@NotThreadSafe public class FastList<T> extends AbstractMutableList<T> implements Externalizable, RandomAccess, BatchIterable<T>
| Constructor and Description |
|---|
FastList() |
FastList(Collection<? extends T> source) |
FastList(int initialCapacity) |
| Modifier and Type | Method and Description |
|---|---|
void |
add(int index,
T element) |
boolean |
add(T newItem) |
boolean |
addAll(Collection<? extends T> source) |
boolean |
addAll(int index,
Collection<? extends T> source) |
boolean |
allSatisfy(Predicate<? super T> predicate)
Returns true if the predicate evaluates to true for every element of the iterable or if the iterable is empty.
|
<P> boolean |
allSatisfyWith(Predicate2<? super T,? super P> predicate,
P parameter)
Returns true if the predicate evaluates to true for every element of the collection, or returns false.
|
boolean |
anySatisfy(Predicate<? super T> predicate)
Returns true if the predicate evaluates to true for any element of the iterable.
|
<P> boolean |
anySatisfyWith(Predicate2<? super T,? super P> predicate,
P parameter)
Returns true if the predicate evaluates to true for any element of the collection, or return false.
|
ParallelListIterable<T> |
asParallel(ExecutorService executorService,
int batchSize) |
void |
batchForEach(Procedure<? super T> procedure,
int sectionIndex,
int sectionCount) |
void |
clear() |
FastList<T> |
clone() |
<V> FastList<V> |
collect(Function<? super T,? extends V> function)
Returns a new MutableCollection with the results of applying the specified function to each element of the source
collection.
|
<V,R extends Collection<V>> |
collect(Function<? super T,? extends V> function,
R target)
Same as
RichIterable.collect(Function), except that the results are gathered into the specified target
collection. |
MutableBooleanList |
collectBoolean(BooleanFunction<? super T> booleanFunction)
Returns a new primitive
boolean iterable with the results of applying the specified function on each element
of the source collection. |
<R extends MutableBooleanCollection> |
collectBoolean(BooleanFunction<? super T> booleanFunction,
R target)
Same as
RichIterable.collectBoolean(BooleanFunction), except that the results are gathered into the specified target
collection. |
MutableByteList |
collectByte(ByteFunction<? super T> byteFunction)
Returns a new primitive
byte iterable with the results of applying the specified function on each element
of the source collection. |
<R extends MutableByteCollection> |
collectByte(ByteFunction<? super T> byteFunction,
R target)
Same as
RichIterable.collectByte(ByteFunction), except that the results are gathered into the specified target
collection. |
MutableCharList |
collectChar(CharFunction<? super T> charFunction)
Returns a new primitive
char iterable with the results of applying the specified function on each element
of the source collection. |
<R extends MutableCharCollection> |
collectChar(CharFunction<? super T> charFunction,
R target)
Same as
RichIterable.collectChar(CharFunction), except that the results are gathered into the specified target
collection. |
MutableDoubleList |
collectDouble(DoubleFunction<? super T> doubleFunction)
Returns a new primitive
double iterable with the results of applying the specified function on each element
of the source collection. |
<R extends MutableDoubleCollection> |
collectDouble(DoubleFunction<? super T> doubleFunction,
R target)
Same as
RichIterable.collectDouble(DoubleFunction), except that the results are gathered into the specified target
collection. |
MutableFloatList |
collectFloat(FloatFunction<? super T> floatFunction)
Returns a new primitive
float iterable with the results of applying the specified function on each element
of the source collection. |
<R extends MutableFloatCollection> |
collectFloat(FloatFunction<? super T> floatFunction,
R target)
Same as
RichIterable.collectFloat(FloatFunction), except that the results are gathered into the specified target
collection. |
<V> FastList<V> |
collectIf(Predicate<? super T> predicate,
Function<? super T,? extends V> function)
Returns a new MutableCollection with the results of applying the specified function to each element of the source
collection, but only for elements that evaluate to true for the specified predicate.
|
<V,R extends Collection<V>> |
collectIf(Predicate<? super T> predicate,
Function<? super T,? extends V> function,
R target)
Same as the collectIf method with two parameters but uses the specified target collection for the results.
|
MutableIntList |
collectInt(IntFunction<? super T> intFunction)
Returns a new primitive
int iterable with the results of applying the specified function on each element
of the source collection. |
<R extends MutableIntCollection> |
collectInt(IntFunction<? super T> intFunction,
R target)
Same as
RichIterable.collectInt(IntFunction), except that the results are gathered into the specified target
collection. |
MutableLongList |
collectLong(LongFunction<? super T> longFunction)
Returns a new primitive
long iterable with the results of applying the specified function on each element
of the source collection. |
<R extends MutableLongCollection> |
collectLong(LongFunction<? super T> longFunction,
R target)
Same as
RichIterable.collectLong(LongFunction), except that the results are gathered into the specified target
collection. |
MutableShortList |
collectShort(ShortFunction<? super T> shortFunction)
Returns a new primitive
short iterable with the results of applying the specified function on each element
of the source collection. |
<R extends MutableShortCollection> |
collectShort(ShortFunction<? super T> shortFunction,
R target)
Same as
RichIterable.collectShort(ShortFunction), except that the results are gathered into the specified target
collection. |
<P,V> FastList<V> |
collectWith(Function2<? super T,? super P,? extends V> function,
P parameter)
Same as collect with a
Function2 and specified parameter which is passed to the block
|
<P,V,R extends Collection<V>> |
collectWith(Function2<? super T,? super P,? extends V> function,
P parameter,
R targetCollection)
Same as collectWith but with a targetCollection parameter to gather the results.
|
boolean |
containsAll(Collection<?> source)
Returns true if all elements in source are contained in this collection.
|
boolean |
containsAllArguments(Object... source)
Returns true if all elements in the specified var arg array are contained in this collection.
|
int |
count(Predicate<? super T> predicate)
Return the total number of elements that answer true to the specified predicate.
|
<P> int |
countWith(Predicate2<? super T,? super P> predicate,
P parameter)
Returns the total number of elements that evaluate to true for the specified predicate.
|
T |
detect(Predicate<? super T> predicate)
Returns the first element of the iterable for which the predicate evaluates to true or null in the case where no
element returns true.
|
T |
detectIfNone(Predicate<? super T> predicate,
Function0<? extends T> defaultValueBlock)
Returns the first element of the iterable for which the predicate evaluates to true.
|
<P> T |
detectWith(Predicate2<? super T,? super P> predicate,
P parameter)
Returns the first element that evaluates to true for the specified predicate2 and parameter, or null if none
evaluate to true.
