"ResultIndex is out-of-bounds!");
4458 getTrailingObjects<TypeSourceInfo *>()[getIndexOfControllingType()] =
4460 std::copy(AssocExprs.begin(), AssocExprs.end(),
4461 getTrailingObjects<Stmt *>() + getIndexOfStartOfAssociatedExprs());
4462 std::copy(AssocTypes.begin(), AssocTypes.end(),
4463 getTrailingObjects<TypeSourceInfo *>() +
4464 getIndexOfStartOfAssociatedTypes());
4469GenericSelectionExpr::GenericSelectionExpr(
4473 bool ContainsUnexpandedParameterPack)
4474 :
Expr(GenericSelectionExprClass, Context.DependentTy,
VK_PRValue,
4476 NumAssocs(AssocExprs.size()), ResultIndex(ResultDependentIndex),
4477 IsExprPredicate(
true), DefaultLoc(DefaultLoc), RParenLoc(RParenLoc) {
4478 assert(AssocTypes.size() == AssocExprs.size() &&
4479 "Must have the same number of association expressions"
4480 " and TypeSourceInfo!");
4483 getTrailingObjects<Stmt *>()[getIndexOfControllingExpression()] =
4485 std::copy(AssocExprs.begin(), AssocExprs.end(),
4486 getTrailingObjects<Stmt *>() + getIndexOfStartOfAssociatedExprs());
4487 std::copy(AssocTypes.begin(), AssocTypes.end(),
4488 getTrailingObjects<TypeSourceInfo *>() +
4489 getIndexOfStartOfAssociatedTypes());
4494GenericSelectionExpr::GenericSelectionExpr(
4499 :
Expr(GenericSelectionExprClass, Context.DependentTy,
VK_PRValue,
4501 NumAssocs(AssocExprs.size()), ResultIndex(ResultDependentIndex),
4502 IsExprPredicate(
false), DefaultLoc(DefaultLoc), RParenLoc(RParenLoc) {
4503 assert(AssocTypes.size() == AssocExprs.size() &&
4504 "Must have the same number of association expressions"
4505 " and TypeSourceInfo!");
4508 getTrailingObjects<TypeSourceInfo *>()[getIndexOfControllingType()] =
4510 std::copy(AssocExprs.begin(), AssocExprs.end(),
4511 getTrailingObjects<Stmt *>() + getIndexOfStartOfAssociatedExprs());
4512 std::copy(AssocTypes.begin(), AssocTypes.end(),
4513 getTrailingObjects<TypeSourceInfo *>() +
4514 getIndexOfStartOfAssociatedTypes());
4519GenericSelectionExpr::GenericSelectionExpr(EmptyShell
Empty,
unsigned NumAssocs)
4520 :
Expr(GenericSelectionExprClass,
Empty), NumAssocs(NumAssocs) {}
4526 bool ContainsUnexpandedParameterPack,
unsigned ResultIndex) {
4527 unsigned NumAssocs = AssocExprs.size();
4529 totalSizeToAlloc<Stmt *, TypeSourceInfo *>(1 + NumAssocs, NumAssocs),
4532 Context, GenericLoc, ControllingExpr, AssocTypes, AssocExprs, DefaultLoc,
4533 RParenLoc, ContainsUnexpandedParameterPack, ResultIndex);
4540 bool ContainsUnexpandedParameterPack) {
4541 unsigned NumAssocs = AssocExprs.size();
4543 totalSizeToAlloc<Stmt *, TypeSourceInfo *>(1 + NumAssocs, NumAssocs),
4546 Context, GenericLoc, ControllingExpr, AssocTypes, AssocExprs, DefaultLoc,
4547 RParenLoc, ContainsUnexpandedParameterPack);
4555 unsigned ResultIndex) {
4556 unsigned NumAssocs = AssocExprs.size();
4558 totalSizeToAlloc<Stmt *, TypeSourceInfo *>(1 + NumAssocs, NumAssocs),
4561 Context, GenericLoc, ControllingType, AssocTypes, AssocExprs, DefaultLoc,
4562 RParenLoc, ContainsUnexpandedParameterPack, ResultIndex);
4569 SourceLocation RParenLoc,
bool ContainsUnexpandedParameterPack) {
4570 unsigned NumAssocs = AssocExprs.size();
4572 totalSizeToAlloc<Stmt *, TypeSourceInfo *>(1 + NumAssocs, NumAssocs),
4575 Context, GenericLoc, ControllingType, AssocTypes, AssocExprs, DefaultLoc,
4576 RParenLoc, ContainsUnexpandedParameterPack);
4581 unsigned NumAssocs) {
4583 totalSizeToAlloc<Stmt *, TypeSourceInfo *>(1 + NumAssocs, NumAssocs),
4606 EqualOrColonLoc(EqualOrColonLoc), GNUSyntax(GNUSyntax),
4607 NumDesignators(Designators.
size()), NumSubExprs(IndexExprs.
size() + 1) {
4608 this->Designators =
new (
C)
Designator[NumDesignators];
4616 unsigned IndexIdx = 0;
4617 for (
unsigned I = 0; I != NumDesignators; ++I) {
4618 this->Designators[I] = Designators[I];
4621 *Child++ = IndexExprs[IndexIdx++];
4624 *Child++ = IndexExprs[IndexIdx++];
4625 *Child++ = IndexExprs[IndexIdx++];
4629 assert(IndexIdx == IndexExprs.size() &&
"Wrong number of index expressions");
4638 bool UsesColonSyntax,
Expr *
Init) {
4639 void *Mem =
C.Allocate(totalSizeToAlloc<Stmt *>(IndexExprs.size() + 1),
4642 ColonOrEqualLoc, UsesColonSyntax,
4647 unsigned NumIndexExprs) {
4648 void *Mem =
C.Allocate(totalSizeToAlloc<Stmt *>(NumIndexExprs + 1),
4655 unsigned NumDesigs) {
4657 NumDesignators = NumDesigs;
4658 for (
unsigned I = 0; I != NumDesigs; ++I)
4659 Designators[I] = Desigs[I];
4673 if (
First.isFieldDesignator()) {
4676 for (
unsigned int i = 0; i < DIE->size(); i++) {
4684 return First.getLBracketLoc();
4692 assert(
D.isArrayDesignator() &&
"Requires array designator");
4697 assert(
D.isArrayRangeDesignator() &&
"Requires array range designator");
4702 assert(
D.isArrayRangeDesignator() &&
"Requires array range designator");
4711 unsigned NumNewDesignators =
Last -
First;
4712 if (NumNewDesignators == 0) {
4713 std::copy_backward(Designators + Idx + 1,
4714 Designators + NumDesignators,
4716 --NumNewDesignators;
4719 if (NumNewDesignators == 1) {
4720 Designators[Idx] = *
First;
4725 =
new (
C)
Designator[NumDesignators - 1 + NumNewDesignators];
4726 std::copy(Designators, Designators + Idx, NewDesignators);
4727 std::copy(
First,
Last, NewDesignators + Idx);
4728 std::copy(Designators + Idx + 1, Designators + NumDesignators,
4729 NewDesignators + Idx + NumNewDesignators);
4730 Designators = NewDesignators;
4731 NumDesignators = NumDesignators - 1 + NumNewDesignators;
4740 BaseAndUpdaterExprs[0] = baseExpr;
4744 BaseAndUpdaterExprs[1] = ILE;
4761 LParenLoc(LParenLoc), RParenLoc(RParenLoc) {
4764 for (
unsigned I = 0, N = Exprs.size(); I != N; ++I)
4765 getTrailingObjects<Stmt *>()[I] = Exprs[I];
4769ParenListExpr::ParenListExpr(EmptyShell
Empty,
unsigned NumExprs)
4778 void *Mem = Ctx.
Allocate(totalSizeToAlloc<Stmt *>(Exprs.size()),
4780 return new (Mem)
ParenListExpr(LParenLoc, Exprs, RParenLoc);
4784 unsigned NumExprs) {
4794static std::optional<BinaryOperator *>
4797 if (
E->getOpcode() == BO_LT) {
4799 ComparedTo =
E->getRHS();
4800 }
else if (
E->getOpcode() == BO_GT) {
4802 ComparedTo =
E->getLHS();
4807 const Expr *AddLHS =
nullptr, *AddRHS =
nullptr;
4810 if (BO && BO->
getOpcode() == clang::BO_Add) {
4816 if (!AddLHS || !AddRHS)
4819 const Decl *LHSDecl, *RHSDecl, *OtherDecl;
4822 RHSDecl = AddRHS->IgnoreParenImpCasts()->getReferencedDeclOfCallee();
4828 if (!LHSDecl && !RHSDecl)
4831 if ((LHSDecl && LHSDecl == OtherDecl && LHSDecl != RHSDecl) ||
4832 (RHSDecl && RHSDecl == OtherDecl && RHSDecl != LHSDecl))
4854 Result.value()->setExcludedOverflowPattern(
true);
4861 :
Expr(BinaryOperatorClass, ResTy, VK, OK) {
4864 "Use CompoundAssignOperator for compound assignments");
4867 SubExprs[LHS] = lhs;
4868 SubExprs[RHS] = rhs;
4880 :
Expr(CompoundAssignOperatorClass, ResTy, VK, OK) {
4884 "Use CompoundAssignOperator for compound assignments");
4886 SubExprs[LHS] = lhs;
4887 SubExprs[RHS] = rhs;
4895 bool HasFPFeatures) {
4935 CompLHSType, CompResultType);
4939 bool hasFPFeatures) {
4940 void *Mem =
C.Allocate(totalSizeToAlloc<FPOptionsOverride>(hasFPFeatures),
4949 :
Expr(UnaryOperatorClass,
type, VK, OK), Val(input) {
4965 unsigned Size = totalSizeToAlloc<FPOptionsOverride>(HasFPFeatures);
4973 e = ewc->getSubExpr();
4975 e = m->getSubExpr();
4976 e = cast<CXXConstructExpr>(e)->getArg(0);
4978 e = ice->getSubExpr();
4979 return cast<OpaqueValueExpr>(e);
