101 Commits
Author SHA1 Message Date
Speiger 2a97d017b7 1.0.0 release for now 2026-05-15 01:42:51 +02:00
Speiger 374b027120 Fixed the last unit tests 2026-05-15 00:04:54 +02:00
Speiger 21ccbee3b2 Disabled Google Tests that we don't have to deal. 2026-05-14 21:32:16 +02:00
Speiger 58a9eb38b4 Loads of additions.
-Added: Indirect Sorters.
-Added: ReferenceMaps
-Fixed: A bunch of smaller bugs found due to tests
2026-05-14 19:21:38 +02:00
Speiger 2f1525ab57 Fixes and new updates.
- Added: Collectors to lists/queues/sets
- Fixed: Bugs in linked hash sets.
- Fixed: Bugs in unit tests.
2026-05-14 02:51:38 +02:00
Speiger 9f46091282 Added Tests for Ordered Maps and more work on completing the
implementation
2026-05-12 13:37:22 +02:00
Speiger 3d39d5526d Breaking update
- Added: Optionals for the missing JDK ones.
- Removed: Default values for Reduce and FindFirst. Using Optionals
instead.
2026-05-11 18:00:00 +02:00
Speiger c6f656ee66 Switched to yearly activity 2026-05-11 00:36:08 +02:00
Speiger f0139d1a22 Fixed Badge Generator 2026-05-11 00:34:48 +02:00
Speiger 58e20bb513 Fixed Enums 2026-05-11 00:10:44 +02:00
Speiger 502f22cea3 Removed java 25 support. Gradlew isn't supporting this yet. 2026-05-10 22:11:18 +02:00
Speiger 90e3b7110a Updated Actions 2026-05-10 22:09:21 +02:00
Speiger a26106cc89 Fixed a bunch of Iterator code and implemented Reverse Map/Set Tests 2026-05-10 22:00:55 +02:00
Speiger d002f0094f Updated Build Matrix to incude newer java versions and remove obsolete
ones
2026-05-09 05:25:26 +02:00
Speiger 042460a338 Started Adding support for JDK21 SequencedCollections.
Implementation is mostly finished. Just need to iron out bugs.
But at this point i want to push activity.
2026-05-09 05:22:35 +02:00
Speiger 20927a97eb Reworked Module Settings System
Changelog:
- Added: Dependency System that will resolve missing classes and enable
them as needed. (This isn't perfect on some low level modules like
Functions)
- Added: Dependency Error system that will throw errors if a dependency
is that is required is specifically disabled.
- Added: Default setting for "undefined" entries.
- Fixed: A few bugs that made the dependency system unnecessary
difficult.
- Updated: Documentation
2025-03-09 23:29:13 +01:00
Speiger ebe75b0fea Fixing a few things and testing more. Not useable atm. 2025-03-08 01:08:31 +01:00
Speiger a6be24c59d Start of a Advanced Dependency System.
The idea behind this system is that you can select systems a lot easier.
So if a custom system isn't required it can be disabled and all the
subsystems that require it either get disabled too.
it also allows you to set systems as: Only if they are required. Meaning
if only a specific system is required its dependencies can still load.
2025-03-08 01:08:31 +01:00
Speiger afdd27648e Updated Changelog and Readme to include Maven Central 2024-04-11 19:11:07 +02:00
Speiger 7e475b5472 Fixed a few bugs in the maven central script 2024-03-30 05:12:57 +01:00
Speiger e65fde736b Fixed 2024-03-30 01:08:38 +01:00
Speiger bf0b4172de Added Maven central Badge 2024-03-30 01:07:46 +01:00
Speiger 961b47a58c Fixed java8 compat 2024-03-30 01:02:42 +01:00
Speiger 330be87338 finalizing the maven central release. 2024-03-30 00:32:37 +01:00
Speiger 4b30ce12c9 Upgraded thread workers and disable GPG temporarly. 2024-03-29 22:35:44 +01:00
Speiger 0be7dba5d3 Fixed script bug 2024-03-29 22:26:34 +01:00
SpeigerandSpeiger 6eaa992f5f Create SECURITY.md 2024-03-29 22:19:29 +01:00
Speiger 9b23d713ff Started maven publish plugin. 2024-03-29 22:17:38 +01:00
Speiger 85d230c561 Fixed a auto generation bug where iterators wouldn't accept settings 2023-07-04 17:29:32 +02:00
Speiger 6afed5e174 Version Bump 2023-06-29 22:52:44 +02:00
Speiger 640a1a8161 Fixed tests and added missing changelog 2023-06-29 20:04:45 +02:00
Speiger 274d37c4d6 New Features.
-Added: List.indexedIterator which allows you to create a iterator with a customized iteration indecies. Useful if you want to transform lists output.
-Added: PriorityQueue.contains is now a function
-Added: Iterators/Async Builders now support MapToPrimitiveType function on the object variant. So more processing can be done. (Will be expanded upon later versions)
-Updated: SimpleCodeGenerator 1.3.0 is now being used which allows for iterative code support.
2023-06-29 18:30:22 +02:00
Speiger a89c812c06 Added Infinite Iterators 2023-06-17 01:22:56 +02:00
Speiger 6af0656216 Adding coverage to master to make things simpler! 2023-06-15 18:53:08 +02:00
Speiger e76db94136 Upgrading Other dependencies! 2023-06-15 18:31:22 +02:00
Speiger 7011101b05 Upgraded Gradle to be java19/20 friendly 2023-06-15 18:19:12 +02:00
Speiger d0599b99ec Upgraded Build Script and support now java19/20 2023-06-15 18:09:14 +02:00
Speiger d7c5b9ad7d Optimized SelectionSort a tiny bit. 2023-06-15 18:08:57 +02:00
Speiger d2c81e7779 Fixed all the reported issues by the Unit testing. 2023-06-15 17:12:11 +02:00
Speiger ef5fdbd377 Finished Code Cleanup with Compute functions and added ReversedWrappers 2023-06-14 17:40:27 +02:00
Speiger 5e67e45910 Fixed failing tests/errors 2023-06-06 11:21:52 +02:00
Speiger 63ef68fb95 New Compute function and better toArray implementations 2023-06-05 23:40:48 +02:00
Speiger 0f9751bf70 Fixed that setValue wasn't working with ForEach implementations. 2023-05-18 23:02:27 +02:00
Speiger bcc2ffdc13 New features.