|
<P> T |
detectWithIfNone(Predicate2<? super T,? super P> predicate,
P parameter,
Function0<? extends T> defaultValueBlock)
Returns the first element of the iterable that evaluates to true for the specified predicate2 and parameter, or
returns the value of evaluating the specified function.
|
FastList<T> |
distinct()
Returns a new
ListIterable containing the distinct elements in this list. |
MutableList<T> |
dropWhile(Predicate<? super T> predicate)
Returns the final elements that do not satisfy the Predicate.
|
void |
ensureCapacity(int minCapacity) |
boolean |
equals(FastList<?> otherList)
Deprecated.
in 1.3
|
boolean |
equals(Object otherList)
Follows the same general contract as
List.equals(Object). |
boolean |
fastListEquals(FastList<?> otherFastList) |
<V> FastList<V> |
flatCollect(Function<? super T,? extends Iterable<V>> function)
flatCollect is a special case of RichIterable.collect(Function). |
<V,R extends Collection<V>> |
flatCollect(Function<? super T,? extends Iterable<V>> function,
R target)
Same as flatCollect, only the results are collected into the target collection.
|
void |
forEach(int from,
int to,
Procedure<? super T> procedure)
Iterates over the section of the list covered by the specified inclusive indexes.
|
void |
forEach(Procedure<? super T> procedure)
The procedure is executed for each element in the iterable.
|
void |
forEachIf(Predicate<? super T> predicate,
Procedure<? super T> procedure) |
<P> void |
forEachWith(Procedure2<? super T,? super P> procedure,
P parameter)
The procedure2 is evaluated for each element in the iterable with the specified parameter provided
as the second argument.
|
void |
forEachWithIndex(int from,
int to,
ObjectIntProcedure<? super T> objectIntProcedure)
Iterates over the section of the list covered by the specified inclusive indexes.
|
void |
forEachWithIndex(ObjectIntProcedure<? super T> objectIntProcedure)
Iterates over the iterable passing each element and the current relative int index to the specified instance of
ObjectIntProcedure
|
T |
get(int index)
Returns the item at the specified position in this list iterable.
|
int |
getBatchCount(int batchSize) |
T |
getFirst()
Returns the first element of an iterable.
|
T |
getLast()
Returns the last element of an iterable.
|
<V> FastListMultimap<V,T> |
groupBy(Function<? super T,? extends V> function)
For each element of the iterable, the function is evaluated and the results of these evaluations are collected
into a new multimap, where the transformed value is the key and the original values are added to the same (or similar)
species of collection as the source iterable.
|
<V,R extends MutableMultimap<V,T>> |
groupBy(Function<? super T,? extends V> function,
R target)
Same as
RichIterable.groupBy(Function), except that the results are gathered into the specified target
multimap. |
int |
hashCode()
Follows the same general contract as
List.hashCode(). |
int |
indexOf(Object object)
Returns the index of the first occurrence of the specified item
in this list, or -1 if this list does not contain the item.
|
double |
injectInto(double injectedValue,
DoubleObjectToDoubleFunction<? super T> function)
Returns the final double result of evaluating function using each element of the iterable and the previous evaluation
result as the parameters.
|
float |
injectInto(float injectedValue,
FloatObjectToFloatFunction<? super T> function)
Returns the final float result of evaluating function using each element of the iterable and the previous evaluation
result as the parameters.
|
int |
injectInto(int injectedValue,
IntObjectToIntFunction<? super T> function)
Returns the final int result of evaluating function using each element of the iterable and the previous evaluation
result as the parameters.
|
<IV> IV |
injectInto(IV injectedValue,
Function2<? super IV,? super T,? extends IV> function)
Returns the final result of evaluating function using each element of the iterable and the previous evaluation
result as the parameters.
|
long |
injectInto(long injectedValue,
LongObjectToLongFunction<? super T> function)
Returns the final long result of evaluating function using each element of the iterable and the previous evaluation
result as the parameters.
|
<IV,P> IV |
injectIntoWith(IV injectValue,
Function3<? super IV,? super T,? super P,? extends IV> function,
P parameter) |
int |
lastIndexOf(Object object)
Returns the index of the last occurrence of the specified item
in this list, or -1 if this list does not contain the item.
|
<V extends Comparable<? super V>> |
maxBy(Function<? super T,? extends V> function)
Returns the maximum elements out of this container based on the natural order of the attribute returned by Function.
|
<V extends Comparable<? super V>> |
minBy(Function<? super T,? extends V> function)
Returns the minimum elements out of this container based on the natural order of the attribute returned by Function.
|
static <E> FastList<E> |
newList() |
static <E> FastList<E> |
newList(int initialCapacity) |
static <E> FastList<E> |
newList(Iterable<? extends E> source) |
static <E> FastList<E> |
newListWith(E... elements)
Creates a new list using the passed
elements argument as the backing store. |
static <E> FastList<E> |
newWithNValues(int size,
Function0<E> factory)
Creates a new FastList pre-sized to the specified size filled with default values generated by the specified function.
|
boolean |
noneSatisfy(Predicate<? super T> predicate)
Returns true if the predicate evaluates to false for every element of the iterable or if the iterable is empty.
|
<P> boolean |
noneSatisfyWith(Predicate2<? super T,? super P> predicate,
P parameter)
Returns true if the predicate evaluates to false for every element of the collection, or return false.
|
PartitionMutableList<T> |
partitionWhile(Predicate<? super T> predicate)
Returns a Partition of the initial elements that satisfy the Predicate and the remaining elements.
|
void |
readExternal(ObjectInput in) |
FastList<T> |
reject(Predicate<? super T> predicate)
Returns a MutableCollection with all elements that evaluate to false for the specified predicate.
|
<R extends Collection<T>> |
reject(Predicate<? super T> predicate,
R target)
Same as the reject method with one parameter but uses the specified target collection for the results.
|
<P> FastList<T> |
rejectWith(Predicate2<? super T,? super P> predicate,
P parameter)
Returns a MutableCollection with all elements that evaluate to false for the specified predicate2 and parameter.
|
<P,R extends Collection<T>> |
rejectWith(Predicate2<? super T,? super P> predicate,
P parameter,
R target)
Similar to
RichIterable.reject(Predicate, Collection), except with an evaluation parameter for the second generic argument in Predicate2. |
T |
remove(int index) |
boolean |
remove(Object object) |
void |
removeIf(Predicate<? super T> predicate)
Removes all elements in the collection that evaluate to true for the specified predicate.
|
<P> void |
removeIfWith(Predicate2<? super T,? super P> predicate,
P parameter)
Removes all elements in the collection that evaluate to true for the specified predicate2 and parameter.
|
FastList<T> |
reverseThis()
Mutates the current list by reversing its order and returns the current list as a result
|
FastList<T> |
select(Predicate<? super T> predicate)
Returns a MutableCollection with all elements that evaluate to true for the specified predicate.
