277 lines
9.3 KiB
Java
277 lines
9.3 KiB
Java
/*
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* This file is part of Applied Energistics 2.
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* Copyright (c) 2013 - 2014, AlgorithmX2, All rights reserved.
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*
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* Applied Energistics 2 is free software: you can redistribute it and/or modify
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* it under the terms of the GNU Lesser General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* Applied Energistics 2 is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public License
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* along with Applied Energistics 2. If not, see <http://www.gnu.org/licenses/lgpl>.
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*/
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package appeng.tile.misc;
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import java.io.IOException;
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import javax.annotation.Nonnull;
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import net.fabricmc.fabric.api.registry.FuelRegistry;
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import net.minecraft.block.BlockState;
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import net.minecraft.block.entity.BlockEntityType;
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import net.minecraft.item.Item;
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import net.minecraft.item.ItemStack;
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import net.minecraft.nbt.CompoundTag;
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import net.minecraft.network.PacketByteBuf;
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import net.minecraft.util.math.Direction;
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import alexiil.mc.lib.attributes.Simulation;
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import alexiil.mc.lib.attributes.item.FixedItemInv;
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import alexiil.mc.lib.attributes.item.LimitedFixedItemInv;
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import appeng.api.config.Actionable;
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import appeng.api.networking.IGridNode;
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import appeng.api.networking.energy.IEnergyGrid;
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import appeng.api.networking.ticking.IGridTickable;
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import appeng.api.networking.ticking.TickRateModulation;
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import appeng.api.networking.ticking.TickingRequest;
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import appeng.api.util.AECableType;
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import appeng.api.util.AEPartLocation;
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import appeng.api.util.DimensionalCoord;
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import appeng.core.settings.TickRates;
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import appeng.me.GridAccessException;
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import appeng.tile.grid.AENetworkInvBlockEntity;
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import appeng.tile.inventory.AppEngInternalInventory;
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import appeng.util.Platform;
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import appeng.util.inv.InvOperation;
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public class VibrationChamberBlockEntity extends AENetworkInvBlockEntity implements IGridTickable {
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public static final double POWER_PER_TICK = 5;
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public static final int MIN_BURN_SPEED = 20;
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public static final int MAX_BURN_SPEED = 200;
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public static final double DILATION_SCALING = 25.0; // x4 ~ 40 AE/t at max
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private final AppEngInternalInventory inv = new AppEngInternalInventory(this, 1);
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private final LimitedFixedItemInv invExt;
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private int burnSpeed = 100;
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private double burnTime = 0;
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private double maxBurnTime = 0;
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// client side..
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public boolean isOn;
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public VibrationChamberBlockEntity(BlockEntityType<?> tileEntityTypeIn) {
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super(tileEntityTypeIn);
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this.getProxy().setIdlePowerUsage(0);
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this.getProxy().setFlags();
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invExt = inv.createLimitedFixedInv();
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invExt.getAllRule().filterInserts(stack -> FuelRegistry.INSTANCE.get(stack.getItem()) != null)
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.filterExtracts(stack -> FuelRegistry.INSTANCE.get(stack.getItem()) == null);
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}
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@Override
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public AECableType getCableConnectionType(final AEPartLocation dir) {
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return AECableType.COVERED;
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}
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@Override
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protected boolean readFromStream(final PacketByteBuf data) throws IOException {
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final boolean c = super.readFromStream(data);
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final boolean wasOn = this.isOn;
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this.isOn = data.readBoolean();
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return wasOn != this.isOn || c; // TESR doesn't need updates!
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}
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@Override
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protected void writeToStream(final PacketByteBuf data) throws IOException {
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super.writeToStream(data);
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data.writeBoolean(this.getBurnTime() > 0);
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}
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@Override
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public CompoundTag toTag(final CompoundTag data) {
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super.toTag(data);
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data.putDouble("burnTime", this.getBurnTime());
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data.putDouble("maxBurnTime", this.getMaxBurnTime());
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data.putInt("burnSpeed", this.getBurnSpeed());
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return data;
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}
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@Override
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public void fromTag(BlockState state, final CompoundTag data) {
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super.fromTag(state, data);
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this.setBurnTime(data.getDouble("burnTime"));
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this.setMaxBurnTime(data.getDouble("maxBurnTime"));
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this.setBurnSpeed(data.getInt("burnSpeed"));
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}
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@Override
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protected FixedItemInv getItemHandlerForSide(@Nonnull Direction facing) {
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return this.invExt;
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}
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@Override
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public FixedItemInv getInternalInventory() {
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return this.inv;
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}
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@Override
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public void onChangeInventory(final FixedItemInv inv, final int slot, final InvOperation mc,
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final ItemStack removed, final ItemStack added) {
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if (this.getBurnTime() <= 0) {
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if (this.canEatFuel()) {
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try {
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this.getProxy().getTick().wakeDevice(this.getProxy().getNode());
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} catch (final GridAccessException e) {
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// wake up!
