/// var str: string; var n: number; var bool: boolean; var obj: any; var c: jsts.geom.Coordinate = new jsts.geom.Coordinate(n, n); var e: jsts.geom.Envelope = new jsts.geom.Envelope(n, n, n, n); var g: jsts.geom.Geometry = new jsts.geom.Geometry(); var lr: jsts.geom.LinearRing = new jsts.geom.LinearRing([c]); var ls: jsts.geom.LineString = new jsts.geom.LineString([c]); var p: jsts.geom.Point = new jsts.geom.Point(c); var poly: jsts.geom.Polygon = new jsts.geom.Polygon(lr); str = jsts.version; c = new jsts.geom.Coordinate(c); c = c.clone(); n = c.compareTo(c); n = c.distance(c); bool = c.equals(c); bool = c.equals2D(c); c.setCoordinate(c); n = c.x; n = c.y; n = c.z; e = new jsts.geom.Envelope(c); e = new jsts.geom.Envelope(e); e = new jsts.geom.Envelope(c, c); c = e.centre(); e = e.clone(); bool = e.contains(e); bool = e.contains(c); bool = e.contains(n, n); bool = e.covers(c); bool = e.covers(e); bool = e.covers(n, n); n = e.distance(e); bool = e.equals(e); e.expandBy(n); e.expandToInclude(c); e.expandToInclude(e); e.expandToInclude(n, n); n = e.getArea(); n = e.getHeight(); n = e.getMaxX(); n = e.getMaxY(); n = e.getMinX(); n = e.getMinY(); n = e.getWidth(); e = e.intersection(e); bool = e.intersects(e); bool = e.intersects(c); bool = e.intersects(n, n); bool = e.isNull(); n = e.maxx; n = e.maxy; n = e.minx; n = e.miny; e.setToNull(); str = e.toString(); e.translate(n, n); g.apply({}); g = g.buffer(n, n, n); g.checkNotGeometryCollection(g); g = g.clone(); n = g.compare([{}], [{}]); n = g.compareTo(g); n = g.compareToSameClass(g); e = g.computeEnvelopeInternal(); bool = g.contains(g); g = g.convexHull(); bool = g.coveredBy(g); bool = g.covers(g); bool = g.crosses(g); g = g.difference(g); bool = g.disjoint(g); n = g.distance(g); e = g.envelope; bool = g.equal(c, c, n); bool = g.equals(g); bool = g.equalsExact(g, n); bool = g.equalsNorm(g); bool = g.equalsTopo(g); n = g.getArea(); g = g.getBoundary(); n = g.getBoundaryDimension(); p = g.getCentroid(); c = g.getCoordinate(); var coords: jsts.geom.Coordinate[] = g.getCoordinates(); n = g.getDimension(); g = g.getEnvelope(); e = g.getEnvelopeInternal(); obj = g.getFactory(); g = g.getGeometryN(n); str = g.getGeometryType(); p = g.getInteriorPoint(); n = g.getLength(); n = g.getNumGeometries(); n = g.getNumPoints(); obj = g.getPrecisionModel(); g = g.intersection(g); bool = g.intersects(g); bool = g.isEmpty(); bool = g.isEquivalentClass(g); bool = g.isGeometryCollection(); bool = g.isGeometryCollectionBase(); bool = g.isRectangle(); bool = g.isSimple(); bool = g.isValid(); bool = g.isWithinDistance(g, n); g = g.norm(); g.normalize(); bool = g.overlaps(g); bool = g.relate(g, str); obj = g.relate2(g); g = g.symDifference(g); str = g.toString(); bool = g.touches(g); g = g.union(g); bool = g.within(g); c = ls.getCoordinateN(n); p = ls.getEndPoint(); p = ls.getPointN(n); p = ls.getStartPoint(); bool = ls.isClosed(); bool = ls.isRing(); n = p.getX(); n = p.getY(); p = p.reverse(); lr = poly.getExteriorRing(); lr = poly.getInteriorRingN(n); n = poly.getNumInteriorRing(); var gjw: jsts.io.GeoJSONWriter = new jsts.io.GeoJSONWriter(); obj = gjw.write(g); var wr: jsts.io.WKTReader = new jsts.io.WKTReader(); g = wr.read(str); wr.reducePrecision(g);