Class ClassMap<T>

    • Constructor Summary

      Constructors 
      Constructor Description
      ClassMap()
      Конструктор
    • Method Summary

      All Methods Instance Methods Concrete Methods 
      Modifier and Type Method Description
      void clear()
      Очищает карту от всех пар ключ/значение
      T compute​(Class key, BiFunction<? super Class,​? super T,​? extends T> remappingFunction)
      Attempts to compute a mapping for the specified key and its current mapped value (or null if there is no current mapping).
      T computeIfAbsent​(Class key, Function<? super Class,​? extends T> mappingFunction)
      If the specified key is not already associated with a value (or is mapped to null), attempts to compute its value using the given mapping function and enters it into this map unless null.
      T computeIfPresent​(Class key, BiFunction<? super Class,​? super T,​? extends T> remappingFunction)
      If the value for the specified key is present and non-null, attempts to compute a new mapping given the key and its current mapped value.
      boolean containsKey​(Object key)
      Проверяет наличие узла в ключа
      boolean containsValue​(Object value)
      Проверяет наличие значения в карте
      Set<Map.Entry<Class,​T>> entrySet()
      Возвращает множество пар
      T fetch​(Class cls)
      Возвращает ассоциированное значение для ближайшего ковариантного типа
      void forEach​(BiConsumer<? super Class,​? super T> action)
      Performs the given action for each entry in this map until all entries have been processed or the action throws an exception.
      T get​(Class key)
      Возвращает по ключю значение
      T get​(Object key)
      Возвращает по ключю значение
      T getOrDefault​(Object key, T defaultValue)
      Returns the value to which the specified key is mapped, or defaultValue if this map contains no mapping for the key.
      Lock getReadLock()
      Возвращает блокировку чтения
      Lock getWriteLock()
      Возвращает блокировку записи
      boolean isEmpty()
      Проверяет что карта пустая
      Set<Class> keySet()
      Возвращает множество ключей
      T merge​(Class key, T value, BiFunction<? super T,​? super T,​? extends T> remappingFunction)
      If the specified key is not already associated with a value or is associated with null, associates it with the given non-null value.
      T put​(Class key, T value)
      Указывает значение для ключа
      void putAll​(Map<? extends Class,​? extends T> m)
      Добавляет карту в карту
      T putIfAbsent​(Class key, T value)
      If the specified key is not already associated with a value (or is mapped to null) associates it with the given value and returns null, else returns the current value.
      T remove​(Class key)
      Удаляет пару для указанного ключа
      T remove​(Object key)
      Удаляет пару для указанного ключа
      boolean remove​(Object key, Object value)
      Removes the entry for the specified key only if it is currently mapped to the specified value.
      T replace​(Class key, T value)
      Replaces the entry for the specified key only if it is currently mapped to some value.
      boolean replace​(Class key, T oldValue, T newValue)
      Replaces the entry for the specified key only if currently mapped to the specified value.
      void replaceAll​(BiFunction<? super Class,​? super T,​? extends T> function)
      Replaces each entry's value with the result of invoking the given function on that entry until all entries have been processed or the function throws an exception.
      int size()
      Возвращает кол-во пар значений в карте
      Collection<T> values()
      Возвращает значения
    • Constructor Detail

      • ClassMap

        public ClassMap()
        Конструктор
    • Method Detail

      • put

        public T put​(Class key,
                     T value)
        Указывает значение для ключа
        Specified by:
        put in interface Map<Class,​T>
        Parameters:
        key - ключ
        value - значение
        Returns:
        предыдущее значение
      • size

        public int size()
        Возвращает кол-во пар значений в карте
        Specified by:
        size in interface Map<Class,​T>
        Returns:
        кол-во пар значений
      • isEmpty

        public boolean isEmpty()
        Проверяет что карта пустая
        Specified by:
        isEmpty in interface Map<Class,​T>
        Returns:
        true - карта пустая
      • get

        public T get​(Class key)
        Возвращает по ключю значение
        Parameters:
        key - ключ
        Returns:
        значение
      • remove

        public T remove​(Class key)
        Удаляет пару для указанного ключа
        Parameters:
        key - ключ
        Returns:
        удаленное значение
      • putAll

        public void putAll​(Map<? extends Class,​? extends T> m)
        Добавляет карту в карту
        Specified by:
        putAll in interface Map<Class,​T>
        Parameters:
        m - карта
      • keySet

