db7121454a
1792 errors. A good night's work, I think.
434 lines
10 KiB
Java
434 lines
10 KiB
Java
package mekanism.common.tile;
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import java.util.ArrayList;
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import mekanism.api.Coord4D;
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import mekanism.api.gas.Gas;
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import mekanism.api.gas.GasRegistry;
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import mekanism.api.gas.GasStack;
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import mekanism.api.gas.GasTank;
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import mekanism.api.gas.GasTransmission;
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import mekanism.api.gas.IGasHandler;
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import mekanism.api.gas.IGasItem;
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import mekanism.api.gas.ITubeConnection;
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import mekanism.client.sound.IHasSound;
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import mekanism.common.IActiveState;
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import mekanism.common.IRedstoneControl;
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import mekanism.common.Mekanism;
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import mekanism.common.PacketHandler;
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import mekanism.common.PacketHandler.Transmission;
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import mekanism.common.block.BlockMachine.MachineType;
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import mekanism.common.network.PacketTileEntity;
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import mekanism.common.recipe.RecipeHandler;
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import mekanism.common.recipe.RecipeHandler.Recipe;
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import mekanism.common.util.ChargeUtils;
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import mekanism.common.util.InventoryUtils;
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import mekanism.common.util.MekanismUtils;
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import net.minecraft.item.ItemStack;
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import net.minecraft.nbt.NBTTagCompound;
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import net.minecraft.tileentity.TileEntity;
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import net.minecraftforge.common.util.ForgeDirection;
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import com.google.common.io.ByteArrayDataInput;
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public class TileEntityChemicalDissolutionChamber extends TileEntityElectricBlock implements IActiveState, ITubeConnection, IRedstoneControl, IHasSound, IGasHandler
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{
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public GasTank injectTank = new GasTank(MAX_GAS);
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public GasTank outputTank = new GasTank(MAX_GAS);
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public static final int MAX_GAS = 10000;
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public static final int INJECT_USAGE = 1;
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public int updateDelay;
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public int gasOutput = 16;
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public boolean isActive;
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public boolean clientActive;
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public double prevEnergy;
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public int operatingTicks = 0;
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public int TICKS_REQUIRED = 100;
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public final double ENERGY_USAGE = Mekanism.chemicalDissolutionChamberUsage;
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public RedstoneControl controlType = RedstoneControl.DISABLED;
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public TileEntityChemicalDissolutionChamber()
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{
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super("ChemicalDissolutionChamber", MachineType.CHEMICAL_DISSOLUTION_CHAMBER.baseEnergy);
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inventory = new ItemStack[4];
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}
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@Override
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public void onUpdate()
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{
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if(worldObj.isRemote)
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{
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Mekanism.proxy.registerSound(this);
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if(updateDelay > 0)
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{
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updateDelay--;
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if(updateDelay == 0 && clientActive != isActive)
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{
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isActive = clientActive;
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MekanismUtils.updateBlock(worldObj, xCoord, yCoord, zCoord);
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}
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}
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}
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if(!worldObj.isRemote)
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{
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if(updateDelay > 0)
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{
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updateDelay--;
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if(updateDelay == 0 && clientActive != isActive)
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{
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PacketHandler.sendPacket(Transmission.ALL_CLIENTS, new PacketTileEntity().setParams(Coord4D.get(this), getNetworkedData(new ArrayList())));
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}
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}
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ChargeUtils.discharge(3, this);
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if(inventory[0] != null && (injectTank.getGas() == null || injectTank.getStored() < injectTank.getMaxGas()))
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{
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injectTank.receive(GasTransmission.removeGas(inventory[0], GasRegistry.getGas("sulfuricAcid"), injectTank.getNeeded()), true);
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}
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if(inventory[2] != null && outputTank.getGas() != null)
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{
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outputTank.draw(GasTransmission.addGas(inventory[2], outputTank.getGas()), true);
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}
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boolean changed = false;
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if(canOperate() && getEnergy() >= ENERGY_USAGE && injectTank.getStored() >= INJECT_USAGE && MekanismUtils.canFunction(this))
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{
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setActive(true);
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setEnergy(getEnergy() - ENERGY_USAGE);
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if(operatingTicks < TICKS_REQUIRED)
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{
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operatingTicks++;
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injectTank.draw(INJECT_USAGE, true);
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}
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else {
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GasStack stack = RecipeHandler.getItemToGasOutput(inventory[1], true, Recipe.CHEMICAL_DISSOLUTION_CHAMBER.get());
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outputTank.receive(stack, true);
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injectTank.draw(INJECT_USAGE, true);
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operatingTicks = 0;
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if(inventory[1].stackSize <= 0)
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{
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inventory[1] = null;
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}
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onInventoryChanged();
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}
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}
