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d9fd7154ec
2001-12-15 Bryce McKinlay <bryce@waitaki.otago.ac.nz> * java/util/BitSet.java (and): Fix off-by-one bug, don't skip part of the bitset. (andNot): Likewise. (xor): Likewise. 2001-12-15 Bryce McKinlay <bryce@waitaki.otago.ac.nz> * java/util/LinkedList.java (LinkedListItr.add): Don't skip the next entry. 2001-12-15 Eric Blake <ebb9@email.byu.edu> * java/util/TreeMap.java (removeNode): Fix bug in node removal. 2001-12-15 Bryce McKinlay <bryce@waitaki.otago.ac.nz> * java/util/AbstractCollection.java (containsAll): Use size of the correct collection for loop bound. * java/util/AbstractList.java (iterator.next): Increment pos after calling get on backing list. (listIterator.next): Likewise. * java/util/LinkedList.java (addLastEntry): Don't increment size before checking for size == 0. (addFirstEntry): Rearrange to match addLastEntry. (add): Do not increment size before inserting the new entry. * java/util/AbstractCollection.java (addAll): Use size of the correct collection for loop bound. 2001-12-15 Bryce McKinlay <bryce@waitaki.otago.ac.nz> * java/util/AbstractSet.java (removeAll): Fix scoping thinko. * java/util/HashMap.java (putAllInternal): Set size here. * java/util/Hashtable.java (putAllInternal): New method. Copy contents of a map efficiently without calling put() or putAll(). (Hashtable (map)): Use putAllInternal. (clone): Likewise. 2001-12-15 Eric Blake <ebb9@email.byu.edu> * java/util/Collections.java: * java/util/Vector.java: * java/util/WeakHashMap.java: Fix spelling errors. 2001-12-15 Eric Blake <ebb9@email.byu.edu> * java/util/AbstractCollection.java (removeAllInternal), (retainAllInternal): Add hooks for use by ArrayList. * java/util/AbstractList.java: Minor code updates. Fix some scoping. * java/util/AbstractMap.java: ditto * java/util/ArrayList.java (readObject, writeObject): ditto (removeAllInternal, retainAllInternal): Optimize. * java/util/Arrays.java: ditto * java/util/Collections.java: ditto. Change order of parameters to equals(Object, Object) to match specs. * java/util/Dictionary.java: Improve javadoc. (Dictionary): Add explicit constructor. * java/util/HashMap.java: Improve javadoc. Rearrange methods to follow order in JDK. Cleanups related to recent code migration to AbstractMap. Fix some scoping. (entrySet): Cache the result. (modCount): Ensure that this is updated correctly. * java/util/HashSet.java: Improve javadoc. Fix some scoping. (init): Add hooks for LinkedHashSet. (map): Use "" instead of Boolean.TRUE in backing map. Use package-private API where possible for less overhead. (readObject, writeObject): Fix serialization. * java/util/Hashtable.java: Improve javadoc. Fix some scoping. (entrySet, keySet, values): Cache the result. (modCount): Ensure that this is updated correctly. (contains, remove): Fix NullPointer checking to match specs. (class Enumeration): Make more like HashIterator. * java/util/IdentityHashMap.java: Minor code updates. (modCount): Ensure that this is updated correctly. (readObject, writeObject): Fix serialization. * java/util/LinkedHashMap.java: Minor code updates. Cleanups related to recent code migration to AbstractMap. * java/util/LinkedHashSet.java: New file. * java/util/LinkedList.java: (readObject, writeObject): Fix serialization. * java/util/Makefile.am: List recently added files. * java/util/Stack.java: Minor code updates. * java/util/TreeMap.java: Improve javadoc. Overhaul the class to be more efficient. Fix some scoping. Rearrange the methods. (nil): Ensure that this can be thread-safe, and make it a static final. Initialize it to be more useful as a sentinal node. (Node): Specify color in constructor. (deleteFixup, insertFixup): Improve comments and algorithm. (fabricateTree): Redesign with less overhead. (lowestGreaterThan): Add parameter first to make SubMap easier. (removeNode): Patch hole where nil was being modified. Choose predecessor instead of successor so in-place swap works. (class VerifyResult, verifyTree, verifySub, verifyError): Remove this dead code after verifying the class works. (class SubMap): Rewrite several algorithms to avoid problems with comparing nil. * java/util/TreeSet.java: Improve javadoc. Fix some scoping. (clone): Fix ClassCastException when cloning subSet(). (readObject, writeObject): Fix serialization. * java/util/WeakHashMap.java: Improve javadoc. Fix some scoping. (NULL_KEY): Make it compare as null, for ease elsewhere. (Class WeakEntry): Rename from Entry, to avoid shadowing Map.Entry. Add missing toString. (modCount): Ensure that this is updated correctly. (clear, containsValue, keySet, putAll, values, WeakHashMap(Map)): Add missing methods and constructor. 2001-12-15 Eric Blake <ebb9@email.byu.edu> * java/util/ArrayList.java (checkBoundExclusive), (checkBoundInclusive): Rename from range??clusive, to match AbstractList. * java/util/LinkedList.java (checkBoundsExclusive), (checkBoundsInclusive): ditto * java/util/Vector.java (checkBoundExclusive), (checkBoundInclusive): Move bounds checking into common methods. 2001-12-15 Eric Blake <ebb9@email.byu.edu> * java/util/AbstractList.java: (modCount): Make sure it is updated in all needed places. * java/util/ArrayList.java: Improve javadoc. Implements RandomAccess. Add serialVersionUID. Reorder methods. (modCount): Make sure it is updated in all needed places. (rangeExclusive, rangeInclusive): Add common methods for bounds check. (isEmpty): Add missing method. * java/util/Collections.java: (class SynchronizedList): Make package visible. * java/util/ConcurrentModificationException.java: Improve javadoc. * java/util/EmptyStackException.java: Improve javadoc. * java/util/LinkedList.java: Improve javadoc. (modCount): Make sure it is updated in all needed places. (rangeExclusive, rangeInclusive): Add common methods for bounds check. * java/util/NoSuchElementException.java: Improve javadoc. * java/util/Stack.java: Improve javadoc. Fix synchronization issues. (modCount): Make sure it is updated in all needed places. * java/util/Vector.java: Improve javadoc. Fix synchronization issues. Implements RandomAccess. Reorder methods. (modCount): Make sure it is updated in all needed places. (setSize): Fix according to specifications: this does not dictate the backing array size. (removeAll, retainAll): Faster implementations. 