4984 unsigned numSemanticExprs) {
4986 Context.
Allocate(totalSizeToAlloc<Expr *>(1 + numSemanticExprs),
4991PseudoObjectExpr::PseudoObjectExpr(EmptyShell shell,
unsigned numSemanticExprs)
4992 :
Expr(PseudoObjectExprClass, shell) {
4998 unsigned resultIndex) {
4999 assert(syntax &&
"no syntactic expression!");
5000 assert(
semantics.size() &&
"no semantic expressions!");
5010 VK =
semantics[resultIndex]->getValueKind();
5014 void *buffer =
C.Allocate(totalSizeToAlloc<Expr *>(
semantics.size() + 1),
5022 unsigned resultIndex)
5027 for (
unsigned i = 0, e =
semantics.size() + 1; i != e; ++i) {
5029 getSubExprsBuffer()[i] =
E;
5031 if (isa<OpaqueValueExpr>(
E))
5032 assert(cast<OpaqueValueExpr>(
E)->getSourceExpr() !=
nullptr &&
5033 "opaque-value semantic expressions for pseudo-object "
5034 "operations must have sources");
5067 NumSubExprs(args.size()), BuiltinLoc(BLoc), RParenLoc(RP), Op(op) {
5068 assert(args.size() ==
getNumSubExprs(op) &&
"wrong number of subexpressions");
5069 for (
unsigned i = 0; i != args.size(); i++)
5070 SubExprs[i] = args[i];
5076 case AO__c11_atomic_init:
5077 case AO__opencl_atomic_init:
5078 case AO__c11_atomic_load:
5079 case AO__atomic_load_n:
5080 case AO__atomic_test_and_set:
5081 case AO__atomic_clear:
5084 case AO__scoped_atomic_load_n:
5085 case AO__opencl_atomic_load:
5086 case AO__hip_atomic_load:
5087 case AO__c11_atomic_store:
5088 case AO__c11_atomic_exchange:
5089 case AO__atomic_load:
5090 case AO__atomic_store:
5091 case AO__atomic_store_n:
5092 case AO__atomic_exchange_n:
5093 case AO__c11_atomic_fetch_add:
5094 case AO__c11_atomic_fetch_sub:
5095 case AO__c11_atomic_fetch_and:
5096 case AO__c11_atomic_fetch_or:
5097 case AO__c11_atomic_fetch_xor:
5098 case AO__c11_atomic_fetch_nand:
5099 case AO__c11_atomic_fetch_max:
5100 case AO__c11_atomic_fetch_min:
5101 case AO__atomic_fetch_add:
5102 case AO__atomic_fetch_sub:
5103 case AO__atomic_fetch_and:
5104 case AO__atomic_fetch_or:
5105 case AO__atomic_fetch_xor:
5106 case AO__atomic_fetch_nand:
5107 case AO__atomic_add_fetch:
5108 case AO__atomic_sub_fetch:
5109 case AO__atomic_and_fetch:
5110 case AO__atomic_or_fetch:
5111 case AO__atomic_xor_fetch:
5112 case AO__atomic_nand_fetch:
5113 case AO__atomic_min_fetch:
5114 case AO__atomic_max_fetch:
5115 case AO__atomic_fetch_min:
5116 case AO__atomic_fetch_max:
5119 case AO__scoped_atomic_load:
5120 case AO__scoped_atomic_store:
5121 case AO__scoped_atomic_store_n:
5122 case AO__scoped_atomic_fetch_add:
5123 case AO__scoped_atomic_fetch_sub:
5124 case AO__scoped_atomic_fetch_and:
5125 case AO__scoped_atomic_fetch_or:
5126 case AO__scoped_atomic_fetch_xor:
5127 case AO__scoped_atomic_fetch_nand:
5128 case AO__scoped_atomic_add_fetch:
5129 case AO__scoped_atomic_sub_fetch:
5130 case AO__scoped_atomic_and_fetch:
5131 case AO__scoped_atomic_or_fetch:
5132 case AO__scoped_atomic_xor_fetch:
5133 case AO__scoped_atomic_nand_fetch:
5134 case AO__scoped_atomic_min_fetch:
5135 case AO__scoped_atomic_max_fetch:
5136 case AO__scoped_atomic_fetch_min:
5137 case AO__scoped_atomic_fetch_max:
5138 case AO__scoped_atomic_exchange_n:
5139 case AO__hip_atomic_exchange:
5140 case AO__hip_atomic_fetch_add:
5141 case AO__hip_atomic_fetch_sub:
5142 case AO__hip_atomic_fetch_and:
5143 case AO__hip_atomic_fetch_or:
5144 case AO__hip_atomic_fetch_xor:
5145 case AO__hip_atomic_fetch_min:
5146 case AO__hip_atomic_fetch_max:
5147 case AO__opencl_atomic_store:
5148 case AO__hip_atomic_store:
5149 case AO__opencl_atomic_exchange:
5150 case AO__opencl_atomic_fetch_add:
5151 case AO__opencl_atomic_fetch_sub:
5152 case AO__opencl_atomic_fetch_and:
5153 case AO__opencl_atomic_fetch_or:
5154 case AO__opencl_atomic_fetch_xor:
5155 case AO__opencl_atomic_fetch_min:
5156 case AO__opencl_atomic_fetch_max:
5157 case AO__atomic_exchange:
5160 case AO__scoped_atomic_exchange:
5161 case AO__c11_atomic_compare_exchange_strong:
5162 case AO__c11_atomic_compare_exchange_weak:
5164 case AO__hip_atomic_compare_exchange_strong:
5165 case AO__opencl_atomic_compare_exchange_strong:
5166 case AO__opencl_atomic_compare_exchange_weak:
5167 case AO__hip_atomic_compare_exchange_weak:
5168 case AO__atomic_compare_exchange:
5169 case AO__atomic_compare_exchange_n:
5172 case AO__scoped_atomic_compare_exchange:
5173 case AO__scoped_atomic_compare_exchange_n:
5176 llvm_unreachable(
"unknown atomic op");
5182 return AT->getValueType();
5187 unsigned ArraySectionCount = 0;
5188 while (
auto *OASE = dyn_cast<ArraySectionExpr>(
Base->IgnoreParens())) {
5189 Base = OASE->getBase();
5190 ++ArraySectionCount;
5193 dyn_cast<ArraySubscriptExpr>(
Base->IgnoreParenImpCasts())) {
5194 Base = ASE->getBase();
5195 ++ArraySectionCount;
5197 Base =
Base->IgnoreParenImpCasts();
5198 auto OriginalTy =
Base->getType();
5199 if (
auto *DRE = dyn_cast<DeclRefExpr>(
Base))
5200 if (
auto *PVD = dyn_cast<ParmVarDecl>(DRE->getDecl()))
5201 OriginalTy = PVD->getOriginalType().getNonReferenceType();
5203 for (
unsigned Cnt = 0; Cnt < ArraySectionCount; ++Cnt) {
5204 if (OriginalTy->isAnyPointerType())
5205 OriginalTy = OriginalTy->getPointeeType();
5206 else if (OriginalTy->isArrayType())
5207 OriginalTy = OriginalTy->castAsArrayTypeUnsafe()->getElementType();
5216 :
Expr(RecoveryExprClass,
T.getNonReferenceType(),
5217 T->isDependentType() ?
VK_LValue : getValueKindForType(
T),
5219 BeginLoc(BeginLoc), EndLoc(EndLoc), NumExprs(SubExprs.size()) {
5220 assert(!
T.isNull());
5221 assert(!llvm::is_contained(SubExprs,
nullptr));
5223 llvm::copy(SubExprs, getTrailingObjects<Expr *>());
5231 void *Mem = Ctx.
Allocate(totalSizeToAlloc<Expr *>(SubExprs.size()),
5233 return new (Mem)
RecoveryExpr(Ctx,
T, BeginLoc, EndLoc, SubExprs);
5237 void *Mem = Ctx.
