38 Commits
Author SHA1 Message Date
Speiger ddc58ee221 Version 0.7.0 Release
- Added: Coverage Badge
- Updated: Changelog.
- Changed: Changelog now has info how to obtain the sourcecode.
- Added: Over 11 Million Unit Tests to this library to ensure quality.
- Added: ArrayList size constructor now throws IllegalStateException if
the size parameter is negative
- Added: EnumMap specialized forEach implementation.
- Added: AbstractMap.remove now delegates to its primitive counterpart.
- Added: ConcurrentHashMap now implements ITrimmable
- Refactor: Removed a lot of disabled code from ArraySet.
- Removed: LinkedList.addAll(index, List) now delegates to
LinkedList.addAll(index, Collection) due to no special optimization
required.
- Fixed: AbstractList.SubList.get/set/swapRemove didn't calculate their
List index Properly
- Fixed: AbstractList.SubList chains now properly if you create SubLists
within SubLists.
- Fixed: AbstractList.Iterator.add now respects
Immutable/UnmodifiableLists.
- Fixed: AbstractList.Iterator.skip/back now keep track of the last
returned value for remove function to work properly.
- Fixed: CopyOnWriteArrayList.extract/removeElements(int, int) does now
proper range checks and remove elements properly.
- Fixed: CopyOnWriteArrayList.SubList now works properly. (Reimplemented
entirely)
- Fixed: CopyOnWriteArrayList.Iterator.previous() was returning the
wrong values.
- Fixed: CopyOnWriteArrayList.Iterator.skip now skips the right amount
of elements and stops where it should.
- Fixed: LinkedList.first/last/dequeue/dequeueLast now throws
NoSuchElementException when empty instead of IllegalStateException.
- Fixed: LinkedList had an edge case where the entire reverse iterator
would break if the wrong element was removed.
- Fixed: LinkedList.extractElement now returns the correct values.
- Fixed: AbstractMap.entrySet().remove(Object) now returns true if
defaultReturnValue elements were removed.
- Fixed: ConcurrentHashMap.remove(Object, Object) checks if the type
matches before comparing against null Values.
- Fixed: LinkedHashMap.clearAndTrim() was checking the wrong value for
determining the full reset or clearing of a Map.
- Fixed: HashMap.trim/clearToTrim() was using the wrong value to
determin if something should be done.
- Fixed: HashMap now compares empty values (0) against nullKeys when
Object Variants of the type are used.
- Fixed: ImmutableMap now compares empty values (0) against nullKeys
when Object Variants of the type are used.
- Fixed: ArrayMap.iterator(key) now throws NoSuchElementException when
the element wasn't found.
- Fixed: Linked/EnumMap array constructor was creating the wrong size
values array.
- Fixed: LinkedEnumMap.getAndMoveToFirst/Last was moving elements even
if the element wasn't present.
- Fixed: AVL/RBTreeMap.getFirst/LastKey was not throwing a
NoSuchElementException if the map was empty.
- Fixed: Map.Builder wasn't throwing a IllegalStateException when
creating a negative size builder.
- Fixed: AVL/RBTreeSet.DecendingSet.subSet(from, fromInclusive, to,
toInclusive) was creating a corrupt asending subset.
- Fixed: ArraySet throws now a IllegalStateException when trying to
create it with a negative size.
- Fixed: ArraySet.addMoveToLast(key) was crashing when a key was already
present.
- Fixed: Immutable/LinkedHashSet now keep track of their iteration index
properly.
- Fixed: LinkedHashSet.moveToFirst/Last(key) would crash if the Set was
empty.
- Fixed: LinkedHashSet.clearAndTrim() was checking the wrong value for
determining the full reset or clearing of a Map.
- Fixed: HashSet.trim/clearToTrim() was using the wrong value to
determin if something should be done.
2022-06-12 14:31:45 +02:00
Speiger 8b5e5a75c1 Fixing bugs found when implementing Bidirectional Iterator unit tests.
-Fixed: AbstractList/ImmutableList/ArraySet/ArrayMap skip/back implementation was causing crashes and didn't update the last returned value.
-Fixed: ArraySet/ArrayMap previous was not subtracting before returning value.
-Fixed: BidirectionalIterator back was calling the object variant instead of the TypeSpecific Variant.
-Fixed: TreeSets/Maps Iterator now fully supports backwards Iterating.
-Added: Specialized skip/back function to improve speed in ImmutableHashSet/LinkedHashSet/CustomLinkedHashSet
2022-06-04 21:05:31 +02:00
Speiger c1862e6b05 Fixed a Few bugs with wrappers.
-Fixed: Maps.EmptyMap getOrDefault wasn't returning the default value.
-Fixed: Maps.UnmodifiableMap wasn't respecting the change of the DefaultReturnValue. (it has its own version of it so it doesn't break the rule of it, it wasn't returning the expected value.
-Added: A bunch of Methods for Unmodifiable/Empty maps that should fail right out but would still make it past a certain point. (Compute/Merge/Supply/etc)
2022-06-03 14:38:56 +02:00
Speiger c2c2780967 MapFixes found with unit tests.
-Fixed: CollectionWrapper.equals wasn't accounting for self.
-Fixed: MapWrapper.get didn't account for that it was a wrapper.
-Fixed: UnmodifiableMapWrapper was linking to synchronized maps due to a unknown reason.
-Added: UnmodifiableMapWrapper now has a lot more functions it right out says unsupported instead of indirect ways.
2022-06-02 16:21:48 +02:00
Speiger 086d933a0d Small fixes
-Fixed: NavigableMap.keySet is now a NavigableSet instead of a sorted one.
-Started: Trying to fix wrappers.
2022-06-02 14:59:39 +02:00
Speiger 1e7da394a1 Fixed Bugs found with wrapper collections
-Fixed: AbstractCollection.Iterator was changing the pointer before validating if the element was added. (ImmutableLists)
-Fixed: EmptyCollections containsAll should return true if it is compared against a emptyCollection.
-Fixed: HashCode/Equals for the Lists/Sets implementations.
-Changed: Iterators.wrap(Array) allows now dynamic arrays.
2022-06-02 11:02:19 +02:00
Speiger 9eb220194f Small fixes.
-Fixed: SynchronizedList.addElements was calling itself.
-Fixed: UnmodifiableSet was missing implementations that were causing fails.
2022-06-02 00:47:05 +02:00
Speiger 0baf141e4b New Snapshot builds xD 2022-05-31 19:27:20 +02:00
Speiger 569d4f5c86 Small Fix
-Fixed: HashSet/Map.reduce was using size to iterate instead of array.length
2022-05-31 19:05:54 +02:00
Speiger 36f24731b0 Script Cleanup, Changelog Update and Version Bump.
Added a lot of Unit Tests (Roughly 7 Million) to Primitive Collections
(look Debug Branch) and found some really big bugs.
The Coverage was moved from 1.9% to 34.7% so far.
So there were a lot bugs found and at this point I need a break so this
is the first fixpatch until new tests are added.
2022-05-28 23:34:37 +02:00
Speiger ea5ace0166 Another Coverage Try 2022-05-28 20:32:15 +02:00
Speiger 663809ff27 another test 2022-05-28 20:11:00 +02:00
Speiger 5d6adb5446 Added Jacoco reports 2022-05-28 19:58:54 +02:00
Speiger 212ad1ace2 Add coverage test 2022-05-28 19:56:28 +02:00
Speiger 707827929a Updated version number 2022-05-27 21:21:11 +02:00
Speiger 27ad01657d More fixes from Unit tests.
-Fixed: ArrayList/LinkedList extractElements crashing when 0 or less elements are desired.
-Fixed: TreeMap pollFirst/LastKey should return the defaultMin/max value instead of a Empty value.
-Fixed: TreeMap keySet implementation was missing the class type implementations to pass keySet tests.
-Fixed: TreeMap.SubMap Iterator (primitive Keys) was crashing because a Null was set on to a primitive.
2022-05-27 16:35:41 +02:00
Speiger e7da7acc08 Started massive unit testing library these are the first fixes.
-Fixed: AbstractCollection.retainAll didn't push removed values through the consumer.
-Fixed: AbstractCollection.toArray wouldn't reset the last entry if the input array was larger then the elements in the collection.
-Fixed: SubList didn't check for ranges properly or didn't use parent list to validate changes.
-Fixed: ArrayList.addElements didn't check input array fully and used the wrong variable to move the elements around.
-Fixed: LinkedList.addElements(EmptyInput) would crash.
-Fixed: LinkedList.swapRemove didn't account for if the removed element was the prelast one.
-Fixed: LinkedList.removeElements would break the implementation if the list was almost empty and the middle element was removed.
-Fixed: LinkedHashSet.addAndMoveToFirst wouldn't move elements to the first place.
2022-05-22 15:13:29 +02:00
Speiger 72943cb22c Added AsyncBuilder for arrays 2022-05-17 18:10:07 +02:00
Speiger 068cc4a4f7 Fixed Bugs with Java Iterators not throwing the correct exception. 2022-05-17 10:45:05 +02:00
Speiger 31b34f5de1 Fixed a couple bugs.
-Fixed: TreeMap.subMap().entrySet().remove() wouldn't check primitives properly.
-Fixed: SortedMap.sub/tail/headMap were looping into themselves.
-Changed: LinkedList.addBulk variable definition was triggering a false positive.
2022-05-17 07:59:57 +02:00
Speiger 4bded1af80 Small Change to sorting
-Added: Array only sorting function return the inputed array. This was done to allow for static final references to use the method in one go without having to make lambda wrappers. Cleaner code.
2022-04-30 22:41:11 +02:00
Speiger 100c7fe260 Updated yml Scripts
-Updated: yml Scripts and ReadMe since the gradle setup no longer requires 2 commands to work properly.
2022-04-28 19:09:42 +02:00
Speiger 04f628fcc1 Pushing release 2022-04-21 17:41:50 +02:00
Speiger 5fa26bfbf3 New Stuff
-Fixed: Crash with FIFOQueues peek function when loops were applied.
-Fixed: FIFOQueues clean function was doing unessesary extra work.
-Added: Stream Overrides functions now support sorted.
-Updated: Changelog.
-Added: A couple more badges because why not.
2022-04-21 17:25:23 +02:00
Speiger 4d3eaaf604 removing SolarCloud code 2022-04-19 17:16:53 +02:00
Speiger 33ab7c48bf hopefully doesn't filter anything. Last attempt 2022-04-19 17:10:57 +02:00
Speiger 1f4784c75e Testing single task requirement 2022-04-19 16:58:22 +02:00
Speiger ae5a4ea818 Readded caching 2022-04-19 16:33:16 +02:00
Speiger 5d66f7b453 Update Code compare 2022-04-19 16:11:20 +02:00
Speiger 12af656150 Updated Task Name 2022-04-19 16:04:20 +02:00
Speiger 603ff3df0f Fixed code compare 2022-04-19 15:52:41 +02:00
Speiger b712981718 Code quality test 2022-04-19 15:51:01 +02:00
Speiger 863d1a1027 Updated Readme. 2022-04-18 21:41:55 +02:00
Speiger 6287da8efe ReadMe restructuring. 2022-04-18 09:06:32 +02:00
Speiger c27e852ccb typo missed by the spellchecker... 2022-04-17 20:39:06 +02:00
Speiger 0157765628 Hotfix. 2022-04-17 20:24:31 +02:00
Speiger 8689037ceb Documentation update 2022-04-17 20:21:48 +02:00
Speiger 03a8914986 Completion Jitpack Integration 2022-04-14 09:51:36 +02:00
50 changed files with 2187 additions and 950 deletions
-2
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@@ -32,7 +32,5 @@ jobs:
uses: gradle/wrapper-validation-action@e6e38bacfdf1a337459f332974bb2327a31aaf4b
- name: Make gradlew executable
run: chmod +x ./gradlew
- name: Generate SourceCode with Gradle
run: ./gradlew generateGithubSource
- name: Build with Gradle
run: ./gradlew build
+65
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@@ -1,5 +1,70 @@
# Changelog of versions
### Version 0.7.0
- Added: Over 11 Million Unit Tests to this library to ensure quality.
- Added: ArrayList size constructor now throws IllegalStateException if the size parameter is negative
- Added: EnumMap specialized forEach implementation.
- Added: AbstractMap.remove now delegates to its primitive counterpart.
- Added: ConcurrentHashMap now implements ITrimmable
- Refactor: Removed a lot of disabled code from ArraySet.
- Removed: LinkedList.addAll(index, List) now delegates to LinkedList.addAll(index, Collection) due to no special optimization required.
- Fixed: AbstractList.SubList.get/set/swapRemove didn't calculate their List index Properly
- Fixed: AbstractList.SubList chains now properly if you create SubLists within SubLists.
- Fixed: AbstractList.Iterator.add now respects Immutable/UnmodifiableLists.
- Fixed: AbstractList.Iterator.skip/back now keep track of the last returned value for remove function to work properly.
- Fixed: CopyOnWriteArrayList.extract/removeElements(int, int) does now proper range checks and remove elements properly.
- Fixed: CopyOnWriteArrayList.SubList now works properly. (Reimplemented entirely)
- Fixed: CopyOnWriteArrayList.Iterator.previous() was returning the wrong values.
- Fixed: CopyOnWriteArrayList.Iterator.skip now skips the right amount of elements and stops where it should.
- Fixed: LinkedList.first/last/dequeue/dequeueLast now throws NoSuchElementException when empty instead of IllegalStateException.
- Fixed: LinkedList had an edge case where the entire reverse iterator would break if the wrong element was removed.
- Fixed: LinkedList.extractElement now returns the correct values.
- Fixed: AbstractMap.entrySet().remove(Object) now returns true if defaultReturnValue elements were removed.
- Fixed: ConcurrentHashMap.remove(Object, Object) checks if the type matches before comparing against null Values.
- Fixed: LinkedHashMap.clearAndTrim() was checking the wrong value for determining the full reset or clearing of a Map.
- Fixed: HashMap.trim/clearToTrim() was using the wrong value to determin if something should be done.
- Fixed: HashMap now compares empty values (0) against nullKeys when Object Variants of the type are used.
- Fixed: ImmutableMap now compares empty values (0) against nullKeys when Object Variants of the type are used.
- Fixed: ArrayMap.iterator(key) now throws NoSuchElementException when the element wasn't found.
- Fixed: Linked/EnumMap array constructor was creating the wrong size values array.
- Fixed: LinkedEnumMap.getAndMoveToFirst/Last was moving elements even if the element wasn't present.
- Fixed: AVL/RBTreeMap.getFirst/LastKey was not throwing a NoSuchElementException if the map was empty.
- Fixed: Map.Builder wasn't throwing a IllegalStateException when creating a negative size builder.
- Fixed: AVL/RBTreeSet.DecendingSet.subSet(from, fromInclusive, to, toInclusive) was creating a corrupt asending subset.
- Fixed: ArraySet throws now a IllegalStateException when trying to create it with a negative size.
- Fixed: ArraySet.addMoveToLast(key) was crashing when a key was already present.
- Fixed: Immutable/LinkedHashSet now keep track of their iteration index properly.
- Fixed: LinkedHashSet.moveToFirst/Last(key) would crash if the Set was empty.
- Fixed: LinkedHashSet.clearAndTrim() was checking the wrong value for determining the full reset or clearing of a Map.
- Fixed: HashSet.trim/clearToTrim() was using the wrong value to determin if something should be done.
### Version 0.6.2
- Added: Array only sorting function return the inputed array. This was done to allow for static final references to use the method in one go without having to make lambda wrappers. Cleaner code.
- Added: Iterator Wrappers are now a bit more in Compliance with Java Standards.
- Added: AsyncBuilders now Support Array Inputs to create cleaner code.
- Changed: LinkedList.addBulk variable definition was triggering a false positive.
- Fixed: TreeMap.subMap().entrySet().remove() wouldn't check primitives properly.
- Fixed: SortedMap.sub/tail/headMap were looping into themselves.
- Fixed: AbstractCollection.retainAll didn't push removed values through the consumer.
- Fixed: AbstractCollection.toArray wouldn't reset the last entry if the input array was larger then the elements in the collection.
- Fixed: SubList didn't check for ranges properly or didn't use parent list to validate changes.
- Fixed: ArrayList.addElements didn't check input array fully and used the wrong variable to move the elements around.
- Fixed: LinkedList.addElements(EmptyInput) would crash.
- Fixed: LinkedList.swapRemove didn't account for if the removed element was the prelast one.
- Fixed: LinkedList.removeElements would break the implementation if the list was almost empty and the middle element was removed.
- Fixed: LinkedHashSet.addAndMoveToFirst wouldn't move elements to the first place.
- Fixed: ArrayList/LinkedList extractElements crashing when 0 or less elements are desired.
- Fixed: TreeMap pollFirst/LastKey should return the defaultMin/max value instead of a Empty value.
- Fixed: TreeMap keySet implementation was missing the class type implementations to pass keySet tests.
- Fixed: TreeMap.SubMap Iterator (primitive Keys) was crashing because a Null was set on to a primitive.
### Version 0.6.1
- Fixed: FIFO queue crashing when the last index is before the first index when peek is called.
- Fixed: FIFO queue only clears the array if it was in use.
- Added: Sorted Method for the stream replacing functions.
### Version 0.6.0
- Added: addOrGet for sets.
- Added: Async API which allows to easily execute Iterables/Collections offthread without the complexity.
+21 -89
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@@ -1,10 +1,18 @@
![build](https://github.com/Speiger/Primitive-Collections/actions/workflows/build_validator.yml/badge.svg)
[![Latest Release](https://jitpack.io/v/Speiger/Primitive-Collections.svg)](https://jitpack.io/#Speiger/Primitive-Collections)
[![License](https://img.shields.io/badge/License-Apache_2.0-blue.svg)](https://opensource.org/licenses/Apache-2.0)
![GitHub commit activity](https://img.shields.io/github/commit-activity/m/Speiger/Primitive-Collections)
[![codecov](https://codecov.io/gh/Speiger/Primitive-Collections/branch/debug/graph/badge.svg?token=WSTSNJM0EN)](https://codecov.io/gh/Speiger/Primitive-Collections)
# Primitive-Collections
This is a Simple Primitive Collections Library aimed to outperform Java's Collection Library and FastUtil.
Both in Performance and Quality of Life Features.
This is a Simple Primitive Collections Library i started as a hobby Project.
It is based on Java's Collection Library and FastUtil.
But its focus is a different one.
## Benchmarks
Benchmarks can be found here: [[Charts]](https://github.com/Speiger/Primitive-Collections-Benchmarks/blob/master/BENCHMARKS-CHARTS.md), [[Tables]](https://github.com/Speiger/Primitive-Collections-Benchmarks/blob/master/BENCHMARKS.md)
## Special Features
[Here](features.md) you find a set of features added to Primitive Collections.
These are designed to improve performance or to provide Quality of Life.
## Main Features:
- ArrayLists / LinkedLists / CopyOnWriteLists
@@ -15,106 +23,34 @@ But its focus is a different one.
- ConcurrentHashMaps
- Priority Queues
- Streams & Functional Queries
- SplitIterators
- Iterators
- Split/Iterators
- Pairs
- Unary/Functions
- Suppliers
- Bi/Consumers
- AsyncBuilders
## Current Level of Stability
Since this is a relatively new Library, stability was not perfect and some areas are not perfect yet.
Thanks to [ben-manes](https://github.com/ben-manes) we now have Roughly 160k unit test covering Maps/Sets/Lists.
These tests cover Javas Collection API completely and ensuring a Stable implementation.
These freshly added tests allowed me to squash thousands of issues according to Googles Test Library (Guava-Tests).
These will be expanded on as time goes on.
### Benchmarks
Benchmarks can be found here: [Click Me](https://github.com/Speiger/Primitive-Collections-Benchmarks/tree/master)
## Specialized Functions
New Specialized functions that were added to increase performance or reduce allocations or Quality Of life.
To highlight things that may be wanted.
- Iterable:
- map/flatMap/arrayFlatMap: A Light weight version of Stream.map().
- findFirst: Allows to find the first element of a Predicated Iterable.
- filter: Allows to filter unwanted elements for wrapped Iterable
- matchAny/matchNone/matchAll: Allows to find elements in a collection.
- count: counts all valid elements in a collection.
- forEach: Allows to input a second element into a forEach move allowing for more flexibility for Method References
- reduce/limit/peek/distinct: Light Versions of the Stream variant, to reduce Stream usage.
- pour: a function that allows to collect all elements within the Collection
- Collection:
- addAll: addAll array version
- containsAny: Allows to test if another collection contains an of the elements of the tested collection.
- primitiveStream: Provides access to the closest Java Stream Type.
- copy: shallowCopies the collection, used instead of clone because this is better to use.
(subCollections not supported for obvious reasons)
- toArray: the ToArray function from Java9 and newer that uses a Functional interface and can use a method reference
- List:
- add/get/removeElements (From FastUtil): Allows to add/get/remove an Array into/from a list. Just with less overhead
- extractElements: Allows to remove a Range of elements from the List and get what was removed.
- Unstable Sort(From FastUtil): Uses a faster but not stable sort (Quick-Sort as example) to sort the list.
- addIfAbsent/Present: adds a element only if absent/present in the list
- swapRemove: deletes a desired element and inserts the last element in its place instead of leftshifting elements.
- SortedSet:
- addAndMoveToFirst/Last (From FastUtil but moved to Interface): Allows to add a element to the first/last position of a sorted set.
- moveToFirst/Last: Moves the desired element at the first/last position of the SortedSet.
- pollFirst/Last: Allows to poll the first/last element of the set.
- Map:
- putAll: putAll but in Array form.
- putAllIfAbsent: Puts only the elements that are absent.
- addTo (Only Primitives Values) (From FastUtil but moved to Interface): allows to add to the value of a given key. If not present it will be added. (Accumulator)
- subFrom (Only Primitive Values): allows to subtract from the value of a given key. If value reached getDefaultReturnValue() element will be removed.
- addToAll: Same as addTo but bulkVersion.
- removeOrDefault: removes a Element and if not present returns the default value instead of the present value.
- mergeAll: BulkVersion of Merge function.
- supplyIfAbsent: A Supplier based computeIfAbsent
- Sorted Map:
- addAndMoveToFirst/Last (From FastUtil but moved to Interface): Allows to add a element to the first/last position of a sorted Map.
- moveToFirst/Last: Moves the desired element at the first/last position of the Map.
- getAndMoveToFirst/Last: gets the element and moves it to the first/last position. Replicating a Optional LinkedHashMap feature.
- pollFirst/LastKey: Allows to poll the first/last element.
- first/LastValue: Allows to get the first/last value from the Map.
# Notes about Versions
Any 0.x.0 version (Minor) can be reason for massive changes including API.
To ensure that problems can be dealt with even if it is breaking the current API.
Any breaking changes will be Documented (once 1.0 is released)
Also to save space every 0.0.x (Patch) that is 2 Minor Versions behind will be removed.
So if 0.5.0 is released every 0.3.x patch will be deleted, except for the last patch for that minor version.
# How to install
Using Gradle:
Using Jitpack Gradle
```gradle
repositories {
maven {
url = "https://maven.speiger.com/repository/main"
url = "https://jitpack.io"
}
}
dependencies {
compile 'de.speiger:Primitive-Collections:0.6.0'
implementation 'com.github.Speiger:Primitive-Collections:0.7.0'
}
```
Direct:
| Version | Jar | Sources | Java Doc |
|--------- |------------------------------------------------------------------------------------------------------------------------------ |-------------------------------------------------------------------------------------------------------------------------------------- |-------------------------------------------------------------------------------------------------------------------------------------- |
| 0.6.0 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.6.0/Primitive-Collections-0.6.0.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.6.0/Primitive-Collections-0.6.0-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.6.0/Primitive-Collections-0.6.0-javadoc.jar) |
| 0.5.3 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.3/Primitive-Collections-0.5.3.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.3/Primitive-Collections-0.5.3-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.3/Primitive-Collections-0.5.3-javadoc.jar) |
| 0.5.2 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.2/Primitive-Collections-0.5.2.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.2/Primitive-Collections-0.5.2-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.2/Primitive-Collections-0.5.2-javadoc.jar) |
| 0.5.1 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.1/Primitive-Collections-0.5.1.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.1/Primitive-Collections-0.5.1-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.1/Primitive-Collections-0.5.1-javadoc.jar) |
| 0.5.0 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.0/Primitive-Collections-0.5.0.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.0/Primitive-Collections-0.5.0-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.5.0/Primitive-Collections-0.5.0-javadoc.jar) |
| 0.4.5 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.5/Primitive-Collections-0.4.5.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.5/Primitive-Collections-0.4.5-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.5/Primitive-Collections-0.4.5-javadoc.jar) |
| 0.4.4 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.4/Primitive-Collections-0.4.4.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.4/Primitive-Collections-0.4.4-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.4/Primitive-Collections-0.4.4-javadoc.jar) |
| 0.4.3 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.3/Primitive-Collections-0.4.3.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.3/Primitive-Collections-0.4.3-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.3/Primitive-Collections-0.4.3-javadoc.jar) |
| 0.4.2 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.2/Primitive-Collections-0.4.2.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.2/Primitive-Collections-0.4.2-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.2/Primitive-Collections-0.4.2-javadoc.jar) |
| 0.4.1 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.1/Primitive-Collections-0.4.1.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.1/Primitive-Collections-0.4.1-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.1/Primitive-Collections-0.4.1-javadoc.jar) |
| 0.4.0 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.0/Primitive-Collections-0.4.0.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.0/Primitive-Collections-0.4.0-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.4.0/Primitive-Collections-0.4.0-javadoc.jar) |
| 0.3.6 | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.3.6/Primitive-Collections-0.3.6.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.3.6/Primitive-Collections-0.3.6-sources.jar) | [Download](https://maven.speiger.com/repository/main/de/speiger/Primitive-Collections/0.3.6/Primitive-Collections-0.3.6-javadoc.jar) |
# SourceCode
The generated Sourcecode can be automatically build,
but if you want to just browse around in it.
Check out the [Debug Branch](https://github.com/Speiger/Primitive-Collections/tree/debug/src/main/java/speiger/src/collections), which has the entire up to date code.
# Contributing
If you want to contribute.
@@ -134,9 +70,5 @@ Please if you want to contribute follow the [Rule-Sheet](RuleSheet.md). It keeps
The SourceCode can be generated via:
/gradlew.bat generateSource
to build the jar:
to generate SourceCode and build the jar:
/gradlew.bat build
do not combine the commands because they can not be executed at the same time.
## Current Down Sides (Random order)
- Documentation is only present at the lowest level for most cases and needs a typo fixing.
