350 lines
No EOL
15 KiB
Java
350 lines
No EOL
15 KiB
Java
package biomesoplenty.blocks;
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import java.util.ArrayList;
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import java.util.List;
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import java.util.Random;
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import net.minecraft.block.Block;
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import net.minecraft.block.BlockLeavesBase;
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import net.minecraft.block.material.Material;
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import net.minecraft.client.renderer.texture.IconRegister;
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import net.minecraft.creativetab.CreativeTabs;
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import net.minecraft.item.ItemStack;
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import net.minecraft.util.Icon;
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import net.minecraft.world.ColorizerFoliage;
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import net.minecraft.world.IBlockAccess;
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import net.minecraft.world.World;
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import net.minecraftforge.common.IShearable;
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import biomesoplenty.BiomesOPlenty;
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import biomesoplenty.api.Blocks;
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import biomesoplenty.asm.smoothing.BOPBiomeTransitionSmoothing;
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import cpw.mods.fml.common.Loader;
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import cpw.mods.fml.relauncher.Side;
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import cpw.mods.fml.relauncher.SideOnly;
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public class BlockBOPColorizedLeaves extends BlockLeavesBase implements IShearable
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{
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private static final String[] leaves = new String[] {"acacia", "mangrove", "palm", "redwood", "willow", "pine"};
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private Icon[][] textures;
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int[] adjacentTreeBlocks;
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public BlockBOPColorizedLeaves(int blockID)
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{
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super(blockID, Material.leaves, false);
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setBurnProperties(this.blockID, 30, 60);
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this.setTickRandomly(true);
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setHardness(0.2F);
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setLightOpacity(1);
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setStepSound(Block.soundGrassFootstep);
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this.setCreativeTab(BiomesOPlenty.tabBiomesOPlenty);
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}
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@Override
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public void registerIcons(IconRegister iconRegister)
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{
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textures = new Icon[3][leaves.length];
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if(Loader.isModLoaded("BetterGrassAndLeavesMod"))
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for (int i = 0; i < leaves.length; ++i)
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{
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textures[0][i] = iconRegister.registerIcon("biomesoplenty:leaves_" + leaves[i] + "_round");
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textures[1][i] = iconRegister.registerIcon("biomesoplenty:leaves_" + leaves[i] + "_fast");
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textures[2][i] = iconRegister.registerIcon("biomesoplenty:better_leaves_" + leaves[i]);
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}
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else
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for (int i = 0; i < leaves.length; ++i)
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{
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textures[0][i] = iconRegister.registerIcon("biomesoplenty:leaves_" + leaves[i] + "_fancy");
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textures[1][i] = iconRegister.registerIcon("biomesoplenty:leaves_" + leaves[i] + "_fast");
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}
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}
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public Icon getIconBetterLeaves(int metadata, float randomIndex)
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{
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return textures[2][getTypeFromMeta(metadata)];
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}
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public Icon getIconFallingLeaves(int metadata)
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{
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return textures[1][getTypeFromMeta(metadata)];
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}
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@Override
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public int getBlockColor()
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{
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double temperature = 0.5D;
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double humidity = 1.0D;
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return ColorizerFoliage.getFoliageColor(temperature, humidity);
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}
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@Override
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public int getRenderColor(int par1)
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{
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switch (par1)
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{
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case 0:
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return ColorizerFoliage.getFoliageColorBirch();
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case 3:
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return ColorizerFoliage.getFoliageColorPine();
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default:
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return ColorizerFoliage.getFoliageColorBasic();
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}
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}
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@Override
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public int colorMultiplier(IBlockAccess par1IBlockAccess, int par2, int par3, int par4)
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{
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return BOPBiomeTransitionSmoothing.getLeavesColourMultiplier(par1IBlockAccess, par2, par3, par4);
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}
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@Override
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public Icon getIcon(int side, int meta)
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{
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return textures[(!isOpaqueCube() ? 0 : 1)][getTypeFromMeta(meta)];