        public Set<Class> keySet()
        Возвращает множество ключей
        Specified by:
        keySet in interface Map<Class,​T>
        Returns:
        множество ключей
      • values

        public Collection<T> values()
        Возвращает значения
        Specified by:
        values in interface Map<Class,​T>
        Returns:
        значения
      • entrySet

        public Set<Map.Entry<Class,​T>> entrySet()
        Возвращает множество пар
        Specified by:
        entrySet in interface Map<Class,​T>
        Returns:
        множество пар
      • fetch

        public T fetch​(Class cls)
        Возвращает ассоциированное значение для ближайшего ковариантного типа
        Parameters:
        cls - ковариантного тип
        Returns:
        ассоциац значение или null
      • containsKey

        public boolean containsKey​(Object key)
        Проверяет наличие узла в ключа
        Specified by:
        containsKey in interface Map<Class,​T>
        Parameters:
        key - ключ
        Returns:
        true - ключ присуствует
      • containsValue

        public boolean containsValue​(Object value)
        Проверяет наличие значения в карте
        Specified by:
        containsValue in interface Map<Class,​T>
        Parameters:
        value - значение
        Returns:
        true - значение присуствует
      • get

        public T get​(Object key)
        Возвращает по ключю значение
        Specified by:
        get in interface Map<Class,​T>
        Parameters:
        key - ключ
        Returns:
        значение
      • remove

        public T remove​(Object key)
        Удаляет пару для указанного ключа
        Specified by:
        remove in interface Map<Class,​T>
        Parameters:
        key - ключ
        Returns:
        удаленное значение
      • clear

        public void clear()
        Очищает карту от всех пар ключ/значение
        Specified by:
        clear in interface Map<Class,​T>
      • getOrDefault

        public T getOrDefault​(Object key,
                              T defaultValue)
        Returns the value to which the specified key is mapped, or defaultValue if this map contains no mapping for the key. The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties.
        Specified by:
        getOrDefault in interface Map<Class,​T>
        Parameters:
        key - the key whose associated value is to be returned
        defaultValue - the default mapping of the key
        Returns:
        the value to which the specified key is mapped, or defaultValue if this map contains no mapping for the key
        Throws:
        ClassCastException - if the key is of an inappropriate type for this map (optional)
        NullPointerException - if the specified key is null and this map does not permit null keys (optional)
        Since:
        1.8
      • forEach

        public void forEach​(BiConsumer<? super Class,​? super T> action)
        Performs the given action for each entry in this map until all entries have been processed or the action throws an exception. Unless otherwise specified by the implementing class, actions are performed in the order of entry set iteration (if an iteration order is specified.) Exceptions thrown by the action are relayed to the caller. The default implementation is equivalent to, for this map:
         
         for (Map.Entry<K, V> entry : map.entrySet())
             action.accept(entry.getKey(), entry.getValue());
         
        The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties.
        Specified by:
        forEach in interface Map<Class,​T>
        Parameters:
        action - The action to be performed for each entry
        Throws:
        NullPointerException - if the specified action is null
        ConcurrentModificationException - if an entry is found to be removed during iteration
        Since:
        1.8
      • replaceAll

        public void replaceAll​(BiFunction<? super Class,​? super T,​? extends T> function)
        Replaces each entry's value with the result of invoking the given function on that entry until all entries have been processed or the function throws an exception. Exceptions thrown by the function are relayed to the caller.

        The default implementation is equivalent to, for this map:

         
         for (Map.Entry<K, V> entry : map.entrySet())
             entry.setValue(function.apply(entry.getKey(), entry.getValue()));
         

        The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties.

        Specified by:
        replaceAll in interface Map<Class,​T>
        Parameters:
        function - the function to apply to each entry
        Throws:
        UnsupportedOperationException - if the set operation is not supported by this map's entry set iterator.
        ClassCastException - if the class of a replacement value prevents it from being stored in this map
        NullPointerException - if the specified function is null, or the specified replacement value is null, and this map does not permit null values
        ClassCastException - if a replacement value is of an inappropriate type for this map (optional)
        NullPointerException - if function or a replacement value is null, and this map does not permit null keys or values (optional)
        IllegalArgumentException - if some property of a replacement value prevents it from being stored in this map (optional)
        ConcurrentModificationException - if an entry is found to be removed during iteration
        Since:
        1.8
      • putIfAbsent

        public T putIfAbsent​(Class key,
                             T value)
        If the specified key is not already associated with a value (or is mapped to null) associates it with the given value and returns null, else returns the current value. The default implementation is equivalent to, for this map:
         
         V v = map.get(key);
         if (v == null)
             v = map.put(key, value);
        
         return v;
         

        The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties.