-Added: Improved Map documentation for compute methods
-Added: Dedicated toArray implementations to TreeSets
2023-05-17 09:58:55 +02:00
Speiger 2da4588430 Added getFirst/getLast/removeFirst/removeLast to lists 2023-05-17 09:20:45 +02:00
Speiger ed9ce60af4 Small Fixes to doc and Useless Imports 2023-05-17 09:01:09 +02:00
Speiger 4dd3a4a6e8 0.8.0 Release 2022-12-20 09:33:26 +01:00
Speiger efd29bbe7e First draft of the 0.8.0 patch. 2022-12-19 16:03:43 +01:00
Speiger 96458bd8b6 Changes:
- Added: RandomGenerator support (Java17), though requires self
compilation
- Added: Optimizations for HashUtils next power of function.
- Added: toArray() now returns a cached empty array if the collection is
empty.
- Added: toArray function for AsyncBuilder
- Updated: SCG to version 1.2.2
2022-12-16 18:17:51 +01:00
Speiger 477f3c9f40 Implemented ForEachIndexed into all collections 2022-12-16 13:03:28 +01:00
Speiger 3f6e7fbb88 Added forEachIndexed 2022-12-15 20:08:33 +01:00
Speiger 5650c6e69b Fixed tests don't force generate 2022-12-15 18:28:00 +01:00
Speiger 61df32b7b2 Fixed unit tests and java 8 incompat. 2022-12-15 18:10:59 +01:00
Speiger 859d00da16 Fixed Java9 or newer issues. 2022-12-15 17:13:34 +01:00
Speiger 9df95c0fc3 Supplier now uses javas function name. Tests will still fail. 2022-12-15 16:26:05 +01:00
Speiger d6d2c0a396 Changed that function names are closer to javas names. 2022-12-15 16:07:44 +01:00
Speiger 127eb71968 Massive refactor.
-Changed: Classes that used Primitive Collections Functions now use Java functions if possible to increase compat.
-Changed: Started that functions go closer to javas naming sceme.
2022-12-14 18:32:04 +01:00
Speiger 6005d0fd39 Updated SCG to version 1.2.1
This fixes that all expressions are supported.
2022-12-13 13:34:11 +01:00
Speiger 290e626f07 Updated to SCG 1.2.0 2022-12-13 13:07:24 +01:00
Speiger e30d011273 Fixed Unit Test and Added putIfAbsentTest 2022-12-08 10:40:21 +01:00
Speiger 4c52636c23 Fixed Unit Tests 2022-12-07 08:22:45 +01:00
Speiger aa580c1772 Merged branches hopefully 2022-12-07 07:36:25 +01:00
Speiger 8f7d49b280 Finished Function module and added breaking change. 2022-12-07 07:31:30 +01:00
Speiger 342b0cece9 Collection Module Works now. (Least Configurable for obvious Reasons) 2022-12-07 06:27:47 +01:00
Speiger 3ce52668df Added Priority Queue Module 2022-12-07 05:30:23 +01:00
Speiger ce9343348e Pair Module is now done. 2022-12-07 04:35:29 +01:00
Speiger 8d9f7a6761 Improved Settings a bit.
-Added: "Implementations" configuration to turn of all "Implementations" keeping the interfaces/wrappers/abstract classes. Reducing the amount of configurations that need to be set.
-Changed: removed "Sets/Maps/Lists" configuration and replaced it with "Wrappers" since they are wrappers.
-Changed: Category Specific settings (except "Enabled") is sorted by Name.
2022-12-07 04:07:11 +01:00
Speiger 1b1ec4b87a Improving Dependency Checks to be more recursive. 2022-12-07 03:30:59 +01:00
Speiger cc92ef953a Added Dependency Checks into the Module System.
Why a Dependency Check system was added?
2022-12-07 03:23:19 +01:00
Speiger 8d8c30c9a7 Finishing the Set configuration. 2022-12-07 02:50:42 +01:00
Speiger d44ad2d42e 99% of the Set Module done.
The 1% is the Distinct Iterator that relies on a Set implementation.
So I have to make a dedicated set implementation.
2022-12-06 04:57:43 +01:00
Speiger 2ed090e989 Fixed a few bugs and Started the Set compilation. 2022-12-06 04:09:40 +01:00
Speiger dafb162797 Fixed a small bug where generic types can not be disabled. 2022-12-06 03:21:48 +01:00
Speiger 57280b8285 Map Generation can now be turned off. 2022-12-06 03:05:58 +01:00
Speiger c9fc963670 Few changes.
-Removed: BooleanSet classes are gone. (Unused anyways)
-Removed: Boolean2xMaps are also now gone. (Unused Anyways)
-Added: GlobalFlags that are shared across packages.
2022-12-05 07:10:53 +01:00
Speiger cc87cae145 Implemented Lists can now be Disabled
Each List implementation can be now turned off.
Or all Lists can be turned off.
ListIterator can't be turned of since it is a IndexBasedIterator and not
a List and a few implementation use them.
2022-12-05 00:01:53 +01:00
Speiger f53d61a5bc Fixed bug in the module generator config. 2022-12-04 08:00:31 +01:00
Speiger b29874189c Finishing Framework and making Async Module Optional. 2022-12-04 07:56:04 +01:00
Speiger 6722f399db Implemented Module Configuration 2022-12-02 22:36:34 +01:00
Speiger 8e39acef45 Finished adding the modules and implemented sorting algorythm.
