mirror of
https://github.com/IntellectualSites/PlotSquared.git
synced 2024-11-26 15:16:45 +01:00
Trying to make external generators easier to make.
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parent
e039bbd56a
commit
b1aa8fdd5e
@ -48,7 +48,7 @@ public class Copy extends SubCommand {
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final Location loc = plr.getLocation();
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final Plot plot1 = MainUtil.getPlot(loc);
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if (plot1 == null) {
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return !sendMessage(plr, C.NOT_IN_PLOT);
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return !MainUtil.sendMessage(plr, C.NOT_IN_PLOT);
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}
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if (!plot1.isAdded(plr.getUUID()) && !plr.hasPermission(Permissions.ADMIN)) {
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MainUtil.sendMessage(plr, C.NO_PLOT_PERMS);
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@ -61,12 +61,13 @@ public abstract class ClassicPlotManager extends SquarePlotManager {
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final int[] zl = new int[size];
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final PlotBlock[] bl = new PlotBlock[size];
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int i = 0;
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PseudoRandom random = new PseudoRandom();
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for (x = bottom.getX(); x <= (top.getX() - 1); x++) {
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for (int y = 1; y <= dpw.WALL_HEIGHT; y++) {
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xl[i] = x;
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zl[i] = z;
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yl[i] = y;
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bl[i] = blocks[PseudoRandom.random(blocks.length)];
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bl[i] = blocks[random.random(blocks.length)];
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i++;
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}
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}
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@ -76,7 +77,7 @@ public abstract class ClassicPlotManager extends SquarePlotManager {
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xl[i] = x;
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zl[i] = z;
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yl[i] = y;
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bl[i] = blocks[PseudoRandom.random(blocks.length)];
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bl[i] = blocks[random.random(blocks.length)];
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i++;
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}
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}
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@ -86,7 +87,7 @@ public abstract class ClassicPlotManager extends SquarePlotManager {
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xl[i] = x;
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zl[i] = z;
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yl[i] = y;
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bl[i] = blocks[PseudoRandom.random(blocks.length)];
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bl[i] = blocks[random.random(blocks.length)];
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i++;
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}
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}
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@ -96,7 +97,7 @@ public abstract class ClassicPlotManager extends SquarePlotManager {
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xl[i] = x;
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zl[i] = z;
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yl[i] = y;
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bl[i] = blocks[PseudoRandom.random(blocks.length)];
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bl[i] = blocks[random.random(blocks.length)];
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i++;
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}
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}
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@ -121,12 +122,13 @@ public abstract class ClassicPlotManager extends SquarePlotManager {
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int x, z;
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z = bottom.getZ();
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int i = 0;
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PseudoRandom random = new PseudoRandom();
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final int y = dpw.WALL_HEIGHT + 1;
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for (x = bottom.getX(); x <= (top.getX() - 1); x++) {
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xl[i] = x;
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zl[i] = z;
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yl[i] = y;
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bl[i] = blocks[PseudoRandom.random(blocks.length)];
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bl[i] = blocks[random.random(blocks.length)];
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i++;
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}
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x = top.getX();
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@ -134,7 +136,7 @@ public abstract class ClassicPlotManager extends SquarePlotManager {
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xl[i] = x;
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zl[i] = z;
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yl[i] = y;
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bl[i] = blocks[PseudoRandom.random(blocks.length)];
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bl[i] = blocks[random.random(blocks.length)];
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i++;
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}
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z = top.getZ();
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@ -142,7 +144,7 @@ public abstract class ClassicPlotManager extends SquarePlotManager {
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xl[i] = x;
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zl[i] = z;
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yl[i] = y;
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bl[i] = blocks[PseudoRandom.random(blocks.length)];
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bl[i] = blocks[random.random(blocks.length)];
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i++;
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}
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x = bottom.getX();
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@ -150,7 +152,7 @@ public abstract class ClassicPlotManager extends SquarePlotManager {
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xl[i] = x;
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zl[i] = z;
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yl[i] = y;
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bl[i] = blocks[PseudoRandom.random(blocks.length)];
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bl[i] = blocks[random.random(blocks.length)];
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i++;
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}
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BlockManager.setBlocks(plotworld.worldname, xl, yl, zl, bl);
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@ -31,11 +31,13 @@ import org.bukkit.Location;
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import org.bukkit.World;
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import org.bukkit.block.Biome;
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import org.bukkit.generator.BlockPopulator;
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import org.bukkit.generator.ChunkGenerator.BiomeGrid;
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import com.intellectualcrafters.plot.object.PlotGenerator;
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import com.intellectualcrafters.plot.object.PlotLoc;
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import com.intellectualcrafters.plot.object.PlotManager;
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import com.intellectualcrafters.plot.object.PlotWorld;
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import com.intellectualcrafters.plot.object.PseudoRandom;
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import com.intellectualcrafters.plot.object.RegionWrapper;
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import com.intellectualcrafters.plot.util.ChunkManager;
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@ -217,7 +219,7 @@ public class HybridGen extends PlotGenerator {
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* generator
