Class Long2DoubleLinkedOpenHashMap
- java.lang.Object
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- it.unimi.dsi.fastutil.longs.AbstractLong2DoubleFunction
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- it.unimi.dsi.fastutil.longs.AbstractLong2DoubleMap
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- it.unimi.dsi.fastutil.longs.AbstractLong2DoubleSortedMap
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- it.unimi.dsi.fastutil.longs.Long2DoubleLinkedOpenHashMap
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- All Implemented Interfaces:
Function<Long,Double>,Hash,Long2DoubleFunction,Long2DoubleMap,Long2DoubleSortedMap,Serializable,Cloneable,Function<Long,Double>,LongToDoubleFunction,Map<Long,Double>,SortedMap<Long,Double>
public class Long2DoubleLinkedOpenHashMap extends AbstractLong2DoubleSortedMap implements Serializable, Cloneable, Hash
A type-specific linked hash map with with a fast, small-footprint implementation.Instances of this class use a hash table to represent a map. The table is filled up to a specified load factor, and then doubled in size to accommodate new entries. If the table is emptied below one fourth of the load factor, it is halved in size; however, the table is never reduced to a size smaller than that at creation time: this approach makes it possible to create maps with a large capacity in which insertions and deletions do not cause immediately rehashing. Moreover, halving is not performed when deleting entries from an iterator, as it would interfere with the iteration process.
Note that
clear()does not modify the hash table size. Rather, a family of trimming methods lets you control the size of the table; this is particularly useful if you reuse instances of this class.Iterators generated by this map will enumerate pairs in the same order in which they have been added to the map (addition of pairs whose key is already present in the map does not change the iteration order). Note that this order has nothing in common with the natural order of the keys. The order is kept by means of a doubly linked list, represented via an array of longs parallel to the table.
This class implements the interface of a sorted map, so to allow easy access of the iteration order: for instance, you can get the first key in iteration order with
firstKey()without having to create an iterator; however, this class partially violates theSortedMapcontract because all submap methods throw an exception andcomparator()returns alwaysnull.Additional methods, such as
getAndMoveToFirst(), make it easy to use instances of this class as a cache (e.g., with LRU policy).The iterators provided by the views of this class using are type-specific list iterators, and can be started at any element which is a key of the map, or a
NoSuchElementExceptionexception will be thrown. If, however, the provided element is not the first or last key in the map, the first access to the list index will require linear time, as in the worst case the entire key set must be scanned in iteration order to retrieve the positional index of the starting key. If you use just the methods of a type-specificBidirectionalIterator, however, all operations will be performed in constant time.- See Also:
Hash,HashCommon, Serialized Form
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Nested Class Summary
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Nested classes/interfaces inherited from class it.unimi.dsi.fastutil.longs.AbstractLong2DoubleMap
AbstractLong2DoubleMap.BasicEntry, AbstractLong2DoubleMap.BasicEntrySet
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Nested classes/interfaces inherited from interface it.unimi.dsi.fastutil.Hash
Hash.Strategy<K>
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Nested classes/interfaces inherited from interface it.unimi.dsi.fastutil.longs.Long2DoubleMap
Long2DoubleMap.Entry, Long2DoubleMap.FastEntrySet
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Nested classes/interfaces inherited from interface it.unimi.dsi.fastutil.longs.Long2DoubleSortedMap
Long2DoubleSortedMap.FastSortedEntrySet
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Field Summary
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Fields inherited from interface it.unimi.dsi.fastutil.Hash
DEFAULT_GROWTH_FACTOR, DEFAULT_INITIAL_SIZE, DEFAULT_LOAD_FACTOR, FAST_LOAD_FACTOR, FREE, OCCUPIED, PRIMES, REMOVED, VERY_FAST_LOAD_FACTOR