+5 -2
View File
@@ -18,7 +18,7 @@ repositories {
}
archivesBaseName = 'Primitive Collections'
version = '0.6.0';
version = '0.7.0';
sourceCompatibility = targetCompatibility = compileJava.sourceCompatibility = compileJava.targetCompatibility = JavaVersion.current();
@@ -44,9 +44,10 @@ configurations {
}
dependencies {
builderImplementation 'de.speiger:Simple-Code-Generator:1.0.7'
builderImplementation 'de.speiger:Simple-Code-Generator:1.1.4'
testImplementation 'junit:junit:4.12'
testImplementation 'com.google.guava:guava-testlib:31.0.1-jre'
}
task generateSource(type: JavaExec) {
@@ -82,6 +83,8 @@ task srcJar(type: Jar) {
classifier = 'sources'
}
compileJava.dependsOn generateGithubSource
javadoc.failOnError = false
javadoc.options.memberLevel = JavadocMemberLevel.PUBLIC
javadoc.options.quiet()
+402
View File
@@ -0,0 +1,402 @@
## Quality Of Life Features
New Specialized functions/classes that were added to increase performance and/or reduce allocations and/or for Quality of life.
# Functions
Functions that increase performance or are quality of life in their nature.
<details>
<summary>Iterable</summary>
<p>
## Functional Functions
Java adds themselves a lot of functional functions like,
- Stream:
- Map/FlatMap
- Filter/Distinct/Limit/Sorted
- Count/FindFirst/Collect
- Peek/ForEach/Reduce
- anyMatch/allMatch/NoneMatch
that allows to process a collection in a functional way.
But these require streams which have a lot of Overhead in their nature.
Luckly Primitive Collections adds replacement functions that provide the same functionality but with minimal overhead.
Here are some examples:
```java
public ObjectIterable<Path> toPath(ObjectIterable<String> iterable) {
return iterable.map(Paths::get).filter(Files::exist);
}
public Iterable<Path> toPath(Iterable<String> iterable) {
return ObjectIterables.map(iterable, Paths::get).filter(Files::exist);
}
public int sum(IntIterable iterable) {
return iterable.reduce(Integer::sum);
}
```
## AsyncAPI</summary>
The AsyncAPI is a Feature that simplifies the processing of Collections on a separate thread.
It uses the same concept as Javas Stream API but uses the light weight Functions from Primitive Collections to achieve the same thing.
Unlike Javas StreamAPI the AsyncAPI is always singleThreaded and more like Javas CompletableFuture, which you can await or let run Asynchronous.
The Goal is it to simplify the processing of Collections asynchronous.
Especially on tasks which don't have to be finished instantly but can be processed on the side.
Here is a example of how the API works.
```java
public void processFiles(ObjectCollection<String> potentialFiles) {
potentialFiles.asAsync()
.map(Paths::get).filter(Files::exists) //Modifies the collection (Optional)
.forEach(Files::delete) //Creates the action (Required)
.callback(T -> {}} //Callback on completion, still offthread (Optional)
.execute() //Starts the task. (Required)
}
```
</p>
</details>
<details>
<summary>Collection</summary>
<p>
These are functions specific to the Collections interface, stuff that everyone wished it was present to be in the first place.
## AddAll (Array)
Adding Elements to a Collection usually requires either a for loop or a Arrays.wrap().
This isn't an issue with Primitive Collections.
```java
public void addMonths(ObjectCollection<String> months) {
months.addAll("January", "February", "March", "April", "May", "June", "July", "August", "September, "October", November", "December");
}
public void addElements(ObjectCollection<String> result, String[] elements) {
result.addAll(elements, 0, 5); //elements, offset, length
}
```
## containsAny
Everyone hates comparing if 2 collections have part of each other included.
The solution usually requires for loops and keeping track if things were found or not.
And every Java Developer had this issue at least once and wished for a clean solution.
```java
public boolean hasMonths(ObjectCollection<Month> target, Collection<Month> toFind) {
return target.containsAny(toFind);
}
```
## Copy
Collections get copied every now and then. There is only 2 ways that this happens.
Javas Clone API or using Constructor that supports collections.
Javas Clone API is kinda in a Zombie state, where it is supported or not. Its not really clear if you should use it or not.
The Clone CloneNotSupportedException isn't helping either, causing more janky code.
While a Constructor can only support so much and testing for every case isn't really viable.
So the decision was made to straight out not support clone and instead add a copy function which doesn't use a checked exception.
It works exactly like the clone function. In a sense where it creates a shallow copy. (SubCollections do not work for obvious reasons)
```java
public IntCollection copy(IntCollection original) {
return original.copy();
}
```
## Primitive Streams
Since Javas Stream API is still really useful, even at its shortcomings, Primitive Collections provides easy access to it.
Generic Streams and the closest Primitive Stream will be provided. So a FloatCollection goes to a DoubleStream.
```java
public IntStream createStream(IntCollection source) {
return source.primitiveStream();
}
```
## RemoveAll/RetainAll with listener
Ever wanted use removeAll or retainAll and wanted to know what elements actually got deleted?
The usual solution is to create a copy and then apply it to the original and cross reference them.
Which leads to really messy code and just hasn't a clean solution.
Luckly Primitive Collections got you covered.
```java
public void removeInvalidFiles(ObjectCollections<Path> files, ObjectCollection<Path> toRemove) {
files.removeAll(toRemove, T -> System.out.println(T));
}
public void removeInvalidFiles(ObjectCollections<Path> files, ObjectCollection<Path> toKeep) {
files.retainFiles(toKeep, T -> System.out.println(T));
}
```
## ToArray
Primitive Collections supports primitive/generic toArray functions for its Primitive Collections.
On top of that the Object side gets a Java9 function ported back to java8, which uses a functional Interface to create the backing array.
```java
public Integer[] toArray(IntCollection c) {
return c.toArray(new Integer[c.size]);
}
public int[] toArray(IntCollection c) {
return c.toIntArray();
}
public String[] toArray(ObjectCollection<String> c) {
return c.toArray(String::new);
}
```
</p>
</details>
<details>
<summary>List</summary>
<p>
These functions are List specific functions, a couple of these are from FastUtil.
## add/get/remove/extractElements
These functions really useful helper functions. 3 of which are copied from FastUtil. (extract is from Primitive Collections)
They are basically array forms of addAll, getAll, removeRange and removeAndGetRange. This is the simplest way to describe it.
Here some example:
```java
public void addAll(DoubleList list) {
list.addElements(0D, 12.2D, 3.5D, 4.2D);
}
public double[] getAll(DoubleList list, int amount) {
double[] result = new double[amount];
list.getElements(0, result);
return result;
}
public void removeRange(FloatList list) {
list.removeElements(5, 14);
}
public float[] extractRange(FloatList list) {
return list.extractElements(5, 14); //Returns the removed elements
}
```
## addIfPresent/addIfAbsent
These two functions are simple helper functions that check internally if a element is present or absent before adding them to the List.
Removing the need for a contains or indexOf check every time you want to add a element.
While it is of course better to use a set, there is cases where this is still useful.
```java
public void addElements(IntList list, int... numbersToAdd) {
for(int e : numbersToAdd) {
list.addIfAbsent(e);
}
}
public void addExisting(ObjectList<String> list, String... textToAdd) {
for(String s : textToAdd) {
list.addIfPresent(s);
}
}
```
## SwapRemove
Lists when removing a Element shift usually the backing array to the left based to shrink the elements.
While that isn't computational expensive with LinkedLists, it is with ArrayLists.
Here comes swapRemove into play, which just removes the desired elements and instead of shifting left puts the last element in its place.
This reduces the data copying required down to 1 element instead of an array.
```java
public int remove(IntList elements, int indexToRemove) {
return elements.swapRemove(indexToRemove);
}
```
## Unstable Sort (From FastUtil)
Unstable Sort uses a Faster but not as stable sorting algorithm to sort the Collection.
Stable doesn't mean crashing, but more like that the result isn't exactly perfectly sorted.
```java
public void sort(List<Month> list, Comparator<Month> sorter) {
list.unstableSort(sorter);
}
```
</p>
</details>
<details>
<summary>Map</summary>
<p>
These functions are based on the Map interface. Useful functions you really would want.
## addTo/subFrom
addTo (from FastUtil) and subFrom are mathematically functions that either add or subtract from the value of a given key.
And if the key isn't present or would result in the default value it will either add or remove the entry from the Map. Given the circumstance.
This is a really useful function and I wish FastUtil made it accessible by default but sadly it isn't.
To simplify the explanation:
- addTo if no element is present puts in the desired number, otherwise it sums up the two values.
- subFrom if a element is present subtracts from it, if the element reaches the default value it removes the element from the map. If not present it will be ignored.
```java
public void addTo(Object2DoubleMap<Month> map, Month key, double averageTrainsRepaired) {
map.addTo(key, averageTrainsRepaired);
}
public void subFrom(Long2IntMap map, long key, double amount) {
map.subFrom(key, amount);
}
```
## addToAll
Simple bulk version of the addTo function since sometimes you want to merge 2 maps for summing.
Especially if your work is multi-threaded this can become useful.
```java
public void addTo(Object2DoubleMap<Month> map, Object2DoubleMap<Month> trainsRepaired) {
map.addToAll(trainsRepaired);
}
```
## mergeAll
This is a simple bulk version of merge since merging 2 maps is more frequent then people might think and leads to cleaner code too.
```java
public void merge(Long2ByteMap result, Long2ByteMap toMerge) {
result.mergeAll(toMerge);
}
```
## putAll (Array)
This allows to put keys and values as arrays instead of requiring a WrapperMap to insert the elements.
Not as useful as the Collections.addAll variant but still really useful.
```java
public void putAll(Int2DoubleMap map, int[] keys, double[] values) {
map.put(keys, values, 2, 15);
}
```
## putAllIfAbsent
putAll has this usual quirk where if a element is present it will replace the value, and sometimes this is not wanted.
While putIfAbsent exists it has no real mass form and makes iterative solutions really uneasy to use.
Here comes the helper function that gets rid of that problem.
```java
public void merge(Long2ObjectMap<String> regionFiles, Long2ObjectMap<String> toAdd) {
regionFiles.putAllIfAbsent(toAdd);
}
```
## removeOrDefault
getOrDefault is a really useful function that find use cases all the time.
Sadly by default there is no variant of removeOrDefault, while it has less cases still could be used every now and then.
This function basically tries to remove a element, if it is not present it will just return your desired default.
```java
public Path removeCache(Long2ObjectMap<Path> caches, long key) {
return caches.removeOrDefault(key, Paths.get("nuclearFun"));
}
```
## supplyIfAbsent
This one is one of my favorites. computeIfAbsent is a really useful function.
But in 90% of the cases I use it the value is a collection.
This becomes really annoying since methodReferences are faster/cleaner then Lambdas in my opinion.
supplyIfAbsent is basically computeIfAbsent but without a key, perfect for the default constructor of a collection.
This is the whole reason it exists.
```java
public void example(Int2ObjectMap<List<String>> map, Int2ObjectMap<String> toAdd) {
for(Entry<String> entry : toAdd.entrySet()) {
map.supplyIfAbsent(entry.getKey(), ObjectArrayList::new).add(entry.getValue());
}
}
```
</p>
</details>
# Interfaces
Interfaces that provide essential or quality of life features.
<details>
<summary>ITrimmable</summary>
<p>
The ITrimmable is Accessor interface that allows you to access a couple helper functions to control the size of your collections.
This was created for the constant casting requirement to implementations just to shrink collections which get annoying over time.
## trim
This function basically trims down the backing implementation to use as little memory as required to store the elements in the collection.
Optionally a desired minimum size can be provided as of how low it should go at worst.
## clearAndTrim
when you want to reset a Collection completely you have 2 options. Clear it and then call trim, or recreate the collection.
clearAndTrim solves this problem by clearing the collection and trimming it in one go, reducing overhead to achieve such a thing.
</p>
</details>
<details>
<summary>IArray</summary>
<p>
IArray is a Accessor interface that provides more access to collections by providing tools to grow your collection as needed.
While putAll/addAll try to ensure that you have enough room for your elements, this is not really a solution for all cases.
Sometimes you need to ensure the Collection is pre-initialized.
IArray grants you that control.
There is also a type specific that provides you access to the backing array implementation of Lists for faster Iteration but that is a really specific case.
## ensureCapacity
Ensures that your collection has enough storage for the elements you want to insert.
## elements (ITypeSpecificArray)
Allows you access to the backing array of a List which is for people who know what they are doing.
There is a lambda version of this function too which makes sure for synchronizedLists that you are the only one accessing the array.
</p>
</details>
<details>
<summary>OrderedMap</summary>
<p>
The OrderedMap is a real edge case interface that was born for a need.
FastUtil added functions that were like moveToFirst which were hardcoded to the implementation.
They didn't fit into something like a SortedMap because the Set wasn't sorted.
So OrderedMap was born, which isn't random but ordered in a specific way that can be changed.
## getAndMoveToFirst/getAndMoveToLast
Returns a desired element and removing it to the first/last spot in the Map. Moving the element that was at its spot after/before it.
## moveToFirst/moveToLast
Moves the element if present to the first/last spot in the Map. Moving the element that was at its spot after/before it.
Returns true if the element was actually moved.
## putAndMoveToFirst/putAndMoveToLast
Adds the desired element and moves it to first/last spot in the Map. Moving the element that was at its spot after/before it.
## firstKey/lastKey (Optional poll)
Provides access to the current first/last key of the Map.
Optionally can be polled if desired.
## firstValue/lastValue
Provides access to the current first/last value of the Map.
</p>
</details>
<details>
<summary>OrderedSet</summary>
<p>
The OrderedSet is a real edge case interface that was born for a need.
FastUtil added functions that were like moveToFirst which were hardcoded to the implementation.
They didn't fit into something like a SortedSet because the Set wasn't sorted.
So OrderedSet was born, which isn't random but ordered in a specific way that can be changed.
## addAndMoveToFirst/addAndMoveToLast
Adds the desired element and moves it to first/last spot in the Collection. Moving the element that was at its spot after/before it.
## moveToFirst/moveToLast
Moves the element if present to the first/last spot in the Collection. Moving the element that was at its spot after/before it.
Returns true if the element was actually moved.
## first/last (Optional poll)
Provides access to the current first/last element of the set.
Optionally can be polled if desired.
</p>
</details>
-1
View File
@@ -2,6 +2,5 @@ jdk:
- openjdk9
install:
- chmod +x ./gradlew
- ./gradlew generateGithubSource
- ./gradlew build publishToMavenLocal
@@ -230,6 +230,7 @@ public abstract class ABSTRACT_COLLECTION KEY_GENERIC_TYPE extends AbstractColle
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
KEY_TYPE e = iter.NEXT();
if(!c.contains(e)) {
r.accept(e);
iter.remove();
modified = true;
}
@@ -256,6 +257,7 @@ public abstract class ABSTRACT_COLLECTION KEY_GENERIC_TYPE extends AbstractColle
public KEY_TYPE[] TO_ARRAY(KEY_TYPE[] a) {
if(a == null || a.length < size()) a = new KEY_TYPE[size()];
ITERATORS.unwrap(a, iterator());
if (a.length > size()) a[size()] = EMPTY_KEY_VALUE;
return a;
}
#endif
@@ -57,7 +57,7 @@ public interface BI_ITERATOR KEY_GENERIC_TYPE extends ITERATOR KEY_GENERIC_TYPE
public default int back(int amount) {
if(amount < 0) throw new IllegalStateException("Can't go forward");
int i = 0;
for(;i<amount && hasPrevious();previous(),i++);
for(;i<amount && hasPrevious();PREVIOUS(),i++);
return i;
}
}
@@ -5,9 +5,11 @@ import java.util.function.Consumer;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.CONSUMER;
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
import speiger.src.collections.objects.collections.ObjectIterable;
#else
import java.util.function.BiFunction;
import java.util.Comparator;
#endif
import speiger.src.collections.PACKAGE.functions.function.TO_OBJECT_FUNCTION;
@@ -156,6 +158,15 @@ public interface ITERABLE KEY_GENERIC_TYPE extends Iterable<CLASS_TYPE>
return ITERABLES.limit(this, limit);
}
/**
* A Helper function to reduce the usage of Streams and allows to sort the elements
* @param sorter that sorts the elements.
* @return a Iterable that is sorted
*/
default ITERABLE KEY_GENERIC_TYPE sorted(COMPARATOR KEY_GENERIC_TYPE sorter) {
return ITERABLES.sorted(this, sorter);
}
/**
* A Helper function to reduce the usage of Streams and allows to preview elements before they are iterated through
* @param action the action that should be applied
@@ -308,14 +308,14 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
public KEY_TYPE[] getElements(int from, KEY_TYPE[] a, int offset, int length) {
SanityChecks.checkArrayCapacity(size, from, length);
SanityChecks.checkArrayCapacity(a.length, offset, length);
return list.getElements(from+this.offset, a, offset, length);
return list.getElements(from+parentOffset, a, offset, length);
}
@Override
public void removeElements(int from, int to) {
if(to-from <= 0) return;
checkSubRange(from);
checkSubRange(to);
checkAddSubRange(to);
list.removeElements(from+parentOffset, to+parentOffset);
size -= to - from;
}
@@ -324,9 +324,9 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
@Override
public <K> K[] extractElements(int from, int to, Class<K> type) {
checkSubRange(from);
checkSubRange(to);
checkAddSubRange(to);
K[] result = list.extractElements(from+parentOffset, to+parentOffset, type);
size -= to - from;
size -= result.length;
return result;
}
@@ -334,9 +334,9 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
@Override
public KEY_TYPE[] extractElements(int from, int to) {
checkSubRange(from);
checkSubRange(to);
checkAddSubRange(to);
KEY_TYPE[] result = list.extractElements(from+parentOffset, to+parentOffset);
size -= to - from;
size -= result.length;
return result;
}
@@ -344,19 +344,25 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
@Override
public KEY_TYPE GET_KEY(int index) {
checkSubRange(index);
return list.GET_KEY(offset+index);
return list.GET_KEY(parentOffset+index);
}
@Override
public KEY_TYPE set(int index, KEY_TYPE element) {
checkSubRange(index);
return list.set(offset+index, element);
return list.set(parentOffset+index, element);
}
@Override
public KEY_TYPE swapRemove(int index) {
checkSubRange(index);
KEY_TYPE result = list.swapRemove(index+parentOffset);
if(index == size-1) {
KEY_TYPE result = list.REMOVE(parentOffset+size-1);
size--;
return result;
}
KEY_TYPE result = list.set(index+parentOffset, list.GET_KEY(parentOffset+size-1));
list.REMOVE(parentOffset+size-1);
size--;
return result;
}
@@ -386,7 +392,7 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
@Override
public LIST KEY_GENERIC_TYPE subList(int fromIndex, int toIndex) {
SanityChecks.checkArrayCapacity(size, fromIndex, toIndex-fromIndex);
return new SubList(list, offset, fromIndex, toIndex);
return new SubList(this, offset, fromIndex, toIndex);
}
protected void checkSubRange(int index) {
@@ -460,15 +466,17 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
@Override
public void add(KEY_TYPE e) {
list.add(index++, e);
list.add(index, e);
index++;
lastReturned = -1;
}
@Override
public int skip(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, (list.size() - 1) - index);
int steps = Math.min(amount, size() - index);
index += steps;
if(steps > 0) lastReturned = Math.min(index-1, size()-1);
return steps;
}
@@ -477,6 +485,7 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, index);
index -= steps;
if(steps > 0) lastReturned = Math.min(index, size()-1);
return steps;
}
}
@@ -540,15 +549,17 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
@Override
public void add(KEY_TYPE e) {
ABSTRACT_LIST.this.add(index++, e);
ABSTRACT_LIST.this.add(index, e);
index++;
lastReturned = -1;
}
@Override
public int skip(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, (size() - 1) - index);
int steps = Math.min(amount, size() - index);
index += steps;
if(steps > 0) lastReturned = Math.min(index-1, size()-1);
return steps;
}
@@ -557,6 +568,7 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, index);
index -= steps;
if(steps > 0) lastReturned = Math.min(index, size()-1);
return steps;
}
}
@@ -86,6 +86,7 @@ public class ARRAY_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
* @param size the minimum initial size of the Backing array
*/
public ARRAY_LIST(int size) {
if(size < 0) throw new IllegalStateException("Size has to be 0 or greater");
data = NEW_KEY_ARRAY(size);
}
@@ -324,8 +325,9 @@ public class ARRAY_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
public void addElements(int from, KEY_TYPE[] a, int offset, int length) {
if(length <= 0) return;
checkAddRange(from);
SanityChecks.checkArrayCapacity(a.length, offset, length);
grow(size + length);
if(from != size) System.arraycopy(data, from, data, from+length, size - length);
if(from != size) System.arraycopy(data, from, data, from+length, size - from);
size+=length;
System.arraycopy(a, offset, data, from, length);
}
@@ -361,11 +363,11 @@ public class ARRAY_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
int length = to - from;
if(length <= 0) return;
if(to != size) System.arraycopy(data, to, data, from, size - to);
size -= length;
#if TYPE_OBJECT
for(int i = 0;i<length;i++)
data[i+to] = null;
data[i+size] = null;
#endif
size -= length;
}
#if TYPE_OBJECT
@@ -381,13 +383,13 @@ public class ARRAY_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
checkRange(from);
checkAddRange(to);
int length = to - from;
if(length <= 0) return ARRAYS.newArray(type, 0);
K[] a = ARRAYS.newArray(type, length);
if(length <= 0) return a;
System.arraycopy(data, from, a, 0, length);
if(to != size) System.arraycopy(data, to, data, from, size - to);
for(int i = 0;i<length;i++)
data[i+to] = null;
size -= length;
for(int i = 0;i<length;i++)
data[i+size] = null;
return a;
}
@@ -9,8 +9,9 @@ import java.util.Iterator;
import java.util.NoSuchElementException;
import java.util.Objects;
import java.util.concurrent.locks.ReentrantLock;
#if TYPE_OBJECT
import java.util.function.Consumer;
import java.util.function.Supplier;
#if TYPE_OBJECT
import java.util.function.BiFunction;
#endif
import java.util.function.Predicate;
@@ -155,6 +156,14 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
#endif
private void setArray(KEY_TYPE[] data) {
this.data = data;
}
private KEY_TYPE[] getArray() {
return data;
}
/**
* Appends the specified element to the end of this list.
*
@@ -365,6 +374,7 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
KEY_TYPE[] data = this.data;
int size = data.length;
if(from < 0 || from > size) throw new IndexOutOfBoundsException("Index: " + from + ", Size: " + size);
SanityChecks.checkArrayCapacity(a.length, offset, length);
KEY_TYPE[] newElements;
if(from == size) {
newElements = Arrays.copyOf(data, size+length);
@@ -409,6 +419,8 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
*/
@Override
public void removeElements(int from, int to) {
checkRange(from);
checkAddRange(to);
int length = to - from;
if(length <= 0) return;
ReentrantLock lock = this.lock;
@@ -439,9 +451,11 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
*/
@Override
public <K> K[] extractElements(int from, int to, Class<K> type) {
checkRange(from);
checkAddRange(to);
int length = to - from;
if(length <= 0) return ARRAYS.newArray(type, 0);
K[] a = ARRAYS.newArray(type, length);
if(length <= 0) return a;
ReentrantLock lock = this.lock;
lock.lock();
try {
@@ -449,9 +463,9 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
System.arraycopy(data, from, a, 0, length);
if(to == data.length) this.data = Arrays.copyOf(data, data.length - length);
else {
int size = data.length-1;
KEY_TYPE[] newElements = NEW_KEY_ARRAY(size);
System.arraycopy(data, 0, newElements, 0, from);
int size = data.length;
KEY_TYPE[] newElements = NEW_KEY_ARRAY(size-length);
if(from != 0) System.arraycopy(data, 0, newElements, 0, from);
System.arraycopy(data, to, newElements, from, size - to);
this.data = newElements;
}
@@ -471,6 +485,8 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
*/
@Override
public KEY_TYPE[] extractElements(int from, int to) {
checkRange(from);
checkAddRange(to);
int length = to - from;
if(length <= 0) return EMPTY_KEY_ARRAY;
ReentrantLock lock = this.lock;
@@ -481,9 +497,9 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
System.arraycopy(data, from, a, 0, length);
if(to == data.length) this.data = Arrays.copyOf(data, data.length - length);
else {
int size = data.length-1;
KEY_TYPE[] newElements = NEW_KEY_ARRAY(size);
System.arraycopy(data, 0, newElements, 0, from);
int size = data.length;
KEY_TYPE[] newElements = NEW_KEY_ARRAY(size-length);
if(from != 0) System.arraycopy(data, 0, newElements, 0, from);
System.arraycopy(data, to, newElements, from, size - to);
this.data = newElements;
}
@@ -719,7 +735,7 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public LIST KEY_GENERIC_TYPE subList(int fromIndex, int toIndex) {
SanityChecks.checkArrayCapacity(data.length, fromIndex, toIndex-fromIndex);
return new COWSubListBRACES(this, 0, fromIndex, toIndex);
return new COWSubListBRACES(this, lock, this::setArray, this::getArray, 0, fromIndex, toIndex);
}
/**
@@ -1388,6 +1404,11 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
throw new IndexOutOfBoundsException("Index: " + index + ", Size: " + data.length);
}
protected void checkAddRange(int index) {
if (index < 0 || index > data.length)
throw new IndexOutOfBoundsException("Index: " + index + ", Size: " + data.length);
}
#if PRIMITIVES
/**
* Returns a Java-Type-Specific Stream to reduce boxing/unboxing.
