use of org.geotoolkit.geometry.isoonjts.spatialschema.geometry.aggregate.JTSMultiPrimitive in project geotoolkit by Geomatys.
the class JTSUtils method toISO.
/**
* Creates a 19107 primitive geometry from the given JTS geometry.
*/
public static Geometry toISO(final org.locationtech.jts.geom.Geometry jtsGeom, CoordinateReferenceSystem crs) {
if (jtsGeom == null) {
return null;
}
if (crs == null) {
// try to extract the crs from the srid
final int srid = jtsGeom.getSRID();
if (srid != 0) {
final String strCRS = SRIDGenerator.toSRS(srid, SRIDGenerator.Version.V1);
try {
crs = CRS.forCode(strCRS);
} catch (FactoryException ex) {
Logger.getLogger("org.geotoolkit.geometry.isoonjts").log(Level.SEVERE, null, ex);
}
}
}
// TODO use factory finder when primitive factory and geometry factory are ready.
// FactoryFinder.getPrimitiveFactory(hints);
final PrimitiveFactory pf = new JTSPrimitiveFactory(crs);
// FactoryFinder.getGeometryFactory(hints);
final GeometryFactory gf = new JTSGeometryFactory(crs);
if (jtsGeom instanceof org.locationtech.jts.geom.Point) {
org.locationtech.jts.geom.Point candidate = (org.locationtech.jts.geom.Point) jtsGeom;
DirectPosition dp = pointToDirectPosition(candidate, crs);
return pf.createPoint(dp);
} else if (jtsGeom instanceof org.locationtech.jts.geom.LineString) {
org.locationtech.jts.geom.LineString candidate = (org.locationtech.jts.geom.LineString) jtsGeom;
LineString ls = gf.createLineString(new ArrayList<Position>());
PointArray pointList = ls.getControlPoints();
for (int i = 0, n = candidate.getNumPoints(); i < n; i++) {
pointList.add(coordinateToDirectPosition(candidate.getCoordinateN(i), crs));
}
return (JTSLineString) ls;
} else if (jtsGeom instanceof org.locationtech.jts.geom.LinearRing) {
return linearRingToRing((org.locationtech.jts.geom.LinearRing) jtsGeom, crs);
} else if (jtsGeom instanceof org.locationtech.jts.geom.Polygon) {
org.locationtech.jts.geom.Polygon jtsPolygon = (org.locationtech.jts.geom.Polygon) jtsGeom;
Ring externalRing = linearRingToRing((org.locationtech.jts.geom.LinearRing) jtsPolygon.getExteriorRing(), crs);
ArrayList internalRings = new ArrayList();
for (int i = 0, n = jtsPolygon.getNumInteriorRing(); i < n; i++) {
internalRings.add(linearRingToRing((org.locationtech.jts.geom.LinearRing) jtsPolygon.getInteriorRingN(i), crs));
}
SurfaceBoundary boundary = pf.createSurfaceBoundary(externalRing, internalRings);
Polygon polygon = gf.createPolygon(boundary);
return (JTSPolygon) polygon;
/*ArrayList<Polygon> patches = new ArrayList<Polygon>();
patches.add(polygon);
PolyhedralSurface result = gf.createPolyhedralSurface(patches);
return result;*/
} else if (jtsGeom instanceof GeometryCollection) {
org.locationtech.jts.geom.GeometryCollection jtsCollection = (org.locationtech.jts.geom.GeometryCollection) jtsGeom;
boolean multiPoint = jtsGeom instanceof MultiPoint;
boolean multiCurve = jtsGeom instanceof MultiLineString;
boolean multiSurface = jtsGeom instanceof MultiPolygon;
// determine it by analyzing its content.
