Interface MutableBag<T>
- All Superinterfaces:
Bag<T>,Collection<T>,InternalIterable<T>,Iterable<T>,MutableBagIterable<T>,MutableCollection<T>,RichIterable<T>,UnsortedBag<T>
- All Known Subinterfaces:
MultiReaderBag<T>
- All Known Implementing Classes:
AbstractHashBag,AbstractMutableBag,HashBag,HashBagWithHashingStrategy,MultiReaderHashBag,SynchronizedBag,UnmodifiableBag
public interface MutableBag<T> extends UnsortedBag<T>, MutableBagIterable<T>
- Since:
- 1.0
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Method Summary
Modifier and Type Method Description MutableBag<T>asSynchronized()Returns a synchronized wrapper backed by this collection.MutableBag<T>asUnmodifiable()Returns an unmodifiable view of this collection.<V> MutableBag<V>collect(Function<? super T,? extends V> function)Returns a new collection with the results of applying the specified function on each element of the source collection.MutableBooleanBagcollectBoolean(BooleanFunction<? super T> booleanFunction)Returns a new primitivebooleaniterable with the results of applying the specified function on each element of the source collection.MutableByteBagcollectByte(ByteFunction<? super T> byteFunction)Returns a new primitivebyteiterable with the results of applying the specified function on each element of the source collection.MutableCharBagcollectChar(CharFunction<? super T> charFunction)Returns a new primitivechariterable with the results of applying the specified function on each element of the source collection.MutableDoubleBagcollectDouble(DoubleFunction<? super T> doubleFunction)Returns a new primitivedoubleiterable with the results of applying the specified function on each element of the source collection.MutableFloatBagcollectFloat(FloatFunction<? super T> floatFunction)Returns a new primitivefloatiterable with the results of applying the specified function on each element of the source collection.<V> MutableBag<V>collectIf(Predicate<? super T> predicate, Function<? super T,? extends V> function)Returns a new collection with the results of applying the specified function on each element of the source collection, but only for those elements which return true upon evaluation of the predicate.MutableIntBagcollectInt(IntFunction<? super T> intFunction)Returns a new primitiveintiterable with the results of applying the specified function on each element of the source collection.MutableLongBagcollectLong(LongFunction<? super T> longFunction)Returns a new primitivelongiterable with the results of applying the specified function on each element of the source collection.MutableShortBagcollectShort(ShortFunction<? super T> shortFunction)Returns a new primitiveshortiterable with the results of applying the specified function on each element of the source collection.<P, V> MutableBag<V>collectWith(Function2<? super T,? super P,? extends V> function, P parameter)Same asRichIterable.collect(Function)with aFunction2and specified parameter which is passed to the block.<V> MutableBag<V>collectWithOccurrences(ObjectIntToObjectFunction<? super T,? extends V> function)Iterates over the unique elements and their occurrences and collects the results of applying the specified function.default <V> MutableBag<V>countBy(Function<? super T,? extends V> function)This method will count the number of occurrences of each value calculated by applying the function to each element of the collection.default <V> MutableBag<V>countByEach(Function<? super T,? extends Iterable<V>> function)This method will count the number of occurrences of each value calculated by applying the function to each element of the collection.default <V, P> MutableBag<V>countByWith(Function2<? super T,? super P,? extends V> function, P parameter)This method will count the number of occurrences of each value calculated by applying the function to each element of the collection with the specified parameter as the second argument.<V> MutableBag<V>flatCollect(Function<? super T,? extends Iterable<V>> function)flatCollectis a special case ofRichIterable.collect(Function).default <P, V> MutableBag<V>flatCollectWith(Function2<? super T,? super P,? extends Iterable<V>> function, P parameter)<V> MutableBagMultimap<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> MutableBagMultimap<V,T>groupByEach(Function<? super T,? extends Iterable<V>> function)Similar toRichIterable.groupBy(Function), except the result of evaluating function will return a collection of keys for each value.MutableBag<T>newEmpty()Creates a new empty mutable version of the same collection type.PartitionMutableBag<T>partition(Predicate<? super T> predicate)Filters a collection into a PartitionedIterable based on the evaluation of the predicate.<P> PartitionMutableBag<T>partitionWith(Predicate2<? super T,? super P> predicate, P parameter)Filters a collection into a PartitionIterable based on the evaluation of the predicate.MutableBag<T>reject(Predicate<? super T> predicate)Returns all elements of the source collection that return false when evaluating of the predicate.<P> MutableBag<T>rejectWith(Predicate2<? super T,? super P> predicate, P parameter)Similar toRichIterable.reject(Predicate), except with an evaluation parameter for the second generic argument inPredicate2.MutableBag<T>select(Predicate<? super T> predicate)Returns all elements of the source collection that return true when evaluating the predicate.MutableBag<T>selectByOccurrences(IntPredicate predicate)Returns all elements of the bag that have a number of occurrences that satisfy the predicate.default MutableBag<T>selectDuplicates()Returns all elements of the bag that have more than one occurrence.<S> MutableBag<S>selectInstancesOf(Class<S> clazz)Returns all elements of the source collection that are instances of the Classclazz.default MutableSet<T>selectUnique()Returns a set containing all elements of the bag that have exactly one occurrence.