mirror of https://github.com/apache/lucene.git
LUCENE-8521: Change LatLonShape encoding to use selective indexing
This improvement changes LatLonShape encoding to 7 dimensions instead of 6. The first 4 are index dimensions defining the bounding box of the Triangle and the remaining 3 data dimensions define the vertices of the triangle.
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@ -210,6 +210,12 @@ New Features
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may be used to determine how to split the inner nodes, and dimensions N+1 to D
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are ignored and stored as data dimensions at the leaves. (Nick Knize)
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Improvements:
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* LUCENE-8521: Change LatLonShape encoding to 7 dimensions instead of 6; where the
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first 4 are index dimensions defining the bounding box of the Triangle and the
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remaining 3 data dimensions define the vertices of the triangle. (Nick Knize)
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Other:
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* LUCENE-8523: Correct typo in JapaneseNumberFilterFactory javadocs (Ankush Jhalani
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@ -54,11 +54,11 @@ import static org.apache.lucene.geo.GeoEncodingUtils.encodeLongitude;
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* @lucene.experimental
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*/
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public class LatLonShape {
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public static final int BYTES = LatLonPoint.BYTES;
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public static final int BYTES = 2 * LatLonPoint.BYTES;
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protected static final FieldType TYPE = new FieldType();
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static {
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TYPE.setDimensions(6, BYTES);
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TYPE.setDimensions(7, 4, BYTES);
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TYPE.freeze();
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}
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@ -72,8 +72,7 @@ public class LatLonShape {
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List<Triangle> tessellation = Tessellator.tessellate(polygon);
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List<LatLonTriangle> fields = new ArrayList<>();
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for (Triangle t : tessellation) {
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fields.add(new LatLonTriangle(fieldName, t.getEncodedX(0), t.getEncodedY(0),
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t.getEncodedX(1), t.getEncodedY(1), t.getEncodedX(2), t.getEncodedY(2)));
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fields.add(new LatLonTriangle(fieldName, t));
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}
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return fields.toArray(new Field[fields.size()]);
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}
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@ -83,21 +82,14 @@ public class LatLonShape {
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int numPoints = line.numPoints();
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List<LatLonTriangle> fields = new ArrayList<>(numPoints - 1);
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// encode the line vertices
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int[] encodedLats = new int[numPoints];
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int[] encodedLons = new int[numPoints];
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for (int i = 0; i < numPoints; ++i) {
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encodedLats[i] = encodeLatitude(line.getLat(i));
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encodedLons[i] = encodeLongitude(line.getLon(i));
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}
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// create "flat" triangles
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int aLat, bLat, aLon, bLon, temp;
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double aLat, bLat, aLon, bLon, temp;
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double size;
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for (int i = 0, j = 1; j < numPoints; ++i, ++j) {
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aLat = encodedLats[i];
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aLon = encodedLons[i];
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bLat = encodedLats[j];
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bLon = encodedLons[j];
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aLat = line.getLat(i);
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aLon = line.getLon(i);
