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| package java.util; import java.io.*;
public class Hashtable<K,V> extends Dictionary<K,V> implements Map<K,V>, Cloneable, java.io.Serializable {
private transient Entry[] table;
private transient int count;
private int threshold;
private float loadFactor;
private transient int modCount = 0;
private static final long serialVersionUID = 1421746759512286392L;
public Hashtable(int initialCapacity, float loadFactor) { if (initialCapacity < 0) throw new IllegalArgumentException("Illegal Capacity: "+ initialCapacity); if (loadFactor <= 0 || Float.isNaN(loadFactor)) throw new IllegalArgumentException("Illegal Load: "+loadFactor);
if (initialCapacity==0) initialCapacity = 1; this.loadFactor = loadFactor; table = new Entry[initialCapacity]; threshold = (int)(initialCapacity * loadFactor); }
public Hashtable(int initialCapacity) { this(initialCapacity, 0.75f); }
public Hashtable() { this(11, 0.75f); }
public Hashtable(Map<? extends K, ? extends V> t) { this(Math.max(2*t.size(), 11), 0.75f); putAll(t); }
public synchronized int size() { return count; }
public synchronized boolean isEmpty() { return count == 0; }
public synchronized Enumeration<K> keys() { return this.<K>getEnumeration(KEYS); }
public synchronized Enumeration<V> elements() { return this.<V>getEnumeration(VALUES); }
public synchronized boolean contains(Object value) { if (value == null) { throw new NullPointerException(); }
Entry tab[] = table; for (int i = tab.length ; i-- > 0 ;) { for (Entry<K,V> e = tab[i] ; e != null ; e = e.next) { if (e.value.equals(value)) { return true; } } } return false; }
public boolean containsValue(Object value) { return contains(value); }
public synchronized boolean containsKey(Object key) { Entry tab[] = table; int hash = key.hashCode(); int index = (hash & 0x7FFFFFFF) % tab.length; for (Entry<K,V> e = tab[index] ; e != null ; e = e.next) { if ((e.hash == hash) && e.key.equals(key)) { return true; } } return false; }
public synchronized V get(Object key) { Entry tab[] = table; int hash = key.hashCode(); int index = (hash & 0x7FFFFFFF) % tab.length; for (Entry<K,V> e = tab[index] ; e != null ; e = e.next) { if ((e.hash == hash) && e.key.equals(key)) { return e.value; } } return null; }
protected void rehash() { int oldCapacity = table.length; Entry[] oldMap = table;
int newCapacity = oldCapacity * 2 + 1; Entry[] newMap = new Entry[newCapacity];
modCount++; threshold = (int)(newCapacity * loadFactor); table = newMap;
for (int i = oldCapacity ; i-- > 0 ;) { for (Entry<K,V> old = oldMap[i] ; old != null ; ) { Entry<K,V> e = old; old = old.next;
int index = (e.hash & 0x7FFFFFFF) % newCapacity; e.next = newMap[index]; newMap[index] = e; } } }
public synchronized V put(K key, V value) { if (value == null) { throw new NullPointerException(); }
Entry tab[] = table; int hash = key.hashCode(); int index = (hash & 0x7FFFFFFF) % tab.length; for (Entry<K,V> e = tab[index] ; e != null ; e = e.next) { if ((e.hash == hash) && e.key.equals(key)) { V old = e.value; e.value = value; return old; } }
modCount++; if (count >= threshold) { rehash();
tab = table; index = (hash & 0x7FFFFFFF) % tab.length; }
Entry<K,V> e = tab[index]; tab[index] = new Entry<K,V>(hash, key, value, e); count++; return null; }
public synchronized V remove(Object key) { Entry tab[] = table; int hash = key.hashCode(); int index = (hash & 0x7FFFFFFF) % tab.length; for (Entry<K,V> e = tab[index], prev = null ; e != null ; prev = e, e = e.next) { if ((e.hash == hash) && e.key.equals(key)) { modCount++; if (prev != null) { prev.next = e.next; } else { tab[index] = e.next; } count--; V oldValue = e.value; e.value = null; return oldValue; } } return null; }
public synchronized void putAll(Map<? extends K, ? extends V> t) { for (Map.Entry<? extends K, ? extends V> e : t.entrySet()) put(e.getKey(), e.getValue()); }
public synchronized void clear() { Entry tab[] = table; modCount++; for (int index = tab.length; --index >= 0; ) tab[index] = null; count = 0; }
public synchronized Object clone() { try { Hashtable<K,V> t = (Hashtable<K,V>) super.clone(); t.table = new Entry[table.length]; for (int i = table.length ; i-- > 0 ; ) { t.table[i] = (table[i] != null) ? (Entry<K,V>) table[i].clone() : null; } t.keySet = null; t.entrySet = null; t.values = null; t.modCount = 0; return t; } catch (CloneNotSupportedException e) { throw new InternalError(); } }
