alvinalexander.com | career | drupal | java | mac | mysql | perl | scala | uml | unix  

What this is

This file is included in the DevDaily.com "Java Source Code Warehouse" project. The intent of this project is to help you "Learn Java by Example" TM.

Other links

The source code

///////////////////////////////////////////////////////////////////////////////
// Copyright (c) 2001, Eric D. Friedman All Rights Reserved.
//
// This library is free software; you can redistribute it and/or
// modify it under the terms of the GNU Lesser General Public
// License as published by the Free Software Foundation; either
// version 2.1 of the License, or (at your option) any later version.
//
// This library 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 Lesser General Public
// License along with this program; if not, write to the Free Software
// Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA  02111-1307, USA.
///////////////////////////////////////////////////////////////////////////////

package gnu.trove;

import java.io.IOException;
import java.io.ObjectInputStream;
import java.io.ObjectOutputStream;
import java.io.Serializable;
import java.util.Collection;
import java.util.ConcurrentModificationException;
import java.util.Iterator;
import java.util.Map.Entry;
import java.util.Map;
import java.util.NoSuchElementException;
import java.util.Set;

/**
 * An implementation of the Map interface which uses an open addressed
 * hash table to store its contents.
 *
 * Created: Sun Nov  4 08:52:45 2001
 *
 * @author Eric D. Friedman
 * @version $Id: THashMap.java,v 1.16 2003/09/15 13:56:50 ericdf Exp $
 */
public class THashMap extends TObjectHash implements Map, Serializable {

    /** the values of the map */
    protected transient Object[] _values;

    /**
     * Creates a new THashMap instance with the default
     * capacity and load factor.
     */
    public THashMap() {
        super();
    }

    /**
     * Creates a new THashMap instance with the default
     * capacity and load factor.
     * @param strategy used to compute hash codes and to compare objects.
     */
    public THashMap(TObjectHashingStrategy strategy) {
        super(strategy);
    }

    /**
     * Creates a new THashMap instance with a prime
     * capacity equal to or greater than initialCapacity and
     * with the default load factor.
     *
     * @param initialCapacity an int value
     */
    public THashMap(int initialCapacity) {
        super(initialCapacity);
    }

    /**
     * Creates a new THashMap instance with a prime
     * capacity equal to or greater than initialCapacity and
     * with the default load factor.
     *
     * @param initialCapacity an int value
     * @param strategy used to compute hash codes and to compare objects.
     */
    public THashMap(int initialCapacity, TObjectHashingStrategy strategy) {
        super(initialCapacity, strategy);
    }

    /**
     * Creates a new THashMap instance with a prime
     * capacity equal to or greater than initialCapacity and
     * with the specified load factor.
     *
     * @param initialCapacity an int value
     * @param loadFactor a float value
     */
    public THashMap(int initialCapacity, float loadFactor) {
        super(initialCapacity, loadFactor);
    }

    /**
     * Creates a new THashMap instance with a prime
     * capacity equal to or greater than initialCapacity and
     * with the specified load factor.
     *
     * @param initialCapacity an int value
     * @param loadFactor a float value
     * @param strategy used to compute hash codes and to compare objects.
     */
    public THashMap(int initialCapacity, float loadFactor, TObjectHashingStrategy strategy) {
        super(initialCapacity, loadFactor, strategy);
    }

    /**
     * Creates a new THashMap instance which contains the
     * key/value pairs in map.
     *
     * @param map a Map value
     */
    public THashMap(Map map) {
        this(map.size());
        putAll(map);
    }

    /**
     * Creates a new THashMap instance which contains the
     * key/value pairs in map.
     *
     * @param map a Map value
     * @param strategy used to compute hash codes and to compare objects.
     */
    public THashMap(Map map, TObjectHashingStrategy strategy) {
        this(map.size(), strategy);
        putAll(map);
    }

    /**
     * @return a shallow clone of this collection
     */
    public Object clone() {
        THashMap m = (THashMap)super.clone();
        m._values = (Object[])this._values.clone();
        return m;
    }

    /**
     * initialize the value array of the map.
     *
     * @param initialCapacity an int value
     * @return an int value
     */
    protected int setUp(int initialCapacity) {
        int capacity;
        
        capacity = super.setUp(initialCapacity);
        _values = new Object[capacity];
        return capacity;
    }
    