|
<R extends Collection<T>> |
select(Predicate<? super T> predicate,
R target)
Same as the select method with one parameter but uses the specified target collection for the results.
|
<P> Twin<MutableList<T>> |
selectAndRejectWith(Predicate2<? super T,? super P> predicate,
P parameter)
Filters a collection into two separate collections based on a predicate returned via a Pair.
|
<S> FastList<S> |
selectInstancesOf(Class<S> clazz)
Returns all elements of the source collection that are instances of the Class
clazz. |
<P> FastList<T> |
selectWith(Predicate2<? super T,? super P> predicate,
P parameter)
Returns a MutableCollection with all elements that evaluate to true for the specified predicate2 and parameter.
|
<P,R extends Collection<T>> |
selectWith(Predicate2<? super T,? super P> predicate,
P parameter,
R targetCollection)
Similar to
RichIterable.select(Predicate, Collection), except with an evaluation parameter for the second generic argument in Predicate2. |
T |
set(int index,
T element) |
int |
size()
Returns the number of items in this iterable.
|
FastList<T> |
sortThis()
Sorts the internal data structure of this list and returns the list itself as a convenience.
|
FastList<T> |
sortThis(Comparator<? super T> comparator)
Sorts the internal data structure of this list and returns the list itself as a convenience.
|
double |
sumOfDouble(DoubleFunction<? super T> function)
Returns the final double result of evaluating function for each element of the iterable and adding the results
together.
|
double |
sumOfFloat(FloatFunction<? super T> function)
Returns the final double result of evaluating function for each element of the iterable and adding the results
together.
|
long |
sumOfInt(IntFunction<? super T> function)
Returns the final long result of evaluating function for each element of the iterable and adding the results
together.
|
long |
sumOfLong(LongFunction<? super T> function)
Returns the final long result of evaluating function for each element of the iterable and adding the results
together.
|
MutableList<T> |
takeWhile(Predicate<? super T> predicate)
Returns the initial elements that satisfy the Predicate.
|
Object[] |
toArray()
Converts this iterable to an array.
|
<E> E[] |
toArray(E[] array)
Converts this iterable to an array using the specified target array, assuming the target array is as long
or longer than the iterable.
|
<E> E[] |
toArray(E[] array,
int sourceFromIndex,
int sourceToIndex,
int destinationIndex) |
<E> E[] |
toArray(int sourceFromIndex,
int sourceToIndex) |
FastList<T> |
toList()
Converts the collection to a MutableList implementation.
|
FastList<T> |
toSortedList()
Converts the collection to a MutableList implementation and sorts it using the natural order of the elements.
|
FastList<T> |
toSortedList(Comparator<? super T> comparator)
Converts the collection to a MutableList implementation and sorts it using the specified comparator.
|
T[] |
toTypedArray(Class<T> clazz) |
void |
trimToSize() |
boolean |
trimToSizeIfGreaterThanPercent(double loadFactor)
Express load factor as 0.25 to trim a collection with more than 25% excess capacity
|
FastList<T> |
with(T... elements) |
FastList<T> |
with(T element1,
T element2) |
FastList<T> |
with(T element1,
T element2,
T element3) |
FastList<T> |
withArrayCopy(T[] elements,
int begin,
int length) |
static <E> FastList<E> |
wrapCopy(E... array) |
void |
writeExternal(ObjectOutput out) |
appendString, asReversed, asSynchronized, asUnmodifiable, binarySearch, binarySearch, contains, groupByEach, groupByUniqueKey, iterator, listIterator, listIterator, max, max, min, min, newEmpty, partition, partitionWith, removeAll, retainAll, reverseForEach, sortThisBy, subList, toImmutable, toReversed, toSet, toStack, with, withAll, without, withoutAll, zip, zipWithIndexaddAllIterable, aggregateBy, aggregateInPlaceBy, chunk, removeAllIterable, retainAllIterableappendString, appendString, asLazy, containsAllIterable, groupByEach, isEmpty, makeString, makeString, makeString, notEmpty, toBag, toMap, toSortedListBy, toSortedMap, toSortedMap, toSortedSet, toSortedSet, toSortedSetBy, toString, zip, zipWithIndexaddAllIterable, aggregateBy, aggregateInPlaceBy, removeAllIterable, retainAllIterableisEmpty, replaceAll, sort, spliteratorparallelStream, removeIf, streamappendString, appendString, asLazy, chunk, containsAllIterable, groupByEach, isEmpty, makeString, makeString, makeString, notEmpty, toBag, toMap, toSortedListBy, toSortedMap, toSortedMap, toSortedSet, toSortedSet, toSortedSetBy, toString, zip, zipWithIndexpublic FastList()
public FastList(int initialCapacity)
public FastList(Collection<? extends T> source)
public static <E> FastList<E> newList()
public static <E> FastList<E> wrapCopy(E... array)
public static <E> FastList<E> newList(int initialCapacity)
public static <E> FastList<E> newListWith(E... elements)
elements argument as the backing store.