<P> MutableBag<T>selectWith(Predicate2<? super T,? super P> predicate, P parameter)Similar toRichIterable.select(Predicate), except with an evaluation parameter for the second generic argument inPredicate2.MutableBag<T>tap(Procedure<? super T> procedure)Executes the Procedure for each element in the iterable and returnsthis.ImmutableBag<T>toImmutable()Converts thisMutableCollectionto anImmutableCollection.MutableMap<T,Integer>toMapOfItemToCount()Converts the Bag to a Map of the Item type to its count as an Integer.default MutableBag<T>with(T element)This method allows mutable and fixed size collections the ability to add elements to their existing elements.default MutableBag<T>withAll(Iterable<? extends T> elements)This method allows mutable and fixed size collections the ability to add multiple elements to their existing elements.default MutableBag<T>without(T element)This method allows mutable and fixed size collections the ability to remove elements from their existing elements.default MutableBag<T>withoutAll(Iterable<? extends T> elements)This method allows mutable and fixed size collections the ability to remove multiple elements from their existing elements.<S> MutableBag<Pair<T,S>>zip(Iterable<S> that)Deprecated.in 6.0.MutableSet<Pair<T,Integer>>zipWithIndex()Deprecated.in 6.0.Methods inherited from interface org.eclipse.collections.api.bag.Bag
aggregateBy, collectWithOccurrences, equals, forEachWithOccurrences, hashCode, occurrencesOf, reduceInPlace, reduceInPlace, sizeDistinct, summarizeDouble, summarizeFloat, summarizeInt, summarizeLong, toStringOfItemToCountMethods inherited from interface java.util.Collection
add, addAll, clear, contains, containsAll, equals, hashCode, isEmpty, iterator, parallelStream, remove, removeAll, removeIf, retainAll, size, spliterator, stream, toArray, toArray, toArrayMethods inherited from interface org.eclipse.collections.api.InternalIterable
forEach, forEachWith, forEachWithIndexMethods inherited from interface org.eclipse.collections.api.bag.MutableBagIterable
addOccurrences, bottomOccurrences, removeOccurrences, setOccurrences, topOccurrencesMethods inherited from interface org.eclipse.collections.api.collection.MutableCollection
addAllIterable, aggregateBy, aggregateInPlaceBy, groupByUniqueKey, injectIntoWith, removeAllIterable, removeIf, removeIfWith, retainAllIterable, selectAndRejectWith, sumByDouble, sumByFloat, sumByInt, sumByLongMethods inherited from interface org.eclipse.collections.api.RichIterable
allSatisfy, allSatisfyWith, anySatisfy, anySatisfyWith, appendString, appendString, appendString, asLazy, chunk, collect, collectBoolean, collectByte, collectChar, collectDouble, collectFloat, collectIf, collectInt, collectLong, collectShort, collectWith, contains, containsAll, containsAllArguments, containsAllIterable, containsBy, count, countBy, countByEach, countByWith, countWith, detect, detectIfNone, detectOptional, detectWith, detectWithIfNone, detectWithOptional, each, flatCollect, flatCollectBoolean, flatCollectByte, flatCollectChar, flatCollectDouble, flatCollectFloat, flatCollectInt, flatCollectLong, flatCollectShort, flatCollectWith, forEach, getAny, getFirst, getLast, getOnly, groupBy, groupByAndCollect, groupByEach, groupByUniqueKey, injectInto, injectInto, injectInto, injectInto, injectInto, into, isEmpty, makeString, makeString, makeString, max, max, maxBy, maxByOptional, maxOptional, maxOptional, min, min, minBy, minByOptional, minOptional, minOptional, noneSatisfy, noneSatisfyWith, notEmpty, reduce, reject, rejectWith, select, selectWith, size, sumOfDouble, sumOfFloat, sumOfInt, sumOfLong, toArray, toArray, toBag, toBiMap, toList, toMap, toMap, toSet, toSortedBag, toSortedBag, toSortedBagBy, toSortedList, toSortedList, toSortedListBy, toSortedMap, toSortedMap, toSortedMapBy, toSortedSet, toSortedSet, toSortedSetBy, toString, zip, zipWithIndex
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Method Details
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toMapOfItemToCount
MutableMap<T,Integer> toMapOfItemToCount()Description copied from interface:BagConverts the Bag to a Map of the Item type to its count as an Integer.- Specified by:
toMapOfItemToCountin interfaceBag<T>- Specified by:
toMapOfItemToCountin interfaceMutableBagIterable<T>
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selectByOccurrences
Description copied from interface:BagReturns all elements of the bag that have a number of occurrences that satisfy the predicate.- Specified by:
selectByOccurrencesin interfaceBag<T>- Specified by:
selectByOccurrencesin interfaceMutableBagIterable<T>- Specified by:
selectByOccurrencesin interfaceUnsortedBag<T>
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selectDuplicates
Description copied from interface:BagReturns all elements of the bag that have more than one occurrence.- Specified by:
selectDuplicatesin interfaceBag<T>- Specified by:
selectDuplicatesin interfaceMutableBagIterable<T>- Specified by:
selectDuplicatesin interfaceUnsortedBag<T>- Since:
- 9.2
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selectUnique
Description copied from interface:BagReturns a set containing all elements of the bag that have exactly one occurrence.- Specified by:
selectUniquein interfaceBag<T>- Specified by:
selectUniquein interfaceMutableBagIterable<T>- Specified by:
selectUniquein interfaceUnsortedBag<T>- Since:
- 9.2
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with