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Constructor Summary
Constructors Constructor Description Long2DoubleLinkedOpenHashMap()Creates a new hash map with initial expectedHash.DEFAULT_INITIAL_SIZEentries andHash.DEFAULT_LOAD_FACTORas load factor.Long2DoubleLinkedOpenHashMap(int expected)Creates a new hash map withHash.DEFAULT_LOAD_FACTORas load factor.Long2DoubleLinkedOpenHashMap(int expected, float f)Creates a new hash map.Long2DoubleLinkedOpenHashMap(long[] k, double[] v)Creates a new hash map withHash.DEFAULT_LOAD_FACTORas load factor using the elements of two parallel arrays.Long2DoubleLinkedOpenHashMap(long[] k, double[] v, float f)Creates a new hash map using the elements of two parallel arrays.Long2DoubleLinkedOpenHashMap(Long2DoubleMap m)Creates a new hash map withHash.DEFAULT_LOAD_FACTORas load factor copying a given type-specific one.Long2DoubleLinkedOpenHashMap(Long2DoubleMap m, float f)Creates a new hash map copying a given type-specific one.Long2DoubleLinkedOpenHashMap(Map<? extends Long,? extends Double> m)Creates a new hash map withHash.DEFAULT_LOAD_FACTORas load factor copying a given one.Long2DoubleLinkedOpenHashMap(Map<? extends Long,? extends Double> m, float f)Creates a new hash map copying a given one.
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Method Summary
Modifier and Type Method Description doubleaddTo(long k, double incr)Adds an increment to value currently associated with a key.voidclear()Removes all of the mappings from this map (optional operation).Long2DoubleLinkedOpenHashMapclone()Returns a deep copy of this map.LongComparatorcomparator()Returns the comparator associated with this sorted set, or null if it uses its keys' natural ordering.doublecompute(long k, BiFunction<? super Long,? super Double,? extends Double> remappingFunction)Attempts to compute a mapping for the specified key and its current mapped value (ornullif there is no current mapping).doublecomputeIfAbsent(long k, LongToDoubleFunction 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.doublecomputeIfAbsentNullable(long k, LongFunction<? extends Double> 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 it isnull.doublecomputeIfPresent(long k, BiFunction<? super Long,? super Double,? extends Double> remappingFunction)If the value for the specified key is present, attempts to compute a new mapping given the key and its current mapped value.booleancontainsKey(long k)Returns true if this function contains a mapping for the specified key.booleancontainsValue(double v)Returnstrueif this map maps one or more keys to the specified value.longfirstLongKey()Returns the first key of this map in iteration order.doubleget(long k)Returns the value to which the given key is mapped.doublegetAndMoveToFirst(long k)Returns the value to which the given key is mapped; if the key is present, it is moved to the first position of the iteration order.doublegetAndMoveToLast(long k)Returns the value to which the given key is mapped; if the key is present, it is moved to the last position of the iteration order.doublegetOrDefault(long k, double defaultValue)Returns the value to which the specified key is mapped, or thedefaultValueif this map contains no mapping for the key.inthashCode()Returns a hash code for this map.Long2DoubleSortedMapheadMap(long to)Returns a view of the portion of this sorted map whose keys are strictly less thantoKey.booleanisEmpty()LongSortedSetkeySet()Returns a type-specific-set view of the keys of this map.longlastLongKey()Returns the last key of this map in iteration order.Long2DoubleSortedMap.FastSortedEntrySetlong2DoubleEntrySet()Returns a type-specific sorted-set view of the mappings contained in this map.doublemerge(long k, double v, BiFunction<? super Double,? super Double,? extends Double> remappingFunction)If the specified key is not already associated with a value, associates it with the givenvalue.doubleput(long k, double v)Adds a pair to the map (optional operation).voidputAll(Map<? extends Long,? extends Double> m)doubleputAndMoveToFirst(long k, double v)Adds a pair to the map; if the key is already present, it is moved to the first position of the iteration order.doubleputAndMoveToLast(long k, double v)Adds a pair to the map; if the key is already present, it is moved to the last position of the iteration order.doubleputIfAbsent(long k, double v)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.doubleremove(long