if (!(multiPoint || multiCurve || multiSurface || jtsGeom.isEmpty())) {
multiPoint = multiCurve = multiSurface = true;
for (int i = 0, n = jtsCollection.getNumGeometries(); i < n && (multiPoint || multiCurve || multiSurface); i++) {
if (!(jtsCollection.getGeometryN(i) instanceof org.locationtech.jts.geom.Point)) {
multiPoint = false;
}
if (!(jtsCollection.getGeometryN(i) instanceof org.locationtech.jts.geom.LineString)) {
multiCurve = false;
}
if (!(jtsCollection.getGeometryN(i) instanceof org.locationtech.jts.geom.Polygon)) {
multiSurface = false;
}
}
}
AbstractJTSAggregate result;
if (multiPoint) {
result = new JTSMultiPoint(crs);
Set elements = result.getElements();
for (int i = 0, n = jtsCollection.getNumGeometries(); i < n; i++) {
// result.getElements().add(jtsToGo1(jtsCollection.getGeometryN(i), crs));
elements.add(toISO(jtsCollection.getGeometryN(i), crs));
}
} else if (multiCurve) {
result = new JTSMultiCurve(crs);
Set elements = result.getElements();
for (int i = 0, n = jtsCollection.getNumGeometries(); i < n; i++) {
// result.getElements().add(jtsToGo1(jtsCollection.getGeometryN(i), crs));
Geometry element = toISO(jtsCollection.getGeometryN(i), crs);
if (element instanceof JTSLineString) {
JTSCurve curve = new JTSCurve(crs);
curve.getSegments().add((JTSLineString) element);
element = curve;
}
elements.add(element);
}
} else if (multiSurface) {
result = new JTSMultiSurface(crs);
Set elements = result.getElements();
for (int i = 0, n = jtsCollection.getNumGeometries(); i < n; i++) {
// result.getElements().add(jtsToGo1(jtsCollection.getGeometryN(i), crs));
elements.add(toISO(jtsCollection.getGeometryN(i), crs));
}
} else {
result = new JTSMultiPrimitive();
Set elements = result.getElements();
for (int i = 0, n = jtsCollection.getNumGeometries(); i < n; i++) {
// result.getElements().add(jtsToGo1(jtsCollection.getGeometryN(i), crs));
elements.add(toISO(jtsCollection.getGeometryN(i), crs));
}
}
return result;
} else {
throw new IllegalArgumentException("Unsupported geometry type: " + jtsGeom.getGeometryType());
}
}
use of org.geotoolkit.geometry.isoonjts.spatialschema.geometry.aggregate.JTSMultiPrimitive in project geotoolkit by Geomatys.
the class JTSGeometryBindingTest method MultiPrimitiveUnmarshalingTest.
/**
* Test Composite curve Marshalling.
*/
@Test
public void MultiPrimitiveUnmarshalingTest() throws Exception {
CoordinateReferenceSystem crs = CRS.forCode("urn:ogc:def:crs:epsg::27572");
assertTrue(crs != null);
DirectPosition p1 = new GeneralDirectPosition(crs);
p1.setOrdinate(0, 402000);
p1.setOrdinate(1, 3334850);
DirectPosition p2 = new GeneralDirectPosition(crs);
p2.setOrdinate(0, 402200);
p2.setOrdinate(1, 3335200);
JTSLineString l1 = new JTSLineString(crs);
l1.getControlPoints().add(p1);
l1.getControlPoints().add(p2);
JTSCurve c2 = new JTSCurve(crs);
c2.getSegments().add(l1);
JTSCurve c1 = new JTSCurve(crs);
JTSLineString l2 = new JTSLineString(crs);
DirectPosition p21 = new GeneralDirectPosition(crs);
p21.setOrdinate(0, 401500);
p21.setOrdinate(1, 3334500);
DirectPosition p22 = new GeneralDirectPosition(crs);
p22.setOrdinate(0, 401700);
p22.setOrdinate(1, 3334850);