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bLat = line.getLat(j);
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bLon = line.getLon(j);
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if (aLat > bLat) {
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temp = aLat;
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aLat = bLat;
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@ -115,16 +107,15 @@ public class LatLonShape {
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bLon = temp;
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}
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}
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fields.add(new LatLonTriangle(fieldName, aLon, aLat, bLon, bLat, aLon, aLat));
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size = StrictMath.sqrt(StrictMath.pow(aLat - bLat, 2d) + StrictMath.pow(aLon - bLon, 2d));
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fields.add(new LatLonTriangle(fieldName, aLat, aLon, bLat, bLon, aLat, aLon, size));
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}
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return fields.toArray(new Field[fields.size()]);
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}
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/** create indexable fields for point geometry */
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public static Field[] createIndexableFields(String fieldName, double lat, double lon) {
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final int encodedLat = encodeLatitude(lat);
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final int encodedLon = encodeLongitude(lon);
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return new Field[] {new LatLonTriangle(fieldName, encodedLon, encodedLat, encodedLon, encodedLat, encodedLon, encodedLat)};
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return new Field[] {new LatLonTriangle(fieldName, lat, lon, lat, lon, lat, lon, 0d)};
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}
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/** create a query to find all polygons that intersect a defined bounding box
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@ -144,28 +135,60 @@ public class LatLonShape {
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*/
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private static class LatLonTriangle extends Field {
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LatLonTriangle(String name, int ax, int ay, int bx, int by, int cx, int cy) {
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LatLonTriangle(String name, double aLat, double aLon, double bLat, double bLon, double cLat, double cLon, double size) {
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super(name, TYPE);
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setTriangleValue(ax, ay, bx, by, cx, cy);
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setTriangleValue(encodeLongitude(aLon), encodeLatitude(aLat), encodeLongitude(bLon), encodeLatitude(bLat), encodeLongitude(cLon), encodeLatitude(cLat));
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}
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LatLonTriangle(String name, Triangle t) {
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super(name, TYPE);
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setTriangleValue(t.getEncodedX(0), t.getEncodedY(0), t.getEncodedX(1), t.getEncodedY(1), t.getEncodedX(2), t.getEncodedY(2));
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}
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public void setTriangleValue(int aX, int aY, int bX, int bY, int cX, int cY) {
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final byte[] bytes;
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if (fieldsData == null) {
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bytes = new byte[24];
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bytes = new byte[7 * BYTES];
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fieldsData = new BytesRef(bytes);
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} else {
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bytes = ((BytesRef) fieldsData).bytes;
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}
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NumericUtils.intToSortableBytes(aY, bytes, 0);
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NumericUtils.intToSortableBytes(aX, bytes, BYTES);
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NumericUtils.intToSortableBytes(bY, bytes, BYTES * 2);
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NumericUtils.intToSortableBytes(bX, bytes, BYTES * 3);
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NumericUtils.intToSortableBytes(cY, bytes, BYTES * 4);
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NumericUtils.intToSortableBytes(cX, bytes, BYTES * 5);
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int minX = StrictMath.min(aX, StrictMath.min(bX, cX));
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int minY = StrictMath.min(aY, StrictMath.min(bY, cY));