Allocate(totalSizeToAlloc<Expr *>(NumSubExprs),
5244 NumDims == Dims.size() &&
5245 "Preallocated number of dimensions is different from the provided one.");
5246 llvm::copy(Dims, getTrailingObjects<Expr *>());
5251 NumDims == BR.size() &&
5252 "Preallocated number of dimensions is different from the provided one.");
5253 llvm::copy(BR, getTrailingObjects<SourceRange>());
5256OMPArrayShapingExpr::OMPArrayShapingExpr(
QualType ExprTy,
Expr *Op,
5260 RPLoc(R), NumDims(Dims.size()) {
5262 setDimensions(Dims);
5271 assert(Dims.size() == BracketRanges.size() &&
5272 "Different number of dimensions and brackets ranges.");
5274 totalSizeToAlloc<Expr *, SourceRange>(Dims.size() + 1, Dims.size()),
5277 E->setBracketsRanges(BracketRanges);
5284 totalSizeToAlloc<Expr *, SourceRange>(NumDims + 1, NumDims),
5289void OMPIteratorExpr::setIteratorDeclaration(
unsigned I,
Decl *
D) {
5290 assert(I < NumIterators &&
5291 "Idx is greater or equal the number of iterators definitions.");
5292 getTrailingObjects<Decl *>()[I] =
D;
5296 assert(I < NumIterators &&
5297 "Idx is greater or equal the number of iterators definitions.");
5300 static_cast<int>(RangeLocOffset::AssignLoc)] =
Loc;
5303void OMPIteratorExpr::setIteratorRange(
unsigned I,
Expr *
Begin,
5307 assert(I < NumIterators &&
5308 "Idx is greater or equal the number of iterators definitions.");
5309 getTrailingObjects<Expr *>()[I *
static_cast<int>(RangeExprOffset::Total) +
5310 static_cast<int>(RangeExprOffset::Begin)] =
5312 getTrailingObjects<Expr *>()[I *
static_cast<int>(RangeExprOffset::Total) +
5313 static_cast<int>(RangeExprOffset::End)] = End;
5314 getTrailingObjects<Expr *>()[I *
static_cast<int>(RangeExprOffset::Total) +
5315 static_cast<int>(RangeExprOffset::Step)] = Step;
5318 static_cast<int>(RangeLocOffset::FirstColonLoc)] =
5322 static_cast<int>(RangeLocOffset::SecondColonLoc)] =
5327 return getTrailingObjects<Decl *>()[I];
5333 getTrailingObjects<Expr *>()[I *
static_cast<int>(
5334 RangeExprOffset::Total) +
5335 static_cast<int>(RangeExprOffset::Begin)];
5337 getTrailingObjects<Expr *>()[I *
static_cast<int>(
5338 RangeExprOffset::Total) +
5339 static_cast<int>(RangeExprOffset::End)];
5341 getTrailingObjects<Expr *>()[I *
static_cast<int>(
5342 RangeExprOffset::Total) +
5343 static_cast<int>(RangeExprOffset::Step)];
5348 return getTrailingObjects<
5350 static_cast<int>(RangeLocOffset::AssignLoc)];
5354 return getTrailingObjects<
5356 static_cast<int>(RangeLocOffset::FirstColonLoc)];
5360 return getTrailingObjects<
5362 static_cast<int>(RangeLocOffset::SecondColonLoc)];
5366 getTrailingObjects<OMPIteratorHelperData>()[I] =
D;
5370 return getTrailingObjects<OMPIteratorHelperData>()[I];
5374 return getTrailingObjects<OMPIteratorHelperData>()[I];
5377OMPIteratorExpr::OMPIteratorExpr(
5382 IteratorKwLoc(IteratorKwLoc), LPLoc(L), RPLoc(R),
5383 NumIterators(
Data.size()) {
5384 for (
unsigned I = 0,
E =
Data.size(); I <
E; ++I) {
5385 const IteratorDefinition &
D =
Data[I];
5386 setIteratorDeclaration(I,
D.IteratorDecl);
5387 setAssignmentLoc(I,
D.AssignmentLoc);
5388 setIteratorRange(I,
D.Range.Begin,
D.ColonLoc,
D.Range.End,
5389 D.SecondColonLoc,
D.Range.Step);
5390 setHelper(I, Helpers[I]);
5401 assert(
Data.size() == Helpers.size() &&
5402 "Data and helpers must have the same size.");
5404 totalSizeToAlloc<Decl *, Expr *, SourceLocation, OMPIteratorHelperData>(
5405 Data.size(),
Data.size() *
static_cast<int>(RangeExprOffset::Total),
5406 Data.size() *
static_cast<int>(RangeLocOffset::Total),
5413 unsigned NumIterators) {
5415 totalSizeToAlloc<Decl *, Expr *, SourceLocation, OMPIteratorHelperData>(
5416 NumIterators, NumIterators *
static_cast<int>(RangeExprOffset::Total),
5417 NumIterators *
static_cast<int>(RangeLocOffset::Total), NumIterators),
Defines the clang::ASTContext interface.
This file provides some common utility functions for processing Lambda related AST Constructs.
static bool isBooleanType(QualType Ty)
static Expr * IgnoreImplicitConstructorSingleStep(Expr *E)
Defines enum values for all the target-independent builtin functions.
Defines the C++ Decl subclasses, other than those for templates (found in DeclTemplate....
Defines the C++ template declaration subclasses.
Defines the clang::Expr interface and subclasses for C++ expressions.
static const Expr * skipTemporaryBindingsNoOpCastsAndParens(const Expr *E)
Skip over any no-op casts and any temporary-binding expressions.
static void AssertResultStorageKind(ConstantResultStorageKind Kind)
static void computeOverflowPatternExclusion(const ASTContext &Ctx, const BinaryOperator *E)
Compute and set the OverflowPatternExclusion bit based on whether the BinaryOperator expression match...
static std::optional< BinaryOperator * > getOverflowPatternBinOp(const BinaryOperator *E)
Certain overflow-dependent code patterns can have their integer overflow sanitization disabled.
llvm::MachO::Target Target
Defines the clang::Preprocessor interface.
static QualType getUnderlyingType(const SubRegion *R)
static bool isRecordType(QualType T)
Defines the SourceManager interface.
static QualType getPointeeType(const MemRegion *R)
static const TypeInfo & getInfo(unsigned id)
__DEVICE__ void * memcpy(void *__a, const void *__b, size_t __c)
void setValue(const ASTContext &C, const llvm::APInt &Val)
llvm::APInt getValue() const
uint64_t * pVal
Used to store the >64 bits integer value.
uint64_t VAL
Used to store the <= 64 bits integer value.
void setIntValue(const ASTContext &C, const llvm::APInt &Val)
A non-discriminated union of a base, field, or array index.
APValue - This class implements a discriminated union of [uninitialized] [APSInt] [APFloat],...
static APValue IndeterminateValue()
@ Indeterminate
This object has an indeterminate value (C++ [basic.indet]).
@ None
There is no such object (it's outside its lifetime).
Holds long-lived AST nodes (such as types and decls) that can be referred to throughout the semantic ...
SourceManager & getSourceManager()
const ConstantArrayType * getAsConstantArrayType(QualType T) const
MangleContext * createMangleContext(const TargetInfo *T=nullptr)
If T is null pointer, assume the target in ASTContext.
CanQualType getCanonicalType(QualType T) const
Return the canonical (structural) type corresponding to the specified potentially non-canonical type ...
QualType getPointerType(QualType T) const
Return the uniqued reference to the type for a pointer to the specified type.
QualType getTypeDeclType(const TypeDecl *Decl, const TypeDecl *PrevDecl=nullptr) const
Return the unique reference to the type for the specified type declaration.
Builtin::Context & BuiltinInfo
const LangOptions & getLangOpts() const
Qualifiers::GC getObjCGCAttrKind(QualType Ty) const
Return one of the GCNone, Weak or Strong Objective-C garbage collection attributes.
TypeInfo getTypeInfo(const Type *T) const
Get the size and alignment of the specified complete type in bits.
LangAS getDefaultOpenCLPointeeAddrSpace()
Returns default address space based on OpenCL version and enabled features.
bool hasSameUnqualifiedType(QualType T1, QualType T2) const
Determine whether the given types are equivalent after cvr-qualifiers have been removed.
uint64_t getTypeSize(QualType T) const
Return the size of the specified (complete) type T, in bits.
void * Allocate(size_t Size, unsigned Align=8) const
CanQualType UnsignedIntTy
llvm::APSInt MakeIntValue(uint64_t Value, QualType Type) const
Make an APSInt of the appropriate width and signedness for the given Value and integer Type.
StringLiteral * getPredefinedStringLiteralFromCache(StringRef Key) const
Return a string representing the human readable name for the specified function declaration or file n...
DiagnosticsEngine & getDiagnostics() const
UnnamedGlobalConstantDecl * getUnnamedGlobalConstantDecl(QualType Ty, const APValue &Value) const
Return a declaration for a uniquified anonymous global constant corresponding to a given APValue.
const TargetInfo & getTargetInfo() const
void addDestruction(T *Ptr) const
If T isn't trivially destructible, calls AddDeallocation to register it for destruction.
void resize(const ASTContext &C, unsigned N, const T &NV)
iterator insert(const ASTContext &C, iterator I, const T &Elt)
void reserve(const ASTContext &C, unsigned N)
static QualType getBaseOriginalType(const Expr *Base)
Return original type of the base expression for array section.
ArraySubscriptExpr - [C99 6.5.2.1] Array Subscripting.
Represents an array type, per C99 6.7.5.2 - Array Declarators.
QualType getElementType() const
QualType getValueType() const
AtomicExpr(SourceLocation BLoc, ArrayRef< Expr * > args, QualType t, AtomicOp op, SourceLocation RP)
unsigned getNumSubExprs() const
A builtin binary operation expression such as "x + y" or "x <= y".
static OverloadedOperatorKind getOverloadedOperator(Opcode Opc)
Retrieve the overloaded operator kind that corresponds to the given binary opcode.
StringRef getOpcodeStr() const
SourceLocation getOperatorLoc() const
bool hasStoredFPFeatures() const
bool isCompoundAssignmentOp() const
static unsigned sizeOfTrailingObjects(bool HasFPFeatures)
Return the size in bytes needed for the trailing objects.
static BinaryOperator * Create(const ASTContext &C, Expr *lhs, Expr *rhs, Opcode opc, QualType ResTy, ExprValueKind VK, ExprObjectKind OK, SourceLocation opLoc, FPOptionsOverride FPFeatures)
static BinaryOperator * CreateEmpty(const ASTContext &C, bool hasFPFeatures)
static bool isAssignmentOp(Opcode Opc)
static bool isNullPointerArithmeticExtension(ASTContext &Ctx, Opcode Opc, const Expr *LHS, const Expr *RHS)
Return true if a binary operator using the specified opcode and operands would match the 'p = (i8*)nu...
void setStoredFPFeatures(FPOptionsOverride F)
Set FPFeatures in trailing storage, used only by Serialization.
static Opcode getOverloadedOpcode(OverloadedOperatorKind OO)
Retrieve the binary opcode that corresponds to the given overloaded operator.
BinaryOperator(const ASTContext &Ctx, Expr *lhs, Expr *rhs, Opcode opc, QualType ResTy, ExprValueKind VK, ExprObjectKind OK, SourceLocation opLoc, FPOptionsOverride FPFeatures)
Build a binary operator, assuming that appropriate storage has been allocated for the trailing object...
A binding in a decomposition declaration.
Stmt * getBody() const override
getBody - If this Decl represents a declaration for a body of code, such as a function or method defi...
SourceLocation getCaretLocation() const
SourceLocation getCaretLocation() const
const Stmt * getBody() const
const FunctionProtoType * getFunctionType() const
getFunctionType - Return the underlying function type for this block.
bool isUnevaluated(unsigned ID) const
Returns true if this builtin does not perform the side-effects of its arguments.
CStyleCastExpr - An explicit cast in C (C99 6.5.4) or a C-style cast in C++ (C++ [expr....
static CStyleCastExpr * CreateEmpty(const ASTContext &Context, unsigned PathSize, bool HasFPFeatures)
static CStyleCastExpr * Create(const ASTContext &Context, QualType T, ExprValueKind VK, CastKind K, Expr *Op, const CXXCastPath *BasePath, FPOptionsOverride FPO, TypeSourceInfo *WrittenTy, SourceLocation L, SourceLocation R)
SourceLocation getLParenLoc() const
Represents a call to a CUDA kernel function.
Represents a base class of a C++ class.