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else {
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if(prevEnergy >= getEnergy())
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{
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changed = true;
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setActive(false);
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}
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}
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if(changed && !canOperate())
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{
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operatingTicks = 0;
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}
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prevEnergy = getEnergy();
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if(outputTank.getGas() != null)
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{
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GasStack toSend = new GasStack(outputTank.getGas().getGas(), Math.min(outputTank.getStored(), gasOutput));
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outputTank.draw(GasTransmission.emitGasToNetwork(toSend, this, MekanismUtils.getRight(facing)), true);
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TileEntity tileEntity = Coord4D.get(this).getFromSide(MekanismUtils.getRight(facing)).getTileEntity(worldObj);
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if(tileEntity instanceof IGasHandler)
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{
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if(((IGasHandler)tileEntity).canReceiveGas(MekanismUtils.getRight(facing).getOpposite(), outputTank.getGas().getGas()))
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{
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outputTank.draw(((IGasHandler)tileEntity).receiveGas(MekanismUtils.getRight(facing).getOpposite(), toSend), true);
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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 boolean isItemValidForSlot(int slotID, ItemStack itemstack)
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{
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if(slotID == 1)
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{
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return RecipeHandler.getItemToGasOutput(itemstack, false, Recipe.CHEMICAL_DISSOLUTION_CHAMBER.get()) != null;
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}
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else if(slotID == 3)
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{
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return ChargeUtils.canBeDischarged(itemstack);
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}
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return false;
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}
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@Override
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public boolean canExtractItem(int slotID, ItemStack itemstack, int side)
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{
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if(slotID == 2)
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{
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return itemstack != null && itemstack.getItem() instanceof IGasItem && ((IGasItem)itemstack.getItem()).canProvideGas(itemstack, null);
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}
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return false;
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}
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@Override
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public int[] getAccessibleSlotsFromSide(int side)
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{
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if(side == MekanismUtils.getLeft(facing).ordinal() || side == 1)
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{
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return new int[] {1};
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}
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else if(side == 0)
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{
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return new int[] {0};
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}
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else if(side == MekanismUtils.getRight(facing).ordinal())
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{
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return new int[] {2};
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}
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return InventoryUtils.EMPTY;
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}
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public int getScaledProgress(int i)
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{
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return operatingTicks*i / TICKS_REQUIRED;
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}
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public double getScaledProgress()
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{
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return ((double)operatingTicks) / ((double)TICKS_REQUIRED);
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}
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public boolean canOperate()
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{
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if(inventory[1] == null)
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{
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return false;
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}
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GasStack stack = RecipeHandler.getItemToGasOutput(inventory[1], false, Recipe.CHEMICAL_DISSOLUTION_CHAMBER.get());
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if(stack == null || (outputTank.getGas() != null && (outputTank.getGas().getGas() != stack.getGas() || outputTank.getNeeded() < stack.amount)))
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{
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return false;
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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 handlePacketData(ByteArrayDataInput dataStream)
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{
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super.handlePacketData(dataStream);
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isActive = dataStream.readBoolean();
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controlType = RedstoneControl.values()[dataStream.readInt()];
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operatingTicks = dataStream.readInt();
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if(dataStream.readBoolean())
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{
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injectTank.setGas(new GasStack(GasRegistry.getGas(dataStream.readInt()), dataStream.readInt()));
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}
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else {
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injectTank.setGas(null);
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}
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if(dataStream.readBoolean())
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{
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outputTank.setGas(new GasStack(GasRegistry.getGas(dataStream.readInt()), dataStream.readInt()));
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}
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else {
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outputTank.setGas(null);
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}
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MekanismUtils.updateBlock(worldObj, xCoord, yCoord, zCoord);
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}
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@Override
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public ArrayList getNetworkedData(ArrayList data)
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{
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super.getNetworkedData(data);
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data.add(isActive);
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data.add(controlType.ordinal());
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data.add(operatingTicks);
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if(injectTank.getGas() != null)
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{
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data.add(true);
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data.add(injectTank.getGas().getGas().getID());
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data.add(injectTank.getStored());
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}
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else {
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data.add(false);