!!! WARNING: This method uses the passed in array, so can be very unsafe if the original
array is held onto anywhere else. !!!public static <E> FastList<E> newWithNValues(int size, Function0<E> factory)
public FastList<T> clone()
clone in interface MutableList<T>clone in class AbstractMutableList<T>public void clear()
public void forEach(int from,
int to,
Procedure<? super T> procedure)
ListIterablee.g. ListIterableThis code would output ted and mary's names.people = FastList.newListWith(ted, mary, bob, sally) people.forEach(0, 1, new Procedure () { public void value(Person person) { LOGGER.info(person.getName()); } });
forEach in interface ListIterable<T>forEach in class AbstractMutableList<T>public void forEachWithIndex(int from,
int to,
ObjectIntProcedure<? super T> objectIntProcedure)
ListIterablee.g. ListIterableThis code would output ted and mary's names.people = FastList.newListWith(ted, mary, bob, sally) people.forEachWithIndex(0, 1, new ObjectIntProcedure () { public void value(Person person, int index) { LOGGER.info(person.getName()); } });
forEachWithIndex in interface ListIterable<T>forEachWithIndex in class AbstractMutableList<T>public void batchForEach(Procedure<? super T> procedure, int sectionIndex, int sectionCount)
batchForEach in interface BatchIterable<T>public int getBatchCount(int batchSize)
getBatchCount in interface BatchIterable<T>public <E> E[] toArray(E[] array,
int sourceFromIndex,
int sourceToIndex,
int destinationIndex)
public <E> E[] toArray(int sourceFromIndex,
int sourceToIndex)
public FastList<T> sortThis(Comparator<? super T> comparator)
MutableListsortThis in interface MutableList<T>sortThis in class AbstractMutableList<T>public FastList<T> sortThis()
MutableListsortThis in interface MutableList<T>sortThis in class AbstractMutableList<T>public FastList<T> reverseThis()
MutableListreverseThis in interface MutableList<T>reverseThis in class AbstractMutableList<T>public boolean addAll(Collection<? extends T> source)
addAll in interface Collection<T>addAll in interface List<T>addAll in class AbstractMutableCollection<T>public boolean containsAll(Collection<?> source)
RichIterablecontainsAll in interface RichIterable<T>containsAll in interface Collection<T>containsAll in interface List<T>containsAll in class AbstractMutableList<T>Collection.containsAll(Collection)public boolean containsAllArguments(Object... source)
RichIterablecontainsAllArguments in interface RichIterable<T>containsAllArguments in class AbstractRichIterable<T>public <E> E[] toArray(E[] array)
RichIterabletoArray in interface RichIterable<T>toArray in interface Collection<T>toArray in interface List<T>toArray in class AbstractRichIterable<T>Collection.toArray(Object[])public Object[] toArray()
RichIterabletoArray in interface RichIterable<T>toArray in interface Collection<T>toArray in interface List<T>toArray in class AbstractRichIterable<T>Collection.toArray()public int indexOf(Object object)
ReversibleIterableindexOf in interface ReversibleIterable<T>indexOf in interface List<T>indexOf in class AbstractMutableList<T>public int lastIndexOf(Object object)
ListIterablelastIndexOf in interface ListIterable<T>lastIndexOf in interface List<T>lastIndexOf in class AbstractMutableList<T>public void trimToSize()
public boolean trimToSizeIfGreaterThanPercent(double loadFactor)
public void ensureCapacity(int minCapacity)
public T getFirst()
RichIterablegetFirst in interface ListIterable<T>getFirst in interface RichIterable<T>getFirst in class AbstractMutableList<T>public T getLast()
RichIterablegetLast in interface ListIterable<T>getLast in interface RichIterable<T>getLast in class AbstractMutableList<T>public <V> FastListMultimap<V,T> groupBy(Function<? super T,? extends V> function)
RichIterablee.g.
return people.groupBy(new Function<Person, String>()
{
public String value(Person person)
{
return person.getFirstName() + " " + person.getLastName();
}
});
groupBy in interface MutableCollection<T>groupBy in interface ListIterable<T>groupBy in interface MutableList<T>groupBy in interface ReversibleIterable<T>groupBy in interface RichIterable<T>groupBy in class AbstractMutableList<T>public <V,R extends MutableMultimap<V,T>> R groupBy(Function<? super T,? extends V> function, R target)
RichIterableRichIterable.groupBy(Function), except that the results are gathered into the specified target
multimap.
e.g.
return people.groupBy(new Function<Person, String>()
{
public String value(Person person)
{
return person.getFirstName() + " " + person.getLastName();
}
}, new FastListMultimap<String, Person>());
groupBy in interface RichIterable<T>groupBy in class AbstractRichIterable<T>public void forEach(Procedure<? super T> procedure)
InternalIterablee.g. people.forEach(new Procedure() { public void value(Person person) { LOGGER.info(person.getName()); } });
forEach in interface InternalIterable<T>forEach in interface BatchIterable<T>forEach in class AbstractMutableList<T>public void forEachWithIndex(ObjectIntProcedure<? super T> objectIntProcedure)
InternalIterablee.g. people.forEachWithIndex(new ObjectIntProcedure() { public void value(Person person, int index) { LOGGER.info("Index: " + index + " person: " + person.getName()); } });
forEachWithIndex in interface InternalIterable<T>forEachWithIndex in class AbstractMutableList<T>public <P> void forEachWith(Procedure2<? super T,? super P> procedure, P parameter)
InternalIterablee.g. people.forEachWith(new Procedure2() { public void value(Person person, Person other) { if (person.isRelatedTo(other)) { LOGGER.info(person.getName()); } } }, fred);
forEachWith in interface InternalIterable<T>forEachWith in class AbstractMutableList<T>public FastList<T> select(Predicate<? super T> predicate)
MutableCollectione.g.
return people.select(new Predicate<Person>()
{
public boolean value(Person person)
{
return person.getAddress().getCity().equals("Metuchen");
}
});
select in interface MutableCollection<T>select in interface ListIterable<T>select in interface MutableList<T>select in interface ReversibleIterable<T>select in interface RichIterable<T>select in class AbstractMutableList<T>public <R extends Collection<T>> R select(Predicate<? super T> predicate, R target)
RichIterablee.g.
return people.select(new Predicate<Person>()
{
public boolean accept(Person person)
{
return person.person.getLastName().equals("Smith");
}
}, Lists.mutable.of());
e.g.
return collection.select(Predicates.attributeEqual("lastName", "Smith"), new ArrayList());
select in interface RichIterable<T>select in class AbstractMutableList<T>predicate - a Predicate to use as the select criteriatarget - the Collection to append to for all elements in this RichIterable that meet select criteria predicatetarget, which contains appended elements as a result of the select criteriaRichIterable.select(Predicate)public <P> FastList<T> selectWith(Predicate2<? super T,? super P> predicate, P parameter)
MutableCollectione.g. return integers.selectWith(PredicatesLite.equal(), Integer.valueOf(5));
selectWith in interface MutableCollection<T>selectWith in interface ListIterable<T>selectWith in interface MutableList<T>selectWith in interface ReversibleIterable<T>selectWith in interface RichIterable<T>selectWith in class AbstractMutableList<T>predicate - a Predicate2 to use as the select criteriaparameter - a parameter to pass in for evaluation of the second argument P in predicateRichIterable.select(Predicate)public <P,R extends Collection<T>> R selectWith(Predicate2<? super T,? super P> predicate, P parameter, R targetCollection)
RichIterableRichIterable.select(Predicate, Collection), except with an evaluation parameter for the second generic argument in Predicate2.selectWith in interface RichIterable<T>selectWith in class AbstractMutableList<T>predicate - a Predicate2 to use as the select criteriaparameter - a parameter to pass in for evaluation of the second argument P in predicatetargetCollection - the Collection to append to for all elements in this RichIterable that meet select criteria predicatetargetCollection, which contains appended elements as a result of the select criteriaRichIterable.select(Predicate),
RichIterable.select(Predicate, Collection)public FastList<T> reject(Predicate<? super T> predicate)
MutableCollectione.g.
return people.reject(new Predicate<Person>()
{
public boolean value(Person person)
{
return person.person.getLastName().equals("Smith");
}
});
e.g.
