The Gaudi Framework  v29r0 (ff2e7097)
NTuple::Tuple Class Reference

Abstract base class which allows the user to interact with the actual N tuple implementation. More...

#include <GaudiKernel/NTuple.h>

Inheritance diagram for NTuple::Tuple:
Collaboration diagram for NTuple::Tuple:

Public Member Functions

 ~Tuple () override=default
 Standard destructor. More...
 
template<class TYPE >
StatusCode item (const std::string &name, Item< TYPE > &result)
 Locate a scalar Item of data to the N tuple type safe. More...
 
template<class TYPE >
StatusCode item (const std::string &name, const Item< TYPE > &result) const
 Locate a scalar Item of data to the N tuple type safe (CONST) More...
 
template<class TYPE >
StatusCode item (const std::string &name, Array< TYPE > &result)
 Locate a Array of data to the N tuple type safe. More...
 
template<class TYPE >
StatusCode item (const std::string &name, const Array< TYPE > &result) const
 Locate a Array of data to the N tuple type safe (CONST) More...
 
template<class TYPE >
StatusCode item (const std::string &name, Matrix< TYPE > &result)
 Locate a Matrix of data to the N tuple type safe. More...
 
template<class TYPE >
StatusCode item (const std::string &name, const Matrix< TYPE > &result) const
 Locate a Matrix of data to the N tuple type safe (CONST) More...
 
template<class TYPE >
StatusCode addItem (const std::string &name, Item< TYPE > &itm)
 Add a scalar data item a N tuple. More...
 
template<class TYPE >
StatusCode addItem (const std::string &name, Item< TYPE * > &itm)
 Add an simple object item to an N tuple. More...
 
StatusCode addItem (const std::string &name, Item< IOpaqueAddress * > &itm)
 Add an address object item to an N tuple: specialized call. More...
 
template<class TYPE , class RANGE >
StatusCode addItem (const std::string &name, Item< TYPE > &itm, const RANGE low, const RANGE high)
 Add a scalar data item a N tuple with a range. More...
 
template<class TYPE >
StatusCode addItem (const std::string &name, long dim, Array< TYPE > &array)
 Add an fixed-size Array of data to a column wise N tuple. More...
 
template<class TYPE , class RANGE >
StatusCode addItem (const std::string &name, long dim, Array< TYPE > &array, const RANGE low, const RANGE high)
 Add an fixed-size Array of data to a column wise N tuple with a range. More...
 
template<class TYPE , class INDEX , class RANGE >
StatusCode addItem (const std::string &name, Item< INDEX > &index, Array< TYPE > &array, const RANGE low, const RANGE high)
 Add an indexed Array of data to a column wise N tuple with a range. More...
 
template<class TYPE , class INDEX , class RANGE >
StatusCode addIndexedItem (const std::string &name, Item< INDEX > &index, Array< TYPE > &array, const RANGE low, const RANGE high)
 Add an indexed Array of data to a column wise N tuple with a range. More...
 
template<class TYPE , class INDEX >
StatusCode addItem (const std::string &name, Item< INDEX > &index, Array< TYPE > &array)
 Add an indexed Array of data to a column wise N tuple. More...
 
template<class TYPE , class INDEX >
StatusCode addIndexedItem (const std::string &name, Item< INDEX > &index, Array< TYPE > &array)
 Add an indexed Array of data to a column wise N tuple. More...
 
template<class TYPE >
StatusCode addItem (const std::string &name, long cols, long rows, Matrix< TYPE > &matrix)
 Add an fixed size Matrix of data to a column wise N tuple. More...
 
template<class TYPE , class RANGE >
StatusCode addItem (const std::string &name, long cols, long rows, Matrix< TYPE > &result, const RANGE low, const RANGE high)
 Add an fixed size Matrix of data to a column wise N tuple. More...
 
template<class TYPE , class INDEX >
StatusCode addItem (const std::string &name, Item< INDEX > &index, Matrix< TYPE > &matrix, long rows)
 Add an variable size Matrix of data to a column wise N tuple. More...
 
template<class TYPE , class INDEX >
StatusCode addIndexedItem (const std::string &name, Item< INDEX > &col_index, long rows, Matrix< TYPE > &matrix)
 Add an variable size Matrix of data to a column wise N tuple. More...
 
template<class TYPE , class INDEX , class RANGE >
StatusCode addItem (const std::string &name, Item< INDEX > &index, Matrix< TYPE > &matrix, long rows, const RANGE low, const RANGE high)
 Add an variable size Matrix of data to a column wise N tuple. More...
 
template<class TYPE , class INDEX , class RANGE >
StatusCode addIndexedItem (const std::string &name, Item< INDEX > &index, long rows, Matrix< TYPE > &matrix, const RANGE low, const RANGE high)
 Add an variable size Matrix of data to a column wise N tuple. More...
 
