Uses of Interface
org.apache.commons.math3.geometry.partitioning.Region

Packages that use Region
org.apache.commons.math3.geometry.euclidean.oned This package provides basic 1D geometry components. 
org.apache.commons.math3.geometry.euclidean.threed This package provides basic 3D geometry components. 
org.apache.commons.math3.geometry.euclidean.twod This package provides basic 2D geometry components. 
org.apache.commons.math3.geometry.partitioning This package provides classes to implement Binary Space Partition trees. 
 

Uses of Region in org.apache.commons.math3.geometry.euclidean.oned
 

Classes in org.apache.commons.math3.geometry.euclidean.oned that implement Region
 class IntervalsSet
          This class represents a 1D region: a set of intervals.
 

Methods in org.apache.commons.math3.geometry.euclidean.oned with parameters of type Region
protected  AbstractSubHyperplane<Euclidean1D,Euclidean1D> SubOrientedPoint.buildNew(Hyperplane<Euclidean1D> hyperplane, Region<Euclidean1D> remainingRegion)
          Build a sub-hyperplane from an hyperplane and a region.
 

Constructors in org.apache.commons.math3.geometry.euclidean.oned with parameters of type Region
SubOrientedPoint(Hyperplane<Euclidean1D> hyperplane, Region<Euclidean1D> remainingRegion)
          Simple constructor.
 

Uses of Region in org.apache.commons.math3.geometry.euclidean.threed
 

Classes in org.apache.commons.math3.geometry.euclidean.threed that implement Region
 class PolyhedronsSet
          This class represents a 3D region: a set of polyhedrons.
 

Methods in org.apache.commons.math3.geometry.euclidean.threed with parameters of type Region
protected  AbstractSubHyperplane<Euclidean3D,Euclidean2D> SubPlane.buildNew(Hyperplane<Euclidean3D> hyperplane, Region<Euclidean2D> remainingRegion)
          Build a sub-hyperplane from an hyperplane and a region.
 

Constructors in org.apache.commons.math3.geometry.euclidean.threed with parameters of type Region
SubPlane(Hyperplane<Euclidean3D> hyperplane, Region<Euclidean2D> remainingRegion)
          Simple constructor.
 

Uses of Region in org.apache.commons.math3.geometry.euclidean.twod
 

Classes in org.apache.commons.math3.geometry.euclidean.twod that implement Region
 class PolygonsSet
          This class represents a 2D region: a set of polygons.
 

Methods in org.apache.commons.math3.geometry.euclidean.twod with parameters of type Region
protected  AbstractSubHyperplane<Euclidean2D,Euclidean1D> SubLine.buildNew(Hyperplane<Euclidean2D> hyperplane, Region<Euclidean1D> remainingRegion)
          Build a sub-hyperplane from an hyperplane and a region.
 

Constructors in org.apache.commons.math3.geometry.euclidean.twod with parameters of type Region
SubLine(Hyperplane<Euclidean2D> hyperplane, Region<Euclidean1D> remainingRegion)
          Simple constructor.
 

Uses of Region in org.apache.commons.math3.geometry.partitioning
 

Classes in org.apache.commons.math3.geometry.partitioning that implement Region
 class AbstractRegion<S extends Space,T extends Space>
          Abstract class for all regions, independently of geometry type or dimension.
 

Methods in org.apache.commons.math3.geometry.partitioning that return Region
 Region<S> RegionFactory.buildConvex(Hyperplane<S>... hyperplanes)
          Build a convex region from a collection of bounding hyperplanes.
 Region<S> Region.buildNew(BSPTree<S> newTree)
          Build a region using the instance as a prototype.
 Region<S> Region.copySelf()
          Copy the instance.
 Region<S> RegionFactory.difference(Region<S> region1, Region<S> region2)
          Compute the difference of two regions.
 Region<S> RegionFactory.getComplement(Region<S> region)
          Get the complement of the region (exchanged interior/exterior).
 Region<T> AbstractSubHyperplane.getRemainingRegion()
          Get the remaining region of the hyperplane.
 Region<S> RegionFactory.intersection(Region<S> region1, Region<S> region2)
          Compute the intersection of two regions.
 Region<S> RegionFactory.union(Region<S> region1, Region<S> region2)
          Compute the union of two regions.
 Region<S> Hyperplane.wholeSpace()
          Build a region covering the whole space.
 Region<S> RegionFactory.xor(Region<S> region1, Region<S> region2)
          Compute the symmetric difference (exclusive or) of two regions.
 

Methods in org.apache.commons.math3.geometry.partitioning with parameters of type Region
protected abstract  AbstractSubHyperplane<S,T> AbstractSubHyperplane.buildNew(Hyperplane<S> hyper, Region<T> remaining)
          Build a sub-hyperplane from an hyperplane and a region.
 boolean AbstractRegion.contains(Region<S> region)
          Check if the instance entirely contains another region.
 boolean Region.contains(Region<S> region)
          Check if the instance entirely contains another region.
 Region<S> RegionFactory.difference(Region<S> region1, Region<S> region2)
          Compute the difference of two regions.
 Region<S> RegionFactory.difference(Region<S> region1, Region<S> region2)
          Compute the difference of two regions.
 Region<S> RegionFactory.getComplement(Region<S> region)
          Get the complement of the region (exchanged interior/exterior).
 Region<S> RegionFactory.intersection(Region<S> region1, Region<S> region2)
          Compute the intersection of two regions.
 Region<S> RegionFactory.intersection(Region<S> region1, Region<S> region2)
          Compute the intersection of two regions.
 Region<S> RegionFactory.union(Region<S> region1, Region<S> region2)
          Compute the union of two regions.
 Region<S> RegionFactory.union(Region<S> region1, Region<S> region2)
          Compute the union of two regions.
 Region<S> RegionFactory.xor(Region<S> region1, Region<S> region2)
          Compute the symmetric difference (exclusive or) of two regions.
 Region<S> RegionFactory.xor(Region<S> region1, Region<S> region2)
          Compute the symmetric difference (exclusive or) of two regions.
 

Constructors in org.apache.commons.math3.geometry.partitioning with parameters of type Region
AbstractSubHyperplane(Hyperplane<S> hyperplane, Region<T> remainingRegion)
          Build a sub-hyperplane from an hyperplane and a region.
 



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