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}
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if(outputTank.getGas() != null)
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{
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data.add(true);
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data.add(outputTank.getGas().getGas().getID());
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data.add(outputTank.getStored());
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}
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else {
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data.add(false);
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}
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return data;
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}
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@Override
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public void readFromNBT(NBTTagCompound nbtTags)
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{
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super.readFromNBT(nbtTags);
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isActive = nbtTags.getBoolean("isActive");
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controlType = RedstoneControl.values()[nbtTags.getInteger("controlType")];
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operatingTicks = nbtTags.getInteger("operatingTicks");
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injectTank.read(nbtTags.getCompoundTag("injectTank"));
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outputTank.read(nbtTags.getCompoundTag("gasTank"));
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}
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@Override
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public void writeToNBT(NBTTagCompound nbtTags)
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{
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super.writeToNBT(nbtTags);
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nbtTags.setBoolean("isActive", isActive);
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nbtTags.setInteger("controlType", controlType.ordinal());
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nbtTags.setInteger("operatingTicks", operatingTicks);
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nbtTags.setTag("injectTank", injectTank.write(new NBTTagCompound()));
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nbtTags.setTag("gasTank", outputTank.write(new NBTTagCompound()));
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}
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@Override
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public boolean canSetFacing(int i)
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{
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return i != 0 && i != 1;
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}
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public int getScaledInjectGasLevel(int i)
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{
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return injectTank.getGas() != null ? injectTank.getStored()*i / MAX_GAS : 0;
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}
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public int getScaledOutputGasLevel(int i)
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{
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return outputTank.getGas() != null ? outputTank.getStored()*i / MAX_GAS : 0;
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}
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@Override
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public void setActive(boolean active)
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{
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isActive = active;
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if(clientActive != active && updateDelay == 0)
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{
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PacketHandler.sendPacket(Transmission.ALL_CLIENTS, new PacketTileEntity().setParams(Coord4D.get(this), getNetworkedData(new ArrayList())));
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updateDelay = 10;
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clientActive = active;
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}
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}
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@Override
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public boolean getActive()
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{
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return isActive;
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}
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@Override
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public boolean renderUpdate()
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{
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return false;
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}
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@Override
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public boolean lightUpdate()
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{
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return true;
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}
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@Override
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public boolean canTubeConnect(ForgeDirection side)
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{
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return side == MekanismUtils.getLeft(facing) || side == MekanismUtils.getRight(facing);
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}
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@Override
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public RedstoneControl getControlType()
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{
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return controlType;
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}
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@Override
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public void setControlType(RedstoneControl type)
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{
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controlType = type;
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MekanismUtils.saveChunk(this);
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}
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@Override
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public String getSoundPath()
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{
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return "ChemicalDissolutionChamber.ogg";
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}
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@Override
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public float getVolumeMultiplier()
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{
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return 1;
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}
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@Override
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public int receiveGas(ForgeDirection side, GasStack stack)
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{
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if(canReceiveGas(side, stack.getGas()))
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{
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return injectTank.receive(stack, true);
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}
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return 0;
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}
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@Override
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public GasStack drawGas(ForgeDirection side, int amount)
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{
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return null;
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}
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@Override
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public boolean canReceiveGas(ForgeDirection side, Gas type)
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{
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return side == MekanismUtils.getLeft(facing) && type == GasRegistry.getGas("sulfuricAcid");
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}
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@Override
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public boolean canDrawGas(ForgeDirection side, Gas type)
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{
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return false;
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}
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}
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