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https://github.com/IntellectualSites/PlotSquared.git
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async
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2335708e11
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package com.intellectualcrafters.plot.util.bukkit;
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import java.util.HashMap;
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import java.util.HashSet;
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import java.util.Iterator;
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import java.util.Map.Entry;
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import org.bukkit.Bukkit;
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import org.bukkit.Chunk;
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import org.bukkit.World;
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import com.intellectualcrafters.plot.util.TaskManager;
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public class DebugSetBlockQueue {
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private HashMap<Chunk, short[][]> blocks;
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private int allocate = 100;
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private volatile static HashMap<ChunkWrapper, short[][]> blocks;
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private volatile static int allocate = 50;
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private volatile static boolean running = false;
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private volatile static boolean locked = false;
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private volatile static HashSet<Runnable> runnables;
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public void allocate(int t) {
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this.allocate = t;
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public synchronized static void allocate(int t) {
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allocate = t;
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}
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public DebugSetBlockQueue(final Runnable whenDone) {
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blocks = new HashMap<>();
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TaskManager.index.increment();
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final int current = TaskManager.index.intValue();
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int task = TaskManager.runTaskRepeat(new Runnable() {
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@Override
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public void run() {
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if (blocks.size() == 0) {
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blocks = null;
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Bukkit.getScheduler().cancelTask(TaskManager.tasks.get(current));
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TaskManager.runTask(whenDone);
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return;
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}
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long start = System.currentTimeMillis() + allocate;
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Iterator<Entry<Chunk, short[][]>> i = blocks.entrySet().iterator();
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while (System.currentTimeMillis() < start && i.hasNext()) {
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Entry<Chunk, short[][]> n = i.next();
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i.remove();
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Chunk chunk = n.getKey();
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int X = chunk.getX() << 4;
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int Z = chunk.getZ() << 4;
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short[][] blocks = n.getValue();
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World world = chunk.getWorld();
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for (int j = 0; j < blocks.length; j++) {
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short[] blocksj = blocks[j];
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if (blocksj != null) {
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for (int k = 0; k < blocksj.length; k++) {
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short id = blocksj[k];
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if (id != 0) {
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final int y = (j << 4) + (k >> 8);
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final int a = (k - ((y & 0xF) << 8));
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final int z = (a >> 4);
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final int x = a - (z << 4);
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BukkitSetBlockManager.setBlockManager.set(world, X + x, y, Z + z, id, (byte) 0);
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public synchronized static void addNotify(Runnable whenDone) {
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if (runnables == null) {
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TaskManager.runTask(whenDone);
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}
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else {
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runnables.add(whenDone);
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}
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}
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public synchronized static void init() {
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if (blocks == null) {
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blocks = new HashMap<>();
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runnables = new HashSet<>();
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}
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if (!running) {
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TaskManager.index.increment();
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final int current = TaskManager.index.intValue();
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int task = TaskManager.runTaskRepeat(new Runnable() {
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@Override
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public void run() {
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if (locked) {
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return;
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}
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if (blocks.size() == 0) {
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Bukkit.getScheduler().cancelTask(TaskManager.tasks.get(current));
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for (Runnable runnable : runnables) {
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TaskManager.runTask(runnable);
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}
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runnables = null;
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blocks = null;
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running = false;
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return;
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}
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long start = System.currentTimeMillis() + allocate;
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Iterator<Entry<ChunkWrapper, short[][]>> i = blocks.entrySet().iterator();
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while (System.currentTimeMillis() < start && i.hasNext()) {
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if (locked) {
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return;
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}
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Entry<ChunkWrapper, short[][]> n = i.next();
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i.remove();
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ChunkWrapper chunk = n.getKey();
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int X = chunk.x << 4;
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int Z = chunk.z << 4;
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short[][] blocks = n.getValue();
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World world = chunk.world;
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for (int j = 0; j < blocks.length; j++) {
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short[] blocksj = blocks[j];
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if (blocksj != null) {
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for (int k = 0; k < blocksj.length; k++) {
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short id = blocksj[k];
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if (id != 0) {
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final int y = (j << 4) + (k >> 8);
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final int a = (k - ((y & 0xF) << 8));
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final int z = (a >> 4);
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final int x = a - (z << 4);
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BukkitSetBlockManager.setBlockManager.set(world, X + x, y, Z + z, id, (byte) 0);
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}
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}
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}
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}
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}
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}
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}
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}, 20);
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TaskManager.tasks.put(current, task);
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}, 5);
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TaskManager.tasks.put(current, task);
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running = true;
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}
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}
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public void setBlock(final World world, int x, final int y, int z, final short blkid) {
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public static void setBlock(final World world, int x, final int y, int z, final short blkid) {
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locked = true;
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if (!running) {
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init();
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}
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int X = x >> 4;
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int Z = z >> 4;
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x -= X << 4;
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z -= Z << 4;
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Chunk chunk = world.getChunkAt(X, Z);
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short[][] result = blocks.get(chunk);
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if (!blocks.containsKey(chunk)) {
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ChunkWrapper wrap = new ChunkWrapper(world, X, Z);
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short[][] result = blocks.get(wrap);
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if (!blocks.containsKey(wrap)) {
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result = new short[16][];
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blocks.put(chunk, result);
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blocks.put(wrap, result);
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}
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if (result[y >> 4] == null) {
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result[y >> 4] = new short[4096];
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}
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result[y >> 4][((y & 0xF) << 8) | (z << 4) | x] = blkid;
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locked = false;
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}
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public static class ChunkWrapper {
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final int x;
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final int z;
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final World world;
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public ChunkWrapper(World world, int x, int z) {
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this.world = world;
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this.x = x;
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this.z = z;
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}
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@Override
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public int hashCode() {
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int result;
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if (this.x >= 0) {
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if (this.z >= 0) {
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result = (this.x * this.x) + (3 * this.x) + (2 * this.x * this.z) + this.z + (this.z * this.z);
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} else {
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final int y1 = -this.z;
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result = (this.x * this.x) + (3 * this.x) + (2 * this.x * y1) + y1 + (y1 * y1) + 1;
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}
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} else {
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final int x1 = -this.x;
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if (this.z >= 0) {
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result = -((x1 * x1) + (3 * x1) + (2 * x1 * this.z) + this.z + (this.z * this.z));
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} else {
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final int y1 = -this.z;
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result = -((x1 * x1) + (3 * x1) + (2 * x1 * y1) + y1 + (y1 * y1) + 1);
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}
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}
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result = result * 31 + world.hashCode();
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return result;
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}
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@Override
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public boolean equals(Object obj) {
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if (this == obj) {
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return true;
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}
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if (obj == null) {
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return false;
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}
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if (getClass() != obj.getClass()) {
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return false;
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}
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final ChunkWrapper other = (ChunkWrapper) obj;
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return ((this.x == other.x) && (this.z == other.z) && (this.world.equals(other.world)));
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}
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}
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}
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