Represents binding an expression to a temporary.
Represents a call to a C++ constructor.
Expr * getArg(unsigned Arg)
Return the specified argument.
CXXConstructorDecl * getConstructor() const
Get the constructor that this expression will (ultimately) call.
unsigned getNumArgs() const
Return the number of arguments to the constructor call.
Represents a C++ constructor within a class.
A default argument (C++ [dcl.fct.default]).
A use of a default initializer in a constructor or in aggregate initialization.
Represents a C++ destructor within a class.
A C++ dynamic_cast expression (C++ [expr.dynamic.cast]).
Represents an explicit C++ type conversion that uses "functional" notation (C++ [expr....
Represents a call to a member function that may be written either with member call syntax (e....
Represents a static or instance method of a struct/union/class.
const CXXRecordDecl * getParent() const
Return the parent of this method declaration, which is the class in which this method is defined.
A call to an overloaded operator written using operator syntax.
SourceLocation getOperatorLoc() const
Returns the location of the operator symbol in the expression.
OverloadedOperatorKind getOperator() const
Returns the kind of overloaded operator that this expression refers to.
SourceRange getSourceRange() const
Represents a C++ struct/union/class.
bool hasTrivialDestructor() const
Determine whether this class has a trivial destructor (C++ [class.dtor]p3)
A C++ static_cast expression (C++ [expr.static.cast]).
Represents the this expression in C++.
CallExpr - Represents a function call (C99 6.5.2.2, C++ [expr.call]).
Expr * getArg(unsigned Arg)
getArg - Return the specified argument.
bool hasStoredFPFeatures() const
static unsigned sizeOfTrailingObjects(unsigned NumPreArgs, unsigned NumArgs, bool HasFPFeatures)
Return the size in bytes needed for the trailing objects.
void setArg(unsigned Arg, Expr *ArgExpr)
setArg - Set the specified argument.
static CallExpr * Create(const ASTContext &Ctx, Expr *Fn, ArrayRef< Expr * > Args, QualType Ty, ExprValueKind VK, SourceLocation RParenLoc, FPOptionsOverride FPFeatures, unsigned MinNumArgs=0, ADLCallKind UsesADL=NotADL)
Create a call expression.
std::pair< const NamedDecl *, const Attr * > getUnusedResultAttr(const ASTContext &Ctx) const
Returns the WarnUnusedResultAttr that is either declared on the called function, or its return type d...
SourceLocation getBeginLoc() const LLVM_READONLY
unsigned getBuiltinCallee() const
getBuiltinCallee - If this is a call to a builtin, return the builtin ID of the callee.
FunctionDecl * getDirectCallee()
If the callee is a FunctionDecl, return it. Otherwise return null.
static CallExpr * CreateEmpty(const ASTContext &Ctx, unsigned NumArgs, bool HasFPFeatures, EmptyShell Empty)
Create an empty call expression, for deserialization.
bool isCallToStdMove() const
SourceLocation getEndLoc() const LLVM_READONLY
void setPreArg(unsigned I, Stmt *PreArg)
void computeDependence()
Compute and set dependence bits.
void setStoredFPFeatures(FPOptionsOverride F)
Set FPOptionsOverride in trailing storage. Used only by Serialization.
unsigned getNumArgs() const
getNumArgs - Return the number of actual arguments to this call.
CallExpr(StmtClass SC, Expr *Fn, ArrayRef< Expr * > PreArgs, ArrayRef< Expr * > Args, QualType Ty, ExprValueKind VK, SourceLocation RParenLoc, FPOptionsOverride FPFeatures, unsigned MinNumArgs, ADLCallKind UsesADL)
Build a call expression, assuming that appropriate storage has been allocated for the trailing object...
SourceLocation getRParenLoc() const
static constexpr ADLCallKind UsesADL
static CallExpr * CreateTemporary(void *Mem, Expr *Fn, QualType Ty, ExprValueKind VK, SourceLocation RParenLoc, ADLCallKind UsesADL=NotADL)
Create a temporary call expression with no arguments in the memory pointed to by Mem.
bool isBuiltinAssumeFalse(const ASTContext &Ctx) const
Return true if this is a call to __assume() or __builtin_assume() with a non-value-dependent constant...
QualType getCallReturnType(const ASTContext &Ctx) const
getCallReturnType - Get the return type of the call expr.
bool isUnevaluatedBuiltinCall(const ASTContext &Ctx) const
Returns true if this is a call to a builtin which does not evaluate side-effects within its arguments...
unsigned getNumPreArgs() const
bool hasUnusedResultAttr(const ASTContext &Ctx) const
Returns true if this call expression should warn on unused results.
QualType withConst() const
Retrieves a version of this type with const applied.
bool isVolatileQualified() const
Represents the body of a CapturedStmt, and serves as its DeclContext.
CastExpr - Base class for type casts, including both implicit casts (ImplicitCastExpr) and explicit c...
FPOptionsOverride * getTrailingFPFeatures()
Return a pointer to the trailing FPOptions.
NamedDecl * getConversionFunction() const
If this cast applies a user-defined conversion, retrieve the conversion function that it invokes.
Expr * getSubExprAsWritten()
Retrieve the cast subexpression as it was written in the source code, looking through any implicit ca...
CastKind getCastKind() const
bool hasStoredFPFeatures() const
static const FieldDecl * getTargetFieldForToUnionCast(QualType unionType, QualType opType)
const char * getCastKindName() const
SourceLocation getEnd() const
static CharUnits Zero()
Zero - Construct a CharUnits quantity of zero.
void setValue(unsigned Val)
static void print(unsigned val, CharacterLiteralKind Kind, raw_ostream &OS)
ChooseExpr - GNU builtin-in function __builtin_choose_expr.
Represents a class template specialization, which refers to a class template with a given set of temp...
bool isExplicitSpecialization() const
CompoundAssignOperator - For compound assignments (e.g.
static CompoundAssignOperator * CreateEmpty(const ASTContext &C, bool hasFPFeatures)
static CompoundAssignOperator * Create(const ASTContext &C, Expr *lhs, Expr *rhs, Opcode opc, QualType ResTy, ExprValueKind VK, ExprObjectKind OK, SourceLocation opLoc, FPOptionsOverride FPFeatures, QualType CompLHSType=QualType(), QualType CompResultType=QualType())
CompoundLiteralExpr - [C99 6.5.2.5].
CompoundStmt - This represents a group of statements like { stmt stmt }.
ConditionalOperator - The ?: ternary operator.
ConstEvaluatedExprVisitor - This class visits 'const Expr *'s.
ConstantExpr - An expression that occurs in a constant context and optionally the result of evaluatin...
APValue getAPValueResult() const
static ConstantResultStorageKind getStorageKind(const APValue &Value)
void MoveIntoResult(APValue &Value, const ASTContext &Context)
llvm::APSInt getResultAsAPSInt() const
ConstantResultStorageKind getResultStorageKind() const
static ConstantExpr * Create(const ASTContext &Context, Expr *E, const APValue &Result)
static ConstantExpr * CreateEmpty(const ASTContext &Context, ConstantResultStorageKind StorageKind)
A POD class for pairing a NamedDecl* with an access specifier.
specific_decl_iterator - Iterates over a subrange of declarations stored in a DeclContext,...
DeclContext - This is used only as base class of specific decl types that can act as declaration cont...
DeclContext * getParent()
getParent - Returns the containing DeclContext.
bool isDependentContext() const
Determines whether this context is dependent on a template parameter.
A reference to a declared variable, function, enum, etc.
bool hasExplicitTemplateArgs() const
Determines whether this declaration reference was followed by an explicit template argument list.
void setDecl(ValueDecl *NewD)
static DeclRefExpr * CreateEmpty(const ASTContext &Context, bool HasQualifier, bool HasFoundDecl, bool HasTemplateKWAndArgsInfo, unsigned NumTemplateArgs)
Construct an empty declaration reference expression.
SourceLocation getBeginLoc() const LLVM_READONLY
DeclarationNameInfo getNameInfo() const
static DeclRefExpr * Create(const ASTContext &Context, NestedNameSpecifierLoc QualifierLoc, SourceLocation TemplateKWLoc, ValueDecl *D, bool RefersToEnclosingVariableOrCapture, SourceLocation NameLoc, QualType T, ExprValueKind VK, NamedDecl *FoundD=nullptr, const TemplateArgumentListInfo *TemplateArgs=nullptr, NonOdrUseReason NOUR=NOUR_None)
bool hasQualifier() const
Determine whether this declaration reference was preceded by a C++ nested-name-specifier,...
NestedNameSpecifierLoc getQualifierLoc() const
If the name was qualified, retrieves the nested-name-specifier that precedes the name,...
SourceLocation getEndLoc() const LLVM_READONLY
SourceLocation getRAngleLoc() const
Retrieve the location of the right angle bracket ending the explicit template argument list following...
DeclStmt - Adaptor class for mixing declarations with statements and expressions.
Decl - This represents one declaration (or definition), e.g.
ASTContext & getASTContext() const LLVM_READONLY
static Decl * castFromDeclContext(const DeclContext *)
DeclContext * getDeclContext()
AccessSpecifier getAccess() const
static bool isFlexibleArrayMemberLike(ASTContext &Context, const Decl *D, QualType Ty, LangOptions::StrictFlexArraysLevelKind StrictFlexArraysLevel, bool IgnoreTemplateOrMacroSubstitution)
Whether it resembles a flexible array member.
DeclarationNameLoc - Additional source/type location info for a declaration name.
Represents the type decltype(expr) (C++11).
Represents a single C99 designator.