DirectPosition p23 = new GeneralDirectPosition(crs);
p23.setOrdinate(0, 402200);
p23.setOrdinate(1, 3335200);
l2.getControlPoints().add(p21);
l2.getControlPoints().add(p22);
l2.getControlPoints().add(p23);
c1.getSegments().add(l2);
JTSLineString l3 = new JTSLineString(crs);
DirectPosition p31 = new GeneralDirectPosition(crs);
p31.setOrdinate(0, 402320);
p31.setOrdinate(1, 3334850);
DirectPosition p32 = new GeneralDirectPosition(crs);
p32.setOrdinate(0, 402200);
p32.setOrdinate(1, 3335200);
l3.getControlPoints().add(p31);
l3.getControlPoints().add(p32);
c1.getSegments().add(l3);
JTSMultiPrimitive expResult = new JTSMultiPrimitive();
expResult.getElements().add(c1);
expResult.getElements().add(c2);
String xml = "<?xml version=\"1.0\" encoding=\"UTF-8\" standalone=\"yes\"?>" + '\n' + "<gml:MultiGeometry xmlns:gml=\"http://www.opengis.net/gml\">" + '\n' + " <gml:geometryMember>" + '\n' + " <gml:Curve srsName=\"urn:ogc:def:crs:epsg::27572\">" + '\n' + " <gml:segments>" + '\n' + " <gml:LineStringSegment interpolation=\"linear\">" + '\n' + " <gml:pos>401500.0 3334500.0</gml:pos>" + '\n' + " <gml:pos>401700.0 3334850.0</gml:pos>" + '\n' + " <gml:pos>402200.0 3335200.0</gml:pos>" + '\n' + " </gml:LineStringSegment>" + '\n' + " <gml:LineStringSegment interpolation=\"linear\">" + '\n' + " <gml:pos>402320.0 3334850.0</gml:pos>" + '\n' + " <gml:pos>402200.0 3335200.0</gml:pos>" + '\n' + " </gml:LineStringSegment>" + '\n' + " </gml:segments>" + '\n' + " </gml:Curve>" + '\n' + " </gml:geometryMember>" + '\n' + " <gml:geometryMember>" + '\n' + " <gml:Curve srsName=\"urn:ogc:def:crs:epsg::27572\">" + '\n' + " <gml:segments>" + '\n' + " <gml:LineStringSegment interpolation=\"linear\">" + '\n' + " <gml:pos>402000.0 3334850.0</gml:pos>" + '\n' + " <gml:pos>402200.0 3335200.0</gml:pos>" + '\n' + " </gml:LineStringSegment>" + '\n' + " </gml:segments>" + '\n' + " </gml:Curve>" + '\n' + " </gml:geometryMember>" + '\n' + "</gml:MultiGeometry>" + '\n';
JTSMultiPrimitive result = (JTSMultiPrimitive) ((JAXBElement) un.unmarshal(new StringReader(xml))).getValue();
assertEquals(expResult.getElements().size(), result.getElements().size());
assertEquals(2, result.getElements().size());
Iterator expIt = expResult.getElements().iterator();
Iterator resIt = result.getElements().iterator();
assertEquals(expIt.next(), resIt.next());
assertEquals(expIt.next(), resIt.next());
expIt = expResult.getElements().iterator();
resIt = result.getElements().iterator();
assertEquals(expIt.next().hashCode(), resIt.next().hashCode());
assertEquals(expIt.next().hashCode(), resIt.next().hashCode());
assertEquals(expResult.getElements(), result.getElements());
assertEquals(expResult, result);
crs = CRS.forCode("urn:ogc:def:crs:epsg::27593");
assertTrue(crs != null);
xml = "<?xml version=\"1.0\" encoding=\"UTF-8\" standalone=\"yes\"?>" + '\n' + "<gml:MultiGeometry xmlns:gml=\"http://www.opengis.net/gml\">" + '\n' + " <gml:geometryMember>" + '\n' + " <gml:PolyhedralSurface srsName=\"urn:ogc:def:crs:epsg::27593\">" + '\n' + " <gml:polygonPatches>" + '\n' + " <gml:PolygonPatch>" + '\n' + " <gml:exterior>" + '\n' + " <gml:LinearRing>" + '\n' + " <gml:posList>656216.1977884835 38574.31079256255 656209.434300029 38569.570186997764</gml:posList>" + '\n' + " </gml:LinearRing>" + '\n' + " </gml:exterior>" + '\n' + " </gml:PolygonPatch>" + '\n' + " </gml:polygonPatches>" + '\n' + " </gml:PolyhedralSurface>" + '\n' + " </gml:geometryMember>" + '\n' + "</gml:MultiGeometry>" + '\n';
