public class Solid2DZ extends AbstractPrimitive implements Solid
Geometry.DIMENSIONS, Geometry.OPERATIONS, Geometry.SUBTYPES, Geometry.TYPES, Geometry.ValidationStatusgeometryType, geomManager, id, logger, projectionBEST, E, EXTENDED_GEOMSUBTYPE_OFFSET, EXTENDED_GEOMTYPE_OFFSET, N, NE, NW, S, SE, SELECTHANDLER, STRETCHINGHANDLER, SW, W| Constructor and Description |
|---|
Solid2DZ(GeometryType geometryType)
The constructor with the GeometryType like and argument
is used by the
GeometryType#create()
to create the geometry |
| Modifier and Type | Method and Description |
|---|---|
void |
addSurface(Surface surface)
Add a surface to the Solid
|
FShape |
cloneFShape()
Creates and returns a shape equal and independent of this one.
|
boolean |
contains(double arg0,
double arg1) |
boolean |
contains(double arg0,
double arg1,
double arg2,
double arg3) |
boolean |
contains(Point2D arg0) |
boolean |
contains(Rectangle2D arg0) |
Appearance |
getAppearance()
Gets the appearance of a solid
|
Rectangle |
getBounds() |
Rectangle2D |
getBounds2D()
Returns this geometry's boundary rectangle.
|
int |
getDimension()
Returns the largest number n such that each direct position in a
geometric set can be associated with a subset that has the direct
position in its interior and is similar (isomorphic) to Rn, Euclidean
n-space.
|
Envelope |
getEnvelope()
Returns the minimum bounding box for this Geometry.
|
GeneralPathX |
getGeneralPath()
Get GeneralPathIterator, to do registered operations to it.
|
int |
getNumSurfaces()
Get the number of surfaces in a solid
|
PathIterator |
getPathIterator(AffineTransform arg0)
If applies an affine transformation and returns the GeneralPathXIterator
with this geometry's information.
|
PathIterator |
getPathIterator(AffineTransform arg0,
double arg1)
If applies an affine transformation and returns the GeneralPathXIterator
with this geometry's information.
|
Handler[] |
getSelectHandlers()
Returns the handlers used to select the geometries.
|
int |
getShapeType()
Gets the geometry type of this shape.
|
Handler[] |
getStretchingHandlers()
Returns the handlers they utilized to stretch the geometries.
|
Surface |
getSurfaceAt(int position)
Gets a surface in a concrete position
|
double[] |
getZs() |
boolean |
intersects(double arg0,
double arg1,
double arg2,
double arg3) |
boolean |
intersects(Rectangle2D arg0)
Returns true if this geometry intersects the rectangle passed as
parameter.
|
void |
removeSurface(int position)
Remove surface from solid at concrete position
|
void |
reProject(ICoordTrans ct)
Reprojects this geometry by the coordinate transformer passed as
parameter.
|
void |
setAppearance(Appearance app)
Sets the appearance of a Solid
|
void |
transform(AffineTransform at)
It applies an affine transformation to the geometry.
|
area, buffer, centroid, cloneGeometry, closestPoints, compareTo, contains, containsPoint, containsRectangle, convertToWKB, convertToWKB, convertToWKBForcingType, convertToWKT, convexHull, coveredBy, covers, crosses, difference, disjoint, distance, equals, fastIntersects, getGeometryType, getHandlers, getId, getInteriorPoint, getInternalShape, getShape, getShape, getSRS, getType, getValidationStatus, intersection, intersects, intersectsRectangle, invokeOperation, invokeOperation, isCCW, isSimple, isValid, isWithinDistance, makeValid, move, overlaps, perimeter, rotate, scale, snapTo, toJTS, toString, touches, transform, union, withinclone, finalize, getClass, hashCode, notify, notifyAll, wait, wait, waitarea, buffer, centroid, cloneGeometry, closestPoints, contains, convertToEWKB, convertToEWKB, convertToEWKBForcingType, convertToWKB, convertToWKB, convertToWKBForcingType, convertToWKT, convexHull, coveredBy, covers, crosses, difference, disjoint, distance, ensureOrientation, fastIntersects, flip, getGeometryType, getHandlers, getInteriorPoint, getInternalShape, getShape, getShape, getType, getValidationStatus, intersection, intersects, invokeOperation, invokeOperation, isCCW, isSimple, isValid, isWithinDistance, makeValid, move, offset, out, overlaps, perimeter, rotate, scale, snapTo, toLines, toPoints, toPolygons, touches, union, withincompareTopublic Solid2DZ(GeometryType geometryType)
GeometryType#create()
to create the geometrytype - The geometry typepublic FShape cloneFShape()
FShapecloneFShape in interface FShapepublic Handler[] getSelectHandlers()
FShapegetSelectHandlers in interface FShapepublic int getShapeType()
FShapegetShapeType in interface FShapegetShapeType in class AbstractPrimitivepublic Handler[] getStretchingHandlers()
FShapegetStretchingHandlers in interface FShapepublic void reProject(ICoordTrans ct)
Geometrypublic void transform(AffineTransform at)
Geometrytransform in interface FShapetransform in interface Geometryat - The transformation to apply.AffineTransformpublic boolean contains(Rectangle2D arg0)
public boolean contains(double arg0,
double arg1)
public boolean contains(double arg0,
double arg1,
double arg2,
double arg3)
public Rectangle2D getBounds2D()
GeometrygetBounds2D in interface ShapegetBounds2D in interface Geometrypublic PathIterator getPathIterator(AffineTransform arg0)
GeometrygetPathIterator in interface ShapegetPathIterator in interface Geometryarg0 - The transformation to apply.public PathIterator getPathIterator(AffineTransform arg0, double arg1)
GeometrygetPathIterator in interface ShapegetPathIterator in interface Geometryarg0 - The affine transformation.public boolean intersects(Rectangle2D arg0)
Geometryintersects in interface Shapeintersects in interface Geometryarg0 - Rectangle.this intersects r.public boolean intersects(double arg0,
double arg1,
double arg2,
double arg3)
intersects in interface Shapepublic int getDimension()
GeometrygetDimension in interface Geometrypublic Envelope getEnvelope()
GeometryReturns the minimum bounding box for this Geometry. This shall be the coordinate region spanning the minimum and maximum value for each ordinate taken on by DirectPositions in this Geometry. The simplest representation for an envelope consists of two DirectPositions, the first one containing all the minimums for each ordinate, and second one containing all the maximums.
getEnvelope in interface Geometrypublic GeneralPathX getGeneralPath()
GeometrygetGeneralPath in interface Geometrypublic double[] getZs()
public void addSurface(Surface surface)
SolidaddSurface in interface Solidsurface - the surface to addpublic Appearance getAppearance()
SolidgetAppearance in interface Solidpublic int getNumSurfaces()
SolidgetNumSurfaces in interface Solidpublic Surface getSurfaceAt(int position)
SolidgetSurfaceAt in interface Solidposition - the concrete positionpublic void removeSurface(int position)
SolidremoveSurface in interface Solidposition - the concrete positionpublic void setAppearance(Appearance app)
SolidsetAppearance in interface Solidapp - the appearance