- Public Member Functions inherited from DataObject
 DataObject ()
 Standard Constructor. More...
 
 DataObject (const DataObject &rhs)
 Copy Constructor. More...
 
DataObjectoperator= (const DataObject &rhs)
 Assignment Operator. More...
 
 DataObject (DataObject &&rhs)
 Move Constructor. More...
 
DataObjectoperator= (DataObject &&rhs)
 Move Assignment Operator. More...
 
virtual ~DataObject ()
 Standard Destructor. More...
 
virtual unsigned long addRef ()
 Add reference to object. More...
 
virtual unsigned long release ()
 release reference to object More...
 
virtual const CLIDclID () const
 Retrieve reference to class definition structure. More...
 
const std::stringname () const
 Retreive DataObject name. It is the name when registered in the store. More...
 
virtual StatusCode update ()
 Provide empty placeholder for internal object reconfiguration callback. More...
 
void setRegistry (IRegistry *pRegistry)
 Set pointer to Registry. More...
 
IRegistryregistry () const
 Get pointer to Registry. More...
 
LinkManagerlinkMgr () const
 Retrieve Link manager. More...
 
unsigned char version () const
 Retrieve version number of this object representation. More...
 
void setVersion (unsigned char vsn)
 Set version number of this object representation. More...
 
unsigned long refCount () const
 Return the refcount. More...
 
virtual std::ostreamfillStream (std::ostream &s) const
 Fill the output stream (ASCII) More...
 
- Public Member Functions inherited from INTuple
virtual ItemContaineritems ()=0
 Access item container. More...
 
virtual const ItemContaineritems () const =0
 Access item container (CONST) More...
 
virtual char * setBuffer (char *buff)=0
 Attach data buffer. More...
 
virtual const char * buffer () const =0
 Access data buffer (CONST) More...
 
virtual char * buffer ()=0
 Access data buffer. More...
 
virtual const std::stringtitle () const =0
 Object title. More...
 
virtual void reset ()=0
 Reset all entries to their default values. More...
 
virtual const INTupleItemfind (const std::string &name) const =0
 Find an item row of the Ntuple (CONST) More...
 
virtual INTupleItemfind (const std::string &name)=0
 Find an item row of the Ntuple. More...
 
virtual StatusCode add (INTupleItem *item)=0
 Add an item row to the N tuple. More...
 
virtual StatusCode remove (INTupleItem *item)=0
 Remove an item row (identified by pointer) from the N tuple. More...
 
virtual StatusCode remove (const std::string &name)=0
 Remove an item row (identified by name) from the N tuple. More...
 
virtual StatusCode attachSelector (ISelectStatement *sel)=0
 Attach selector. More...
 
virtual ISelectStatementselector ()=0
 Access selector. More...
 
virtual StatusCode write ()=0
 Write record of the NTuple (Shortcut of writeRecord) More...
 
virtual StatusCode writeRecord ()=0
 Write record of the NTuple. More...
 
virtual StatusCode read ()=0
 Read record of the NTuple (Shortcut of readRecord) More...
 
virtual StatusCode readRecord ()=0
 Read record of the NTuple. More...
 
virtual StatusCode save ()=0
 Save the NTuple. More...
 
virtual ~INTuple ()=default
 

Protected Member Functions

template<class TYPE >
StatusCode i_item (const std::string &name, _Item< TYPE > *&result) const
 Locate a _Column of data to the N tuple type safe. More...
 
template<class TYPE >
StatusCode i_item (const std::string &name, _Item< TYPE * > *&result) const
 Locate a _Column of data to the N tuple type unsafe for objects. More...
 
StatusCode i_item (const std::string &name, _Item< IOpaqueAddress * > *&result) const
 Locate a _Column of data to the N tuple type safe. More...
 
template<class TYPE >
StatusCode i_item (const std::string &name, _Array< TYPE > *&result) const
 Locate a _Array of data to the N tuple type safe. More...
 
template<class TYPE >
StatusCode i_item (const std::string &name, _Matrix< TYPE > *&result) const
 Locate a _Matrix of data to the N tuple type safe. More...
 
template<class TYPE >
StatusCode i_addItem (const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
 Add a _Item of data to the N tuple. More...
 
template<class TYPE >
StatusCode i_addItem (const std::string &name, long dim, const std::string &index, TYPE low, TYPE high, _Array< TYPE > *&result)
 Add a _Item of data to the N tuple. More...
 
template<class TYPE >
StatusCode i_addItem (const std::string &name, long dim1, long dim2, const std::string &index, TYPE low, TYPE high, _Matrix< TYPE > *&result)
 Add a _Item of data to the N tuple. More...
 
template<class TYPE >
StatusCode i_addObject (const std::string &name, _Item< TYPE * > *&result, const std::type_info &)
 
- Protected Member Functions inherited from INTuple
virtual INTupleItemi_find (const std::string &name) const =0
 Internally used by abstract classes. More...
 

