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https://github.com/EngineHub/WorldGuard.git
synced 2024-11-24 11:36:11 +01:00
Added getIntersectingRegions() method for polygonal and cuboid regions
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dcef083e30
commit
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@ -20,6 +20,8 @@
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import com.sk89q.worldedit.*;
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import com.sk89q.worldguard.protection.UnsupportedIntersectionException;
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import java.util.ArrayList;
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import java.util.List;
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/**
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@ -128,7 +130,125 @@ public boolean intersectsWith(ProtectedRegion region) throws UnsupportedIntersec
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*/
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public List<ProtectedRegion> getIntersectingRegions(List<ProtectedRegion> regions) throws UnsupportedIntersectionException {
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throw new UnsupportedOperationException("Not supported yet.");
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int numRegions = regions.size();
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List<ProtectedRegion> intersectingRegions = new ArrayList<ProtectedRegion>();
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int i, i2, i3;
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for (i = 0; i < numRegions; i++) {
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ProtectedRegion region = regions.get(i);
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BlockVector rMinPoint = region.getMinimumPoint();
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BlockVector rMaxPoint = region.getMaximumPoint();
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// Check whether the region is outside the min and max vector
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if ((rMinPoint.getBlockX() < min.getBlockX() && rMaxPoint.getBlockX() < min.getBlockX())
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|| (rMinPoint.getBlockX() > max.getBlockX() && rMaxPoint.getBlockX() > max.getBlockX())
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&& ((rMinPoint.getBlockY() < min.getBlockY() && rMaxPoint.getBlockY() < min.getBlockY())
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|| (rMinPoint.getBlockY() > max.getBlockY() && rMaxPoint.getBlockY() > max.getBlockY()))
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&& ((rMinPoint.getBlockZ() < min.getBlockZ() && rMaxPoint.getBlockZ() < min.getBlockZ())
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|| (rMinPoint.getBlockZ() > max.getBlockZ() && rMaxPoint.getBlockZ() > max.getBlockZ())) ) {
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intersectingRegions.add(regions.get(i));
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continue;
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}
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// Check whether the regions points are inside the other region
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if (region.contains(new Vector(min.getBlockX(), min.getBlockY(), min.getBlockZ()))
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|| region.contains(new Vector(min.getBlockX(), min.getBlockY(), max.getBlockZ()))
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|| region.contains(new Vector(min.getBlockX(), max.getBlockY(), max.getBlockZ()))
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|| region.contains(new Vector(min.getBlockX(), max.getBlockY(), min.getBlockZ()))
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|| region.contains(new Vector(max.getBlockX(), max.getBlockY(), max.getBlockZ()))
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|| region.contains(new Vector(max.getBlockX(), max.getBlockY(), min.getBlockZ()))
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|| region.contains(new Vector(max.getBlockX(), min.getBlockY(), min.getBlockZ()))
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|| region.contains(new Vector(max.getBlockX(), min.getBlockY(), max.getBlockZ())) ) {
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intersectingRegions.add(regions.get(i));
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continue;
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}
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// Check whether the other regions points are inside the current region
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if (region.getTypeName() == "polygon") {
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for (i2 = 0; i < ((ProtectedPolygonalRegion)region).getPoints().size(); i++) {
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BlockVector2D pt2Dr = ((ProtectedPolygonalRegion)region).getPoints().get(i2);
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int minYr = ((ProtectedPolygonalRegion)region).minY;
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int maxYr = ((ProtectedPolygonalRegion)region).maxY;
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Vector ptr = new Vector(pt2Dr.getBlockX(), minYr, pt2Dr.getBlockZ());
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Vector ptr2 = new Vector(pt2Dr.getBlockX(), maxYr, pt2Dr.getBlockZ());
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if (this.contains(ptr) || this.contains(ptr2)) {
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intersectingRegions.add(regions.get(i));
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continue;
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}
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}
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} else if (region.getTypeName() == "cuboid") {
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BlockVector ptcMin = region.getMinimumPoint();
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BlockVector ptcMax = region.getMaximumPoint();
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if (this.contains(new Vector(ptcMin.getBlockX(), ptcMin.getBlockY(), ptcMin.getBlockZ()))
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|| this.contains(new Vector(ptcMin.getBlockX(), ptcMin.getBlockY(), ptcMax.getBlockZ()))
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|| this.contains(new Vector(ptcMin.getBlockX(), ptcMax.getBlockY(), ptcMax.getBlockZ()))
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|| this.contains(new Vector(ptcMin.getBlockX(), ptcMax.getBlockY(), ptcMin.getBlockZ()))
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|| this.contains(new Vector(ptcMax.getBlockX(), ptcMax.getBlockY(), ptcMax.getBlockZ()))
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|| this.contains(new Vector(ptcMax.getBlockX(), ptcMax.getBlockY(), ptcMin.getBlockZ()))
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|| this.contains(new Vector(ptcMax.getBlockX(), ptcMin.getBlockY(), ptcMin.getBlockZ()))
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|| this.contains(new Vector(ptcMax.getBlockX(), ptcMin.getBlockY(), ptcMax.getBlockZ())) ) {
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intersectingRegions.add(regions.get(i));
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continue;
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}