        Specified by:
        putIfAbsent in interface Map<Class,​T>
        Parameters:
        key - key with which the specified value is to be associated
        value - value to be associated with the specified key
        Returns:
        the previous value associated with the specified key, or null if there was no mapping for the key. (A null return can also indicate that the map previously associated null with the key, if the implementation supports null values.)
        Throws:
        UnsupportedOperationException - if the put operation is not supported by this map (optional)
        ClassCastException - if the key or value is of an inappropriate type for this map (optional)
        NullPointerException - if the specified key or value is null, and this map does not permit null keys or values (optional)
        IllegalArgumentException - if some property of the specified key or value prevents it from being stored in this map (optional)
        Since:
        1.8
      • remove

        public boolean remove​(Object key,
                              Object value)
        Removes the entry for the specified key only if it is currently mapped to the specified value. The default implementation is equivalent to, for this map:
         
         if (map.containsKey(key) && Objects.equals(map.get(key), value)) {
             map.remove(key);
             return true;
         } else
             return false;
         

        The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties.

        Specified by:
        remove in interface Map<Class,​T>
        Parameters:
        key - key with which the specified value is associated
        value - value expected to be associated with the specified key
        Returns:
        true if the value was removed
        Throws:
        UnsupportedOperationException - if the remove operation is not supported by this map (optional)
        ClassCastException - if the key or value is of an inappropriate type for this map (optional)
        NullPointerException - if the specified key or value is null, and this map does not permit null keys or values (optional)
        Since:
        1.8
      • replace

        public boolean replace​(Class key,
                               T oldValue,
                               T newValue)
        Replaces the entry for the specified key only if currently mapped to the specified value. The default implementation is equivalent to, for this map:
         
         if (map.containsKey(key) && Objects.equals(map.get(key), value)) {
             map.put(key, newValue);
             return true;
         } else
             return false;
         
        The default implementation does not throw NullPointerException for maps that do not support null values if oldValue is null unless newValue is also null.

        The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties.

        Specified by:
        replace in interface Map<Class,​T>
        Parameters:
        key - key with which the specified value is associated
        oldValue - value expected to be associated with the specified key
        newValue - value to be associated with the specified key
        Returns:
        true if the value was replaced
        Throws:
        UnsupportedOperationException - if the put operation is not supported by this map (optional)
        ClassCastException - if the class of a specified key or value prevents it from being stored in this map
        NullPointerException - if a specified key or newValue is null, and this map does not permit null keys or values
        NullPointerException - if oldValue is null and this map does not permit null values (optional)
        IllegalArgumentException - if some property of a specified key or value prevents it from being stored in this map
        Since:
        1.8
      • replace

        public T replace​(Class key,
                         T value)
        Replaces the entry for the specified key only if it is currently mapped to some value. The default implementation is equivalent to, for this map:
         
         if (map.containsKey(key)) {
             return map.put(key, value);
         } else
             return null;
         

        The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties.

        Specified by:
        replace in interface Map<Class,​T>
        Parameters:
        key - key with which the specified value is associated
        value - value to be associated with the specified key
        Returns:
        the previous value associated with the specified key, or null if there was no mapping for the key. (A null return can also indicate that the map previously associated null with the key, if the implementation supports null values.)
        Throws:
        UnsupportedOperationException - if the put operation is not supported by this map (optional)
        ClassCastException - if the class of the specified key or value prevents it from being stored in this map (optional)
        NullPointerException - if the specified key or value is null, and this map does not permit null keys or values
        IllegalArgumentException - if some property of the specified key or value prevents it from being stored in this map
        Since:
        1.8
      • computeIfAbsent

        public T computeIfAbsent​(Class key,
                                 Function<? super Class,​? extends T> mappingFunction)
        If the specified key is not already associated with a value (or is mapped to null), attempts to compute its value using the given mapping function and enters it into this map unless null.