Additional Inherited Members

- Public Types inherited from INTuple
typedef std::vector< INTupleItem * > ItemContainer
 
- Static Public Member Functions inherited from DataObject
static const CLIDclassID ()
 Retrieve reference to class definition structure (static access) More...
 

Detailed Description

Abstract base class which allows the user to interact with the actual N tuple implementation.

The class is abstract, because the template methods must be instantiated by the compiler at compile time. Otherwise the references would be unresolved.

Definition at line 412 of file NTuple.h.

Constructor & Destructor Documentation

NTuple::Tuple::~Tuple ( )
overridedefault

Standard destructor.

Member Function Documentation

template<class TYPE , class INDEX , class RANGE >
StatusCode NTuple::Tuple::addIndexedItem ( const std::string name,
Item< INDEX > &  index,
Array< TYPE > &  array,
const RANGE  low,
const RANGE  high 
)
inline

Add an indexed Array of data to a column wise N tuple with a range.

You should use this entry point to add a VARIABLE SIZE ARRAY to a column wise N-tuple. The dimension of the array is unspecified and depends on the data range, which you allowed for the index column.

Hence you have to be careful on the allowed data range of the index column, because the index column determines the total allocated memory.

Note: Checks on the data range are not implemented!

Parameters
nameName of the column in the column wise N-tuple
indexReference to the scalar index column used to determine the size of the array.
arrayReference to the Array<TYPE> datatype, which should be connected to the N-tuple.
lowLower edge of client data values allowed to fill into the N-tuple array.
highUpper edge of client data values allowed to fill into the N-tuple array.
Returns
StatusCode indicating success or failure.

Definition at line 736 of file NTuple.h.

738  {
739  return i_addItem( name, index->range().distance(), index->name(), TYPE( low ), TYPE( high ), array.m_ptr );
740  }
struct GAUDI_API array
Parametrisation class for redirection array - like implementation.
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE , class INDEX >
StatusCode NTuple::Tuple::addIndexedItem ( const std::string name,
Item< INDEX > &  index,
Array< TYPE > &  array 
)
inline

Add an indexed Array of data to a column wise N tuple.

You should use this entry point to add a VARIABLE SIZE ARRAY to a column wise N-tuple. The dimension of the array is unspecified and depends on the data range, which you allowed for the index column.

Hence, you have to be careful on the allowed data range of the index column, because the index column determines the total allocated memory.

Parameters
nameName of the column in the column wise N-tuple
indexReference to the scalar index column used to determine the size of the array.
arrayReference to the Array<TYPE> datatype, which should be connected to the N-tuple.
Returns
StatusCode indicating success or failure.

Definition at line 793 of file NTuple.h.

794  {
795  return i_addItem( name, index->range().distance(), index->name(), Range<TYPE>::min(), Range<TYPE>::max(),
796  array.m_ptr );
797  }
static TYP min()
Minimal number of data.
Definition: NTuple.h:85
static TYP max()
Maximal number of data.
Definition: NTuple.h:87
struct GAUDI_API array
Parametrisation class for redirection array - like implementation.
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE , class INDEX >
StatusCode NTuple::Tuple::addIndexedItem ( const std::string name,
Item< INDEX > &  col_index,
long  rows,
Matrix< TYPE > &  matrix 
)
inline

Add an variable size Matrix of data to a column wise N tuple.

You should use this entry point to add a VARIABLE SIZE MATRIX to a column wise N-tuple. The number of columns of the matrix is given by the allowed data range of the index column. The number of rows however, which are allowed in the matrix must be specified explicitly and cannot be variable.

Attention: Do not confuse with entry point to add a FIXED SIZE MATRIX.

Parameters
nameName of the column in the column wise N-tuple
indexReference to the scalar index column used to determine the number of data columns in the matrix
rowsNumber of data rows in the Matrix.
matrixReference to the Matrix<TYPE> datatype, which should be connected to the N-tuple.
Returns
StatusCode indicating success or failure.

Definition at line 904 of file NTuple.h.

905  {
906  return i_addItem( name, col_index->range().distance(), rows, col_index->name(), Range<TYPE>::min(),
907  Range<TYPE>::max(), matrix.m_ptr );
908  }
static TYP min()
Minimal number of data.
Definition: NTuple.h:85
static TYP max()
Maximal number of data.
Definition: NTuple.h:87
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE , class INDEX , class RANGE >
StatusCode NTuple::Tuple::addIndexedItem ( const std::string name,
Item< INDEX > &  index,
long  rows,
Matrix< TYPE > &  matrix,
const RANGE  low,
const RANGE  high 
)
inline

Add an variable size Matrix of data to a column wise N tuple.

