Float2ReferenceFunction<V>, Float2ReferenceMap<V>, Function<java.lang.Float,V>, java.io.Serializable, java.util.function.DoubleFunction<V>, java.util.function.Function<java.lang.Float,V>, java.util.Map<java.lang.Float,V>Float2ReferenceSortedMaps.SynchronizedSortedMappublic static class Float2ReferenceMaps.SynchronizedMap<V> extends Float2ReferenceFunctions.SynchronizedFunction<V> implements Float2ReferenceMap<V>, java.io.Serializable
Float2ReferenceMap.Entry<V>, Float2ReferenceMap.FastEntrySet<V>| Modifier and Type | Method | Description |
|---|---|---|
V |
compute(float key,
java.util.function.BiFunction<? super java.lang.Float,? super V,? extends V> remappingFunction) |
Attempts to compute a mapping for the specified key and its current mapped
value (or
null if there is no current mapping). |
V |
compute(java.lang.Float key,
java.util.function.BiFunction<? super java.lang.Float,? super V,? extends V> remappingFunction) |
Deprecated.
Please use the corresponding type-specific method instead.
|
V |
computeIfAbsent(float key,
java.util.function.DoubleFunction<? extends V> mappingFunction) |
If the specified key is not already associated with a value, attempts to
compute its value using the given mapping function and enters it into this
map.
|
V |
computeIfAbsent(java.lang.Float key,
java.util.function.Function<? super java.lang.Float,? extends V> mappingFunction) |
Deprecated.
Please use the corresponding type-specific method instead.
|
V |
computeIfAbsentPartial(float key,
Float2ReferenceFunction<? extends V> mappingFunction) |
If the specified key is not already associated with a value, attempts to
compute its value using the given mapping function and enters it into this
map, unless the key is not present in the given mapping function.
|
V |
computeIfPresent(float key,
java.util.function.BiFunction<? super java.lang.Float,? super V,? extends V> remappingFunction) |
If the value for the specified key is present, attempts to compute a new
mapping given the key and its current mapped value.
|
V |
computeIfPresent(java.lang.Float key,
java.util.function.BiFunction<? super java.lang.Float,? super V,? extends V> remappingFunction) |
Deprecated.
Please use the corresponding type-specific method instead.
|
boolean |
containsValue(java.lang.Object v) |
|
ObjectSet<java.util.Map.Entry<java.lang.Float,V>> |
entrySet() |
Deprecated.
Please use the corresponding type-specific method instead.
|
boolean |
equals(java.lang.Object o) |
|
ObjectSet<Float2ReferenceMap.Entry<V>> |
float2ReferenceEntrySet() |
Returns a type-specific set view of the mappings contained in this map.
|
void |
forEach(java.util.function.BiConsumer<? super java.lang.Float,? super V> action) |
|
V |
getOrDefault(float key,
V defaultValue) |
Returns the value to which the specified key is mapped, or the
defaultValue if this map contains no mapping for the key. |
V |
getOrDefault(java.lang.Object key,
V defaultValue) |
Deprecated.
Please use the corresponding type-specific method instead.
|
int |
hashCode() |
|
boolean |
isEmpty() |
|
FloatSet |
keySet() |
|
V |
merge(float key,
V value,
java.util.function.BiFunction<? super V,? super V,? extends V> 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. |
V |
merge(java.lang.Float key,
V value,
java.util.function.BiFunction<? super V,? super V,? extends V> remappingFunction) |
Deprecated.
Please use the corresponding type-specific method instead.
|
void |
putAll(java.util.Map<? extends java.lang.Float,? extends V> m) |
|
V |
putIfAbsent(float key,
V value) |
If the specified key is not already associated with a value, associates it
with the given value and returns the default return value, else returns the current value.
|
V |
putIfAbsent(java.lang.Float key,
V value) |
Deprecated.
Please use the corresponding type-specific method instead.
|
boolean |
remove(float key,
java.lang.Object value) |
Removes the entry for the specified key only if it is currently mapped to the
specified value.
|
boolean |
remove(java.lang.Object key,
java.lang.Object value) |
Deprecated.
Please use the corresponding type-specific method instead.
|
V |
replace(float key,
V value) |
Replaces the entry for the specified key only if it is currently mapped to
some value.
|
boolean |
replace(float key,
V oldValue,
V newValue) |
Replaces the entry for the specified key only if currently mapped to the
specified value.
|
V |
replace(java.lang.Float key,
V value) |
Deprecated.