2001-12-15 Eric Blake <ebb9@email.byu.edu> * java/util/BitSet.java: Improve javadoc. (cardinality(), clear(), clear(int, int), flip(int)), (flip(int, int), get(int, int), intersects(BitSet), isEmpty()), (nextClearBit(int), nextSetBit(int), set(int, boolean)), (set(int, int), set(int, int, boolean)): Add new JDK 1.4 methods. (clone): Fix so subclasses clone correctly. 2001-12-15 Eric Blake <ebb9@email.byu.edu> * java/util/AbstractCollection.java: Improve javadoc. (AbstractCollection()): Make constructor protected. (equals(Object, Object), hashCode(Object)): Add utility methods. * java/util/AbstractList.java: Improve javadoc. (AbstractList()): Make constructor protected. (indexOf(Object)): Call listIterator(), not listIterator(int). (iterator()): Follow Sun's requirement to not use listIterator(0). (listIterator(int)): Make AbstractListItr anonymous. (subList(int, int)): Add support for RandomAccess. (SubList.add(int, Object), SubList.remove(Object)): Fix bug with modCount tracking. (SubList.addAll(Collection)): Add missing method. (SubList.listIterator(int)): Fix bugs in indexing, modCount tracking. (class RandomAccessSubList): Add new class. * java/util/AbstractMap.java: Improve javadoc. (keys, values, KEYS, VALUES, ENTRIES): Consolidate common map fields. (AbstractMap()): Make constructor protected. (equals(Object, Object), hashCode(Object)): Add utility methods. (equals(Object)): Change algorithm to entrySet().equals(m.entrySet()), as documented by Sun. (keySet(), values()): Cache the collections. * java/util/AbstractSequentialList.java: Improve javadoc. (AbstractSequentialList()): Make constructor protected. * java/util/AbstractSet.java: Improve javadoc. (AbstractSet()): Make constructor protected. (removeAll(Collection)): Add missing method. * java/util/Arrays.java: Improve javadoc, rearrange method orders. (defaultComparator): Remove, in favor of Collections.compare(Object, Object, Comparator). (binarySearch, equals, sort): Fix natural order comparison of floats and doubles. Also improve Object comparison - when comparator is null, use natural order. (fill, sort): Add missing checks for IllegalArgumentException. (sort, qsort): Fix sorting bugs, rework the code for more legibility. (mergeSort): Inline into sort(Object[], int, int, Comparator). (class ArrayList): Rename from ListImpl, and make compatible with JDK serialization. Add methods which more efficiently override those of AbstractList. * java/util/Collections: Improve javadoc. (isSequential(List)): Add and use a method for deciding between RandomAccess and sequential algorithms on lists. (class Empty*, class Synchronized*, class Unmodifiable*): Make compliant with JDK serializability. (class Singleton*, class CopiesList, class RevereseComparator), (class UnmodifiableMap.UnmodifiableEntrySet), (class *RandomAccessList): New classes for serial compatibility. (class Empty*, class Singleton*, class CopiesList): Add methods which more efficiently override those of Abstract*. (search): Inline into binarySearch(List, Object, Comparator). (binarySearch): Make sequential search only do log(n) comparisons, instead of n. (copy(List, List)): Do bounds checking before starting. (indexOfSubList, lastIndexOfSubList, list, replaceAll, rotate), (swap): Add new JDK 1.4 methods. (binarySearch, max, min, sort): Allow null comparator to represent natural ordering. (reverse(List)): Avoid unnecessary swap. (shuffle(List, Random)): Do shuffle in-place for RandomAccess lists. (SingletonList.get): Fix logic bug. (SingletonMap.entrySet): Make the entry immutable, and cache the returned set. (SynchronizedCollection, SynchronizedMap, UnmodifiableCollection), (UnmodifiableMap): Detect null pointer in construction. (SynchronizedMap, UnmodifiableMap): Cache collection views. * java/util/BasicMapEntry: Improve javadoc. From-SVN: r48035
856 lines
25 KiB
Java
856 lines
25 KiB
Java
/* java.util.WeakHashMap -- a hashtable that keeps only weak references
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to its keys, allowing the virtual machine to reclaim them
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Copyright (C) 1999, 2000, 2001 Free Software Foundation, Inc.
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This file is part of GNU Classpath.
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GNU Classpath is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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GNU Classpath is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with GNU Classpath; see the file COPYING. If not, write to the
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Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
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02111-1307 USA.
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As a special exception, if you link this library with other files to
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produce an executable, this library does not by itself cause the
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resulting executable to be covered by the GNU General Public License.
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This exception does not however invalidate any other reasons why the