SourceRange getSourceRange() const LLVM_READONLY
bool isFieldDesignator() const
SourceLocation getBeginLoc() const LLVM_READONLY
struct FieldDesignatorInfo FieldInfo
A field designator, e.g., ".x".
bool isArrayRangeDesignator() const
FieldDecl * getFieldDecl() const
bool isArrayDesignator() const
SourceLocation getFieldLoc() const
const IdentifierInfo * getFieldName() const
SourceLocation getDotLoc() const
Represents a C99 designated initializer expression.
static DesignatedInitExpr * CreateEmpty(const ASTContext &C, unsigned NumIndexExprs)
Expr * getArrayRangeEnd(const Designator &D) const
Expr * getSubExpr(unsigned Idx) const
SourceRange getDesignatorsSourceRange() const
Expr * getArrayRangeStart(const Designator &D) const
void ExpandDesignator(const ASTContext &C, unsigned Idx, const Designator *First, const Designator *Last)
Replaces the designator at index Idx with the series of designators in [First, Last).
static DesignatedInitExpr * Create(const ASTContext &C, llvm::ArrayRef< Designator > Designators, ArrayRef< Expr * > IndexExprs, SourceLocation EqualOrColonLoc, bool GNUSyntax, Expr *Init)
Expr * getArrayIndex(const Designator &D) const
Designator * getDesignator(unsigned Idx)
Expr * getInit() const
Retrieve the initializer value.
unsigned size() const
Returns the number of designators in this initializer.
SourceLocation getBeginLoc() const LLVM_READONLY
void setDesignators(const ASTContext &C, const Designator *Desigs, unsigned NumDesigs)
SourceLocation getEndLoc() const LLVM_READONLY
SourceLocation getBeginLoc() const LLVM_READONLY
DesignatedInitUpdateExpr(const ASTContext &C, SourceLocation lBraceLoc, Expr *baseExprs, SourceLocation rBraceLoc)
SourceLocation getEndLoc() const LLVM_READONLY
InitListExpr * getUpdater() const
EmbedExpr(const ASTContext &Ctx, SourceLocation Loc, EmbedDataStorage *Data, unsigned Begin, unsigned NumOfElements)
An instance of this object exists for each enum constant that is defined.
ExplicitCastExpr - An explicit cast written in the source code.
QualType getTypeAsWritten() const
getTypeAsWritten - Returns the type that this expression is casting to, as written in the source code...
Represents an expression – generally a full-expression – that introduces cleanups to be run at the en...
This represents one expression.
bool EvaluateAsInt(EvalResult &Result, const ASTContext &Ctx, SideEffectsKind AllowSideEffects=SE_NoSideEffects, bool InConstantContext=false) const
EvaluateAsInt - Return true if this is a constant which we can fold and convert to an integer,...
EnumConstantDecl * getEnumConstantDecl()
If this expression refers to an enum constant, retrieve its declaration.
bool isReadIfDiscardedInCPlusPlus11() const
Determine whether an lvalue-to-rvalue conversion should implicitly be applied to this expression if i...
Expr * IgnoreParenNoopCasts(const ASTContext &Ctx) LLVM_READONLY
Skip past any parentheses and casts which do not change the value (including ptr->int casts of the sa...
@ SE_AllowUndefinedBehavior
Allow UB that we can give a value, but not arbitrary unmodeled side effects.
static QualType findBoundMemberType(const Expr *expr)
Given an expression of bound-member type, find the type of the member.
bool isImplicitCXXThis() const
Whether this expression is an implicit reference to 'this' in C++.
Expr * IgnoreParenCasts() LLVM_READONLY
Skip past any parentheses and casts which might surround this expression until reaching a fixed point...
bool isUnusedResultAWarning(const Expr *&WarnExpr, SourceLocation &Loc, SourceRange &R1, SourceRange &R2, ASTContext &Ctx) const
isUnusedResultAWarning - Return true if this immediate expression should be warned about if the resul...
LValueClassification ClassifyLValue(ASTContext &Ctx) const
Reasons why an expression might not be an l-value.
bool isValueDependent() const
Determines whether the value of this expression depends on.
ExprValueKind getValueKind() const
getValueKind - The value kind that this expression produces.
bool refersToVectorElement() const
Returns whether this expression refers to a vector element.
bool isTypeDependent() const
Determines whether the type of this expression depends on.
llvm::APSInt EvaluateKnownConstInt(const ASTContext &Ctx, SmallVectorImpl< PartialDiagnosticAt > *Diag=nullptr) const
EvaluateKnownConstInt - Call EvaluateAsRValue and return the folded integer.
Expr * IgnoreParenLValueCasts() LLVM_READONLY
Skip past any parentheses and lvalue casts which might surround this expression until reaching a fixe...
FPOptions getFPFeaturesInEffect(const LangOptions &LO) const
Returns the set of floating point options that apply to this expression.
const CXXRecordDecl * getBestDynamicClassType() const
For an expression of class type or pointer to class type, return the most derived class decl the expr...
Expr * IgnoreParenImpCasts() LLVM_READONLY
Skip past any parentheses and implicit casts which might surround this expression until reaching a fi...
Expr * IgnoreImplicit() LLVM_READONLY
Skip past any implicit AST nodes which might surround this expression until reaching a fixed point.
Expr * IgnoreConversionOperatorSingleStep() LLVM_READONLY
Skip conversion operators.
bool containsErrors() const
Whether this expression contains subexpressions which had errors, e.g.
bool isObjCSelfExpr() const
Check if this expression is the ObjC 'self' implicit parameter.
Expr * IgnoreParens() LLVM_READONLY
Skip past any parentheses which might surround this expression until reaching a fixed point.
bool EvaluateAsLValue(EvalResult &Result, const ASTContext &Ctx, bool InConstantContext=false) const
EvaluateAsLValue - Evaluate an expression to see if we can fold it to an lvalue with link time known ...
bool isEvaluatable(const ASTContext &Ctx, SideEffectsKind AllowSideEffects=SE_NoSideEffects) const
isEvaluatable - Call EvaluateAsRValue to see if this expression can be constant folded without side-e...
Expr * IgnoreParenBaseCasts() LLVM_READONLY
Skip past any parentheses and derived-to-base casts until reaching a fixed point.
bool isLValue() const
isLValue - True if this expression is an "l-value" according to the rules of the current language.
static bool hasAnyTypeDependentArguments(ArrayRef< Expr * > Exprs)
hasAnyTypeDependentArguments - Determines if any of the expressions in Exprs is type-dependent.
FieldDecl * getSourceBitField()
If this expression refers to a bit-field, retrieve the declaration of that bit-field.
NullPointerConstantValueDependence
Enumeration used to describe how isNullPointerConstant() should cope with value-dependent expressions...
@ NPC_ValueDependentIsNull
Specifies that a value-dependent expression of integral or dependent type should be considered a null...
@ NPC_NeverValueDependent
Specifies that the expression should never be value-dependent.
@ NPC_ValueDependentIsNotNull
Specifies that a value-dependent expression should be considered to never be a null pointer constant.
Expr * IgnoreUnlessSpelledInSource()
Skip past any invisible AST nodes which might surround this statement, such as ExprWithCleanups or Im...
ExprObjectKind getObjectKind() const
getObjectKind - The object kind that this expression produces.
Expr * IgnoreCasts() LLVM_READONLY
Skip past any casts which might surround this expression until reaching a fixed point.
Decl * getReferencedDeclOfCallee()
Expr * IgnoreImplicitAsWritten() LLVM_READONLY
Skip past any implicit AST nodes which might surround this expression until reaching a fixed point.
bool HasSideEffects(const ASTContext &Ctx, bool IncludePossibleEffects=true) const
HasSideEffects - This routine returns true for all those expressions which have any effect other than...
bool EvaluateAsConstantExpr(EvalResult &Result, const ASTContext &Ctx, ConstantExprKind Kind=ConstantExprKind::Normal) const
Evaluate an expression that is required to be a constant expression.
const Expr * getBestDynamicClassTypeExpr() const
Get the inner expression that determines the best dynamic class.
bool isIntegerConstantExpr(const ASTContext &Ctx, SourceLocation *Loc=nullptr) const
Expr * IgnoreImpCasts() LLVM_READONLY
Skip past any implicit casts which might surround this expression until reaching a fixed point.
NullPointerConstantKind
Enumeration used to describe the kind of Null pointer constant returned from isNullPointerConstant().
@ NPCK_ZeroExpression
Expression is a Null pointer constant built from a zero integer expression that is not a simple,...
@ NPCK_ZeroLiteral
Expression is a Null pointer constant built from a literal zero.
@ NPCK_CXX11_nullptr
Expression is a C++11 nullptr.
@ NPCK_GNUNull
Expression is a GNU-style __null constant.
@ NPCK_NotNull
Expression is not a Null pointer constant.
bool EvaluateAsBooleanCondition(bool &Result, const ASTContext &Ctx, bool InConstantContext=false) const
EvaluateAsBooleanCondition - Return true if this is a constant which we can fold and convert to a boo...
bool isTemporaryObject(ASTContext &Ctx, const CXXRecordDecl *TempTy) const
Determine whether the result of this expression is a temporary object of the given class type.
NullPointerConstantKind isNullPointerConstant(ASTContext &Ctx, NullPointerConstantValueDependence NPC) const
isNullPointerConstant - C99 6.3.2.3p3 - Test if this reduces down to a Null pointer constant.
QualType getEnumCoercedType(const ASTContext &Ctx) const
If this expression is an enumeration constant, return the enumeration type under which said constant ...
bool isBoundMemberFunction(ASTContext &Ctx) const
Returns true if this expression is a bound member function.
bool isConstantInitializer(ASTContext &Ctx, bool ForRef, const Expr **Culprit=nullptr) const
isConstantInitializer - Returns true if this expression can be emitted to IR as a constant,...
SourceLocation getExprLoc() const LLVM_READONLY
getExprLoc - Return the preferred location for the arrow when diagnosing a problem with a generic exp...
static bool isSameComparisonOperand(const Expr *E1, const Expr *E2)
Checks that the two Expr's will refer to the same value as a comparison operand.
bool isDefaultArgument() const
Determine whether this expression is a default function argument.
bool isFlexibleArrayMemberLike(ASTContext &Context, LangOptions::StrictFlexArraysLevelKind StrictFlexArraysLevel, bool IgnoreTemplateOrMacroSubstitution=false) const
Check whether this array fits the idiom of a flexible array member, depending on the value of -fstric...