k)Removes the mapping with the given key (optional operation).booleanremove(long k, double v)Removes the entry for the specified key only if it is currently mapped to the specified value.doubleremoveFirstDouble()Removes the mapping associated with the first key in iteration order.doubleremoveLastDouble()Removes the mapping associated with the last key in iteration order.doublereplace(long k, double v)Replaces the entry for the specified key only if it is currently mapped to some value.booleanreplace(long k, double oldValue, double v)Replaces the entry for the specified key only if currently mapped to the specified value.intsize()Returns the number of key/value mappings in this map.Long2DoubleSortedMapsubMap(long from, long to)Returns a view of the portion of this sorted map whose keys range fromfromKey, inclusive, totoKey, exclusive.Long2DoubleSortedMaptailMap(long from)Returns a view of the portion of this sorted map whose keys are greater than or equal tofromKey.booleantrim()Rehashes the map, making the table as small as possible.booleantrim(int n)Rehashes this map if the table is too large.DoubleCollectionvalues()Returns a type-specific-set view of the values of this map.-
Methods inherited from class it.unimi.dsi.fastutil.longs.AbstractLong2DoubleMap
equals, toString
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Methods inherited from class it.unimi.dsi.fastutil.longs.AbstractLong2DoubleFunction
defaultReturnValue, defaultReturnValue
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Methods inherited from interface it.unimi.dsi.fastutil.longs.Long2DoubleFunction
applyAsDouble
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Methods inherited from interface it.unimi.dsi.fastutil.longs.Long2DoubleMap
compute, computeIfAbsent, computeIfAbsentPartial, computeIfPresent, containsKey, containsValue, defaultReturnValue, defaultReturnValue, get, getOrDefault, merge, put, putIfAbsent, remove, remove, replace, replace
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Methods inherited from interface it.unimi.dsi.fastutil.longs.Long2DoubleSortedMap
entrySet, firstKey, headMap, lastKey, subMap, tailMap
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Methods inherited from interface java.util.Map
containsKey, equals, forEach, get, put, remove, replaceAll
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Constructor Detail
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Long2DoubleLinkedOpenHashMap
public Long2DoubleLinkedOpenHashMap(int expected, float f)Creates a new hash map.The actual table size will be the least power of two greater than
expected/f.- Parameters:
expected- the expected number of elements in the hash map.f- the load factor.
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Long2DoubleLinkedOpenHashMap
public Long2DoubleLinkedOpenHashMap(int expected)
Creates a new hash map withHash.DEFAULT_LOAD_FACTORas load factor.- Parameters:
expected- the expected number of elements in the hash map.
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Long2DoubleLinkedOpenHashMap
public Long2DoubleLinkedOpenHashMap()
Creates a new hash map with initial expectedHash.DEFAULT_INITIAL_SIZEentries andHash.DEFAULT_LOAD_FACTORas load factor.
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Long2DoubleLinkedOpenHashMap
public Long2DoubleLinkedOpenHashMap(Map<? extends Long,? extends Double> m, float f)
Creates a new hash map copying a given one.- Parameters:
m- aMapto be copied into the new hash map.f- the load factor.
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Long2DoubleLinkedOpenHashMap
public Long2DoubleLinkedOpenHashMap(Map<? extends Long,? extends Double> m)
Creates a new hash map withHash.DEFAULT_LOAD_FACTORas load factor copying a given one.- Parameters:
m- aMapto be copied into the new hash map.
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Long2DoubleLinkedOpenHashMap
public Long2DoubleLinkedOpenHashMap(Long2DoubleMap m, float f)
Creates a new hash map copying a given type-specific one.- Parameters:
m- a type-specific map to be copied into the new hash map.f- the load factor.
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Long2DoubleLinkedOpenHashMap
public Long2DoubleLinkedOpenHashMap(Long2DoubleMap m)
Creates a new hash map withHash.DEFAULT_LOAD_FACTORas load factor copying a given type-specific one.- Parameters:
m- a type-specific map to be copied into the new hash map.
