257 lines
6.3 KiB
C++
257 lines
6.3 KiB
C++
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//===--- VariantValue.cpp - Polymorphic value type -*- C++ -*-===/
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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///
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/// \file
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/// \brief Polymorphic value type.
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///
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//===----------------------------------------------------------------------===//
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#include "clang/ASTMatchers/Dynamic/VariantValue.h"
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#include "clang/Basic/LLVM.h"
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#include "llvm/ADT/STLExtras.h"
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namespace clang {
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namespace ast_matchers {
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namespace dynamic {
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VariantMatcher::MatcherOps::~MatcherOps() {}
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VariantMatcher::Payload::~Payload() {}
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class VariantMatcher::SinglePayload : public VariantMatcher::Payload {
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public:
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SinglePayload(const DynTypedMatcher &Matcher) : Matcher(Matcher) {}
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virtual llvm::Optional<DynTypedMatcher> getSingleMatcher() const {
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return Matcher;
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}
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virtual std::string getTypeAsString() const {
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return (Twine("Matcher<") + Matcher.getSupportedKind().asStringRef() + ">")
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.str();
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}
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virtual void makeTypedMatcher(MatcherOps &Ops) const {
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if (Ops.canConstructFrom(Matcher))
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Ops.constructFrom(Matcher);
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}
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private:
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const DynTypedMatcher Matcher;
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};
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class VariantMatcher::PolymorphicPayload : public VariantMatcher::Payload {
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public:
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PolymorphicPayload(ArrayRef<DynTypedMatcher> MatchersIn)
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: Matchers(MatchersIn) {}
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virtual ~PolymorphicPayload() {}
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virtual llvm::Optional<DynTypedMatcher> getSingleMatcher() const {
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if (Matchers.size() != 1)
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return llvm::Optional<DynTypedMatcher>();
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return Matchers[0];
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}
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virtual std::string getTypeAsString() const {
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std::string Inner;
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for (size_t i = 0, e = Matchers.size(); i != e; ++i) {
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if (i != 0)
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Inner += "|";
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Inner += Matchers[i].getSupportedKind().asStringRef();
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}
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return (Twine("Matcher<") + Inner + ">").str();
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}
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virtual void makeTypedMatcher(MatcherOps &Ops) const {
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const DynTypedMatcher *Found = NULL;
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for (size_t i = 0, e = Matchers.size(); i != e; ++i) {
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if (Ops.canConstructFrom(Matchers[i])) {
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if (Found)
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return;
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Found = &Matchers[i];
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}
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}
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if (Found)
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Ops.constructFrom(*Found);
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}
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const std::vector<DynTypedMatcher> Matchers;
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};
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class VariantMatcher::VariadicOpPayload : public VariantMatcher::Payload {
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public:
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VariadicOpPayload(ast_matchers::internal::VariadicOperatorFunction Func,
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ArrayRef<VariantMatcher> Args)
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: Func(Func), Args(Args) {}
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virtual llvm::Optional<DynTypedMatcher> getSingleMatcher() const {
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return llvm::Optional<DynTypedMatcher>();
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}
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virtual std::string getTypeAsString() const {
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std::string Inner;
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for (size_t i = 0, e = Args.size(); i != e; ++i) {
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if (i != 0)
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Inner += "&";
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Inner += Args[i].getTypeAsString();
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}
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return Inner;
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}
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virtual void makeTypedMatcher(MatcherOps &Ops) const {
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Ops.constructVariadicOperator(Func, Args);
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}
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private:
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const ast_matchers::internal::VariadicOperatorFunction Func;
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const std::vector<VariantMatcher> Args;
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};
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VariantMatcher::VariantMatcher() {}
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VariantMatcher VariantMatcher::SingleMatcher(const DynTypedMatcher &Matcher) {
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return VariantMatcher(new SinglePayload(Matcher));
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}
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VariantMatcher
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VariantMatcher::PolymorphicMatcher(ArrayRef<DynTypedMatcher> Matchers) {
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return VariantMatcher(new PolymorphicPayload(Matchers));
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}
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VariantMatcher VariantMatcher::VariadicOperatorMatcher(
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ast_matchers::internal::VariadicOperatorFunction Func,
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ArrayRef<VariantMatcher> Args) {
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return VariantMatcher(new VariadicOpPayload(Func, Args));
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}
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llvm::Optional<DynTypedMatcher> VariantMatcher::getSingleMatcher() const {
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return Value ? Value->getSingleMatcher() : llvm::Optional<DynTypedMatcher>();
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}
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void VariantMatcher::reset() { Value.reset(); }
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std::string VariantMatcher::getTypeAsString() const {
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if (Value) return Value->getTypeAsString();
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return "<Nothing>";
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}
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VariantValue::VariantValue(const VariantValue &Other) : Type(VT_Nothing) {
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*this = Other;
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}
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VariantValue::VariantValue(unsigned Unsigned) : Type(VT_Nothing) {
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setUnsigned(Unsigned);
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}
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VariantValue::VariantValue(const std::string &String) : Type(VT_Nothing) {
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setString(String);
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}
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VariantValue::VariantValue(const VariantMatcher &Matcher) : Type(VT_Nothing) {
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setMatcher(Matcher);
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}
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VariantValue::~VariantValue() { reset(); }
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VariantValue &VariantValue::operator=(const VariantValue &Other) {
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if (this == &Other) return *this;
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reset();
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switch (Other.Type) {
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case VT_Unsigned:
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setUnsigned(Other.getUnsigned());
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break;
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case VT_String:
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setString(Other.getString());
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break;
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case VT_Matcher:
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setMatcher(Other.getMatcher());
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break;
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case VT_Nothing:
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Type = VT_Nothing;
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break;
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}
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return *this;
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}
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void VariantValue::reset() {
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switch (Type) {
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case VT_String:
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delete Value.String;
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break;
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case VT_Matcher:
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delete Value.Matcher;
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break;
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// Cases that do nothing.
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case VT_Unsigned:
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case VT_Nothing:
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break;
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}
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Type = VT_Nothing;
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}
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bool VariantValue::isUnsigned() const {
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return Type == VT_Unsigned;
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}
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unsigned VariantValue::getUnsigned() const {
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assert(isUnsigned());
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return Value.Unsigned;
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}
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void VariantValue::setUnsigned(unsigned NewValue) {
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reset();
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Type = VT_Unsigned;
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Value.Unsigned = NewValue;
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}
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bool VariantValue::isString() const {
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return Type == VT_String;
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}
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const std::string &VariantValue::getString() const {
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assert(isString());
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return *Value.String;
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}
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void VariantValue::setString(const std::string &NewValue) {
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reset();
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Type = VT_String;
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Value.String = new std::string(NewValue);
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}
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bool VariantValue::isMatcher() const {
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return Type == VT_Matcher;
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}
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const VariantMatcher &VariantValue::getMatcher() const {
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assert(isMatcher());
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return *Value.Matcher;
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}
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void VariantValue::setMatcher(const VariantMatcher &NewValue) {
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reset();
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Type = VT_Matcher;
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Value.Matcher = new VariantMatcher(NewValue);
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}
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std::string VariantValue::getTypeAsString() const {
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switch (Type) {
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case VT_String: return "String";
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case VT_Matcher: return getMatcher().getTypeAsString();
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case VT_Unsigned: return "Unsigned";
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case VT_Nothing: return "Nothing";
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}
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llvm_unreachable("Invalid Type");
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}
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} // end namespace dynamic
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} // end namespace ast_matchers
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} // end namespace clang
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