    /**
     * Inserts a key/value pair into the map.
     *
     * @param key an Object value
     * @param value an Object value
     * @return the previous value associated with key,
     * or null if none was found.
     */
    public Object put(Object key, Object value) {
        if (null == key) {
            throw new NullPointerException("null keys not supported");
        }
        Object previous = null;
        Object oldKey = null;
        int index = insertionIndex(key);
        if (index < 0) {
            index = -index -1;
            previous = _values[index];
        }
        oldKey = _set[index];
        _set[index] = key;
        _values[index] = value;
        if (null == previous) {
            postInsertHook(oldKey == null);
        }

        return previous;
    }

    /**
     * Compares this map with another map for equality of their stored
     * entries.
     *
     * @param other an Object value
     * @return a boolean value
     */
    public boolean equals(Object other) {
        if (! (other instanceof Map)) {
            return false;
        }
        Map that = (Map)other;
        if (that.size() != this.size()) {
            return false;
        }
        return forEachEntry(new EqProcedure(that));
    }

    public int hashCode() {
        HashProcedure p = new HashProcedure();
        forEachEntry(p);
        return p.getHashCode();
    }
    
    private final class HashProcedure implements TObjectObjectProcedure {
        private int h = 0;
        
        public int getHashCode() {
            return h;
        }
        
        public final boolean execute(Object key, Object value) {
            h += (_hashingStrategy.computeHashCode(key) ^ (value == null ? 0 : value.hashCode()));
            return true;
        }
    }

    private static final class EqProcedure implements TObjectObjectProcedure {
        private final Map _otherMap;
        
        EqProcedure(Map otherMap) {
            _otherMap = otherMap;
        }
        
        public final boolean execute(Object key, Object value) {
            Object oValue = _otherMap.get(key);
            if (oValue == value || (oValue != null && oValue.equals(value))) {
                return true;
            }
            return false;
        }
    }

    /**
     * Executes procedure for each key in the map.
     *
     * @param procedure a TObjectProcedure value
     * @return false if the loop over the keys terminated because
     * the procedure returned false for some key.
     */
    public boolean forEachKey(TObjectProcedure procedure) {
        return forEach(procedure);
    }

    /**
     * Executes procedure for each value in the map.
     *
     * @param procedure a TObjectProcedure value
     * @return false if the loop over the values terminated because
     * the procedure returned false for some value.
     */
    public boolean forEachValue(TObjectProcedure procedure) {
        Object[] values = _values;
        Object[] set = _set;
        for (int i = values.length; i-- > 0;) {
            if (set[i] != null
                && set[i] != REMOVED
                && ! procedure.execute(values[i])) {
                return false;
            }
        }
        return true;
    }

    /**
     * Executes procedure for each key/value entry in the
     * map.
     *
     * @param procedure a TObjectObjectProcedure value
     * @return false if the loop over the entries terminated because
     * the procedure returned false for some entry.
     */
    public boolean forEachEntry(TObjectObjectProcedure procedure) {
        Object[] keys = _set;
        Object[] values = _values;
        for (int i = keys.length; i-- > 0;) {
            if (keys[i] != null
                && keys[i] != REMOVED
                && ! procedure.execute(keys[i],values[i])) {
                return false;
            }
        }
        return true;
    }

    /**
     * Retains only those entries in the map for which the procedure
     * returns a true value.
     *
     * @param procedure determines which entries to keep
     * @return true if the map was modified.
     */
    public boolean retainEntries(TObjectObjectProcedure procedure) {
        boolean modified = false;
        Object[] keys = _set;
        Object[] values = _values;
        for (int i = keys.length; i-- > 0;) {
            if (keys[i] != null
                && keys[i] != REMOVED
                && ! procedure.execute(keys[i],values[i])) {
                removeAt(i);
                modified = true;
            }
        }
        return modified;
    }

    /**
     * Transform the values in this map using function.
     *
     * @param function a TObjectFunction value
     */
    public void transformValues(TObjectFunction function) {
        Object[] values = _values;
        Object[] set = _set;
        for (int i = values.length; i-- > 0;) {
            if (set[i] != null && set[i] != REMOVED) {
                values[i] = function.execute(values[i]);
            }
        }
    }

    /**
     * rehashes the map to the new capacity.
     *
     * @param newCapacity an int value
     */
    protected void rehash(int newCapacity) {
        int oldCapacity = _set.length;
        Object oldKeys[] = _set;
        Object oldVals[] = _values;

        _set = new Object[newCapacity];
        _values = new Object[newCapacity];

        for (int i = oldCapacity; i-- > 0;) {
            if(oldKeys[i] != null && oldKeys[i] != REMOVED) {
                Object o = oldKeys[i];
                int index = insertionIndex(o);
                if (index < 0) {
                    throwObjectContractViolation(_set[(-index -1)], o);
                }
                _set[index] = o;
                _values[index] = oldVals[i];
            }
        }
    }