return people.reject(Predicates.attributeEqual("lastName", "Smith"));
reject in interface MutableCollection<T>reject in interface ListIterable<T>reject in interface MutableList<T>reject in interface ReversibleIterable<T>reject in interface RichIterable<T>reject in class AbstractMutableList<T>predicate - a Predicate to use as the reject criteriaPredicate.accept(Object) method to evaluate to falsepublic <R extends Collection<T>> R reject(Predicate<? super T> predicate, R target)
RichIterablee.g.
return people.reject(new Predicate<Person>()
{
public boolean accept(Person person)
{
return person.person.getLastName().equals("Smith");
}
}, Lists.mutable.of());
reject in interface RichIterable<T>reject in class AbstractMutableList<T>predicate - a Predicate to use as the reject criteriatarget - the Collection to append to for all elements in this RichIterable that cause Predicate#accept(Object) method to evaluate to falsetarget, which contains appended elements as a result of the reject criteriapublic <P> FastList<T> rejectWith(Predicate2<? super T,? super P> predicate, P parameter)
MutableCollectione.g. return integers.rejectWith(PredicatesLite.equal(), Integer.valueOf(5));
rejectWith in interface MutableCollection<T>rejectWith in interface ListIterable<T>rejectWith in interface MutableList<T>rejectWith in interface ReversibleIterable<T>rejectWith in interface RichIterable<T>rejectWith in class AbstractMutableList<T>predicate - a Predicate2 to use as the select criteriaparameter - a parameter to pass in for evaluation of the second argument P in predicateRichIterable.select(Predicate)public <P,R extends Collection<T>> R rejectWith(Predicate2<? super T,? super P> predicate, P parameter, R target)
RichIterableRichIterable.reject(Predicate, Collection), except with an evaluation parameter for the second generic argument in Predicate2.
E.g. return a Collection of Person elements where the person has a height greater than 100cm
return people.reject(new Predicate2<Person, Integer>()
{
public boolean accept(Person p, Integer i)
{
return p.getHeightInCm() < i.intValue();
}
}, Integer.valueOf(100), FastList.newList());
rejectWith in interface RichIterable<T>rejectWith in class AbstractMutableList<T>predicate - a Predicate2 to use as the reject criteriaparameter - a parameter to pass in for evaluation of the second argument P in predicatetarget - the Collection to append to for all elements in this RichIterable that cause Predicate#accept(Object) method to evaluate to falsetargetCollection, which contains appended elements as a result of the reject criteriaRichIterable.reject(Predicate),
RichIterable.reject(Predicate, Collection)public <P> Twin<MutableList<T>> selectAndRejectWith(Predicate2<? super T,? super P> predicate, P parameter)
MutableCollectione.g. return lastNames.selectAndRejectWith(PredicatesLite.lessThan(), "Mason");
selectAndRejectWith in interface MutableCollection<T>selectAndRejectWith in class AbstractMutableList<T>public <S> FastList<S> selectInstancesOf(Class<S> clazz)
RichIterableclazz.selectInstancesOf in interface MutableCollection<T>selectInstancesOf in interface ListIterable<T>selectInstancesOf in interface MutableList<T>selectInstancesOf in interface ReversibleIterable<T>selectInstancesOf in interface RichIterable<T>selectInstancesOf in class AbstractMutableList<T>public void removeIf(Predicate<? super T> predicate)
MutableCollectione.g. return lastNames.removeIf(Predicates.isNull());
removeIf in interface MutableCollection<T>removeIf in class AbstractMutableList<T>public <P> void removeIfWith(Predicate2<? super T,? super P> predicate, P parameter)
MutableCollectione.g. return lastNames.removeIfWith(PredicatesLite.isNull(), null);
removeIfWith in interface MutableCollection<T>removeIfWith in class AbstractMutableList<T>public <V> FastList<V> collect(Function<? super T,? extends V> function)
MutableCollectione.g.
return people.collect(new Function<Person, String>()
{
public String value(Person person)
{
return person.getFirstName() + " " + person.getLastName();
}
});
collect in interface MutableCollection<T>collect in interface ListIterable<T>collect in interface MutableList<T>collect in interface ReversibleIterable<T>collect in interface RichIterable<T>collect in class AbstractMutableList<T>public MutableBooleanList collectBoolean(BooleanFunction<? super T> booleanFunction)
RichIterableboolean iterable with the results of applying the specified function on each element
of the source collection. This method is also commonly called transform or map.
e.g.
return people.collectBoolean(new BooleanFunction<Person>()
{
public boolean booleanValueOf(Person person)
{
return person.hasDrivingLicense();
}
});
collectBoolean in interface MutableCollection<T>collectBoolean in interface ListIterable<T>collectBoolean in interface MutableList<T>collectBoolean in interface ReversibleIterable<T>collectBoolean in interface RichIterable<T>collectBoolean in class AbstractMutableList<T>public <R extends MutableBooleanCollection> R collectBoolean(BooleanFunction<? super T> booleanFunction, R target)
RichIterableRichIterable.collectBoolean(BooleanFunction), except that the results are gathered into the specified target
collection.
e.g.
return people.collectBoolean(new BooleanFunction<Person>()
{
public boolean booleanValueOf(Person person)
{
return person.hasDrivingLicense();
}
}, new BooleanArrayList());
collectBoolean in interface RichIterable<T>collectBoolean in class AbstractRichIterable<T>booleanFunction - a BooleanFunction to use as the collect transformation functiontarget - the MutableBooleanCollection to append to for all elements in this RichIterabletarget, which contains appended elements as a result of the collect transformationpublic MutableByteList collectByte(ByteFunction<? super T> byteFunction)
RichIterablebyte iterable with the results of applying the specified function on each element
of the source collection. This method is also commonly called transform or map.
e.g.
return people.collectByte(new ByteFunction<Person>()
{
public byte byteValueOf(Person person)
{
return person.getCode();
}
});
collectByte in interface MutableCollection<T>collectByte in interface ListIterable<T>collectByte in interface MutableList<T>collectByte in interface ReversibleIterable<T>collectByte in interface RichIterable<T>collectByte in class AbstractMutableList<T>public <R extends MutableByteCollection> R collectByte(ByteFunction<? super T> byteFunction, R target)
RichIterableRichIterable.collectByte(ByteFunction), except that the results are gathered into the specified target
collection.
e.g.
return people.collectByte(new ByteFunction<Person>()
{
public byte byteValueOf(Person person)
{
return person.getCode();
}
}, new ByteArrayList());
collectByte in interface RichIterable<T>collectByte in class AbstractRichIterable<T>byteFunction - a ByteFunction to use as the collect transformation functiontarget - the MutableByteCollection to append to for all elements in this RichIterabletarget, which contains appended elements as a result of the collect transformationpublic MutableCharList collectChar(CharFunction<? super T> charFunction)
RichIterablechar iterable with the results of applying the specified function on each element
of the source collection. This method is also commonly called transform or map.