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int maxX = StrictMath.max(aX, StrictMath.max(bX, cX));
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int maxY = StrictMath.max(aY, StrictMath.max(bY, cY));
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encodeTriangle(bytes, minY, minX, maxY, maxX, aX, aY, bX, bY, cX, cY);
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}
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private void encodeTriangle(byte[] bytes, int minY, int minX, int maxY, int maxX, int aX, int aY, int bX, int bY, int cX, int cY) {
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encodeTriangleBoxVal(minY, bytes, 0);
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encodeTriangleBoxVal(minX, bytes, BYTES);
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encodeTriangleBoxVal(maxY, bytes, 2 * BYTES);
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encodeTriangleBoxVal(maxX, bytes, 3 * BYTES);
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long a = (((long)aX) << 32) | (((long)aY) & 0x00000000FFFFFFFFL);
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long b = (((long)bX) << 32) | (((long)bY) & 0x00000000FFFFFFFFL);
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long c = (((long)cX) << 32) | (((long)cY) & 0x00000000FFFFFFFFL);
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NumericUtils.longToSortableBytes(a, bytes, 4 * BYTES);
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NumericUtils.longToSortableBytes(b, bytes, 5 * BYTES);
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NumericUtils.longToSortableBytes(c, bytes, 6 * BYTES);
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}
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}
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public static void encodeTriangleBoxVal(int encodedVal, byte[] bytes, int offset) {
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long val = (long)(encodedVal ^ 0x80000000);
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val &= 0x00000000FFFFFFFFL;
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val ^= 0x8000000000000000L;
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NumericUtils.longToSortableBytes(val, bytes, offset);
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}
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public static int decodeTriangleBoxVal(byte[] encoded, int offset) {
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long val = NumericUtils.sortableBytesToLong(encoded, offset);
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int result = (int)(val & 0x00000000FFFFFFFF);
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return result ^ 0x80000000;
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}
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/** Query Relation Types **/
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@ -24,6 +24,7 @@ import org.apache.lucene.index.PointValues.Relation;
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import org.apache.lucene.util.FutureArrays;
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import org.apache.lucene.util.NumericUtils;
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import static org.apache.lucene.document.LatLonShape.BYTES;
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import static org.apache.lucene.geo.GeoEncodingUtils.decodeLatitude;
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import static org.apache.lucene.geo.GeoEncodingUtils.decodeLongitude;
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import static org.apache.lucene.geo.GeoEncodingUtils.encodeLatitude;
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@ -52,32 +53,32 @@ final class LatLonShapeBoundingBoxQuery extends LatLonShapeQuery {
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if (minLon > maxLon) {
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throw new IllegalArgumentException("dateline crossing bounding box queries are not supported for [" + field + "]");
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}
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this.bbox = new byte[4 * LatLonPoint.BYTES];
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this.bbox = new byte[4 * LatLonShape.BYTES];
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this.minX = encodeLongitudeCeil(minLon);
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this.maxX = encodeLongitude(maxLon);
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this.minY = encodeLatitudeCeil(minLat);
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this.maxY = encodeLatitude(maxLat);
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NumericUtils.intToSortableBytes(this.minY, this.bbox, 0);
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NumericUtils.intToSortableBytes(this.minX, this.bbox, LatLonPoint.BYTES);
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NumericUtils.intToSortableBytes(this.maxY, this.bbox, 2 * LatLonPoint.BYTES);