You should use this entry point to add a VARIABLE SIZE MATRIX to a column wise N-tuple. The number of columns of the matrix is given by the allowed data range of the index column. The number of rows however, which are allowed in the matrix must be specified explicitly and cannot be variable. Also the range of allowed data values to be filled into the data area of the matrix can be specified.

Note: Checks on the data range are not implemented! Attention: Do not confuse with entry point to add a FIXED SIZE MATRIX.

Parameters
nameName of the column in the column wise N-tuple
indexReference to the scalar index column used to determine the number of data columns in the matrix
rowsNumber of data rows in the Matrix.
matrixReference to the Matrix<TYPE> datatype, which should be connected to the N-tuple.
lowLower edge of client data values allowed to fill into the N-tuple matrix.
highUpper edge of client data values allowed to fill into the N-tuple matrix.
Returns
StatusCode indicating success or failure.

Definition at line 977 of file NTuple.h.

979  {
980  return i_addItem( name, index->range().distance(), rows, index->name(), TYPE( low ), TYPE( high ), matrix.m_ptr );
981  }
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE >
StatusCode NTuple::Tuple::addItem ( const std::string name,
Item< TYPE > &  itm 
)
inline

Add a scalar data item a N tuple.

Use this entry point to connect any allowed scalar data type to an N-tuple. The value filled, may have any range. Do NOT use this entry point to specify an index column in a column wise N-tuple.

Parameters
nameName of the column in the column wise N-tuple
itmReference to the Item<TYPE> datatype, which should be connected to the N-tuple.
Returns
StatusCode indicating success or failure.

Definition at line 572 of file NTuple.h.

573  {
574  typedef Range<TYPE> _R;
575  return i_addItem( name, 1, "", _R::min(), _R::max(), itm.m_ptr );
576  }
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE >
StatusCode NTuple::Tuple::addItem ( const std::string name,
Item< TYPE * > &  itm 
)
inline

Add an simple object item to an N tuple.

Parameters
nameName of the column in the column wise N-tuple
itmReference to the Item<TYPE> datatype, which should be connected to the N-tuple.
Returns
StatusCode indicating success or failure.

Definition at line 587 of file NTuple.h.

588  {
589  return i_addObject( name, itm.m_ptr, typeid( TYPE ) );
590  }
StatusCode i_addObject(const std::string &name, _Item< TYPE * > *&result, const std::type_info &)
Definition: NTuple.h:508
StatusCode NTuple::Tuple::addItem ( const std::string name,
Item< IOpaqueAddress * > &  itm 
)
inline

Add an address object item to an N tuple: specialized call.

Parameters
nameName of the column in the column wise N-tuple
itmReference to the Item<TYPE> datatype, which should be connected to the N-tuple.
Returns
StatusCode indicating success or failure.

Definition at line 600 of file NTuple.h.

601  {
602  typedef Range<IOpaqueAddress*> _R;
603  return i_addItem( name, 1, "", _R::min(), _R::max(), itm.m_ptr );
604  }
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE , class RANGE >
StatusCode NTuple::Tuple::addItem ( const std::string name,
Item< TYPE > &  itm,
const RANGE  low,
const RANGE  high 
)
inline

Add a scalar data item a N tuple with a range.

Typically this entry point is used to specuify index column with a fixed data range for a column wise N-tuple.

Note: Checks on the data range are not implemented!

Parameters
nameName of the column in the column wise N-tuple
itmReference to the Item<TYPE> datatype, which should be connected to the N-tuple.
lowLower edge of client data values allowed to fill into the N-tuple array.
highUpper edge of client data values allowed to fill into the N-tuple array.
Returns
StatusCode indicating success or failure.

Definition at line 624 of file NTuple.h.

625  {
626  return i_addItem( name, 1, "", TYPE( low ), TYPE( high ), itm.m_ptr );
627  }
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE >
StatusCode NTuple::Tuple::addItem ( const std::string name,
long  dim,
Array< TYPE > &  array 
)
inline

Add an fixed-size Array of data to a column wise N tuple.

You should use this entry point to add a FIXED SIZE ARRAY to a column wise N-tuple. The dimension of the array must be specified.

Parameters
nameName of the column in the column wise N-tuple
dimLength of the array to be added to the N-tuple
arrayReference to the Array<TYPE> datatype, which should be connected to the N-tuple.
Returns
StatusCode indicating success or failure.

Definition at line 643 of file NTuple.h.

644  {
645  return i_addItem( name, dim, "", Range<TYPE>::min(), Range<TYPE>::max(), array.m_ptr );
646  }
static TYP min()
Minimal number of data.
Definition: NTuple.h:85
static TYP max()
Maximal number of data.
Definition: NTuple.h:87
struct GAUDI_API array
Parametrisation class for redirection array - like implementation.
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE , class RANGE >
StatusCode NTuple::Tuple::addItem ( const std::string name,
long  dim,
Array< TYPE > &  array,
const RANGE  low,
const RANGE  high 
)
inline

Add an fixed-size Array of data to a column wise N tuple with a range.