        If the mapping function returns null, no mapping is recorded. If the mapping function itself throws an (unchecked) exception, the exception is rethrown, and no mapping is recorded. The most common usage is to construct a new object serving as an initial mapped value or memoized result, as in:

         
         map.computeIfAbsent(key, k -> new Value(f(k)));
         

        Or to implement a multi-value map, Map<K,Collection<V>>, supporting multiple values per key:

         
         map.computeIfAbsent(key, k -> new HashSet<V>()).add(v);
         

        The mapping function should not modify this map during computation. The default implementation is equivalent to the following steps for this map, then returning the current value or null if now absent:

         
         if (map.get(key) == null) {
             V newValue = mappingFunction.apply(key);
             if (newValue != null)
                 map.put(key, newValue);
         }
         

        The default implementation makes no guarantees about detecting if the mapping function modifies this map during computation and, if appropriate, reporting an error. Non-concurrent implementations should override this method and, on a best-effort basis, throw a ConcurrentModificationException if it is detected that the mapping function modifies this map during computation. Concurrent implementations should override this method and, on a best-effort basis, throw an IllegalStateException if it is detected that the mapping function modifies this map during computation and as a result computation would never complete.

        The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties. In particular, all implementations of subinterface ConcurrentMap must document whether the mapping function is applied once atomically only if the value is not present.

        Specified by:
        computeIfAbsent in interface Map<Class,​T>
        Parameters:
        key - key with which the specified value is to be associated
        mappingFunction - the mapping function to compute a value
        Returns:
        the current (existing or computed) value associated with the specified key, or null if the computed value is null
        Throws:
        NullPointerException - if the specified key is null and this map does not support null keys, or the mappingFunction is null
        UnsupportedOperationException - if the put operation is not supported by this map (optional)
        ClassCastException - if the class of the specified key or value prevents it from being stored in this map (optional)
        IllegalArgumentException - if some property of the specified key or value prevents it from being stored in this map (optional)
        Since:
        1.8
      • computeIfPresent

        public T computeIfPresent​(Class key,
                                  BiFunction<? super Class,​? super T,​? extends T> remappingFunction)
        If the value for the specified key is present and non-null, attempts to compute a new mapping given the key and its current mapped value.

        If the remapping function returns null, the mapping is removed. If the remapping function itself throws an (unchecked) exception, the exception is rethrown, and the current mapping is left unchanged.

        The remapping function should not modify this map during computation. The default implementation is equivalent to performing the following steps for this map, then returning the current value or null if now absent:

         
         if (map.get(key) != null) {
             V oldValue = map.get(key);
             V newValue = remappingFunction.apply(key, oldValue);
             if (newValue != null)
                 map.put(key, newValue);
             else
                 map.remove(key);
         }
         

        The default implementation makes no guarantees about detecting if the remapping function modifies this map during computation and, if appropriate, reporting an error. Non-concurrent implementations should override this method and, on a best-effort basis, throw a ConcurrentModificationException if it is detected that the remapping function modifies this map during computation. Concurrent implementations should override this method and, on a best-effort basis, throw an IllegalStateException if it is detected that the remapping function modifies this map during computation and as a result computation would never complete.

        The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties. In particular, all implementations of subinterface ConcurrentMap must document whether the remapping function is applied once atomically only if the value is not present.

        Specified by:
        computeIfPresent in interface Map<Class,​T>
        Parameters:
        key - key with which the specified value is to be associated
        remappingFunction - the remapping function to compute a value
        Returns:
        the new value associated with the specified key, or null if none
        Throws:
        NullPointerException - if the specified key is null and this map does not support null keys, or the remappingFunction is null
        UnsupportedOperationException - if the put operation is not supported by this map (optional)
        ClassCastException - if the class of the specified key or value prevents it from being stored in this map (optional)
        IllegalArgumentException - if some property of the specified key or value prevents it from being stored in this map (optional)
        Since:
        1.8
      • compute

        public T compute​(Class key,
                         BiFunction<? super Class,​? super T,​? extends T> remappingFunction)
        Attempts to compute a mapping for the specified key and its current mapped value (or null if there is no current mapping). For example, to either create or append a String msg to a value mapping:
         
         map.compute(key, (k, v) -> (v == null) ? msg : v.concat(msg))
        (Method merge() is often simpler to use for such purposes.)