That this works is crazy...
2022-11-29 14:33:16 +01:00
Speiger b065ebe9ba Start of the Modularization
-Added: Base code to modularize the project.
-Added: Javas Base Module.
2022-11-27 13:16:21 +01:00
Speiger 25a7cd060a The beginning of modulizing Primitive Collections.
This will be a small rewrite of the "Builder".
Why this is done?
Basically this library is really big and having the Option to turn of
modules that you don't need is really important.

And right now enabling/disabling modules is really difficult since
everything is merged together.

So the first goal is to modularized where everything can be turned on or
of as wished.
2022-11-21 06:45:07 +01:00
Speiger 21f330260e The beginning of modulizing Primitive Collections.
This will be a small rewrite of the "Builder".
Why this is done?
2022-11-21 06:39:22 +01:00
Speiger 99e9afe7b1 Started working on the next patch.
- Added: ISizeProvider interface (Optimization Helper)
- Added: ISizeProvider into most Iterable implementations
(Distinct/Filter/FlatMap/ArrayFlatMap don't support it, for obvious
reasons)
- Added: ToArray function into Iterable which uses ISizeProvider to
reduce overhead of duplicating arrays.
- Fixed: putIfAbsent now replaces defaultValues
2022-11-20 08:56:23 +01:00
Speiger 5118ae8b1f Small Publish action fix.
-Fixed: Renamed files to junit_files since the original is deprecated
2022-07-16 05:00:50 +02:00
Speiger 03b23f0e3c Added New Iterable Feature
-Added: Repeating iterable/iterator/async feature which allows to repeate collections a desired amount of times.
-Added: Tests for it.
2022-07-16 05:00:22 +02:00
Speiger ca33c9eb9e Upgrading to TestResult Publish V2 2022-07-16 04:02:45 +02:00
Speiger b4374fdd4d Reverting build scripts because done with it. 2022-07-06 16:47:15 +02:00
Speiger 455ee64a88 Trying to expand memory a bit. 2022-07-06 14:44:06 +02:00
Speiger 893b371017 Adding a forced delay 2022-07-05 07:51:49 +02:00
Speiger 5fa9baae7a Testing Ram limits 2022-07-04 22:55:27 +02:00
Speiger 70d565c785 Hopefully Fixed setup-java 2022-07-04 22:02:49 +02:00
Speiger 5c27e332cd Attempt on including testruns. 2022-07-02 07:43:18 +02:00
Speiger f2d919bae5 Undoing what i have done so unit tests pass again. 2022-06-21 13:20:34 +02:00
Speiger 7d4c77332b Testing Improved Test Info Generator 2022-06-21 12:08:44 +02:00
Speiger d1186d4f82 Updated Readme and disabled auto sync. 2022-06-14 10:44:02 +02:00
Speiger 3b8a02ac51 Fixed syncer 2022-06-14 09:33:10 +02:00
Speiger f356d4ab57 Trying out a auto sync between branches. 2022-06-14 09:23:20 +02:00
Speiger b07bc85114 Oops 2022-06-14 09:04:38 +02:00
Speiger c37746cd84 Small Fixes
-Fixed: Unit Test Generator is now Silenced. Because 4k lines.
-Fixed: Reverted to JavaSetupV1 for build because java14 support.
-Added: Java18 support for build
2022-06-14 09:03:20 +02:00
Speiger fb7c417394 Refactor of the Project on Github.
-Added: Better System to decide what code should be generated.
-Added: Unit Tests are now included in the main branch.
-Added: Automatic System to test the main branch and ensure that tests work.
-Added: Pull Requests now run tests too.
2022-06-14 08:55:40 +02:00
299 changed files with 76541 additions and 40676 deletions
+1 -7
View File
@@ -6,12 +6,6 @@
<attribute name="gradle_used_by_scope" value="main,test"/>
</attributes>
</classpathentry>
<classpathentry kind="src" output="bin/main" path="src/main/resources">
<attributes>
<attribute name="gradle_scope" value="main"/>
<attribute name="gradle_used_by_scope" value="main,test"/>
</attributes>
</classpathentry>
<classpathentry kind="src" output="bin/test" path="src/test/java">
<attributes>
<attribute name="gradle_scope" value="test"/>
@@ -38,7 +32,7 @@
<attribute name="gradle_used_by_scope" value="builder"/>
</attributes>
</classpathentry>
<classpathentry kind="con" path="org.eclipse.jdt.launching.JRE_CONTAINER/org.eclipse.jdt.internal.debug.ui.launcher.StandardVMType/JavaSE-1.8/"/>
<classpathentry kind="con" path="org.eclipse.jdt.launching.JRE_CONTAINER/org.eclipse.jdt.internal.debug.ui.launcher.StandardVMType/JavaSE-21/"/>
<classpathentry kind="con" path="org.eclipse.buildship.core.gradleclasspathcontainer"/>
<classpathentry kind="output" path="bin/default"/>
</classpath>
+33
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@@ -0,0 +1,33 @@
name: Latest Build
on:
push:
branches: [ master ]
pull_request:
branches: [ master ]
jobs:
build:
strategy:
fail-fast: false
matrix:
jdk: [8, 11, 17, 20, 21]
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v6
- name: Set up JDK ${{ matrix.jdk }}
uses: actions/setup-java@v5
with:
distribution: 'temurin'
java-version: ${{ matrix.jdk }}
- name: Validate Gradle wrapper
uses: gradle/actions/wrapper-validation@v6
- name: Make gradlew executable
run: chmod +x ./gradlew
- name: Build with Gradle
run: ./gradlew build
+84
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@@ -0,0 +1,84 @@
name: Unit Tests
on:
push:
branches: [ master ]
jobs:
build:
name: Unit Tests
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v6
with:
fetch-depth: 0
- name: Set up JDK 11
uses: actions/setup-java@v5
with:
distribution: temurin
java-version: 11
cache: gradle
- name: Make gradlew executable
run: chmod +x ./gradlew
- name: Build and Test
run: |
./gradlew generateTestSource test jacocoTestReport --info -Dfull_test_suite=true
./gradlew --stop
- name: Publish Test Result
uses: EnricoMi/publish-unit-test-result-action@v2
id: test-results
if: always()
with:
junit_files: build/test-results/**/*.xml
fail_on: nothing
ignore_runs: true
json_thousands_separator: .