@@ -1435,7 +1456,7 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
return data[index--];
return data[--index];
}
@Override
@@ -1458,7 +1479,7 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public int skip(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, (data.length - 1) - index);
int steps = Math.min(amount, data.length - index);
index += steps;
return steps;
}
@@ -1474,13 +1495,19 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
private static class COWSubList KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
{
final COPY_ON_WRITE_LIST KEY_GENERIC_TYPE list;
final ABSTRACT_LIST KEY_GENERIC_TYPE list;
final ReentrantLock lock;
final Consumer<KEY_TYPE[]> setter;
final Supplier<KEY_TYPE[]> getter;
final int parentOffset;
final int offset;
int size;
public COWSubList(COPY_ON_WRITE_LIST KEY_GENERIC_TYPE list, int offset, int from, int to) {
public COWSubList(ABSTRACT_LIST KEY_GENERIC_TYPE list, ReentrantLock lock, Consumer<KEY_TYPE[]> setter, Supplier<KEY_TYPE[]> getter, int offset, int from, int to) {
this.list = list;
this.lock = lock;
this.setter = setter;
this.getter = getter;
this.parentOffset = from;
this.offset = offset + from;
this.size = to - from;
@@ -1488,7 +1515,6 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public void add(int index, KEY_TYPE element) {
ReentrantLock lock = list.lock;
lock.lock();
try {
checkAddSubRange(index);
@@ -1504,7 +1530,6 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
public boolean addAll(int index, Collection<? extends CLASS_TYPE> c) {
int add = c.size();
if(add <= 0) return false;
ReentrantLock lock = list.lock;
lock.lock();
try {
checkAddSubRange(index);
@@ -1521,7 +1546,6 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
public boolean addAll(int index, COLLECTION KEY_GENERIC_TYPE c) {
int add = c.size();
if(add <= 0) return false;
ReentrantLock lock = list.lock;
lock.lock();
try {
checkAddSubRange(index);
@@ -1538,7 +1562,6 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
public boolean addAll(int index, LIST KEY_GENERIC_TYPE c) {
int add = c.size();
if(add <= 0) return false;
ReentrantLock lock = list.lock;
lock.lock();
try {
checkAddSubRange(index);
@@ -1554,7 +1577,6 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public void addElements(int from, KEY_TYPE[] a, int offset, int length) {
if(length <= 0) return;
ReentrantLock lock = list.lock;
lock.lock();
try {
checkAddSubRange(from);
@@ -1570,17 +1592,16 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
public KEY_TYPE[] getElements(int from, KEY_TYPE[] a, int offset, int length) {
SanityChecks.checkArrayCapacity(size, from, length);
SanityChecks.checkArrayCapacity(a.length, offset, length);
return list.getElements(from+this.offset, a, offset, length);
return list.getElements(from+parentOffset, a, offset, length);
}
@Override
public void removeElements(int from, int to) {
if(to-from <= 0) return;
ReentrantLock lock = list.lock;
lock.lock();
try {
checkSubRange(from);
checkSubRange(to);
checkAddSubRange(to);
list.removeElements(from+parentOffset, to+parentOffset);
size -= to - from;
}
@@ -1592,13 +1613,12 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
#if TYPE_OBJECT
@Override
public <K> K[] extractElements(int from, int to, Class<K> type) {
ReentrantLock lock = list.lock;
lock.lock();
try {
checkSubRange(from);
checkSubRange(to);
checkAddSubRange(to);
K[] result = list.extractElements(from+parentOffset, to+parentOffset, type);
size -= to - from;
size -= result.length;
return result;
}
finally {
@@ -1609,13 +1629,12 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
#else
@Override
public KEY_TYPE[] extractElements(int from, int to) {
ReentrantLock lock = list.lock;
lock.lock();
try {
checkSubRange(from);
checkSubRange(to);
checkAddSubRange(to);
KEY_TYPE[] result = list.extractElements(from+parentOffset, to+parentOffset);
size -= to - from;
size -= result.length;
return result;
}
finally {
@@ -1627,16 +1646,15 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public KEY_TYPE GET_KEY(int index) {
checkSubRange(index);
return list.GET_KEY(offset+index);
return list.GET_KEY(parentOffset+index);
}
@Override
public KEY_TYPE set(int index, KEY_TYPE element) {
ReentrantLock lock = list.lock;
lock.lock();
try {
checkSubRange(index);
return list.set(offset+index, element);
return list.set(parentOffset+index, element);
}
finally {
lock.unlock();
@@ -1645,11 +1663,18 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public KEY_TYPE swapRemove(int index) {
ReentrantLock lock = list.lock;
if(index < 0 || index >= size) throw new IndexOutOfBoundsException();
ReentrantLock lock = this.lock;
lock.lock();
try {
checkSubRange(index);
KEY_TYPE result = list.swapRemove(index+parentOffset);
KEY_TYPE[] data = getter.get();
KEY_TYPE result = data[offset+index];
KEY_TYPE[] newElements = NEW_KEY_ARRAY(data.length-1);
int end = offset+size-1;
System.arraycopy(data, 0, newElements, 0, end);
if(end != newElements.length) System.arraycopy(data, end+1, newElements, end, data.length-end-1);
if(index+offset != end) newElements[index+offset] = data[end];
setter.accept(newElements);
size--;
return result;
}
@@ -1660,7 +1685,6 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public KEY_TYPE REMOVE(int index) {
ReentrantLock lock = list.lock;
lock.lock();
try {
checkSubRange(index);
@@ -1673,6 +1697,371 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
}
}
#if !TYPE_OBJECT
@Override
public boolean REMOVE_KEY(KEY_TYPE type) {
int index = indexOf(type);
if(index == -1) return false;
REMOVE(index);
return true;
}
#else
@Override
public boolean remove(Object type) {
int index = indexOf(type);
if(index == -1) return false;
REMOVE(index);
return true;
}
#endif
#if TYPE_OBJECT
@Override
public void sort(Comparator<? super CLASS_TYPE> c) {
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newData = Arrays.copyOf(data, data.length);
if(c != null) ARRAYS.stableSort(newData, offset, offset+size, c);
else ARRAYS.stableSort(newData, offset, offset+size);
setter.accept(newData);
}
finally {
lock.unlock();
}
}
@Override
public void unstableSort(Comparator<? super CLASS_TYPE> c) {
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newData = Arrays.copyOf(data, data.length);
if(c != null) ARRAYS.unstableSort(newData, offset, offset+size, c);
else ARRAYS.unstableSort(newData, offset, offset+size);
setter.accept(newData);
}
finally {
lock.unlock();
}
}
#else
@Override
public void sort(COMPARATOR c) {
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newData = Arrays.copyOf(data, data.length);
if(c != null) ARRAYS.stableSort(newData, offset, offset+size, c);
else ARRAYS.stableSort(newData, offset, offset+size);
setter.accept(newData);
}
finally {
lock.unlock();
}
}
@Override
public void unstableSort(COMPARATOR c) {
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newData = Arrays.copyOf(data, data.length);
if(c != null) ARRAYS.unstableSort(newData, offset, offset+size, c);
else ARRAYS.unstableSort(newData, offset, offset+size);
setter.accept(newData);
}
finally {
lock.unlock();
}
}
#endif
@Override
@Deprecated
public boolean removeAll(Collection<?> c) {
if(c.isEmpty()) return false;
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newElements = NEW_KEY_ARRAY(data.length);
int j = 0;
for(int i= 0,m=data.length;i<m;i++) {
if(i < offset || i >= offset+size) newElements[j++] = data[i];
else if(!c.contains(KEY_TO_OBJ(data[i]))) newElements[j++] = data[i];
}
if(data.length != j) {
setter.accept(Arrays.copyOf(newElements, j));
size -= data.length - j;
return true;
}
return false;
}
finally {
lock.unlock();
}
}
@Override
@Deprecated
public boolean retainAll(Collection<?> c) {
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
if(c.isEmpty()) {
if(size > 0) {
clear();
return true;
}
return false;
}
KEY_TYPE[] newElements = NEW_KEY_ARRAY(data.length);
int j = 0;
for(int i= 0,m=data.length;i<m;i++) {
if(i < offset || i >= offset+size) newElements[j++] = data[i];
else if(c.contains(KEY_TO_OBJ(data[i]))) newElements[j++] = data[i];
}
if(data.length != j) {
setter.accept(Arrays.copyOf(newElements, j));
size -= data.length - j;
return true;
}
return false;
}
finally {
lock.unlock();
}
}
@Override
@Deprecated
public boolean removeIf(Predicate<? super CLASS_TYPE> filter) {
Objects.requireNonNull(filter);
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newElements = NEW_KEY_ARRAY(data.length);
int j = 0;
for(int i= 0,m=data.length;i<m;i++) {
if(i < offset || i >= offset+size) newElements[j++] = data[i];
else if(!filter.test(KEY_TO_OBJ(data[i]))) newElements[j++] = data[i];
}
if(data.length != j) {
setter.accept(Arrays.copyOf(newElements, j));
size -= data.length - j;
return true;
}
return false;
}
finally {
lock.unlock();
}
}
@Override
public boolean removeAll(COLLECTION KEY_GENERIC_TYPE c) {
if(c.isEmpty()) return false;
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newElements = NEW_KEY_ARRAY(data.length);
int j = 0;
for(int i= 0,m=data.length;i<m;i++) {
if(i < offset || i >= offset+size) newElements[j++] = data[i];
else if(!c.contains(data[i])) newElements[j++] = data[i];
}
if(data.length != j) {
setter.accept(Arrays.copyOf(newElements, j));
size -= data.length - j;
return true;
}
return false;
}
finally {
lock.unlock();
}
}
@Override
public boolean removeAll(COLLECTION KEY_GENERIC_TYPE c, CONSUMER KEY_GENERIC_TYPE r) {
if(c.isEmpty()) return false;
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newElements = NEW_KEY_ARRAY(data.length);
int j = 0;
for(int i= 0,m=data.length;i<m;i++) {
if(i < offset || i >= offset+size) newElements[j++] = data[i];
else if(!c.contains(data[i])) newElements[j++] = data[i];
else r.accept(data[i]);
}
if(data.length != j) {
setter.accept(Arrays.copyOf(newElements, j));
size -= data.length - j;
return true;
}
return false;
}
finally {
lock.unlock();
}
}
@Override
public boolean retainAll(COLLECTION KEY_GENERIC_TYPE c) {
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
if(c.isEmpty()) {
if(size > 0) {
clear();
return true;
}
return false;
}
KEY_TYPE[] newElements = NEW_KEY_ARRAY(data.length);
int j = 0;
for(int i= 0,m=data.length;i<m;i++) {
if(i < offset || i >= offset+size) newElements[j++] = data[i];
else if(c.contains(data[i])) newElements[j++] = data[i];
}
if(data.length != j) {
setter.accept(Arrays.copyOf(newElements, j));;
size -= data.length - j;
return true;
}
return false;
}
finally {
lock.unlock();
}
}
@Override
public boolean retainAll(COLLECTION KEY_GENERIC_TYPE c, CONSUMER KEY_GENERIC_TYPE r) {
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
if(c.isEmpty()) {
if(size > 0) {
forEach(r);
clear();
return true;
}
return false;
}
KEY_TYPE[] newElements = NEW_KEY_ARRAY(data.length);
int j = 0;
for(int i= 0,m=data.length;i<m;i++) {
if(i < offset || i >= offset+size) newElements[j++] = data[i];
else if(c.contains(data[i])) newElements[j++] = data[i];
else r.accept(data[i]);
}
if(data.length != j) {
setter.accept(Arrays.copyOf(newElements, j));
size -= data.length - j;
return true;
}
return false;
}
finally {
lock.unlock();
}
}
#if PRIMITIVES
@Override
public boolean remIf(JAVA_PREDICATE filter) {
Objects.requireNonNull(filter);
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newElements = NEW_KEY_ARRAY(data.length);
int j = 0;
for(int i=0,m=data.length;i<m;i++) {
if(i < offset || i >= offset+size) newElements[j++] = data[i];
else if(!filter.test(data[i])) newElements[j++] = data[i];
}
if(data.length != j) {
setter.accept(Arrays.copyOf(newElements, j));
size -= data.length - j;
return true;
}
return false;
}
finally {
lock.unlock();
}
}
#endif
@Override
@Primitive
public void replaceAll(UnaryOperator<CLASS_TYPE> o) {
#if PRIMITIVES
Objects.requireNonNull(o);
#if TYPE_BYTE || TYPE_SHORT || TYPE_CHAR || TYPE_FLOAT
REPLACE(T -> OBJ_TO_KEY(o.apply(KEY_TO_OBJ(SanityChecks.SANITY_CAST(T)))));
#else
REPLACE(T -> OBJ_TO_KEY(o.apply(KEY_TO_OBJ(T))));
#endif
#else
Objects.requireNonNull(o);
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newData = Arrays.copyOf(data, data.length);
for(int i = 0,m=size;i<m;i++)
newData[i+offset] = OBJ_TO_KEY(o.apply(KEY_TO_OBJ(newData[i+offset])));
setter.accept(newData);
}
finally {
lock.unlock();
}
#endif
}
#if PRIMITIVES
@Override
public void REPLACE(JAVA_UNARY_OPERATOR o) {
Objects.requireNonNull(o);
ReentrantLock lock = this.lock;
lock.lock();
try {
KEY_TYPE[] data = getter.get();
KEY_TYPE[] newData = Arrays.copyOf(data, data.length);
for(int i = 0,m=size;i<m;i++)
#if TYPE_BYTE || TYPE_SHORT || TYPE_CHAR || TYPE_FLOAT
newData[i+offset] = SanityChecks.SANITY_CAST(o.APPLY_CAST(newData[i+offset]));
#else
newData[i+offset] = o.APPLY(newData[i+offset]);
#endif
setter.accept(newData);
}
finally {
lock.unlock();
}
}
#endif
@Override
public int size() {
return size;
@@ -1681,10 +2070,9 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public void clear() {
if(size == 0) return;
ReentrantLock lock = list.lock;
lock.lock();
try {
list.removeElements(offset, offset+size);
list.removeElements(parentOffset, parentOffset+size);
size = 0;
}
finally {
@@ -1704,7 +2092,7 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public LIST KEY_GENERIC_TYPE subList(int fromIndex, int toIndex) {
SanityChecks.checkArrayCapacity(size, fromIndex, toIndex-fromIndex);
return new COWSubListBRACES(list, offset, fromIndex, toIndex);
return new COWSubListBRACES(this, lock, setter, getter, offset, fromIndex, toIndex);
}
protected void checkSubRange(int index) {
@@ -1772,7 +2160,7 @@ public class COPY_ON_WRITE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENER
@Override
public int skip(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, (list.size() - 1) - index);
int steps = Math.min(amount, list.size() - index);
index += steps;
return steps;
}
@@ -556,7 +556,7 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
@Override
public int skip(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, (size() - 1) - index);
int steps = Math.min(amount, size() - index);
index += steps;
return steps;
}
@@ -152,10 +152,16 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
int length = c.size();
if(length == 0) return false;
checkAddRange(index);
Entry KEY_GENERIC_TYPE next = null;
Entry KEY_GENERIC_TYPE prev = null;
if(index == size) prev = last;
else if(index == 0) next = first;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE prev;
if(index == size) {
prev = last;
next = null;
}
else if(index == 0) {
next = first;
prev = null;
}
else {
next = getNode(index);
prev = next.prev;
@@ -177,30 +183,7 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
@Override
public boolean addAll(int index, LIST KEY_GENERIC_TYPE c) {
int length = c.size();
if(length == 0) return false;
checkAddRange(index);
Entry KEY_GENERIC_TYPE next = null;
Entry KEY_GENERIC_TYPE prev = null;
if(index == size) prev = last;
else if(index == 0) next = first;
else {
next = getNode(index);
prev = next.prev;
}
for(ITERATOR KEY_GENERIC_TYPE iter = c.iterator();iter.hasNext();) {
Entry KEY_GENERIC_TYPE entry = new EntryBRACES(iter.NEXT(), prev, null);
if(prev == null) first = entry;
else prev.next = entry;
prev = entry;
}
if(next == null) last = prev;
else {
prev.next = next;
next.prev = prev;
}
size += length;
return true;
return addAll(index, (COLLECTION KEY_GENERIC_TYPE)c); //
}
@Override
@@ -210,10 +193,16 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
int length = c.size();
if(length == 0) return false;
checkAddRange(index);
Entry KEY_GENERIC_TYPE next = null;
Entry KEY_GENERIC_TYPE prev = null;
if(index == size) prev = last;
else if(index == 0) next = first;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE prev;
if(index == size) {
prev = last;
next = null;
}
else if(index == 0) {
next = first;
prev = null;
}
else {
next = getNode(index);
prev = next.prev;
@@ -258,12 +247,19 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
@Override
public void addElements(int from, KEY_TYPE[] a, int offset, int length) {
if(length <= 0) return;
SanityChecks.checkArrayCapacity(a.length, offset, length);
checkAddRange(from);
Entry KEY_GENERIC_TYPE next = null;
Entry KEY_GENERIC_TYPE prev = null;
if(from == size) prev = last;
else if(from == 0) next = first;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE prev;
if(from == size) {
prev = last;
next = null;
}
else if(from == 0) {
next = first;
prev = null;
}
else {
next = getNode(from);
prev = next.prev;
@@ -297,13 +293,13 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
@Override
public KEY_TYPE first() {
if(first == null) throw new IllegalStateException();
if(first == null) throw new NoSuchElementException();
return first.value;
}
@Override
public KEY_TYPE last() {
if(last == null) throw new IllegalStateException();
if(last == null) throw new NoSuchElementException();
return last.value;
}
@@ -536,13 +532,13 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
@Override
public KEY_TYPE dequeue() {
if(first == null) throw new IllegalStateException();
if(first == null) throw new NoSuchElementException();
return unlinkFirst(first);
}
@Override
public KEY_TYPE dequeueLast() {
if(last == null) throw new IllegalStateException();
if(last == null) throw new NoSuchElementException();
return unlinkLast(last);
}
@@ -593,12 +589,15 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
first = temp;
return result;
}
else if(before.next != last) {
Entry KEY_GENERIC_TYPE temp = last;
last = temp.prev;
last.next = null;
temp.next = before.next;
temp.prev = before;
before.next = temp;
temp.next.prev = temp;
}
return result;
}
@@ -623,12 +622,15 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
first = temp;
return true;
}
else if(before.next != last) {
Entry KEY_GENERIC_TYPE temp = last;
last = temp.prev;
last.next = null;
temp.next = before.next;
temp.prev = before;
before.next = temp;
temp.next.prev = temp;
}
return true;
}
}
@@ -671,16 +673,18 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
if(from < size - to) {
Entry KEY_GENERIC_TYPE entry = getNode(from);
while(length > 0) {
entry = entry.next;
unlink(entry.prev);
Entry KEY_GENERIC_TYPE next = entry.next;
unlink(entry);
entry = next;
length--;
}
return;
}
Entry KEY_GENERIC_TYPE entry = getNode(to);
Entry KEY_GENERIC_TYPE entry = getNode(to-1);
while(length > 0) {
entry = entry.prev;
unlink(entry.next);
Entry KEY_GENERIC_TYPE prev = entry.prev;
unlink(entry);
entry = prev;
length--;
}
}
@@ -691,20 +695,22 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
checkRange(from);
checkAddRange(to);
int length = to - from;
if(length <= 0) return ARRAYS.newArray(type, 0);
K[] a = ARRAYS.newArray(type, length);
if(length <= 0) return a;
if(from < size - to) {
Entry KEY_GENERIC_TYPE entry = getNode(from);
for(int i = 0;length > 0;i++, length--) {
entry = entry.next;
a[i] = (K)unlink(entry.prev);
Entry KEY_GENERIC_TYPE next = entry.next;
a[i] = (K)unlink(entry);
entry = next;
}
return a;
}
Entry KEY_GENERIC_TYPE entry = getNode(to);
for(int i = length-1;length > 0;i--) {
entry = entry.prev;
a[i] = (K)unlink(entry.next);
Entry KEY_GENERIC_TYPE entry = getNode(to-1);
for(int i = length-1;length > 0;i--, length--) {
Entry KEY_GENERIC_TYPE prev = entry.prev;
a[i] = (K)unlink(entry);
entry = prev;
}
return a;
}
@@ -720,15 +726,17 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
if(from < size - to) {
Entry KEY_GENERIC_TYPE entry = getNode(from);
for(int i = 0;length > 0;i++, length--) {
entry = entry.next;
d[i] = unlink(entry.prev);
Entry KEY_GENERIC_TYPE next = entry.next;
d[i] = unlink(entry);
entry = next;
}
return d;
}
Entry KEY_GENERIC_TYPE entry = getNode(to);
for(int i = length-1;length > 0;i--) {
entry = entry.prev;
d[i] = unlink(entry.next);
Entry KEY_GENERIC_TYPE entry = getNode(to-1);
for(int i = length-1;length > 0;i--, length--) {
Entry KEY_GENERIC_TYPE prev = entry.prev;
d[i] = unlink(entry);
entry = prev;
}
return d;
}
@@ -1106,6 +1114,11 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
this.prev = prev;
this.next = next;
}
@Override
public String toString() {
return KEY_TO_STRING(value);
}
}
private class ListIter implements LIST_ITERATOR KEY_GENERIC_TYPE
@@ -1239,7 +1252,7 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
@Override
public long estimateSize() {
return list.size - index;
return (long)list.size - (long)index;
}
@Override
@@ -1305,7 +1318,7 @@ public class LINKED_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_TYPE
@Override
public long estimateSize() {
return list.size - index;
return (long)list.size - (long)index;
}
@Override
@@ -285,6 +285,16 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
}
#endif
@Override
public CLASS_VALUE_TYPE remove(Object key) {
#if TYPE_OBJECT
return VALUE_TO_OBJ(REMOVE_VALUE((CLASS_TYPE)key));
#else
return key instanceof CLASS_TYPE ? VALUE_TO_OBJ(REMOVE_VALUE(CLASS_TO_KEY(key))) : VALUE_TO_OBJ(getDefaultReturnValue());
#endif
}
@Override
public void forEach(BI_CONSUMER KEY_VALUE_GENERIC_TYPE action) {
Objects.requireNonNull(action);
@@ -306,7 +316,11 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
#else
@Override
public boolean remove(Object o) {
return VALUE_EQUALS_NOT(ABSTRACT_MAP.this.remove(o), getDefaultReturnValue());
if(ABSTRACT_MAP.this.containsKey(o)) {
ABSTRACT_MAP.this.remove(o);
return true;
}
return false;
}
#endif
@@ -73,6 +73,7 @@ import speiger.src.collections.objects.collections.ObjectBidirectionalIterator;
import speiger.src.collections.objects.sets.AbstractObjectSet;
import speiger.src.collections.objects.sets.ObjectSet;
import speiger.src.collections.utils.HashUtil;
import speiger.src.collections.utils.ITrimmable;
/**
* A TypeSpecific ConcurrentHashMap implementation that is based on <a href="https://github.com/google/guava">Guavas</a> approach and backing array implementations.