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executable file might be covered by the GNU General Public License. */
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package java.util;
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import java.lang.ref.WeakReference;
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import java.lang.ref.ReferenceQueue;
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/**
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* A weak hash map has only weak references to the key. This means
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* that it allows the key to be garbage collected if they are not used
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* otherwise. If this happens, the weak hash map will eventually
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* remove the whole entry from this map. <br>
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*
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* A weak hash map makes most sense, if the keys doesn't override the
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* <code>equals</code>-method: If there is no other reference to the
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* key nobody can ever look up the key in this table and so the entry
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* can be removed. This table also works, if the <code>equals</code>
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* method is overloaded, e.g. with Strings as keys, but you should be
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* prepared that some entries disappear spontaneously. <br>
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*
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* You should also be prepared that this hash map behaves very
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* strange: The size of this map may spontaneously shrink (even if you
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* use a synchronized map and synchronize it); it behaves as if
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* another thread removes entries from this table without
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* synchronizations. The entry set returned by <code>entrySet</code>
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* has similar phenomenons: The size may spontaneously shrink, or an
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* entry, that was in the set before, suddenly disappears. <br>
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*
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* A weak hash map is not meant for caches; use a normal map, with
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* soft references as values instead, or try {@link LinkedHashMap}. <br>
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*
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* The weak hash map supports null values and null keys. The null key
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* is never deleted from the map (except explictly of course).
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* The performance of the methods are similar to that of a hash map. <br>
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*
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* The value objects are strongly referenced by this table. So if a
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* value object maintains a strong reference to the key (either direct
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* or indirect) the key will never be removed from this map. According
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* to Sun, this problem may be fixed in a future release. It is not
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* possible to do it with the jdk 1.2 reference model, though.
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*
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* @author Jochen Hoenicke
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* @author Eric Blake <ebb9@email.byu.edu>
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* @see HashMap
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* @see WeakReference
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* @see LinkedHashMap
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* @since 1.2
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* @status updated to 1.4
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*/
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public class WeakHashMap extends AbstractMap implements Map
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{
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/**
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* The default capacity for an instance of HashMap.
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* Sun's documentation mildly suggests that this (11) is the correct
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* value.
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*/
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private static final int DEFAULT_CAPACITY = 11;
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/**
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* The default load factor of a HashMap.
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*/
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private static final float DEFAULT_LOAD_FACTOR = 0.75F;
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/**
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* This is used instead of the key value <i>null</i>. It is needed
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* to distinguish between an null key and a removed key.