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} else {
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throw new UnsupportedOperationException("Not supported yet.");
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}
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// Check whether the current regions edges collide with the regions edges
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boolean regionIsIntersecting = false;
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List<BlockVector2D> points = new ArrayList<BlockVector2D>();
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points.add(new BlockVector2D(min.getBlockX(), min.getBlockZ()));
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points.add(new BlockVector2D(min.getBlockX(), max.getBlockZ()));
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points.add(new BlockVector2D(max.getBlockX(), max.getBlockZ()));
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points.add(new BlockVector2D(max.getBlockX(), min.getBlockZ()));
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for (i2 = 0; i2 < points.size(); i2++) {
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boolean checkNextPoint = false;
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BlockVector2D currPoint = points.get(i2);
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BlockVector2D nextPoint;
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if (i2 == (points.size() - 1)) {
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nextPoint = points.get(0);
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} else {
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nextPoint = points.get(i2 + 1);
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}
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int currX = currPoint.getBlockX();
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int currZ = currPoint.getBlockZ();
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while (!checkNextPoint) {
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for(i3 = min.getBlockY(); i3 <= max.getBlockY(); i3++) {
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if (region.contains(new Vector(currX, i3, currZ))) {
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intersectingRegions.add(regions.get(i));
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regionIsIntersecting = true;
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break;
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}
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}
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if (currX == nextPoint.getBlockX() || currZ == nextPoint.getBlockZ() || regionIsIntersecting) {
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checkNextPoint = true;
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}
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if (nextPoint.getBlockX() > currPoint.getBlockX()) {
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currX++;
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} else {
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currX--;
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}
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if (nextPoint.getBlockZ() > currPoint.getBlockZ()) {
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currZ++;
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} else {
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currZ--;
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}
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}
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if (regionIsIntersecting) {
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break;
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}
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}
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}
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return intersectingRegions;
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}
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@ -19,6 +19,7 @@
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package com.sk89q.worldguard.protection.regions;
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import java.util.List;
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import java.util.ArrayList;
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import com.sk89q.worldedit.BlockVector;
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import com.sk89q.worldedit.BlockVector2D;
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import com.sk89q.worldedit.Vector;
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@ -64,6 +65,10 @@ public ProtectedPolygonalRegion(String id, List<BlockVector2D> points, int minY,
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max = new BlockVector(maxX, maxY, maxZ);
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}
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public List<BlockVector2D> getPoints() {
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return points;
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}
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@Override
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public BlockVector getMinimumPoint() {
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return min;
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@ -134,7 +139,118 @@ public boolean contains(Vector pt) {
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public List<ProtectedRegion> getIntersectingRegions(List<ProtectedRegion> regions) throws UnsupportedIntersectionException {
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throw new UnsupportedOperationException("Not supported yet.");
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int numRegions = regions.size();
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int numPoints = points.size();
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List<ProtectedRegion> intersectingRegions = new ArrayList<ProtectedRegion>();
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int i, i2, i3;
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for (i = 0; i < numRegions; i++) {
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ProtectedRegion region = regions.get(i);
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BlockVector rMinPoint = region.getMinimumPoint();
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BlockVector rMaxPoint = region.getMaximumPoint();
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// Check whether the region is outside the min and max vector
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if ((rMinPoint.getBlockX() < min.getBlockX() && rMaxPoint.getBlockX() < min.getBlockX())
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|| (rMinPoint.getBlockX() > max.getBlockX() && rMaxPoint.getBlockX() > max.getBlockX())
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&& ((rMinPoint.getBlockY() < min.getBlockY() && rMaxPoint.getBlockY() < min.getBlockY())
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|| (rMinPoint.getBlockY() > max.getBlockY() && rMaxPoint.getBlockY() > max.getBlockY()))
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&& ((rMinPoint.getBlockZ() < min.getBlockZ() && rMaxPoint.getBlockZ() < min.getBlockZ())
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|| (rMinPoint.getBlockZ() > max.getBlockZ() && rMaxPoint.getBlockZ() > max.getBlockZ())) ) {