time_unit: milliseconds
- name: Create Badge Color
shell: bash
run: |
case ${{ fromJSON( steps.test-results.outputs.json ).conclusion }} in
success)
echo "BADGE_COLOR=31c653" >> $GITHUB_ENV
;;
failure)
echo "BADGE_COLOR=800000" >> $GITHUB_ENV
;;
neutral)
echo "BADGE_COLOR=696969" >> $GITHUB_ENV
;;
esac
- name: Create Test Badge
uses: emibcn/badge-action@v2
with:
label: Tests
status: '${{ fromJSON( steps.test-results.outputs.json ).conclusion }}, Passed: ${{ fromJSON( steps.test-results.outputs.json ).formatted.stats.tests_succ }}, Skipped: ${{ fromJSON( steps.test-results.outputs.json ).formatted.stats.tests_skip }}, Failed: ${{ fromJSON( steps.test-results.outputs.json ).formatted.stats.tests_fail }}'
color: ${{ env.BADGE_COLOR }}
path: tests.svg
- name: Create Coverage Badge
id: jacoco
uses: cicirello/jacoco-badge-generator@v2
with:
jacoco-csv-file: build/reports/jacoco/test/jacocoTestReport.csv
badges-directory: null
intervals: 95 80 70 60 50 0
- name: Upload Test Badge
uses: exuanbo/actions-deploy-gist@v1
with:
token: ${{ secrets.GIST_TOKEN }}
gist_id: 280257cd19cbe1dda3789bebd4ff65cf
file_path: tests.svg
- name: Upload Coverage Badge
uses: exuanbo/actions-deploy-gist@v1
with:
token: ${{ secrets.GIST_TOKEN }}
gist_id: 280257cd19cbe1dda3789bebd4ff65cf
file_path: jacoco.svg
-36
View File
@@ -1,36 +0,0 @@
# This workflow uses actions that are not certified by GitHub.
# They are provided by a third-party and are governed by
# separate terms of service, privacy policy, and support
# documentation.
# This workflow will build a Java project with Gradle and cache/restore any dependencies to improve the workflow execution time
# For more information see: https://help.github.com/actions/language-and-framework-guides/building-and-testing-java-with-gradle
name: Latest Build
on:
push:
branches: [ master ]
pull_request:
branches: [ master ]
jobs:
build:
strategy:
fail-fast: false
matrix:
jdk: [8, 11, 14, 16, 17]
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v2
- name: Set up JDK ${{ matrix.jdk }}
uses: actions/setup-java@v1
with:
java-version: ${{ matrix.jdk }}
- name: Validate Gradle wrapper
uses: gradle/wrapper-validation-action@e6e38bacfdf1a337459f332974bb2327a31aaf4b
- name: Make gradlew executable
run: chmod +x ./gradlew
- name: Build with Gradle
run: ./gradlew build
+27
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@@ -0,0 +1,27 @@
name: Measure coverage
on:
push:
branches: [ debug ]
jobs:
build:
name: Code Quality Check
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v6
with:
fetch-depth: 0 # Shallow clones should be disabled for a better relevancy of analysis
- name: Set up JDK 11
uses: actions/setup-java@v5
with:
distribution: 'temurin'
java-version: 11
cache: 'gradle'
- name: Make gradlew executable
run: chmod +x ./gradlew
- name: Build and analyze
run: ./gradlew generateTestSource test jacocoTestReport --info -Dfull_test_suite=true
- name: Upload to CodeCov
env:
CODECOV_TOKEN: ${{ secrets.CODECOV_TOKEN }}
run: bash <(curl -s https://codecov.io/bash) -t $CODECOV_TOKEN
@@ -0,0 +1,39 @@
name: Unit Tests
on:
pull_request:
branches: [ master ]
jobs:
build:
name: Unit Tests
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v6
with:
fetch-depth: 0
- name: Set up JDK 11
uses: actions/setup-java@v5
with:
distribution: temurin
java-version: 11
cache: gradle
- name: Make gradlew executable
run: chmod +x ./gradlew
- name: Build and Test
env:
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
run: ./gradlew generateTestSource test jacocoTestReport --info -Dfull_test_suite=true
- name: Publish Test Result
uses: EnricoMi/publish-unit-test-result-action@v2
id: test-results
if: always()
with:
junit_files: build/test-results/**/*.xml
fail_on: nothing
ignore_runs: true
json_thousands_separator: .