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*/
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// Package visible for use by nested classes.
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static final Object NULL_KEY = new Object()
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{
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/**
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* Sets the hashCode to 0, since that's what null would map to.
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* @return the hash code 0
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*/
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public int hashCode()
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{
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return 0;
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}
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/**
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* Compares this key to the given object. Normally, an object should
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* NEVER compare equal to null, but since we don't publicize NULL_VALUE,
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* it saves bytecode to do so here.
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* @return true iff o is this or null
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*/
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public boolean equals(Object o)
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{
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return null == o || this == o;
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}
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};
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/**
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* The reference queue where our buckets (which are WeakReferences) are
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* registered to.
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*/
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private final ReferenceQueue queue;
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/**
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* The number of entries in this hash map.
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*/
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// Package visible for use by nested classes.
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int size;
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/**
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* The load factor of this WeakHashMap. This is the maximum ratio of
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* size versus number of buckets. If size grows the number of buckets
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* must grow, too.
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*/
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private float loadFactor;
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/**
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* The rounded product of the capacity (i.e. number of buckets) and
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* the load factor. When the number of elements exceeds the
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* threshold, the HashMap calls <pre>rehash()</pre>.
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*/
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private int threshold;
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/**
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* The number of structural modifications. This is used by
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* iterators, to see if they should fail. This doesn't count
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* the silent key removals, when a weak reference is cleared
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* by the garbage collection. Instead the iterators must make
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* sure to have strong references to the entries they rely on.
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*/
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// Package visible for use by nested classes.
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int modCount;
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/**
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* The entry set. There is only one instance per hashmap, namely
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* theEntrySet. Note that the entry set may silently shrink, just
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* like the WeakHashMap.
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*/
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private final class WeakEntrySet extends AbstractSet
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{
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/**
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* Returns the size of this set.
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*
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* @return the set size
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*/
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public int size()
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{
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return size;
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}
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/**
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* Returns an iterator for all entries.
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*
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* @return an Entry iterator
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*/
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public Iterator iterator()
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{
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return new Iterator()
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{
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/**
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* The entry that was returned by the last
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* <code>next()</code> call. This is also the entry whose
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* bucket should be removed by the <code>remove</code> call. <br>
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*
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* It is null, if the <code>next</code> method wasn't
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* called yet, or if the entry was already removed. <br>
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*
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* Remembering this entry here will also prevent it from
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* being removed under us, since the entry strongly refers
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* to the key.
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*/
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WeakBucket.WeakEntry lastEntry;
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/**
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* The entry that will be returned by the next
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* <code>next()</code> call. It is <code>null</code> if there
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* is no further entry. <br>
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*
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* Remembering this entry here will also prevent it from
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* being removed under us, since the entry strongly refers
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* to the key.
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*/
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WeakBucket.WeakEntry nextEntry = findNext(null);
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/**
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* The known number of modification to the list, if it differs
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* from the real number, we throw an exception.
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*/
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int knownMod = modCount;
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/**
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* Check the known number of modification to the number of
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* modifications of the table. If it differs from the real
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* number, we throw an exception.
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* @throws ConcurrentModificationException if the number
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* of modifications doesn't match.
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*/
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private void checkMod()
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{
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// This method will get inlined.
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cleanQueue();
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if (knownMod != modCount)
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throw new ConcurrentModificationException();
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}
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/**
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* Get a strong reference to the next entry after
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* lastBucket.
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* @param lastEntry the previous bucket, or null if we should
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* get the first entry.
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* @return the next entry.
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*/
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private WeakBucket.WeakEntry findNext(WeakBucket.WeakEntry lastEntry)
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{
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int slot;
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WeakBucket nextBucket;
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if (lastEntry != null)
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{
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nextBucket = lastEntry.getBucket().next;
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slot = lastEntry.getBucket().slot;
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}
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else
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{
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nextBucket = buckets[0];
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slot = 0;
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}
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while (true)
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{
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while (nextBucket != null)
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{
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WeakBucket.WeakEntry entry = nextBucket.getEntry();
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if (entry != null)
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// This is the next entry.
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return entry;
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// Entry was cleared, try next.
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nextBucket = nextBucket.next;
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}
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slot++;
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if (slot == buckets.length)
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// No more buckets, we are through.
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return null;
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nextBucket = buckets[slot];
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}
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}
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/**
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* Checks if there are more entries.
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* @return true, iff there are more elements.
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* @throws ConcurrentModificationException if the hash map was
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* modified.