@@ -84,7 +85,7 @@ import speiger.src.collections.utils.HashUtil;
* @Type(T)
* @ValueType(V)
*/
public class CONCURRENT_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE implements CONCURRENT_MAP KEY_VALUE_GENERIC_TYPE
public class CONCURRENT_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE implements CONCURRENT_MAP KEY_VALUE_GENERIC_TYPE, ITrimmable
{
/** Segment Limit */
private static final int MAX_SEGMENTS = 1 << 16;
@@ -538,6 +539,30 @@ public class CONCURRENT_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY
}
}
@Override
public boolean trim(int size) {
int segmentCapacity = size / segments.length;
if(segmentCapacity * segments.length < size) {
segmentCapacity++;
}
boolean result = false;
for(int i = 0, m=segments.length;i<m;i++) {
result |= segments[i].trim(segmentCapacity);
}
return result;
}
@Override
public void clearAndTrim(int size) {
int segmentCapacity = size / segments.length;
if(segmentCapacity * segments.length < size) {
segmentCapacity++;
}
for(int i = 0, m=segments.length;i<m;i++) {
segments[i].clearAndTrim(segmentCapacity);
}
}
@Override
public boolean isEmpty() {
for(int i = 0,m=segments.length;i<m;i++) {
@@ -2025,7 +2050,11 @@ public class CONCURRENT_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY
long stamp = writeLock();
try
{
#if TYPE_OBJECT
if(key == null) {
#else
if(key == null || (key instanceof CLASS_TYPE && KEY_EQUALS_NULL(CLASS_TO_KEY(key)))) {
#endif
if(containsNull && EQUALS_VALUE_TYPE(values[nullIndex], value)) {
removeNullIndex();
return true;
@@ -2202,7 +2231,7 @@ public class CONCURRENT_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY
protected boolean trim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size || this.size > Math.min((int)Math.ceil(request * loadFactor), request - 1)) return false;
if(request >= mask+1 || this.size > Math.min((int)Math.ceil(request * loadFactor), request - 1)) return false;
long stamp = writeLock();
try {
try {
@@ -2218,7 +2247,7 @@ public class CONCURRENT_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY
protected void clearAndTrim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size) {
if(request >= mask+1) {
clear();
return;
}
@@ -2298,6 +2327,9 @@ public class CONCURRENT_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY
#endif
protected int findIndex(int hash, Object key) {
if(key == null) return containsNull ? nullIndex : -(nullIndex + 1);
#if !TYPE_OBJECT
if(KEY_EQUALS_NULL(CLASS_TO_KEY(key))) return containsNull ? nullIndex : -(nullIndex + 1);
#endif
int pos = hash & mask;
KEY_TYPE current = keys[pos];
if(KEY_EQUALS_NOT_NULL(current)) {
@@ -22,7 +22,6 @@ import speiger.src.collections.PACKAGE.maps.interfaces.MAP;
import speiger.src.collections.PACKAGE.maps.interfaces.ORDERED_MAP;
import speiger.src.collections.PACKAGE.sets.ABSTRACT_SET;
import speiger.src.collections.PACKAGE.sets.ORDERED_SET;
import speiger.src.collections.PACKAGE.sets.SET;
import speiger.src.collections.PACKAGE.utils.STRATEGY;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ABSTRACT_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
@@ -57,7 +56,7 @@ import speiger.src.collections.objects.functions.function.ObjectObjectUnaryOpera
import speiger.src.collections.objects.collections.ObjectBidirectionalIterator;
import speiger.src.collections.objects.lists.ObjectListIterator;
import speiger.src.collections.objects.sets.AbstractObjectSet;
import speiger.src.collections.objects.sets.ObjectSet;
import speiger.src.collections.objects.sets.ObjectOrderedSet;
#endif
import speiger.src.collections.utils.HashUtil;
@@ -285,7 +284,7 @@ public class LINKED_CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends CUSTOM_HASH_M
@Override
public boolean moveToFirst(KEY_TYPE key) {
if(strategy.equals(FIRST_ENTRY_KEY(), key)) return false;
if(isEmpty() || strategy.equals(FIRST_ENTRY_KEY(), key)) return false;
if(strategy.equals(key, EMPTY_KEY_VALUE)) {
if(containsNull) {
moveToFirstIndex(nullIndex);
@@ -307,7 +306,7 @@ public class LINKED_CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends CUSTOM_HASH_M
@Override
public boolean moveToLast(KEY_TYPE key) {
if(strategy.equals(LAST_ENTRY_KEY(), key)) return false;
if(isEmpty() || strategy.equals(LAST_ENTRY_KEY(), key)) return false;
if(strategy.equals(key, EMPTY_KEY_VALUE)) {
if(containsNull) {
moveToLastIndex(nullIndex);
@@ -370,8 +369,7 @@ public class LINKED_CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends CUSTOM_HASH_M
public KEY_TYPE POLL_FIRST_ENTRY_KEY() {
if(size == 0) throw new NoSuchElementException();
int pos = firstIndex;
firstIndex = (int)links[pos];
if(0 <= firstIndex) links[firstIndex] |= 0xFFFFFFFF00000000L;
onNodeRemoved(pos);
KEY_TYPE result = keys[pos];
size--;
if(strategy.equals(result, EMPTY_KEY_VALUE)) {
@@ -394,8 +392,7 @@ public class LINKED_CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends CUSTOM_HASH_M
public KEY_TYPE POLL_LAST_ENTRY_KEY() {
if(size == 0) throw new NoSuchElementException();
int pos = lastIndex;
lastIndex = (int)(links[pos] >>> 32);
if(0 <= lastIndex) links[lastIndex] |= 0xFFFFFFFFL;
onNodeRemoved(pos);
KEY_TYPE result = keys[pos];
size--;
if(strategy.equals(result, EMPTY_KEY_VALUE)) {
@@ -421,15 +418,15 @@ public class LINKED_CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends CUSTOM_HASH_M
}
@Override
public ObjectSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() {
public ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() {
if(entrySet == null) entrySet = new MapEntrySet();
return entrySet;
return (ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE>)entrySet;
}
@Override
public SET KEY_GENERIC_TYPE keySet() {
public ORDERED_SET KEY_GENERIC_TYPE keySet() {
if(keySet == null) keySet = new KeySet();
return keySet;
return (ORDERED_SET KEY_GENERIC_TYPE)keySet;
}
@Override
@@ -456,7 +453,7 @@ public class LINKED_CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends CUSTOM_HASH_M
@Override
public void clearAndTrim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size) {
if(request >= nullIndex) {
clear();
return;
}
@@ -394,7 +394,11 @@ public class CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VAL
@Override
public boolean remove(Object key, Object value) {
Objects.requireNonNull(value);
#if TYPE_OBJECT
if(key == null) {
#else
if(key == null || (key instanceof CLASS_TYPE && strategy.equals(CLASS_TO_KEY(key), EMPTY_KEY_VALUE))) {
#endif
if(containsNull && EQUALS_VALUE_TYPE(values[nullIndex], value)) {
removeNullIndex();
return true;
@@ -628,7 +632,7 @@ public class CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VAL
@Override
public boolean trim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size || this.size > Math.min((int)Math.ceil(request * loadFactor), request - 1)) return false;
if(request >= nullIndex || this.size > Math.min((int)Math.ceil(request * loadFactor), request - 1)) return false;
try {
rehash(request);
}
@@ -639,7 +643,7 @@ public class CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VAL
@Override
public void clearAndTrim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size) {
if(request >= nullIndex) {
clear();
return;
}
@@ -669,6 +673,9 @@ public class CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VAL
protected int findIndex(CLASS_TYPE key) {
if(key == null) return containsNull ? nullIndex : -(nullIndex + 1);
KEY_TYPE keyType = CLASS_TO_KEY(key);
#if !TYPE_OBJECT
if(strategy.equals(keyType, EMPTY_KEY_VALUE)) return containsNull ? nullIndex : -(nullIndex + 1);
#endif
int pos = HashUtil.mix(strategy.hashCode(keyType)) & mask;
KEY_TYPE current = keys[pos];
if(!strategy.equals(current, EMPTY_KEY_VALUE)) {
@@ -942,7 +949,7 @@ public class CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VAL
state = new BasicEntryKV_BRACES(keys[nullIndex], values[nullIndex]);
empty = false;
}
for(int i = 0;i<size;i++) {
for(int i = nullIndex-1;i>=0;i--) {
if(strategy.equals(keys[i], EMPTY_KEY_VALUE)) continue;
if(empty) {
empty = false;
@@ -1173,7 +1180,7 @@ public class CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VAL
state = keys[nullIndex];
empty = false;
}
for(int i = 0;i<size;i++) {
for(int i = nullIndex-1;i>=0;i--) {
if(strategy.equals(keys[i], EMPTY_KEY_VALUE)) continue;
if(empty) {
empty = false;
@@ -1329,7 +1336,7 @@ public class CUSTOM_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VAL
state = values[nullIndex];
empty = false;
}
for(int i = 0;i<size;i++) {
for(int i = nullIndex-1;i>=0;i--) {
if(strategy.equals(keys[i], EMPTY_KEY_VALUE)) continue;
if(empty) {
empty = false;
@@ -22,7 +22,6 @@ import speiger.src.collections.PACKAGE.maps.interfaces.MAP;
import speiger.src.collections.PACKAGE.maps.interfaces.ORDERED_MAP;
import speiger.src.collections.PACKAGE.sets.ABSTRACT_SET;
import speiger.src.collections.PACKAGE.sets.ORDERED_SET;
import speiger.src.collections.PACKAGE.sets.SET;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ABSTRACT_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ITERATOR;
@@ -56,7 +55,7 @@ import speiger.src.collections.objects.functions.function.ObjectObjectUnaryOpera
import speiger.src.collections.objects.collections.ObjectBidirectionalIterator;
import speiger.src.collections.objects.lists.ObjectListIterator;
import speiger.src.collections.objects.sets.AbstractObjectSet;
import speiger.src.collections.objects.sets.ObjectSet;
import speiger.src.collections.objects.sets.ObjectOrderedSet;
#endif
import speiger.src.collections.utils.HashUtil;
@@ -262,7 +261,7 @@ public class LINKED_HASH_MAP KEY_VALUE_GENERIC_TYPE extends HASH_MAP KEY_VALUE_G
@Override
public boolean moveToFirst(KEY_TYPE key) {
if(KEY_EQUALS(FIRST_ENTRY_KEY(), key)) return false;
if(isEmpty() || KEY_EQUALS(FIRST_ENTRY_KEY(), key)) return false;
if(KEY_EQUALS_NULL(key)) {
if(containsNull) {
moveToFirstIndex(nullIndex);
@@ -284,7 +283,7 @@ public class LINKED_HASH_MAP KEY_VALUE_GENERIC_TYPE extends HASH_MAP KEY_VALUE_G
@Override
public boolean moveToLast(KEY_TYPE key) {
if(KEY_EQUALS(LAST_ENTRY_KEY(), key)) return false;
if(isEmpty() || KEY_EQUALS(LAST_ENTRY_KEY(), key)) return false;
if(KEY_EQUALS_NULL(key)) {
if(containsNull) {
moveToLastIndex(nullIndex);
@@ -374,8 +373,7 @@ public class LINKED_HASH_MAP KEY_VALUE_GENERIC_TYPE extends HASH_MAP KEY_VALUE_G
public KEY_TYPE POLL_FIRST_ENTRY_KEY() {
if(size == 0) throw new NoSuchElementException();
int pos = firstIndex;
firstIndex = (int)links[pos];
if(0 <= firstIndex) links[firstIndex] |= 0xFFFFFFFF00000000L;
onNodeRemoved(pos);
KEY_TYPE result = keys[pos];
size--;
if(KEY_EQUALS_NULL(result)) {
@@ -398,8 +396,7 @@ public class LINKED_HASH_MAP KEY_VALUE_GENERIC_TYPE extends HASH_MAP KEY_VALUE_G
public KEY_TYPE POLL_LAST_ENTRY_KEY() {
if(size == 0) throw new NoSuchElementException();
int pos = lastIndex;
lastIndex = (int)(links[pos] >>> 32);
if(0 <= lastIndex) links[lastIndex] |= 0xFFFFFFFFL;
onNodeRemoved(pos);
KEY_TYPE result = keys[pos];
size--;
if(KEY_EQUALS_NULL(result)) {
@@ -425,15 +422,15 @@ public class LINKED_HASH_MAP KEY_VALUE_GENERIC_TYPE extends HASH_MAP KEY_VALUE_G
}
@Override
public ObjectSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() {
public ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() {
if(entrySet == null) entrySet = new MapEntrySet();
return entrySet;
return (ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE>)entrySet;
}
@Override
public SET KEY_GENERIC_TYPE keySet() {
public ORDERED_SET KEY_GENERIC_TYPE keySet() {
if(keySet == null) keySet = new KeySet();
return keySet;
return (ORDERED_SET KEY_GENERIC_TYPE)keySet;
}
@Override
@@ -460,7 +457,7 @@ public class LINKED_HASH_MAP KEY_VALUE_GENERIC_TYPE extends HASH_MAP KEY_VALUE_G
@Override
public void clearAndTrim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size) {
if(request >= nullIndex) {
clear();
return;
}
@@ -362,7 +362,11 @@ public class HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GENE
@Override
public boolean remove(Object key, Object value) {
Objects.requireNonNull(value);
#if TYPE_OBJECT
if(key == null) {
#else
if(key == null || (key instanceof CLASS_TYPE && KEY_EQUALS_NULL(CLASS_TO_KEY(key)))) {
#endif
if(containsNull && EQUALS_VALUE_TYPE(values[nullIndex], value)) {
removeNullIndex();
return true;
@@ -589,7 +593,7 @@ public class HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GENE
@Override
public boolean trim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size || this.size > Math.min((int)Math.ceil(request * loadFactor), request - 1)) return false;
if(request >= nullIndex || this.size >= Math.min((int)Math.ceil(request * loadFactor), request - 1)) return false;
try {
rehash(request);
}
@@ -600,7 +604,7 @@ public class HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GENE
@Override
public void clearAndTrim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size) {
if(request >= nullIndex) {
clear();
return;
}
@@ -629,6 +633,9 @@ public class HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GENE
#endif
protected int findIndex(Object key) {
if(key == null) return containsNull ? nullIndex : -(nullIndex + 1);
#if !TYPE_OBJECT
if(key instanceof CLASS_TYPE && KEY_EQUALS_NULL(CLASS_TO_KEY(key))) return containsNull ? nullIndex : -(nullIndex + 1);
#endif
int pos = HashUtil.mix(key.hashCode()) & mask;
KEY_TYPE current = keys[pos];
if(KEY_EQUALS_NOT_NULL(current)) {
@@ -902,7 +909,7 @@ public class HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GENE
state = new BasicEntryKV_BRACES(keys[nullIndex], values[nullIndex]);
empty = false;
}
for(int i = 0;i<size;i++) {
for(int i = nullIndex-1;i>=0;i--) {
if(KEY_EQUALS_NULL(keys[i])) continue;
if(empty) {
empty = false;
@@ -1129,7 +1136,7 @@ public class HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GENE
state = keys[nullIndex];
empty = false;
}
for(int i = 0;i<size;i++) {
for(int i = nullIndex-1;i>=0;i--) {
if(KEY_EQUALS_NULL(keys[i])) continue;
if(empty) {
empty = false;
@@ -1285,7 +1292,7 @@ public class HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GENE
state = values[nullIndex];
empty = false;
}
for(int i = 0;i<size;i++) {
for(int i = nullIndex-1;i>=0;i--) {
if(KEY_EQUALS_NULL(keys[i])) continue;
if(empty) {
empty = false;
@@ -25,7 +25,9 @@ import speiger.src.collections.PACKAGE.lists.LIST_ITERATOR;
import speiger.src.collections.PACKAGE.maps.interfaces.ORDERED_MAP;
import speiger.src.collections.PACKAGE.maps.abstracts.ABSTRACT_MAP;
import speiger.src.collections.PACKAGE.maps.interfaces.MAP;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.sets.ORDERED_SET;
#endif
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.utils.ARRAYS;
@@ -47,7 +49,6 @@ import speiger.src.collections.VALUE_PACKAGE.functions.function.VALUE_PREDICATE;
#endif
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.sets.ABSTRACT_SET;
import speiger.src.collections.PACKAGE.sets.SET;
#endif
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ABSTRACT_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
@@ -70,7 +71,7 @@ import speiger.src.collections.objects.functions.function.ObjectObjectUnaryOpera
import speiger.src.collections.objects.lists.ObjectListIterator;
#endif
import speiger.src.collections.objects.sets.AbstractObjectSet;
import speiger.src.collections.objects.sets.ObjectSet;
import speiger.src.collections.objects.sets.ObjectOrderedSet;
import speiger.src.collections.utils.HashUtil;
import speiger.src.collections.utils.SanityChecks;
@@ -100,9 +101,9 @@ public class IMMUTABLE_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_
/** The Last Index in the Map */
protected int lastIndex = -1;
/** EntrySet cache */
protected transient FastEntrySet KEY_VALUE_GENERIC_TYPE entrySet;
protected transient FastOrderedSet KEY_VALUE_GENERIC_TYPE entrySet;
/** KeySet cache */
protected transient SET KEY_GENERIC_TYPE keySet;
protected transient ORDERED_SET KEY_GENERIC_TYPE keySet;
/** Values cache */
protected transient VALUE_COLLECTION VALUE_GENERIC_TYPE valuesC;
@@ -429,13 +430,13 @@ public class IMMUTABLE_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_
}
@Override
public ObjectSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() {
public ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() {
if(entrySet == null) entrySet = new MapEntrySet();
return entrySet;
}
@Override
public SET KEY_GENERIC_TYPE keySet() {
public ORDERED_SET KEY_GENERIC_TYPE keySet() {
if(keySet == null) keySet = new KeySet();
return keySet;
}
@@ -516,6 +517,9 @@ public class IMMUTABLE_HASH_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_
#endif
protected int findIndex(Object key) {
if(key == null) return containsNull ? nullIndex : -(nullIndex + 1);
#if !TYPE_OBJECT
if(KEY_EQUALS_NULL(CLASS_TO_KEY(key))) return containsNull ? nullIndex : -(nullIndex + 1);
#endif
int pos = HashUtil.mix(key.hashCode()) & mask;
KEY_TYPE current = keys[pos];
if(KEY_EQUALS_NOT_NULL(current)) {
@@ -27,7 +27,6 @@ import speiger.src.collections.PACKAGE.maps.interfaces.MAP;
import speiger.src.collections.PACKAGE.maps.interfaces.ORDERED_MAP;
import speiger.src.collections.PACKAGE.sets.ABSTRACT_SET;
import speiger.src.collections.PACKAGE.sets.ORDERED_SET;
import speiger.src.collections.PACKAGE.sets.SET;
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ABSTRACT_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
@@ -90,7 +89,7 @@ public class ARRAY_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GEN
/** Amount of Elements stored in the ArrayMap */
protected int size = 0;
/** KeySet cache */
protected SET KEY_GENERIC_TYPE keySet;
protected ORDERED_SET KEY_GENERIC_TYPE keySet;
/** Values cache */
protected VALUE_COLLECTION VALUE_GENERIC_TYPE valuesC;
/** EntrySet cache */
@@ -270,7 +269,7 @@ public class ARRAY_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GEN
@Override
public boolean moveToLast(KEY_TYPE key) {
int index = findIndex(key);
if(index < size-1) {
if(index >= 0 && index < size-1) {
moveIndexToLast(index);
return true;
}
@@ -437,7 +436,7 @@ public class ARRAY_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GEN
}
@Override
public SET KEY_GENERIC_TYPE keySet() {
public ORDERED_SET KEY_GENERIC_TYPE keySet() {
if(keySet == null) keySet = new KeySet();
return keySet;
}
@@ -1234,6 +1233,7 @@ public class ARRAY_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GEN
public EntryIterator() {}
public EntryIterator(KEY_TYPE from) {
index = findIndex(from);
if(index == -1) throw new NoSuchElementException();
}
@Override
@@ -1249,8 +1249,10 @@ public class ARRAY_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GEN
@Override
public void remove() {
super.remove();
if(entry != null && entry.index != -1) {
entry.index = -1;
}
}
@Override
public void set(MAP.Entry KEY_VALUE_GENERIC_TYPE e) { throw new UnsupportedOperationException(); }
@@ -1262,7 +1264,9 @@ public class ARRAY_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GEN
public KeyIterator() {}
public KeyIterator(KEY_TYPE element) {
index = findIndex(element);
if(index == -1) throw new NoSuchElementException();
}
@Override
public KEY_TYPE PREVIOUS() {
return keys[previousEntry()];
@@ -1319,8 +1323,7 @@ public class ARRAY_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GEN
}
public void remove() {
if(lastReturned == -1)
throw new IllegalStateException();
if(lastReturned == -1) throw new IllegalStateException();
removeIndex(lastReturned);
if(lastReturned < index)
index--;
@@ -1329,8 +1332,8 @@ public class ARRAY_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GEN
public int previousEntry() {
if(!hasPrevious()) throw new NoSuchElementException();
lastReturned = index;
return index--;
index--;
return (lastReturned = index);
}
public int nextEntry() {
@@ -1341,8 +1344,9 @@ public class ARRAY_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GEN
public int skip(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, (size() - 1) - index);
int steps = Math.min(amount, size() - index);
index += steps;
if(steps > 0) lastReturned = Math.min(index-1, size()-1);
return steps;
}
@@ -1350,6 +1354,7 @@ public class ARRAY_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GEN
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, index);
index -= steps;
if(steps > 0) lastReturned = Math.min(index, size()-1);
return steps;
}
}
@@ -4,6 +4,7 @@ import java.util.Arrays;
import java.util.Map;
import java.util.NoSuchElementException;
import java.util.Objects;
import java.util.function.Consumer;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ABSTRACT_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
@@ -76,8 +77,8 @@ public class ENUM_MAP KEY_ENUM_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE
if(keys.length != values.length) throw new IllegalArgumentException("Keys and Values have to be the same size");
keyType = keys[0].getDeclaringClass();
this.keys = getKeyUniverse(keyType);
this.values = NEW_VALUE_ARRAY(keys.length);
present = new long[((keys.length - 1) >> 6) + 1];
this.values = NEW_VALUE_ARRAY(this.keys.length);
present = new long[((this.keys.length - 1) >> 6) + 1];
putAll(keys, values);
}
@@ -93,8 +94,8 @@ public class ENUM_MAP KEY_ENUM_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE
if(keys.length != values.length) throw new IllegalArgumentException("Keys and Values have to be the same size");
keyType = keys[0].getDeclaringClass();
this.keys = getKeyUniverse(keyType);
this.values = NEW_VALUE_ARRAY(keys.length);
present = new long[((keys.length - 1) >> 6) + 1];
this.values = NEW_VALUE_ARRAY(this.keys.length);
present = new long[((this.keys.length - 1) >> 6) + 1];
putAll(keys, values);
}
@@ -530,6 +531,14 @@ public class ENUM_MAP KEY_ENUM_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE
return false;
}
@Override
public void forEach(Consumer<? super MAP.Entry KEY_VALUE_GENERIC_TYPE> action) {
if(size() <= 0) return;
for(int i = 0,m=keys.length;i<m;i++) {
if(isSet(i)) action.accept(new BasicEntryKV_BRACES(keys[i], values[i]));
}
}
@Override
public ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iterator() {
return new EntryIterator();
@@ -17,7 +17,6 @@ import speiger.src.collections.PACKAGE.maps.interfaces.MAP;
import speiger.src.collections.PACKAGE.maps.interfaces.ORDERED_MAP;
import speiger.src.collections.PACKAGE.sets.ABSTRACT_SET;
import speiger.src.collections.PACKAGE.sets.ORDERED_SET;
import speiger.src.collections.PACKAGE.sets.SET;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ABSTRACT_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ITERATOR;
@@ -29,7 +28,6 @@ import speiger.src.collections.VALUE_PACKAGE.lists.VALUE_LIST_ITERATOR;
import speiger.src.collections.objects.collections.ObjectBidirectionalIterator;
import speiger.src.collections.objects.lists.ObjectListIterator;
import speiger.src.collections.objects.sets.AbstractObjectSet;
import speiger.src.collections.objects.sets.ObjectSet;
#endif
/**
@@ -68,9 +66,9 @@ public class LINKED_ENUM_MAP KEY_ENUM_VALUE_GENERIC_TYPE extends ENUM_MAP KEY_VA
if(keys.length != values.length) throw new IllegalArgumentException("Keys and Values have to be the same size");
keyType = keys[0].getDeclaringClass();
this.keys = getKeyUniverse(keyType);
this.values = NEW_VALUE_ARRAY(keys.length);
present = new long[((keys.length - 1) >> 6) + 1];
links = new long[keys.length];
this.values = NEW_VALUE_ARRAY(this.keys.length);
present = new long[((this.keys.length - 1) >> 6) + 1];
links = new long[this.keys.length];
putAll(keys, values);
}
@@ -86,9 +84,9 @@ public class LINKED_ENUM_MAP KEY_ENUM_VALUE_GENERIC_TYPE extends ENUM_MAP KEY_VA
if(keys.length != values.length) throw new IllegalArgumentException("Keys and Values have to be the same size");
keyType = keys[0].getDeclaringClass();
this.keys = getKeyUniverse(keyType);
this.values = NEW_VALUE_ARRAY(keys.length);
present = new long[((keys.length - 1) >> 6) + 1];
links = new long[keys.length];
this.values = NEW_VALUE_ARRAY(this.keys.length);
present = new long[((this.keys.length - 1) >> 6) + 1];
links = new long[this.keys.length];
putAll(keys, values);
}
@@ -241,7 +239,7 @@ public class LINKED_ENUM_MAP KEY_ENUM_VALUE_GENERIC_TYPE extends ENUM_MAP KEY_VA
@Override
public VALUE_TYPE getAndMoveToFirst(T key) {
int index = key.ordinal();
if(index < 0) return getDefaultReturnValue();
if(!isSet(index)) return getDefaultReturnValue();
moveToFirstIndex(index);
return values[index];
}
@@ -249,7 +247,7 @@ public class LINKED_ENUM_MAP KEY_ENUM_VALUE_GENERIC_TYPE extends ENUM_MAP KEY_VA
@Override
public VALUE_TYPE getAndMoveToLast(T key) {
int index = key.ordinal();
if(index < 0) return getDefaultReturnValue();
if(!isSet(index)) return getDefaultReturnValue();
moveToLastIndex(index);
return values[index];
}
@@ -315,15 +313,15 @@ public class LINKED_ENUM_MAP KEY_ENUM_VALUE_GENERIC_TYPE extends ENUM_MAP KEY_VA
}
@Override
public ObjectSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() {
public ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() {
if(entrySet == null) entrySet = new MapEntrySet();
return entrySet;
return (ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE>)entrySet;
}
@Override
public SET KEY_GENERIC_TYPE keySet() {
public ORDERED_SET KEY_GENERIC_TYPE keySet() {
if(keySet == null) keySet = new KeySet();
return keySet;
return (ORDERED_SET KEY_GENERIC_TYPE)keySet;
}
@Override
@@ -830,6 +828,7 @@ public class LINKED_ENUM_MAP KEY_ENUM_VALUE_GENERIC_TYPE extends ENUM_MAP KEY_VA
previous = from.ordinal() - 1;
index = from.ordinal();
next = from.ordinal();
if(!isSet(index)) throw new NoSuchElementException();
}
public boolean hasNext() {
@@ -30,8 +30,9 @@ import speiger.src.collections.PACKAGE.maps.interfaces.MAP;
import speiger.src.collections.PACKAGE.maps.interfaces.NAVIGABLE_MAP;
import speiger.src.collections.PACKAGE.sets.ABSTRACT_SET;
import speiger.src.collections.PACKAGE.sets.NAVIGABLE_SET;
#if TYPE_OBJECT
import speiger.src.collections.PACKAGE.sets.SET;
import speiger.src.collections.PACKAGE.sets.SORTED_SET;
#endif
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ABSTRACT_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
@@ -408,7 +409,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
@Override
public KEY_TYPE POLL_FIRST_ENTRY_KEY() {
if(tree == null) return EMPTY_KEY_VALUE;
if(tree == null) return getDefaultMinValue();
KEY_TYPE result = first.key;
removeNode(first);
return result;
@@ -422,7 +423,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
@Override
public KEY_TYPE POLL_LAST_ENTRY_KEY() {
if(tree == null) return EMPTY_KEY_VALUE;
if(tree == null) return getDefaultMaxValue();
KEY_TYPE result = last.key;
removeNode(last);
return result;
@@ -682,7 +683,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
}
@Override
public SORTED_SET KEY_GENERIC_TYPE keySet() {
public NAVIGABLE_SET KEY_GENERIC_TYPE keySet() {
return navigableKeySet();
}
@@ -1022,6 +1023,33 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
public KEY_TYPE ceiling(KEY_TYPE e) { return map.ceilingKey(e); }
@Override
public KEY_TYPE higher(KEY_TYPE e) { return map.higherKey(e); }
#if !TYPE_OBJECT
@Override
public CLASS_TYPE lower(CLASS_TYPE e) {
MAP.Entry KEY_VALUE_GENERIC_TYPE node = map.lowerEntry(OBJ_TO_KEY(e));
return node != null ? node.getKey() : null;
}
@Override
public CLASS_TYPE floor(CLASS_TYPE e) {
MAP.Entry KEY_VALUE_GENERIC_TYPE node = map.floorEntry(OBJ_TO_KEY(e));
return node != null ? node.getKey() : null;
}
@Override
public CLASS_TYPE higher(CLASS_TYPE e) {
MAP.Entry KEY_VALUE_GENERIC_TYPE node = map.higherEntry(OBJ_TO_KEY(e));
return node != null ? node.getKey() : null;
}
@Override
public CLASS_TYPE ceiling(CLASS_TYPE e) {
MAP.Entry KEY_VALUE_GENERIC_TYPE node = map.ceilingEntry(OBJ_TO_KEY(e));
return node != null ? node.getKey() : null;
}
#endif
@Override
public KEY_TYPE POLL_FIRST_KEY() { return map.POLL_FIRST_ENTRY_KEY(); }
@Override
@@ -1447,7 +1475,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
}
@Override
public SET KEY_GENERIC_TYPE keySet() {