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NumericUtils.intToSortableBytes(this.maxX, this.bbox, 3 * LatLonPoint.BYTES);
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LatLonShape.encodeTriangleBoxVal(this.minY, bbox, 0);
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LatLonShape.encodeTriangleBoxVal(this.minX, bbox, BYTES);
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LatLonShape.encodeTriangleBoxVal(this.maxY, bbox, 2 * BYTES);
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LatLonShape.encodeTriangleBoxVal(this.maxX, bbox, 3 * BYTES);
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}
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@Override
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protected Relation relateRangeBBoxToQuery(int minXOffset, int minYOffset, byte[] minTriangle,
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int maxXOffset, int maxYOffset, byte[] maxTriangle) {
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// check bounding box (DISJOINT)
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if (FutureArrays.compareUnsigned(minTriangle, minXOffset, minXOffset + LatLonPoint.BYTES, bbox, 3 * LatLonPoint.BYTES, 4 * LatLonPoint.BYTES) > 0 ||
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FutureArrays.compareUnsigned(maxTriangle, maxXOffset, maxXOffset + LatLonPoint.BYTES, bbox, LatLonPoint.BYTES, 2 * LatLonPoint.BYTES) < 0 ||
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FutureArrays.compareUnsigned(minTriangle, minYOffset, minYOffset + LatLonPoint.BYTES, bbox, 2 * LatLonPoint.BYTES, 3 * LatLonPoint.BYTES) > 0 ||
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FutureArrays.compareUnsigned(maxTriangle, maxYOffset, maxYOffset + LatLonPoint.BYTES, bbox, 0, LatLonPoint.BYTES) < 0) {
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if (FutureArrays.compareUnsigned(minTriangle, minXOffset, minXOffset + BYTES, bbox, 3 * BYTES, 4 * BYTES) > 0 ||
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FutureArrays.compareUnsigned(maxTriangle, maxXOffset, maxXOffset + BYTES, bbox, BYTES, 2 * BYTES) < 0 ||
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FutureArrays.compareUnsigned(minTriangle, minYOffset, minYOffset + BYTES, bbox, 2 * BYTES, 3 * BYTES) > 0 ||
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FutureArrays.compareUnsigned(maxTriangle, maxYOffset, maxYOffset + BYTES, bbox, 0, BYTES) < 0) {
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return Relation.CELL_OUTSIDE_QUERY;
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}
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if (FutureArrays.compareUnsigned(minTriangle, minXOffset, minXOffset + LatLonPoint.BYTES, bbox, LatLonPoint.BYTES, 2 * LatLonPoint.BYTES) > 0 &&
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FutureArrays.compareUnsigned(maxTriangle, maxXOffset, maxXOffset + LatLonPoint.BYTES, bbox, 3 * LatLonPoint.BYTES, 4 * LatLonPoint.BYTES) < 0 &&
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FutureArrays.compareUnsigned(minTriangle, minYOffset, minYOffset + LatLonPoint.BYTES, bbox, 0, LatLonPoint.BYTES) > 0 &&
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FutureArrays.compareUnsigned(maxTriangle, maxYOffset, maxYOffset + LatLonPoint.BYTES, bbox, 2 * LatLonPoint.BYTES, 2 * LatLonPoint.BYTES) < 0) {
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if (FutureArrays.compareUnsigned(minTriangle, minXOffset, minXOffset + BYTES, bbox, BYTES, 2 * BYTES) >= 0 &&
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FutureArrays.compareUnsigned(maxTriangle, maxXOffset, maxXOffset + BYTES, bbox, 3 * BYTES, 4 * BYTES) <= 0 &&
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FutureArrays.compareUnsigned(minTriangle, minYOffset, minYOffset + BYTES, bbox, 0, BYTES) >= 0 &&
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FutureArrays.compareUnsigned(maxTriangle, maxYOffset, maxYOffset + BYTES, bbox, 2 * BYTES, 3 * BYTES) <= 0) {
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return Relation.CELL_INSIDE_QUERY;
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}
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return Relation.CELL_CROSSES_QUERY;
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@ -86,27 +87,37 @@ final class LatLonShapeBoundingBoxQuery extends LatLonShapeQuery {
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/** returns true if the query matches the encoded triangle */
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@Override
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protected boolean queryMatches(byte[] t) {
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long a = NumericUtils.sortableBytesToLong(t, 4 * LatLonShape.BYTES);
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long b = NumericUtils.sortableBytesToLong(t, 5 * LatLonShape.BYTES);
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long c = NumericUtils.sortableBytesToLong(t, 6 * LatLonShape.BYTES);
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int aX = (int)((a >>> 32) & 0x00000000FFFFFFFFL);
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int bX = (int)((b >>> 32) & 0x00000000FFFFFFFFL);