result = (JTSMultiPrimitive) ((JAXBElement) un.unmarshal(new StringReader(xml))).getValue();
/*
* FIRST POLYGON
*/
// EXTERIOR
JTSRing exterior1 = new JTSRing(crs);
JTSCurve cu1 = new JTSCurve(crs);
JTSLineString c1l1 = new JTSLineString();
DirectPosition dp1 = new GeneralDirectPosition(crs);
dp1.setOrdinate(0, 656216.1977884835);
dp1.setOrdinate(1, 38574.31079256255);
DirectPosition dp2 = new GeneralDirectPosition(crs);
dp2.setOrdinate(0, 656209.434300029);
dp2.setOrdinate(1, 38569.570186997764);
c1l1.getControlPoints().add(dp1);
c1l1.getControlPoints().add(dp2);
cu1.getSegments().add(c1l1);
exterior1.getElements().add(cu1);
// INTERIOR
Ring[] interiors1 = null;
JTSSurfaceBoundary bound1 = new JTSSurfaceBoundary(crs, exterior1, interiors1);
JTSPolygon poly1 = new JTSPolygon(bound1);
JTSPolyhedralSurface PS = new JTSPolyhedralSurface(crs);
PS.getPatches().add(poly1);
expResult = new JTSMultiPrimitive();
expResult.getElements().add(PS);
JTSPolyhedralSurface expPoly = (JTSPolyhedralSurface) expResult.getElements().iterator().next();
JTSPolyhedralSurface resPoly = (JTSPolyhedralSurface) result.getElements().iterator().next();
assertEquals(expPoly.getPatches().get(0).getBoundary().getExterior(), resPoly.getPatches().get(0).getBoundary().getExterior());
assertEquals(expPoly.getPatches().get(0).getBoundary().getInteriors(), resPoly.getPatches().get(0).getBoundary().getInteriors());
assertEquals(expPoly.getPatches().get(0).getBoundary(), resPoly.getPatches().get(0).getBoundary());
assertEquals(expPoly.getPatches().get(0).getInterpolation(), resPoly.getPatches().get(0).getInterpolation());
assertEquals(expPoly.getPatches().get(0).getSurface(), resPoly.getPatches().get(0).getSurface());
assertEquals(expPoly.getPatches().get(0), resPoly.getPatches().get(0));
assertEquals(expPoly.getPatches(), resPoly.getPatches());
assertEquals(expPoly, resPoly);
assertEquals(expResult.getElements(), result.getElements());
assertEquals(expResult, result);
xml = "<?xml version=\"1.0\" encoding=\"UTF-8\" standalone=\"yes\"?>" + '\n' + "<gml:MultiGeometry xmlns:gml=\"http://www.opengis.net/gml\">" + '\n' + " <gml:geometryMember>" + '\n' + " <gml:Polygon srsName=\"urn:ogc:def:crs:epsg::4326\">" + '\n' + " <gml:exterior>" + '\n' + " <gml:LinearRing>" + '\n' + " <gml:posList>-1.0 0.0 0.0 1.0 1.0 0.0 0.0 -1.0 -1.0 0.0</gml:posList>" + '\n' + " </gml:LinearRing>" + '\n' + " </gml:exterior>" + '\n' + " </gml:Polygon>" + '\n' + " </gml:geometryMember>" + '\n' + "</gml:MultiGeometry>" + '\n';
result = (JTSMultiPrimitive) ((JAXBElement) un.unmarshal(new StringReader(xml))).getValue();
crs = CRS.forCode("urn:ogc:def:crs:epsg::4326");
// EXTERIOR
exterior1 = new JTSRing(crs);
cu1 = new JTSCurve(crs);
c1l1 = new JTSLineString(crs);
dp1 = new GeneralDirectPosition(crs);
dp1.setOrdinate(0, -1.0);
dp1.setOrdinate(1, 0.0);