        If the remapping function returns null, the mapping is removed (or remains absent if initially absent). If the remapping function itself throws an (unchecked) exception, the exception is rethrown, and the current mapping is left unchanged.

        The remapping function should not modify this map during computation. The default implementation is equivalent to performing the following steps for this map, then returning the current value or null if absent:

         
         V oldValue = map.get(key);
         V newValue = remappingFunction.apply(key, oldValue);
         if (oldValue != null) {
            if (newValue != null)
               map.put(key, newValue);
            else
               map.remove(key);
         } else {
            if (newValue != null)
               map.put(key, newValue);
            else
               return null;
         }
         

        The default implementation makes no guarantees about detecting if the remapping function modifies this map during computation and, if appropriate, reporting an error. Non-concurrent implementations should override this method and, on a best-effort basis, throw a ConcurrentModificationException if it is detected that the remapping function modifies this map during computation. Concurrent implementations should override this method and, on a best-effort basis, throw an IllegalStateException if it is detected that the remapping function modifies this map during computation and as a result computation would never complete.

        The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties. In particular, all implementations of subinterface ConcurrentMap must document whether the remapping function is applied once atomically only if the value is not present.

        Specified by:
        compute in interface Map<Class,​T>
        Parameters:
        key - key with which the specified value is to be associated
        remappingFunction - the remapping function to compute a value
        Returns:
        the new value associated with the specified key, or null if none
        Throws:
        NullPointerException - if the specified key is null and this map does not support null keys, or the remappingFunction is null
        UnsupportedOperationException - if the put operation is not supported by this map (optional)
        ClassCastException - if the class of the specified key or value prevents it from being stored in this map (optional)
        IllegalArgumentException - if some property of the specified key or value prevents it from being stored in this map (optional)
        Since:
        1.8
      • merge

        public T merge​(Class key,
                       T value,
                       BiFunction<? super T,​? super T,​? extends T> remappingFunction)
        If the specified key is not already associated with a value or is associated with null, associates it with the given non-null value. Otherwise, replaces the associated value with the results of the given remapping function, or removes if the result is null. This method may be of use when combining multiple mapped values for a key. For example, to either create or append a String msg to a value mapping:
         
         map.merge(key, msg, String::concat)
         

        If the remapping function returns null, the mapping is removed. If the remapping function itself throws an (unchecked) exception, the exception is rethrown, and the current mapping is left unchanged.

        The remapping function should not modify this map during computation. The default implementation is equivalent to performing the following steps for this map, then returning the current value or null if absent:

         
         V oldValue = map.get(key);
         V newValue = (oldValue == null) ? value :
                      remappingFunction.apply(oldValue, value);
         if (newValue == null)
             map.remove(key);
         else
             map.put(key, newValue);
         

        The default implementation makes no guarantees about detecting if the remapping function modifies this map during computation and, if appropriate, reporting an error. Non-concurrent implementations should override this method and, on a best-effort basis, throw a ConcurrentModificationException if it is detected that the remapping function modifies this map during computation. Concurrent implementations should override this method and, on a best-effort basis, throw an IllegalStateException if it is detected that the remapping function modifies this map during computation and as a result computation would never complete.

        The default implementation makes no guarantees about synchronization or atomicity properties of this method. Any implementation providing atomicity guarantees must override this method and document its concurrency properties. In particular, all implementations of subinterface ConcurrentMap must document whether the remapping function is applied once atomically only if the value is not present.

        Specified by:
        merge in interface Map<Class,​T>
        Parameters:
        key - key with which the resulting value is to be associated
        value - the non-null value to be merged with the existing value associated with the key or, if no existing value or a null value is associated with the key, to be associated with the key
        remappingFunction - the remapping function to recompute a value if present
        Returns:
        the new value associated with the specified key, or null if no value is associated with the key
        Throws:
        UnsupportedOperationException - if the put operation is not supported by this map (optional)
        ClassCastException - if the class of the specified key or value prevents it from being stored in this map (optional)
        IllegalArgumentException - if some property of the specified key or value prevents it from being stored in this map (optional)
        NullPointerException - if the specified key is null and this map does not support null keys or the value or remappingFunction is null
        Since:
        1.8