public class Float2DoubleRBTreeMap extends AbstractFloat2DoubleSortedMap implements java.io.Serializable, java.lang.Cloneable
The iterators provided by the views of this class are type-specific bidirectional iterators.
Moreover, the iterator returned by iterator() can be safely cast
to a type-specific list iterator.
AbstractFloat2DoubleMap.BasicEntryFloat2DoubleSortedMap.FastSortedEntrySetFloat2DoubleMap.FastEntrySet| Constructor and Description |
|---|
Float2DoubleRBTreeMap()
Creates a new empty tree map.
|
Float2DoubleRBTreeMap(java.util.Comparator<? super java.lang.Float> c)
Creates a new empty tree map with the given comparator.
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Float2DoubleRBTreeMap(float[] k,
double[] v)
Creates a new tree map using the elements of two parallel arrays.
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Float2DoubleRBTreeMap(float[] k,
double[] v,
java.util.Comparator<? super java.lang.Float> c)
Creates a new tree map using the elements of two parallel arrays and the given comparator.
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Float2DoubleRBTreeMap(Float2DoubleMap m)
Creates a new tree map copying a given map.
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Float2DoubleRBTreeMap(Float2DoubleSortedMap m)
Creates a new tree map copying a given sorted map (and its
Comparator). |
Float2DoubleRBTreeMap(java.util.Map<? extends java.lang.Float,? extends java.lang.Double> m)
Creates a new tree map copying a given map.
|
Float2DoubleRBTreeMap(java.util.SortedMap<java.lang.Float,java.lang.Double> m)
Creates a new tree map copying a given sorted map (and its
Comparator). |
| Modifier and Type | Method and Description |
|---|---|
double |
addTo(float k,
double incr)
Adds an increment to value currently associated with a key.
|
void |
clear()
Removes all associations from this function (optional operation).
|
Float2DoubleRBTreeMap |
clone()
Returns a deep copy of this tree map.
|
FloatComparator |
comparator()
Returns the comparator associated with this sorted set, or null if it uses its keys' natural ordering.
|
boolean |
containsKey(float k)
Checks whether the given value is contained in
AbstractFloat2DoubleMap.keySet(). |
boolean |
containsValue(double v)
Checks whether the given value is contained in
AbstractFloat2DoubleMap.values(). |
float |
firstFloatKey() |
ObjectSortedSet<Float2DoubleMap.Entry> |
float2DoubleEntrySet()
Returns a type-specific sorted-set view of the mappings contained in this map.
|
double |
get(float k)
Returns the value to which the given key is mapped.
|
Float2DoubleSortedMap |
headMap(float to)
Returns a view of the portion of this sorted map whose keys are strictly less than
toKey. |
boolean |
isEmpty() |
FloatSortedSet |
keySet()
Returns a type-specific sorted set view of the keys contained in this map.
|
float |
lastFloatKey() |
double |
put(float k,
double v)
Adds a pair to the map.
|
java.lang.Double |
put(java.lang.Float ok,
java.lang.Double ov)
Deprecated.
Please use the corresponding type-specific method instead.
|
double |
remove(float k)
Removes the mapping with the given key.
|
java.lang.Double |
remove(java.lang.Object ok)
Deprecated.
Please use the corresponding type-specific method instead.
|
int |
size()
Returns the intended number of keys in this function, or -1 if no such number exists.
|
Float2DoubleSortedMap |
subMap(float from,
float to)
Returns a view of the portion of this sorted map whose keys range from
fromKey, inclusive, to toKey, exclusive. |
Float2DoubleSortedMap |
tailMap(float from)
Returns a view of the portion of this sorted map whose keys are greater than or equal to
fromKey. |
DoubleCollection |
values()
Returns a type-specific collection view of the values contained in this map.
|
entrySet, firstKey, headMap, lastKey, subMap, tailMapcontainsValue, equals, hashCode, putAll, toStringcontainsKey, defaultReturnValue, defaultReturnValue, getdefaultReturnValue, defaultReturnValuecontainsKey, getpublic Float2DoubleRBTreeMap()
public Float2DoubleRBTreeMap(java.util.Comparator<? super java.lang.Float> c)
c - a (possibly type-specific) comparator.public Float2DoubleRBTreeMap(java.util.Map<? extends java.lang.Float,? extends java.lang.Double> m)
m - a Map to be copied into the new tree map.public Float2DoubleRBTreeMap(java.util.SortedMap<java.lang.Float,java.lang.Double> m)
Comparator).m - a SortedMap to be copied into the new tree map.public Float2DoubleRBTreeMap(Float2DoubleMap m)
m - a type-specific map to be copied into the new tree map.public Float2DoubleRBTreeMap(Float2DoubleSortedMap m)
Comparator).m - a type-specific sorted map to be copied into the new tree map.public Float2DoubleRBTreeMap(float[] k,
double[] v,
java.util.Comparator<? super java.lang.Float> c)
k - the array of keys of the new tree map.v - the array of corresponding values in the new tree map.c - a (possibly type-specific) comparator.java.lang.IllegalArgumentException - if k and v have different lengths.public Float2DoubleRBTreeMap(float[] k,
double[] v)
k - the array of keys of the new tree map.v - the array of corresponding values in the new tree map.java.lang.IllegalArgumentException - if k and v have different lengths.public double addTo(float k,
double incr)
Note that this method respects the default return value semantics: when called with a key that does not currently appears in the map, the key will be associated with the default return value plus the given increment.
k - the key.incr - the increment.public double put(float k,
double v)
Float2DoubleFunctionput in interface Float2DoubleFunctionput in class AbstractFloat2DoubleFunctionk - the key.v - the value.Function.put(Object,Object)public double remove(float k)
Float2DoubleFunctionremove in interface Float2DoubleFunctionremove in class AbstractFloat2DoubleFunctionk - the key.Function.remove(Object)@Deprecated
public java.lang.Double put(java.lang.Float ok,
java.lang.Double ov)
null on a missing key.