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*/
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@Override
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public short[][] generateExtBlockSections(final World world, final Random random, final int cx, final int cz, final BiomeGrid biomes) {
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public short[][] generateChunk(final World world, RegionWrapper plot, final PseudoRandom random, final int cx, final int cz, final BiomeGrid biomes, final short[][] result) {
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if (this.doState) {
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final int prime = 13;
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int h = 1;
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@ -225,7 +227,6 @@ public class HybridGen extends PlotGenerator {
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h = (prime * h) + cz;
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this.state = h;
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}
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this.result = new short[this.maxY / 16][];
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if (this.plotworld.PLOT_BEDROCK) {
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for (short x = 0; x < 16; x++) {
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for (short z = 0; z < 16; z++) {
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@ -233,7 +234,6 @@ public class HybridGen extends PlotGenerator {
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}
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}
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}
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final RegionWrapper plot = ChunkManager.CURRENT_PLOT_CLEAR;
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if (plot != null) {
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final int X = cx << 4;
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final int Z = cz << 4;
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@ -20,16 +20,26 @@
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////////////////////////////////////////////////////////////////////////////////////////////////////
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package com.intellectualcrafters.plot.object;
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import java.util.HashMap;
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import java.util.List;
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import java.util.Map.Entry;
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import java.util.Random;
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import org.bukkit.World;
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import org.bukkit.block.Biome;
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import org.bukkit.generator.BlockPopulator;
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import org.bukkit.generator.ChunkGenerator;
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import com.intellectualcrafters.plot.PlotSquared;
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import com.intellectualcrafters.plot.util.ChunkManager;
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public abstract class PlotGenerator extends ChunkGenerator {
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private short[][] result;
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private int X;
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private int Z;
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private PseudoRandom random = new PseudoRandom();
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@Override
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public List<BlockPopulator> getDefaultPopulators(World world) {
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PlotSquared.loadWorld(world.getName(), this);
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@ -54,6 +64,80 @@ public abstract class PlotGenerator extends ChunkGenerator {
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return getPopulators(world.getName());
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}
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@Override
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public short[][] generateExtBlockSections(final World world, final Random r, final int cx, final int cz, final BiomeGrid biomes) {
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final int prime = 13;
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int h = 1;
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h = (prime * h) + cx;
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h = (prime * h) + cz;
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this.random.state = h;
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this.result = new short[256 / 16][];
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PlotWorld plotworld = PlotSquared.getPlotWorld(world.getName());
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Biome biome = Biome.valueOf(plotworld.PLOT_BIOME);
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if (ChunkManager.FORCE_PASTE) {
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X = cx << 4;
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Z = cz << 4;
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for (short x = 0; x < 16; x++) {
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for (short z = 0; z < 16; z++) {
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if (biomes != null) {
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biomes.setBiome(x, z, biome);
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}
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final PlotLoc loc = new PlotLoc((short) (X + x), (short) (Z + z));
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final HashMap<Short, Short> blocks = ChunkManager.GENERATE_BLOCKS.get(loc);
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for (final Entry<Short, Short> entry : blocks.entrySet()) {
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setBlock(x, entry.getKey(), z, entry.getValue());
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}
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}
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}
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return this.result;
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}
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this.result = generateChunk(world, ChunkManager.CURRENT_PLOT_CLEAR, random, cx, cz, biomes, result);
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if (ChunkManager.CURRENT_PLOT_CLEAR != null) {
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PlotLoc loc;
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for (Entry<PlotLoc, HashMap<Short, Short>> entry : ChunkManager.GENERATE_BLOCKS.entrySet()) {
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for (Entry<Short, Short> entry2 : entry.getValue().entrySet()) {
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loc = entry.getKey();
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setBlock(loc.x, entry2.getKey(), loc.z, entry2.getValue());
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}
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}
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}
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return result;
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}
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private void setBlock(final int x, final int y, final int z, final short blkid) {
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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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}
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public boolean contains(final RegionWrapper plot, final int x, final int z) {
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int xx = X + x;
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int zz = Z + z;
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return ((xx >= plot.minX) && (xx <= plot.maxX) && (zz >= plot.minZ) && (zz <= plot.maxZ));
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}
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/**
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* <b>random</b> is a optimized random number generator.<br>
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* - Change the state to have the same chunk random each time it generates<br>
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* <b>requiredRegion</b> If a plot is being regenerated, you are only required to generate content in this area<br>
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* - use the contains(RegionWrapper, x, z) method to check if the region contains a location<br>
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* - You can ignore this if you do not want to further optimize your generator<br>
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* - will be null if no restrictions are set<br>