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int cX = (int)((c >>> 32) & 0x00000000FFFFFFFFL);
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int aY = (int)(a & 0x00000000FFFFFFFFL);
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int bY = (int)(b & 0x00000000FFFFFFFFL);
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int cY = (int)(c & 0x00000000FFFFFFFFL);
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if (queryRelation == LatLonShape.QueryRelation.WITHIN) {
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return queryContains(t, 0) && queryContains(t, 1) && queryContains(t, 2);
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return queryContains(aX, aY) && queryContains(bX, bY) && queryContains(cX, cY);
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}
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return queryIntersects(t);
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return queryMatches(aX, aY, bX, bY, cX, cY);
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}
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/** returns true if the query intersects the encoded triangle */
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protected boolean queryIntersects(byte[] t) {
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private boolean queryContains(int x, int y) {
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return (x < minX || x > maxX || y < minY || y > maxY) == false;
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}
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private boolean queryContains(int ax, int ay, int bx, int by, int cx, int cy) {
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return queryContains(ax, ay) || queryContains(bx, by) || queryContains(cx, cy);
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}
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protected boolean queryMatches(int aX, int aY, int bX, int bY, int cX, int cY) {
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// 1. query contains any triangle points
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if (queryContains(t, 0) || queryContains(t, 1) || queryContains(t, 2)) {
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if (queryContains(aX, aY, bX, bY, cX, cY)) {
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return true;
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}
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int aY = NumericUtils.sortableBytesToInt(t, 0);
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int aX = NumericUtils.sortableBytesToInt(t, LatLonPoint.BYTES);
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int bY = NumericUtils.sortableBytesToInt(t, 2 * LatLonPoint.BYTES);
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int bX = NumericUtils.sortableBytesToInt(t, 3 * LatLonPoint.BYTES);
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int cY = NumericUtils.sortableBytesToInt(t, 4 * LatLonPoint.BYTES);
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int cX = NumericUtils.sortableBytesToInt(t, 5 * LatLonPoint.BYTES);
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int tMinX = StrictMath.min(StrictMath.min(aX, bX), cX);
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int tMaxX = StrictMath.max(StrictMath.max(aX, bX), cX);
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int tMinY = StrictMath.min(StrictMath.min(aY, bY), cY);
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@ -164,20 +175,6 @@ final class LatLonShapeBoundingBoxQuery extends LatLonShapeQuery {
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return false;
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}
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/** returns true if the query contains the triangle vertex */
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private boolean queryContains(byte[] t, int point) {
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final int yIdx = 2 * LatLonPoint.BYTES * point;
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final int xIdx = yIdx + LatLonPoint.BYTES;
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if (FutureArrays.compareUnsigned(t, yIdx, xIdx, bbox, 0, LatLonPoint.BYTES) < 0 || //minY
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FutureArrays.compareUnsigned(t, yIdx, xIdx, bbox, 2 * LatLonPoint.BYTES, 3 * LatLonPoint.BYTES) > 0 || //maxY
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FutureArrays.compareUnsigned(t, xIdx, xIdx + LatLonPoint.BYTES, bbox, LatLonPoint.BYTES, 2 * LatLonPoint.BYTES) < 0 || // minX
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FutureArrays.compareUnsigned(t, xIdx, xIdx + LatLonPoint.BYTES, bbox, 3 * LatLonPoint.BYTES, bbox.length) > 0) {
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return false;
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}
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return true;
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}
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/** returns true if the query intersects the provided triangle (in encoded space) */