dp2 = new GeneralDirectPosition(crs);
dp2.setOrdinate(0, 0.0);
dp2.setOrdinate(1, 1.0);
GeneralDirectPosition dp3 = new GeneralDirectPosition(crs);
dp3.setOrdinate(0, 1.0);
dp3.setOrdinate(1, 0.0);
GeneralDirectPosition dp4 = new GeneralDirectPosition(crs);
dp4.setOrdinate(0, 0.0);
dp4.setOrdinate(1, -1.0);
GeneralDirectPosition dp5 = new GeneralDirectPosition(crs);
dp5.setOrdinate(0, -1.0);
dp5.setOrdinate(1, 0.0);
c1l1.getControlPoints().add(dp1);
c1l1.getControlPoints().add(dp2);
c1l1.getControlPoints().add(dp3);
c1l1.getControlPoints().add(dp4);
c1l1.getControlPoints().add(dp5);
cu1.getSegments().add(c1l1);
exterior1.getElements().add(cu1);
// INTERIOR
interiors1 = new Ring[0];
bound1 = new JTSSurfaceBoundary(crs, exterior1, interiors1);
poly1 = new JTSPolygon(bound1);
poly1.setCoordinateReferenceSystem(crs);
expResult = new JTSMultiPrimitive();
expResult.getElements().add(poly1);
assertEquals(expResult.getElements().size(), result.getElements().size());
JTSPolygon expPolygon = (JTSPolygon) expResult.getElements().iterator().next();
JTSPolygon resPolygon = (JTSPolygon) result.getElements().iterator().next();
assertEquals(expPolygon.getCoordinateReferenceSystem(), resPolygon.getCoordinateReferenceSystem());
assertEquals(expPolygon.getBoundary().getCoordinateReferenceSystem(), resPolygon.getBoundary().getCoordinateReferenceSystem());
JTSCurve expCurve = (JTSCurve) expPolygon.getBoundary().getExterior().getElements().iterator().next();
JTSCurve resCurve = (JTSCurve) resPolygon.getBoundary().getExterior().getElements().iterator().next();
JTSLineString expLine = (JTSLineString) expCurve.getSegments().get(0);
JTSLineString resLine = (JTSLineString) resCurve.getSegments().get(0);
assertEquals(expLine.getCoordinateReferenceSystem(), resLine.getCoordinateReferenceSystem());
assertEquals(expLine, resLine);
assertEquals(expCurve.getSegments().get(0), resCurve.getSegments().get(0));
assertEquals(expCurve.getSegments(), resCurve.getSegments());
assertEquals(expCurve, resCurve);
assertEquals(expPolygon.getBoundary().getExterior(), resPolygon.getBoundary().getExterior());
assertEquals(expPolygon.getBoundary().getInteriors(), resPolygon.getBoundary().getInteriors());
assertEquals(expPolygon.getBoundary(), resPolygon.getBoundary());
assertEquals(expPolygon, resPolygon);
assertEquals(expResult.getElements(), result.getElements());
assertEquals(expResult, result);
}
use of org.geotoolkit.geometry.isoonjts.spatialschema.geometry.aggregate.JTSMultiPrimitive in project geotoolkit by Geomatys.
the class JTSGeometryBindingTest method MultiPrimitiveMarshalingTest.
/**
* Test Composite curve Marshalling.
*/
@Test
public void MultiPrimitiveMarshalingTest() throws Exception {
CoordinateReferenceSystem crs = CRS.forCode("urn:ogc:def:crs:epsg::27572");
assertTrue(crs != null);
DirectPosition p1 = new GeneralDirectPosition(crs);
p1.setOrdinate(0, 402000);
p1.setOrdinate(1, 3334850);
DirectPosition p2 = new GeneralDirectPosition(crs);
p2.setOrdinate(0, 402200);
p2.setOrdinate(1, 3335200);
JTSLineString l1 = new JTSLineString();
l1.getControlPoints().add(p1);
l1.getControlPoints().add(p2);
JTSCurve c2 = new JTSCurve(crs);