Classification Classify(ASTContext &Ctx) const
Classify - Classify this expression according to the C++11 expression taxonomy.
bool hasNonTrivialCall(const ASTContext &Ctx) const
Determine whether this expression involves a call to any function that is not trivial.
bool refersToGlobalRegisterVar() const
Returns whether this expression refers to a global register variable.
bool isCXX98IntegralConstantExpr(const ASTContext &Ctx) const
isCXX98IntegralConstantExpr - Return true if this expression is an integral constant expression in C+...
const ValueDecl * getAsBuiltinConstantDeclRef(const ASTContext &Context) const
If this expression is an unambiguous reference to a single declaration, in the style of __builtin_fun...
bool isOBJCGCCandidate(ASTContext &Ctx) const
isOBJCGCCandidate - Return true if this expression may be used in a read/ write barrier.
static ExprValueKind getValueKindForType(QualType T)
getValueKindForType - Given a formal return or parameter type, give its value kind.
const Expr * skipRValueSubobjectAdjustments() const
bool isKnownToHaveBooleanValue(bool Semantic=true) const
isKnownToHaveBooleanValue - Return true if this is an integer expression that is known to return 0 or...
void setDependence(ExprDependence Deps)
Each concrete expr subclass is expected to compute its dependence and call this in the constructor.
const ObjCPropertyRefExpr * getObjCProperty() const
If this expression is an l-value for an Objective C property, find the underlying property reference ...
bool containsDuplicateElements() const
containsDuplicateElements - Return true if any element access is repeated.
bool isArrow() const
isArrow - Return true if the base expression is a pointer to vector, return false if the base express...
void getEncodedElementAccess(SmallVectorImpl< uint32_t > &Elts) const
getEncodedElementAccess - Encode the elements accessed into an llvm aggregate Constant of ConstantInt...
const Expr * getBase() const
unsigned getNumElements() const
getNumElements - Get the number of components being selected.
static int getAccessorIdx(char c, bool isNumericAccessor)
Represents difference between two FPOptions values.
bool requiresTrailingStorage() const
static FPOptions defaultWithoutTrailingStorage(const LangOptions &LO)
Return the default value of FPOptions that's used when trailing storage isn't required.
Represents a member of a struct/union/class.
Expr * getInClassInitializer() const
Get the C++11 default member initializer for this member, or null if one has not been set.
bool isBitField() const
Determines whether this field is a bitfield.
static FixedPointLiteral * Create(const ASTContext &C, EmptyShell Empty)
Returns an empty fixed-point literal.
std::string getValueAsString(unsigned Radix) const
static FixedPointLiteral * CreateFromRawInt(const ASTContext &C, const llvm::APInt &V, QualType type, SourceLocation l, unsigned Scale)
static FloatingLiteral * Create(const ASTContext &C, const llvm::APFloat &V, bool isexact, QualType Type, SourceLocation L)
double getValueAsApproximateDouble() const
getValueAsApproximateDouble - This returns the value as an inaccurate double.
llvm::APFloat getValue() const
FullExpr - Represents a "full-expression" node.
Represents a function declaration or definition.
FunctionDecl * getTemplateInstantiationPattern(bool ForDefinition=true) const
Retrieve the function declaration from which this function could be instantiated, if it is an instant...
bool isTrivial() const
Whether this function is "trivial" in some specialized C++ senses.
Represents a prototype with parameter type info, e.g.
Provides information about a function template specialization, which is a FunctionDecl that has been ...
bool isExplicitSpecialization() const
TemplateArgumentList * TemplateArguments
The template arguments used to produce the function template specialization from the function templat...
FunctionTemplateDecl * getTemplate() const
Retrieve the template from which this function was specialized.
FunctionType - C99 6.7.5.3 - Function Declarators.
CallingConv getCallConv() const
QualType getReturnType() const
Represents a C11 generic selection.
static GenericSelectionExpr * Create(const ASTContext &Context, SourceLocation GenericLoc, Expr *ControllingExpr, ArrayRef< TypeSourceInfo * > AssocTypes, ArrayRef< Expr * > AssocExprs, SourceLocation DefaultLoc, SourceLocation RParenLoc, bool ContainsUnexpandedParameterPack, unsigned ResultIndex)
Create a non-result-dependent generic selection expression accepting an expression predicate.
static GenericSelectionExpr * CreateEmpty(const ASTContext &Context, unsigned NumAssocs)
Create an empty generic selection expression for deserialization.
GlobalDecl - represents a global declaration.
This class represents temporary values used to represent inout and out arguments in HLSL.
static HLSLOutArgExpr * CreateEmpty(const ASTContext &Ctx)
static HLSLOutArgExpr * Create(const ASTContext &C, QualType Ty, OpaqueValueExpr *Base, OpaqueValueExpr *OpV, Expr *WB, bool IsInOut)
One of these records is kept for each identifier that is lexed.
StringRef getName() const
Return the actual identifier string.
ImplicitCastExpr - Allows us to explicitly represent implicit type conversions, which have no direct ...
static ImplicitCastExpr * Create(const ASTContext &Context, QualType T, CastKind Kind, Expr *Operand, const CXXCastPath *BasePath, ExprValueKind Cat, FPOptionsOverride FPO)
static ImplicitCastExpr * CreateEmpty(const ASTContext &Context, unsigned PathSize, bool HasFPFeatures)
Describes an C or C++ initializer list.
bool hasArrayFiller() const
Return true if this is an array initializer and its array "filler" has been set.
InitListExpr(const ASTContext &C, SourceLocation lbraceloc, ArrayRef< Expr * > initExprs, SourceLocation rbraceloc)
bool isTransparent() const
Is this a transparent initializer list (that is, an InitListExpr that is purely syntactic,...
void resizeInits(const ASTContext &Context, unsigned NumInits)
Specify the number of initializers.
bool isStringLiteralInit() const
Is this an initializer for an array of characters, initialized by a string literal or an @encode?
FieldDecl * getInitializedFieldInUnion()
If this initializes a union, specifies which field in the union to initialize.
unsigned getNumInits() const
SourceLocation getBeginLoc() const LLVM_READONLY
bool isSemanticForm() const
void setInit(unsigned Init, Expr *expr)
Expr * updateInit(const ASTContext &C, unsigned Init, Expr *expr)
Updates the initializer at index Init with the new expression expr, and returns the old expression at...
void setArrayFiller(Expr *filler)
InitListExpr * getSyntacticForm() const
const Expr * getInit(unsigned Init) const
bool isIdiomaticZeroInitializer(const LangOptions &LangOpts) const
Is this the zero initializer {0} in a language which considers it idiomatic?
SourceLocation getEndLoc() const LLVM_READONLY
bool isSyntacticForm() const
ArrayRef< Expr * > inits()
void sawArrayRangeDesignator(bool ARD=true)
Expr ** getInits()
Retrieve the set of initializers.
void reserveInits(const ASTContext &C, unsigned NumInits)
Reserve space for some number of initializers.
static IntegerLiteral * Create(const ASTContext &C, const llvm::APInt &V, QualType type, SourceLocation l)
Returns a new integer literal with value 'V' and type 'type'.
static ItaniumMangleContext * create(ASTContext &Context, DiagnosticsEngine &Diags, bool IsAux=false)
LabelStmt - Represents a label, which has a substatement.
A C++ lambda expression, which produces a function object (of unspecified type) that can be invoked l...
StrictFlexArraysLevelKind
@ AddUnsignedOverflowTest
if (a + b < a)
@ AddSignedOverflowTest
if (a + b < a)
Keeps track of the various options that can be enabled, which controls the dialect of C or C++ that i...
bool isOverflowPatternExcluded(OverflowPatternExclusionKind Kind) const
void remapPathPrefix(SmallVectorImpl< char > &Path) const
Remap path prefix according to -fmacro-prefix-path option.
Lexer - This provides a simple interface that turns a text buffer into a stream of tokens.
bool LexFromRawLexer(Token &Result)
LexFromRawLexer - Lex a token from a designated raw lexer (one with no associated preprocessor object...
static SourceLocation AdvanceToTokenCharacter(SourceLocation TokStart, unsigned Characters, const SourceManager &SM, const LangOptions &LangOpts)
AdvanceToTokenCharacter - If the current SourceLocation specifies a location at the start of a token,...
Represents a prvalue temporary that is written into memory so that a reference can bind to it.
MemberExpr - [C99 6.5.2.3] Structure and Union Members.
static MemberExpr * CreateEmpty(const ASTContext &Context, bool HasQualifier, bool HasFoundDecl, bool HasTemplateKWAndArgsInfo, unsigned NumTemplateArgs)
void setMemberDecl(ValueDecl *D)
NestedNameSpecifierLoc getQualifierLoc() const
If the member name was qualified, retrieves the nested-name-specifier that precedes the member name,...
bool hasExplicitTemplateArgs() const
Determines whether the member name was followed by an explicit template argument list.
bool hasQualifier() const
Determines whether this member expression actually had a C++ nested-name-specifier prior to the name ...
static MemberExpr * Create(const ASTContext &C, Expr *Base, bool IsArrow, SourceLocation OperatorLoc, NestedNameSpecifierLoc QualifierLoc, SourceLocation TemplateKWLoc, ValueDecl *MemberDecl, DeclAccessPair FoundDecl, DeclarationNameInfo MemberNameInfo, const TemplateArgumentListInfo *TemplateArgs, QualType T, ExprValueKind VK, ExprObjectKind OK, NonOdrUseReason NOUR)
bool isImplicitAccess() const
Determine whether the base of this explicit is implicit.
SourceLocation getRAngleLoc() const
Retrieve the location of the right angle bracket ending the explicit template argument list following...
SourceLocation getEndLoc() const LLVM_READONLY
SourceLocation getBeginLoc() const LLVM_READONLY
DeclarationNameInfo getMemberNameInfo() const
Retrieve the member declaration name info.
A pointer to member type per C++ 8.3.3 - Pointers to members.
This represents a decl that may have a name.
IdentifierInfo * getIdentifier() const
Get the identifier that names this declaration, if there is one.
StringRef getName() const
Get the name of identifier for this declaration as a StringRef.
DeclarationName getDeclName() const
Get the actual, stored name of the declaration, which may be a special name.
A C++ nested-name-specifier augmented with source location information.
SourceLocation getBeginLoc() const
Retrieve the location of the beginning of this nested-name-specifier.
bool hasQualifier() const
Evaluates true when this nested-name-specifier location is non-empty.