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}
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}
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}
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}
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private boolean canEatFuel() {
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final ItemStack is = this.inv.getInvStack(0);
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if (!is.isEmpty()) {
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final Integer newBurnTime = FuelRegistry.INSTANCE.get(is.getItem());
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if (newBurnTime != null && is.getCount() > 0) {
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return true;
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}
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}
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return false;
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}
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@Override
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public DimensionalCoord getLocation() {
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return new DimensionalCoord(this);
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}
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@Override
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public TickingRequest getTickingRequest(final IGridNode node) {
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if (this.getBurnTime() <= 0) {
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this.eatFuel();
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}
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return new TickingRequest(TickRates.VibrationChamber.getMin(), TickRates.VibrationChamber.getMax(),
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this.getBurnTime() <= 0, false);
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}
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@Override
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public TickRateModulation tickingRequest(final IGridNode node, final int ticksSinceLastCall) {
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if (this.getBurnTime() <= 0) {
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this.eatFuel();
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if (this.getBurnTime() > 0) {
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return TickRateModulation.URGENT;
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}
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this.setBurnSpeed(100);
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return TickRateModulation.SLEEP;
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}
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this.setBurnSpeed(Math.max(MIN_BURN_SPEED, Math.min(this.getBurnSpeed(), MAX_BURN_SPEED)));
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final double dilation = this.getBurnSpeed() / DILATION_SCALING;
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double timePassed = ticksSinceLastCall * dilation;
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this.setBurnTime(this.getBurnTime() - timePassed);
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if (this.getBurnTime() < 0) {
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timePassed += this.getBurnTime();
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this.setBurnTime(0);
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}
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try {
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final IEnergyGrid grid = this.getProxy().getEnergy();
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final double newPower = timePassed * POWER_PER_TICK;
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final double overFlow = grid.injectPower(newPower, Actionable.SIMULATE);
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// burn the over flow.
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grid.injectPower(Math.max(0.0, newPower - overFlow), Actionable.MODULATE);
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if (overFlow > 0) {
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this.setBurnSpeed(this.getBurnSpeed() - ticksSinceLastCall);
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} else {
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this.setBurnSpeed(this.getBurnSpeed() + ticksSinceLastCall);
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}
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this.setBurnSpeed(Math.max(MIN_BURN_SPEED, Math.min(this.getBurnSpeed(), MAX_BURN_SPEED)));
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return overFlow > 0 ? TickRateModulation.SLOWER : TickRateModulation.FASTER;
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} catch (final GridAccessException e) {
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this.setBurnSpeed(this.getBurnSpeed() - ticksSinceLastCall);
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this.setBurnSpeed(Math.max(MIN_BURN_SPEED, Math.min(this.getBurnSpeed(), MAX_BURN_SPEED)));
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return TickRateModulation.SLOWER;
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}
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}
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private void eatFuel() {
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final ItemStack is = this.inv.getInvStack(0);
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if (!is.isEmpty()) {
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final Integer newBurnTime = FuelRegistry.INSTANCE.get(is.getItem());
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if (newBurnTime != null && is.getCount() > 0) {
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this.setBurnTime(this.getBurnTime() + newBurnTime);
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this.setMaxBurnTime(this.getBurnTime());
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final Item fuelItem = is.getItem();
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is.decrement(1);
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if (is.isEmpty()) {
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this.inv.setInvStack(0, new ItemStack(fuelItem.getRecipeRemainder()), Simulation.ACTION);
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} else {
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this.inv.setInvStack(0, is, Simulation.ACTION);
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}
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this.saveChanges();
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}
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}
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if (this.getBurnTime() > 0) {
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try {
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this.getProxy().getTick().wakeDevice(this.getProxy().getNode());
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} catch (final GridAccessException e) {
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// gah!
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}
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}
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// state change
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if ((!this.isOn && this.getBurnTime() > 0) || (this.isOn && this.getBurnTime() <= 0)) {
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this.isOn = this.getBurnTime() > 0;
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this.markForUpdate();
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if (this.hasWorld()) {
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Platform.notifyBlocksOfNeighbors(this.world, this.pos);
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}
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}
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}
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public int getBurnSpeed() {
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return this.burnSpeed;
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}
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private void setBurnSpeed(final int burnSpeed) {
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this.burnSpeed = burnSpeed;
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}
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public double getMaxBurnTime() {
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return this.maxBurnTime;
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}
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private void setMaxBurnTime(final double maxBurnTime) {
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this.maxBurnTime = maxBurnTime;
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}
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public double getBurnTime() {
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return this.burnTime;
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}
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private void setBurnTime(final double burnTime) {
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this.burnTime = burnTime;
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}
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}
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