c2.getSegments().add(l1);
JTSCurve c1 = new JTSCurve(crs);
JTSLineString l2 = new JTSLineString();
DirectPosition p21 = new GeneralDirectPosition(crs);
p21.setOrdinate(0, 401500);
p21.setOrdinate(1, 3334500);
DirectPosition p22 = new GeneralDirectPosition(crs);
p22.setOrdinate(0, 401700);
p22.setOrdinate(1, 3334850);
DirectPosition p23 = new GeneralDirectPosition(crs);
p23.setOrdinate(0, 402200);
p23.setOrdinate(1, 3335200);
l2.getControlPoints().add(p21);
l2.getControlPoints().add(p22);
l2.getControlPoints().add(p23);
c1.getSegments().add(l2);
JTSLineString l3 = new JTSLineString();
DirectPosition p31 = new GeneralDirectPosition(crs);
p31.setOrdinate(0, 402320);
p31.setOrdinate(1, 3334850);
DirectPosition p32 = new GeneralDirectPosition(crs);
p32.setOrdinate(0, 402200);
p32.setOrdinate(1, 3335200);
l3.getControlPoints().add(p31);
l3.getControlPoints().add(p32);
c1.getSegments().add(l3);
JTSMultiPrimitive multip = new JTSMultiPrimitive();
multip.getElements().add(c1);
multip.getElements().add(c2);
StringWriter sw = new StringWriter();
m.marshal(factory.createJTSMultiGeometry(multip), sw);
String result = sw.toString();
result = result.replaceAll("(?i)epsg\\:\\d+\\.\\d+\\.?\\d*\\:", "epsg::");
String expResult = "<?xml version=\"1.0\" encoding=\"UTF-8\" standalone=\"yes\"?>" + '\n' + "<gml:MultiGeometry xmlns:gml=\"http://www.opengis.net/gml\" >" + '\n' + " <gml:geometryMember>" + '\n' + " <gml:Curve srsName=\"urn:ogc:def:crs:epsg::27572\">" + '\n' + " <gml:segments>" + '\n' + " <gml:LineStringSegment interpolation=\"linear\">" + '\n' + " <gml:pos>401500.0 3334500.0</gml:pos>" + '\n' + " <gml:pos>401700.0 3334850.0</gml:pos>" + '\n' + " <gml:pos>402200.0 3335200.0</gml:pos>" + '\n' + " </gml:LineStringSegment>" + '\n' + " <gml:LineStringSegment interpolation=\"linear\">" + '\n' + " <gml:pos>402320.0 3334850.0</gml:pos>" + '\n' + " <gml:pos>402200.0 3335200.0</gml:pos>" + '\n' + " </gml:LineStringSegment>" + '\n' + " </gml:segments>" + '\n' + " </gml:Curve>" + '\n' + " </gml:geometryMember>" + '\n' + " <gml:geometryMember>" + '\n' + " <gml:Curve srsName=\"urn:ogc:def:crs:epsg::27572\">" + '\n' + " <gml:segments>" + '\n' + " <gml:LineStringSegment interpolation=\"linear\">" + '\n' + " <gml:pos>402000.0 3334850.0</gml:pos>" + '\n' + " <gml:pos>402200.0 3335200.0</gml:pos>" + '\n' + " </gml:LineStringSegment>" + '\n' + " </gml:segments>" + '\n' + " </gml:Curve>" + '\n' + " </gml:geometryMember>" + '\n' + "</gml:MultiGeometry>" + '\n';
assertXmlEquals(expResult, result, "xmlns:*");
crs = CRS.forCode("urn:ogc:def:crs:epsg::27593");
assertTrue(crs != null);
/*
* FIRST POLYGON
*/
// EXTERIOR
JTSRing exterior1 = new JTSRing(crs);
JTSCurve cu1 = new JTSCurve(crs);
JTSLineString c1l1 = new JTSLineString();
DirectPosition dp1 = new GeneralDirectPosition(crs);
dp1.setOrdinate(0, 656216.1977884835);
dp1.setOrdinate(1, 38574.31079256255);
DirectPosition dp2 = new GeneralDirectPosition(crs);
dp2.setOrdinate(0, 656209.434300029);
dp2.setOrdinate(1, 38569.570186997764);
c1l1.getControlPoints().add(dp1);
c1l1.getControlPoints().add(dp2);
cu1.getSegments().add(c1l1);
exterior1.getElements().add(cu1);
// INTERIOR