e.g.
return people.collectChar(new CharFunction<Person>()
{
public char charValueOf(Person person)
{
return person.getMiddleInitial();
}
});
collectChar in interface MutableCollection<T>collectChar in interface ListIterable<T>collectChar in interface MutableList<T>collectChar in interface ReversibleIterable<T>collectChar in interface RichIterable<T>collectChar in class AbstractMutableList<T>public <R extends MutableCharCollection> R collectChar(CharFunction<? super T> charFunction, R target)
RichIterableRichIterable.collectChar(CharFunction), except that the results are gathered into the specified target
collection.
e.g.
return people.collectChar(new CharFunction<Person>()
{
public char charValueOf(Person person)
{
return person.getMiddleInitial();
}
}, new CharArrayList());
collectChar in interface RichIterable<T>collectChar in class AbstractRichIterable<T>charFunction - a CharFunction to use as the collect transformation functiontarget - the MutableCharCollection to append to for all elements in this RichIterabletarget, which contains appended elements as a result of the collect transformationpublic MutableDoubleList collectDouble(DoubleFunction<? super T> doubleFunction)
RichIterabledouble iterable with the results of applying the specified function on each element
of the source collection. This method is also commonly called transform or map.
e.g.
return people.collectDouble(new DoubleFunction<Person>()
{
public double doubleValueOf(Person person)
{
return person.getMilesFromNorthPole();
}
});
collectDouble in interface MutableCollection<T>collectDouble in interface ListIterable<T>collectDouble in interface MutableList<T>collectDouble in interface ReversibleIterable<T>collectDouble in interface RichIterable<T>collectDouble in class AbstractMutableList<T>public <R extends MutableDoubleCollection> R collectDouble(DoubleFunction<? super T> doubleFunction, R target)
RichIterableRichIterable.collectDouble(DoubleFunction), except that the results are gathered into the specified target
collection.
e.g.
return people.collectDouble(new DoubleFunction<Person>()
{
public double doubleValueOf(Person person)
{
return person.getMilesFromNorthPole();
}
}, new DoubleArrayList());
collectDouble in interface RichIterable<T>collectDouble in class AbstractRichIterable<T>doubleFunction - a DoubleFunction to use as the collect transformation functiontarget - the MutableDoubleCollection to append to for all elements in this RichIterabletarget, which contains appended elements as a result of the collect transformationpublic MutableFloatList collectFloat(FloatFunction<? super T> floatFunction)
RichIterablefloat iterable with the results of applying the specified function on each element
of the source collection. This method is also commonly called transform or map.
e.g.
return people.collectFloat(new FloatFunction<Person>()
{
public float floatValueOf(Person person)
{
return person.getHeightInInches();
}
});
collectFloat in interface MutableCollection<T>collectFloat in interface ListIterable<T>collectFloat in interface MutableList<T>collectFloat in interface ReversibleIterable<T>collectFloat in interface RichIterable<T>collectFloat in class AbstractMutableList<T>public <R extends MutableFloatCollection> R collectFloat(FloatFunction<? super T> floatFunction, R target)
RichIterableRichIterable.collectFloat(FloatFunction), except that the results are gathered into the specified target
collection.
e.g.
return people.collectFloat(new FloatFunction<Person>()
{
public float floatValueOf(Person person)
{
return person.getHeightInInches();
}
}, new FloatArrayList());
collectFloat in interface RichIterable<T>collectFloat in class AbstractRichIterable<T>floatFunction - a FloatFunction to use as the collect transformation functiontarget - the MutableFloatCollection to append to for all elements in this RichIterabletarget, which contains appended elements as a result of the collect transformationpublic MutableIntList collectInt(IntFunction<? super T> intFunction)
RichIterableint iterable with the results of applying the specified function on each element
of the source collection. This method is also commonly called transform or map.
e.g.
return people.collectInt(new IntFunction<Person>()
{
public int intValueOf(Person person)
{
return person.getAge();
}
});
collectInt in interface MutableCollection<T>collectInt in interface ListIterable<T>collectInt in interface MutableList<T>collectInt in interface ReversibleIterable<T>collectInt in interface RichIterable<T>collectInt in class AbstractMutableList<T>public <R extends MutableIntCollection> R collectInt(IntFunction<? super T> intFunction, R target)
RichIterableRichIterable.collectInt(IntFunction), except that the results are gathered into the specified target
collection.
e.g.
return people.collectInt(new IntFunction<Person>()
{
public int intValueOf(Person person)
{
return person.getAge();
}
}, new IntArrayList());
collectInt in interface RichIterable<T>collectInt in class AbstractRichIterable<T>intFunction - a IntFunction to use as the collect transformation functiontarget - the MutableIntCollection to append to for all elements in this RichIterabletarget, which contains appended elements as a result of the collect transformationpublic MutableLongList collectLong(LongFunction<? super T> longFunction)
RichIterablelong iterable with the results of applying the specified function on each element
of the source collection. This method is also commonly called transform or map.
e.g.
return people.collectLong(new LongFunction<Person>()
{
public long longValueOf(Person person)
{
return person.getGuid();
}
});
collectLong in interface MutableCollection<T>collectLong in interface ListIterable<T>collectLong in interface MutableList<T>collectLong in interface ReversibleIterable<T>collectLong in interface RichIterable<T>collectLong in class AbstractMutableList<T>public <R extends MutableLongCollection> R collectLong(LongFunction<? super T> longFunction, R target)
RichIterableRichIterable.collectLong(LongFunction), except that the results are gathered into the specified target
collection.
e.g.
return people.collectLong(new LongFunction<Person>()
{
public long longValueOf(Person person)
{
return person.getGuid();
}
}, new LongArrayList());
collectLong in interface RichIterable<T>collectLong in class AbstractRichIterable<T>longFunction - a LongFunction to use as the collect transformation functiontarget - the MutableLongCollection to append to for all elements in this RichIterabletarget, which contains appended elements as a result of the collect transformationpublic MutableShortList collectShort(ShortFunction<? super T> shortFunction)
RichIterableshort iterable with the results of applying the specified function on each element
of the source collection. This method is also commonly called transform or map.
e.g.
return people.collectShort(new ShortFunction<Person>()
{
public short shortValueOf(Person person)
{
return person.getNumberOfJunkMailItemsReceivedPerMonth();
}
});
collectShort in interface MutableCollection<T>collectShort in interface ListIterable<T>collectShort in interface MutableList<T>collectShort in interface ReversibleIterable<T>collectShort in interface RichIterable<T>collectShort in class AbstractMutableList<T>public <R extends MutableShortCollection> R collectShort(ShortFunction<? super T> shortFunction, R target)
RichIterableRichIterable.collectShort(ShortFunction), except that the results are gathered into the specified target
collection.
