277 lines
6.8 KiB
Java
277 lines
6.8 KiB
Java
package mekanism.api;
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import java.util.Arrays;
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import java.util.Collection;
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import java.util.Collections;
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import java.util.HashSet;
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import java.util.Iterator;
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import java.util.List;
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import java.util.Set;
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import net.minecraft.tileentity.TileEntity;
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import net.minecraftforge.common.ForgeDirection;
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import net.minecraftforge.common.MinecraftForge;
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import net.minecraftforge.event.Event;
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import cpw.mods.fml.common.FMLCommonHandler;
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public class GasNetwork extends DynamicNetwork<IGasAcceptor, GasNetwork>
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{
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public GasNetwork(ITransmitter<GasNetwork>... varPipes)
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{
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transmitters.addAll(Arrays.asList(varPipes));
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register();
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}
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public GasNetwork(Collection<ITransmitter<GasNetwork>> collection)
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{
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transmitters.addAll(collection);
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register();
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}
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public GasNetwork(Set<GasNetwork> networks)
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{
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for(GasNetwork net : networks)
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{
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if(net != null)
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{
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addAllTransmitters(net.transmitters);
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net.deregister();
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}
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}
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refresh();
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register();
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}
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public int emit(int gasToSend, EnumGas transferType, TileEntity emitter)
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{
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List availableAcceptors = Arrays.asList(getAcceptors(transferType).toArray());
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Collections.shuffle(availableAcceptors);
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int prevSending = gasToSend;
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if(!availableAcceptors.isEmpty())
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{
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int divider = availableAcceptors.size();
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int remaining = gasToSend % divider;
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int sending = (gasToSend-remaining)/divider;
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for(Object obj : availableAcceptors)
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{
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if(obj instanceof IGasAcceptor && obj != emitter)
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{
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IGasAcceptor acceptor = (IGasAcceptor)obj;
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int currentSending = sending;
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if(remaining > 0)
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{
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currentSending++;
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remaining--;
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}
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gasToSend -= (currentSending - acceptor.transferGasToAcceptor(currentSending, transferType));
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}
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}
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}
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if(prevSending > gasToSend && FMLCommonHandler.instance().getEffectiveSide().isServer())
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{
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MinecraftForge.EVENT_BUS.post(new GasTransferEvent(this, transferType));
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}
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return gasToSend;
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}
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@Override
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public Set<IGasAcceptor> getAcceptors(Object... data)
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{
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EnumGas transferType = (EnumGas)data[0];
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Set<IGasAcceptor> toReturn = new HashSet<IGasAcceptor>();
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for(IGasAcceptor acceptor : possibleAcceptors)
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{
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if(acceptor.canReceiveGas(acceptorDirections.get(acceptor).getOpposite(), transferType))
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{
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if(!(acceptor instanceof IGasStorage) || (acceptor instanceof IGasStorage && (((IGasStorage)acceptor).getMaxGas(transferType) - ((IGasStorage)acceptor).getGas(transferType)) > 0))
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{
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toReturn.add(acceptor);
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}
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}
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}
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return toReturn;
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}
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@Override
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public void refresh()
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{
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Set<ITransmitter<GasNetwork>> iterTubes = (Set<ITransmitter<GasNetwork>>)transmitters.clone();
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Iterator<ITransmitter<GasNetwork>> it = iterTubes.iterator();
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possibleAcceptors.clear();
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acceptorDirections.clear();
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while(it.hasNext())
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{
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ITransmitter<GasNetwork> conductor = (ITransmitter<GasNetwork>)it.next();
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if(conductor == null || ((TileEntity)conductor).isInvalid())
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{
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it.remove();
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transmitters.remove(conductor);
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}
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else {
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conductor.setNetwork(this);
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}
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}
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for(ITransmitter<GasNetwork> pipe : transmitters)
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{
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IGasAcceptor[] acceptors = GasTransmission.getConnectedAcceptors((TileEntity)pipe);
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for(IGasAcceptor acceptor : acceptors)
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{
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if(acceptor != null && !(acceptor instanceof ITransmitter))
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{