    /**
     * retrieves the value for key
     *
     * @param key an Object value
     * @return the value of key or null if no such mapping exists.
     */
    public Object get(Object key) {
        int index = index(key);
        return index < 0 ? null : _values[index];
    }

    /**
     * Empties the map.
     *
     */
    public void clear() {
        super.clear();
        Object[] keys = _set;
        Object[] vals = _values;

        for (int i = keys.length; i-- > 0;) {
            keys[i] = null;
            vals[i] = null;
        }
    }

    /**
     * Deletes a key/value pair from the map.
     *
     * @param key an Object value
     * @return an Object value
     */
    public Object remove(Object key) {
        Object prev = null;
        int index = index(key);
        if (index >= 0) {
            prev = _values[index];
            removeAt(index);    // clear key,state; adjust size
        }
        return prev;
    }

    /**
     * removes the mapping at index from the map.
     *
     * @param index an int value
     */
    protected void removeAt(int index) {
        super.removeAt(index);  // clear key, state; adjust size
        _values[index] = null;
    }

    /**
     * Returns a view on the values of the map.
     *
     * @return a Collection value
     */
    public Collection values() {
        return new ValueView();
    }

    /**
     * returns a Set view on the keys of the map.
     *
     * @return a Set value
     */
    public Set keySet() {
        return new KeyView();
    }

    /**
     * Returns a Set view on the entries of the map.
     *
     * @return a Set value
     */
    public Set entrySet() {
        return new EntryView();
    }

    /**
     * checks for the presence of val in the values of the map.
     *
     * @param val an Object value
     * @return a boolean value
     */
    public boolean containsValue(Object val) {
        Object[] set = _set;
        Object[] vals = _values;

        // special case null values so that we don't have to
        // perform null checks before every call to equals()
        if (null == val) {
            for (int i = vals.length; i-- > 0;) {
                if ((set[i] != null && set[i] != REMOVED) &&
                    val == vals[i]) {
                    return true;
                }
            }
        } else {
            for (int i = vals.length; i-- > 0;) {
                if ((set[i] != null && set[i] != REMOVED) &&
                    (val == vals[i] || val.equals(vals[i]))) {
                    return true;
                }
            }
        } // end of else
        return false;
    }

    /**
     * checks for the present of key in the keys of the map.
     *
     * @param key an Object value
     * @return a boolean value
     */
    public boolean containsKey(Object key) {
        return contains(key);
    }

    /**
     * copies the key/value mappings in map into this map.
     *
     * @param map a Map value
     */
    public void putAll(Map map) {
        ensureCapacity(map.size());
        // could optimize this for cases when map instanceof THashMap
        for (Iterator i = map.entrySet().iterator(); i.hasNext();) {
            Map.Entry e = (Map.Entry)i.next();
            put(e.getKey(),e.getValue());
        }
    }

    /**
     * a view onto the values of the map.
     *
     */
    protected class ValueView extends KeyView {
        public Iterator iterator() {
            return new THashIterator(THashMap.this) {
                    protected Object objectAtIndex(int index) {
                        return _values[index];
                    }
                };
        }

        public boolean contains(Object value) {
            return containsValue(value);
        }

        public boolean remove(Object value) {
            boolean changed = false;
            Object[] values = _values;
            Object[] set = _set;
            
            for (int i = values.length; i-- > 0;) {
                if ((set[i] != null && set[i] != REMOVED) &&
                    value == values[i] ||
                    (null != values[i] && values[i].equals(value))) {
                    removeAt(i);
                    changed = true;
                }
            }
            return changed;
        }
    }

    /**
     * a view onto the entries of the map.
     *
     */
    protected class EntryView extends KeyView {
        public Iterator iterator() {
            return new EntryIterator(THashMap.this);
        }

        public boolean remove(Object entry) {
            // have to effectively reimplement Map.remove here
            // because we need to return true/false depending on
            // whether the removal took place.  Since the Entry's
            // value can be null, this means that we can't rely
            // on the value of the object returned by Map.remove()
            // to determine whether a deletion actually happened.
            //
            // Note also that the deletion is only legal if
            // both the key and the value match.
            Object key, val;
            int index;

            key = keyForEntry(entry);
            index = index(key);
            if (index >= 0) {
                val = valueForEntry(entry);
                if (val == _values[index] ||
                    (null != val && val.equals(_values[index]))) {
                    removeAt(index);    // clear key,state; adjust size
                    return true;
                }
            }
            return false;
        }

        public boolean contains(Object entry) {
            Object val = get(keyForEntry(entry));
            Object entryValue = ((Map.Entry)entry).getValue();
            return entryValue == val ||
                (null != val && val.equals(entryValue));
        }

        protected Object valueForEntry(Object entry) {
            return ((Map.Entry)entry).getValue();
        }

        protected Object keyForEntry(Object entry) {
            return ((Map.Entry)entry).getKey();
        }
    }
    