You should use this entry point to add a FIXED SIZE ARRAY to a column wise N-tuple. The dimension of the array must be specified.

Note: Checks on the data range are not implemented!

Parameters
nameName of the column in the column wise N-tuple
dimLength of the array to be added to the N-tuple
arrayReference to the Array<TYPE> datatype, which should be connected to the N-tuple.
lowLower edge of client data values allowed to fill into the N-tuple array.
highUpper edge of client data values allowed to fill into the N-tuple array.
Returns
StatusCode indicating success or failure.

Definition at line 668 of file NTuple.h.

669  {
670  return i_addItem( name, dim, "", TYPE( low ), TYPE( high ), array.m_ptr );
671  }
struct GAUDI_API array
Parametrisation class for redirection array - like implementation.
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE , class INDEX , class RANGE >
StatusCode NTuple::Tuple::addItem ( const std::string name,
Item< INDEX > &  index,
Array< TYPE > &  array,
const RANGE  low,
const RANGE  high 
)
inline

Add an indexed Array of data to a column wise N tuple with a range.

You should use this entry point to add a VARIABLE SIZE ARRAY to a column wise N-tuple. The dimension of the array is unspecified and depends on the data range, which you allowed for the index column.

Hence you have to be careful on the allowed data range of the index column, because the index column determines the total allocated memory.

Note: Checks on the data range are not implemented!

Note: Due to confusion with the entry point to connecting a fixed size array the use of this function is DEPRECATED *** please use addIndexedItem(...) instead.

Parameters
nameName of the column in the column wise N-tuple
indexReference to the scalar index column used to determine the size of the array.
arrayReference to the Array<TYPE> datatype, which should be connected to the N-tuple.
lowLower edge of client data values allowed to fill into the N-tuple array.
highUpper edge of client data values allowed to fill into the N-tuple array.
Returns
StatusCode indicating success or failure.

Definition at line 704 of file NTuple.h.

706  {
707  return i_addItem( name, index->range().distance(), index->name(), TYPE( low ), TYPE( high ), array.m_ptr );
708  }
struct GAUDI_API array
Parametrisation class for redirection array - like implementation.
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE , class INDEX >
StatusCode NTuple::Tuple::addItem ( const std::string name,
Item< INDEX > &  index,
Array< TYPE > &  array 
)
inline

Add an indexed Array of data to a column wise N tuple.

You should use this entry point to add a VARIABLE SIZE ARRAY to a column wise N-tuple. The dimension of the array is unspecified and depends on the data range, which you allowed for the index column.

Hence, you have to be careful on the allowed data range of the index column, because the index column determines the total allocated memory.

Note: Due to confusion with the entry point to connecting a fixed size array the use of this member function is DEPRECATED *** please use addIndexedItem(...) instead.

Parameters
nameName of the column in the column wise N-tuple
indexReference to the scalar index column used to determine the size of the array.
arrayReference to the Array<TYPE> datatype, which should be connected to the N-tuple.
Returns
StatusCode indicating success or failure.

Definition at line 767 of file NTuple.h.

768  {
769  return i_addItem( name, index->range().distance(), index->name(), Range<TYPE>::min(), Range<TYPE>::max(),
770  array.m_ptr );
771  }
static TYP min()
Minimal number of data.
Definition: NTuple.h:85
static TYP max()
Maximal number of data.
Definition: NTuple.h:87
struct GAUDI_API array
Parametrisation class for redirection array - like implementation.
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE >
StatusCode NTuple::Tuple::addItem ( const std::string name,
long  cols,
long  rows,
Matrix< TYPE > &  matrix 
)
inline

Add an fixed size Matrix of data to a column wise N tuple.

You should use this entry point to add a FIXED SIZE MATRIX to a column wise N-tuple. The dimension of the matrix must be specified.

Attention: Do not confuse with entry point to add a VARIABLE SIZE MATRIX!

Parameters
nameName of the column in the column wise N-tuple
colsNumber of data columns in the Matrix.
rowsNumber of data rows in the Matrix.
matrixReference to the Matrix<TYPE> datatype, which should be connected to the N-tuple.
Returns
StatusCode indicating success or failure.

Definition at line 817 of file NTuple.h.

818  {
819  return i_addItem( name, cols, rows, "", Range<TYPE>::min(), Range<TYPE>::max(), matrix.m_ptr );
820  }
static TYP min()
Minimal number of data.
Definition: NTuple.h:85
static TYP max()
Maximal number of data.
Definition: NTuple.h:87
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE , class RANGE >
StatusCode NTuple::Tuple::addItem ( const std::string name,
long  cols,
long  rows,
Matrix< TYPE > &  result,
const RANGE  low,
const RANGE  high 
)
inline

Add an fixed size Matrix of data to a column wise N tuple.