public NAVIGABLE_SET KEY_GENERIC_TYPE keySet() {
return navigableKeySet();
}
@@ -1461,8 +1489,8 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
protected abstract BI_ITERATOR KEY_GENERIC_TYPE keyIterator(KEY_TYPE element);
protected abstract VALUE_BI_ITERATOR VALUE_GENERIC_TYPE valueIterator();
protected abstract BI_ITERATOR KEY_GENERIC_TYPE descendingKeyIterator();
protected KEY_TYPE lowKeyOrNull(Node KEY_VALUE_GENERIC_TYPE entry) { return entry == null ? EMPTY_KEY_VALUE : entry.key; }
protected KEY_TYPE highKeyOrNull(Node KEY_VALUE_GENERIC_TYPE entry) { return entry == null ? EMPTY_KEY_VALUE : entry.key; }
protected KEY_TYPE lowKeyOrNull(Node KEY_VALUE_GENERIC_TYPE entry) { return entry == null ? getDefaultMinValue() : entry.key; }
protected KEY_TYPE highKeyOrNull(Node KEY_VALUE_GENERIC_TYPE entry) { return entry == null ? getDefaultMaxValue() : entry.key; }
protected Node KEY_VALUE_GENERIC_TYPE next(Node KEY_VALUE_GENERIC_TYPE entry) { return entry.next(); }
protected Node KEY_VALUE_GENERIC_TYPE previous(Node KEY_VALUE_GENERIC_TYPE entry) { return entry.previous(); }
@@ -1533,7 +1561,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
map.removeNode(entry);
return result;
}
return EMPTY_KEY_VALUE;
return getDefaultMinValue();
}
@Override
@@ -1544,19 +1572,21 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
map.removeNode(entry);
return result;
}
return EMPTY_KEY_VALUE;
return getDefaultMaxValue();
}
@Override
public VALUE_TYPE FIRST_ENTRY_VALUE() {
Node KEY_VALUE_GENERIC_TYPE entry = subLowest();
return entry == null ? map.getDefaultReturnValue() : entry.value;
if(entry == null) throw new NoSuchElementException();
return entry.value;
}
@Override
public VALUE_TYPE LAST_ENTRY_VALUE() {
Node KEY_VALUE_GENERIC_TYPE entry = subHighest();
return entry == null ? map.getDefaultReturnValue() : entry.value;
if(entry == null) throw new NoSuchElementException();
return entry.value;
}
@Override
@@ -1632,7 +1662,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
@Override
public VALUE_TYPE REMOVE_VALUEOrDefault(KEY_TYPE key, VALUE_TYPE defaultValue) {
return inRange(key) ? map.REMOVE_VALUE(key) : defaultValue;
return inRange(key) ? map.REMOVE_VALUEOrDefault(key, defaultValue) : defaultValue;
}
#if TYPE_OBJECT && VALUE_OBJECT
@@ -1778,7 +1808,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
KEY_TYPE key = entry.ENTRY_KEY();
if (!inRange(key)) return false;
Node KEY_VALUE_GENERIC_TYPE node = map.findNode(key);
if (node != null && VALUE_EQUALS(node.getValue(), entry.getValue())) {
if (node != null && VALUE_EQUALS(node.ENTRY_VALUE(), entry.ENTRY_VALUE())) {
map.removeNode(node);
return true;
}
@@ -2023,26 +2053,36 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
class DecsendingSubEntryIterator extends SubMapEntryIterator implements ObjectBidirectionalIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE>
{
public DecsendingSubEntryIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, false);
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE previous() {
if(!hasPrevious()) throw new NoSuchElementException();
return nextEntry();
return previousEntry();
}
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE next() {
if(!hasNext()) throw new NoSuchElementException();
return previousEntry();
return nextEntry();
}
}
class AcsendingSubEntryIterator extends SubMapEntryIterator implements ObjectBidirectionalIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE>
{
public AcsendingSubEntryIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, true);
}
@Override
@@ -2061,26 +2101,36 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
class DecsendingSubKeyIterator extends SubMapEntryIterator implements BI_ITERATOR KEY_GENERIC_TYPE
{
public DecsendingSubKeyIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, false);
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
return nextEntry().key;
return previousEntry().key;
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return previousEntry().key;
return nextEntry().key;
}
}
class AcsendingSubKeyIterator extends SubMapEntryIterator implements BI_ITERATOR KEY_GENERIC_TYPE
{
public AcsendingSubKeyIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, true);
}
@Override
@@ -2099,7 +2149,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
class AcsendingSubValueIterator extends SubMapEntryIterator implements VALUE_BI_ITERATOR VALUE_GENERIC_TYPE
{
public AcsendingSubValueIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, true);
}
@Override
@@ -2118,39 +2168,60 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
class DecsendingSubValueIterator extends SubMapEntryIterator implements VALUE_BI_ITERATOR VALUE_GENERIC_TYPE
{
public DecsendingSubValueIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, false);
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
@Override
public VALUE_TYPE VALUE_PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
return nextEntry().value;
return previousEntry().value;
}
@Override
public VALUE_TYPE VALUE_NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return previousEntry().value;
return nextEntry().value;
}
}
abstract class SubMapEntryIterator
{
final boolean isForward;
boolean wasForward;
Node KEY_VALUE_GENERIC_TYPE lastReturned;
Node KEY_VALUE_GENERIC_TYPE next;
Node KEY_VALUE_GENERIC_TYPE previous;
boolean unboundForwardFence;
boolean unboundBackwardFence;
KEY_TYPE forwardFence;
KEY_TYPE backwardFence;
public SubMapEntryIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence)
{
public SubMapEntryIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence, boolean isForward) {
next = first;
this.forwardFence = forwardFence == null ? null : forwardFence.key;
this.backwardFence = backwardFence == null ? null : backwardFence.key;
previous = first == null ? null : movePrevious(first);
this.forwardFence = forwardFence == null ? EMPTY_KEY_VALUE : forwardFence.key;
this.backwardFence = backwardFence == null ? EMPTY_KEY_VALUE : backwardFence.key;
unboundForwardFence = forwardFence == null;
unboundBackwardFence = backwardFence == null;
this.isForward = isForward;
}
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
public boolean hasNext() {
@@ -2159,26 +2230,30 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
protected Node KEY_VALUE_GENERIC_TYPE nextEntry() {
lastReturned = next;
previous = next;
Node KEY_VALUE_GENERIC_TYPE result = next;
next = next.next();
wasForward = true;
next = moveNext(next);
wasForward = isForward;
return result;
}
public boolean hasPrevious() {
return next != null && (unboundBackwardFence || next.key != backwardFence);
return previous != null && (unboundBackwardFence || previous.key != backwardFence);
}
protected Node KEY_VALUE_GENERIC_TYPE previousEntry() {
lastReturned = next;
Node KEY_VALUE_GENERIC_TYPE result = next;
next = next.previous();
wasForward = false;
lastReturned = previous;
next = previous;
Node KEY_VALUE_GENERIC_TYPE result = previous;
previous = movePrevious(previous);
wasForward = !isForward;
return result;
}
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(next == lastReturned) next = moveNext(next);
if(previous == lastReturned) previous = movePrevious(previous);
if(wasForward && lastReturned.needsSuccessor()) next = lastReturned;
map.removeNode(lastReturned);
lastReturned = null;
@@ -2492,19 +2567,29 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
class DescendingKeyIterator extends MapEntryIterator implements BI_ITERATOR KEY_GENERIC_TYPE
{
public DescendingKeyIterator(Node KEY_VALUE_GENERIC_TYPE first) {
super(first);
super(first, false);
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
return nextEntry().key;
return previousEntry().key;
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return previousEntry().key;
return nextEntry().key;
}
}
@@ -2512,7 +2597,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
{
public AscendingMapEntryIterator(Node KEY_VALUE_GENERIC_TYPE first)
{
super(first);
super(first, true);
}
@Override
@@ -2531,7 +2616,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
class AscendingValueIterator extends MapEntryIterator implements VALUE_BI_ITERATOR VALUE_GENERIC_TYPE
{
public AscendingValueIterator(Node KEY_VALUE_GENERIC_TYPE first) {
super(first);
super(first, true);
}
@Override
@@ -2550,7 +2635,7 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
class AscendingKeyIterator extends MapEntryIterator implements BI_ITERATOR KEY_GENERIC_TYPE
{
public AscendingKeyIterator(Node KEY_VALUE_GENERIC_TYPE first) {
super(first);
super(first, true);
}
@Override
@@ -2568,13 +2653,24 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
abstract class MapEntryIterator
{
final boolean isForward;
boolean wasMoved = false;
Node KEY_VALUE_GENERIC_TYPE lastReturned;
Node KEY_VALUE_GENERIC_TYPE next;
Node KEY_VALUE_GENERIC_TYPE previous;
public MapEntryIterator(Node KEY_VALUE_GENERIC_TYPE first)
{
public MapEntryIterator(Node KEY_VALUE_GENERIC_TYPE first, boolean isForward) {
next = first;
previous = first == null ? null : movePrevious(first);
this.isForward = isForward;
}
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
public boolean hasNext() {
@@ -2583,26 +2679,30 @@ public class AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_
protected Node KEY_VALUE_GENERIC_TYPE nextEntry() {
lastReturned = next;
previous = next;
Node KEY_VALUE_GENERIC_TYPE result = next;
next = next.next();
wasMoved = true;
next = moveNext(next);
wasMoved = isForward;
return result;
}
public boolean hasPrevious() {
return next != null;
return previous != null;
}
protected Node KEY_VALUE_GENERIC_TYPE previousEntry() {
lastReturned = next;
Node KEY_VALUE_GENERIC_TYPE result = next;
next = next.previous();
wasMoved = false;
lastReturned = previous;
next = previous;
Node KEY_VALUE_GENERIC_TYPE result = previous;
previous = movePrevious(previous);
wasMoved = !isForward;
return result;
}
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(next == lastReturned) next = moveNext(next);
if(previous == lastReturned) previous = movePrevious(previous);
if(wasMoved && lastReturned.needsSuccessor()) next = lastReturned;
removeNode(lastReturned);
lastReturned = null;
@@ -30,8 +30,9 @@ import speiger.src.collections.PACKAGE.maps.interfaces.MAP;
import speiger.src.collections.PACKAGE.maps.interfaces.NAVIGABLE_MAP;
import speiger.src.collections.PACKAGE.sets.ABSTRACT_SET;
import speiger.src.collections.PACKAGE.sets.NAVIGABLE_SET;
#if TYPE_OBJECT
import speiger.src.collections.PACKAGE.sets.SET;
import speiger.src.collections.PACKAGE.sets.SORTED_SET;
#endif
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ABSTRACT_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
@@ -411,7 +412,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
@Override
public KEY_TYPE POLL_FIRST_ENTRY_KEY() {
if(tree == null) return EMPTY_KEY_VALUE;
if(tree == null) return getDefaultMinValue();
KEY_TYPE result = first.key;
removeNode(first);
return result;
@@ -425,7 +426,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
@Override
public KEY_TYPE POLL_LAST_ENTRY_KEY() {
if(tree == null) return EMPTY_KEY_VALUE;
if(tree == null) return getDefaultMaxValue();
KEY_TYPE result = last.key;
removeNode(last);
return result;
@@ -685,7 +686,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
}
@Override
public SORTED_SET KEY_GENERIC_TYPE keySet() {
public NAVIGABLE_SET KEY_GENERIC_TYPE keySet() {
return navigableKeySet();
}
@@ -1080,6 +1081,33 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
public KEY_TYPE ceiling(KEY_TYPE e) { return map.ceilingKey(e); }
@Override
public KEY_TYPE higher(KEY_TYPE e) { return map.higherKey(e); }
#if !TYPE_OBJECT
@Override
public CLASS_TYPE lower(CLASS_TYPE e) {
MAP.Entry KEY_VALUE_GENERIC_TYPE node = map.lowerEntry(OBJ_TO_KEY(e));
return node != null ? node.getKey() : null;
}
@Override
public CLASS_TYPE floor(CLASS_TYPE e) {
MAP.Entry KEY_VALUE_GENERIC_TYPE node = map.floorEntry(OBJ_TO_KEY(e));
return node != null ? node.getKey() : null;
}
@Override
public CLASS_TYPE higher(CLASS_TYPE e) {
MAP.Entry KEY_VALUE_GENERIC_TYPE node = map.higherEntry(OBJ_TO_KEY(e));
return node != null ? node.getKey() : null;
}
@Override
public CLASS_TYPE ceiling(CLASS_TYPE e) {
MAP.Entry KEY_VALUE_GENERIC_TYPE node = map.ceilingEntry(OBJ_TO_KEY(e));
return node != null ? node.getKey() : null;
}
#endif
@Override
public KEY_TYPE POLL_FIRST_KEY() { return map.POLL_FIRST_ENTRY_KEY(); }
@Override
@@ -1283,6 +1311,11 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
return keySet;
}
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE keySet() {
return navigableKeySet();
}
@Override
public NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE subMap(KEY_TYPE fromKey, boolean fromInclusive, KEY_TYPE toKey, boolean toInclusive) {
if (!inRange(fromKey, fromInclusive)) throw new IllegalArgumentException("fromKey out of range");
@@ -1369,6 +1402,11 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
return keySet;
}
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE keySet() {
return navigableKeySet();
}
@Override
public NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE subMap(KEY_TYPE fromKey, boolean fromInclusive, KEY_TYPE toKey, boolean toInclusive) {
if (!inRange(fromKey, fromInclusive)) throw new IllegalArgumentException("fromKey out of range");
@@ -1504,7 +1542,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
}
@Override
public SET KEY_GENERIC_TYPE keySet() {
public NAVIGABLE_SET KEY_GENERIC_TYPE keySet() {
return navigableKeySet();
}
@@ -1518,8 +1556,8 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
protected abstract BI_ITERATOR KEY_GENERIC_TYPE keyIterator(KEY_TYPE element);
protected abstract VALUE_BI_ITERATOR VALUE_GENERIC_TYPE valueIterator();
protected abstract BI_ITERATOR KEY_GENERIC_TYPE descendingKeyIterator();
protected KEY_TYPE lowKeyOrNull(Node KEY_VALUE_GENERIC_TYPE entry) { return entry == null ? EMPTY_KEY_VALUE : entry.key; }
protected KEY_TYPE highKeyOrNull(Node KEY_VALUE_GENERIC_TYPE entry) { return entry == null ? EMPTY_KEY_VALUE : entry.key; }
protected KEY_TYPE lowKeyOrNull(Node KEY_VALUE_GENERIC_TYPE entry) { return entry == null ? getDefaultMinValue() : entry.key; }
protected KEY_TYPE highKeyOrNull(Node KEY_VALUE_GENERIC_TYPE entry) { return entry == null ? getDefaultMaxValue() : entry.key; }
protected Node KEY_VALUE_GENERIC_TYPE next(Node KEY_VALUE_GENERIC_TYPE entry) { return entry.next(); }
protected Node KEY_VALUE_GENERIC_TYPE previous(Node KEY_VALUE_GENERIC_TYPE entry) { return entry.previous(); }
@@ -1590,7 +1628,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
map.removeNode(entry);
return result;
}
return EMPTY_KEY_VALUE;
return getDefaultMinValue();
}
@Override
@@ -1601,19 +1639,21 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
map.removeNode(entry);
return result;
}
return EMPTY_KEY_VALUE;
return getDefaultMaxValue();
}
@Override
public VALUE_TYPE FIRST_ENTRY_VALUE() {
Node KEY_VALUE_GENERIC_TYPE entry = subLowest();
return entry == null ? map.getDefaultReturnValue() : entry.value;
if(entry == null) throw new NoSuchElementException();
return entry.value;
}
@Override
public VALUE_TYPE LAST_ENTRY_VALUE() {
Node KEY_VALUE_GENERIC_TYPE entry = subHighest();
return entry == null ? map.getDefaultReturnValue() : entry.value;
if(entry == null) throw new NoSuchElementException();
return entry.value;
}
@Override
@@ -1689,7 +1729,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
@Override
public VALUE_TYPE REMOVE_VALUEOrDefault(KEY_TYPE key, VALUE_TYPE defaultValue) {
return inRange(key) ? map.REMOVE_VALUE(key) : defaultValue;
return inRange(key) ? map.REMOVE_VALUEOrDefault(key, defaultValue) : defaultValue;
}
#if TYPE_OBJECT && VALUE_OBJECT
@@ -1835,7 +1875,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
KEY_TYPE key = entry.ENTRY_KEY();
if (!inRange(key)) return false;
Node KEY_VALUE_GENERIC_TYPE node = map.findNode(key);
if (node != null && VALUE_EQUALS(node.getValue(), entry.getValue())) {
if (node != null && VALUE_EQUALS(node.ENTRY_VALUE(), entry.ENTRY_VALUE())) {
map.removeNode(node);
return true;
}
@@ -2080,26 +2120,36 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
class DecsendingSubEntryIterator extends SubMapEntryIterator implements ObjectBidirectionalIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE>
{
public DecsendingSubEntryIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, false);
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE previous() {
if(!hasPrevious()) throw new NoSuchElementException();
return nextEntry();
return previousEntry();
}
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE next() {
if(!hasNext()) throw new NoSuchElementException();
return previousEntry();
return nextEntry();
}
}
class AcsendingSubEntryIterator extends SubMapEntryIterator implements ObjectBidirectionalIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE>
{
public AcsendingSubEntryIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, true);
}
@Override
@@ -2118,26 +2168,36 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
class DecsendingSubKeyIterator extends SubMapEntryIterator implements BI_ITERATOR KEY_GENERIC_TYPE
{
public DecsendingSubKeyIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, false);
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
return nextEntry().key;
return previousEntry().key;
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return previousEntry().key;
return nextEntry().key;
}
}
class AcsendingSubKeyIterator extends SubMapEntryIterator implements BI_ITERATOR KEY_GENERIC_TYPE
{
public AcsendingSubKeyIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, true);
}
@Override
@@ -2156,7 +2216,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
class AcsendingSubValueIterator extends SubMapEntryIterator implements VALUE_BI_ITERATOR VALUE_GENERIC_TYPE
{
public AcsendingSubValueIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, true);
}
@Override
@@ -2175,39 +2235,60 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
class DecsendingSubValueIterator extends SubMapEntryIterator implements VALUE_BI_ITERATOR VALUE_GENERIC_TYPE
{
public DecsendingSubValueIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence) {
super(first, forwardFence, backwardFence);
super(first, forwardFence, backwardFence, false);
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
@Override
public VALUE_TYPE VALUE_PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
return nextEntry().value;
return previousEntry().value;
}
@Override
public VALUE_TYPE VALUE_NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return previousEntry().value;
return nextEntry().value;
}
}
abstract class SubMapEntryIterator
{
final boolean isForward;
boolean wasForward;
Node KEY_VALUE_GENERIC_TYPE lastReturned;
Node KEY_VALUE_GENERIC_TYPE next;
Node KEY_VALUE_GENERIC_TYPE previous;
boolean unboundForwardFence;
boolean unboundBackwardFence;
KEY_TYPE forwardFence;
KEY_TYPE backwardFence;
public SubMapEntryIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence)
{
public SubMapEntryIterator(Node KEY_VALUE_GENERIC_TYPE first, Node KEY_VALUE_GENERIC_TYPE forwardFence, Node KEY_VALUE_GENERIC_TYPE backwardFence, boolean isForward) {
next = first;
this.forwardFence = forwardFence == null ? null : forwardFence.key;
this.backwardFence = backwardFence == null ? null : backwardFence.key;
previous = first == null ? null : movePrevious(first);
this.forwardFence = forwardFence == null ? EMPTY_KEY_VALUE : forwardFence.key;
this.backwardFence = backwardFence == null ? EMPTY_KEY_VALUE : backwardFence.key;
unboundForwardFence = forwardFence == null;
unboundBackwardFence = backwardFence == null;
this.isForward = isForward;
}
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
public boolean hasNext() {
@@ -2216,26 +2297,30 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
protected Node KEY_VALUE_GENERIC_TYPE nextEntry() {
lastReturned = next;
previous = next;
Node KEY_VALUE_GENERIC_TYPE result = next;
next = next.next();
wasForward = true;
next = moveNext(next);
wasForward = isForward;
return result;
}
public boolean hasPrevious() {
return next != null && (unboundBackwardFence || next.key != backwardFence);
return previous != null && (unboundBackwardFence || previous.key != backwardFence);
}
protected Node KEY_VALUE_GENERIC_TYPE previousEntry() {
lastReturned = next;
Node KEY_VALUE_GENERIC_TYPE result = next;
next = next.previous();
wasForward = false;
lastReturned = previous;
next = previous;
Node KEY_VALUE_GENERIC_TYPE result = previous;
previous = movePrevious(previous);
wasForward = !isForward;
return result;
}
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(next == lastReturned) next = moveNext(next);
if(previous == lastReturned) previous = movePrevious(previous);
if(wasForward && lastReturned.needsSuccessor()) next = lastReturned;
map.removeNode(lastReturned);
lastReturned = null;
@@ -2549,19 +2634,29 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
class DescendingKeyIterator extends MapEntryIterator implements BI_ITERATOR KEY_GENERIC_TYPE
{
public DescendingKeyIterator(Node KEY_VALUE_GENERIC_TYPE first) {
super(first);
super(first, false);
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
@Override
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
return nextEntry().key;
return previousEntry().key;
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return previousEntry().key;
return nextEntry().key;
}
}
@@ -2569,7 +2664,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
{
public AscendingMapEntryIterator(Node KEY_VALUE_GENERIC_TYPE first)
{
super(first);
super(first, true);
}
@Override
@@ -2588,7 +2683,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
class AscendingValueIterator extends MapEntryIterator implements VALUE_BI_ITERATOR VALUE_GENERIC_TYPE
{
public AscendingValueIterator(Node KEY_VALUE_GENERIC_TYPE first) {
super(first);
super(first, true);
}
@Override
@@ -2607,7 +2702,7 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
class AscendingKeyIterator extends MapEntryIterator implements BI_ITERATOR KEY_GENERIC_TYPE
{
public AscendingKeyIterator(Node KEY_VALUE_GENERIC_TYPE first) {
super(first);
super(first, true);
}
@Override
@@ -2625,13 +2720,24 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
abstract class MapEntryIterator
{
final boolean isForward;
boolean wasMoved = false;
Node KEY_VALUE_GENERIC_TYPE lastReturned;
Node KEY_VALUE_GENERIC_TYPE next;
Node KEY_VALUE_GENERIC_TYPE previous;
public MapEntryIterator(Node KEY_VALUE_GENERIC_TYPE first)
{
public MapEntryIterator(Node KEY_VALUE_GENERIC_TYPE first, boolean isForward) {
next = first;
previous = first == null ? null : movePrevious(first);
this.isForward = isForward;
}
protected Node KEY_VALUE_GENERIC_TYPE moveNext(Node KEY_VALUE_GENERIC_TYPE node) {
return node.next();
}
protected Node KEY_VALUE_GENERIC_TYPE movePrevious(Node KEY_VALUE_GENERIC_TYPE node) {
return node.previous();
}
public boolean hasNext() {
@@ -2640,26 +2746,30 @@ public class RB_TREE_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_G
protected Node KEY_VALUE_GENERIC_TYPE nextEntry() {
lastReturned = next;
previous = next;
Node KEY_VALUE_GENERIC_TYPE result = next;
next = next.next();
wasMoved = true;
next = moveNext(next);
wasMoved = isForward;
return result;
}
public boolean hasPrevious() {
return next != null;
return previous != null;
}
protected Node KEY_VALUE_GENERIC_TYPE previousEntry() {
lastReturned = next;
Node KEY_VALUE_GENERIC_TYPE result = next;
next = next.previous();
wasMoved = false;
lastReturned = previous;
next = previous;
Node KEY_VALUE_GENERIC_TYPE result = previous;
previous = movePrevious(previous);
wasMoved = !isForward;
return result;
}
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(next == lastReturned) next = moveNext(next);
if(previous == lastReturned) previous = movePrevious(previous);
if(wasMoved && lastReturned.needsSuccessor()) next = lastReturned;
removeNode(lastReturned);
lastReturned = null;
@@ -557,8 +557,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
*/
public KEY_TYPE ENTRY_KEY();
public default CLASS_TYPE getKey() { return KEY_TO_OBJ(ENTRY_KEY()); }
#endif
#endif
#if !VALUE_OBJECT
/**
* Type Specific getValue method that reduces boxing/unboxing
@@ -1381,6 +1381,7 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
* @param initialSize the requested start capacity
*/
public BuilderCache(int initialSize) {
if(initialSize < 0) throw new IllegalStateException("Minimum Capacity is negative. This is not allowed");
keys = NEW_KEY_ARRAY(initialSize);
values = NEW_VALUE_ARRAY(initialSize);
}
@@ -34,7 +34,9 @@ public interface NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE extends SORTED_MAP KEY_VAL
/** @return a Type Specific pollLastEntry */
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE pollLastEntry();
/** @return a Type Specific Navigable Key Set */
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE keySet();
/**
* Creates a Wrapped NavigableMap that is Synchronized
* @return a new NavigableMap that is synchronized
@@ -1,6 +1,9 @@
package speiger.src.collections.PACKAGE.maps.interfaces;
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.sets.ORDERED_SET;
#endif
import speiger.src.collections.objects.collections.ObjectBidirectionalIterator;
import speiger.src.collections.objects.sets.ObjectOrderedSet;
/**
@@ -94,6 +97,10 @@ public interface ORDERED_MAP KEY_VALUE_GENERIC_TYPE extends MAP KEY_VALUE_GENERI
@Override
public ORDERED_MAP KEY_VALUE_GENERIC_TYPE copy();
@Override
public ORDERED_SET KEY_GENERIC_TYPE keySet();
@Override
public ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET();
/**
* Creates a Wrapped SortedMap that is Synchronized
@@ -9,9 +9,11 @@ import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#endif
import speiger.src.collections.PACKAGE.sets.SET;
import speiger.src.collections.PACKAGE.sets.SORTED_SET;
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
#if !TYPE_OBJECT
import speiger.src.collections.objects.sets.ObjectSortedSet;
#endif
import speiger.src.collections.objects.collections.ObjectBidirectionalIterator;
/**
@@ -31,7 +33,7 @@ public interface SORTED_MAP KEY_VALUE_GENERIC_TYPE extends SortedMap<CLASS_TYPE,
public SORTED_MAP KEY_VALUE_GENERIC_TYPE copy();
@Override
public SET KEY_GENERIC_TYPE keySet();
public SORTED_SET KEY_GENERIC_TYPE keySet();
@Override
public VALUE_COLLECTION VALUE_GENERIC_TYPE values();
@@ -155,11 +157,11 @@ public interface SORTED_MAP KEY_VALUE_GENERIC_TYPE extends SortedMap<CLASS_TYPE,
public VALUE_TYPE LAST_ENTRY_VALUE();
@Override
public default SORTED_MAP KEY_VALUE_GENERIC_TYPE subMap(CLASS_TYPE fromKey, CLASS_TYPE toKey) { return subMap(OBJ_TO_KEY(fromKey), OBJ_TO_KEY(toKey)); }
public SORTED_MAP KEY_VALUE_GENERIC_TYPE subMap(CLASS_TYPE fromKey, CLASS_TYPE toKey);
@Override
public default SORTED_MAP KEY_VALUE_GENERIC_TYPE headMap(CLASS_TYPE toKey) { return headMap(OBJ_TO_KEY(toKey)); }
public SORTED_MAP KEY_VALUE_GENERIC_TYPE headMap(CLASS_TYPE toKey);
@Override
public default SORTED_MAP KEY_VALUE_GENERIC_TYPE tailMap(CLASS_TYPE fromKey) { return tailMap(OBJ_TO_KEY(fromKey)); }
public SORTED_MAP KEY_VALUE_GENERIC_TYPE tailMap(CLASS_TYPE fromKey);
#endif
/**
@@ -106,11 +106,16 @@ public class ARRAY_FIFO_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEUE K
@Override
public void clear() {
if(first != last) {
#if TYPE_OBJECT
Arrays.fill(array, null);
#endif
first = last = 0;
}
else if(first != 0) {
first = last = 0;
}
}
@Override
public void enqueue(KEY_TYPE e) {
@@ -152,9 +157,9 @@ public class ARRAY_FIFO_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEUE K
@Override
public KEY_TYPE peek(int index) {
if(first == last || index < 0 || index > size()) throw new NoSuchElementException();
if(first == last || index < 0 || index >= size()) throw new NoSuchElementException();
index += first;