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*/
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public boolean hasNext()
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{
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checkMod();
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return nextEntry != null;
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}
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/**
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* Returns the next entry.
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* @return the next entry.
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* @throws ConcurrentModificationException if the hash map was
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* modified.
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* @throws NoSuchElementException if there is no entry.
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*/
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public Object next()
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{
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checkMod();
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if (nextEntry == null)
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throw new NoSuchElementException();
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lastEntry = nextEntry;
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nextEntry = findNext(lastEntry);
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return lastEntry;
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}
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/**
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* Removes the last returned entry from this set. This will
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* also remove the bucket of the underlying weak hash map.
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* @throws ConcurrentModificationException if the hash map was
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* modified.
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* @throws IllegalStateException if <code>next()</code> was
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* never called or the element was already removed.
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*/
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public void remove()
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{
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checkMod();
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if (lastEntry == null)
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throw new IllegalStateException();
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modCount++;
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internalRemove(lastEntry.getBucket());
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lastEntry = null;
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knownMod++;
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}
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};
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}
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}
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/**
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* A bucket is a weak reference to the key, that contains a strong
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* reference to the value, a pointer to the next bucket and its slot
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* number. <br>
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*
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* It would be cleaner to have a WeakReference as field, instead of
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* extending it, but if a weak reference gets cleared, we only get
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* the weak reference (by queue.poll) and wouldn't know where to
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* look for this reference in the hashtable, to remove that entry.
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*
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* @author Jochen Hoenicke
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*/
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private static class WeakBucket extends WeakReference
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{
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/**
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* The value of this entry. The key is stored in the weak
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* reference that we extend.
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*/
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Object value;
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/**
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* The next bucket describing another entry that uses the same
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* slot.
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*/
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WeakBucket next;
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/**
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* The slot of this entry. This should be
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* <pre>
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* Math.abs(key.hashCode() % buckets.length)
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* </pre>
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* But since the key may be silently removed we have to remember
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* the slot number.
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* If this bucket was removed the slot is -1. This marker will
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* prevent the bucket from being removed twice.
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*/
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int slot;
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/**
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* Creates a new bucket for the given key/value pair and the specified
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* slot.
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* @param key the key
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* @param queue the queue the weak reference belongs to
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* @param value the value
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* @param slot the slot. This must match the slot where this bucket
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* will be enqueued.
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*/
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public WeakBucket(Object key, ReferenceQueue queue, Object value,
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int slot)
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{
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super(key, queue);
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this.value = value;
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this.slot = slot;
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}
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/**
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* This class gives the <code>Entry</code> representation of the
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* current bucket. It also keeps a strong reference to the
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|
* key; bad things may happen otherwise.
|
|
*/
|
|
class WeakEntry implements Map.Entry
|
|
{
|
|
/**
|
|
* The strong ref to the key.
|
|
*/
|
|
Object key;
|
|
|
|
/**
|
|
* Creates a new entry for the key.
|
|
* @param key the key
|
|
*/
|
|
public WeakEntry(Object key)
|
|
{
|
|
this.key = key;
|
|
}
|
|
|
|
/**
|
|
* Returns the underlying bucket.
|
|
* @return the owning bucket
|
|
*/
|
|
public WeakBucket getBucket()
|
|
{
|
|
return WeakBucket.this;
|
|
}
|
|
|
|
/**
|
|
* Returns the key.
|
|
* @return the key
|
|
*/
|
|
public Object getKey()
|
|
{
|
|
return key == NULL_KEY ? null : key;
|
|
}
|
|
|
|
/**
|
|
* Returns the value.
|
|
* @return the value
|
|
*/
|
|
public Object getValue()
|
|
{
|
|
return value;
|
|
}
|
|
|
|
/**
|
|
* This changes the value. This change takes place in
|
|
* the underlying hash map.
|
|
* @param newVal the new value
|
|
* @return the old value
|
|
*/
|
|
public Object setValue(Object newVal)
|
|
{
|
|
Object oldVal = value;
|
|
value = newVal;
|
|
return oldVal;
|
|
}
|
|
|
|
/**
|
|
* The hashCode as specified in the Entry interface.
|
|
* @return the hash code
|
|
*/
|
|
public int hashCode()
|
|
{
|
|
return key.hashCode() ^ WeakHashMap.hashCode(value);
|
|
}
|
|
|
|
/**
|
|
* The equals method as specified in the Entry interface.