Description copied from interface:MutableCollectionThis method allows mutable and fixed size collections the ability to add elements to their existing elements. In order to support fixed size a new instance of a collection would have to be returned taking the elements of the original collection and appending the new element to form the new collection. In the case of mutable collections, the original collection is modified, and is returned. In order to use this method properly with mutable and fixed size collections the following approach must be taken:MutableCollection<String> list = list.with("1"); list = list.with("2"); return list;In the case ofFixedSizeCollectiona new instance of MutableCollection will be returned by with, and any variables that previously referenced the original collection will need to be redirected to reference the new instance. For other MutableCollection types you will replace the reference to collection with the same collection, since the instance will return "this" after calling add on itself.- Specified by:
within interfaceMutableBagIterable<T>- Specified by:
within interfaceMutableCollection<T>- See Also:
Collection.add(Object)
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without
Description copied from interface:MutableCollectionThis method allows mutable and fixed size collections the ability to remove elements from their existing elements. In order to support fixed size a new instance of a collection would have to be returned containing the elements that would be left from the original collection after calling remove. In the case of mutable collections, the original collection is modified, and is returned. In order to use this method properly with mutable and fixed size collections the following approach must be taken:MutableCollection<String> list = list.without("1"); list = list.without("2"); return list;In the case ofFixedSizeCollectiona new instance of MutableCollection will be returned by without, and any variables that previously referenced the original collection will need to be redirected to reference the new instance. For other MutableCollection types you will replace the reference to collection with the same collection, since the instance will return "this" after calling remove on itself.- Specified by:
withoutin interfaceMutableBagIterable<T>- Specified by:
withoutin interfaceMutableCollection<T>- See Also:
Collection.remove(Object)
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withAll
Description copied from interface:MutableCollectionThis method allows mutable and fixed size collections the ability to add multiple elements to their existing elements. In order to support fixed size a new instance of a collection would have to be returned taking the elements of the original collection and appending the new elements to form the new collection. In the case of mutable collections, the original collection is modified, and is returned. In order to use this method properly with mutable and fixed size collections the following approach must be taken:MutableCollection<String> list = list.withAll(FastList.newListWith("1", "2"));In the case ofFixedSizeCollectiona new instance of MutableCollection will be returned by withAll, and any variables that previously referenced the original collection will need to be redirected to reference the new instance. For other MutableCollection types you will replace the reference to collection with the same collection, since the instance will return "this" after calling addAll on itself.- Specified by:
withAllin interfaceMutableBagIterable<T>- Specified by:
withAllin interfaceMutableCollection<T>- See Also:
Collection.addAll(Collection)
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withoutAll
Description copied from interface:MutableCollectionThis method allows mutable and fixed size collections the ability to remove multiple elements from their existing elements. In order to support fixed size a new instance of a collection would have to be returned containing the elements that would be left from the original collection after calling removeAll. In the case of mutable collections, the original collection is modified, and is returned. In order to use this method properly with mutable and fixed size collections the following approach must be taken:MutableCollection<String> list = list.withoutAll(FastList.newListWith("1", "2"));In the case ofFixedSizeCollectiona new instance of MutableCollection will be returned by withoutAll, and any variables that previously referenced the original collection will need to be redirected to reference the new instance. For other MutableCollection types you will replace the reference to collection with the same collection, since the instance will return "this" after calling removeAll on itself.- Specified by:
withoutAllin interfaceMutableBagIterable<T>- Specified by:
withoutAllin interfaceMutableCollection<T>- See Also:
Collection.removeAll(Collection)
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newEmpty
MutableBag<T> newEmpty()Description copied from interface:MutableCollectionCreates a new empty mutable version of the same collection type. For example, if this instance is a FastList, this method will return a new empty FastList. If the class of this instance is immutable or fixed size (i.e. SingletonList) then a mutable alternative to the class will be provided.- Specified by:
newEmptyin interfaceMutableCollection<T>
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asUnmodifiable
MutableBag<T> asUnmodifiable()Description copied from interface:MutableCollectionReturns an unmodifiable view of this collection. This is the equivalent of usingCollections.unmodifiableCollection(this)with a return type that supports the full iteration protocols available onMutableCollection. Methods which would mutate the underlying collection will throw UnsupportedOperationExceptions.- Specified by:
asUnmodifiablein interfaceMutableCollection<T>- Returns:
- an unmodifiable view of this collection.