You should use this entry point to add a FIXED SIZE MATRIX to a column wise N-tuple. The dimension of the matrix must be specified.

Note: Checks on the data range are not implemented! Attention: Do not confuse with entry point to add a VARIABLE SIZE MATRIX!

Parameters
nameName of the column in the column wise N-tuple
colsNumber of data columns in the Matrix.
rowsNumber of data rows in the Matrix.
matrixReference to the Matrix<TYPE> datatype, which should be connected to the N-tuple.
lowLower edge of client data values allowed to fill into the N-tuple matrix.
highUpper edge of client data values allowed to fill into the N-tuple matrix.
Returns
StatusCode indicating success or failure.

Definition at line 845 of file NTuple.h.

847  {
848  return i_addItem( name, cols, rows, "", TYPE( low ), TYPE( high ), result.m_ptr );
849  }
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE , class INDEX >
StatusCode NTuple::Tuple::addItem ( const std::string name,
Item< INDEX > &  index,
Matrix< TYPE > &  matrix,
long  rows 
)
inline

Add an variable size Matrix of data to a column wise N tuple.

You should use this entry point to add a VARIABLE SIZE MATRIX to a column wise N-tuple. The number of columns of the matrix is given by the allowed data range of the index column. The number of rows however, which are allowed in the matrix must be specified explicitly and cannot be variable.

Attention: Do not confuse with entry point to add a FIXED SIZE MATRIX.

Note: Due to confusion with the entry point to connecting a fixed size matrix the use of this member function is DEPRECATED *** please use addIndexedItem(...) instead.

Parameters
nameName of the column in the column wise N-tuple
indexReference to the scalar index column used to determine the number of data columns in the matrix
matrixReference to the Matrix<TYPE> datatype, which should be connected to the N-tuple.
rowsNumber of data rows in the Matrix.
Returns
StatusCode indicating success or failure.

Definition at line 877 of file NTuple.h.

878  {
879  return i_addItem( name, index->range().distance(), rows, index->name(), Range<TYPE>::min(), Range<TYPE>::max(),
880  matrix.m_ptr );
881  }
static TYP min()
Minimal number of data.
Definition: NTuple.h:85
static TYP max()
Maximal number of data.
Definition: NTuple.h:87
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE , class INDEX , class RANGE >
StatusCode NTuple::Tuple::addItem ( const std::string name,
Item< INDEX > &  index,
Matrix< TYPE > &  matrix,
long  rows,
const RANGE  low,
const RANGE  high 
)
inline

Add an variable size Matrix of data to a column wise N tuple.

You should use this entry point to add a VARIABLE SIZE MATRIX to a column wise N-tuple. The number of columns of the matrix is given by the allowed data range of the index column. The number of rows however, which are allowed in the matrix must be specified explicitly and cannot be variable. Also the range of allowed data values to be filled into the data area of the matrix can be specified.

Note: Checks on the data range are not implemented! Attention: Do not confuse with entry point to add a FIXED SIZE MATRIX.

Note: Due to confusion with the entry point to connecting a fixed size matrix the use of this member function is DEPRECATED *** please use addIndexedItem(...) instead.

Parameters
nameName of the column in the column wise N-tuple
indexReference to the scalar index column used to determine the number of data columns in the matrix
matrixReference to the Matrix<TYPE> datatype, which should be connected to the N-tuple.
rowsNumber of data rows in the Matrix.
lowLower edge of client data values allowed to fill into the N-tuple matrix.
highUpper edge of client data values allowed to fill into the N-tuple matrix.
Returns
StatusCode indicating success or failure.

Definition at line 943 of file NTuple.h.

945  {
946  return i_addItem( name, index->range().distance(), rows, index->name(), TYPE( low ), TYPE( high ), matrix.m_ptr );
947  }
StatusCode i_addItem(const std::string &name, long, const std::string &, TYPE low, TYPE high, _Item< TYPE > *&result)
Add a _Item of data to the N tuple.
Definition: NTuple.h:477
template<class TYPE >
StatusCode NTuple::Tuple::i_addItem ( const std::string name,
long  ,
const std::string ,
TYPE  low,
TYPE  high,
_Item< TYPE > *&  result 
)
inlineprotected

Add a _Item of data to the N tuple.

Definition at line 477 of file NTuple.h.

478  {
479  if ( !i_find( name ) ) {
480  TYPE nil;
481  nil = 0;
482  return add( result = _Item<TYPE>::create( this, name, typeid( TYPE ), low, high, nil ) );
483  }
484  return StatusCode::FAILURE;
485  }
virtual StatusCode add(INTupleItem *item)=0
Add an item row to the N tuple.
static _Item * create(INTuple *tup, const std::string &name, const std::type_info &info, TYP min, TYP max, TYP def)
Create instance.
Definition: NTupleItems.cpp:26
virtual INTupleItem * i_find(const std::string &name) const =0
Internally used by abstract classes.
template<class TYPE >
StatusCode NTuple::Tuple::i_addItem ( const std::string name,
long  dim,
const std::string index,
TYPE  low,
TYPE  high,
_Array< TYPE > *&  result 
)
inlineprotected

Add a _Item of data to the N tuple.