|
|
* @param o the object to compare to
|
|
* @return true iff o represents the same key/value pair
|
|
*/
|
|
public boolean equals(Object o)
|
|
{
|
|
if (o instanceof Map.Entry)
|
|
{
|
|
Map.Entry e = (Map.Entry) o;
|
|
return key.equals(e.getKey())
|
|
&& WeakHashMap.equals(value, e.getValue());
|
|
}
|
|
return false;
|
|
}
|
|
|
|
public String toString()
|
|
{
|
|
return key + "=" + value;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* This returns the entry stored in this bucket, or null, if the
|
|
* bucket got cleared in the mean time.
|
|
* @return the Entry for this bucket, if it exists
|
|
*/
|
|
WeakEntry getEntry()
|
|
{
|
|
final Object key = get();
|
|
if (key == null)
|
|
return null;
|
|
return new WeakEntry(key);
|
|
}
|
|
}
|
|
|
|
/**
|
|
* The entry set returned by <code>entrySet()</code>.
|
|
*/
|
|
private final WeakEntrySet theEntrySet;
|
|
|
|
/**
|
|
* The hash buckets. These are linked lists.
|
|
*/
|
|
private WeakBucket[] buckets;
|
|
|
|
/**
|
|
* Creates a new weak hash map with default load factor and default
|
|
* capacity.
|
|
*/
|
|
public WeakHashMap()
|
|
{
|
|
this(DEFAULT_CAPACITY, DEFAULT_LOAD_FACTOR);
|
|
}
|
|
|
|
/**
|
|
* Creates a new weak hash map with default load factor and the given
|
|
* capacity.
|
|
* @param initialCapacity the initial capacity
|
|
* @throws IllegalArgumentException if initialCapacity is negative
|
|
*/
|
|
public WeakHashMap(int initialCapacity)
|
|
{
|
|
this(initialCapacity, DEFAULT_LOAD_FACTOR);
|
|
}
|
|
|
|
/**
|
|
* Creates a new weak hash map with the given initial capacity and
|
|
* load factor.
|
|
* @param initialCapacity the initial capacity.
|
|
* @param loadFactor the load factor (see class description of HashMap).
|
|
* @throws IllegalArgumentException if initialCapacity is negative, or
|
|
* loadFactor is non-positive
|
|
*/
|
|
public WeakHashMap(int initialCapacity, float loadFactor)
|
|
{
|
|
// Check loadFactor for NaN as well.
|
|
if (initialCapacity < 0 || ! (loadFactor > 0))
|
|
throw new IllegalArgumentException();
|
|
this.loadFactor = loadFactor;
|
|
threshold = (int) (initialCapacity * loadFactor);
|
|
theEntrySet = new WeakEntrySet();
|
|
queue = new ReferenceQueue();
|
|
buckets = new WeakBucket[initialCapacity];
|
|
}
|
|
|
|
/**
|
|
* Construct a new WeakHashMap with the same mappings as the given map.
|
|
* The WeakHashMap has a default load factor of 0.75.
|
|
*
|
|
* @param m the map to copy
|
|
* @throws NullPointerException if m is null
|
|
* @since 1.3
|
|
*/
|
|
public WeakHashMap(Map m)
|
|
{
|
|
this(m.size(), DEFAULT_LOAD_FACTOR);
|
|
putAll(m);
|
|
}
|
|
|
|
/**
|
|
* Simply hashes a non-null Object to its array index.
|
|
* @param key the key to hash
|
|
* @return its slot number
|
|
*/
|
|
private int hash(Object key)
|
|
{
|
|
return Math.abs(key.hashCode() % buckets.length);
|
|
}
|
|
|
|
/**
|
|
* Cleans the reference queue. This will poll all references (which
|
|
* are WeakBuckets) from the queue and remove them from this map.
|
|
* This will not change modCount, even if it modifies the map. The
|
|
* iterators have to make sure that nothing bad happens. <br>
|
|
*
|
|
* Currently the iterator maintains a strong reference to the key, so
|
|
* that is no problem.
|
|
*/
|
|
// Package visible for use by nested classes.
|
|
void cleanQueue()
|
|
{
|
|
Object bucket = queue.poll();
|
|
while (bucket != null)
|
|
{
|
|
internalRemove((WeakBucket) bucket);
|
|
bucket = queue.poll();
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Rehashes this hashtable. This will be called by the
|
|
* <code>add()</code> method if the size grows beyond the threshold.
|
|
* It will grow the bucket size at least by factor two and allocates
|
|
* new buckets.
|
|
*/
|
|
private void rehash()
|
|
{
|
|
WeakBucket[] oldBuckets = buckets;
|
|
int newsize = buckets.length * 2 + 1; // XXX should be prime.