- See Also:
Collections.unmodifiableCollection(Collection)
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asSynchronized
MutableBag<T> asSynchronized()Description copied from interface:MutableCollectionReturns a synchronized wrapper backed by this collection. This is the equivalent of usingCollections.synchronizedCollection(this)only with a return type that supports the full iteration protocols available onMutableCollection. The preferred way of iterating over a synchronized collection is to use the internal iteration methods which are properly synchronized internally.MutableCollection synchedCollection = collection.asSynchronized(); ... synchedCollection.forEach(each -> ... ); synchedCollection.select(each -> ... ); synchedCollection.collect(each -> ... );If you want to iterate using an imperative style, you must protect external iterators using a synchronized block. This includes explicit iterators as well as JDK 5 style for loops.- Specified by:
asSynchronizedin interfaceMutableCollection<T>- Returns:
- a synchronized view of this collection.
- See Also:
Collections.synchronizedCollection(Collection)
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partition
Description copied from interface:RichIterableFilters a collection into a PartitionedIterable based on the evaluation of the predicate.Example using a Java 8 lambda expression:
PartitionIterable<Person> newYorkersAndNonNewYorkers = people.partition(person -> person.getAddress().getState().getName().equals("New York"));Example using an anonymous inner class:
PartitionIterable<Person> newYorkersAndNonNewYorkers = people.partition(new Predicate<Person>() { public boolean accept(Person person) { return person.getAddress().getState().getName().equals("New York"); } });- Specified by:
partitionin interfaceBag<T>- Specified by:
partitionin interfaceMutableBagIterable<T>- Specified by:
partitionin interfaceMutableCollection<T>- Specified by:
partitionin interfaceRichIterable<T>- Specified by:
partitionin interfaceUnsortedBag<T>
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partitionWith
Description copied from interface:RichIterableFilters a collection into a PartitionIterable based on the evaluation of the predicate.Example using a Java 8 lambda expression:
PartitionIterable<Person> newYorkersAndNonNewYorkers = people.partitionWith((Person person, String state) -> person.getAddress().getState().getName().equals(state), "New York");Example using an anonymous inner class:
PartitionIterable<Person> newYorkersAndNonNewYorkers = people.partitionWith(new Predicate2<Person, String>() { public boolean accept(Person person, String state) { return person.getAddress().getState().getName().equals(state); } }, "New York");- Specified by:
partitionWithin interfaceBag<T>- Specified by:
partitionWithin interfaceMutableBagIterable<T>- Specified by:
partitionWithin interfaceMutableCollection<T>- Specified by:
partitionWithin interfaceRichIterable<T>
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groupBy
Description copied from interface:RichIterableFor 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.Example using a Java 8 method reference:
Multimap<String, Person> peopleByLastName = people.groupBy(Person::getLastName);Example using an anonymous inner class:
Multimap<String, Person> peopleByLastName = people.groupBy(new Function<Person, String>() { public String valueOf(Person person) { return person.getLastName(); } });- Specified by:
groupByin interfaceBag<T>- Specified by:
groupByin interfaceMutableBagIterable<T>- Specified by:
groupByin interfaceMutableCollection<T>- Specified by:
groupByin interfaceRichIterable<T>- Specified by:
groupByin interfaceUnsortedBag<T>
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groupByEach
Description copied from interface:RichIterableSimilar toRichIterable.groupBy(Function), except the result of evaluating function will return a collection of keys for each value.- Specified by:
groupByEachin interfaceBag<T>- Specified by:
groupByEachin interfaceMutableBagIterable<T>- Specified by:
groupByEachin interfaceMutableCollection<T>- Specified by:
groupByEachin interfaceRichIterable<T>- Specified by:
groupByEachin interfaceUnsortedBag<T>
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countBy
Description copied from interface:RichIterableThis method will count the number of occurrences of each value calculated by applying the function to each element of the collection.- Specified by:
countByin interfaceMutableCollection<T>- Specified by:
countByin interfaceRichIterable<T>- Since:
- 9.0
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countByWith
default <V, P> MutableBag<V> countByWith(Function2<? super T,? super P,? extends V> function, P parameter)Description copied from interface:RichIterableThis method will count the number of occurrences of each value calculated by applying the function to each element of the collection with the specified parameter as the second argument.- Specified by:
countByWithin interfaceMutableCollection<T>- Specified by:
countByWithin interfaceRichIterable<T>- Since:
- 9.0
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countByEach
Description copied from interface:RichIterableThis method will count the number of occurrences of each value calculated by applying the function to each element of the collection.- Specified by:
countByEachin interfaceMutableCollection<T>- Specified by:
countByEachin interfaceRichIterable<T>- Since:
- 10.0.0
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zip
Deprecated.in 6.0. UseOrderedIterable.zip(Iterable)instead.Description copied from interface:RichIterableReturns aRichIterableformed from thisRichIterableand anotherRichIterableby combining corresponding elements in pairs. If one of the twoRichIterables is longer than the other, its remaining elements are ignored.- Specified by:
zipin interfaceMutableCollection<T>- Specified by:
zipin interfaceRichIterable<T>- Specified by:
zipin interfaceUnsortedBag<T>- Type Parameters:
S- the type of the second half of the returned pairs- Parameters:
that- TheRichIterableproviding the second half of each result pair- Returns:
- A new
RichIterablecontaining pairs consisting of corresponding elements of thisRichIterableand that. The length of the returnedRichIterableis the minimum of the lengths of thisRichIterableand that.
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zipWithIndex
Deprecated.in 6.0. UseOrderedIterable.zipWithIndex()instead.Description copied from interface:RichIterableZips thisRichIterablewith its indices.- Specified by:
zipWithIndexin interfaceBag<T>- Specified by:
zipWithIndexin interfaceMutableBagIterable<T>- Specified by:
zipWithIndexin interfaceMutableCollection<T>- Specified by:
zipWithIndexin interfaceRichIterable<T>- Specified by:
zipWithIndexin interfaceUnsortedBag<T>- Returns:
- A new
RichIterablecontaining pairs consisting of all elements of thisRichIterablepaired with their index. Indices start at 0. - See Also:
RichIterable.zip(Iterable)
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tap
Description copied from interface:RichIterableExecutes the Procedure for each element in the iterable and returnsthis.Example using a Java 8 lambda expression:
RichIterable<Person> tapped = people.tap(person -> LOGGER.info(person.getName()));Example using an anonymous inner class:
RichIterable<Person> tapped = people.tap(new Procedure<Person>() { public void value(Person person) { LOGGER.info(person.getName()); } });- Specified by:
tapin interfaceBag<T>- Specified by:
tapin interfaceMutableBagIterable<T>- Specified by:
tapin interfaceMutableCollection<T>- Specified by:
tapin interfaceRichIterable<T>- Specified by:
tapin interfaceUnsortedBag<T>- See Also:
RichIterable.each(Procedure),RichIterable.forEach(Procedure)
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select
Description copied from interface:RichIterableReturns all elements of the source collection that return true when evaluating the predicate. This method is also commonly called filter.Example using a Java 8 lambda expression:
RichIterable<Person> selected = people.select(person -> person.getAddress().getCity().equals("London"));Example using an anonymous inner class:
RichIterable<Person> selected = people.select(new Predicate<Person>() { public boolean accept(Person person) { return person.getAddress().getCity().equals("London"); } });- Specified by:
selectin interfaceBag<T>- Specified by:
selectin interfaceMutableBagIterable<T>- Specified by:
selectin interfaceMutableCollection<T>- Specified by:
selectin interfaceRichIterable<T>- Specified by:
selectin interfaceUnsortedBag<T>
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selectWith
Description copied from interface:RichIterableSimilar toRichIterable.select(Predicate), except with an evaluation parameter for the second generic argument inPredicate2.E.g. return a
Collectionof Person elements where the person has an age greater than or equal to 18 yearsExample using a Java 8 lambda expression:
RichIterable<Person> selected = people.selectWith((Person person, Integer age) -> person.getAge()>= age, Integer.valueOf(18));Example using an anonymous inner class:
RichIterable<Person> selected = people.selectWith(new Predicate2<Person, Integer>() { public boolean accept(Person person, Integer age) { return person.getAge()>= age; } }, Integer.valueOf(18));- Specified by:
selectWithin interfaceBag<T>- Specified by:
selectWithin interfaceMutableBagIterable<T>- Specified by:
selectWithin interfaceMutableCollection<T>- Specified by:
selectWithin interfaceRichIterable<T>- Specified by:
selectWithin interfaceUnsortedBag<T>- Parameters:
predicate- aPredicate2to use as the select criteriaparameter- a parameter to pass in for evaluation of the second argumentPinpredicate- See Also:
RichIterable.select(Predicate)
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reject
Description copied from interface:RichIterableReturns all elements of the source collection that return false when evaluating of the predicate. This method is also sometimes called filterNot and is the equivalent of calling iterable.select(Predicates.not(predicate)).Example using a Java 8 lambda expression:
RichIterable<Person> rejected = people.reject(person -> person.person.getLastName().equals("Smith"));Example using an anonymous inner class:
RichIterable<Person> rejected = people.reject(new Predicate<Person>() { public boolean accept(Person person) { return person.person.getLastName().equals("Smith"); } });- Specified by:
rejectin interfaceBag<T>- Specified by:
rejectin interfaceMutableBagIterable<T>- Specified by:
rejectin interfaceMutableCollection<T>- Specified by:
rejectin interfaceRichIterable<T>- Specified by:
rejectin interfaceUnsortedBag<T>- Parameters:
predicate- aPredicateto use as the reject criteria- Returns:
- a RichIterable that contains elements that cause
Predicate.accept(Object)method to evaluate to false
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rejectWith
Description copied from interface:RichIterableSimilar toRichIterable.reject(Predicate), except with an evaluation parameter for the second generic argument inPredicate2.E.g. return a
Collectionof Person elements where the person has an age greater than or equal to 18 yearsExample using a Java 8 lambda expression:
RichIterable<Person> rejected = people.rejectWith((Person person, Integer age) -> person.getAge() < age, Integer.valueOf(18));Example using an anonymous inner class:
MutableList<Person> rejected = people.rejectWith(new Predicate2<Person, Integer>() { public boolean accept(Person person, Integer age) { return person.getAge() < age; } }, Integer.valueOf(18));- Specified by:
rejectWithin interfaceBag<T>- Specified by:
rejectWithin interfaceMutableBagIterable<T>- Specified by:
rejectWithin interfaceMutableCollection<T>- Specified by:
rejectWithin interfaceRichIterable<T>- Specified by:
rejectWithin interfaceUnsortedBag<T>- Parameters:
predicate- aPredicate2to use as the select criteriaparameter- a parameter to pass in for evaluation of the second argumentPinpredicate- See Also:
RichIterable.select(Predicate)
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selectInstancesOf
Description copied from interface:RichIterableReturns all elements of the source collection that are instances of the Classclazz.RichIterable<Integer> integers = List.mutable.with(new Integer(0), new Long(0L), new Double(0.0)).selectInstancesOf(Integer.class);- Specified by:
selectInstancesOfin interfaceBag<T>- Specified by:
selectInstancesOfin interfaceMutableBagIterable<T>- Specified by:
selectInstancesOfin interfaceMutableCollection<T>- Specified by:
selectInstancesOfin interfaceRichIterable<T>- Specified by:
selectInstancesOfin interfaceUnsortedBag<T>
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collect
Description copied from interface:RichIterableReturns a new collection with the results of applying the specified function on each element of the source collection. This method is also commonly called transform or map.Example using a Java 8 lambda expression:
RichIterable<String> names = people.collect(person -> person.getFirstName() + " " + person.getLastName());Example using an anonymous inner class:
RichIterable<String> names = people.collect(new Function<Person, String>() { public String valueOf(Person person) { return person.getFirstName() + " " + person.getLastName(); } });- Specified by:
collectin interfaceMutableCollection<T>- Specified by:
collectin interfaceRichIterable<T>- Specified by:
collectin interfaceUnsortedBag<T>
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collectByte
Description copied from interface:RichIterableReturns a new primitivebyteiterable with the results of applying the specified function on each element of the source collection. This method is also commonly called transform or map.Example using a Java 8 lambda expression:
ByteIterable bytes = people.collectByte(person -> person.getCode());Example using an anonymous inner class:
ByteIterable bytes = people.collectByte(new ByteFunction<Person>() { public byte byteValueOf(Person person) { return person.getCode(); } });- Specified by:
collectBytein interfaceMutableCollection<T>- Specified by:
collectBytein interfaceRichIterable<T>- Specified by:
collectBytein interfaceUnsortedBag<T>
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collectChar
Description copied from interface:RichIterableReturns a new primitivechariterable with the results of applying the specified function on each element of the source collection. This method is also commonly called transform or map.Example using a Java 8 lambda expression:
CharIterable chars = people.collectChar(person -> person.getMiddleInitial());Example using an anonymous inner class:
CharIterable chars = people.collectChar(new CharFunction<Person>() { public char charValueOf(Person person) { return person.getMiddleInitial(); } });- Specified by:
collectCharin interfaceMutableCollection<T>- Specified by:
collectCharin interfaceRichIterable<T>- Specified by:
collectCharin interfaceUnsortedBag<T>
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collectInt
Description copied from interface:RichIterableReturns a new primitiveintiterable with the results of applying the specified function on each element of the source collection. This method is also commonly called transform or map.Example using a Java 8 lambda expression:
IntIterable ints = people.collectInt(person -> person.getAge());Example using an anonymous inner class:
IntIterable ints = people.collectInt(new IntFunction<Person>() { public int intValueOf(Person person) { return person.getAge(); } });- Specified by:
collectIntin interfaceMutableCollection<T>- Specified by:
collectIntin interfaceRichIterable<T>- Specified by:
collectIntin interfaceUnsortedBag<T>
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collectBoolean
Description copied from interface:RichIterableReturns a new primitivebooleaniterable with the results of applying the specified function on each element of the source collection. This method is also commonly called transform or map.Example using a Java 8 lambda expression:
BooleanIterable licenses = people.collectBoolean(person -> person.hasDrivingLicense());Example using an anonymous inner class:
BooleanIterable licenses = people.collectBoolean(new BooleanFunction<Person>() { public boolean booleanValueOf(Person person) { return person.hasDrivingLicense(); } });- Specified by:
collectBooleanin interfaceMutableCollection<T>- Specified by:
collectBooleanin interfaceRichIterable<T>- Specified by:
collectBooleanin interfaceUnsortedBag<T>
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collectDouble
Description copied from interface:RichIterableReturns a new primitivedoubleiterable with the results of applying the specified function on each element of the source collection. This method is also commonly called transform or map.Example using a Java 8 lambda expression:
DoubleIterable doubles = people.collectDouble(person -> person.getMilesFromNorthPole());Example using an anonymous inner class:
DoubleIterable doubles = people.collectDouble(new DoubleFunction<Person>() { public double doubleValueOf(Person person) { return person.getMilesFromNorthPole(); } });- Specified by:
collectDoublein interfaceMutableCollection<T>- Specified by:
collectDoublein interfaceRichIterable<T>- Specified by:
collectDoublein interfaceUnsortedBag<T>
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collectFloat
Description copied from interface:RichIterableReturns a new primitivefloatiterable with the results of applying the specified function on each element of the source collection. This method is also commonly called transform or map.Example using a Java 8 lambda expression:
FloatIterable floats = people.collectFloat(person -> person.getHeightInInches());Example using an anonymous inner class:
FloatIterable floats = people.collectFloat(new FloatFunction<Person>() { public float floatValueOf(Person person) { return person.getHeightInInches(); } });- Specified by:
collectFloatin interfaceMutableCollection<T>- Specified by:
collectFloatin interfaceRichIterable<T>- Specified by:
collectFloatin interfaceUnsortedBag<T>
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collectLong
Description copied from interface:RichIterableReturns a new primitivelongiterable with the results of applying the specified function on each element of the source collection. This method is also commonly called transform or map.Example using a Java 8 lambda expression:
LongIterable longs = people.collectLong(person -> person.getGuid());Example using an anonymous inner class:
LongIterable longs = people.collectLong(new LongFunction<Person>() { public long longValueOf(Person person) { return person.getGuid(); } });- Specified by:
collectLongin interfaceMutableCollection<T>- Specified by:
collectLongin interfaceRichIterable<T>- Specified by:
collectLongin interfaceUnsortedBag<T>
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collectShort
Description copied from interface:RichIterableReturns a new primitiveshortiterable with the results of applying the specified function on each element of the source collection. This method is also commonly called transform or map.Example using a Java 8 lambda expression:
ShortIterable shorts = people.collectShort(person -> person.getNumberOfJunkMailItemsReceivedPerMonth());Example using an anonymous inner class:
ShortIterable shorts = people.collectShort(new ShortFunction<Person>() { public short shortValueOf(Person person) { return person.getNumberOfJunkMailItemsReceivedPerMonth(); } });- Specified by:
collectShortin interfaceMutableCollection<T>- Specified by:
collectShortin interfaceRichIterable<T>- Specified by:
collectShortin interfaceUnsortedBag<T>
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collectWith
<P, V> MutableBag<V> collectWith(Function2<? super T,? super P,? extends V> function, P parameter)Description copied from interface:RichIterableSame asRichIterable.collect(Function)with aFunction2and specified parameter which is passed to the block.Example using a Java 8 lambda expression:
RichIterable<Integer> integers = Lists.mutable.with(1, 2, 3).collectWith((each, parameter) -> each + parameter, Integer.valueOf(1));Example using an anonymous inner class:
Function2<Integer, Integer, Integer> addParameterFunction = new Function2<Integer, Integer, Integer>() { public Integer value(Integer each, Integer parameter) { return each + parameter; } }; RichIterable<Integer> integers = Lists.mutable.with(1, 2, 3).collectWith(addParameterFunction, Integer.valueOf(1));- Specified by:
collectWithin interfaceMutableCollection<T>- Specified by:
collectWithin interfaceRichIterable<T>- Specified by:
collectWithin interfaceUnsortedBag<T>- Parameters:
function- AFunction2to use as the collect transformation functionparameter- A parameter to pass in for evaluation of the second argumentPinfunction- Returns:
- A new
RichIterablethat contains the transformed elements returned byFunction2.value(Object, Object) - See Also:
RichIterable.collect(Function)
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collectIf
<V> MutableBag<V> collectIf(Predicate<? super T> predicate, Function<? super T,? extends V> function)Description copied from interface:RichIterableReturns a new collection with the results of applying the specified function on each element of the source collection, but only for those elements which return true upon evaluation of the predicate. This is the the optimized equivalent of calling iterable.select(predicate).collect(function).Example using a Java 8 lambda and method reference:
RichIterable<String> strings = Lists.mutable.with(1, 2, 3).collectIf(e -> e != null, Object::toString);
Example using Predicates factory:
RichIterable<String> strings = Lists.mutable.with(1, 2, 3).collectIf(Predicates.notNull(), Functions.getToString());
- Specified by:
collectIfin interfaceMutableCollection<T>- Specified by:
collectIfin interfaceRichIterable<T>- Specified by:
collectIfin interfaceUnsortedBag<T>
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collectWithOccurrences
<V> MutableBag<V> collectWithOccurrences(ObjectIntToObjectFunction<? super T,? extends V> function)Description copied from interface:BagIterates over the unique elements and their occurrences and collects the results of applying the specified function.- Specified by:
collectWithOccurrencesin interfaceBag<T>- Specified by:
collectWithOccurrencesin interfaceMutableBagIterable<T>- Specified by:
collectWithOccurrencesin interfaceUnsortedBag<T>
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flatCollect
Description copied from interface:RichIterableflatCollectis a special case ofRichIterable.collect(Function). Withcollect, when theFunctionreturns a collection, the result is a collection of collections.flatCollectoutputs a single "flattened" collection instead. This method is commonly called flatMap.Consider the following example where we have a
Personclass, and eachPersonhas a list ofAddressobjects. Take the followingFunction:Function<Person, List<Address>> addressFunction = Person::getAddresses; RichIterable<Person> people = ...;
Usingcollectreturns a collection of collections of addresses.RichIterable<List<Address>> addresses = people.collect(addressFunction);
UsingflatCollectreturns a single flattened list of addresses.RichIterable<Address> addresses = people.flatCollect(addressFunction);
- Specified by:
flatCollectin interfaceMutableCollection<T>- Specified by:
flatCollectin interfaceRichIterable<T>- Specified by:
flatCollectin interfaceUnsortedBag<T>- Parameters:
function- TheFunctionto apply- Returns:
- a new flattened collection produced by applying the given
function
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flatCollectWith
default <P, V> MutableBag<V> flatCollectWith(Function2<? super T,? super P,? extends Iterable<V>> function, P parameter)- Specified by:
flatCollectWithin interfaceMutableCollection<T>- Specified by:
flatCollectWithin interfaceRichIterable<T>- Specified by:
flatCollectWithin interfaceUnsortedBag<T>- Since:
- 9.2
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toImmutable
ImmutableBag<T> toImmutable()Description copied from interface:MutableCollectionConverts thisMutableCollectionto anImmutableCollection.- Specified by:
toImmutablein interfaceBag<T>- Specified by:
toImmutablein interfaceMutableCollection<T>- Since:
- 8.0
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