Definition at line 488 of file NTuple.h.

490  {
491  if ( !i_find( name ) && clID() == CLID_ColumnWiseTuple ) {
492  return add( result = _Array<TYPE>::create( this, name, typeid( TYPE ), index, dim, low, high, TYPE( 0 ) ) );
493  }
494  return StatusCode::FAILURE;
495  }
virtual StatusCode add(INTupleItem *item)=0
Add an item row to the N tuple.
static _Array * create(INTuple *tup, const std::string &name, const std::type_info &info, const std::string &index, long len, TYP min, TYP max, TYP def)
Create instance.
Definition: NTupleItems.cpp:34
virtual const CLID & clID() const
Retrieve reference to class definition structure.
Definition: DataObject.cpp:62
virtual INTupleItem * i_find(const std::string &name) const =0
Internally used by abstract classes.
template<class TYPE >
StatusCode NTuple::Tuple::i_addItem ( const std::string name,
long  dim1,
long  dim2,
const std::string index,
TYPE  low,
TYPE  high,
_Matrix< TYPE > *&  result 
)
inlineprotected

Add a _Item of data to the N tuple.

Definition at line 498 of file NTuple.h.

500  {
501  if ( !i_find( name ) && clID() == CLID_ColumnWiseTuple ) {
502  return add( result =
503  _Matrix<TYPE>::create( this, name, typeid( TYPE ), index, dim1, dim2, low, high, TYPE( 0 ) ) );
504  }
505  return StatusCode::FAILURE;
506  }
virtual StatusCode add(INTupleItem *item)=0
Add an item row to the N tuple.
virtual const CLID & clID() const
Retrieve reference to class definition structure.
Definition: DataObject.cpp:62
virtual INTupleItem * i_find(const std::string &name) const =0
Internally used by abstract classes.
static _Matrix * create(INTuple *tup, const std::string &name, const std::type_info &info, const std::string &index, long ncol, long nrow, TYP min, TYP max, TYP def)
Create instance.
Definition: NTupleItems.cpp:42
template<class TYPE >
StatusCode NTuple::Tuple::i_addObject ( const std::string name,
_Item< TYPE * > *&  result,
const std::type_info  
)
inlineprotected

Definition at line 508 of file NTuple.h.

509  {
510  if ( !i_find( name ) && clID() == CLID_ColumnWiseTuple ) {
511  return add( result = (_Item<TYPE*>*)_Item<void*>::create( this, name, typeid( TYPE ), 0, 0, 0 ) );
512  }
513  return StatusCode::FAILURE;
514  }
virtual StatusCode add(INTupleItem *item)=0
Add an item row to the N tuple.
virtual const CLID & clID() const
Retrieve reference to class definition structure.
Definition: DataObject.cpp:62
static _Item * create(INTuple *tup, const std::string &name, const std::type_info &info, TYP min, TYP max, TYP def)
Create instance.
Definition: NTupleItems.cpp:26
virtual INTupleItem * i_find(const std::string &name) const =0
Internally used by abstract classes.
template<class TYPE >
StatusCode NTuple::Tuple::i_item ( const std::string name,
_Item< TYPE > *&  result 
) const
inlineprotected

Locate a _Column of data to the N tuple type safe.

Definition at line 418 of file NTuple.h.

419  {
420  try {
421  result = dynamic_cast<_Item<TYPE>*>( i_find( name ) );
422  } catch ( ... ) {
423  result = nullptr;
424  }
425  return result ? StatusCode::SUCCESS : StatusCode::FAILURE;
426  }
virtual INTupleItem * i_find(const std::string &name) const =0
Internally used by abstract classes.
template<class TYPE >
StatusCode NTuple::Tuple::i_item ( const std::string name,
_Item< TYPE * > *&  result 
) const
inlineprotected

Locate a _Column of data to the N tuple type unsafe for objects.

Definition at line 429 of file NTuple.h.

430  {
431  try {
432  _Item<void*>* p = dynamic_cast<_Item<void*>*>( i_find( name ) );
433  result = (_Item<TYPE*>*)p;
434  } catch ( ... ) {
435  result = nullptr;
436  }
437  return result ? StatusCode::SUCCESS : StatusCode::FAILURE;
438  }
virtual INTupleItem * i_find(const std::string &name) const =0
Internally used by abstract classes.
StatusCode NTuple::Tuple::i_item ( const std::string name,
_Item< IOpaqueAddress * > *&  result 
) const
inlineprotected

Locate a _Column of data to the N tuple type safe.