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}
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@Override
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public boolean isOpaqueCube()
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{
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return Block.leaves.isOpaqueCube();
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}
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@Override
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@SideOnly(Side.CLIENT)
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@SuppressWarnings({ "rawtypes", "unchecked" })
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public void getSubBlocks(int blockID, CreativeTabs creativeTabs, List list) {
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for (int i = 0; i < textures[0].length; ++i) {
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list.add(new ItemStack(blockID, 1, i));
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}
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}
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@Override
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@SideOnly(Side.CLIENT)
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public void randomDisplayTick(World world, int x, int y, int z, Random random)
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{
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if (world.canLightningStrikeAt(x, y + 1, z) && !world.doesBlockHaveSolidTopSurface(x, y - 1, z) && random.nextInt(15) == 1)
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{
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double d0 = x + random.nextFloat();
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double d1 = y - 0.05D;
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double d2 = z + random.nextFloat();
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world.spawnParticle("dripWater", d0, d1, d2, 0.0D, 0.0D, 0.0D);
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}
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super.randomDisplayTick(world, x, y, z, random);
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}
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@Override
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public void breakBlock(World world, int x, int y, int z, int par5, int par6)
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{
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byte radius = 1;
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int bounds = radius + 1;
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if (world.checkChunksExist(x - bounds, y - bounds, z - bounds, x + bounds, y + bounds, z + bounds)) {
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for (int i = -radius; i <= radius; ++i) {
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for (int j = -radius; j <= radius; ++j) {
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for (int k = -radius; k <= radius; ++k)
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{
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int blockID = world.getBlockId(x + i, y + j, z + k);
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if (Block.blocksList[blockID] != null) {
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Block.blocksList[blockID].beginLeavesDecay(world, x + i, y + j, z + k);
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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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@Override
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public void updateTick(World world, int x, int y, int z, Random random)
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{
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if (world.isRemote)
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return;
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int meta = world.getBlockMetadata(x, y, z);
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if ((meta & 8) != 0/* && (meta & 4) == 0*/)
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{
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byte b0 = 4;
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int i1 = b0 + 1;
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byte b1 = 32;
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int j1 = b1 * b1;
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int k1 = b1 / 2;
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if (adjacentTreeBlocks == null)
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{
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adjacentTreeBlocks = new int[b1 * b1 * b1];
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}
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int l1;
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if (world.checkChunksExist(x - i1, y - i1, z - i1, x + i1, y + i1, z + i1))
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{
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int i2;
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int j2;
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int k2;
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for (l1 = -b0; l1 <= b0; ++l1)
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{
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for (i2 = -b0; i2 <= b0; ++i2)
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{
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for (j2 = -b0; j2 <= b0; ++j2)
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{
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k2 = world.getBlockId(x + l1, y + i2, z + j2);
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Block block = Block.blocksList[k2];
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if (block != null && block.canSustainLeaves(world, x + l1, y + i2, z + j2))
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{
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adjacentTreeBlocks[(l1 + k1) * j1 + (i2 + k1) * b1 + j2 + k1] = 0;
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}
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else if (block != null && block.isLeaves(world, x + l1, y + i2, z + j2))
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{
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adjacentTreeBlocks[(l1 + k1) * j1 + (i2 + k1) * b1 + j2 + k1] = -2;
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}
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else
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{
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adjacentTreeBlocks[(l1 + k1) * j1 + (i2 + k1) * b1 + j2 + k1] = -1;
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}
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}
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}
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}
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for (l1 = 1; l1 <= 4; ++l1)
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{
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for (i2 = -b0; i2 <= b0; ++i2)
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{
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for (j2 = -b0; j2 <= b0; ++j2)
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{
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for (k2 = -b0; k2 <= b0; ++k2)
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{
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if (adjacentTreeBlocks[(i2 + k1) * j1 + (j2 + k1) * b1 + k2 + k1] == l1 - 1)
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{
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if (adjacentTreeBlocks[(i2 + k1 - 1) * j1 + (j2 + k1) * b1 + k2 + k1] == -2)
