MutableFloatElectricalChargeVector.java
package org.djunits.value.vfloat.vector;
import java.util.List;
import java.util.SortedMap;
import org.djunits.unit.ElectricalChargeUnit;
import org.djunits.value.StorageType;
import org.djunits.value.ValueException;
import org.djunits.value.vfloat.scalar.FloatElectricalCharge;
/**
* Mutable Float ElectricalChargeVector, a vector of values with a ElectricalChargeUnit.
* <p>
* Copyright (c) 2013-2019 Delft University of Technology, PO Box 5, 2600 AA, Delft, the Netherlands. All rights reserved. <br>
* BSD-style license. See <a href="http://opentrafficsim.org/docs/license.html">OpenTrafficSim License</a>.
* </p>
* $LastChangedDate: 2015-07-24 02:58:59 +0200 (Fri, 24 Jul 2015) $, @version $Revision: 1147 $, by $Author: averbraeck $,
* initial version Oct 9, 2015 <br>
* @author <a href="http://www.tbm.tudelft.nl/averbraeck">Alexander Verbraeck</a>
* @author <a href="http://www.tudelft.nl/pknoppers">Peter Knoppers</a>
*/
public class MutableFloatElectricalChargeVector extends AbstractMutableFloatVectorRel<ElectricalChargeUnit,
FloatElectricalChargeVector, MutableFloatElectricalChargeVector, FloatElectricalCharge>
{
/** */
private static final long serialVersionUID = 20151109L;
/**
* Construct a new Relative Immutable Float ElectricalChargeVector.
* @param values float[]; the values of the entries in the new Relative Immutable Float ElectricalChargeVector
* @param unit ElectricalChargeUnit; the unit of the new Relative Immutable Float ElectricalChargeVector
* @param storageType StorageType; the data type to use (e.g., DENSE or SPARSE)
* @throws ValueException when values is null
*/
public MutableFloatElectricalChargeVector(final float[] values, final ElectricalChargeUnit unit,
final StorageType storageType) throws ValueException
{
super(values, unit, storageType);
}
/**
* Construct a new Relative Immutable Float ElectricalChargeVector.
* @param values List<Float>; the values of the entries in the new Relative Immutable Float ElectricalChargeVector
* @param unit ElectricalChargeUnit; the unit of the new Relative Immutable Float ElectricalChargeVector
* @param storageType StorageType; the data type to use (e.g., DENSE or SPARSE)
* @throws ValueException when values is null
*/
public MutableFloatElectricalChargeVector(final List<Float> values, final ElectricalChargeUnit unit,
final StorageType storageType) throws ValueException
{
super(values, unit, storageType);
}
/**
* Construct a new Relative Immutable Float ElectricalChargeVector.
* @param values FloatElectricalCharge[]; the values of the entries in the new Relative Immutable Float
* ElectricalChargeVector
* @param storageType StorageType; the data type to use (e.g., DENSE or SPARSE)
* @throws ValueException when values has zero entries
*/
public MutableFloatElectricalChargeVector(final FloatElectricalCharge[] values, final StorageType storageType)
throws ValueException
{
super(values, storageType);
}
/**
* Construct a new Relative Immutable Float ElectricalChargeVector.
* @param values List<FloatElectricalCharge>; the values of the entries in the new Relative Immutable Float
* ElectricalChargeVector
* @param storageType StorageType; the data type to use (e.g., DENSE or SPARSE)
* @throws ValueException when values has zero entries
*/
public MutableFloatElectricalChargeVector(final List<FloatElectricalCharge> values, final StorageType storageType)
throws ValueException
{
super(values, storageType);
}
/**
* Construct a new Relative Immutable Float ElectricalChargeVector.
* @param values SortedMap<Integer, FloatElectricalCharge>; the values of the entries in the new Relative Sparse
* Mutable Float ElectricalChargeVector
* @param length int; the size of the vector
* @param storageType StorageType; the data type to use (e.g., DENSE or SPARSE)
* @throws ValueException when values has zero entries
*/
public MutableFloatElectricalChargeVector(final SortedMap<Integer, FloatElectricalCharge> values, final int length,
final StorageType storageType) throws ValueException
{
super(values, length, storageType);
}
/**
* Construct a new Relative Immutable Float ElectricalChargeVector.
* @param values SortedMap<Integer, Float>; the map of indexes to values of the Relative Sparse Mutable Float
* ElectricalChargeVector
* @param unit ElectricalChargeUnit; the unit of the new Relative Sparse Mutable Float ElectricalChargeVector
* @param length int; the size of the vector
* @param storageType StorageType; the data type to use (e.g., DENSE or SPARSE)
* @throws ValueException when values is null
*/
public MutableFloatElectricalChargeVector(final SortedMap<Integer, Float> values, final ElectricalChargeUnit unit,
final int length, final StorageType storageType) throws ValueException
{
super(values, unit, length, storageType);
}
/**
* @param data FloatVectorData; an internal data object
* @param unit ElectricalChargeUnit; the unit
*/
MutableFloatElectricalChargeVector(final FloatVectorData data, final ElectricalChargeUnit unit)
{
super(data, unit);
}
/** {@inheritDoc} */
@Override
protected final FloatElectricalChargeVector instantiateType(final FloatVectorData dvd, final ElectricalChargeUnit unit)
{
return new FloatElectricalChargeVector(dvd, unit);
}
/** {@inheritDoc} */
@Override
protected final MutableFloatElectricalChargeVector instantiateMutableType(final FloatVectorData dvd,
final ElectricalChargeUnit unit)
{
return new MutableFloatElectricalChargeVector(dvd, unit);
}
/** {@inheritDoc} */
@Override
protected final FloatElectricalCharge instantiateScalar(final float value, final ElectricalChargeUnit unit)
{
return new FloatElectricalCharge(value, unit);
}
/** {@inheritDoc} */
@Override
public final MutableFloatElectricalChargeVector toDense()
{
return this.data.isDense() ? (MutableFloatElectricalChargeVector) this
: instantiateMutableType(this.data.toDense(), getUnit());
}
/** {@inheritDoc} */
@Override
public final MutableFloatElectricalChargeVector toSparse()
{
return this.data.isSparse() ? (MutableFloatElectricalChargeVector) this
: instantiateMutableType(this.data.toSparse(), getUnit());
}
/**
* Return an array of FloatElectricalCharge Scalars from this vector.
* @return FloatElectricalCharge[]; an array of FloatElectricalCharge Scalars from this vector
* @throws RuntimeException wrapping a ValueException on error getting one of the values
*/
public FloatElectricalCharge[] toArray()
{
FloatElectricalCharge[] array = new FloatElectricalCharge[size()];
for (int i = 0; i < size(); i++)
{
try
{
array[i] = get(i);
}
catch (ValueException exception)
{
throw new RuntimeException(exception);
}
}
return array;
}
}