return index > array.length ? array[index-array.length] : array[index];
return index >= array.length ? array[index-array.length] : array[index];
}
@Override
@@ -429,6 +434,7 @@ public class ARRAY_FIFO_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEUE K
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
KEY_TYPE value = array[index];
removeIndex(index);
index = ++index % array.length;
@@ -187,7 +187,7 @@ public class ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUE
@Override
public void enqueue(KEY_TYPE e) {
if(size == array.length) array = Arrays.copyOf(array, (int)Math.max(Math.min((long)array.length + (array.length >> 1), SanityChecks.MAX_ARRAY_SIZE), size+1));
if(size == array.length) array = Arrays.copyOf(array, (int)Math.max(Math.min((long)array.length + (long)(array.length >> 1), (long)SanityChecks.MAX_ARRAY_SIZE), size+1));
if(firstIndex != -1){
int compare = comparator == null ? COMPAREABLE_TO_KEY(e, array[firstIndex]) : comparator.compare(e, array[firstIndex]);
if(compare < 0) firstIndex = size;
@@ -414,6 +414,7 @@ public class ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUE
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return dequeue();
}
}
@@ -207,7 +207,7 @@ public class HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEU
@Override
public void enqueue(KEY_TYPE e) {
if(size == array.length) array = Arrays.copyOf(array, (int)Math.max(Math.min((long)array.length + (array.length >> 1), SanityChecks.MAX_ARRAY_SIZE), size+1));
if(size == array.length) array = Arrays.copyOf(array, (int)Math.max(Math.min((long)array.length + (long)(array.length >> 1), (long)SanityChecks.MAX_ARRAY_SIZE), size+1));
array[size++] = e;
ARRAYS.shiftUp(array, size-1, comparator);
}
@@ -389,6 +389,7 @@ public class HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEU
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return dequeue();
}
}
@@ -888,15 +888,11 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public COMPARATOR KEY_GENERIC_TYPE comparator() { return comparator; }
public KEY_TYPE getDefaultMaxValue() { return super.getDefaultMinValue(); }
public KEY_TYPE getDefaultMinValue() { return super.getDefaultMaxValue(); }
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE subSet(KEY_TYPE fromElement, boolean fromInclusive, KEY_TYPE toElement, boolean toInclusive) {
if(!inRange(fromElement, fromInclusive)) throw new IllegalArgumentException("fromElement out of range");
if(!inRange(toElement, toInclusive)) throw new IllegalArgumentException("toElement out of range");
return new DescendingSubSetBRACES(set, false, fromElement, fromInclusive, false, toElement, toInclusive);
return new DescendingSubSetBRACES(set, false, toElement, toInclusive, false, fromElement, fromInclusive);
}
@Override
@@ -973,21 +969,15 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
#if !TYPE_OBJECT
@Override
public void setDefaultMaxValue(KEY_TYPE value) { set.setDefaultMaxValue(value); }
@Override
public KEY_TYPE getDefaultMaxValue() { return set.getDefaultMaxValue(); }
@Override
public void setDefaultMinValue(KEY_TYPE value) { set.setDefaultMinValue(value); }
@Override
public KEY_TYPE getDefaultMinValue() { return set.getDefaultMinValue(); }
#else
public KEY_TYPE getDefaultMaxValue() { return null; }
public KEY_TYPE getDefaultMinValue() { return null; }
#endif
@Override
public abstract BI_ITERATOR KEY_GENERIC_TYPE iterator();
@@ -1298,6 +1288,7 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
{
Entry KEY_GENERIC_TYPE lastReturned;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE previous;
boolean forwards = false;
boolean unboundForwardFence;
boolean unboundBackwardFence;
@@ -1307,6 +1298,7 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public AscendingSubSetIterator(Entry KEY_GENERIC_TYPE first, Entry KEY_GENERIC_TYPE forwardFence, Entry KEY_GENERIC_TYPE backwardFence)
{
next = first;
previous = first == null ? null : first.previous();
this.forwardFence = forwardFence == null ? EMPTY_KEY_VALUE : forwardFence.key;
this.backwardFence = backwardFence == null ? EMPTY_KEY_VALUE : backwardFence.key;
unboundForwardFence = forwardFence == null;
@@ -1322,6 +1314,7 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
lastReturned = next;
previous = next;
KEY_TYPE result = next.key;
next = next.next();
forwards = true;
@@ -1330,15 +1323,16 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public boolean hasPrevious() {
return next != null && (unboundBackwardFence || next.key != backwardFence);
return previous != null && (unboundBackwardFence || previous.key != backwardFence);
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
lastReturned = next;
KEY_TYPE result = next.key;
next = next.previous();
lastReturned = previous;
next = previous;
KEY_TYPE result = previous.key;
previous = previous.previous();
forwards = false;
return result;
}
@@ -1346,6 +1340,8 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(previous == lastReturned) previous = previous.previous();
if(next == lastReturned) next = next.next();
if(forwards && lastReturned.needsSuccessor()) next = lastReturned;
set.removeNode(lastReturned);
lastReturned = null;
@@ -1356,6 +1352,7 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
{
Entry KEY_GENERIC_TYPE lastReturned;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE previous;
boolean forwards = false;
boolean unboundForwardFence;
boolean unboundBackwardFence;
@@ -1365,6 +1362,7 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public DescendingSubSetIterator(Entry KEY_GENERIC_TYPE first, Entry KEY_GENERIC_TYPE forwardFence, Entry KEY_GENERIC_TYPE backwardFence)
{
next = first;
previous = first == null ? null : first.next();
this.forwardFence = forwardFence == null ? EMPTY_KEY_VALUE : forwardFence.key;
this.backwardFence = backwardFence == null ? EMPTY_KEY_VALUE : backwardFence.key;
unboundForwardFence = forwardFence == null;
@@ -1380,6 +1378,7 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
lastReturned = next;
previous = next;
KEY_TYPE result = next.key;
next = next.previous();
forwards = false;
@@ -1388,15 +1387,16 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public boolean hasPrevious() {
return next != null && (unboundBackwardFence || next.key != backwardFence);
return previous != null && (unboundBackwardFence || previous.key != backwardFence);
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
lastReturned = next;
KEY_TYPE result = next.key;
next = next.next();
lastReturned = previous;
next = previous;
KEY_TYPE result = previous.key;
previous = previous.next();
forwards = true;
return result;
}
@@ -1404,6 +1404,8 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(previous == lastReturned) previous = previous.next();
if(next == lastReturned) next = next.previous();
if(forwards && lastReturned.needsSuccessor()) next = lastReturned;
set.removeNode(lastReturned);
lastReturned = null;
@@ -1415,11 +1417,13 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
{
Entry KEY_GENERIC_TYPE lastReturned;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE previous;
boolean forwards = false;
public AscendingSetIterator(Entry KEY_GENERIC_TYPE first)
{
next = first;
previous = first == null ? null : first.previous();
}
@Override
@@ -1431,6 +1435,7 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
lastReturned = next;
previous = next;
KEY_TYPE result = next.key;
next = next.next();
forwards = true;
@@ -1439,15 +1444,16 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public boolean hasPrevious() {
return next != null;
return previous != null;
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
lastReturned = next;
KEY_TYPE result = next.key;
next = next.previous();
lastReturned = previous;
next = previous;
KEY_TYPE result = previous.key;
previous = previous.previous();
forwards = false;
return result;
}
@@ -1455,6 +1461,8 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(lastReturned == previous) previous = previous.previous();
if(lastReturned == next) next = next.next();
if(forwards && lastReturned.needsSuccessor()) next = lastReturned;
removeNode(lastReturned);
lastReturned = null;
@@ -1465,11 +1473,13 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
{
Entry KEY_GENERIC_TYPE lastReturned;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE previous;
boolean forwards = false;
public DescendingSetIterator(Entry KEY_GENERIC_TYPE first)
{
next = first;
previous = first == null ? null : first.next();
}
@Override
@@ -1481,6 +1491,7 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
lastReturned = next;
previous = next;
KEY_TYPE result = next.key;
next = next.previous();
forwards = false;
@@ -1489,15 +1500,16 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public boolean hasPrevious() {
return next != null;
return previous != null;
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
lastReturned = next;
KEY_TYPE result = next.key;
next = next.next();
lastReturned = previous;
next = previous;
KEY_TYPE result = previous.key;
previous = previous.next();
forwards = true;
return result;
}
@@ -1505,6 +1517,8 @@ public class AVL_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(lastReturned == previous) previous = previous.next();
if(lastReturned == next) next = next.previous();
if(forwards && lastReturned.needsSuccessor()) next = lastReturned;
removeNode(lastReturned);
lastReturned = null;
@@ -54,6 +54,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
* @throws NegativeArraySizeException if the capacity is negative
*/
public ARRAY_SET(int capacity) {
if(capacity < 0) throw new IllegalStateException("Size has to be 0 or greater");
data = NEW_KEY_ARRAY(capacity);
}
@@ -168,7 +169,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
}
else if(index != size - 1) {
o = data[index];
System.arraycopy(data, index+1, data, index, size - index);
System.arraycopy(data, index+1, data, index, size - index - 1);
data[size-1] = o;
}
return false;
@@ -555,347 +556,6 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
return a;
}
// Disabled until a Proper Implementation can be thought out or it is decided that the interface is thrown out.
// private class SubSet extends ABSTRACT_SET KEY_GENERIC_TYPE implements SORTED_SET KEY_GENERIC_TYPE {
// int offset;
// int length;
//
// SubSet(int offset, int length) {
// this.offset = offset;
// this.length = length;
// }
//
// int end() { return offset+length; }
//
// @Override
// public boolean add(KEY_TYPE o) {
// int index = findIndex(o);
// if(index == -1) {
// if(data.length == size) data = Arrays.copyOf(data, size == 0 ? 2 : size * 2);
// if(end() != size) System.arraycopy(data, end(), data, end()+1, size-(offset+length));
// data[end()] = o;
// size++;
// length++;
// return true;
// }
// return false;
// }
//
// @Override
// public boolean addAndMoveToFirst(KEY_TYPE o) {
// int index = findIndex(o);
// if(index == -1) {
// if(data.length == size) data = Arrays.copyOf(data, size == 0 ? 2 : size * 2);
// System.arraycopy(data, offset, data, offset+1, size-offset);
// data[offset] = o;
// size++;
// length++;
// return true;
// }
// else if(index != 0) {
// o = data[index];
// System.arraycopy(data, offset, data, offset+1, index-offset);
// data[offset] = o;
// }
// return false;
// }
//
// @Override
// public boolean addAndMoveToLast(KEY_TYPE o) {
// int index = findIndex(o);
// if(index == -1) {
// if(data.length == size) data = Arrays.copyOf(data, size == 0 ? 2 : size * 2);
// System.arraycopy(data, end()+1, data, end(), size-end());
// data[end()] = o;
// size++;
// length++;
// return true;
// }
// else if(index != 0) {
// o = data[index];
// System.arraycopy(data, offset+1, data, offset, index-offset);
// data[offset+length] = o;
// }
// return false;
// }
//
// @Override
// public boolean moveToFirst(KEY_TYPE o) {
// int index = findIndex(o);
// if(index > offset) {
// o = data[index];
// System.arraycopy(data, offset, data, offset+1, index-offset);
// data[offset] = o;
// return true;
// }
// return false;
// }
//
// @Override
// public boolean moveToLast(KEY_TYPE o) {
// int index = findIndex(o);
// if(index != -1 && index < end()-1) {
// o = data[index];
// System.arraycopy(data, index+1, data, index, end()-index-1);
// data[end()-1] = o;
// return true;
// }
// return false;
// }
//
//#if !TYPE_OBJECT
// @Override
// public boolean contains(KEY_TYPE e) {
// return findIndex(e) != -1;
// }
//
//#endif
// @Override
// public boolean contains(Object e) {
// return findIndex(e) != -1;
// }
//
// @Override
// public KEY_TYPE FIRST_KEY() {
// if(length == 0) throw new NoSuchElementException();
// return data[offset];
// }
//
// @Override
// public KEY_TYPE LAST_KEY() {
// if(length == 0) throw new NoSuchElementException();
// return data[end()-1];
// }
//
//#if !TYPE_OBJECT
// @Override
// public boolean remove(KEY_TYPE o) {
// int index = findIndex(o);
// if(index != -1) {
// size--;
// length--;
// if(index != size) System.arraycopy(data, index+1, data, index, size - index);
// return true;
// }
// return false;
// }
//
//#endif
// @Override
// public boolean remove(Object o) {
// int index = findIndex(o);
// if(index != -1) {
// size--;
// length--;
// if(index != size) System.arraycopy(data, index+1, data, index, size - index);
//#if TYPE_OBJECT
// data[size] = EMPTY_KEY_VALUE;
//#endif
// return true;
// }
// return false;
// }
//
// @Override
// public KEY_TYPE POLL_FIRST_KEY() {
// if(length == 0) throw new NoSuchElementException();
// size--;
// length--;
// KEY_TYPE result = data[offset];
// System.arraycopy(data, offset+1, data, offset, size-offset);
//#if TYPE_OBJECT
// data[size] = EMPTY_KEY_VALUE;
//#endif
// return result;
// }
//
// @Override
// public KEY_TYPE POLL_LAST_KEY() {
// if(length == 0) throw new NoSuchElementException();
// KEY_TYPE result = data[offset+length];
// size--;
// length--;
// System.arraycopy(data, end()+1, data, end(), size-end());
//#if TYPE_OBJECT
// data[size] = EMPTY_KEY_VALUE;
//#endif
// return result;
// }
//
// @Override
// public COMPARATOR KEY_GENERIC_TYPE comparator() {
// return null;
// }
//
// @Override
// public BI_ITERATOR KEY_GENERIC_TYPE iterator() {
// return new SetIterator(offset);
// }
//
// @Override
// public BI_ITERATOR KEY_GENERIC_TYPE iterator(KEY_TYPE fromElement) {
// int index = findIndex(fromElement);
// if(index != -1) return new SetIterator(index);
// throw new NoSuchElementException();
// }
//
// @Override
// public SubSet copy() { throw new UnsupportedOperationException(); }
//
// @Override
// public SORTED_SET KEY_GENERIC_TYPE subSet(KEY_TYPE fromElement, KEY_TYPE toElement) {
// int fromIndex = findIndex(fromElement);
// int toIndex = findIndex(toElement);
// if(fromIndex == -1 || toIndex == -1) throw new NoSuchElementException();
// return new SubSet(fromIndex, toIndex - fromIndex + 1);
// }
//
// @Override
// public SORTED_SET KEY_GENERIC_TYPE headSet(KEY_TYPE toElement) {
// int toIndex = findIndex(toElement);
// if(toIndex == -1) throw new NoSuchElementException();
// return new SubSet(0, toIndex+1);
// }
//
// @Override
// public SORTED_SET KEY_GENERIC_TYPE tailSet(KEY_TYPE fromElement) {
// int fromIndex = findIndex(fromElement);
// if(fromIndex == -1) throw new NoSuchElementException();
// return new SubSet(fromIndex, size - fromIndex);
// }
//
// @Override
// public int size() {
// return length;
// }
//
//#if !TYPE_OBJECT
// @Override
// public KEY_TYPE[] TO_ARRAY(KEY_TYPE[] a) {
// if(a == null || a.length < size()) return Arrays.copyOfRange(data, offset, end());
// System.arraycopy(data, offset, a, 0, size());
// return a;
// }
//
//#endif
// @Override
// @Deprecated
// public Object[] toArray() {
// Object[] obj = new Object[size()];
// for(int i = 0;i<size();i++)
// obj[i] = KEY_TO_OBJ(data[offset+i]);
// return obj;
// }
//
// @Override
// @Primitive
// public <E> E[] toArray(E[] a) {
// if(a == null) a = (E[])new Object[size()];
// else if(a.length < size()) a = (E[])ObjectArrays.newArray(a.getClass().getComponentType(), size());
// for(int i = 0;i<size();i++)
// a[i] = (E)KEY_TO_OBJ(data[offset+i]);
// return a;
// }
//
//#if !TYPE_OBJECT
// protected int findIndex(KEY_TYPE o) {
// for(int i = length-1;i>=0;i--)
// if(KEY_EQUALS(data[offset+i], o)) return i + offset;
// return -1;
// }
//
//#endif
// protected int findIndex(Object o) {
// for(int i = length-1;i>=0;i--)
// if(EQUALS_KEY_TYPE(data[offset+i], o)) return i + offset;
// return -1;
// }
//
// private class SetIterator implements LIST_ITERATOR KEY_GENERIC_TYPE {
// int index;
// int lastReturned = -1;
//
// public SetIterator(int index) {
// this.index = index;
// }
//
// @Override
// public boolean hasNext() {
// return index < size();
// }
//
// @Override
// public KEY_TYPE NEXT() {
// if(!hasNext()) throw new NoSuchElementException();
// lastReturned = index;
// return data[index++];
// }
//
// @Override
// public boolean hasPrevious() {
// return index > 0;
// }
//
// @Override
// public KEY_TYPE PREVIOUS() {
// if(!hasPrevious()) throw new NoSuchElementException();
// lastReturned = index;
// return data[index--];
// }
//
// @Override
// public int nextIndex() {
// return index;
// }
//
// @Override
// public int previousIndex() {
// return index-1;
// }
//
// @Override
// public void remove() {
// if(lastReturned == -1)
// throw new IllegalStateException();
// SubSet.this.remove(data[lastReturned]);
// if(lastReturned < index)
// index--;
// lastReturned = -1;
// }
//
// #if TYPE_OBJECT
// @Override
// public void set(Object e) { throw new UnsupportedOperationException(); }
//
// @Override
// public void add(Object e) { throw new UnsupportedOperationException(); }
//
// #else
// @Override
// public void set(KEY_TYPE e) { throw new UnsupportedOperationException(); }
//
// @Override
// public void add(KEY_TYPE e) { throw new UnsupportedOperationException(); }
//
// #endif
// @Override
// public int skip(int amount) {
// if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
// int steps = Math.min(amount, (size() - 1) - index);
// index += steps;
// return steps;
// }
//
// @Override
// public int back(int amount) {
// if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
// int steps = Math.min(amount, index);
// index -= steps;
// return steps;
// }
// }
// }
private class SetIterator implements LIST_ITERATOR KEY_GENERIC_TYPE {
int index;
int lastReturned = -1;
@@ -924,8 +584,8 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
lastReturned = index;
return data[index--];
--index;
return data[(lastReturned = index)];
}
@Override
@@ -964,8 +624,9 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
@Override
public int skip(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, (size() - 1) - index);
int steps = Math.min(amount, size() - index);
index += steps;
if(steps > 0) lastReturned = Math.min(index-1, size()-1);
return steps;
}
@@ -974,6 +635,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, index);
index -= steps;
if(steps > 0) lastReturned = Math.min(index, size()-1);
return steps;
}
}
@@ -502,6 +502,30 @@ public class IMMUTABLE_HASH_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERI
}
}
@Override
public int skip(int amount) {
int result = 0;
while(next != -1 && result != amount) {
current = previous = next;
next = (int)(links[current]);
result++;
}
if(index >= 0) index+=result;
return result;
}
@Override
public int back(int amount) {
int result = 0;
while(previous != -1 && result != amount) {
current = next = previous;
previous = (int)(links[current] >> 32);
result++;
}
if(index >= 0) index-=result;
return result;
}
@Override
public boolean hasNext() {
return next != -1;
@@ -530,9 +554,8 @@ public class IMMUTABLE_HASH_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERI
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
current = previous;
current = next = previous;
previous = (int)(links[current] >> 32);
next = current;
if(index >= 0) index--;
return keys[current];
}
@@ -540,9 +563,8 @@ public class IMMUTABLE_HASH_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERI
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
current = next;
current = previous = next;
next = (int)(links[current]);
previous = current;
if(index >= 0) index++;
return keys[current];
}
@@ -123,7 +123,7 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
* @throws IllegalStateException if offset and length causes to step outside of the arrays range
*/
public LINKED_CUSTOM_HASH_SET(KEY_TYPE[] array, int offset, int length, float loadFactor, STRATEGY KEY_SUPER_GENERIC_TYPE strategy) {
this(length < 0 ? 0 : length, strategy);
this(length, strategy);
SanityChecks.checkArrayCapacity(array.length, offset, length);
for(int i = 0;i<length;i++) add(array[offset+i]);
}
@@ -237,6 +237,7 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
}
containsNull = true;
onNodeAdded(nullIndex);
moveToFirstIndex(nullIndex);
}
else {
int pos = HashUtil.mix(strategy.hashCode(o)) & mask;
@@ -249,6 +250,7 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
}
keys[pos] = o;
onNodeAdded(pos);
moveToFirstIndex(pos);
}
if(size++ >= maxFill) rehash(HashUtil.arraySize(size+1, loadFactor));
return true;
@@ -282,7 +284,7 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
@Override
public boolean moveToFirst(KEY_TYPE o) {
if(strategy.equals(FIRST_KEY(), o)) return false;
if(isEmpty() || strategy.equals(FIRST_KEY(), o)) return false;
if(strategy.equals(o, EMPTY_KEY_VALUE)) {
if(containsNull) {
moveToFirstIndex(nullIndex);
@@ -304,7 +306,7 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
@Override
public boolean moveToLast(KEY_TYPE o) {
if(strategy.equals(LAST_KEY(), o)) return false;
if(isEmpty() || strategy.equals(LAST_KEY(), o)) return false;
if(strategy.equals(o, EMPTY_KEY_VALUE)) {
if(containsNull) {
moveToLastIndex(nullIndex);
@@ -370,8 +372,7 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
public KEY_TYPE POLL_FIRST_KEY() {
if(size == 0) throw new NoSuchElementException();
int pos = firstIndex;
firstIndex = (int)links[pos];
if(0 <= firstIndex) links[firstIndex] |= 0xFFFFFFFF00000000L;
onNodeRemoved(pos);
KEY_TYPE result = keys[pos];
size--;
if(strategy.equals(result, EMPTY_KEY_VALUE)) {
@@ -393,8 +394,7 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
public KEY_TYPE POLL_LAST_KEY() {
if(size == 0) throw new NoSuchElementException();
int pos = lastIndex;
lastIndex = (int)(links[pos] >>> 32);
if(0 <= lastIndex) links[lastIndex] |= 0xFFFFFFFFL;
onNodeRemoved(pos);
KEY_TYPE result = keys[pos];
size--;
if(strategy.equals(result, EMPTY_KEY_VALUE)) {
@@ -508,7 +508,7 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
@Override
public void clearAndTrim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size) {
if(request >= nullIndex) {
clear();
return;
}
@@ -715,6 +715,30 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
return previous != -1;
}
@Override
public int skip(int amount) {
int result = 0;
while(next != -1 && result != amount) {
current = previous = next;
next = (int)(links[current]);
result++;
}
if(index >= 0) index+=result;
return result;
}
@Override
public int back(int amount) {
int result = 0;
while(previous != -1 && result != amount) {
current = next = previous;
previous = (int)(links[current] >> 32);
result++;
}
if(index >= 0) index-=result;
return result;
}
@Override
public int nextIndex() {
ensureIndexKnown();
@@ -773,9 +797,8 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
current = previous;
current = next = previous;
previous = (int)(links[current] >> 32);
next = current;
if(index >= 0) index--;
return keys[current];
}
@@ -783,9 +806,8 @@ public class LINKED_CUSTOM_HASH_SET KEY_GENERIC_TYPE extends CUSTOM_HASH_SET KEY
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
current = next;
current = previous = next;
next = (int)(links[current]);
previous = current;
if(index >= 0) index++;
return keys[current];
}
@@ -110,7 +110,7 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
* @throws IllegalStateException if offset and length causes to step outside of the arrays range
*/
public LINKED_HASH_SET(KEY_TYPE[] array, int offset, int length, float loadFactor) {
this(length < 0 ? 0 : length);
this(length);
SanityChecks.checkArrayCapacity(array.length, offset, length);
for(int i = 0;i<length;i++) add(array[offset+i]);
}
@@ -208,6 +208,7 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
}
containsNull = true;
onNodeAdded(nullIndex);
moveToFirstIndex(nullIndex);
}
else {
int pos = HashUtil.mix(KEY_TO_HASH(o)) & mask;
@@ -220,6 +221,7 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
}
keys[pos] = o;
onNodeAdded(pos);
moveToFirstIndex(pos);
}
if(size++ >= maxFill) rehash(HashUtil.arraySize(size+1, loadFactor));
return true;
@@ -253,7 +255,7 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
@Override
public boolean moveToFirst(KEY_TYPE o) {
if(KEY_EQUALS(FIRST_KEY(), o)) return false;
if(isEmpty() || KEY_EQUALS(FIRST_KEY(), o)) return false;
if(KEY_EQUALS_NULL(o)) {
if(containsNull) {
moveToFirstIndex(nullIndex);
@@ -275,7 +277,7 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
@Override
public boolean moveToLast(KEY_TYPE o) {
if(KEY_EQUALS(LAST_KEY(), o)) return false;
if(isEmpty() || KEY_EQUALS(LAST_KEY(), o)) return false;
if(KEY_EQUALS_NULL(o)) {
if(containsNull) {
moveToLastIndex(nullIndex);
@@ -341,8 +343,7 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
public KEY_TYPE POLL_FIRST_KEY() {
if(size == 0) throw new NoSuchElementException();
int pos = firstIndex;
firstIndex = (int)links[pos];
if(0 <= firstIndex) links[firstIndex] |= 0xFFFFFFFF00000000L;
onNodeRemoved(pos);
KEY_TYPE result = keys[pos];
size--;
if(KEY_EQUALS_NULL(result)) {
@@ -364,8 +365,7 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
public KEY_TYPE POLL_LAST_KEY() {
if(size == 0) throw new NoSuchElementException();
int pos = lastIndex;
lastIndex = (int)(links[pos] >>> 32);
if(0 <= lastIndex) links[lastIndex] |= 0xFFFFFFFFL;
onNodeRemoved(pos);
KEY_TYPE result = keys[pos];
size--;
if(KEY_EQUALS_NULL(result)) {
@@ -599,7 +599,7 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
@Override
public void clearAndTrim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size) {
if(request >= nullIndex) {
clear();
return;
}
@@ -676,6 +676,30 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
}
}
@Override
public int skip(int amount) {
int result = 0;
while(next != -1 && result != amount) {
current = previous = next;
next = (int)(links[current]);
result++;
}
if(index >= 0) index+=result;
return result;
}
@Override
public int back(int amount) {
int result = 0;
while(previous != -1 && result != amount) {
current = next = previous;
previous = (int)(links[current] >> 32);
result++;
}
if(index >= 0) index-=result;
return result;
}
@Override
public boolean hasNext() {
return next != -1;
@@ -744,9 +768,8 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
current = previous;
current = next = previous;
previous = (int)(links[current] >> 32);
next = current;
if(index >= 0) index--;
return keys[current];
}
@@ -754,9 +777,8 @@ public class LINKED_HASH_SET KEY_GENERIC_TYPE extends HASH_SET KEY_GENERIC_TYPE
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
current = next;
current = previous = next;
next = (int)(links[current]);
previous = current;
if(index >= 0) index++;
return keys[current];
}
@@ -373,10 +373,10 @@ public class CUSTOM_HASH_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_T
#endif
@Override
public boolean trim(int size) {
int newSize = HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor));
if(newSize >= nullIndex || size >= Math.min((int)Math.ceil(newSize * loadFactor), newSize - 1)) return false;
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= nullIndex || this.size >= Math.min((int)Math.ceil(request * loadFactor), request - 1)) return false;
try {
rehash(newSize);
rehash(request);
}
catch(OutOfMemoryError e) { return false; }