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Long2DoubleLinkedOpenHashMap
public Long2DoubleLinkedOpenHashMap(long[] k, double[] v, float f)Creates a new hash map using the elements of two parallel arrays.- Parameters:
k- the array of keys of the new hash map.v- the array of corresponding values in the new hash map.f- the load factor.- Throws:
IllegalArgumentException- ifkandvhave different lengths.
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Long2DoubleLinkedOpenHashMap
public Long2DoubleLinkedOpenHashMap(long[] k, double[] v)Creates a new hash map withHash.DEFAULT_LOAD_FACTORas load factor using the elements of two parallel arrays.- Parameters:
k- the array of keys of the new hash map.v- the array of corresponding values in the new hash map.- Throws:
IllegalArgumentException- ifkandvhave different lengths.
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Method Detail
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putAll
public void putAll(Map<? extends Long,? extends Double> m)
Description copied from class:AbstractLong2DoubleMap
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put
public double put(long k, double v)Description copied from interface:Long2DoubleFunctionAdds a pair to the map (optional operation).- Specified by:
putin interfaceLong2DoubleFunction- Parameters:
k- the key.v- the value.- Returns:
- the old value, or the default return value if no value was present for the given key.
- See Also:
Function.put(Object,Object)
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addTo
public double addTo(long k, double incr)Adds an increment to value currently associated with a key.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.
- Parameters:
k- the key.incr- the increment.- Returns:
- the old value, or the default return value if no value was present for the given key.
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remove
public double remove(long k)
Description copied from interface:Long2DoubleFunctionRemoves the mapping with the given key (optional operation).- Specified by:
removein interfaceLong2DoubleFunction- Parameters:
k- the key.- Returns:
- the old value, or the default return value if no value was present for the given key.
- See Also:
Function.remove(Object)
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removeFirstDouble
public double removeFirstDouble()
Removes the mapping associated with the first key in iteration order.- Returns:
- the value previously associated with the first key in iteration order.
- Throws:
NoSuchElementException- is this map is empty.
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removeLastDouble
public double removeLastDouble()
Removes the mapping associated with the last key in iteration order.- Returns:
- the value previously associated with the last key in iteration order.
- Throws:
NoSuchElementException- is this map is empty.
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getAndMoveToFirst
public double getAndMoveToFirst(long k)
Returns the value to which the given key is mapped; if the key is present, it is moved to the first position of the iteration order.- Parameters:
k- the key.- Returns:
- the corresponding value, or the default return value if no value was present for the given key.
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getAndMoveToLast
public double getAndMoveToLast(long k)
Returns the value to which the given key is mapped; if the key is present, it is moved to the last position of the iteration order.- Parameters:
k- the key.- Returns:
- the corresponding value, or the default return value if no value was present for the given key.
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putAndMoveToFirst
public double putAndMoveToFirst(long k, double v)Adds a pair to the map; if the key is already present, it is moved to the first position of the iteration order.- Parameters:
k- the key.v- the value.- Returns:
- the old value, or the default return value if no value was present for the given key.
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putAndMoveToLast
public double putAndMoveToLast(long k, double v)Adds a pair to the map; if the key is already present, it is moved to the last position of the iteration order.- Parameters:
k- the key.v- the value.- Returns:
- the old value, or the default return value if no value was present for the given key.
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get
public double get(long k)
Description copied from interface:Long2DoubleFunctionReturns the value to which the given key is mapped.- Specified by:
getin interfaceLong2DoubleFunction- Parameters:
k- the key.- Returns:
- the corresponding value, or the default return value if no value was present for the given key.