Definition at line 440 of file NTuple.h.

441  {
442  try {
443  result = dynamic_cast<_Item<IOpaqueAddress*>*>( i_find( name ) );
444  } catch ( ... ) {
445  result = nullptr;
446  }
447  return result ? StatusCode::SUCCESS : StatusCode::FAILURE;
448  }
virtual INTupleItem * i_find(const std::string &name) const =0
Internally used by abstract classes.
template<class TYPE >
StatusCode NTuple::Tuple::i_item ( const std::string name,
_Array< TYPE > *&  result 
) const
inlineprotected

Locate a _Array of data to the N tuple type safe.

Definition at line 451 of file NTuple.h.

452  {
453  try {
454  if ( clID() == CLID_ColumnWiseTuple ) {
455  result = dynamic_cast<_Array<TYPE>*>( i_find( name ) );
456  }
457  } catch ( ... ) {
458  result = nullptr;
459  }
460  return result ? StatusCode::SUCCESS : StatusCode::FAILURE;
461  }
virtual const CLID & clID() const
Retrieve reference to class definition structure.
Definition: DataObject.cpp:62
virtual INTupleItem * i_find(const std::string &name) const =0
Internally used by abstract classes.
template<class TYPE >
StatusCode NTuple::Tuple::i_item ( const std::string name,
_Matrix< TYPE > *&  result 
) const
inlineprotected

Locate a _Matrix of data to the N tuple type safe.

Definition at line 464 of file NTuple.h.

465  {
466  try {
467  if ( clID() == CLID_ColumnWiseTuple ) {
468  result = dynamic_cast<_Matrix<TYPE>*>( i_find( name ) );
469  }
470  } catch ( ... ) {
471  result = nullptr;
472  }
473  return result ? StatusCode::SUCCESS : StatusCode::FAILURE;
474  }
virtual const CLID & clID() const
Retrieve reference to class definition structure.
Definition: DataObject.cpp:62
virtual INTupleItem * i_find(const std::string &name) const =0
Internally used by abstract classes.
template<class TYPE >
StatusCode NTuple::Tuple::item ( const std::string name,
Item< TYPE > &  result 
)
inline

Locate a scalar Item of data to the N tuple type safe.

Definition at line 522 of file NTuple.h.

523  {
524  return i_item( name, result.m_ptr );
525  }
StatusCode i_item(const std::string &name, _Item< TYPE > *&result) const
Locate a _Column of data to the N tuple type safe.
Definition: NTuple.h:418
template<class TYPE >
StatusCode NTuple::Tuple::item ( const std::string name,
const Item< TYPE > &  result 
) const
inline

Locate a scalar Item of data to the N tuple type safe (CONST)

Definition at line 528 of file NTuple.h.

529  {
530  return i_item( name, result.m_ptr );
531  }
StatusCode i_item(const std::string &name, _Item< TYPE > *&result) const
Locate a _Column of data to the N tuple type safe.
Definition: NTuple.h:418
template<class TYPE >
StatusCode NTuple::Tuple::item ( const std::string name,
Array< TYPE > &  result 
)
inline

Locate a Array of data to the N tuple type safe.

Definition at line 534 of file NTuple.h.

535  {
536  return i_item( name, result.m_ptr );
537  }
StatusCode i_item(const std::string &name, _Item< TYPE > *&result) const
Locate a _Column of data to the N tuple type safe.
Definition: NTuple.h:418
template<class TYPE >
StatusCode NTuple::Tuple::item ( const std::string name,
const Array< TYPE > &  result 
) const
inline

Locate a Array of data to the N tuple type safe (CONST)

Definition at line 540 of file NTuple.h.

541  {
542  return i_item( name, result.m_ptr );
543  }
StatusCode i_item(const std::string &name, _Item< TYPE > *&result) const
Locate a _Column of data to the N tuple type safe.
Definition: NTuple.h:418
template<class TYPE >
StatusCode NTuple::Tuple::item ( const std::string name,
Matrix< TYPE > &  result 
)
inline

Locate a Matrix of data to the N tuple type safe.

Definition at line 546 of file NTuple.h.

547  {
548  return i_item( name, result.m_ptr );
549  }
StatusCode i_item(const std::string &name, _Item< TYPE > *&result) const
Locate a _Column of data to the N tuple type safe.
Definition: NTuple.h:418
template<class TYPE >
StatusCode NTuple::Tuple::item ( const std::string name,
const Matrix< TYPE > &  result 
) const
inline

Locate a Matrix of data to the N tuple type safe (CONST)

Definition at line 553 of file NTuple.h.

554  {
555  return i_item( name, result.m_ptr );
556  }
StatusCode i_item(const std::string &name, _Item< TYPE > *&result) const
Locate a _Column of data to the N tuple type safe.
Definition: NTuple.h:418

The documentation for this class was generated from the following file: