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/*
This file is part of JLog.
Created by Glendon Holst for Alan Mackworth and the
"Computational Intelligence: A Logical Approach" text.
Copyright 1998, 2000, 2002 by University of British Columbia and
Alan Mackworth.
This notice must remain in all files which belong to, or are derived
from JLog.
Check or
for further information
about JLog, or to contact the authors.
JLog is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2 of the License, or
(at your option) any later version.
JLog is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with JLog; if not, write to the Free Software
Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
URLs: or
*/
//#########################################################################
// Integer
//#########################################################################
package ubc.cs.JLog.Terms;
import java.lang.*;
import java.util.*;
import ubc.cs.JLog.Foundation.*;
public class jInteger extends jTerm
{
protected int value;
public jInteger(int v)
{
value = v;
type = TYPE_INTEGER;
};
public String getName()
{
return String.valueOf(value);
};
public int getIntegerValue()
{
return value;
};
protected int compare(jTerm term,boolean first_call,boolean var_equal)
{jTerm t = term.getTerm();
if (t instanceof jVariable)
return GREATER_THAN;
if (t instanceof jReal)
return GREATER_THAN;
if (t instanceof jInteger)
{int i = ((jInteger) t).getIntegerValue();
if (value < i)
return LESS_THAN;
else if (value > i)
return GREATER_THAN;
else
return EQUAL;
}
if (t instanceof iPredicate)
return LESS_THAN;
return (first_call ? -t.compare(this,false,var_equal) : EQUAL);
};
public boolean equivalence(jTerm term,jEquivalenceMapping v)
{jTerm t = term.getTerm();
// many integer may be same instances
if (this == t)
return true;
if (type != t.type)
return false;
// altough we cannot be certain that term is a jInteger, if it is not then type was wrong
// so this warrents a failing exception.
return (value == ((jInteger) t).value);
};
public boolean unify(jTerm term,jUnifiedVector v)
{
// if term is variable we let it handle the unification
if (term.type == TYPE_VARIABLE)
return term.unify(this,v);
// many integer may be same instances
if (this == term)
return true;
if (type != term.type)
return false;
// altough we cannot be certain that term is a jInteger, if it is not then type was wrong
// so this warrents a failing exception.
return (value == ((jInteger) term).value);
};
public void registerVariables(jVariableVector v)
{
};
public void enumerateVariables(jVariableVector v,boolean all)
{
};
public jTerm duplicate(jVariable[] vars)
{
return this; // since integers are constants, don't duplicate for memory and gc considerations
};
public jTerm copy(jVariableRegistry vars)
{
return this; // since integers are constants, don't duplicate for memory and gc considerations
};
public String toString(boolean usename)
{
return String.valueOf(value);
};
};
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