return Matcher<T>(Implementation);
}
+/// \brief Metafunction to determine if type T has a member called getDecl.
+template <typename T> struct has_getDecl {
+ struct Default { int getDecl; };
+ struct Derived : T, Default { };
+
+ template<typename C, C> struct CheckT;
+
+ // If T::getDecl exists, an ambiguity arises and CheckT will
+ // not be instantiable. This makes f(...) the only available
+ // overload.
+ template<typename C>
+ static char (&f(CheckT<int Default::*, &C::getDecl>*))[1];
+ template<typename C> static char (&f(...))[2];
+
+ static bool const value = sizeof(f<Derived>(0)) == 2;
+};
+
/// \brief Matches declarations for QualType and CallExpr.
///
/// Type argument DeclMatcherT is required by PolymorphicMatcherWithParam1 but
/// \brief If getDecl exists as a member of U, returns whether the inner
/// matcher matches Node.getDecl().
template <typename U>
- bool matchesSpecialized(const U &Node, ASTMatchFinder *Finder,
- BoundNodesTreeBuilder *Builder) const {
+ bool matchesSpecialized(
+ const U &Node, ASTMatchFinder *Finder, BoundNodesTreeBuilder *Builder,
+ typename llvm::enable_if<has_getDecl<U>, int>::type = 0) const {
return matchesDecl(Node.getDecl(), Finder, Builder);
}
qualType(hasDeclaration(enumDecl(hasName("X")))))))));
}
+TEST(HasDeclaration, HasGetDeclTraitTest) {
+ EXPECT_TRUE(internal::has_getDecl<TypedefType>::value);
+ EXPECT_TRUE(internal::has_getDecl<RecordType>::value);
+ EXPECT_FALSE(internal::has_getDecl<TemplateSpecializationType>::value);
+}
+
TEST(HasDeclaration, HasDeclarationOfTypeWithDecl) {
EXPECT_TRUE(matches("typedef int X; X a;",
varDecl(hasName("a"),