Class ReferenceIdentityMap

  • All Implemented Interfaces:
    java.io.Serializable, java.util.Map, IterableMap

    @Deprecated(since="2021-04-30")
    public class ReferenceIdentityMap
    extends AbstractReferenceMap
    implements java.io.Serializable
    Deprecated.
    Apache Commons Collections version 3.x is being deprecated from AEMaaCS. The upgraded version 4.4 of Commons Collections is already included as replacement. Customers are advised to upgrade to this version of the library. Please note: the package name was changed to org.apache.commons.collections4. Further note that there are AEM APIs currently exposing the old collections classes; these will be updated in upcoming releases.
    A Map implementation that allows mappings to be removed by the garbage collector and matches keys and values based on == not equals().

    When you construct a ReferenceIdentityMap, you can specify what kind of references are used to store the map's keys and values. If non-hard references are used, then the garbage collector can remove mappings if a key or value becomes unreachable, or if the JVM's memory is running low. For information on how the different reference types behave, see Reference.

    Different types of references can be specified for keys and values. The default constructor uses hard keys and soft values, providing a memory-sensitive cache.

    This map is similar to ReferenceMap. It differs in that keys and values in this class are compared using ==.

    This map will violate the detail of various Map and map view contracts. As a general rule, don't compare this map to other maps.

    This Map implementation does not allow null elements. Attempting to add a null key or value to the map will raise a NullPointerException.

    This implementation is not synchronized. You can use Collections.synchronizedMap(java.util.Map<K, V>) to provide synchronized access to a ReferenceIdentityMap. Remember that synchronization will not stop the garbage collecter removing entries.

    All the available iterators can be reset back to the start by casting to ResettableIterator and calling reset().

    Note that ReferenceIdentityMap is not synchronized and is not thread-safe. If you wish to use this map from multiple threads concurrently, you must use appropriate synchronization. The simplest approach is to wrap this map using Collections.synchronizedMap(java.util.Map<K, V>). This class may throw exceptions when accessed by concurrent threads without synchronization.

    Since:
    Commons Collections 3.0 (previously in main package v2.1)
    See Also:
    Reference, Serialized Form
    • Nested Class Summary

      • Nested classes/interfaces inherited from class java.util.AbstractMap

        java.util.AbstractMap.SimpleEntry<K extends java.lang.Object,​V extends java.lang.Object>, java.util.AbstractMap.SimpleImmutableEntry<K extends java.lang.Object,​V extends java.lang.Object>
      • Nested classes/interfaces inherited from interface java.util.Map

        java.util.Map.Entry<K extends java.lang.Object,​V extends java.lang.Object>
    • Constructor Summary

      Constructors 
      Constructor Description
      ReferenceIdentityMap()
      Deprecated.
      Constructs a new ReferenceIdentityMap that will use hard references to keys and soft references to values.
      ReferenceIdentityMap​(int keyType, int valueType)
      Deprecated.
      Constructs a new ReferenceIdentityMap that will use the specified types of references.
      ReferenceIdentityMap​(int keyType, int valueType, boolean purgeValues)
      Deprecated.
      Constructs a new ReferenceIdentityMap that will use the specified types of references.
      ReferenceIdentityMap​(int keyType, int valueType, int capacity, float loadFactor)
      Deprecated.
      Constructs a new ReferenceIdentityMap with the specified reference types, load factor and initial capacity.
      ReferenceIdentityMap​(int keyType, int valueType, int capacity, float loadFactor, boolean purgeValues)
      Deprecated.
      Constructs a new ReferenceIdentityMap with the specified reference types, load factor and initial capacity.