} else {
DeclsTy &Vec = *getAsVector();
Vec.erase(std::remove_if(Vec.begin(), Vec.end(),
- std::mem_fun(&Decl::isFromASTFile)),
+ [](Decl *D) { return D->isFromASTFile(); }),
Vec.end());
// Don't have any external decls any more.
Data = DeclsAndHasExternalTy(&Vec, false);
ArrayRef<SourceLocation> SelLocs = llvm::None);
// Iterator access to parameter types.
- typedef std::const_mem_fun_t<QualType, ParmVarDecl> deref_fun;
- typedef llvm::mapped_iterator<param_const_iterator, deref_fun>
- param_type_iterator;
+ struct GetTypeFn {
+ QualType operator()(const ParmVarDecl *PD) const { return PD->getType(); }
+ };
+ typedef llvm::mapped_iterator<param_const_iterator, GetTypeFn>
+ param_type_iterator;
param_type_iterator param_type_begin() const {
- return llvm::map_iterator(param_begin(), deref_fun(&ParmVarDecl::getType));
+ return llvm::map_iterator(param_begin(), GetTypeFn());
}
param_type_iterator param_type_end() const {
- return llvm::map_iterator(param_end(), deref_fun(&ParmVarDecl::getType));
+ return llvm::map_iterator(param_end(), GetTypeFn());
}
/// createImplicitParams - Used to lazily create the self and cmd
// Iterator access to formal parameters and their types.
private:
- typedef std::const_mem_fun_t<QualType, ParmVarDecl> get_type_fun;
+ struct GetTypeFn {
+ QualType operator()(ParmVarDecl *PD) const { return PD->getType(); }
+ };
public:
/// Return call's formal parameters.
/// correspond with the argument value returned by \c getArgSVal(0).
virtual ArrayRef<ParmVarDecl*> parameters() const = 0;
- typedef llvm::mapped_iterator<ArrayRef<ParmVarDecl*>::iterator, get_type_fun>
+ typedef llvm::mapped_iterator<ArrayRef<ParmVarDecl*>::iterator, GetTypeFn>
param_type_iterator;
/// Returns an iterator over the types of the call's formal parameters.
/// definition because it represents a public interface, and probably has
/// more annotations.
param_type_iterator param_type_begin() const {
- return llvm::map_iterator(parameters().begin(),
- get_type_fun(&ParmVarDecl::getType));
+ return llvm::map_iterator(parameters().begin(), GetTypeFn());
}
/// \sa param_type_begin()
param_type_iterator param_type_end() const {
- return llvm::map_iterator(parameters().end(),
- get_type_fun(&ParmVarDecl::getType));
+ return llvm::map_iterator(parameters().end(), GetTypeFn());
}
// For debugging purposes only
ArrayRef<FunctionProtoType::ExtParameterInfo> paramInfos,
RequiredArgs required) {
assert(std::all_of(argTypes.begin(), argTypes.end(),
- std::mem_fun_ref(&CanQualType::isCanonicalAsParam)));
+ [](CanQualType T) { return T.isCanonicalAsParam(); }));
// Lookup or create unique function info.
llvm::FoldingSetNodeID ID;
UnusedFileScopedDecls.erase(
std::remove_if(UnusedFileScopedDecls.begin(nullptr, true),
UnusedFileScopedDecls.end(),
- std::bind1st(std::ptr_fun(ShouldRemoveFromUnused), this)),
+ [this](const DeclaratorDecl *DD) {
+ return ShouldRemoveFromUnused(this, DD);
+ }),
UnusedFileScopedDecls.end());
if (TUKind == TU_Prefix) {