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private boolean queryIntersects(int ax, int ay, int bx, int by, int cx, int cy) {
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// check each edge of the triangle against the query
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@ -23,6 +23,7 @@ import org.apache.lucene.geo.GeoEncodingUtils;
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import org.apache.lucene.geo.Polygon;
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import org.apache.lucene.geo.Polygon2D;
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import org.apache.lucene.index.PointValues.Relation;
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import org.apache.lucene.util.NumericUtils;
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/**
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* Finds all previously indexed shapes that intersect the specified arbitrary.
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@ -61,29 +62,40 @@ final class LatLonShapePolygonQuery extends LatLonShapeQuery {
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@Override
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protected Relation relateRangeBBoxToQuery(int minXOffset, int minYOffset, byte[] minTriangle,
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int maxXOffset, int maxYOffset, byte[] maxTriangle) {
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double minLat = GeoEncodingUtils.decodeLatitude(minTriangle, minYOffset);
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double minLon = GeoEncodingUtils.decodeLongitude(minTriangle, minXOffset);
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double maxLat = GeoEncodingUtils.decodeLatitude(maxTriangle, maxYOffset);
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double maxLon = GeoEncodingUtils.decodeLongitude(maxTriangle, maxXOffset);
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double minLat = GeoEncodingUtils.decodeLatitude(LatLonShape.decodeTriangleBoxVal(minTriangle, minYOffset));
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double minLon = GeoEncodingUtils.decodeLongitude(LatLonShape.decodeTriangleBoxVal(minTriangle, minXOffset));
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double maxLat = GeoEncodingUtils.decodeLatitude(LatLonShape.decodeTriangleBoxVal(maxTriangle, maxYOffset));
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double maxLon = GeoEncodingUtils.decodeLongitude(LatLonShape.decodeTriangleBoxVal(maxTriangle, maxXOffset));
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// check internal node against query
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return poly2D.relate(minLat, maxLat, minLon, maxLon);
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}
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@Override
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protected boolean queryMatches(byte[] triangle) {
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double ay = GeoEncodingUtils.decodeLatitude(triangle, 0);
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double ax = GeoEncodingUtils.decodeLongitude(triangle, LatLonPoint.BYTES);
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double by = GeoEncodingUtils.decodeLatitude(triangle, 2 * LatLonPoint.BYTES);
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double bx = GeoEncodingUtils.decodeLongitude(triangle, 3 * LatLonPoint.BYTES);
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double cy = GeoEncodingUtils.decodeLatitude(triangle, 4 * LatLonPoint.BYTES);
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double cx = GeoEncodingUtils.decodeLongitude(triangle, 5 * LatLonPoint.BYTES);
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protected boolean queryMatches(byte[] t) {
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long a = NumericUtils.sortableBytesToLong(t, 4 * LatLonShape.BYTES);
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long b = NumericUtils.sortableBytesToLong(t, 5 * LatLonShape.BYTES);
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long c = NumericUtils.sortableBytesToLong(t, 6 * LatLonShape.BYTES);
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int aX = (int)((a >>> 32) & 0x00000000FFFFFFFFL);
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int bX = (int)((b >>> 32) & 0x00000000FFFFFFFFL);
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int cX = (int)((c >>> 32) & 0x00000000FFFFFFFFL);
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int aY = (int)(a & 0x00000000FFFFFFFFL);
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int bY = (int)(b & 0x00000000FFFFFFFFL);
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int cY = (int)(c & 0x00000000FFFFFFFFL);
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double alat = GeoEncodingUtils.decodeLatitude(aY);
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double alon = GeoEncodingUtils.decodeLongitude(aX);
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double blat = GeoEncodingUtils.decodeLatitude(bY);