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{
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adjacentTreeBlocks[(i2 + k1 - 1) * j1 + (j2 + k1) * b1 + k2 + k1] = l1;
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}
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if (adjacentTreeBlocks[(i2 + k1 + 1) * j1 + (j2 + k1) * b1 + k2 + k1] == -2)
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{
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adjacentTreeBlocks[(i2 + k1 + 1) * j1 + (j2 + k1) * b1 + k2 + k1] = l1;
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}
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if (adjacentTreeBlocks[(i2 + k1) * j1 + (j2 + k1 - 1) * b1 + k2 + k1] == -2)
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{
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adjacentTreeBlocks[(i2 + k1) * j1 + (j2 + k1 - 1) * b1 + k2 + k1] = l1;
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}
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if (adjacentTreeBlocks[(i2 + k1) * j1 + (j2 + k1 + 1) * b1 + k2 + k1] == -2)
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{
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adjacentTreeBlocks[(i2 + k1) * j1 + (j2 + k1 + 1) * b1 + k2 + k1] = l1;
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}
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if (adjacentTreeBlocks[(i2 + k1) * j1 + (j2 + k1) * b1 + (k2 + k1 - 1)] == -2)
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{
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adjacentTreeBlocks[(i2 + k1) * j1 + (j2 + k1) * b1 + (k2 + k1 - 1)] = l1;
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}
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if (adjacentTreeBlocks[(i2 + k1) * j1 + (j2 + k1) * b1 + k2 + k1 + 1] == -2)
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{
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adjacentTreeBlocks[(i2 + k1) * j1 + (j2 + k1) * b1 + k2 + k1 + 1] = l1;
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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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l1 = adjacentTreeBlocks[k1 * j1 + k1 * b1 + k1];
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if (l1 >= 0)
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{
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world.setBlockMetadataWithNotify(x, y, z, meta & -9, 4);
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}
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else
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{
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this.removeLeaves(world, x, y, z);
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}
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}
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}
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private void removeLeaves(World world, int x, int y, int z)
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{
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this.dropBlockAsItem(world, x, y, z, world.getBlockMetadata(x, y, z), 0);
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world.setBlockToAir(x, y, z);
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}
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@Override
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public int idDropped(int par1, Random par2Random, int par3)
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{
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return Blocks.colorizedSaplings.get().blockID;
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}
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@Override
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public int damageDropped(int meta)
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{
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return getTypeFromMeta(meta);
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}
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@Override
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public int quantityDropped(Random random)
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{
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return random.nextInt(20) == 0 ? 1 : 0;
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}
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@Override
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public boolean isShearable(ItemStack item, World world, int x, int y, int z)
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{
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return true;
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}
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@Override
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public ArrayList<ItemStack> onSheared(ItemStack item, World world, int x, int y, int z, int fortune)
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{
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ArrayList<ItemStack> ret = new ArrayList<ItemStack>();
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ret.add(new ItemStack(this, 1, getTypeFromMeta(world.getBlockMetadata(x, y, z))));
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return ret;
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}
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public String getLeafType(int meta)
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{
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return leaves[getTypeFromMeta(meta)];
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}
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private static int getTypeFromMeta(int meta)
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{
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meta = meta & 7;
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if (meta < 0 || meta >= leaves.length) {
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meta = 0;
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}
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return meta;
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}
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@SideOnly(Side.CLIENT)
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public void setGraphicsLevel(boolean par1)
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{
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graphicsLevel = par1;
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}
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@Override
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public boolean shouldSideBeRendered(IBlockAccess par1IBlockAccess, int par2, int par3, int par4, int par5)
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{
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return true;
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}
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@Override
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public void beginLeavesDecay(World world, int x, int y, int z)
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{
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world.setBlockMetadataWithNotify(x, y, z, world.getBlockMetadata(x, y, z) | 8, 4);
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}
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@Override
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public boolean isLeaves(World world, int x, int y, int z)
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{
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return true;
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}
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} |