public synchronized String toString() { int max = size() - 1; if (max == -1) return "{}";
StringBuilder sb = new StringBuilder(); Iterator<Map.Entry<K,V>> it = entrySet().iterator();
sb.append('{'); for (int i = 0; ; i++) { Map.Entry<K,V> e = it.next(); K key = e.getKey(); V value = e.getValue(); sb.append(key == this ? "(this Map)" : key.toString()); sb.append('='); sb.append(value == this ? "(this Map)" : value.toString());
if (i == max) return sb.append('}').toString(); sb.append(", "); } }
private <T> Enumeration<T> getEnumeration(int type) { if (count == 0) { return (Enumeration<T>)emptyEnumerator; } else { return new Enumerator<T>(type, false); } }
private <T> Iterator<T> getIterator(int type) { if (count == 0) { return (Iterator<T>) emptyIterator; } else { return new Enumerator<T>(type, true); } }
private transient volatile Set<K> keySet = null; private transient volatile Set<Map.Entry<K,V>> entrySet = null; private transient volatile Collection<V> values = null;
public Set<K> keySet() { if (keySet == null) keySet = Collections.synchronizedSet(new KeySet(), this); return keySet; }
private class KeySet extends AbstractSet<K> { public Iterator<K> iterator() { return getIterator(KEYS); } public int size() { return count; } public boolean contains(Object o) { return containsKey(o); } public boolean remove(Object o) { return Hashtable.this.remove(o) != null; } public void clear() { Hashtable.this.clear(); } }
public Set<Map.Entry<K,V>> entrySet() { if (entrySet==null) entrySet = Collections.synchronizedSet(new EntrySet(), this); return entrySet; }
private class EntrySet extends AbstractSet<Map.Entry<K,V>> { public Iterator<Map.Entry<K,V>> iterator() { return getIterator(ENTRIES); }
public boolean add(Map.Entry<K,V> o) { return super.add(o); }
public boolean contains(Object o) { if (!(o instanceof Map.Entry)) return false; Map.Entry entry = (Map.Entry)o; Object key = entry.getKey(); Entry[] tab = table; int hash = key.hashCode(); int index = (hash & 0x7FFFFFFF) % tab.length;
for (Entry e = tab[index]; e != null; e = e.next) if (e.hash==hash && e.equals(entry)) return true; return false; }
public boolean remove(Object o) { if (!(o instanceof Map.Entry)) return false; Map.Entry<K,V> entry = (Map.Entry<K,V>) o; K key = entry.getKey(); Entry[] tab = table; int hash = key.hashCode(); int index = (hash & 0x7FFFFFFF) % tab.length;
for (Entry<K,V> e = tab[index], prev = null; e != null; prev = e, e = e.next) { if (e.hash==hash && e.equals(entry)) { modCount++; if (prev != null) prev.next = e.next; else tab[index] = e.next;
count--; e.value = null; return true; } } return false; }
public int size() { return count; }
public void clear() { Hashtable.this.clear(); } }
public Collection<V> values() { if (values==null) values = Collections.synchronizedCollection(new ValueCollection(), this); return values; }
private class ValueCollection extends AbstractCollection<V> { public Iterator<V> iterator() { return getIterator(VALUES); } public int size() { return count; } public boolean contains(Object o) { return containsValue(o); } public void clear() { Hashtable.this.clear(); } }
public synchronized boolean equals(Object o) { if (o == this) return true;
if (!(o instanceof Map)) return false; Map<K,V> t = (Map<K,V>) o; if (t.size() != size()) return false;
try { Iterator<Map.Entry<K,V>> i = entrySet().iterator(); while (i.hasNext()) { Map.Entry<K,V> e = i.next(); K key = e.getKey(); V value = e.getValue(); if (value == null) { if (!(t.get(key)==null && t.containsKey(key))) return false; } else { if (!value.equals(t.get(key))) return false; } } } catch (ClassCastException unused) { return false; } catch (NullPointerException unused) { return false; }
return true; }
public synchronized int hashCode() { int h = 0; if (count == 0 || loadFactor < 0) return h;
loadFactor = -loadFactor; Entry[] tab = table; for (int i = 0; i < tab.length; i++) for (Entry e = tab[i]; e != null; e = e.next) h += e.key.hashCode() ^ e.value.hashCode(); loadFactor = -loadFactor;
return h; }
private synchronized void writeObject(java.io.ObjectOutputStream s) throws IOException { s.defaultWriteObject();
s.writeInt(table.length); s.writeInt(count); for (int index = table.length-1; index >= 0; index--) { Entry entry = table[index];
while (entry != null) { s.writeObject(entry.key); s.writeObject(entry.value); entry = entry.next; } } }
private void readObject(java.io.ObjectInputStream s) throws IOException, ClassNotFoundException { s.defaultReadObject();
