302 lines
11 KiB
Java
302 lines
11 KiB
Java
/*
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* This file is part of BlueMap, licensed under the MIT License (MIT).
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*
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* Copyright (c) Blue (Lukas Rieger) <https://bluecolored.de>
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* Copyright (c) contributors
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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*/
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package de.bluecolored.bluemap.core.world.mca;
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import com.flowpowered.math.vector.Vector2i;
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import com.flowpowered.math.vector.Vector3i;
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import com.github.benmanes.caffeine.cache.Caffeine;
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import com.github.benmanes.caffeine.cache.LoadingCache;
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import de.bluecolored.bluemap.api.debug.DebugDump;
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import de.bluecolored.bluemap.core.BlueMap;
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import de.bluecolored.bluemap.core.logger.Logger;
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import de.bluecolored.bluemap.core.resources.datapack.DataPack;
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import de.bluecolored.bluemap.core.util.Grid;
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import de.bluecolored.bluemap.core.util.Key;
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import de.bluecolored.bluemap.core.util.Vector2iCache;
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import de.bluecolored.bluemap.core.world.Chunk;
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import de.bluecolored.bluemap.core.world.DimensionType;
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import de.bluecolored.bluemap.core.world.Region;
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import de.bluecolored.bluemap.core.world.World;
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import de.bluecolored.bluemap.core.world.mca.chunk.ChunkLoader;
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import de.bluecolored.bluemap.core.world.mca.data.LevelData;
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import de.bluecolored.bluemap.core.world.mca.region.RegionType;
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import lombok.Getter;
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import lombok.ToString;
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import java.io.BufferedInputStream;
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import java.io.File;
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import java.io.IOException;
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import java.io.InputStream;
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import java.nio.file.Files;
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import java.nio.file.Path;
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import java.util.*;
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import java.util.concurrent.TimeUnit;
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import java.util.stream.Collectors;
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import java.util.zip.GZIPInputStream;
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@Getter
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@ToString
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@DebugDump
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public class MCAWorld implements World {
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private static final Grid CHUNK_GRID = new Grid(16);
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private static final Grid REGION_GRID = new Grid(32).multiply(CHUNK_GRID);
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private static final Vector2iCache VECTOR_2_I_CACHE = new Vector2iCache();
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private final String id;
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private final Path worldFolder;
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private final Key dimension;
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private final LevelData levelData;
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private final DataPack dataPack;
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private final DimensionType dimensionType;
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private final Vector3i spawnPoint;
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private final Path dimensionFolder;
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private final Path regionFolder;
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private final ChunkLoader chunkLoader = new ChunkLoader(this);
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private final LoadingCache<Vector2i, Region> regionCache = Caffeine.newBuilder()
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.executor(BlueMap.THREAD_POOL)
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.maximumSize(32)
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.expireAfterWrite(10, TimeUnit.MINUTES)
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.build(this::loadRegion);
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private final LoadingCache<Vector2i, Chunk> chunkCache = Caffeine.newBuilder()
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.executor(BlueMap.THREAD_POOL)
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.maximumSize(10240) // 10 regions worth of chunks
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.expireAfterWrite(10, TimeUnit.MINUTES)
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.build(this::loadChunk);
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private MCAWorld(Path worldFolder, Key dimension, LevelData levelData, DataPack dataPack) {
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this.id = id(worldFolder, dimension);
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this.worldFolder = worldFolder;
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this.dimension = dimension;
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this.levelData = levelData;
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this.dataPack = dataPack;
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LevelData.Dimension dimensionData = levelData.getData().getWorldGenSettings().getDimensions().get(dimension.getFormatted());
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if (dimensionData == null) {
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if (DataPack.DIMENSION_OVERWORLD.equals(dimension)) dimensionData = new LevelData.Dimension(DataPack.DIMENSION_TYPE_OVERWORLD.getFormatted());
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else if (DataPack.DIMENSION_THE_NETHER.equals(dimension)) dimensionData = new LevelData.Dimension(DataPack.DIMENSION_TYPE_THE_NETHER.getFormatted());
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else if (DataPack.DIMENSION_THE_END.equals(dimension)) dimensionData = new LevelData.Dimension(DataPack.DIMENSION_TYPE_THE_END.getFormatted());
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else {
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Logger.global.logWarning("The level-data does not contain any dimension with the id '" + dimension +
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"', using fallback.");
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dimensionData = new LevelData.Dimension();
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}
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}
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DimensionType dimensionType = dataPack.getDimensionType(new Key(dimensionData.getType()));
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if (dimensionType == null) {
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Logger.global.logWarning("The data-pack for world '" + worldFolder +
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"' does not contain any dimension-type with the id '" + dimensionData.getType() + "', using fallback.");
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dimensionType = DimensionType.OVERWORLD;
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}
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this.dimensionType = dimensionType;
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this.spawnPoint = new Vector3i(
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levelData.getData().getSpawnX(),
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levelData.getData().getSpawnY(),
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levelData.getData().getSpawnZ()
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);
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this.dimensionFolder = resolveDimensionFolder(worldFolder, dimension);
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this.regionFolder = dimensionFolder.resolve("region");
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}
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@Override
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public String getName() {
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return levelData.getData().getLevelName();
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}
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@Override
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public Grid getChunkGrid() {
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return CHUNK_GRID;
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}
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@Override
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public Grid getRegionGrid() {
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return REGION_GRID;
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}
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@Override
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public Chunk getChunkAtBlock(int x, int z) {
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return getChunk(x >> 4, z >> 4);
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}
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@Override
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public Chunk getChunk(int x, int z) {