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intersectingRegions.add(regions.get(i));
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continue;
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}
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// Check whether the regions points are inside the other region
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for (i2 = 0; i < numPoints; i++) {
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Vector pt = new Vector(points.get(i2).getBlockX(), minY, points.get(i2).getBlockZ());
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Vector pt2 = new Vector(points.get(i2).getBlockX(), maxY, points.get(i2).getBlockZ());
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if (region.contains(pt) || region.contains(pt2)) {
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intersectingRegions.add(regions.get(i));
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continue;
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}
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}
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// Check whether the other regions points are inside the current region
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if (region.getTypeName() == "polygon") {
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for (i2 = 0; i < ((ProtectedPolygonalRegion)region).getPoints().size(); i++) {
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BlockVector2D pt2Dr = ((ProtectedPolygonalRegion)region).getPoints().get(i2);
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int minYr = ((ProtectedPolygonalRegion)region).minY;
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int maxYr = ((ProtectedPolygonalRegion)region).maxY;
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Vector ptr = new Vector(pt2Dr.getBlockX(), minYr, pt2Dr.getBlockZ());
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Vector ptr2 = new Vector(pt2Dr.getBlockX(), maxYr, pt2Dr.getBlockZ());
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if (this.contains(ptr) || this.contains(ptr2)) {
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intersectingRegions.add(regions.get(i));
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continue;
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}
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}
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} else if (region.getTypeName() == "cuboid") {
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BlockVector ptcMin = region.getMinimumPoint();
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BlockVector ptcMax = region.getMaximumPoint();
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if (this.contains(new Vector(ptcMin.getBlockX(), ptcMin.getBlockY(), ptcMin.getBlockZ()))
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|| this.contains(new Vector(ptcMin.getBlockX(), ptcMin.getBlockY(), ptcMax.getBlockZ()))
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|| this.contains(new Vector(ptcMin.getBlockX(), ptcMax.getBlockY(), ptcMax.getBlockZ()))
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|| this.contains(new Vector(ptcMin.getBlockX(), ptcMax.getBlockY(), ptcMin.getBlockZ()))
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|| this.contains(new Vector(ptcMax.getBlockX(), ptcMax.getBlockY(), ptcMax.getBlockZ()))
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|| this.contains(new Vector(ptcMax.getBlockX(), ptcMax.getBlockY(), ptcMin.getBlockZ()))
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|| this.contains(new Vector(ptcMax.getBlockX(), ptcMin.getBlockY(), ptcMin.getBlockZ()))
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|| this.contains(new Vector(ptcMax.getBlockX(), ptcMin.getBlockY(), ptcMax.getBlockZ())) ) {
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intersectingRegions.add(regions.get(i));
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continue;
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}
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} else {
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throw new UnsupportedOperationException("Not supported yet.");
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}
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// Check whether the current regions edges collide with the regions edges
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boolean regionIsIntersecting = false;
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for (i2 = 0; i2 < numPoints; i2++) {
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boolean checkNextPoint = false;
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BlockVector2D currPoint = points.get(i2);
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BlockVector2D nextPoint;
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if (i2 == (numPoints - 1)) {
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nextPoint = points.get(0);
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} else {
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nextPoint = points.get(i2 + 1);
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}
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int currX = currPoint.getBlockX();
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int currZ = currPoint.getBlockZ();
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while (!checkNextPoint) {
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for(i3 = this.minY; i3 <= this.maxY; i3++) {
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if (region.contains(new Vector(currX, i3, currZ))) {
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intersectingRegions.add(regions.get(i));
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regionIsIntersecting = true;
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break;
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}
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}
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if (currX == nextPoint.getBlockX() || currZ == nextPoint.getBlockZ() || regionIsIntersecting) {
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checkNextPoint = true;
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}
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if (nextPoint.getBlockX() > currPoint.getBlockX()) {
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currX++;
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} else {
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currX--;
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}
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if (nextPoint.getBlockZ() > currPoint.getBlockZ()) {
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currZ++;
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} else {
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currZ--;
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}
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}
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if (regionIsIntersecting) {
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break;
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}
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}
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}
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return intersectingRegions;
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}
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