time_unit: milliseconds
+14
View File
@@ -30,5 +30,19 @@ gradle-app.setting
/src/main/java/speiger/src/collections/doubles/*
/src/main/java/speiger/src/collections/objects/*
#Generated Tests
/src/test/java/speiger/src/testers/booleans/*
/src/test/java/speiger/src/testers/bytes/*
/src/test/java/speiger/src/testers/shorts/*
/src/test/java/speiger/src/testers/chars/*
/src/test/java/speiger/src/testers/ints/*
/src/test/java/speiger/src/testers/longs/*
/src/test/java/speiger/src/testers/floats/*
/src/test/java/speiger/src/testers/doubles/*
/src/test/java/speiger/src/testers/objects/*
/src/test/java/speiger/src/tests/*
#Cache result
/src/builder/resources/speiger/assets/collections/cache.bin
/src/builder/resources/speiger/assets/testers/cache.bin
/src/builder/resources/speiger/assets/tests/cache.bin
+14 -13
View File
@@ -2,21 +2,22 @@
<projectDescription>
<name>Primitive-Collections</name>
<comment></comment>
<projects/>
<projects>
</projects>
<buildSpec>
<buildCommand>
<name>org.eclipse.jdt.core.javabuilder</name>
<arguments>
</arguments>
</buildCommand>
<buildCommand>
<name>org.eclipse.buildship.core.gradleprojectbuilder</name>
<arguments>
</arguments>
</buildCommand>
</buildSpec>
<natures>
<nature>org.eclipse.jdt.core.javanature</nature>
<nature>org.eclipse.buildship.core.gradleprojectnature</nature>
</natures>
<buildSpec>
<buildCommand>
<name>org.eclipse.jdt.core.javabuilder</name>
<arguments/>
</buildCommand>
<buildCommand>
<name>org.eclipse.buildship.core.gradleprojectbuilder</name>
<arguments/>
</buildCommand>
</buildSpec>
<linkedResources/>
<filteredResources/>
</projectDescription>
+295 -239
View File
@@ -1,240 +1,296 @@
# 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.
- Added: CopyOnWriteArrayList and tests for it
- Added: Support up to Java17.
- Added: Build System now adds module-info if the Running JVM is 9 or higher
- Added: ArrayList.of(Class, size) that allows you to allocate a size right at the creation of the List without having to create a wrapper array.
- Added: A ConcurrentHashMap implementation.
- Fixed: containsValue in the HashMap wouldn't check the nullKey
- Removed: Deprecated functions from SortedMaps/Sets
### Version 0.5.3
- Added: OrderedMap/Set
- Added: Deprecation to Functions that are specific to Ordered interfaces in the SortedMap/Set
- Added: subFrom to Maps which is the counterpart of the addTo method
- Added: pourAsList and pourAsSet (booleans excluded for sets) to Iterable
- Fixed: ArrayList.grow had a small bug where it would trigger to early causing performance problems with exact sized collections.
- Fixed: FIFOQueue size constructor had a small bug where it would trigger a array enlargement when all elements were inserted.
### Version 0.5.2
- Fixed: Bugs with Queues starting with the wrong size
- Fixed: ArrayGrowth for Queues was +1 instead of +50%
- Added: Benchmarks with java and FastUtil
### Version 0.5.1
- Fixed: Reworked the NavigableSet/Map implementations of RBTree/AVLTree/Array Sets/Maps so they are now deemed stable.
- Added: Another 150k Unit tests.
- Added: List and Set Unit tests for Integer (or Primitives in this case) to ensure basic stability there. (Now covering all sets and lists)
- Fixed: Bugs with null values for primitive collections.
- Removed: ArraySet/Map subSet/subMap implementation was removed.
### Version 0.5.0
- Added: 2 Helper functions to find out how many bits are required to store a Number.
- Added: pour function directly into Iterable which allows to collect all elements in the Iterable directly.
- Added: The new ToArray method from Java9 and newer into the library. Using a functional interface. (Just a backport)
- Changed: Reworked how the Map Builder functions are created. They are now in a SubClass that moves them out of the way. Less Clutter. (This might break things if that was used before)
- Added: Map Builder that allows now to Build Maps like Guava ImmutableMaps can be build. Note: This has a slight performance overhead.
- Added: Unmodifiable and Synchronize wrapper functions direclty into Collection Interfaces. This is mostly a quality of life thing.
- Added: Unmodifiable and Synchronized Wrapper Collections can now be cloned. They clone the underlying map which doesn't break functionality. (Had a usecase for it)
- Added: A boxed putAll array variant.
- Fixed: EnumMaps didn't keep track of their size and now got proper care and implementations as needed. There might be more work required but at least the core functionality is now up to date.
- Added: Tests for the new Stream replace functions to ensure no bugs are left.
- Fixed: Custom HashSet reduce function with a default value was checking incorrectly for present keys.
- Added: Guava TestSuit
- Fixed: HashCode and toString method would crash if the Object Key/Value was null
- Added: AbstractTypeCollection now delegates the contains check to type-specific Collections if it detects it.
- Fixed: Map.Entry toString wasn't writing values not like it should do.
- Fixed: Set.hashCode now is the sum of the elements instead of a Unique HashCode based on the elements.
- Fixed: Added missing NonNull Checks.
- Fixed: Custom/OpenHashMap.containsValue implementation was wrong.
- Fixed: Custom/OpenHashMap.compute/present/absent now works how it is specified in the Java Documentation
- Fixed: Custom/OpenHashMap.merge/BulkMerge now works how it is specified in the Java Documentation
- Fixed: Custom/Linked/OpenHashMap.keySet.remove was causing a infinite loop.
- Fixed: Custom/Linked/OpenHashMap.entrySet.contains was not correctly comparing the entry.
- Fixed: Custom/OpenHashMap.mapIterator now no longer crashes in certain cases.
- Added: Custom/LinkedOpenHashMap now takes use of the improved Iterator it has for containsValue
- Fixed: CustomOpenHashMap.keySet.forEach was basically putting out keys even if they were present
- Fixed: ImmutableMaps issues thanks to the tests. Roughly the same as the rest of the maps
- Fixed: RB/AVLTreeMaps issues. Roughly the same as the rest of the maps
- Fixed: SubLists are now properly implemented.
- Fixed: HashSet Iterator bugs now fixed... That was Painful.
- Added: Tests for Lists and Sets
### Version 0.4.5
- Added: removeAll/retainAll(Collection c, Consumer r) which receives all the elements that got deleted from the collection
- Fixed: Supplier get function wasn't referencing original function.