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* <b>result</b> is the standard 2D block data array used for generation<br>
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* <b>biomes</b> is the standard BiomeGrid used for generation
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*
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* @param world
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* @param random
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* @param cx
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* @param cz
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* @param requiredRegion
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* @param biomes
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* @param result
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* @return
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*/
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public abstract short[][] generateChunk(final World world, RegionWrapper requiredRegion, final PseudoRandom random, final int cx, final int cz, final BiomeGrid biomes, final short[][] result);
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public abstract List<BlockPopulator> getPopulators(String world);
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public abstract void init(PlotWorld plotworld);
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@ -62,5 +146,4 @@ public abstract class PlotGenerator extends ChunkGenerator {
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public abstract PlotManager getPlotManager();
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}
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@ -0,0 +1,72 @@
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package com.intellectualcrafters.plot.object;
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import java.util.HashMap;
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import java.util.Random;
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import java.util.Map.Entry;
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import org.bukkit.Chunk;
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import org.bukkit.World;
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import org.bukkit.generator.BlockPopulator;
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import com.intellectualcrafters.plot.util.ChunkManager;
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import com.intellectualcrafters.plot.util.bukkit.BukkitUtil;
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public abstract class PlotPopulator extends BlockPopulator{
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private int X;
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private int Z;
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private World world;
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@Override
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public void populate(World world, Random rand, Chunk chunk) {
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this.world = world;
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this.X = chunk.getX() << 4;
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this.Z = chunk.getZ() << 4;
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if (ChunkManager.FORCE_PASTE) {
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for (short x = 0; x < 16; x++) {
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for (short z = 0; z < 16; z++) {
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final PlotLoc loc = new PlotLoc((short) (X + x), (short) (Z + z));
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final HashMap<Short, Byte> blocks = ChunkManager.GENERATE_DATA.get(loc);
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for (final Entry<Short, Byte> entry : blocks.entrySet()) {
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setBlock(x, entry.getKey(), z, entry.getValue());
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}
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}
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}
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return;
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}
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}
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public abstract void populate(World world, RegionWrapper requiredRegion, PseudoRandom random, int cx, int cz);
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/**
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* Set the id and data at a location (x, y, z) must be between [0,15], [0,255], [0,15]
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* @param x
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* @param y
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* @param z
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* @param id
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* @param data
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*/
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public void setBlock(int x, int y, int z, short id, byte data) {
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BukkitUtil.setBlock(world, X + x, y, Z + z, id, data);
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}
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/**
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* Set the data at a location (x, y, z) must be between [0,15], [0,255], [0,15]
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* @param x
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* @param y
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* @param z
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* @param data
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*/
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public void setBlock(int x, int y, int z, byte data) {
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world.getBlockAt(X + x, y, Z + z).setTypeId(data);
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}
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public boolean contains(final RegionWrapper plot, final int x, final int z) {
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int xx = X + x;
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int zz = Z + z;
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return ((xx >= plot.minX) && (xx <= plot.maxX) && (zz >= plot.minZ) && (zz <= plot.maxZ));
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}
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}
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@ -1,22 +1,22 @@
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package com.intellectualcrafters.plot.object;
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public class PseudoRandom {
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private static long state = 1;
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public long state = 1;
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public static long nextLong() {
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public long nextLong() {
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final long a = state;
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state = xorShift64(a);
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return a;
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}
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public static long xorShift64(long a) {
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public long xorShift64(long a) {
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a ^= (a << 21);
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a ^= (a >>> 35);
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a ^= (a << 4);
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return a;
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}
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public static int random(final int n) {
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public int random(final int n) {
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if (n == 1) {
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return 0;
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}
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@ -11,8 +11,11 @@ import com.intellectualcrafters.plot.object.PlotLoc;
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import com.intellectualcrafters.plot.object.RegionWrapper;
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public abstract class ChunkManager {
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public static ChunkManager manager = null;
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public static RegionWrapper CURRENT_PLOT_CLEAR = null;
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public static boolean FORCE_PASTE = false;
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public static HashMap<PlotLoc, HashMap<Short, Short>> GENERATE_BLOCKS = new HashMap<>();
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public static HashMap<PlotLoc, HashMap<Short, Byte>> GENERATE_DATA = new HashMap<>();
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