e.g.
return people.collectShort(new ShortFunction<Person>()
{
public short shortValueOf(Person person)
{
return person.getNumberOfJunkMailItemsReceivedPerMonth;
}
}, new ShortArrayList());
collectShort in interface RichIterable<T>collectShort in class AbstractRichIterable<T>shortFunction - a ShortFunction to use as the collect transformation functiontarget - the MutableShortCollection to append to for all elements in this RichIterabletarget, which contains appended elements as a result of the collect transformationpublic <V,R extends Collection<V>> R collect(Function<? super T,? extends V> function, R target)
RichIterableRichIterable.collect(Function), except that the results are gathered into the specified target
collection.
e.g.
return people.collect(new Function<Person, String>()
{
public String valueOf(Person person)
{
return person.getFirstName() + " " + person.getLastName();
}
}, Lists.mutable.of());
collect in interface RichIterable<T>collect in class AbstractMutableList<T>function - a Function to use as the collect transformation functiontarget - the Collection to append to for all elements in this RichIterable that meet select criteria functiontarget, which contains appended elements as a result of the collect transformationRichIterable.collect(Function)public <V> FastList<V> flatCollect(Function<? super T,? extends Iterable<V>> function)
RichIterableflatCollect is a special case of RichIterable.collect(Function). With collect, when the Function returns
a collection, the result is a collection of collections. flatCollect outputs a single "flattened" collection
instead. This method is commonly called flatMap.
Consider the following example where we have a Person class, and each Person has a list of Address objects. Take the following Function:
Function<Person, List<Address>> addressFunction = new Function<Person, List<Address>>()
{
public List<Address> valueOf(Person person)
{
return person.getAddresses();
}
};
MutableList<Person> people = ...;
Using collect returns a collection of collections of addresses.
MutableList<List<Address>> addresses = people.collect(addressFunction);Using
flatCollect returns a single flattened list of addresses.
MutableList<Address> addresses = people.flatCollect(addressFunction);
flatCollect in interface MutableCollection<T>flatCollect in interface ListIterable<T>flatCollect in interface MutableList<T>flatCollect in interface ReversibleIterable<T>flatCollect in interface RichIterable<T>flatCollect in class AbstractMutableList<T>function - The Function to applyfunctionpublic <V,R extends Collection<V>> R flatCollect(Function<? super T,? extends Iterable<V>> function, R target)
RichIterableflatCollect in interface RichIterable<T>flatCollect in class AbstractMutableList<T>function - The Function to applytarget - The collection into which results should be added.target, which will contain a flattened collection of results produced by applying the given functionRichIterable.flatCollect(Function)public <P,V> FastList<V> collectWith(Function2<? super T,? super P,? extends V> function, P parameter)
RichIterableFunction2 and specified parameter which is passed to the block
e.g. Function2addParameterFunction = new Function2 () { public Integer value(final Integer each, final Integer parameter) { return each + parameter; } }; FastList.newListWith(1, 2, 3).collectWith(addParameterFunction, Integer.valueOf(1));
collectWith in interface MutableCollection<T>collectWith in interface ListIterable<T>collectWith in interface MutableList<T>collectWith in interface ReversibleIterable<T>collectWith in interface RichIterable<T>collectWith in class AbstractMutableList<T>function - A Function2 to use as the collect transformation functionparameter - A parameter to pass in for evaluation of the second argument P in functionRichIterable that contains the transformed elements returned by Function2.value(Object, Object)RichIterable.collect(Function)public <P,V,R extends Collection<V>> R collectWith(Function2<? super T,? super P,? extends V> function, P parameter, R targetCollection)
RichIterablee.g. Function2addParameterFunction = new Function2 () { public Integer value(final Integer each, final Integer parameter) { return each + parameter; } }; FastList.newListWith(1, 2, 3).collectWith(addParameterFunction, Integer.valueOf(1), UnifiedSet.newSet());
collectWith in interface RichIterable<T>collectWith in class AbstractMutableList<T>function - a Function2 to use as the collect transformation functionparameter - a parameter to pass in for evaluation of the second argument P in functiontargetCollection - the Collection to append to for all elements in this RichIterable that meet select criteria functiontargetCollection, which contains appended elements as a result of the collect transformationpublic <V> FastList<V> collectIf(Predicate<? super T> predicate, Function<? super T,? extends V> function)
MutableCollectione.g. Lists.mutable.of().with(1, 2, 3).collectIf(Predicates.notNull(), Functions.getToString())
collectIf in interface MutableCollection<T>collectIf in interface ListIterable<T>collectIf in interface MutableList<T>collectIf in interface ReversibleIterable<T>collectIf in interface RichIterable<T>collectIf in class AbstractMutableList<T>public <V,R extends Collection<V>> R collectIf(Predicate<? super T> predicate, Function<? super T,? extends V> function, R target)
RichIterablecollectIf in interface RichIterable<T>collectIf in class AbstractMutableList<T>predicate - a Predicate to use as the select criteriafunction - a Function to use as the collect transformation functiontarget - the Collection to append to for all elements in this RichIterable that meet the collect criteria predicatetargetCollection, which contains appended elements as a result of the collect criteria and transformationRichIterable.collectIf(Predicate, Function)public T detect(Predicate<? super T> predicate)
RichIterablee.g.
return people.detect(new Predicate<Person>()
{
public boolean value(Person person)
{
return person.getFirstName().equals("John") && person.getLastName().equals("Smith");
}
});
detect in interface RichIterable<T>detect in class AbstractMutableList<T>public T detectIfNone(Predicate<? super T> predicate, Function0<? extends T> defaultValueBlock)
RichIterabledetectIfNone in interface RichIterable<T>detectIfNone in class AbstractMutableList<T>public <V extends Comparable<? super V>> T minBy(Function<? super T,? extends V> function)
RichIterableminBy in interface RichIterable<T>minBy in class AbstractMutableList<T>public <V extends Comparable<? super V>> T maxBy(Function<? super T,? extends V> function)
RichIterablemaxBy in interface RichIterable<T>maxBy in class AbstractMutableList<T>public <P> T detectWith(Predicate2<? super T,? super P> predicate, P parameter)
RichIterablee.g.