- Added: addIfPresent/Absent to lists
- Added: distinct, limit and peek iterators
- Added: Iterable's can now reduce its contents
- Added: Better ForEach support for IterableWrappers so a Iterator chain is not created
- Added: SwapRemove to Lists which moves the last element into the desired space to be deleted
- Added: More Test cases
### Version 0.4.4
- Fixed: ObjectArrayList.of was causing crashes because of a Poor implementation.
- Added: Unsorted HashMaps/Sets now throw Concurrent exceptions if they were modified during a rehash.
- Added: Array/Collection version of enqueue and enqueueFirst to PriorityQueues.
- Added: fillBuffer function into PrimitiveLists which allow to optimize JavaNio buffers if needed.
### Version 0.4.3
- Added: Wrapper now support the Optimized Lambda replacer functions to improve performance.
- Added: FIFO Queue has now a minimum capacity and that is now checked more consistently.
### Version 0.4.2
- Added: Lists/Sets/Maps/PriorityQueues are now copy-able. with the new copy() function.
Note: subLists/subMaps/subSets or synchronize/unmodifyable wrappers do not support that function.
- Fixed: PriorityQueues didn't implement: hashCode/equals/toString
### Version 0.4.1
- Changed: ForEach with input now provides input, value instead of value, input, this improves the usage of method references greatly
- Added: addAll with Array-types in collections.
- Added: Java Iterator/Iterable support for Stream replacing methods
- Added: Suppliers.
- Added: SupplyIfAbsent. It is ComputeIfAbsent but using suppliers
- Added: Count feature into Iterable
- Fixed: A couple bugs with the new StreamReplacing functions in LinkedCollections Iterating to Infinity
### Version 0.4.0
- Changed: Iterable specific helper functions were moved out of Iterators and moved into Iterables
- Added: New Stream replacing functions: findFirst, matchesAny/All/None
- Fixed: Compute/ComputeIfAbsent/ComputeIfPresent/Merge/BulkMerge in maps now behave like they should.
- Added: Implementations for New Stream replacing functions.
- Changed: Removed a lot of duplicated forEach implementations
- Added: Flat/Mapping functions (to object) are now accessible to primitive maps.
- Added: Filter function to Iterators/Iterables (Iterable implements it by default)
- Changed: Cleanup of some variables/mappers
- Added/Fixed: AVL/RBTreeMap got reworked and SubMaps work more properly now. Also forEach support got improved a lot
- Added/Fixed: TreeSubSets (RB/AVL) got their functional implementations improved too.
- Added: Pairs are now a thing. In Mutable/Immutable Form
### Version 0.3.6
- Fixed: addAll non Type Specific Lists was causing crashes.
- Fixed/Changed: clearAndTrim's implementation was all over the place. In some cases causing crash scenarios.
- Fixed: Wrappers didn't implement toString/equals/hashCode
- Added: Tests for addAll Bug
- Changed: Cleaned up CodeStyle as bugs were fixed.
### Version 0.3.5
- Fixed: Simple Code Generator dependency was declared wrong. Its only needed for runtime. Not for Compilation.
- Fixed: ObjectLists Crashed when a null was provided as a Comparator. (Unless the List was Initialized with the ClassType)
- Fixed: LinkedLists didn't implement add(Object)
- Fixed: Object Collections did have the JavaCollections deprecated as the Constructor. This should only be deprecated for Primitives
- Added: Tests with 5k Random names for Object sorting.
- Changed: Object Arrays no longer require a Comparable[] it just assumes now that the elements in the Array are Comparable
- Fixed: Dependency to SimpleCodeGenerator should be no longer a thing. Because the resulting library doesn't need it only the builder does.
### Version 0.3.4
- Fixed: ArrayLists didn't resize properly if they were empty.
### Version 0.3.3
- Added: Flat/Mapping function for Iterables/Iterators to help avoid streams for cleaner looking code
- Fixed: AVLTrees pollFirst/Last is now keeping orders and is fixed
- Fixed: AbstractCollection bulk adding methods now link to the specialized implementations.
- Fixed: A bug with getElements in ArrayList.
- Fixed: PriorityQueue remove/toArray function were renamed so they fit better with other interfaces. (remove => removeFirst and toArray uses a different genericType)
- Added: LinkedList which is a List/PriorityDequeue/Stack which allows for more optimized use-cases and reduced boxing/unboxing.
- Added: Tests for LinkedList
### Version 0.3.2
- Fixed: Map.put wasn't referring to primitive variants.
- Added: ImmutableList.
- Added: Iterator pour function into a List or Array
- Changed: Arrays Wrap is now accessible to Objects and now is ? extends TYPE instead of TYPE.
- Added: OpenHashSets now implement foreach and have less overhead.
- Added: ImmutableOpenHashSet that is not editable (is linked by default for fast iteration)
- Added: CustomOpenHashSets now implement foreach and have less overhead.
- Added: ImmutableOpenHashMap that is not editable (is linked by default for fast iteration)
- Added: Maps can now be created through the interface.
- Fixed: Lists.addElements(T...elements) was adding elements at the beginning of a list instead of the end.
- Fixed: Bugs with the AVLTreeSet. And marked bugs with AVLTreeX that are still present.
### Version 0.3.1
- Fixed: containsKey & containsValue in HashMaps were deprecated for Object Variants.
- Fixed: HashMap wasn't deleting Keys & Values references when removing a Object
- Fixed: AVLTreeMap didn't balance properly.
- Changed: EnumMap no longer tries to access SharedSecrets since its gone in java11
- Added: HashMaps now implement ITrimmable
- Added: AVLTreeSet didn't balance properly
- Fixed: HashMaps & LinkedMaps weren't clearing references properly.
### Version 0.3.0 (Breaking 0.2.0)
- Added: Stack.isEmpty was missing
- Changed: remove/removeLast/enqueue/enqueueFirst no longer use Type Suffixes
- Removed: Suffixes for unmodifiable & synchronize functions.