return true;
@@ -385,7 +385,7 @@ public class CUSTOM_HASH_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_T
@Override
public void clearAndTrim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size) {
if(request >= nullIndex) {
clear();
return;
}
@@ -589,7 +589,7 @@ public class CUSTOM_HASH_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_T
state = keys[nullIndex];
empty = false;
}
for(int i = 0;i<size;i++) {
for(int i = nullIndex-1;i>=0;i--) {
if(strategy.equals(keys[i], EMPTY_KEY_VALUE)) continue;
if(empty) {
empty = false;
@@ -340,10 +340,10 @@ public class HASH_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE imp
#endif
@Override
public boolean trim(int size) {
int newSize = HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor));
if(newSize >= nullIndex || size >= Math.min((int)Math.ceil(newSize * loadFactor), newSize - 1)) return false;
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= nullIndex || this.size >= Math.min((int)Math.ceil(request * loadFactor), request - 1)) return false;
try {
rehash(newSize);
rehash(request);
}
catch(OutOfMemoryError e) { return false; }
return true;
@@ -352,7 +352,7 @@ public class HASH_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE imp
@Override
public void clearAndTrim(int size) {
int request = Math.max(minCapacity, HashUtil.nextPowerOfTwo((int)Math.ceil(size / loadFactor)));
if(request >= size) {
if(request >= nullIndex) {
clear();
return;
}
@@ -452,7 +452,7 @@ public class HASH_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE imp
state = keys[nullIndex];
empty = false;
}
for(int i = 0;i<size;i++) {
for(int i = nullIndex-1;i>=0;i--) {
if(KEY_EQUALS_NULL(keys[i])) continue;
if(empty) {
empty = false;
@@ -949,15 +949,11 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public COMPARATOR KEY_GENERIC_TYPE comparator() { return comparator; }
public KEY_TYPE getDefaultMaxValue() { return super.getDefaultMinValue(); }
public KEY_TYPE getDefaultMinValue() { return super.getDefaultMaxValue(); }
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE subSet(KEY_TYPE fromElement, boolean fromInclusive, KEY_TYPE toElement, boolean toInclusive) {
if(!inRange(fromElement, fromInclusive)) throw new IllegalArgumentException("fromElement out of range");
if(!inRange(toElement, toInclusive)) throw new IllegalArgumentException("toElement out of range");
return new DescendingSubSetBRACES(set, false, fromElement, fromInclusive, false, toElement, toInclusive);
return new DescendingSubSetBRACES(set, false, toElement, toInclusive, false, fromElement, fromInclusive);
}
@Override
@@ -1034,21 +1030,15 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
#if !TYPE_OBJECT
@Override
public void setDefaultMaxValue(KEY_TYPE value) { set.setDefaultMaxValue(value); }
@Override
public KEY_TYPE getDefaultMaxValue() { return set.getDefaultMaxValue(); }
@Override
public void setDefaultMinValue(KEY_TYPE value) { set.setDefaultMinValue(value); }
@Override
public KEY_TYPE getDefaultMinValue() { return set.getDefaultMinValue(); }
#else
public KEY_TYPE getDefaultMaxValue() { return null; }
public KEY_TYPE getDefaultMinValue() { return null; }
#endif
@Override
public abstract BI_ITERATOR KEY_GENERIC_TYPE iterator();
@@ -1359,6 +1349,7 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
{
Entry KEY_GENERIC_TYPE lastReturned;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE previous;
boolean forwards = false;
boolean unboundForwardFence;
boolean unboundBackwardFence;
@@ -1368,6 +1359,7 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public AscendingSubSetIterator(Entry KEY_GENERIC_TYPE first, Entry KEY_GENERIC_TYPE forwardFence, Entry KEY_GENERIC_TYPE backwardFence)
{
next = first;
previous = first == null ? null : first.previous();
this.forwardFence = forwardFence == null ? EMPTY_KEY_VALUE : forwardFence.key;
this.backwardFence = backwardFence == null ? EMPTY_KEY_VALUE : backwardFence.key;
unboundForwardFence = forwardFence == null;
@@ -1383,6 +1375,7 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
lastReturned = next;
previous = next;
KEY_TYPE result = next.key;
next = next.next();
forwards = true;
@@ -1391,15 +1384,16 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public boolean hasPrevious() {
return next != null && (unboundBackwardFence || next.key != backwardFence);
return previous != null && (unboundBackwardFence || previous.key != backwardFence);
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
lastReturned = next;
KEY_TYPE result = next.key;
next = next.previous();
lastReturned = previous;
next = previous;
KEY_TYPE result = previous.key;
previous = previous.previous();
forwards = false;
return result;
}
@@ -1407,6 +1401,8 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(previous == lastReturned) previous = previous.previous();
if(next == lastReturned) next = next.next();
if(forwards && lastReturned.needsSuccessor()) next = lastReturned;
set.removeNode(lastReturned);
lastReturned = null;
@@ -1417,6 +1413,7 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
{
Entry KEY_GENERIC_TYPE lastReturned;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE previous;
boolean forwards = false;
boolean unboundForwardFence;
boolean unboundBackwardFence;
@@ -1426,6 +1423,7 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public DescendingSubSetIterator(Entry KEY_GENERIC_TYPE first, Entry KEY_GENERIC_TYPE forwardFence, Entry KEY_GENERIC_TYPE backwardFence)
{
next = first;
previous = first == null ? null : first.next();
this.forwardFence = forwardFence == null ? EMPTY_KEY_VALUE : forwardFence.key;
this.backwardFence = backwardFence == null ? EMPTY_KEY_VALUE : backwardFence.key;
unboundForwardFence = forwardFence == null;
@@ -1441,6 +1439,7 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
lastReturned = next;
previous = next;
KEY_TYPE result = next.key;
next = next.previous();
forwards = false;
@@ -1449,15 +1448,16 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public boolean hasPrevious() {
return next != null && (unboundBackwardFence || next.key != backwardFence);
return previous != null && (unboundBackwardFence || previous.key != backwardFence);
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
lastReturned = next;
KEY_TYPE result = next.key;
next = next.next();
lastReturned = previous;
next = previous;
KEY_TYPE result = previous.key;
previous = previous.next();
forwards = true;
return result;
}
@@ -1465,6 +1465,8 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(previous == lastReturned) previous = previous.next();
if(next == lastReturned) next = next.previous();
if(forwards && lastReturned.needsSuccessor()) next = lastReturned;
set.removeNode(lastReturned);
lastReturned = null;
@@ -1476,11 +1478,13 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
{
Entry KEY_GENERIC_TYPE lastReturned;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE previous;
boolean forwards = false;
public AscendingSetIterator(Entry KEY_GENERIC_TYPE first)
{
next = first;
previous = first == null ? null : first.previous();
}
@Override
@@ -1492,6 +1496,7 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
lastReturned = next;
previous = next;
KEY_TYPE result = next.key;
next = next.next();
forwards = true;
@@ -1500,15 +1505,16 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public boolean hasPrevious() {
return next != null;
return previous != null;
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
lastReturned = next;
KEY_TYPE result = next.key;
next = next.previous();
lastReturned = previous;
next = previous;
KEY_TYPE result = previous.key;
previous = previous.previous();
forwards = false;
return result;
}
@@ -1516,6 +1522,8 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(lastReturned == previous) previous = previous.previous();
if(lastReturned == next) next = next.next();
if(forwards && lastReturned.needsSuccessor()) next = lastReturned;
removeNode(lastReturned);
lastReturned = null;
@@ -1526,11 +1534,13 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
{
Entry KEY_GENERIC_TYPE lastReturned;
Entry KEY_GENERIC_TYPE next;
Entry KEY_GENERIC_TYPE previous;
boolean forwards = false;
public DescendingSetIterator(Entry KEY_GENERIC_TYPE first)
{
next = first;
previous = first == null ? null : first.next();
}
@Override
@@ -1542,6 +1552,7 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
lastReturned = next;
previous = next;
KEY_TYPE result = next.key;
next = next.previous();
forwards = false;
@@ -1550,15 +1561,16 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public boolean hasPrevious() {
return next != null;
return previous != null;
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
lastReturned = next;
KEY_TYPE result = next.key;
next = next.next();
lastReturned = previous;
next = previous;
KEY_TYPE result = previous.key;
previous = previous.next();
forwards = true;
return result;
}
@@ -1566,6 +1578,8 @@ public class RB_TREE_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE
@Override
public void remove() {
if(lastReturned == null) throw new IllegalStateException();
if(lastReturned == previous) previous = previous.next();
if(lastReturned == next) next = next.previous();
if(forwards && lastReturned.needsSuccessor()) next = lastReturned;
removeNode(lastReturned);
lastReturned = null;
@@ -348,9 +348,11 @@ public class ARRAYS
* @param array the array that needs to be sorted
* @ArrayType(T)
* @param comp the Comparator that decides the sorting order
* @return input array.
*/
public static GENERIC_KEY_BRACES void stableSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
public static GENERIC_KEY_BRACES KEY_TYPE[] stableSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
stableSort(array, 0, array.length, comp);
return array;
}
/**
@@ -386,9 +388,11 @@ public class ARRAYS
* Stable sort referres to Mergesort or Insertionsort
* @param array the array that needs to be sorted
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void stableSort(KEY_TYPE[] array) {
public static GENERIC_KEY_BRACES KEY_TYPE[] stableSort(KEY_TYPE[] array) {
stableSort(array, 0, array.length);
return array;
}
/**
@@ -423,9 +427,11 @@ public class ARRAYS
* @param array the array that needs to be sorted
* @param comp the Comparator that decides the sorting order
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void unstableSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
public static GENERIC_KEY_BRACES KEY_TYPE[] unstableSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
unstableSort(array, 0, array.length, comp);
return array;
}
/**
@@ -461,9 +467,11 @@ public class ARRAYS
* Unstable sort referres to QuickSort or SelectionSort
* @param array the array that needs to be sorted
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void unstableSort(KEY_TYPE[] array) {
public static GENERIC_KEY_BRACES KEY_TYPE[] unstableSort(KEY_TYPE[] array) {
unstableSort(array, 0, array.length);
return array;
}
/**
@@ -496,9 +504,11 @@ public class ARRAYS
* @param array the array that needs to be sorted
* @param comp the Comparator that decides the sorting order
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void insertionSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
public static GENERIC_KEY_BRACES KEY_TYPE[] insertionSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
insertionSort(array, 0, array.length, comp);
return array;
}
/**
@@ -535,9 +545,11 @@ public class ARRAYS
* Sorts an array according to the natural ascending order using InsertionSort,
* @param array the array that needs to be sorted
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void insertionSort(KEY_TYPE[] array) {
public static GENERIC_KEY_BRACES KEY_TYPE[] insertionSort(KEY_TYPE[] array) {
insertionSort(array, 0, array.length);
return array;
}
/**
@@ -573,9 +585,11 @@ public class ARRAYS
* @param array the array that needs to be sorted
* @param comp the Comparator that decides the sorting order
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void selectionSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
public static GENERIC_KEY_BRACES KEY_TYPE[] selectionSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
selectionSort(array, 0, array.length, comp);
return array;
}
/**
@@ -617,9 +631,11 @@ public class ARRAYS
* Sorts an array according to the natural ascending order using Selection Sort,
* @param array the array that needs to be sorted
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void selectionSort(KEY_TYPE[] array) {
public static GENERIC_KEY_BRACES KEY_TYPE[] selectionSort(KEY_TYPE[] array) {
selectionSort(array, 0, array.length);
return array;
}
/**
@@ -661,9 +677,11 @@ public class ARRAYS
* @param array the array that needs to be sorted
* @param comp the Comparator that decides the sorting order
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void mergeSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
public static GENERIC_KEY_BRACES KEY_TYPE[] mergeSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
mergeSort(array, null, 0, array.length, comp);
return array;
}
/**
@@ -713,9 +731,11 @@ public class ARRAYS
* This implementation was copied from <a href="https://github.com/vigna/fastutil">FastUtil</a> with a couple custom optimizations
* @param array the array that needs to be sorted
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void mergeSort(KEY_TYPE[] array) {
public static GENERIC_KEY_BRACES KEY_TYPE[] mergeSort(KEY_TYPE[] array) {
mergeSort(array, null, 0, array.length);
return array;
}
/**
@@ -922,9 +942,11 @@ public class ARRAYS
* @author Speiger
* @param array the array that needs to be sorted
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void memFreeMergeSort(KEY_TYPE[] array) {
public static GENERIC_KEY_BRACES KEY_TYPE[] memFreeMergeSort(KEY_TYPE[] array) {
memFreeMergeSort(array, 0, array.length);
return array;
}
/**
@@ -1099,9 +1121,11 @@ public class ARRAYS
* @param array the array that needs to be sorted
* @param comp the Comparator that decides the sorting order
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void quickSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
public static GENERIC_KEY_BRACES KEY_TYPE[] quickSort(KEY_TYPE[] array, COMPARATOR KEY_GENERIC_TYPE comp) {
quickSort(array, 0, array.length, comp);
return array;
}
/**
@@ -1157,9 +1181,11 @@ public class ARRAYS
* and that sorting Algorithm is based on the tuned quicksort adapted from Jon L. Bentley and M. DouglasMcIlroy, "Engineering a Sort Function", Software: Practice and Experience, 23(11), pages12491265, 1993.
* @param array the array that needs to be sorted
* @ArrayType(T)
* @return input array
*/
public static GENERIC_KEY_BRACES void quickSort(KEY_TYPE[] array) {
public static GENERIC_KEY_BRACES KEY_TYPE[] quickSort(KEY_TYPE[] array) {
quickSort(array, 0, array.length);
return array;
}
/**
@@ -7,12 +7,13 @@ import java.util.concurrent.TimeUnit;
import java.util.concurrent.TimeoutException;
import java.util.concurrent.locks.LockSupport;
import java.util.function.Consumer;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.CONSUMER;
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#else
import java.util.function.BiFunction;
import java.util.Comparator;
#endif
import speiger.src.collections.PACKAGE.collections.ITERABLE;
@@ -112,6 +113,16 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return new ASYNC_BUILDERBRACES(ITERABLES.wrap(iterable));
}
/**
* Helper function that automatically wraps a array into a AsyncBuilder since it forces this collections Iterable.
* @param values that should be wrapped
* @Type(T)
* @return a AsyncBuilder with the values wrapped
*/
public static GENERIC_KEY_BRACES ASYNC_BUILDER KEY_GENERIC_TYPE of(KEY_TYPE...values) {
return new ASYNC_BUILDERBRACES(ARRAY_LIST.wrap(values));
}
/**
* Maps the elements to something else
* @param mapper the mapping function
@@ -172,6 +183,17 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return this;
}
/**
* Sorts the elements inside of the Iterable.
* This operation is heavily hurting performance because it rebuilds the entire iterator and then sorts it, and this will affect the pausing feature.
* @param sorter that sorts the elements.
* @return self with a sorter applied
*/
public ASYNC_BUILDER KEY_GENERIC_TYPE sorted(COMPARATOR KEY_GENERIC_TYPE sorter) {
iterable = ITERABLES.sorted(iterable, sorter);
return this;
}
/**
* Allows to preview elements before they are processed
* @param action the action that should be applied
@@ -186,7 +186,10 @@ public class COLLECTIONS
@Override
public int hashCode() { synchronized(mutex) { return c.hashCode(); } }
@Override
public boolean equals(Object obj) { synchronized(mutex) { return c.equals(obj); } }
public boolean equals(Object obj) {
if(obj == this) return true;
synchronized(mutex) { return c.equals(obj); }
}
@Override
public String toString() { synchronized(mutex) { return c.toString(); } }
@Override
@@ -308,7 +311,7 @@ public class COLLECTIONS
@Override
public int hashCode() { return c.hashCode(); }
@Override
public boolean equals(Object obj) { return c.equals(obj); }
public boolean equals(Object obj) { return obj == this || c.equals(obj); }
@Override
public String toString() { return c.toString(); }
@Override
@@ -350,7 +353,7 @@ public class COLLECTIONS
@Override
public boolean contains(KEY_TYPE o) { return false; }
@Override
public boolean containsAll(COLLECTION KEY_GENERIC_TYPE c) { return false; }
public boolean containsAll(COLLECTION KEY_GENERIC_TYPE c) { return c.isEmpty(); }
@Override
public boolean containsAny(COLLECTION KEY_GENERIC_TYPE c) { return false; }
#else
@@ -362,7 +365,7 @@ public class COLLECTIONS
public boolean containsAny(Collection<?> c) { return false; }
@Override
@Primitive
public boolean containsAll(Collection<?> c) { return false; }
public boolean containsAll(Collection<?> c) { return c.isEmpty(); }
@Override
public int hashCode() { return 0; }
@@ -401,14 +404,28 @@ public class COLLECTIONS
public Object[] toArray() { return ObjectArrays.EMPTY_ARRAY; }
#if !TYPE_OBJECT
@Override
public <T> T[] toArray(T[] a) { return a; }
public <T> T[] toArray(T[] a) {
if(a != null && a.length > 0)
a[0] = null;
return a;
}
@Override
public KEY_TYPE[] TO_ARRAY() { return ARRAYS.EMPTY_ARRAY; }
@Override
public KEY_TYPE[] TO_ARRAY(KEY_TYPE[] a) { return a; }
public KEY_TYPE[] TO_ARRAY(KEY_TYPE[] a) {
if(a != null && a.length > 0)
a[0] = EMPTY_KEY_VALUE;
return a;
}
#else
@Override
public <E> E[] toArray(E[] a) { return a; }
public <E> E[] toArray(E[] a) {
if(a != null && a.length > 0)
a[0] = EMPTY_KEY_VALUE;
return a;
}
#endif
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() { return ITERATORS.empty(); }
@@ -3,6 +3,8 @@ package speiger.src.collections.PACKAGE.utils;
import java.util.Objects;
#if TYPE_BOOLEAN
import java.util.concurrent.atomic.AtomicInteger;
#else if TYPE_OBJECT
import java.util.Comparator;
#endif
import java.util.concurrent.atomic.AtomicLong;
import java.util.function.Consumer;
@@ -12,8 +14,11 @@ import speiger.src.collections.PACKAGE.collections.ITERABLE;
import speiger.src.collections.objects.collections.ObjectIterable;
import speiger.src.collections.objects.collections.ObjectIterator;
import speiger.src.collections.PACKAGE.functions.CONSUMER;
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#endif
import speiger.src.collections.PACKAGE.collections.ITERATOR;
import speiger.src.collections.PACKAGE.lists.LIST;
import speiger.src.collections.PACKAGE.lists.ARRAY_LIST;
import speiger.src.collections.PACKAGE.functions.function.TO_OBJECT_FUNCTION;
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
#if !TYPE_BOOLEAN
@@ -164,6 +169,30 @@ public class ITERABLES
return new LimitedIterableBRACES(wrap(iterable), limit);
}
/**
* A Helper function that sorts the Iterable.
* This operation is heavily hurting performance because it rebuilds the entire iterator and then sorts it.
* @param iterable that should be sorted
* @param sorter that sorts the iterable. Can be null.
* @Type(T)
* @return a sorted iterable.
*/
public static GENERIC_KEY_BRACES ITERABLE KEY_GENERIC_TYPE sorted(ITERABLE KEY_GENERIC_TYPE iterable, COMPARATOR KEY_GENERIC_TYPE sorter) {
return new SortedIterableBRACES(iterable, sorter);
}
/**
* A Helper function that sorts the Iterable from a Java Iterable
* This operation is heavily hurting performance because it rebuilds the entire iterator and then sorts it.
* @param iterable that should be sorted
* @param sorter that sorts the iterable. Can be null.
* @Type(T)
* @return a sorted iterable.
*/
public static GENERIC_KEY_BRACES ITERABLE KEY_GENERIC_TYPE sorted(Iterable<? extends CLASS_TYPE> iterable, COMPARATOR KEY_GENERIC_TYPE sorter) {
return new SortedIterableBRACES(wrap(iterable), sorter);
}
/**
* A Helper function that allows to preview the result of a Iterable.
* @param iterable that should be peeked at
@@ -359,6 +388,42 @@ public class ITERABLES
#endif
}
private static class SortedIterable KEY_GENERIC_TYPE implements ITERABLE KEY_GENERIC_TYPE
{
ITERABLE KEY_GENERIC_TYPE iterable;
COMPARATOR KEY_GENERIC_TYPE sorter;
public SortedIterable(ITERABLE KEY_GENERIC_TYPE iterable, COMPARATOR KEY_GENERIC_TYPE sorter) {
this.iterable = iterable;
this.sorter = sorter;
}
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() {
return ITERATORS.sorted(iterable.iterator(), sorter);
}
#if !TYPE_OBJECT
@Override
public void forEach(CONSUMER action) {
Objects.requireNonNull(action);
LIST KEY_GENERIC_TYPE list = new ARRAY_LISTBRACES();
iterable.forEach(list::add);
list.unstableSort(sorter);
list.forEach(action);
}
#else
@Override
public void forEach(Consumer<? super CLASS_TYPE> action) {
Objects.requireNonNull(action);
LIST KEY_GENERIC_TYPE list = new ARRAY_LISTBRACES();
iterable.forEach(list::add);
list.unstableSort(sorter);
list.forEach(action);
}
#endif
}
private static class DistinctIterable KEY_GENERIC_TYPE implements ITERABLE KEY_GENERIC_TYPE
{
ITERABLE KEY_GENERIC_TYPE iterable;
@@ -3,6 +3,7 @@ package speiger.src.collections.PACKAGE.utils;
import java.util.Iterator;
import java.util.NoSuchElementException;
#if TYPE_OBJECT
import java.util.Comparator;
import java.util.function.CONSUMER;
#endif
@@ -11,6 +12,7 @@ import speiger.src.collections.PACKAGE.collections.ITERATOR;
import speiger.src.collections.objects.collections.ObjectIterator;
import speiger.src.collections.objects.utils.ObjectIterators;
import speiger.src.collections.PACKAGE.functions.CONSUMER;
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#endif
import speiger.src.collections.PACKAGE.functions.function.TO_OBJECT_FUNCTION;
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
@@ -32,7 +34,7 @@ public class ITERATORS
/**
* Empty Iterator Reference
*/
public static final EmptyIterator NO_GENERIC_TYPE EMPTY = new EmptyIteratorBRACES();
private static final EmptyIterator NO_GENERIC_TYPE EMPTY = new EmptyIteratorBRACES();
/**
* Returns a Immutable EmptyIterator instance that is automatically casted.
@@ -235,6 +237,30 @@ public class ITERATORS
return new LimitedIteratorBRACES(wrap(iterator), limit);
}
/**
* A Helper function that sorts the Iterator beforehand.
* This operation is heavily hurting performance because it rebuilds the entire iterator and then sorts it.
* @param iterator that should be sorted.
* @param sorter the sorter of the iterator. Can be null.
* @Type(T)
* @return a new sorted iterator
*/
public static GENERIC_KEY_BRACES ITERATOR KEY_GENERIC_TYPE sorted(ITERATOR KEY_GENERIC_TYPE iterator, COMPARATOR KEY_GENERIC_TYPE sorter) {
return new SortedIteratorBRACES(iterator, sorter);
}
/**
* A Helper function that sorts the Iterator beforehand from a Java Iterator.
* This operation is heavily hurting performance because it rebuilds the entire iterator and then sorts it.
* @param iterator that should be sorted.
* @param sorter the sorter of the iterator. Can be null.
* @Type(T)
* @return a new sorted iterator
*/
public static GENERIC_KEY_BRACES ITERATOR KEY_GENERIC_TYPE sorted(Iterator<? extends CLASS_TYPE> iterator, COMPARATOR KEY_GENERIC_TYPE sorter) {
return new SortedIteratorBRACES(wrap(iterator), sorter);
}
/**
* A Helper function that allows to preview the result of a Iterator.
* @param iterator that should be peeked at
@@ -273,7 +299,7 @@ public class ITERATORS
* @ArrayType(T)
* @return a Iterator that is wrapping a array.
*/
public static GENERIC_KEY_BRACES ArrayIterator KEY_GENERIC_TYPE wrap(KEY_TYPE[] a) {
public static GENERIC_KEY_BRACES ArrayIterator KEY_GENERIC_TYPE wrap(KEY_TYPE... a) {
return wrap(a, 0, a.length);
}
@@ -709,7 +735,7 @@ public class ITERATORS
@Override
public KEY_TYPE NEXT() {
return EMPTY_KEY_VALUE;
throw new NoSuchElementException();
}
@Override
@@ -719,7 +745,7 @@ public class ITERATORS
@Override
public KEY_TYPE PREVIOUS() {
return EMPTY_KEY_VALUE;
throw new NoSuchElementException();
}
@Override
@@ -729,7 +755,7 @@ public class ITERATORS
@Override
public int previousIndex() {
return 0;
return -1;
}
@Override
@@ -761,6 +787,7 @@ public class ITERATORS
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return a[from++];
}
@@ -828,7 +855,7 @@ public class ITERATORS
@Override
public T next() {
if(!hasNext()) throw new IllegalStateException("End of Iterator");
if(!hasNext()) throw new NoSuchElementException();
T result = last.next();
foundNext = false;
return result;
@@ -864,13 +891,42 @@ public class ITERATORS
@Override
public T next() {
if(!hasNext()) throw new IllegalStateException("End of Iterator");
if(!hasNext()) throw new NoSuchElementException();
T result = last.next();
foundNext = false;
return result;
}
}
private static class SortedIterator KEY_GENERIC_TYPE implements ITERATOR KEY_GENERIC_TYPE
{
ITERATOR KEY_GENERIC_TYPE iterator;
COMPARATOR KEY_GENERIC_TYPE sorter;
LIST KEY_GENERIC_TYPE sortedElements = null;
int index = 0;
public SortedIterator(ITERATOR KEY_GENERIC_TYPE iterator, COMPARATOR KEY_GENERIC_TYPE sorter) {
this.iterator = iterator;
this.sorter = sorter;
}
@Override
public boolean hasNext() {
if(sortedElements == null) {
boolean hasNext = iterator.hasNext();
sortedElements = hasNext ? pour(iterator) : LISTS.empty();
if(hasNext) sortedElements.unstableSort(sorter);
}
return index < sortedElements.size();
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return sortedElements.GET_KEY(index++);
}
}
private static class DistinctIterator KEY_GENERIC_TYPE implements ITERATOR KEY_GENERIC_TYPE
{
ITERATOR KEY_GENERIC_TYPE iterator;
@@ -916,7 +972,7 @@ public class ITERATORS
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new IllegalStateException("End of Iterator");
if(!hasNext()) throw new NoSuchElementException();
foundNext = false;
return lastFound;
}
@@ -953,7 +1009,7 @@ public class ITERATORS
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new IllegalStateException("End of Iterator");
if(!hasNext()) throw new NoSuchElementException();
foundNext = false;
return lastFound;
}
@@ -976,7 +1032,7 @@ public class ITERATORS
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new IllegalStateException("End of Iterator");
if(!hasNext()) throw new NoSuchElementException();
limit--;
return iterator.NEXT();
}
@@ -999,7 +1055,7 @@ public class ITERATORS
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new IllegalStateException("End of Iterator");
if(!hasNext()) throw new NoSuchElementException();
KEY_TYPE result = iterator.NEXT();
action.accept(result);
return result;
@@ -1,6 +1,7 @@
package speiger.src.collections.PACKAGE.utils;
import java.util.Collection;
import java.util.List;
import java.util.Objects;
import java.util.Random;
import java.util.RandomAccess;
@@ -27,7 +28,7 @@ public class LISTS
/**
* Empty List reference
*/
public static final EmptyList NO_GENERIC_TYPE EMPTY = new EmptyListBRACES();
private static final EmptyList NO_GENERIC_TYPE EMPTY = new EmptyListBRACES();
/**
* Returns a Immutable EmptyList instance that is automatically casted.
