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An open source implementation of the Distributed Interactive Simulation (DIS) IEEE-1278 protocol
package edu.nps.moves.dismobile;
import java.util.*;
import java.io.*;
import edu.nps.moves.disenum.*;
import edu.nps.moves.disutil.*;
/**
* Section 5.3.12.3: Start resume simulation, relaible. COMPLETE
*
* Copyright (c) 2008-2010, MOVES Institute, Naval Postgraduate School. All rights reserved.
* This work is licensed under the BSD open source license, available at https://www.movesinstitute.org/licenses/bsd.html
*
* @author DMcG
*/
public class StartResumeReliablePdu extends SimulationManagementWithReliabilityFamilyPdu implements Serializable
{
/** time in real world for this operation to happen */
protected ClockTime realWorldTime = new ClockTime();
/** time in simulation for the simulation to resume */
protected ClockTime simulationTime = new ClockTime();
/** level of reliability service used for this transaction */
protected short requiredReliabilityService;
/** padding */
protected int pad1;
/** padding */
protected short pad2;
/** Request ID */
protected long requestID;
/** Constructor */
public StartResumeReliablePdu()
{
setPduType( (short)53 );
}
public int getMarshalledSize()
{
int marshalSize = 0;
marshalSize = super.getMarshalledSize();
marshalSize = marshalSize + realWorldTime.getMarshalledSize(); // realWorldTime
marshalSize = marshalSize + simulationTime.getMarshalledSize(); // simulationTime
marshalSize = marshalSize + 1; // requiredReliabilityService
marshalSize = marshalSize + 2; // pad1
marshalSize = marshalSize + 1; // pad2
marshalSize = marshalSize + 4; // requestID
return marshalSize;
}
public void setRealWorldTime(ClockTime pRealWorldTime)
{ realWorldTime = pRealWorldTime;
}
public ClockTime getRealWorldTime()
{ return realWorldTime;
}
public void setSimulationTime(ClockTime pSimulationTime)
{ simulationTime = pSimulationTime;
}
public ClockTime getSimulationTime()
{ return simulationTime;
}
public void setRequiredReliabilityService(short pRequiredReliabilityService)
{ requiredReliabilityService = pRequiredReliabilityService;
}
public short getRequiredReliabilityService()
{ return requiredReliabilityService;
}
public void setPad1(int pPad1)
{ pad1 = pPad1;
}
public int getPad1()
{ return pad1;
}
public void setPad2(short pPad2)
{ pad2 = pPad2;
}
public short getPad2()
{ return pad2;
}
public void setRequestID(long pRequestID)
{ requestID = pRequestID;
}
public long getRequestID()
{ return requestID;
}
public void marshal(DataOutputStream dos)
{
super.marshal(dos);
try
{
realWorldTime.marshal(dos);
simulationTime.marshal(dos);
dos.writeByte( (byte)requiredReliabilityService);
dos.writeShort( (short)pad1);
dos.writeByte( (byte)pad2);
dos.writeInt( (int)requestID);
} // end try
catch(Exception e)
{
System.out.println(e);}
} // end of marshal method
public void unmarshal(DataInputStream dis)
{
super.unmarshal(dis);
try
{
realWorldTime.unmarshal(dis);
simulationTime.unmarshal(dis);
requiredReliabilityService = (short)dis.readUnsignedByte();
pad1 = (int)dis.readUnsignedShort();
pad2 = (short)dis.readUnsignedByte();
requestID = dis.readInt();
} // end try
catch(Exception e)
{
System.out.println(e);
}
} // end of unmarshal method
/**
* Packs a Pdu into the ByteBuffer.
* @throws java.nio.BufferOverflowException if buff is too small
* @throws java.nio.ReadOnlyBufferException if buff is read only
* @see java.nio.ByteBuffer
* @param buff The ByteBuffer at the position to begin writing
* @since ??
*/
public void marshal(java.nio.ByteBuffer buff)
{
super.marshal(buff);
realWorldTime.marshal(buff);
simulationTime.marshal(buff);
buff.put( (byte)requiredReliabilityService);
buff.putShort( (short)pad1);
buff.put( (byte)pad2);
buff.putInt( (int)requestID);
} // end of marshal method
/**
* Unpacks a Pdu from the underlying data.
* @throws java.nio.BufferUnderflowException if buff is too small
* @see java.nio.ByteBuffer
* @param buff The ByteBuffer at the position to begin reading
* @since ??
*/
public void unmarshal(java.nio.ByteBuffer buff)
{
super.unmarshal(buff);
realWorldTime.unmarshal(buff);
simulationTime.unmarshal(buff);
requiredReliabilityService = (short)(buff.get() & 0xFF);
pad1 = (int)(buff.getShort() & 0xFFFF);
pad2 = (short)(buff.get() & 0xFF);
requestID = buff.getInt();
} // end of unmarshal method
/*
* The equals method doesn't always work--mostly it works only on classes that consist only of primitives. Be careful.
*/
@Override
public boolean equals(Object obj)
{
if(this == obj){
return true;
}
if(obj == null){
return false;
}
if(getClass() != obj.getClass())
return false;
return equalsImpl(obj);
}
@Override
public boolean equalsImpl(Object obj)
{
boolean ivarsEqual = true;
if(!(obj instanceof StartResumeReliablePdu))
return false;
final StartResumeReliablePdu rhs = (StartResumeReliablePdu)obj;
if( ! (realWorldTime.equals( rhs.realWorldTime) )) ivarsEqual = false;
if( ! (simulationTime.equals( rhs.simulationTime) )) ivarsEqual = false;
if( ! (requiredReliabilityService == rhs.requiredReliabilityService)) ivarsEqual = false;
if( ! (pad1 == rhs.pad1)) ivarsEqual = false;
if( ! (pad2 == rhs.pad2)) ivarsEqual = false;
if( ! (requestID == rhs.requestID)) ivarsEqual = false;
return ivarsEqual && super.equalsImpl(rhs);
}
} // end of class