- Changed: Primitive Stacks no longer depend on the base Stack class. Because seriously not needed.
- Changed: PriorityQueues no longer extends Object Variant.
- Changed: Maps.get function is no longer using Suffixes unless its absolutely necessary.
- Changed: Maps.remove function is no longer using Suffixes unless its absolutely necessary.
- Changed: ObjectList methods are no longer marked Deprecated even so it was for primitive ones.
- Added: Shuffle & Reverse Methods.
- Added: Concat Iterators.
# Changelog of versions
### Version 0.9.0
- Added: getFirst/getLast/removeFirst/removeLast to List.class.
- Added: Dedicated Set toArray implementations.
- Added: ToArray/pushTop functions to Stack.class.
- Added: ComputeNonDefault functions which will contain the current behavior of the Compute function, while the Compute will be changed to be more java compliant!
- Added: List.reversed, which returns a SubList that has all elements in reversed order and also inserts reversed.
- Added: Iterators.infinite as an option that will create a Infinite Iterator based on the inputed one.
- Added: List.indexedIterator which allows you to create a iterator with a customized iteration indecies. Useful if you want to transform lists output.
- Added: PriorityQueue.contains is now a function
- Added: Iterators/Async Builders now support MapToPrimitiveType function on the object variant. So more processing can be done. (Will be expanded upon later versions)
- Fixed: SetValue wasn't working on forEach implementations.
- Fixed: Compute functions now perform with primitives more java compliant. Meaning that getDefaultReturnValue function no longer is seen as null.
- Fixed: Supplier was using the wrong dataType in their function name.
- Updated: SimpleCodeGenerator 1.3.0 is now being used which allows for iterative code support.
- Breaking Change: Map.compute/IfAbsent/Present and Map.supplyIfAbsent if the value is a primitive it will no longer accept the defaultReturnValue() as "null" if that functionality is desired then use: computeNonDefault which contains the functionality!
### Version 0.8.1
- Added: getFirst/getLast/removeFirst/removeLast to List.class.
- Added: Dedicated Set toArray implementations.
- Added: ToArray/pushTop functions to Stack.class.
- Added: ComputeNonDefault functions which will contain the current behavior of the Compute function, while the Compute will be changed to be more java compliant!
- Added: List.reversed, which returns a SubList that has all elements in reversed order and also inserts reversed.
- Added: Iterators.infinite as an option that will create a Infinite Iterator based on the inputed one.
- Added: List.indexedIterator which allows you to create a iterator with a customized iteration indecies. Useful if you want to transform lists output.
- Added: PriorityQueue.contains is now a function
- Added: Iterators/Async Builders now support MapToPrimitiveType function on the object variant. So more processing can be done. (Will be expanded upon later versions)
- Fixed: SetValue wasn't working on forEach implementations.
- Fixed: Compute functions now perform with primitives more java compliant. Meaning that getDefaultReturnValue function no longer is seen as null.
- Fixed: Supplier was using the wrong dataType in their function name.
- Updated: SimpleCodeGenerator 1.3.0 is now being used which allows for iterative code support.
### Version 0.8.0
- Added: getFirst/getLast/removeFirst/removeLast to Lists
- Added: Dedicated implementations for toArray into TreeSets
- Fixed: forEach methods in Maps now can use "setValue" functions.
### Version 0.8.0
- Added: ISizeProvider interface (Optimization Helper)
- Added: ISizeProvider into most Iterable implementations (Distinct/Filter/FlatMap/ArrayFlatMap don't support it, for obvious reasons)
- Added: ToArray function into Iterable which uses ISizeProvider to reduce overhead of duplicating arrays.
- Added: Functions that have the same type, Int2IntFunction as example, have now a identity function.
- Added: Functions of a BooleanValue have now alwaysTrue/False function.
- Added: ForEachIndexed for all Iterable implementations
- Added: RandomGenerator support (Java17), though requires self compilation
- Added: Optimizations for HashUtils next power of function.
- Added: toArray() now returns a cached empty array if the collection is empty.
- Added: toArray function for AsyncBuilder
- Added: Modularization to the library where feature can be disabled as needed. (Requires Self-Compilation)
- Fixed: putIfAbsent now replaces defaultValues
- Fixed: OpenHashSet/Map and their Custom Variants no longer rely on List implementations.
- Fixed: ObjectCopyOnWriteList.of did create a ObjectArrayList instead of the CopyOnWrite variant.
- Removed: BooleanSet and Maps that start with a Boolean classes since they can not be used anyways.
- Breaking Change: Function classes now use the "apply/applyAs/test" format from Java itself, instead of the "get" format. This cleans up a lot of things. But will break existing function class implementations
- Breaking Change: Classes that used PrimitiveCollection functions now default to java functions where applicable, this is to increase compat.
- Breaking Change: Some function classes now get closer to javas terms. (Predicate/UnaryOperator etc)
### 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.
- Added: CopyOnWriteArrayList and tests for it
- Added: Support up to Java17.
- Added: Build System now adds module-info if the Running JVM is 9 or higher
- Added: ArrayList.of(Class, size) that allows you to allocate a size right at the creation of the List without having to create a wrapper array.
- Added: A ConcurrentHashMap implementation.
- Fixed: containsValue in the HashMap wouldn't check the nullKey
- Removed: Deprecated functions from SortedMaps/Sets
### Version 0.5.3
- Added: OrderedMap/Set
- Added: Deprecation to Functions that are specific to Ordered interfaces in the SortedMap/Set
- Added: subFrom to Maps which is the counterpart of the addTo method
- Added: pourAsList and pourAsSet (booleans excluded for sets) to Iterable
- Fixed: ArrayList.grow had a small bug where it would trigger to early causing performance problems with exact sized collections.