- See Also:
Function.get(Object)
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containsKey
public boolean containsKey(long k)
Description copied from interface:Long2DoubleMapReturns true if this function contains a mapping for the specified key.- Specified by:
containsKeyin interfaceLong2DoubleFunction- Specified by:
containsKeyin interfaceLong2DoubleMap- Overrides:
containsKeyin classAbstractLong2DoubleMap- Parameters:
k- the key.- Returns:
- true if this function associates a value to
key. - See Also:
Map.containsKey(Object)
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containsValue
public boolean containsValue(double v)
Description copied from interface:Long2DoubleMapReturnstrueif this map maps one or more keys to the specified value.- Specified by:
containsValuein interfaceLong2DoubleMap- Overrides:
containsValuein classAbstractLong2DoubleMap- See Also:
Map.containsValue(Object)
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getOrDefault
public double getOrDefault(long k, double defaultValue)Returns the value to which the specified key is mapped, or thedefaultValueif this map contains no mapping for the key.- Specified by:
getOrDefaultin interfaceLong2DoubleMap- Parameters:
k- the key.defaultValue- the default mapping of the key.- Returns:
- the value to which the specified key is mapped, or the
defaultValueif this map contains no mapping for the key. - See Also:
Map.getOrDefault(Object, Object)
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putIfAbsent
public double putIfAbsent(long k, double v)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.- Specified by:
putIfAbsentin interfaceLong2DoubleMap- Parameters:
k- key with which the specified value is to be associated.v- value to be associated with the specified key.- Returns:
- the previous value associated with the specified key, or the default return value if there was no mapping for the key.
- See Also:
Map.putIfAbsent(Object, Object)
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remove
public boolean remove(long k, double v)Removes the entry for the specified key only if it is currently mapped to the specified value.- Specified by:
removein interfaceLong2DoubleMap- Parameters:
k- key with which the specified value is associated.v- value expected to be associated with the specified key.- Returns:
trueif the value was removed.- See Also:
Map.remove(Object, Object)
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replace
public boolean replace(long k, double oldValue, double v)Replaces the entry for the specified key only if currently mapped to the specified value.- Specified by:
replacein interfaceLong2DoubleMap- Parameters:
k- key with which the specified value is associated.oldValue- value expected to be associated with the specified key.v- value to be associated with the specified key.- Returns:
trueif the value was replaced.- See Also:
Map.replace(Object, Object, Object)
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replace
public double replace(long k, double v)Replaces the entry for the specified key only if it is currently mapped to some value.- Specified by:
replacein interfaceLong2DoubleMap- Parameters:
k- key with which the specified value is associated.v- value to be associated with the specified key.- Returns:
- the previous value associated with the specified key, or the default return value if there was no mapping for the key.
- See Also:
Map.replace(Object, Object)
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computeIfAbsent
public double computeIfAbsent(long k, LongToDoubleFunction 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.Note that contrarily to the default computeIfAbsent(), it is not possible to not add a value for a given key, since the
mappingFunctioncannot returnnull. If such a behavior is needed, please use the corresponding nullable version.- Specified by:
computeIfAbsentin interfaceLong2DoubleMap- Parameters:
k- key with which the specified value is to be associated.mappingFunction- the function to compute a value.- Returns:
- the current (existing or computed) value associated with the specified key.
- See Also:
Map.computeIfAbsent(Object, java.util.function.Function)
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computeIfAbsentNullable
public double computeIfAbsentNullable(long k, LongFunction<? extends Double> 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 it isnull.Note that this version of computeIfAbsent() should be used only if you plan to return
nullin the mapping function.- Specified by:
computeIfAbsentNullablein interfaceLong2DoubleMap- Parameters:
k- key with which the specified value is to be associated.mappingFunction- the function to compute a value.- Returns:
- the current (existing or computed) value associated with the
specified key, or the default
return value if the computed value is
null. - See Also:
Map.computeIfAbsent(Object, java.util.function.Function)
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computeIfPresent
public double computeIfPresent(long k, BiFunction<? super Long,? super Double,? extends Double> remappingFunction)If the value for the specified key is present, attempts to compute a new mapping given the key and its current mapped value.- Specified by:
computeIfPresentin interfaceLong2DoubleMap- Parameters:
k- key with which the specified value is to be associated.remappingFunction- the function to compute a value.- Returns:
- the new value associated with the specified key, or the default return value if none.