Please use the corresponding type-specific method instead.
|
boolean |
replace(java.lang.Float key,
V oldValue,
V newValue) |
Deprecated.
Please use the corresponding type-specific method instead.
|
void |
replaceAll(java.util.function.BiFunction<? super java.lang.Float,? super V,? extends V> function) |
|
ReferenceCollection<V> |
values() |
apply, get, put, removeapply, apply, clear, containsKey, containsKey, defaultReturnValue, defaultReturnValue, get, get, put, put, remove, remove, size, toStringclear, containsKey, containsKey, defaultReturnValue, defaultReturnValue, get, put, remove, sizepublic boolean containsValue(java.lang.Object v)
containsValue in interface java.util.Map<java.lang.Float,V>public void putAll(java.util.Map<? extends java.lang.Float,? extends V> m)
putAll in interface java.util.Map<java.lang.Float,V>public ObjectSet<Float2ReferenceMap.Entry<V>> float2ReferenceEntrySet()
Float2ReferenceMap
This method is necessary because there is no inheritance along type
parameters: it is thus impossible to strengthen Map.entrySet() so
that it returns an ObjectSet of
type-specific entries (the latter makes it possible to access keys and values
with type-specific methods).
float2ReferenceEntrySet in interface Float2ReferenceMap<V>Map.entrySet()@Deprecated public ObjectSet<java.util.Map.Entry<java.lang.Float,V>> entrySet()
Note that this specification strengthens the one given in
Map.entrySet().
entrySet in interface Float2ReferenceMap<V>entrySet in interface java.util.Map<java.lang.Float,V>Map.entrySet()public FloatSet keySet()
Float2ReferenceMap
Note that this specification strengthens the one given in
Map.keySet().
keySet in interface Float2ReferenceMap<V>keySet in interface java.util.Map<java.lang.Float,V>Map.keySet()public ReferenceCollection<V> values()
Float2ReferenceMap
Note that this specification strengthens the one given in
Map.values().
values in interface Float2ReferenceMap<V>values in interface java.util.Map<java.lang.Float,V>Map.values()public boolean isEmpty()
isEmpty in interface java.util.Map<java.lang.Float,V>public int hashCode()
hashCode in interface java.util.Map<java.lang.Float,V>hashCode in class Float2ReferenceFunctions.SynchronizedFunction<V>public boolean equals(java.lang.Object o)
equals in interface java.util.Map<java.lang.Float,V>equals in class Float2ReferenceFunctions.SynchronizedFunction<V>public V getOrDefault(float key, V defaultValue)
Float2ReferenceMapdefaultValue if this map contains no mapping for the key.getOrDefault in interface Float2ReferenceMap<V>key - the key.defaultValue - the default mapping of the key.defaultValue if this map contains no mapping for the key.Map.getOrDefault(Object, Object)public void forEach(java.util.function.BiConsumer<? super java.lang.Float,? super V> action)
forEach in interface java.util.Map<java.lang.Float,V>public void replaceAll(java.util.function.BiFunction<? super java.lang.Float,? super V,? extends V> function)
replaceAll in interface java.util.Map<java.lang.Float,V>public V putIfAbsent(float key, V value)
Float2ReferenceMapputIfAbsent in interface Float2ReferenceMap<V>key - key with which the specified value is to be associated.value - value to be associated with the specified key.Map.putIfAbsent(Object, Object)public boolean remove(float key,
java.lang.Object value)
Float2ReferenceMapremove in interface Float2ReferenceMap<V>key - key with which the specified value is associated.value - value expected to be associated with the specified key.true if the value was removed.Map.remove(Object, Object)public V replace(float key, V value)
Float2ReferenceMapreplace in interface Float2ReferenceMap<V>key - key with which the specified value is associated.value - value to be associated with the specified key.Map.replace(Object, Object)public boolean replace(float key,
V oldValue,
V newValue)
Float2ReferenceMapreplace in interface Float2ReferenceMap<V>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.true if the value was replaced.Map.replace(Object, Object, Object)public V computeIfAbsent(float key, java.util.function.DoubleFunction<? extends V> mappingFunction)
Float2ReferenceMap
Note that contrarily to the default
computeIfAbsent(), it is not possible to not add a value for a given key,
since the mappingFunction cannot return null. If such a
behavior is needed, please use the corresponding nullable version.