An explicit cast in C or a C-style cast in C++, which uses the syntax ([s1][s2]......
static OMPArrayShapingExpr * CreateEmpty(const ASTContext &Context, unsigned NumDims)
static OMPArrayShapingExpr * Create(const ASTContext &Context, QualType T, Expr *Op, SourceLocation L, SourceLocation R, ArrayRef< Expr * > Dims, ArrayRef< SourceRange > BracketRanges)
OpenMP 5.0 [2.1.6 Iterators] Iterators are identifiers that expand to multiple values in the clause o...
static OMPIteratorExpr * Create(const ASTContext &Context, QualType T, SourceLocation IteratorKwLoc, SourceLocation L, SourceLocation R, ArrayRef< IteratorDefinition > Data, ArrayRef< OMPIteratorHelperData > Helpers)
static OMPIteratorExpr * CreateEmpty(const ASTContext &Context, unsigned NumIterators)
SourceLocation getSecondColonLoc(unsigned I) const
Gets the location of the second ':' (if any) in the range for the given iteratori definition.
SourceLocation getColonLoc(unsigned I) const
Gets the location of the first ':' in the range for the given iterator definition.
IteratorRange getIteratorRange(unsigned I)
Gets the iterator range for the given iterator.
OMPIteratorHelperData & getHelper(unsigned I)
Fetches helper data for the specified iteration space.
SourceLocation getAssignLoc(unsigned I) const
Gets the location of '=' for the given iterator definition.
Decl * getIteratorDecl(unsigned I)
Gets the iterator declaration for the given iterator.
ObjCCategoryImplDecl - An object of this class encapsulates a category @implementation declaration.
Represents an ObjC class declaration.
ObjCIvarRefExpr - A reference to an ObjC instance variable.
An expression that sends a message to the given Objective-C object or class.
ObjCMethodFamily getMethodFamily() const
bool isInstanceMessage() const
Determine whether this is an instance message to either a computed object or to super.
const ObjCMethodDecl * getMethodDecl() const
ObjCMethodDecl - Represents an instance or class method declaration.
ImplicitParamDecl * getSelfDecl() const
ObjCPropertyRefExpr - A dot-syntax expression to access an ObjC property.
OffsetOfExpr - [C99 7.17] - This represents an expression of the form offsetof(record-type,...
static OffsetOfExpr * CreateEmpty(const ASTContext &C, unsigned NumComps, unsigned NumExprs)
static OffsetOfExpr * Create(const ASTContext &C, QualType type, SourceLocation OperatorLoc, TypeSourceInfo *tsi, ArrayRef< OffsetOfNode > comps, ArrayRef< Expr * > exprs, SourceLocation RParenLoc)
void setIndexExpr(unsigned Idx, Expr *E)
void setComponent(unsigned Idx, OffsetOfNode ON)
FieldDecl * getField() const
For a field offsetof node, returns the field.
IdentifierInfo * getFieldName() const
For a field or identifier offsetof node, returns the name of the field.
@ Identifier
A field in a dependent type, known only by its name.
Kind getKind() const
Determine what kind of offsetof node this is.
OpaqueValueExpr - An expression referring to an opaque object of a fixed type and value class.
static const OpaqueValueExpr * findInCopyConstruct(const Expr *expr)
Given an expression which invokes a copy constructor — i.e.
This expression type represents an asterisk in an OpenACC Size-Expr, used in the 'tile' and 'gang' cl...
static OpenACCAsteriskSizeExpr * Create(const ASTContext &C, SourceLocation Loc)
static OpenACCAsteriskSizeExpr * CreateEmpty(const ASTContext &C)
ParenExpr - This represents a parenthesized expression, e.g.
static ParenListExpr * CreateEmpty(const ASTContext &Ctx, unsigned NumExprs)
Create an empty paren list.
static ParenListExpr * Create(const ASTContext &Ctx, SourceLocation LParenLoc, ArrayRef< Expr * > Exprs, SourceLocation RParenLoc)
Create a paren list.
PointerType - C99 6.7.5.1 - Pointer Declarators.
QualType getPointeeType() const
[C99 6.4.2.2] - A predefined identifier such as func.
static PredefinedExpr * Create(const ASTContext &Ctx, SourceLocation L, QualType FNTy, PredefinedIdentKind IK, bool IsTransparent, StringLiteral *SL)
Create a PredefinedExpr.
StringRef getIdentKindName() const
static PredefinedExpr * CreateEmpty(const ASTContext &Ctx, bool HasFunctionName)
Create an empty PredefinedExpr.
static std::string ComputeName(PredefinedIdentKind IK, const Decl *CurrentDecl, bool ForceElaboratedPrinting=false)
static void processPathToFileName(SmallVectorImpl< char > &FileName, const PresumedLoc &PLoc, const LangOptions &LangOpts, const TargetInfo &TI)
static void processPathForFileMacro(SmallVectorImpl< char > &Path, const LangOptions &LangOpts, const TargetInfo &TI)
Represents an unpacked "presumed" location which can be presented to the user.
unsigned getColumn() const
Return the presumed column number of this location.
const char * getFilename() const
Return the presumed filename of this location.
unsigned getLine() const
Return the presumed line number of this location.
Callbacks to use to customize the behavior of the pretty-printer.
PseudoObjectExpr - An expression which accesses a pseudo-object l-value.
semantics_iterator semantics_end()
semantics_iterator semantics_begin()
const Expr *const * const_semantics_iterator
static PseudoObjectExpr * Create(const ASTContext &Context, Expr *syntactic, ArrayRef< Expr * > semantic, unsigned resultIndex)
ArrayRef< Expr * > semantics()
A (possibly-)qualified type.
bool isVolatileQualified() const
Determine whether this type is volatile-qualified.
bool isNull() const
Return true if this QualType doesn't point to a type yet.
LangAS getAddressSpace() const
Return the address space of this type.
Qualifiers getQualifiers() const
Retrieve the set of qualifiers applied to this type.
void getAsStringInternal(std::string &Str, const PrintingPolicy &Policy) const
QualType getCanonicalType() const
The collection of all-type qualifiers we support.
void removeAddressSpace()
Represents a struct/union/class.
field_iterator field_end() const
field_range fields() const
field_iterator field_begin() const
A helper class that allows the use of isa/cast/dyncast to detect TagType objects of structs/unions/cl...
RecordDecl * getDecl() const
Frontend produces RecoveryExprs on semantic errors that prevent creating other well-formed expression...
static RecoveryExpr * Create(ASTContext &Ctx, QualType T, SourceLocation BeginLoc, SourceLocation EndLoc, ArrayRef< Expr * > SubExprs)
static RecoveryExpr * CreateEmpty(ASTContext &Ctx, unsigned NumSubExprs)
TypeSourceInfo * getTypeSourceInfo()
static SYCLUniqueStableNameExpr * Create(const ASTContext &Ctx, SourceLocation OpLoc, SourceLocation LParen, SourceLocation RParen, TypeSourceInfo *TSI)
std::string ComputeName(ASTContext &Context) const
static SYCLUniqueStableNameExpr * CreateEmpty(const ASTContext &Ctx)
void setExprs(const ASTContext &C, ArrayRef< Expr * > Exprs)
ShuffleVectorExpr(const ASTContext &C, ArrayRef< Expr * > args, QualType Type, SourceLocation BLoc, SourceLocation RP)
APValue EvaluateInContext(const ASTContext &Ctx, const Expr *DefaultExpr) const
Return the result of evaluating this SourceLocExpr in the specified (and possibly null) default argum...
SourceLocExpr(const ASTContext &Ctx, SourceLocIdentKind Type, QualType ResultTy, SourceLocation BLoc, SourceLocation RParenLoc, DeclContext *Context)
SourceLocation getLocation() const
const DeclContext * getParentContext() const
If the SourceLocExpr has been resolved return the subexpression representing the resolved value.
StringRef getBuiltinStr() const
Return a string representing the name of the specific builtin function.
static bool MayBeDependent(SourceLocIdentKind Kind)
SourceLocIdentKind getIdentKind() const
Encodes a location in the source.
bool isValid() const
Return true if this is a valid SourceLocation object.
This class handles loading and caching of source files into memory.
PresumedLoc getPresumedLoc(SourceLocation Loc, bool UseLineDirectives=true) const
Returns the "presumed" location of a SourceLocation specifies.
CharSourceRange getExpansionRange(SourceLocation Loc) const
Given a SourceLocation object, return the range of tokens covered by the expansion in the ultimate fi...
A trivial tuple used to represent a source range.
Stmt - This represents one statement.
SourceLocation getEndLoc() const LLVM_READONLY
UnaryExprOrTypeTraitExprBitfields UnaryExprOrTypeTraitExprBits
GenericSelectionExprBitfields GenericSelectionExprBits
ParenListExprBitfields ParenListExprBits
CallExprBitfields CallExprBits
FloatingLiteralBitfields FloatingLiteralBits
child_iterator child_begin()
StmtClass getStmtClass() const
SourceRange getSourceRange() const LLVM_READONLY
SourceLocation tokens are not useful in isolation - they are low level value objects created/interpre...
UnaryOperatorBitfields UnaryOperatorBits
SourceLocExprBitfields SourceLocExprBits
ConstantExprBitfields ConstantExprBits
llvm::iterator_range< child_iterator > child_range
StringLiteralBitfields StringLiteralBits
MemberExprBitfields MemberExprBits
DeclRefExprBitfields DeclRefExprBits
ConstStmtIterator const_child_iterator
PredefinedExprBitfields PredefinedExprBits
SourceLocation getBeginLoc() const LLVM_READONLY
BinaryOperatorBitfields BinaryOperatorBits
PseudoObjectExprBitfields PseudoObjectExprBits
llvm::iterator_range< const_child_iterator > const_child_range
StringLiteralParser - This decodes string escape characters and performs wide string analysis and Tra...
unsigned getOffsetOfStringByte(const Token &TheTok, unsigned ByteNo) const
getOffsetOfStringByte - This function returns the offset of the specified byte of the string data rep...
unsigned GetStringLength() const
StringLiteral - This represents a string literal expression, e.g.
