251 lines
5.2 KiB
Java
251 lines
5.2 KiB
Java
package appeng.tile.qnb;
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import io.netty.buffer.ByteBuf;
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import java.io.IOException;
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import java.util.EnumSet;
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import net.minecraft.inventory.IInventory;
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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 appeng.api.AEApi;
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import appeng.api.networking.GridFlags;
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import appeng.api.networking.events.MENetworkEventSubscribe;
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import appeng.api.networking.events.MENetworkPowerStatusChange;
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import appeng.api.util.AECableType;
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import appeng.api.util.DimensionalCoord;
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import appeng.me.GridAccessException;
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import appeng.me.cluster.IAECluster;
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import appeng.me.cluster.IAEMultiBlock;
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import appeng.me.cluster.implementations.QuantumCalculator;
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import appeng.me.cluster.implementations.QuantumCluster;
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import appeng.tile.events.AETileEventHandler;
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import appeng.tile.events.TileEventType;
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import appeng.tile.grid.AENetworkInvTile;
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import appeng.tile.inventory.AppEngInternalInventory;
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import appeng.tile.inventory.InvOperation;
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import appeng.util.Platform;
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public class TileQuantumBridge extends AENetworkInvTile implements IAEMultiBlock
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{
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final int sidesRing[] = new int[] {};
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final int sidesLink[] = new int[] { 0 };
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AppEngInternalInventory inv = new AppEngInternalInventory( this, 1 );
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public final byte corner = 16;
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final byte hasSingularity = 32;
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final byte powered = 64;
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private QuantumCalculator calc = new QuantumCalculator( this );
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byte xdex = -1;
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QuantumCluster clust;
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public boolean bridgePowered;
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private boolean updateStatus = false;
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class QBridgeHandler extends AETileEventHandler
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{
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public QBridgeHandler() {
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super( TileEventType.NETWORK, TileEventType.TICK );
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gridProxy.setValidSides( EnumSet.noneOf( ForgeDirection.class ) );
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gridProxy.setFlags( GridFlags.TIER_2_CAPACITY );
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gridProxy.setIdlePowerUsage( 22 );
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inv.setMaxStackSize( 1 );
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}
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@Override
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public void Tick()
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{
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if ( updateStatus )
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{
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updateStatus = false;
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if ( clust != null )
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clust.updateStatus( true );
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markForUpdate();
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}
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}
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@Override
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public void writeToStream(ByteBuf data) throws IOException
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{
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int out = xdex;
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if ( getStackInSlot( 0 ) != null && xdex != -1 )
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out = out | hasSingularity;
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if ( gridProxy.isActive() && xdex != -1 )
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out = out | powered;
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data.writeByte( (byte) out );
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}
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@Override
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public boolean readFromStream(ByteBuf data) throws IOException
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{
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int oldValue = xdex;
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xdex = data.readByte();
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bridgePowered = (xdex | powered) == powered;
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return xdex != oldValue;
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}
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};
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public TileQuantumBridge() {
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addNewHandler( new QBridgeHandler() );
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gridProxy.setFlags( GridFlags.TIER_2_CAPACITY );
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}
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public IInventory getInternalInventory()
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{
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return inv;
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}
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@MENetworkEventSubscribe
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public void PowerSwitch(MENetworkPowerStatusChange c)
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{
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updateStatus = true;
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}
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@Override
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public void onChangeInventory(IInventory inv, int slot, InvOperation mc, ItemStack removed, ItemStack added)
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{
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if ( clust != null )
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clust.updateStatus( true );
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}
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@Override
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public int[] getAccessibleSlotsBySide(ForgeDirection side)
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{
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if ( isCenter() )
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return sidesLink;
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return sidesRing;
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}
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@Override
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public void disconnect()
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{
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if ( clust != null )
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clust.destroy();
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clust = null;
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gridProxy.setValidSides( EnumSet.noneOf( ForgeDirection.class ) );
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}
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@Override
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public IAECluster getCluster()
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{
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return clust;
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}
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@Override
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public boolean isValid()
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{
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return !isInvalid();
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}
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public void updateStatus(QuantumCluster c, byte flags)
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{
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clust = c;
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if ( xdex != flags )
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{
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xdex = flags;
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markForUpdate();
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}
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if ( isCorner() || isCenter() )
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{
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gridProxy.setValidSides( getConnections() );
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}
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else
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gridProxy.setValidSides( EnumSet.allOf( ForgeDirection.class ) );
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}
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public long getQEDest()
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{
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ItemStack is = inv.getStackInSlot( 0 );
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if ( is != null )
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{
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NBTTagCompound c = is.getTagCompound();
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if ( c != null )
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return c.getLong( "freq" );
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}
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return 0;
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}
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public boolean isCenter()
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{
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return getBlockType() == AEApi.instance().blocks().blockQuantumLink.block();
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}
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public boolean isCorner()
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{
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return (xdex & corner) == corner && xdex != -1;
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}
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public boolean isPowered()
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{
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if ( Platform.isClient() )
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return (xdex & powered) == powered && xdex != -1;
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try
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{
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return gridProxy.getEnergy().isNetworkPowered();
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}
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catch (GridAccessException e)
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{
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// :P
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}
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return false;
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}
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public boolean isFormed()
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{
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return xdex != -1;
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}
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@Override
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public AECableType getCableConnectionType(ForgeDirection dir)
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{
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return AECableType.DENSE;
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}
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@Override
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public DimensionalCoord getLocation()
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{
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return new DimensionalCoord( this );
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}
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public void neighborUpdate()
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{
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calc.calculateMultiblock( worldObj, getLocation() );
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}
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public EnumSet<ForgeDirection> getConnections()
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{
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EnumSet<ForgeDirection> set = EnumSet.noneOf( ForgeDirection.class );
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for (ForgeDirection d : ForgeDirection.VALID_DIRECTIONS)
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{
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TileEntity te = worldObj.getTileEntity( xCoord + d.offsetX, yCoord + d.offsetY, zCoord + d.offsetZ );
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if ( te instanceof TileQuantumBridge )
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set.add( d );
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}
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return set;
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}
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public boolean hasQES()
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{
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if ( xdex == -1 )
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return false;
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return (xdex & hasSingularity) == hasSingularity;
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}
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}
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