people.detectWith(new Predicate2<Person, String>()
{
public boolean value(Person person, String fullName)
{
return person.getFullName().equals(fullName);
}
}, "John Smith");
detectWith in interface RichIterable<T>detectWith in class AbstractMutableList<T>public <P> T detectWithIfNone(Predicate2<? super T,? super P> predicate, P parameter, Function0<? extends T> defaultValueBlock)
RichIterabledetectWithIfNone in interface RichIterable<T>detectWithIfNone in class AbstractMutableList<T>public T get(int index)
ListIterablepublic boolean add(T newItem)
add in interface Collection<T>add in interface List<T>add in class AbstractMutableCollection<T>public boolean remove(Object object)
remove in interface Collection<T>remove in interface List<T>remove in class AbstractMutableCollection<T>public boolean addAll(int index,
Collection<? extends T> source)
public int size()
RichIterablesize in interface RichIterable<T>size in interface BatchIterable<T>size in interface Collection<T>size in interface List<T>public int count(Predicate<? super T> predicate)
RichIterablee.g.
return people.count(new Predicate<Person>()
{
public boolean value(Person person)
{
return person.getAddress().getState().getName().equals("New York");
}
});
count in interface RichIterable<T>count in class AbstractMutableList<T>public <P> int countWith(Predicate2<? super T,? super P> predicate, P parameter)
RichIterablee.g. return lastNames.countWith(PredicatesLite.equal(), "Smith");
countWith in interface RichIterable<T>countWith in class AbstractMutableList<T>public boolean anySatisfy(Predicate<? super T> predicate)
RichIterableanySatisfy in interface RichIterable<T>anySatisfy in class AbstractMutableList<T>public <P> boolean anySatisfyWith(Predicate2<? super T,? super P> predicate, P parameter)
RichIterableanySatisfyWith in interface RichIterable<T>anySatisfyWith in class AbstractMutableList<T>public boolean allSatisfy(Predicate<? super T> predicate)
RichIterableallSatisfy in interface RichIterable<T>allSatisfy in class AbstractMutableList<T>public <P> boolean allSatisfyWith(Predicate2<? super T,? super P> predicate, P parameter)
RichIterableallSatisfyWith in interface RichIterable<T>allSatisfyWith in class AbstractMutableList<T>public boolean noneSatisfy(Predicate<? super T> predicate)
RichIterablenoneSatisfy in interface RichIterable<T>noneSatisfy in class AbstractMutableList<T>public <P> boolean noneSatisfyWith(Predicate2<? super T,? super P> predicate, P parameter)
RichIterablenoneSatisfyWith in interface RichIterable<T>noneSatisfyWith in class AbstractMutableList<T>public <IV> IV injectInto(IV injectedValue,
Function2<? super IV,? super T,? extends IV> function)
RichIterableinjectInto in interface RichIterable<T>injectInto in class AbstractMutableList<T>public int injectInto(int injectedValue,
IntObjectToIntFunction<? super T> function)
RichIterableinjectInto in interface RichIterable<T>injectInto in class AbstractMutableList<T>public long injectInto(long injectedValue,
LongObjectToLongFunction<? super T> function)
RichIterableinjectInto in interface RichIterable<T>injectInto in class AbstractMutableList<T>public double injectInto(double injectedValue,
DoubleObjectToDoubleFunction<? super T> function)
RichIterableinjectInto in interface RichIterable<T>injectInto in class AbstractRichIterable<T>public float injectInto(float injectedValue,
FloatObjectToFloatFunction<? super T> function)
RichIterableinjectInto in interface RichIterable<T>injectInto in class AbstractMutableList<T>public FastList<T> distinct()
ListIterableListIterable containing the distinct elements in this list.
Conceptually similar to RichIterable.toSet().RichIterable.toList() but retains the original order. If an element appears
multiple times in this list, the first one will be copied into the result.distinct in interface ListIterable<T>distinct in interface MutableList<T>distinct in interface ReversibleIterable<T>distinct in class AbstractMutableList<T>ListIterable of distinct elementspublic long sumOfInt(IntFunction<? super T> function)
RichIterablesumOfInt in interface RichIterable<T>sumOfInt in class AbstractMutableList<T>public long sumOfLong(LongFunction<? super T> function)
RichIterablesumOfLong in interface RichIterable<T>sumOfLong in class AbstractMutableList<T>public double sumOfFloat(FloatFunction<? super T> function)
RichIterablesumOfFloat in interface RichIterable<T>sumOfFloat in class AbstractMutableList<T>public double sumOfDouble(DoubleFunction<? super T> function)
RichIterablesumOfDouble in interface RichIterable<T>sumOfDouble in class AbstractMutableList<T>public <IV,P> IV injectIntoWith(IV injectValue,
Function3<? super IV,? super T,? super P,? extends IV> function,
P parameter)
injectIntoWith in interface MutableCollection<T>injectIntoWith in class AbstractMutableList<T>public FastList<T> toList()
RichIterabletoList in interface RichIterable<T>toList in class AbstractMutableList<T>public FastList<T> toSortedList()
RichIterabletoSortedList in interface RichIterable<T>toSortedList in class AbstractMutableList<T>public FastList<T> toSortedList(Comparator<? super T> comparator)
RichIterabletoSortedList in interface RichIterable<T>toSortedList in class AbstractMutableList<T>public MutableList<T> takeWhile(Predicate<? super T> predicate)
ListIterabletakeWhile in interface ListIterable<T>takeWhile in interface MutableList<T>takeWhile in interface ReversibleIterable<T>takeWhile in class AbstractMutableList<T>public MutableList<T> dropWhile(Predicate<? super T> predicate)
ListIterabledropWhile in interface ListIterable<T>dropWhile in interface MutableList<T>dropWhile in interface ReversibleIterable<T>dropWhile in class AbstractMutableList<T>public PartitionMutableList<T> partitionWhile(Predicate<? super T> predicate)
ListIterablepartitionWhile in interface ListIterable<T>partitionWhile in interface MutableList<T>partitionWhile in interface ReversibleIterable<T>partitionWhile in class AbstractMutableList<T>public boolean equals(Object otherList)
ListIterableList.equals(Object).equals in interface ListIterable<T>equals in interface Collection<T>equals in interface List<T>equals in class AbstractMutableList<T>public boolean fastListEquals(FastList<?> otherFastList)
@Deprecated public boolean equals(FastList<?> otherList)
public int hashCode()
ListIterableList.hashCode().hashCode in interface ListIterable<T>hashCode in interface Collection<T>hashCode in interface List<T>hashCode in class AbstractMutableList<T>public void writeExternal(ObjectOutput out) throws IOException
writeExternal in interface ExternalizableIOExceptionpublic void readExternal(ObjectInput in) throws IOException, ClassNotFoundException
readExternal in interface ExternalizableIOExceptionClassNotFoundExceptionpublic ParallelListIterable<T> asParallel(ExecutorService executorService, int batchSize)
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