Ring[] interiors1 = new Ring[0];
JTSSurfaceBoundary bound1 = new JTSSurfaceBoundary(crs, exterior1, interiors1);
JTSPolygon poly1 = new JTSPolygon(bound1);
JTSPolyhedralSurface PS = new JTSPolyhedralSurface(crs);
PS.getPatches().add(poly1);
multip = new JTSMultiPrimitive();
multip.getElements().add(PS);
sw = new StringWriter();
m.marshal(factory.createJTSMultiGeometry(multip), sw);
result = sw.toString();
result = result.replaceAll("(?i)epsg\\:\\d+\\.\\d+\\.?\\d*\\:", "epsg::");
expResult = "<?xml version=\"1.0\" encoding=\"UTF-8\" standalone=\"yes\"?>" + '\n' + "<gml:MultiGeometry xmlns:gml=\"http://www.opengis.net/gml\" >" + '\n' + " <gml:geometryMember>" + '\n' + " <gml:PolyhedralSurface srsName=\"urn:ogc:def:crs:epsg::27593\">" + '\n' + " <gml:polygonPatches>" + '\n' + " <gml:PolygonPatch>" + '\n' + " <gml:exterior>" + '\n' + " <gml:LinearRing>" + '\n' + " <gml:posList>656216.1977884835 38574.31079256255 656209.434300029 38569.570186997764</gml:posList>" + '\n' + " </gml:LinearRing>" + '\n' + " </gml:exterior>" + '\n' + " </gml:PolygonPatch>" + '\n' + " </gml:polygonPatches>" + '\n' + " </gml:PolyhedralSurface>" + '\n' + " </gml:geometryMember>" + '\n' + "</gml:MultiGeometry>" + '\n';
assertXmlEquals(expResult, result, "xmlns:*");
crs = CRS.forCode("urn:ogc:def:crs:epsg::4326");
// EXTERIOR
exterior1 = new JTSRing(crs);
cu1 = new JTSCurve(crs);
c1l1 = new JTSLineString();
dp1 = new GeneralDirectPosition(crs);
dp1.setOrdinate(0, -1.0);
dp1.setOrdinate(1, 0.0);
dp2 = new GeneralDirectPosition(crs);
dp2.setOrdinate(0, 0.0);
dp2.setOrdinate(1, 1.0);
GeneralDirectPosition dp3 = new GeneralDirectPosition(crs);
dp3.setOrdinate(0, 1.0);
dp3.setOrdinate(1, 0.0);
GeneralDirectPosition dp4 = new GeneralDirectPosition(crs);
dp4.setOrdinate(0, 0.0);
dp4.setOrdinate(1, -1.0);
GeneralDirectPosition dp5 = new GeneralDirectPosition(crs);
dp5.setOrdinate(0, -1.0);
dp5.setOrdinate(1, 0.0);
c1l1.getControlPoints().add(dp1);
c1l1.getControlPoints().add(dp2);
c1l1.getControlPoints().add(dp3);
c1l1.getControlPoints().add(dp4);
c1l1.getControlPoints().add(dp5);
cu1.getSegments().add(c1l1);
exterior1.getElements().add(cu1);
// INTERIOR
interiors1 = new Ring[0];
bound1 = new JTSSurfaceBoundary(crs, exterior1, interiors1);
poly1 = new JTSPolygon(bound1);
multip = new JTSMultiPrimitive();
multip.getElements().add(poly1);
sw = new StringWriter();
m.marshal(factory.createJTSMultiGeometry(multip), sw);
result = sw.toString();
result = result.replaceAll("(?i)epsg\\:\\d+\\.\\d+\\.?\\d*\\:", "epsg::");
expResult = "<?xml version=\"1.0\" encoding=\"UTF-8\" standalone=\"yes\"?>" + '\n' + "<gml:MultiGeometry xmlns:gml=\"http://www.opengis.net/gml\" >" + '\n' + " <gml:geometryMember>" + '\n' + " <gml:Polygon srsName=\"urn:ogc:def:crs:epsg::4326\">" + '\n' + " <gml:exterior>" + '\n' + " <gml:LinearRing>" + '\n' + " <gml:posList>-1.0 0.0 0.0 1.0 1.0 0.0 0.0 -1.0 -1.0 0.0</gml:posList>" + '\n' + " </gml:LinearRing>" + '\n' + " </gml:exterior>" + '\n' + " </gml:Polygon>" + '\n' + " </gml:geometryMember>" + '\n' + "</gml:MultiGeometry>" + '\n';
assertXmlEquals(expResult, result, "xmlns:*");
}
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