- See Also:
Map.computeIfPresent(Object, java.util.function.BiFunction)
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compute
public double compute(long k, BiFunction<? super Long,? super Double,? extends Double> remappingFunction)Attempts to compute a mapping for the specified key and its current mapped value (ornullif 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.- Specified by:
computein interfaceLong2DoubleMap- Parameters:
k- key with which the specified value is to be associated.remappingFunction- the function to compute a value.- Returns:
- the new value associated with the specified key, or the default return value if none.
- See Also:
Map.compute(Object, java.util.function.BiFunction)
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merge
public double merge(long k, double v, BiFunction<? super Double,? super Double,? extends Double> remappingFunction)If the specified key is not already associated with a value, associates it with the givenvalue. Otherwise, replaces the associated value with the results of the given remapping function, or removes if the result isnull.- Specified by:
mergein interfaceLong2DoubleMap- Parameters:
k- key with which the resulting value is to be associated.v- the 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.- Returns:
- the new value associated with the specified key, or the default return value if no value is associated with the key.
- See Also:
Map.merge(Object, Object, java.util.function.BiFunction)
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clear
public void clear()
Description copied from interface:Long2DoubleMapRemoves all of the mappings from this map (optional operation). The map will be empty after this call returns.
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size
public int size()
Description copied from interface:Long2DoubleMapReturns the number of key/value mappings in this map. If the map contains more thanInteger.MAX_VALUEelements, returnsInteger.MAX_VALUE.
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isEmpty
public boolean isEmpty()
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firstLongKey
public long firstLongKey()
Returns the first key of this map in iteration order.- Specified by:
firstLongKeyin interfaceLong2DoubleSortedMap- Returns:
- the first key in iteration order.
- See Also:
SortedMap.firstKey()
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lastLongKey
public long lastLongKey()
Returns the last key of this map in iteration order.- Specified by:
lastLongKeyin interfaceLong2DoubleSortedMap- Returns:
- the last key in iteration order.
- See Also:
SortedMap.lastKey()
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tailMap
public Long2DoubleSortedMap tailMap(long from)
Returns a view of the portion of this sorted map whose keys are greater than or equal tofromKey.Note that this specification strengthens the one given in
SortedMap.tailMap(Object).This implementation just throws an
UnsupportedOperationException.- Specified by:
tailMapin interfaceLong2DoubleSortedMap- See Also:
SortedMap.tailMap(Object)
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headMap
public Long2DoubleSortedMap headMap(long to)
Returns a view of the portion of this sorted map whose keys are strictly less thantoKey.Note that this specification strengthens the one given in
SortedMap.headMap(Object).This implementation just throws an
UnsupportedOperationException.- Specified by:
headMapin interfaceLong2DoubleSortedMap- See Also:
SortedMap.headMap(Object)
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subMap
public Long2DoubleSortedMap subMap(long from, long to)
Returns a view of the portion of this sorted map whose keys range fromfromKey, inclusive, totoKey, exclusive.Note that this specification strengthens the one given in
SortedMap.subMap(Object,Object).This implementation just throws an
UnsupportedOperationException.- Specified by:
subMapin interfaceLong2DoubleSortedMap- See Also:
SortedMap.subMap(Object,Object)
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comparator
public LongComparator comparator()
Returns the comparator associated with this sorted set, or null if it uses its keys' natural ordering.Note that this specification strengthens the one given in
SortedMap.comparator().This implementation just returns
null.- Specified by:
comparatorin interfaceLong2DoubleSortedMap- Specified by:
comparatorin interfaceSortedMap<Long,Double>- See Also:
SortedMap.comparator()
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long2DoubleEntrySet
public Long2DoubleSortedMap.FastSortedEntrySet long2DoubleEntrySet()
Description copied from interface:Long2DoubleSortedMapReturns a type-specific sorted-set view of the mappings contained in this map.Note that this specification strengthens the one given in the corresponding type-specific unsorted map.