This method must check whether the provided key is in the map using containsKey(). Thus,
it probes the map twice. Implementors of subclasses should override it with a more efficient method.
put in interface Function<java.lang.Float,java.lang.Double>put in interface java.util.Map<java.lang.Float,java.lang.Double>put in class AbstractFloat2DoubleFunctionok - the key.ov - the value.null if no value was present for the given key.Map.put(Object,Object)@Deprecated public java.lang.Double remove(java.lang.Object ok)
null on a missing key.
This method must check whether the provided key is in the map using containsKey(). Thus,
it probes the map twice. Implementors of subclasses should override it with a more efficient method.
remove in interface Function<java.lang.Float,java.lang.Double>remove in interface java.util.Map<java.lang.Float,java.lang.Double>remove in class AbstractFloat2DoubleFunctionok - the key.null if no value was present for the given key.Map.remove(Object)public boolean containsValue(double v)
AbstractFloat2DoubleMapAbstractFloat2DoubleMap.values().containsValue in interface Float2DoubleMapcontainsValue in class AbstractFloat2DoubleMapMap.containsValue(Object)public void clear()
Functionclear in interface Function<java.lang.Float,java.lang.Double>clear in interface java.util.Map<java.lang.Float,java.lang.Double>clear in class AbstractFloat2DoubleFunctionMap.clear()public boolean containsKey(float k)
AbstractFloat2DoubleMapAbstractFloat2DoubleMap.keySet().containsKey in interface Float2DoubleFunctioncontainsKey in class AbstractFloat2DoubleMapFunction.containsKey(Object)public int size()
FunctionMost function implementations will have some knowledge of the intended number of keys in their domain. In some cases, however, this might not be possible.
public boolean isEmpty()
isEmpty in interface java.util.Map<java.lang.Float,java.lang.Double>isEmpty in class AbstractFloat2DoubleMappublic double get(float k)
Float2DoubleFunctionget in interface Float2DoubleFunctionk - the key.Function.get(Object)public float firstFloatKey()
firstFloatKey in interface Float2DoubleSortedMapSortedMap.firstKey()public float lastFloatKey()
lastFloatKey in interface Float2DoubleSortedMapSortedMap.lastKey()public ObjectSortedSet<Float2DoubleMap.Entry> float2DoubleEntrySet()
Float2DoubleSortedMapfloat2DoubleEntrySet in interface Float2DoubleMapfloat2DoubleEntrySet in interface Float2DoubleSortedMapFloat2DoubleSortedMap.entrySet()public FloatSortedSet keySet()
In addition to the semantics of Map.keySet(), you can
safely cast the set returned by this call to a type-specific sorted
set interface.
keySet in interface Float2DoubleMapkeySet in interface Float2DoubleSortedMapkeySet in interface java.util.Map<java.lang.Float,java.lang.Double>keySet in interface java.util.SortedMap<java.lang.Float,java.lang.Double>keySet in class AbstractFloat2DoubleSortedMapMap.keySet()public DoubleCollection values()
In addition to the semantics of Map.values(), you can
safely cast the collection returned by this call to a type-specific collection
interface.
values in interface Float2DoubleMapvalues in interface Float2DoubleSortedMapvalues in interface java.util.Map<java.lang.Float,java.lang.Double>values in interface java.util.SortedMap<java.lang.Float,java.lang.Double>values in class AbstractFloat2DoubleSortedMapMap.values()public FloatComparator comparator()
Float2DoubleSortedMapNote that this specification strengthens the one given in SortedMap.comparator().
comparator in interface Float2DoubleSortedMapcomparator in interface java.util.SortedMap<java.lang.Float,java.lang.Double>SortedMap.comparator()public Float2DoubleSortedMap headMap(float to)
Float2DoubleSortedMaptoKey.headMap in interface Float2DoubleSortedMapSortedMap.headMap(Object)public Float2DoubleSortedMap tailMap(float from)
Float2DoubleSortedMapfromKey.tailMap in interface Float2DoubleSortedMapSortedMap.tailMap(Object)public Float2DoubleSortedMap subMap(float from, float to)
Float2DoubleSortedMapfromKey, inclusive, to toKey, exclusive.subMap in interface Float2DoubleSortedMapSortedMap.subMap(Object,Object)public Float2DoubleRBTreeMap clone()
This method performs a deep copy of this tree map; the data stored in the set, however, is not cloned. Note that this makes a difference only for object keys.
clone in class java.lang.Object