    /**
     * a view onto the keys of the map.
     */
    protected class KeyView implements Set {
        public Iterator iterator() {
            return new TObjectHashIterator(THashMap.this);
        }

        public int hashCode() {
            int h = 0;
            for (Iterator i = this.iterator(); i.hasNext();) {
                h += i.next().hashCode();
            }
            return h;
        }

        public boolean equals(Object other) {
            if (super.equals(other)) {
                return true;
            } else if (other instanceof Collection) {
                Collection that = (Collection) other;
                return this.size() == that.size() && this.containsAll(that);
            } else {
                return false;
            }
        }

        public boolean remove(Object key) {
            return (null != THashMap.this.remove(key));
        }

        public boolean contains(Object key) {
            return THashMap.this.contains(key);
        }


        public boolean containsAll(Collection collection) {
            for (Iterator i = collection.iterator(); i.hasNext();) {
                if (! contains(i.next())) {
                    return false;
                }
            }
            return true;
        }

        public boolean removeAll(Collection collection) {
            boolean changed = false;
            for (Iterator i = collection.iterator(); i.hasNext();) {
                if (remove(i.next())) {
                    changed = true;
                }
            }
            return changed;
        }

        public void clear() {
            THashMap.this.clear();
        }

        public boolean add(Object obj) {
            throw new UnsupportedOperationException();
        }

        public int size() {
            return THashMap.this.size();
        }

        public Object[] toArray() {
            Object[] result = new Object[size()];
            Iterator e = iterator();
            for (int i=0; e.hasNext(); i++)
                result[i] = e.next();
            return result;
        }

        public Object[] toArray(Object[] a) {
            int size = size();
            if (a.length < size)
                a = (Object[])java.lang.reflect.Array.newInstance(a.getClass().getComponentType(), size);

            Iterator it = iterator();
            for (int i=0; i size) {
                a[size] = null;
            }

            return a;
        }

        public boolean isEmpty() {
            return THashMap.this.isEmpty();
        }

        public boolean addAll(Collection collection) {
            throw new UnsupportedOperationException();
        }

        public boolean retainAll(Collection collection) {
            boolean changed = false;
            Iterator i = iterator();
            while (i.hasNext()) {
                if (! collection.contains(i.next())) {
                    i.remove();
                    changed = true;
                }
            }
            return changed;
        }

        protected final class EntryIterator extends THashIterator {
            EntryIterator(THashMap map) {
                super(map);
            }
            
            public Object objectAtIndex(final int index) {
                return new Entry(_set[index], _values[index], index);
            }
        }
    }

    final class Entry implements Map.Entry {
        private final Object key;
        private Object val;
        private final int index;

        Entry(final Object key, Object value, final int index) {
            this.key = key;
            this.val = value;
            this.index = index;
        }
        
        public Object getKey() {
            return key;
        }
        
        public Object getValue() {
            return val;
        }
        
        public Object setValue(Object o) {
            if (_values[index] != val) {
                throw new ConcurrentModificationException();
            }
            _values[index] = o;
            o = val;            // need to return previous value
            val = o;            // update this entry's value, in case
                                // setValue is called again
            return o;
        }
    }

    private void writeObject(ObjectOutputStream stream)
        throws IOException {
        stream.defaultWriteObject();

        // number of entries
        stream.writeInt(_size);

        SerializationProcedure writeProcedure = new SerializationProcedure(stream);
        if (! forEachEntry(writeProcedure)) {
            throw writeProcedure.exception;
        }
    }

    private void readObject(ObjectInputStream stream)
        throws IOException, ClassNotFoundException {
        stream.defaultReadObject();

        int size = stream.readInt();
        setUp(size);
        while (size-- > 0) {
            Object key = stream.readObject();
            Object val = stream.readObject();
            put(key, val);
        }
    }
} // THashMap
... this post is sponsored by my books ...

#1 New Release!

FP Best Seller

 

new blog posts

 

Copyright 1998-2021 Alvin Alexander, alvinalexander.com
All Rights Reserved.

A percentage of advertising revenue from
pages under the /java/jwarehouse URI on this website is
paid back to open source projects.