|
|
threshold = (int) (newsize * loadFactor);
|
|
buckets = new WeakBucket[newsize];
|
|
|
|
// Now we have to insert the buckets again.
|
|
for (int i = 0; i < oldBuckets.length; i++)
|
|
{
|
|
WeakBucket bucket = oldBuckets[i];
|
|
WeakBucket nextBucket;
|
|
while (bucket != null)
|
|
{
|
|
nextBucket = bucket.next;
|
|
|
|
Object key = bucket.get();
|
|
if (key == null)
|
|
{
|
|
// This bucket should be removed; it is probably
|
|
// already on the reference queue. We don't insert it
|
|
// at all, and mark it as cleared.
|
|
bucket.slot = -1;
|
|
size--;
|
|
}
|
|
else
|
|
{
|
|
// Add this bucket to its new slot.
|
|
int slot = hash(key);
|
|
bucket.slot = slot;
|
|
bucket.next = buckets[slot];
|
|
buckets[slot] = bucket;
|
|
}
|
|
bucket = nextBucket;
|
|
}
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Finds the entry corresponding to key. Since it returns an Entry
|
|
* it will also prevent the key from being removed under us.
|
|
* @param key the key, may be null
|
|
* @return The WeakBucket.WeakEntry or null, if the key wasn't found.
|
|
*/
|
|
private WeakBucket.WeakEntry internalGet(Object key)
|
|
{
|
|
if (key == null)
|
|
key = NULL_KEY;
|
|
int slot = hash(key);
|
|
WeakBucket bucket = buckets[slot];
|
|
while (bucket != null)
|
|
{
|
|
WeakBucket.WeakEntry entry = bucket.getEntry();
|
|
if (entry != null && key.equals(entry.key))
|
|
return entry;
|
|
|
|
bucket = bucket.next;
|
|
}
|
|
return null;
|
|
}
|
|
|
|
/**
|
|
* Adds a new key/value pair to the hash map.
|
|
* @param key the key. This mustn't exists in the map. It may be null.
|
|
* @param value the value.
|
|
*/
|
|
private void internalAdd(Object key, Object value)
|
|
{
|
|
if (key == null)
|
|
key = NULL_KEY;
|
|
int slot = hash(key);
|
|
WeakBucket bucket = new WeakBucket(key, queue, value, slot);
|
|
bucket.next = buckets[slot];
|
|
buckets[slot] = bucket;
|
|
size++;
|
|
}
|
|
|
|
/**
|
|
* Removes a bucket from this hash map, if it wasn't removed before
|
|
* (e.g. one time through rehashing and one time through reference queue)
|
|
* @param bucket the bucket to remove.
|
|
*/
|
|
private void internalRemove(WeakBucket bucket)
|
|
{
|
|
int slot = bucket.slot;
|
|
if (slot == -1)
|
|
// This bucket was already removed.
|
|
return;
|
|
|
|
// Mark the bucket as removed. This is necessary, since the
|
|
// bucket may be enqueued later by the garbage collection, and
|
|
// internalRemove will be called a second time.
|
|
bucket.slot = -1;
|
|
if (buckets[slot] == bucket)
|
|
buckets[slot] = bucket.next;
|
|
else
|
|
{
|
|
WeakBucket prev = buckets[slot];
|
|
/* This may throw a NullPointerException. It shouldn't but if
|
|
* a race condition occurred (two threads removing the same
|
|
* bucket at the same time) it may happen. <br>
|
|
* But with race condition many much worse things may happen
|
|
* anyway.
|
|
*/
|
|
while (prev.next != bucket)
|
|
prev = prev.next;
|
|
prev.next = bucket.next;
|
|
}
|
|
size--;
|
|
}
|
|
|
|
/**
|
|
* Returns the size of this hash map. Note that the size() may shrink
|
|
* spontaneously, if the some of the keys were only weakly reachable.
|
|
* @return the number of entries in this hash map.
|
|
*/
|
|
public int size()
|
|
{
|
|
cleanQueue();
|
|
return size;
|
|
}
|
|
|
|
/**
|
|
* Tells if the map is empty. Note that the result may change
|
|
* spontanously, if all of the keys were only weakly reachable.
|
|
* @return true, iff the map is empty.
|
|
*/
|
|
public boolean isEmpty()
|
|
{
|
|
cleanQueue();
|
|
return size == 0;
|
|
}
|
|
|
|
/**
|
|
* Tells if the map contains the given key. Note that the result
|
|
* may change spontanously, if the key was only weakly
|
|
* reachable.
