1 #ifndef DataFormats_Common_RefToBaseVector_h 2 #define DataFormats_Common_RefToBaseVector_h 26 class BaseVectorHolder;
27 class RefVectorHolderBase;
54 value_type at(size_type
idx)
const;
56 bool isValid()
const {
return holder_ !=
nullptr; }
57 bool isInvalid()
const {
return holder_ ==
nullptr; }
59 size_type
size()
const;
63 const_iterator
begin()
const;
64 const_iterator
end()
const;
69 std::unique_ptr<reftobase::RefVectorHolderBase> vectorHolder()
const;
83 #include "DataFormats/Common/interface/RefToBase.h" 113 template <
class REFV>
118 : holder_(iOther.holder_ ? iOther.holder_->
clone() :
nullptr) {}
122 : holder_(new reftobase::IndirectVectorHolder<
T>(p)) {}
143 if (holder_ ==
nullptr)
146 return holder_->
at(idx);
156 return holder_ ? holder_->
empty() :
true;
161 return holder_ ? holder_->
size() : 0;
166 if (holder_ !=
nullptr)
190 template <
typename T>
192 pointers.reserve(this->
size());
193 helpers.reserve(this->
size());
196 member_type
const* address = ref.
isNull() ?
nullptr : &*ref;
197 pointers.push_back(address);
203 template <
typename T>
206 std::vector<void const*>& pointers,
211 template <
typename T>
216 template <
typename T>
218 if (holder_ ==
nullptr) {
219 std::unique_ptr<reftobase::BaseVectorHolder<T> >
p = r.
holder_->makeVectorHolder();
220 holder_ = p.release();
225 template <
typename T>
227 return holder_ ? holder_->
vectorHolder() : std::unique_ptr<reftobase::RefVectorHolderBase>();
236 template <
typename T>
237 template <
typename C>
239 : holder_(new reftobase::VectorHolder<
virtual void push_back(BaseHolder< T > const *)=0
FWCore Framework interface EventSetupRecordImplementation h
Helper function to determine trigger accepts.
holder_type::const_iterator const_iterator
value_type operator[](size_type idx) const
std::unique_ptr< reftobase::RefVectorHolderBase > vectorHolder() const
const_iterator end() const
#define CMS_CLASS_VERSION(_version_)
EDProductGetter const * productGetter(std::atomic< void const * > const &iCache)
value_type at(size_type idx) const
RefToBase< T > value_type
reftobase::BaseVectorHolder< T > holder_type
bool equal(const T &first, const T &second)
EDProductGetter const * productGetter() const
static void throwThis(Code category, char const *message0="", char const *message1="", char const *message2="", char const *message3="", char const *message4="")
Container::value_type value_type
bool operator==(debugging_allocator< X > const &, debugging_allocator< Y > const &) noexcept
reftobase::BaseHolder< value_type > * holder_
void swap(edm::DataFrameContainer &lhs, edm::DataFrameContainer &rhs)
void clear(CLHEP::HepGenMatrix &m)
Helper function: Reset all elements of a matrix to 0.
void fillView(AssociationVector< KeyRefProd, CVal, KeyRef, SizeType, KeyReferenceHelper > const &obj, ProductID const &id, std::vector< void const * > &pointers, FillViewHelperVector &helpers)
T operator[](int i) const
virtual base_ref_type const at(size_type idx) const =0
void fillView(std::vector< void const * > &pointers, FillViewHelperVector &helpers) const
virtual EDProductGetter const * productGetter() const =0
void swap(RefToBaseVector &other)
virtual size_type size() const =0
bool isNull() const
Checks for null.
virtual std::unique_ptr< RefVectorHolderBase > vectorHolder() const =0
RefToBaseVector & operator=(RefToBaseVector const &iRHS)
TEveGeoShape * clone(const TEveElement *element, TEveElement *parent)
const_iterator begin() const
virtual const_iterator end() const =0
virtual const_iterator begin() const =0
void push_back(const RefToBase< T > &)
virtual ProductID id() const =0
virtual bool empty() const =0
holder_type::size_type size_type
void swap(BaseHolder< T > &lhs, BaseHolder< T > &rhs)
std::vector< std::pair< edm::ProductID, unsigned long > > FillViewHelperVector