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return getChunk(VECTOR_2_I_CACHE.get(x, z));
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}
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private Chunk getChunk(Vector2i pos) {
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return chunkCache.get(pos);
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}
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@Override
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public Region getRegion(int x, int z) {
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return getRegion(VECTOR_2_I_CACHE.get(x, z));
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}
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private Region getRegion(Vector2i pos) {
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return regionCache.get(pos);
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}
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@Override
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public Collection<Vector2i> listRegions() {
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File[] regionFiles = getRegionFolder().toFile().listFiles();
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if (regionFiles == null) return Collections.emptyList();
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List<Vector2i> regions = new ArrayList<>(regionFiles.length);
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for (File file : regionFiles) {
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if (RegionType.forFileName(file.getName()) == null) continue;
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if (file.length() <= 0) continue;
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try {
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String[] filenameParts = file.getName().split("\\.");
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int rX = Integer.parseInt(filenameParts[1]);
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int rZ = Integer.parseInt(filenameParts[2]);
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regions.add(new Vector2i(rX, rZ));
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} catch (NumberFormatException ignore) {}
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}
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return regions;
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}
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@Override
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public void preloadRegionChunks(int x, int z) {
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try {
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getRegion(x, z).iterateAllChunks((cx, cz, chunk) -> {
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Vector2i chunkPos = VECTOR_2_I_CACHE.get(cx, cz);
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chunkCache.put(chunkPos, chunk);
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});
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} catch (IOException ex) {
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Logger.global.logDebug("Unexpected exception trying to load preload region (x:" + x + ", z:" + z + "):" + ex);
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}
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}
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@Override
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public void invalidateChunkCache() {
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regionCache.invalidateAll();
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chunkCache.invalidateAll();
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}
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@Override
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public void invalidateChunkCache(int x, int z) {
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regionCache.invalidate(VECTOR_2_I_CACHE.get(x >> 5, z >> 5));
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chunkCache.invalidate(VECTOR_2_I_CACHE.get(x, z));
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}
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@Override
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public void cleanUpChunkCache() {
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chunkCache.cleanUp();
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}
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private Region loadRegion(Vector2i regionPos) {
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return loadRegion(regionPos.getX(), regionPos.getY());
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}
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private Region loadRegion(int x, int z) {
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return RegionType.loadRegion(this, getRegionFolder(), x, z);
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}
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private Chunk loadChunk(Vector2i chunkPos) {
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return loadChunk(chunkPos.getX(), chunkPos.getY());
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}
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private Chunk loadChunk(int x, int z) {
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final int tries = 3;
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final int tryInterval = 1000;
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Exception loadException = null;
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for (int i = 0; i < tries; i++) {
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try {
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return getRegion(x >> 5, z >> 5)
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.loadChunk(x, z);
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} catch (IOException | RuntimeException e) {
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if (loadException != null) e.addSuppressed(loadException);
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loadException = e;
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if (i + 1 < tries) {
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try {
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Thread.sleep(tryInterval);
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} catch (InterruptedException ex) {
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Thread.currentThread().interrupt();
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break;
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}
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}
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}
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}
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Logger.global.logDebug("Unexpected exception trying to load chunk (x:" + x + ", z:" + z + "):" + loadException);
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return Chunk.EMPTY_CHUNK;
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}
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public static MCAWorld load(Path worldFolder, Key dimension) throws IOException, InterruptedException {
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// load level.dat
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Path levelFile = worldFolder.resolve("level.dat");
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InputStream levelFileIn = new GZIPInputStream(new BufferedInputStream(Files.newInputStream(levelFile)));
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LevelData levelData = MCAUtil.BLUENBT.read(levelFileIn, LevelData.class);
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// load datapacks
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DataPack dataPack = new DataPack();
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Path dataPackFolder = worldFolder.resolve("datapacks");
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if (Files.exists(dataPackFolder)) {
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List<Path> roots;
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try (var stream = Files.list(dataPackFolder)) {
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roots = stream
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.sorted(Comparator.reverseOrder())
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.collect(Collectors.toList());
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}
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for (Path root : roots) {
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dataPack.load(root);
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}
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}
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dataPack.bake();
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// create world
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return new MCAWorld(worldFolder, dimension, levelData, dataPack);
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}
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public static String id(Path worldFolder, Key dimension) {
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worldFolder = worldFolder.toAbsolutePath().normalize();
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Path workingDir = Path.of("").toAbsolutePath().normalize();
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if (worldFolder.startsWith(workingDir))
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worldFolder = workingDir.relativize(worldFolder);
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return "MCA#" + worldFolder + "#" + dimension.getFormatted();
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}
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public static Path resolveDimensionFolder(Path worldFolder, Key dimension) {
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if (DataPack.DIMENSION_OVERWORLD.equals(dimension)) return worldFolder;
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if (DataPack.DIMENSION_THE_NETHER.equals(dimension)) return worldFolder.resolve("DIM-1");
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if (DataPack.DIMENSION_THE_END.equals(dimension)) return worldFolder.resolve("DIM1");
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return worldFolder.resolve("dimensions").resolve(dimension.getNamespace()).resolve(dimension.getValue());
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}
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}
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