|
|
* @param key the key to look for
|
|
* @return true, iff the map contains an entry for the given key.
|
|
*/
|
|
public boolean containsKey(Object key)
|
|
{
|
|
cleanQueue();
|
|
return internalGet(key) != null;
|
|
}
|
|
|
|
/**
|
|
* Gets the value the key is mapped to.
|
|
* @return the value the key was mapped to. It returns null if
|
|
* the key wasn't in this map, or if the mapped value was
|
|
* explicitly set to null.
|
|
*/
|
|
public Object get(Object key)
|
|
{
|
|
cleanQueue();
|
|
WeakBucket.WeakEntry entry = internalGet(key);
|
|
return entry == null ? null : entry.getValue();
|
|
}
|
|
|
|
/**
|
|
* Adds a new key/value mapping to this map.
|
|
* @param key the key, may be null
|
|
* @param value the value, may be null
|
|
* @return the value the key was mapped to previously. It returns
|
|
* null if the key wasn't in this map, or if the mapped value
|
|
* was explicitly set to null.
|
|
*/
|
|
public Object put(Object key, Object value)
|
|
{
|
|
cleanQueue();
|
|
WeakBucket.WeakEntry entry = internalGet(key);
|
|
if (entry != null)
|
|
return entry.setValue(value);
|
|
|
|
modCount++;
|
|
if (size >= threshold)
|
|
rehash();
|
|
|
|
internalAdd(key, value);
|
|
return null;
|
|
}
|
|
|
|
/**
|
|
* Removes the key and the corresponding value from this map.
|
|
* @param key the key. This may be null.
|
|
* @return the value the key was mapped to previously. It returns
|
|
* null if the key wasn't in this map, or if the mapped value was
|
|
* explicitly set to null.
|
|
*/
|
|
public Object remove(Object key)
|
|
{
|
|
cleanQueue();
|
|
WeakBucket.WeakEntry entry = internalGet(key);
|
|
if (entry == null)
|
|
return null;
|
|
|
|
modCount++;
|
|
internalRemove(entry.getBucket());
|
|
return entry.getValue();
|
|
}
|
|
|
|
/**
|
|
* Returns a set representation of the entries in this map. This
|
|
* set will not have strong references to the keys, so they can be
|
|
* silently removed. The returned set has therefore the same
|
|
* strange behaviour (shrinking size(), disappearing entries) as
|
|
* this weak hash map.
|
|
* @return a set representation of the entries.
|
|
*/
|
|
public Set entrySet()
|
|
{
|
|
cleanQueue();
|
|
return theEntrySet;
|
|
}
|
|
|
|
/**
|
|
* Clears all entries from this map.
|
|
*/
|
|
public void clear()
|
|
{
|
|
super.clear();
|
|
}
|
|
|
|
/**
|
|
* Returns true if the map contains at least one key which points to
|
|
* the specified object as a value. Note that the result
|
|
* may change spontanously, if its key was only weakly reachable.
|
|
* @param value the value to search for
|
|
* @return true if it is found in the set.
|
|
*/
|
|
public boolean containsValue(Object value)
|
|
{
|
|
cleanQueue();
|
|
return super.containsValue(value);
|
|
}
|
|
|
|
/**
|
|
* Returns a set representation of the keys in this map. This
|
|
* set will not have strong references to the keys, so they can be
|
|
* silently removed. The returned set has therefore the same
|
|
* strange behaviour (shrinking size(), disappearing entries) as
|
|
* this weak hash map.
|
|
* @return a set representation of the keys.
|
|
*/
|
|
public Set keySet()
|
|
{
|
|
cleanQueue();
|
|
return super.keySet();
|
|
}
|
|
|
|
/**
|
|
* Puts all of the mappings from the given map into this one. If the
|
|
* key already exists in this map, its value is replaced.
|
|
* @param m the map to copy in
|
|
*/
|
|
public void putAll(Map m)
|
|
{
|
|
super.putAll(m);
|
|
}
|
|
|
|
/**
|
|
* Returns a collection representation of the values in this map. This
|
|
* collection will not have strong references to the keys, so mappings
|
|
* can be silently removed. The returned collection has therefore the same
|
|
* strange behaviour (shrinking size(), disappearing entries) as
|
|
* this weak hash map.
|
|
* @return a collection representation of the values.
|
|
*/
|
|
public Collection values()
|
|
{
|
|
cleanQueue();
|
|
return super.values();
|
|
}
|
|
}
|