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possibleAcceptors.add(acceptor);
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acceptorDirections.put(acceptor, ForgeDirection.getOrientation(Arrays.asList(acceptors).indexOf(acceptor)));
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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 merge(GasNetwork network)
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{
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if(network != null && network != this)
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{
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Set<GasNetwork> networks = new HashSet();
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networks.add(this);
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networks.add(network);
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GasNetwork newNetwork = new GasNetwork(networks);
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newNetwork.refresh();
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}
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}
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@Override
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public void split(ITransmitter<GasNetwork> splitPoint)
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{
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if(splitPoint instanceof TileEntity)
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{
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removeTransmitter(splitPoint);
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TileEntity[] connectedBlocks = new TileEntity[6];
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boolean[] dealtWith = {false, false, false, false, false, false};
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for(ForgeDirection direction : ForgeDirection.VALID_DIRECTIONS)
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{
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TileEntity sideTile = Object3D.get((TileEntity)splitPoint).getFromSide(direction).getTileEntity(((TileEntity)splitPoint).worldObj);
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if(sideTile != null)
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{
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connectedBlocks[Arrays.asList(ForgeDirection.values()).indexOf(direction)] = sideTile;
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}
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}
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for(int countOne = 0; countOne < connectedBlocks.length; countOne++)
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{
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TileEntity connectedBlockA = connectedBlocks[countOne];
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if(TransmissionType.checkTransmissionType(connectedBlockA, TransmissionType.GAS) && !dealtWith[countOne])
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{
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NetworkFinder finder = new NetworkFinder(((TileEntity)splitPoint).worldObj, getTransmissionType(), Object3D.get(connectedBlockA), Object3D.get((TileEntity)splitPoint));
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List<Object3D> partNetwork = finder.exploreNetwork();
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for(int countTwo = countOne + 1; countTwo < connectedBlocks.length; countTwo++)
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{
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TileEntity connectedBlockB = connectedBlocks[countTwo];
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if(TransmissionType.checkTransmissionType(connectedBlockB, TransmissionType.GAS) && !dealtWith[countTwo])
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{
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if(partNetwork.contains(Object3D.get(connectedBlockB)))
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{
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dealtWith[countTwo] = true;
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}
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}
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}
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GasNetwork newNetwork = new GasNetwork();
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for(Object3D node : finder.iterated)
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{
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TileEntity nodeTile = node.getTileEntity(((TileEntity)splitPoint).worldObj);
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if(TransmissionType.checkTransmissionType(nodeTile, TransmissionType.GAS))
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{
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if(nodeTile != splitPoint)
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{
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newNetwork.transmitters.add((ITransmitter<GasNetwork>)nodeTile);
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}
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}
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}
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newNetwork.refresh();
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}
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}
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deregister();
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}
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}
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public static class GasTransferEvent extends Event
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{
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public final GasNetwork gasNetwork;
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public final EnumGas transferType;
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public GasTransferEvent(GasNetwork network, EnumGas type)
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{
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gasNetwork = network;
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transferType = type;
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}
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}
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@Override
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public String toString()
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{
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return "[GasNetwork] " + transmitters.size() + " transmitters, " + possibleAcceptors.size() + " acceptors.";
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}
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@Override
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protected GasNetwork create(ITransmitter<GasNetwork>... varTransmitters)
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{
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return new GasNetwork(varTransmitters);
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}
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@Override
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protected GasNetwork create(Collection<ITransmitter<GasNetwork>> collection)
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{
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return new GasNetwork(collection);
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}
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@Override
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protected GasNetwork create(Set<GasNetwork> networks)
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{
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return new GasNetwork(networks);
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}
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@Override
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public TransmissionType getTransmissionType()
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{
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return TransmissionType.GAS;
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}
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@Override
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public String getNeeded()
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{
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return "Undefined for Gas networks.";
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}
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@Override
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public String getFlow()
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{
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return "Not defined yet for Fluid networks";
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}
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}
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