SourceLocation getStrTokenLoc(unsigned TokNum) const
Get one of the string literal token.
unsigned getLength() const
StringLiteralKind getKind() const
SourceLocation getLocationOfByte(unsigned ByteNo, const SourceManager &SM, const LangOptions &Features, const TargetInfo &Target, unsigned *StartToken=nullptr, unsigned *StartTokenByteOffset=nullptr) const
getLocationOfByte - Return a source location that points to the specified byte of this string literal...
uint32_t getCodeUnit(size_t i) const
void outputString(raw_ostream &OS) const
static StringLiteral * Create(const ASTContext &Ctx, StringRef Str, StringLiteralKind Kind, bool Pascal, QualType Ty, const SourceLocation *Loc, unsigned NumConcatenated)
This is the "fully general" constructor that allows representation of strings formed from multiple co...
static StringLiteral * CreateEmpty(const ASTContext &Ctx, unsigned NumConcatenated, unsigned Length, unsigned CharByteWidth)
Construct an empty string literal.
unsigned getNumConcatenated() const
getNumConcatenated - Get the number of string literal tokens that were concatenated in translation ph...
Represents the declaration of a struct/union/class/enum.
Exposes information about the current target.
A convenient class for passing around template argument information.
A template argument list.
unsigned size() const
Retrieve the number of template arguments in this template argument list.
const TemplateArgument & get(unsigned Idx) const
Retrieve the template argument at a given index.
Location wrapper for a TemplateArgument.
void print(const PrintingPolicy &Policy, raw_ostream &Out, bool IncludeType) const
Print this template argument to the given output stream.
TemplateParameterList * getTemplateParameters() const
Get the list of template parameters.
Stores a list of template parameters for a TemplateDecl and its derived classes.
NamedDecl * getParam(unsigned Idx)
static bool shouldIncludeTypeForArgument(const PrintingPolicy &Policy, const TemplateParameterList *TPL, unsigned Idx)
Token - This structure provides full information about a lexed token.
A container of type source information.
The base class of the type hierarchy.
CXXRecordDecl * getAsCXXRecordDecl() const
Retrieves the CXXRecordDecl that this type refers to, either because the type is a RecordType or beca...
bool isBooleanType() const
bool hasAttr(attr::Kind AK) const
Determine whether this type had the specified attribute applied to it (looking through top-level type...
bool isSignedIntegerType() const
Return true if this is an integer type that is signed, according to C99 6.2.5p4 [char,...
bool isPointerType() const
bool isIntegerType() const
isIntegerType() does not include complex integers (a GCC extension).
const T * castAs() const
Member-template castAs<specific type>.
bool isSpecificPlaceholderType(unsigned K) const
Test for a specific placeholder type.
bool isReferenceType() const
const CXXRecordDecl * getPointeeCXXRecordDecl() const
If this is a pointer or reference to a RecordType, return the CXXRecordDecl that the type refers to.
bool isIntegralType(const ASTContext &Ctx) const
Determine whether this type is an integral type.
QualType getPointeeType() const
If this is a pointer, ObjC object pointer, or block pointer, this returns the respective pointee.
bool isIntegralOrEnumerationType() const
Determine whether this type is an integral or enumeration type.
bool isDependentType() const
Whether this type is a dependent type, meaning that its definition somehow depends on a template para...
const ArrayType * getAsArrayTypeUnsafe() const
A variant of getAs<> for array types which silently discards qualifiers from the outermost type.
bool isVectorType() const
bool isUnsignedIntegerType() const
Return true if this is an integer type that is unsigned, according to C99 6.2.5p6 [which returns true...
const T * getAs() const
Member-template getAs<specific type>'.
bool isNullPtrType() const
bool isRecordType() const
UnaryExprOrTypeTraitExpr - expression with either a type or (unevaluated) expression operand.
QualType getArgumentType() const
bool isArgumentType() const
UnaryExprOrTypeTraitExpr(UnaryExprOrTypeTrait ExprKind, TypeSourceInfo *TInfo, QualType resultType, SourceLocation op, SourceLocation rp)
UnaryOperator - This represents the unary-expression's (except sizeof and alignof),...
SourceLocation getOperatorLoc() const
getOperatorLoc - Return the location of the operator.
Expr * getSubExpr() const
bool hasStoredFPFeatures() const
Is FPFeatures in Trailing Storage?
static OverloadedOperatorKind getOverloadedOperator(Opcode Opc)
Retrieve the overloaded operator kind that corresponds to the given unary opcode.
static UnaryOperator * Create(const ASTContext &C, Expr *input, Opcode opc, QualType type, ExprValueKind VK, ExprObjectKind OK, SourceLocation l, bool CanOverflow, FPOptionsOverride FPFeatures)
static Opcode getOverloadedOpcode(OverloadedOperatorKind OO, bool Postfix)
Retrieve the unary opcode that corresponds to the given overloaded operator.
void setStoredFPFeatures(FPOptionsOverride F)
Set FPFeatures in trailing storage, used by Serialization & ASTImporter.
UnaryOperator(const ASTContext &Ctx, Expr *input, Opcode opc, QualType type, ExprValueKind VK, ExprObjectKind OK, SourceLocation l, bool CanOverflow, FPOptionsOverride FPFeatures)
static UnaryOperator * CreateEmpty(const ASTContext &C, bool hasFPFeatures)
static StringRef getOpcodeStr(Opcode Op)
getOpcodeStr - Turn an Opcode enum value into the punctuation char it corresponds to,...
An artificial decl, representing a global anonymous constant value which is uniquified by value withi...
A call to a literal operator (C++11 [over.literal]) written as a user-defined literal (C++11 [lit....
Represent the declaration of a variable (in which case it is an lvalue) a function (in which case it ...
Represents a variable declaration or definition.
Represents a C array with a specified size that is not an integer-constant-expression.
Represents a GCC generic vector type.
Defines the clang::TargetInfo interface.
const internal::VariadicAllOfMatcher< Type > type
Matches Types in the clang AST.
const internal::VariadicDynCastAllOfMatcher< Stmt, Expr > expr
Matches expressions.
The JSON file list parser is used to communicate input to InstallAPI.
OverloadedOperatorKind
Enumeration specifying the different kinds of C++ overloaded operators.
@ OO_None
Not an overloaded operator.
ConstantResultStorageKind
Describes the kind of result that can be tail-allocated.
@ Ctor_Base
Base object ctor.
LLVM_READONLY bool isPrintable(unsigned char c)
Return true if this character is an ASCII printable character; that is, a character that should take ...
Expr * IgnoreExprNodes(Expr *E, FnTys &&... Fns)
Given an expression E and functions Fn_1,...,Fn_n : Expr * -> Expr *, Recursively apply each of the f...
RefQualifierKind
The kind of C++11 ref-qualifier associated with a function type.
@ RQ_LValue
An lvalue ref-qualifier was provided (&).
@ RQ_RValue
An rvalue ref-qualifier was provided (&&).
StmtIterator cast_away_const(const ConstStmtIterator &RHS)
ExprObjectKind
A further classification of the kind of object referenced by an l-value or x-value.
@ OK_ObjCProperty
An Objective-C property is a logical field of an Objective-C object which is read and written via Obj...
@ OK_Ordinary
An ordinary object is located at an address in memory.
ExprDependence computeDependence(FullExpr *E)
@ Create
'create' clause, allowed on Compute and Combined constructs, plus 'data', 'enter data',...
@ Self
'self' clause, allowed on Compute and Combined Constructs, plus 'update'.
UnaryExprOrTypeTrait
Names for the "expression or type" traits.
Expr * IgnoreImplicitCastsExtraSingleStep(Expr *E)
bool isLambdaCallOperator(const CXXMethodDecl *MD)
@ Result
The result type of a method or function.
Expr * IgnoreImplicitCastsSingleStep(Expr *E)
@ Dtor_Base
Base object dtor.
CastKind
CastKind - The kind of operation required for a conversion.
void FixedPointValueToString(SmallVectorImpl< char > &Str, llvm::APSInt Val, unsigned Scale)
Expr * IgnoreImplicitSingleStep(Expr *E)
ExprValueKind
The categorization of expression values, currently following the C++11 scheme.
@ VK_PRValue
A pr-value expression (in the C++11 taxonomy) produces a temporary value.
@ VK_LValue
An l-value expression is a reference to an object with independent storage.
Expr * IgnoreParensSingleStep(Expr *E)
const FunctionProtoType * T
Expr * IgnoreImplicitAsWrittenSingleStep(Expr *E)
Expr * IgnoreCastsSingleStep(Expr *E)
bool declaresSameEntity(const Decl *D1, const Decl *D2)
Determine whether two declarations declare the same entity.
Expr * IgnoreLValueCastsSingleStep(Expr *E)
bool isLambdaMethod(const DeclContext *DC)
Expr * IgnoreParensOnlySingleStep(Expr *E)
@ PrettyFunctionNoVirtual
The same as PrettyFunction, except that the 'virtual' keyword is omitted for virtual member functions...
Expr * IgnoreBaseCastsSingleStep(Expr *E)
NonOdrUseReason
The reason why a DeclRefExpr does not constitute an odr-use.
__UINTPTR_TYPE__ uintptr_t
An unsigned integer type with the property that any valid pointer to void can be converted to this ty...
Represents an explicit template argument list in C++, e.g., the "<int>" in "sort<int>".
DeclarationNameInfo - A collector data type for bundling together a DeclarationName and the correspon...
SourceLocation getLoc() const
getLoc - Returns the main location of the declaration name.
DeclarationName getName() const
getName - Returns the embedded declaration name.
SourceLocation getBeginLoc() const
getBeginLoc - Retrieve the location of the first token.
SourceLocation getEndLoc() const LLVM_READONLY
Stores data related to a single #embed directive.
EvalResult is a struct with detailed info about an evaluated expression.
APValue Val
Val - This is the value the expression can be folded to.
Iterator range representation begin:end[:step].
Helper expressions and declaration for OMPIteratorExpr class for each iteration space.
Describes how types, statements, expressions, and declarations should be printed.
unsigned SuppressTagKeyword
Whether type printing should skip printing the tag keyword.
const PrintingCallbacks * Callbacks
Callbacks to use to allow the behavior of printing to be customized.
A placeholder type used to construct an empty shell of a type, that will be filled in later (e....
An adjustment to be made to the temporary created when emitting a reference binding,...