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double blon = GeoEncodingUtils.decodeLongitude(bX);
|
||||
double clat = GeoEncodingUtils.decodeLatitude(cY);
|
||||
double clon = GeoEncodingUtils.decodeLongitude(cX);
|
||||
|
||||
if (queryRelation == QueryRelation.WITHIN) {
|
||||
return poly2D.relateTriangle(ax, ay, bx, by, cx, cy) == Relation.CELL_INSIDE_QUERY;
|
||||
return poly2D.relateTriangle(alon, alat, blon, blat, clon, clat) == Relation.CELL_INSIDE_QUERY;
|
||||
}
|
||||
// INTERSECTS
|
||||
return poly2D.relateTriangle(ax, ay, bx, by, cx, cy) != Relation.CELL_OUTSIDE_QUERY;
|
||||
return poly2D.relateTriangle(alon, alat, blon, blat, clon, clat) != Relation.CELL_OUTSIDE_QUERY;
|
||||
}
|
||||
|
||||
@Override
|
||||
|
|
|
@ -38,7 +38,6 @@ import org.apache.lucene.search.Weight;
|
|||
import org.apache.lucene.util.BitSetIterator;
|
||||
import org.apache.lucene.util.DocIdSetBuilder;
|
||||
import org.apache.lucene.util.FixedBitSet;
|
||||
import org.apache.lucene.util.FutureArrays;
|
||||
|
||||
/**
|
||||
* Base LatLonShape Query class providing common query logic for
|
||||
|
@ -79,41 +78,7 @@ abstract class LatLonShapeQuery extends Query {
|
|||
/** relates a range of triangles (internal node) to the query */
|
||||
protected Relation relateRangeToQuery(byte[] minTriangle, byte[] maxTriangle) {
|
||||
// compute bounding box of internal node
|
||||
int minXOfs = 0;
|
||||
int minYOfs = 0;
|
||||
int maxXOfs = 0;
|
||||
int maxYOfs = 0;
|
||||
for (int d = 1; d < 3; ++d) {
|
||||
// check minX
|
||||
int aOfs = (minXOfs * 2 * LatLonPoint.BYTES) + LatLonPoint.BYTES;
|
||||
int bOfs = (d * 2 * LatLonPoint.BYTES) + LatLonPoint.BYTES;
|
||||
if (FutureArrays.compareUnsigned(minTriangle, bOfs, bOfs + LatLonPoint.BYTES, minTriangle, aOfs, aOfs + LatLonPoint.BYTES) < 0) {
|
||||
minXOfs = d;
|
||||
}
|
||||
// check maxX
|
||||
aOfs = (maxXOfs * 2 * LatLonPoint.BYTES) + LatLonPoint.BYTES;
|
||||
if (FutureArrays.compareUnsigned(maxTriangle, bOfs, bOfs + LatLonPoint.BYTES, maxTriangle, aOfs, aOfs + LatLonPoint.BYTES) > 0) {
|
||||
maxXOfs = d;
|
||||
}
|
||||
// check minY
|
||||
aOfs = minYOfs * 2 * LatLonPoint.BYTES;
|
||||
bOfs = d * 2 * LatLonPoint.BYTES;
|
||||
if (FutureArrays.compareUnsigned(minTriangle, bOfs, bOfs + LatLonPoint.BYTES, minTriangle, aOfs, aOfs + LatLonPoint.BYTES) < 0) {
|
||||
minYOfs = d;
|
||||
}
|
||||
// check maxY
|
||||
aOfs = maxYOfs * 2 * LatLonPoint.BYTES;
|
||||
if (FutureArrays.compareUnsigned(maxTriangle, bOfs, bOfs + LatLonPoint.BYTES, maxTriangle, aOfs, aOfs + LatLonPoint.BYTES) > 0) {
|
||||
maxYOfs = d;
|
||||
}
|
||||
}
|
||||
minXOfs = (minXOfs * 2 * LatLonPoint.BYTES) + LatLonPoint.BYTES;
|
||||
maxXOfs = (maxXOfs * 2 * LatLonPoint.BYTES) + LatLonPoint.BYTES;
|
||||
minYOfs *= 2 * LatLonPoint.BYTES;
|
||||
maxYOfs *= 2 * LatLonPoint.BYTES;
|
||||
|
||||
Relation r = relateRangeBBoxToQuery(minXOfs, minYOfs, minTriangle, maxXOfs, maxYOfs, maxTriangle);
|
||||
|
||||
Relation r = relateRangeBBoxToQuery(LatLonShape.BYTES, 0, minTriangle, 3 * LatLonShape.BYTES, 2 * LatLonShape.BYTES, maxTriangle);
|
||||
if (queryRelation == QueryRelation.DISJOINT) {
|
||||
return transposeRelation(r);
|
||||
}
|
||||
|
|
|
@ -17,6 +17,7 @@
|
|||
package org.apache.lucene.geo;
|
||||
|
||||
import java.util.ArrayList;
|
||||
import java.util.Arrays;
|
||||
import java.util.List;
|
||||
|
||||
import org.apache.lucene.geo.GeoUtils.WindingOrder;
|
||||
|
@ -819,13 +820,17 @@ final public class Tessellator {
|
|||
}
|
||||
|
||||
/** compare nodes by y then x */
|
||||
public int compare(Node other) {
|
||||
if (this.getLat() > other.getLat()) {
|
||||
public int compareLat(Node other) {
|
||||
return compare(this.getLat(), this.getLon(), other.getLat(), other.getLon());
|
||||
}
|
||||
|
||||
public int compare(double aX, double aY, double bX, double bY) {
|
||||
if (aX > bX) {
|
||||
return 1;
|
||||
} else if (this.getLat() == other.getLat()) {
|
||||
if (this.getLon() > other.getLon()) {
|
||||
} else if (aX == bX) {
|
||||
if (aY > bY) {
|
||||
return 1;
|
||||
} else if (this.getLon() == other.getLon()) {
|
||||
} else if (aY == bY) {
|
||||
return 0;
|
||||
}
|
||||
}
|
||||
|
@ -850,32 +855,12 @@ final public class Tessellator {
|
|||
|
||||
/** Triangle in the tessellated mesh */
|
||||
public final static class Triangle {
|
||||
Node[] vertex = new Node[3];
|
||||
Node[] vertex;
|
||||
|
||||
protected Triangle(Node a, Node b, Node c) {
|
||||
this.vertex = new Node[] {a, b, c};
|
||||
// sort nodes by morton value
|
||||
Node tA = a;
|
||||
Node tB = b;
|
||||
Node tC = c;
|
||||
Node temp;
|
||||
if (a.compare(b) > 0) {
|
||||
temp = tA;
|
||||
tA = tB;
|
||||
tB = temp;
|
||||
}
|
||||
if (b.compare(c) > 0) {
|
||||
temp = tB;
|
||||
tB = tC;
|
||||
tC = temp;
|
||||
}
|
||||
if (a.compare(b) > 0) {
|
||||
temp = tA;
|
||||
tA = tB;
|
||||
tB = temp;
|
||||
}
|
||||
this.vertex[0] = tA;
|
||||
this.vertex[1] = tB;
|
||||
this.vertex[2] = tC;
|
||||
Arrays.sort(this.vertex, (x, y) -> x.compareLat(y));
|
||||
}
|
||||
|
||||
/** get quantized x value for the given vertex */
|
||||
|
|
Loading…
Reference in New Issue