- Specified by:
long2DoubleEntrySetin interfaceLong2DoubleMap- Specified by:
long2DoubleEntrySetin interfaceLong2DoubleSortedMap- Returns:
- a type-specific sorted-set view of the mappings contained in this map.
- See Also:
Long2DoubleSortedMap.entrySet()
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keySet
public LongSortedSet keySet()
Description copied from class:AbstractLong2DoubleSortedMapReturns a type-specific-set view of the keys of this map.The view is backed by the set returned by
Map.entrySet(). Note that no attempt is made at caching the result of this method, as this would require adding some attributes that lightweight implementations would not need. Subclasses may easily override this policy by calling this method and caching the result, but implementors are encouraged to write more efficient ad-hoc implementations.The view is backed by the sorted set returned by
Map.entrySet(). Note that no attempt is made at caching the result of this method, as this would require adding some attributes that lightweight implementations would not need. Subclasses may easily override this policy by calling this method and caching the result, but implementors are encouraged to write more efficient ad-hoc implementations.- Specified by:
keySetin interfaceLong2DoubleMap- Specified by:
keySetin interfaceLong2DoubleSortedMap- Specified by:
keySetin interfaceMap<Long,Double>- Specified by:
keySetin interfaceSortedMap<Long,Double>- Overrides:
keySetin classAbstractLong2DoubleSortedMap- Returns:
- a sorted set view of the keys of this map; it may be safely cast to a type-specific interface.
- See Also:
Map.keySet()
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values
public DoubleCollection values()
Description copied from class:AbstractLong2DoubleSortedMapReturns a type-specific-set view of the values of this map.The view is backed by the set returned by
Map.entrySet(). Note that no attempt is made at caching the result of this method, as this would require adding some attributes that lightweight implementations would not need. Subclasses may easily override this policy by calling this method and caching the result, but implementors are encouraged to write more efficient ad-hoc implementations.The view is backed by the sorted set returned by
Map.entrySet(). Note that no attempt is made at caching the result of this method, as this would require adding some attributes that lightweight implementations would not need. Subclasses may easily override this policy by calling this method and caching the result, but implementors are encouraged to write more efficient ad-hoc implementations.- Specified by:
valuesin interfaceLong2DoubleMap- Specified by:
valuesin interfaceLong2DoubleSortedMap- Specified by:
valuesin interfaceMap<Long,Double>- Specified by:
valuesin interfaceSortedMap<Long,Double>- Overrides:
valuesin classAbstractLong2DoubleSortedMap- Returns:
- a type-specific collection view of the values contained in this map.
- See Also:
Map.values()
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trim
public boolean trim()
Rehashes the map, making the table as small as possible.This method rehashes the table to the smallest size satisfying the load factor. It can be used when the set will not be changed anymore, so to optimize access speed and size.
If the table size is already the minimum possible, this method does nothing.
- Returns:
- true if there was enough memory to trim the map.
- See Also:
trim(int)
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trim
public boolean trim(int n)
Rehashes this map if the table is too large.Let N be the smallest table size that can hold
max(n,entries, still satisfying the load factor. If the current table size is smaller than or equal to N, this method does nothing. Otherwise, it rehashes this map in a table of size N.size())This method is useful when reusing maps. Clearing a map leaves the table size untouched. If you are reusing a map many times, you can call this method with a typical size to avoid keeping around a very large table just because of a few large transient maps.
- Parameters:
n- the threshold for the trimming.- Returns:
- true if there was enough memory to trim the map.
- See Also:
trim()
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clone
public Long2DoubleLinkedOpenHashMap clone()
Returns a deep copy of this map.This method performs a deep copy of this hash map; the data stored in the map, however, is not cloned. Note that this makes a difference only for object keys.
- Returns:
- a deep copy of this map.
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hashCode
public int hashCode()
Returns a hash code for this map. This method overrides the generic method provided by the superclass. Sinceequals()is not overriden, it is important that the value returned by this method is the same value as the one returned by the overriden method.
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