int origlength = s.readInt(); int elements = s.readInt();
int length = (int)(elements * loadFactor) + (elements / 20) + 3; if (length > elements && (length & 1) == 0) length--; if (origlength > 0 && length > origlength) length = origlength;
Entry[] table = new Entry[length]; count = 0;
for (; elements > 0; elements--) { K key = (K)s.readObject(); V value = (V)s.readObject(); reconstitutionPut(table, key, value); } this.table = table; }
private void reconstitutionPut(Entry[] tab, K key, V value) throws StreamCorruptedException { if (value == null) { throw new java.io.StreamCorruptedException(); } int hash = key.hashCode(); int index = (hash & 0x7FFFFFFF) % tab.length; for (Entry<K,V> e = tab[index] ; e != null ; e = e.next) { if ((e.hash == hash) && e.key.equals(key)) { throw new java.io.StreamCorruptedException(); } } Entry<K,V> e = tab[index]; tab[index] = new Entry<K,V>(hash, key, value, e); count++; }
private static class Entry<K,V> implements Map.Entry<K,V> { int hash; K key; V value; Entry<K,V> next;
protected Entry(int hash, K key, V value, Entry<K,V> next) { this.hash = hash; this.key = key; this.value = value; this.next = next; }
protected Object clone() { return new Entry<K,V>(hash, key, value, (next==null ? null : (Entry<K,V>) next.clone())); }
public K getKey() { return key; }
public V getValue() { return value; }
public V setValue(V value) { if (value == null) throw new NullPointerException();
V oldValue = this.value; this.value = value; return oldValue; }
public boolean equals(Object o) { if (!(o instanceof Map.Entry)) return false; Map.Entry e = (Map.Entry)o;
return (key==null ? e.getKey()==null : key.equals(e.getKey())) && (value==null ? e.getValue()==null : value.equals(e.getValue())); }
public int hashCode() { return hash ^ (value==null ? 0 : value.hashCode()); }
public String toString() { return key.toString()+"="+value.toString(); } }
private static final int KEYS = 0; private static final int VALUES = 1; private static final int ENTRIES = 2;
private class Enumerator<T> implements Enumeration<T>, Iterator<T> { Entry[] table = Hashtable.this.table; int index = table.length; Entry<K,V> entry = null; Entry<K,V> lastReturned = null; int type;
boolean iterator;
protected int expectedModCount = modCount;
Enumerator(int type, boolean iterator) { this.type = type; this.iterator = iterator; }
public boolean hasMoreElements() { Entry<K,V> e = entry; int i = index; Entry[] t = table; while (e == null && i > 0) { e = t[--i]; } entry = e; index = i; return e != null; }
public T nextElement() { Entry<K,V> et = entry; int i = index; Entry[] t = table; while (et == null && i > 0) { et = t[--i]; } entry = et; index = i; if (et != null) { Entry<K,V> e = lastReturned = entry; entry = e.next; return type == KEYS ? (T)e.key : (type == VALUES ? (T)e.value : (T)e); } throw new NoSuchElementException("Hashtable Enumerator"); }
public boolean hasNext() { return hasMoreElements(); }
public T next() { if (modCount != expectedModCount) throw new ConcurrentModificationException(); return nextElement(); }
public void remove() { if (!iterator) throw new UnsupportedOperationException(); if (lastReturned == null) throw new IllegalStateException("Hashtable Enumerator"); if (modCount != expectedModCount) throw new ConcurrentModificationException();
synchronized(Hashtable.this) { Entry[] tab = Hashtable.this.table; int index = (lastReturned.hash & 0x7FFFFFFF) % tab.length;
for (Entry<K,V> e = tab[index], prev = null; e != null; prev = e, e = e.next) { if (e == lastReturned) { modCount++; expectedModCount++; if (prev == null) tab[index] = e.next; else prev.next = e.next; count--; lastReturned = null; return; } } throw new ConcurrentModificationException(); } } }
private static Enumeration emptyEnumerator = new EmptyEnumerator(); private static Iterator emptyIterator = new EmptyIterator();
private static class EmptyEnumerator implements Enumeration<Object> {
EmptyEnumerator() { }
public boolean hasMoreElements() { return false; }
public Object nextElement() { throw new NoSuchElementException("Hashtable Enumerator"); } }
private static class EmptyIterator implements Iterator<Object> {
EmptyIterator() { }
public boolean hasNext() { return false; }
public Object next() { throw new NoSuchElementException("Hashtable Iterator"); }
public void remove() { throw new IllegalStateException("Hashtable Iterator"); }
} }
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