@@ -356,7 +357,7 @@ public class LISTS
#endif
@Override
public void addElements(int from, KEY_TYPE[] a, int offset, int length) { synchronized(mutex) { addElements(from, a, offset, length); } }
public void addElements(int from, KEY_TYPE[] a, int offset, int length) { synchronized(mutex) { l.addElements(from, a, offset, length); } }
@Override
public KEY_TYPE[] getElements(int from, KEY_TYPE[] a, int offset, int length) { synchronized(mutex) { return l.getElements(from, a, offset, length); } }
@@ -601,6 +602,16 @@ public class LISTS
return ITERATORS.empty();
}
@Override
public int hashCode() { return 1; }
@Override
public boolean equals(Object o) {
if(o == this) return true;
if(!(o instanceof List)) return false;
return ((List<?>)o).isEmpty();
}
@Override
public LIST KEY_GENERIC_TYPE subList(int from, int to) { throw new UnsupportedOperationException(); }
@@ -1,5 +1,7 @@
package speiger.src.collections.PACKAGE.utils;
import java.util.NoSuchElementException;
import java.util.Set;
#if TYPE_BOOLEAN
import speiger.src.collections.booleans.collections.BooleanIterator;
import speiger.src.collections.booleans.sets.AbstractBooleanSet;
@@ -34,7 +36,7 @@ public class SETS
/**
* Empty Set Variable
*/
public static final SET NO_GENERIC_TYPE EMPTY = new EmptySetBRACES();
private static final SET NO_GENERIC_TYPE EMPTY = new EmptySetBRACES();
/**
* EmptySet getter
@@ -216,10 +218,10 @@ public class SETS
return new ITERATOR KEY_GENERIC_TYPE() {
boolean next = true;
@Override
public boolean hasNext() { return next = false; }
public boolean hasNext() { return next; }
@Override
public KEY_TYPE NEXT() {
if(!next) throw new IllegalStateException();
if(!hasNext()) throw new NoSuchElementException();
next = false;
return element;
}
@@ -241,6 +243,13 @@ public class SETS
@Override
public KEY_TYPE addOrGet(KEY_TYPE o) { throw new UnsupportedOperationException(); }
#endif
@Override
public boolean equals(Object o) {
if(o == this) return true;
if(!(o instanceof Set)) return false;
return ((Set<?>)o).isEmpty();
}
@Override
public EmptySet KEY_GENERIC_TYPE copy() { return this; }
}
@@ -258,25 +267,38 @@ public class SETS
#if !TYPE_OBJECT
@Override
public boolean contains(KEY_TYPE o) { return n.contains(o); }
@Override
@SuppressWarnings("deprecation")
public CLASS_TYPE lower(CLASS_TYPE e) { return n.lower(e); }
@Override
@SuppressWarnings("deprecation")
public CLASS_TYPE floor(CLASS_TYPE e) { return n.floor(e); }
@Override
@SuppressWarnings("deprecation")
public CLASS_TYPE ceiling(CLASS_TYPE e) { return n.ceiling(e); }
@Override
@SuppressWarnings("deprecation")
public CLASS_TYPE higher(CLASS_TYPE e) { return n.higher(e); }
#endif
@Override
@Deprecated
public boolean contains(Object o) { return n.contains(o); }
@Override
public KEY_TYPE lower(KEY_TYPE e) { return n.lower(e); }
@Override
public KEY_TYPE floor(KEY_TYPE e) { return n.floor(e); }
@Override
public KEY_TYPE ceiling(KEY_TYPE e) { return n.ceiling(e); }
@Override
public KEY_TYPE higher(KEY_TYPE e) { return n.higher(e); }
#if !TYPE_OBJECT
@Override
public CLASS_TYPE pollFirst() { throw new UnsupportedOperationException(); }
@Override
public CLASS_TYPE pollLast() { throw new UnsupportedOperationException(); }
@Override
public void setDefaultMaxValue(KEY_TYPE e) { throw new UnsupportedOperationException(); }
@@ -291,7 +313,7 @@ public class SETS
#endif
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
public NAVIGABLE_SET KEY_GENERIC_TYPE copy() { return n.copy(); }
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE subSet(KEY_TYPE fromElement, boolean fromInclusive, KEY_TYPE toElement, boolean toInclusive) { return SETS.unmodifiable(n.subSet(fromElement, fromInclusive, toElement, toInclusive)); }
@@ -454,27 +476,33 @@ public class SETS
#if !TYPE_OBJECT
@Override
public boolean contains(KEY_TYPE o) { synchronized(mutex) { return n.contains(o); } }
@Override
@SuppressWarnings("deprecation")
public CLASS_TYPE lower(CLASS_TYPE e) { synchronized(mutex) { return n.lower(e); } }
@Override
@SuppressWarnings("deprecation")
public CLASS_TYPE floor(CLASS_TYPE e) { synchronized(mutex) { return n.floor(e); } }
@Override
@SuppressWarnings("deprecation")
public CLASS_TYPE ceiling(CLASS_TYPE e) { synchronized(mutex) { return n.ceiling(e); } }
@Override
@SuppressWarnings("deprecation")
public CLASS_TYPE higher(CLASS_TYPE e) { synchronized(mutex) { return n.higher(e); } }
#endif
@Override
public KEY_TYPE lower(KEY_TYPE e) { synchronized(mutex) { return n.lower(e); } }
@Override
public KEY_TYPE floor(KEY_TYPE e) { synchronized(mutex) { return n.floor(e); } }
@Override
public KEY_TYPE ceiling(KEY_TYPE e) { synchronized(mutex) { return n.ceiling(e); } }
@Override
public KEY_TYPE higher(KEY_TYPE e) { synchronized(mutex) { return n.higher(e); } }
#if !TYPE_OBJECT
@Override
public void setDefaultMaxValue(KEY_TYPE e) { synchronized(mutex) { n.setDefaultMaxValue(e); } }
@Override
public KEY_TYPE getDefaultMaxValue() { synchronized(mutex) { return n.getDefaultMaxValue(); } }
@Override
public void setDefaultMinValue(KEY_TYPE e) { synchronized(mutex) { n.setDefaultMinValue(e); } }
@@ -1,6 +1,7 @@
package speiger.src.collections.PACKAGE.utils;
import java.util.Comparator;
import java.util.NoSuchElementException;
import java.util.Spliterator;
#if PRIMITIVES
import java.util.Spliterator.JAVA_SPLIT_ITERATOR;
@@ -329,7 +330,11 @@ public class SPLIT_ITERATORS
}
@Override
public KEY_TYPE NEXT() { return array[index++]; }
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return array[index++];
}
@Override
public boolean hasNext() { return index < fence; }
}
@@ -19,8 +19,11 @@ import speiger.src.collections.objects.collections.ObjectIterable;
import speiger.src.collections.objects.collections.ObjectIterator;
import speiger.src.collections.objects.sets.ObjectSet;
#if !TYPE_BOOLEAN
import speiger.src.collections.objects.collections.ObjectBidirectionalIterator;
import speiger.src.collections.objects.utils.ObjectIterators;
import speiger.src.collections.objects.utils.ObjectSets;
#if !TYPE_OBJECT
import speiger.src.collections.objects.sets.ObjectOrderedSet;
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#endif
import speiger.src.collections.PACKAGE.functions.consumer.BI_CONSUMER;
@@ -34,6 +37,8 @@ import speiger.src.collections.PACKAGE.maps.interfaces.NAVIGABLE_MAP;
import speiger.src.collections.PACKAGE.maps.interfaces.SORTED_MAP;
import speiger.src.collections.PACKAGE.maps.interfaces.ORDERED_MAP;
import speiger.src.collections.PACKAGE.sets.NAVIGABLE_SET;
import speiger.src.collections.PACKAGE.sets.SORTED_SET;
import speiger.src.collections.PACKAGE.sets.ORDERED_SET;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.sets.SET;
import speiger.src.collections.PACKAGE.utils.SETS;
@@ -42,6 +47,7 @@ import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
#if !SAME_TYPE
import speiger.src.collections.VALUE_PACKAGE.functions.function.VALUE_UNARY_OPERATOR;
#endif
import speiger.src.collections.VALUE_PACKAGE.functions.VALUE_SUPPLIER;
import speiger.src.collections.VALUE_PACKAGE.utils.VALUE_COLLECTIONS;
#if !SAME_TYPE && !VALUE_OBJECT
import speiger.src.collections.VALUE_PACKAGE.utils.VALUE_SETS;
@@ -57,7 +63,21 @@ public class MAPS
/**
* Empty Map Variable
*/
public static final MAP NO_KV_GENERIC_TYPE EMPTY = new EmptyMapKV_BRACES();
private static final MAP NO_KV_GENERIC_TYPE EMPTY = new EmptyMapKV_BRACES();
/**
* Empty Map getter function that autocasts to the desired Key and Value
* @Type(T)
* @ValueType(V)
* @return empty map of desired type
*/
public static GENERIC_KEY_VALUE_BRACES MAP KEY_VALUE_GENERIC_TYPE empty() {
#if TYPE_OBJECT || VALUE_OBJECT
return (MAP KEY_VALUE_GENERIC_TYPE)EMPTY;
#else
return EMPTY;
#endif
}
#endif
/**
@@ -104,19 +124,6 @@ public class MAPS
}
#if !TYPE_BOOLEAN
/**
* Empty Map getter function that autocasts to the desired Key and Value
* @Type(T)
* @ValueType(V)
* @return empty map of desired type
*/
public static GENERIC_KEY_VALUE_BRACES MAP KEY_VALUE_GENERIC_TYPE empty() {
#if TYPE_OBJECT || VALUE_OBJECT
return (MAP KEY_VALUE_GENERIC_TYPE)EMPTY;
#else
return EMPTY;
#endif
}
/**
* Helper function that creates a Helper wrapper to synchronize access into the map.
@@ -253,7 +260,7 @@ public class MAPS
* @ValueType(V)
* @return a Unmodifyable Entry
*/
public static GENERIC_KEY_VALUE_BRACES MAP.Entry KEY_VALUE_GENERIC_TYPE unmodifiable(MAP.Entry KEY_VALUE_GENERIC_TYPE entry) { return entry instanceof UnmodifyableEntry ? entry : new UnmodifyableEntryKV_BRACES(entry); }
public static GENERIC_KEY_VALUE_BRACES MAP.Entry KEY_VALUE_GENERIC_TYPE unmodifiable(MAP.Entry KEY_VALUE_GENERIC_TYPE entry) { return entry instanceof UnmodifyableEntry ? entry : (entry == null ? null : new UnmodifyableEntryKV_BRACES(entry)); }
/**
* A Helper function that creates a Unmodifyable Entry
* @param entry the Entry that should be made unmodifiable
@@ -261,7 +268,7 @@ public class MAPS
* @ValueType(V)
* @return a Unmodifyable Entry
*/
public static GENERIC_KEY_VALUE_BRACES MAP.Entry KEY_VALUE_GENERIC_TYPE unmodifiable(Map.Entry<CLASS_TYPE, CLASS_VALUE_TYPE> entry) { return entry instanceof UnmodifyableEntry ? (UnmodifyableEntry KEY_VALUE_GENERIC_TYPE)entry : new UnmodifyableEntryKV_BRACES(entry); }
public static GENERIC_KEY_VALUE_BRACES MAP.Entry KEY_VALUE_GENERIC_TYPE unmodifiable(Map.Entry<CLASS_TYPE, CLASS_VALUE_TYPE> entry) { return entry instanceof UnmodifyableEntry ? (UnmodifyableEntry KEY_VALUE_GENERIC_TYPE)entry : (entry == null ? null : new UnmodifyableEntryKV_BRACES(entry)); }
/**
* Creates a Singleton map from the provided values.
@@ -315,6 +322,18 @@ public class MAPS
@Override
public VALUE_TYPE getOrDefault(KEY_TYPE key, VALUE_TYPE defaultValue) { return EQUALS_KEY_TYPE(key, this.key) ? value : defaultValue; }
#endif
@Override
public VALUE_TYPE COMPUTE(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE COMPUTE_IF_ABSENT(KEY_TYPE key, FUNCTION KEY_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE COMPUTE_IF_PRESENT(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE SUPPLY_IF_ABSENT(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE MERGE(KEY_TYPE key, VALUE_TYPE value, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public void BULK_MERGE(MAP KEY_VALUE_GENERIC_TYPE m, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public SingletonMap KEY_VALUE_GENERIC_TYPE copy() { return new SingletonMapKV_BRACES(key, value); }
@Override
@@ -363,8 +382,20 @@ public class MAPS
public VALUE_TYPE GET_VALUE(KEY_TYPE key) { return getDefaultReturnValue(); }
#if !TYPE_OBJECT || !VALUE_OBJECT
@Override
public VALUE_TYPE getOrDefault(KEY_TYPE key, VALUE_TYPE defaultValue) { return EMPTY_VALUE; }
public VALUE_TYPE getOrDefault(KEY_TYPE key, VALUE_TYPE defaultValue) { return defaultValue; }
#endif
@Override
public VALUE_TYPE COMPUTE(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE COMPUTE_IF_ABSENT(KEY_TYPE key, FUNCTION KEY_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE COMPUTE_IF_PRESENT(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE SUPPLY_IF_ABSENT(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE MERGE(KEY_TYPE key, VALUE_TYPE value, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public void BULK_MERGE(MAP KEY_VALUE_GENERIC_TYPE m, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public SET KEY_GENERIC_TYPE keySet() { return SETS.empty(); }
@Override
@@ -408,10 +439,12 @@ public class MAPS
}
@Override
public NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE descendingMap() { return MAPS.synchronize(map.descendingMap()); }
public NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE descendingMap() { return MAPS.unmodifiable(map.descendingMap()); }
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE navigableKeySet() { return SETS.unmodifiable(map.navigableKeySet()); }
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE keySet() { return SETS.unmodifiable(map.keySet()); }
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE descendingKeySet() { return SETS.unmodifiable(map.descendingKeySet()); }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE firstEntry() { return MAPS.unmodifiable(map.firstEntry()); }
@@ -460,7 +493,7 @@ public class MAPS
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE ceilingEntry(KEY_TYPE key) { return MAPS.unmodifiable(map.ceilingEntry(key)); }
@Override
public NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
public NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE copy() { return map.copy(); }
}
/**
@@ -491,17 +524,28 @@ public class MAPS
@Override
public KEY_TYPE FIRST_ENTRY_KEY() { return map.FIRST_ENTRY_KEY(); }
@Override
public KEY_TYPE POLL_FIRST_ENTRY_KEY() { return map.POLL_FIRST_ENTRY_KEY(); }
public KEY_TYPE POLL_FIRST_ENTRY_KEY() { throw new UnsupportedOperationException(); }
@Override
public KEY_TYPE LAST_ENTRY_KEY() { return map.LAST_ENTRY_KEY(); }
@Override
public KEY_TYPE POLL_LAST_ENTRY_KEY() { return map.POLL_LAST_ENTRY_KEY(); }
public KEY_TYPE POLL_LAST_ENTRY_KEY() { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE FIRST_ENTRY_VALUE() { return map.FIRST_ENTRY_VALUE(); }
@Override
public VALUE_TYPE LAST_ENTRY_VALUE() { return map.LAST_ENTRY_VALUE(); }
@Override
public ORDERED_MAP KEY_VALUE_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
public ORDERED_MAP KEY_VALUE_GENERIC_TYPE copy() { return map.copy(); }
@Override
public ORDERED_SET KEY_GENERIC_TYPE keySet() {
if(keys == null) keys = SETS.unmodifiable(map.keySet());
return (ORDERED_SET KEY_GENERIC_TYPE)keys;
}
@Override
public ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() {
if(entrySet == null) entrySet = new UnmodifyableOrderedEntrySetKV_BRACES(map.ENTRY_SET());
return (ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE>)entrySet;
}
}
/**
@@ -526,19 +570,21 @@ public class MAPS
@Override
public SORTED_MAP KEY_VALUE_GENERIC_TYPE tailMap(KEY_TYPE fromKey) { return MAPS.unmodifiable(map.tailMap(fromKey)); }
@Override
public SORTED_SET KEY_GENERIC_TYPE keySet() { return SETS.unmodifiable(map.keySet()); }
@Override
public KEY_TYPE FIRST_ENTRY_KEY() { return map.FIRST_ENTRY_KEY(); }
@Override
public KEY_TYPE POLL_FIRST_ENTRY_KEY() { return map.POLL_FIRST_ENTRY_KEY(); }
public KEY_TYPE POLL_FIRST_ENTRY_KEY() { throw new UnsupportedOperationException(); }
@Override
public KEY_TYPE LAST_ENTRY_KEY() { return map.LAST_ENTRY_KEY(); }
@Override
public KEY_TYPE POLL_LAST_ENTRY_KEY() { return map.POLL_LAST_ENTRY_KEY(); }
public KEY_TYPE POLL_LAST_ENTRY_KEY() { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE FIRST_ENTRY_VALUE() { return map.FIRST_ENTRY_VALUE(); }
@Override
public VALUE_TYPE LAST_ENTRY_VALUE() { return map.LAST_ENTRY_VALUE(); }
@Override
public SORTED_MAP KEY_VALUE_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
public SORTED_MAP KEY_VALUE_GENERIC_TYPE copy() { return map.copy(); }
}
/**
@@ -575,13 +621,34 @@ public class MAPS
public boolean remove(KEY_TYPE key, VALUE_TYPE value) { throw new UnsupportedOperationException(); }
#endif
@Override
public VALUE_TYPE GET_VALUE(KEY_TYPE key) { return map.GET_VALUE(key); }
public VALUE_TYPE GET_VALUE(KEY_TYPE key) {
VALUE_TYPE type = map.GET_VALUE(key);
return VALUE_EQUALS(type, map.getDefaultReturnValue()) && !map.containsKey(key) ? getDefaultReturnValue() : type;
}
#if !TYPE_OBJECT || !VALUE_OBJECT
@Override
public VALUE_TYPE getOrDefault(KEY_TYPE key, VALUE_TYPE defaultValue) { return map.getOrDefault(key, defaultValue); }
#endif
@Override
public MAP KEY_VALUE_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
public VALUE_TYPE COMPUTE(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE COMPUTE_IF_ABSENT(KEY_TYPE key, FUNCTION KEY_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE COMPUTE_IF_PRESENT(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE SUPPLY_IF_ABSENT(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider) { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE MERGE(KEY_TYPE key, VALUE_TYPE value, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public void BULK_MERGE(MAP KEY_VALUE_GENERIC_TYPE m, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public void REPLACE_VALUES(UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { throw new UnsupportedOperationException(); }
@Override
public void REPLACE_VALUES(MAP KEY_VALUE_GENERIC_TYPE m) { throw new UnsupportedOperationException(); }
@Override
public MAP KEY_VALUE_GENERIC_TYPE copy() { return map.copy(); }
@Override
public void clear() { throw new UnsupportedOperationException(); }
@Override
public SET KEY_GENERIC_TYPE keySet() {
@@ -602,6 +669,45 @@ public class MAPS
}
}
/**
* The Unmodifyable Ordered Set implementation for the Unmodifyable Ordered Map implementation
* @Type(T)
* @ValueType(V)
*/
public static class UnmodifyableOrderedEntrySet KEY_VALUE_GENERIC_TYPE extends UnmodifyableEntrySet KEY_VALUE_GENERIC_TYPE implements ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE>
{
ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> set;
UnmodifyableOrderedEntrySet(ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> c) {
super(c);
set = c;
}
@Override
public boolean addAndMoveToFirst(MAP.Entry KEY_VALUE_GENERIC_TYPE o) { throw new UnsupportedOperationException(); }
@Override
public boolean addAndMoveToLast(MAP.Entry KEY_VALUE_GENERIC_TYPE o) { throw new UnsupportedOperationException(); }
@Override
public boolean moveToFirst(MAP.Entry KEY_VALUE_GENERIC_TYPE o) { throw new UnsupportedOperationException(); }
@Override
public boolean moveToLast(MAP.Entry KEY_VALUE_GENERIC_TYPE o) { throw new UnsupportedOperationException(); }
@Override
public ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> copy() { return set.copy(); }
@Override
public ObjectBidirectionalIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iterator() { return ObjectIterators.unmodifiable(set.iterator()); }
@Override
public ObjectBidirectionalIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iterator(MAP.Entry KEY_VALUE_GENERIC_TYPE fromElement) { return ObjectIterators.unmodifiable(set.iterator(fromElement)); }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE first() { return set.first(); }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE pollFirst() { throw new UnsupportedOperationException(); }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE last() { return set.last(); }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE pollLast() { throw new UnsupportedOperationException(); }
}
/**
* The Unmodifyable Set implementation for the Unmodifyable Map implementation
* @Type(T)
@@ -660,9 +766,11 @@ public class MAPS
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE descendingKeySet() { synchronized(mutex) { return SETS.synchronize(map.descendingKeySet(), mutex); } }
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE keySet() { synchronized(mutex) { return SETS.synchronize(map.keySet(), mutex); } }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE firstEntry() { synchronized(mutex) { return map.firstEntry(); } }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE lastEntry() { synchronized(mutex) { return map.firstEntry(); } }
public MAP.Entry KEY_VALUE_GENERIC_TYPE lastEntry() { synchronized(mutex) { return map.lastEntry(); } }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE pollFirstEntry() { synchronized(mutex) { return map.pollFirstEntry(); } }
@Override
@@ -696,7 +804,7 @@ public class MAPS
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE ceilingEntry(KEY_TYPE key) { synchronized(mutex) { return map.ceilingEntry(key); } }
@Override
public NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
public NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE copy() { synchronized(mutex) { return map.copy(); } }
#if !TYPE_OBJECT
@Override
@Deprecated
@@ -794,7 +902,18 @@ public class MAPS
@Override
public VALUE_TYPE LAST_ENTRY_VALUE() { synchronized(mutex) { return map.LAST_ENTRY_VALUE(); } }
@Override
public ORDERED_MAP KEY_VALUE_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
public ORDERED_MAP KEY_VALUE_GENERIC_TYPE copy() { synchronized(mutex) { return map.copy(); } }
@Override
public ORDERED_SET KEY_GENERIC_TYPE keySet() {
if(keys == null) keys = SETS.synchronize(map.keySet(), mutex);
return (ORDERED_SET KEY_GENERIC_TYPE)keys;
}
@Override
public ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() {
if(entrySet == null) entrySet = ObjectSets.synchronize(map.ENTRY_SET(), mutex);
return (ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE>)entrySet;
}
}
/**
@@ -824,6 +943,8 @@ public class MAPS
@Override
public SORTED_MAP KEY_VALUE_GENERIC_TYPE tailMap(KEY_TYPE fromKey) { synchronized(mutex) { return MAPS.synchronize(map.tailMap(fromKey), mutex); } }
@Override
public SORTED_SET KEY_GENERIC_TYPE keySet() { synchronized(mutex) { return SETS.synchronize(map.keySet(), mutex); } }
@Override
public KEY_TYPE FIRST_ENTRY_KEY() { synchronized(mutex) { return map.FIRST_ENTRY_KEY(); } }
@Override
public KEY_TYPE POLL_FIRST_ENTRY_KEY() { synchronized(mutex) { return map.POLL_FIRST_ENTRY_KEY(); } }
@@ -836,7 +957,7 @@ public class MAPS
@Override
public VALUE_TYPE LAST_ENTRY_VALUE() { synchronized(mutex) { return map.LAST_ENTRY_VALUE(); } }
@Override
public SORTED_MAP KEY_VALUE_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
public SORTED_MAP KEY_VALUE_GENERIC_TYPE copy() { synchronized(mutex) { return map.copy(); } }
#if !TYPE_OBJECT
@Override
@Deprecated
@@ -940,6 +1061,8 @@ public class MAPS
@Override
public VALUE_TYPE COMPUTE_IF_PRESENT(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { synchronized(mutex) { return map.COMPUTE_IF_PRESENT(key, mappingFunction); } }
@Override
public VALUE_TYPE SUPPLY_IF_ABSENT(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider) { synchronized(mutex) { return map.SUPPLY_IF_ABSENT(key, valueProvider); } }
@Override
public VALUE_TYPE MERGE(KEY_TYPE key, VALUE_TYPE value, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) { synchronized(mutex) { return map.MERGE(key, value, mappingFunction); } }
@Override
public void BULK_MERGE(MAP KEY_VALUE_GENERIC_TYPE m, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) { synchronized(mutex) { map.BULK_MERGE(m, mappingFunction); } }
@@ -950,9 +1073,9 @@ public class MAPS
@Override
public void forEach(BI_CONSUMER KEY_VALUE_GENERIC_TYPE action) { synchronized(mutex) { map.forEach(action); } }
@Override
public int size() { synchronized(mutex) { return super.size(); } }
public int size() { synchronized(mutex) { return map.size(); } }
@Override
public MAP KEY_VALUE_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
public MAP KEY_VALUE_GENERIC_TYPE copy() { synchronized(mutex) { return map.copy(); } }
@Override
public SET KEY_GENERIC_TYPE keySet() {
if(keys == null) keys = SETS.synchronize(map.keySet(), mutex);