computeIfAbsent in interface Float2ReferenceMap<V>key - key with which the specified value is to be associated.mappingFunction - the function to compute a value.Map.computeIfAbsent(Object, java.util.function.Function)public V computeIfAbsentPartial(float key, Float2ReferenceFunction<? extends V> mappingFunction)
Float2ReferenceMap
This version of
computeIfAbsent() uses a type-specific version of fastutil's
Function. Since
Function has a
containsKey()
method, it is possible to avoid adding a key by having containsKey()
return false for that key.
computeIfAbsentPartial in interface Float2ReferenceMap<V>key - key with which the specified value is to be associated.mappingFunction - the function to compute a value.Map.computeIfAbsent(Object, java.util.function.Function)public V computeIfPresent(float key, java.util.function.BiFunction<? super java.lang.Float,? super V,? extends V> remappingFunction)
Float2ReferenceMapcomputeIfPresent in interface Float2ReferenceMap<V>key - key with which the specified value is to be associated.remappingFunction - the function to compute a value.Map.computeIfPresent(Object, java.util.function.BiFunction)public V compute(float key, java.util.function.BiFunction<? super java.lang.Float,? super V,? extends V> remappingFunction)
Float2ReferenceMapnull if there is no current mapping).
If the function returns null, the mapping is removed (or remains
absent if initially absent). If the function itself throws an (unchecked)
exception, the exception is rethrown, and the current mapping is left
unchanged.
compute in interface Float2ReferenceMap<V>key - key with which the specified value is to be associated.remappingFunction - the function to compute a value.Map.compute(Object, java.util.function.BiFunction)public V merge(float key, V value, java.util.function.BiFunction<? super V,? super V,? extends V> remappingFunction)
Float2ReferenceMapvalue. Otherwise,
replaces the associated value with the results of the given remapping
function, or removes if the result is null.merge in interface Float2ReferenceMap<V>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 is associated
with the key, to be associated with the key.remappingFunction - the function to recompute a value if present.Map.merge(Object, Object, java.util.function.BiFunction)@Deprecated public V getOrDefault(java.lang.Object key, V defaultValue)
This default implementation just delegates to the corresponding Map
method.
getOrDefault in interface Float2ReferenceMap<V>getOrDefault in interface java.util.Map<java.lang.Float,V>@Deprecated
public boolean remove(java.lang.Object key,
java.lang.Object value)
This default implementation just delegates to the corresponding Map
method.
remove in interface Float2ReferenceMap<V>remove in interface java.util.Map<java.lang.Float,V>@Deprecated public V replace(java.lang.Float key, V value)
This default implementation just delegates to the corresponding Map
method.
replace in interface Float2ReferenceMap<V>replace in interface java.util.Map<java.lang.Float,V>@Deprecated
public boolean replace(java.lang.Float key,
V oldValue,
V newValue)
This default implementation just delegates to the corresponding Map
method.
replace in interface Float2ReferenceMap<V>replace in interface java.util.Map<java.lang.Float,V>@Deprecated public V putIfAbsent(java.lang.Float key, V value)
This default implementation just delegates to the corresponding Map
method.
putIfAbsent in interface Float2ReferenceMap<V>putIfAbsent in interface java.util.Map<java.lang.Float,V>@Deprecated public V computeIfAbsent(java.lang.Float key, java.util.function.Function<? super java.lang.Float,? extends V> mappingFunction)
This default implementation just delegates to the corresponding Map
method.
computeIfAbsent in interface Float2ReferenceMap<V>computeIfAbsent in interface java.util.Map<java.lang.Float,V>@Deprecated public V computeIfPresent(java.lang.Float key, java.util.function.BiFunction<? super java.lang.Float,? super V,? extends V> remappingFunction)
This default implementation just delegates to the corresponding Map
method.
computeIfPresent in interface Float2ReferenceMap<V>computeIfPresent in interface java.util.Map<java.lang.Float,V>@Deprecated public V compute(java.lang.Float key, java.util.function.BiFunction<? super java.lang.Float,? super V,? extends V> remappingFunction)
This default implementation just delegates to the corresponding Map
method.
compute in interface Float2ReferenceMap<V>compute in interface java.util.Map<java.lang.Float,V>@Deprecated public V merge(java.lang.Float key, V value, java.util.function.BiFunction<? super V,? super V,? extends V> remappingFunction)
This default implementation just delegates to the corresponding Map
method.
merge in interface Float2ReferenceMap<V>merge in interface java.util.Map<java.lang.Float,V>