- Fixed: FIFOQueue size constructor had a small bug where it would trigger a array enlargement when all elements were inserted.
### Version 0.5.2
- Fixed: Bugs with Queues starting with the wrong size
- Fixed: ArrayGrowth for Queues was +1 instead of +50%
- Added: Benchmarks with java and FastUtil
### Version 0.5.1
- Fixed: Reworked the NavigableSet/Map implementations of RBTree/AVLTree/Array Sets/Maps so they are now deemed stable.
- Added: Another 150k Unit tests.
- Added: List and Set Unit tests for Integer (or Primitives in this case) to ensure basic stability there. (Now covering all sets and lists)
- Fixed: Bugs with null values for primitive collections.
- Removed: ArraySet/Map subSet/subMap implementation was removed.
### Version 0.5.0
- Added: 2 Helper functions to find out how many bits are required to store a Number.
- Added: pour function directly into Iterable which allows to collect all elements in the Iterable directly.
- Added: The new ToArray method from Java9 and newer into the library. Using a functional interface. (Just a backport)
- Changed: Reworked how the Map Builder functions are created. They are now in a SubClass that moves them out of the way. Less Clutter. (This might break things if that was used before)
- Added: Map Builder that allows now to Build Maps like Guava ImmutableMaps can be build. Note: This has a slight performance overhead.
- Added: Unmodifiable and Synchronize wrapper functions direclty into Collection Interfaces. This is mostly a quality of life thing.
- Added: Unmodifiable and Synchronized Wrapper Collections can now be cloned. They clone the underlying map which doesn't break functionality. (Had a usecase for it)
- Added: A boxed putAll array variant.
- Fixed: EnumMaps didn't keep track of their size and now got proper care and implementations as needed. There might be more work required but at least the core functionality is now up to date.
- Added: Tests for the new Stream replace functions to ensure no bugs are left.
- Fixed: Custom HashSet reduce function with a default value was checking incorrectly for present keys.
- Added: Guava TestSuit
- Fixed: HashCode and toString method would crash if the Object Key/Value was null
- Added: AbstractTypeCollection now delegates the contains check to type-specific Collections if it detects it.
- Fixed: Map.Entry toString wasn't writing values not like it should do.
- Fixed: Set.hashCode now is the sum of the elements instead of a Unique HashCode based on the elements.
- Fixed: Added missing NonNull Checks.
- Fixed: Custom/OpenHashMap.containsValue implementation was wrong.
- Fixed: Custom/OpenHashMap.compute/present/absent now works how it is specified in the Java Documentation
- Fixed: Custom/OpenHashMap.merge/BulkMerge now works how it is specified in the Java Documentation
- Fixed: Custom/Linked/OpenHashMap.keySet.remove was causing a infinite loop.
- Fixed: Custom/Linked/OpenHashMap.entrySet.contains was not correctly comparing the entry.
- Fixed: Custom/OpenHashMap.mapIterator now no longer crashes in certain cases.
- Added: Custom/LinkedOpenHashMap now takes use of the improved Iterator it has for containsValue
- Fixed: CustomOpenHashMap.keySet.forEach was basically putting out keys even if they were present
- Fixed: ImmutableMaps issues thanks to the tests. Roughly the same as the rest of the maps
- Fixed: RB/AVLTreeMaps issues. Roughly the same as the rest of the maps
- Fixed: SubLists are now properly implemented.
- Fixed: HashSet Iterator bugs now fixed... That was Painful.
- Added: Tests for Lists and Sets
### Version 0.4.5
- Added: removeAll/retainAll(Collection c, Consumer r) which receives all the elements that got deleted from the collection
- Fixed: Supplier get function wasn't referencing original function.
- Added: addIfPresent/Absent to lists
- Added: distinct, limit and peek iterators
- Added: Iterable's can now reduce its contents
- Added: Better ForEach support for IterableWrappers so a Iterator chain is not created
- Added: SwapRemove to Lists which moves the last element into the desired space to be deleted
- Added: More Test cases
### Version 0.4.4
- Fixed: ObjectArrayList.of was causing crashes because of a Poor implementation.
- Added: Unsorted HashMaps/Sets now throw Concurrent exceptions if they were modified during a rehash.
- Added: Array/Collection version of enqueue and enqueueFirst to PriorityQueues.
- Added: fillBuffer function into PrimitiveLists which allow to optimize JavaNio buffers if needed.
### Version 0.4.3
- Added: Wrapper now support the Optimized Lambda replacer functions to improve performance.
- Added: FIFO Queue has now a minimum capacity and that is now checked more consistently.
### Version 0.4.2
- Added: Lists/Sets/Maps/PriorityQueues are now copy-able. with the new copy() function.
Note: subLists/subMaps/subSets or synchronize/unmodifyable wrappers do not support that function.
- Fixed: PriorityQueues didn't implement: hashCode/equals/toString
### Version 0.4.1
- Changed: ForEach with input now provides input, value instead of value, input, this improves the usage of method references greatly
- Added: addAll with Array-types in collections.
- Added: Java Iterator/Iterable support for Stream replacing methods
- Added: Suppliers.
- Added: SupplyIfAbsent. It is ComputeIfAbsent but using suppliers
- Added: Count feature into Iterable
- Fixed: A couple bugs with the new StreamReplacing functions in LinkedCollections Iterating to Infinity
### Version 0.4.0
- Changed: Iterable specific helper functions were moved out of Iterators and moved into Iterables
- Added: New Stream replacing functions: findFirst, matchesAny/All/None
- Fixed: Compute/ComputeIfAbsent/ComputeIfPresent/Merge/BulkMerge in maps now behave like they should.
- Added: Implementations for New Stream replacing functions.
- Changed: Removed a lot of duplicated forEach implementations
- Added: Flat/Mapping functions (to object) are now accessible to primitive maps.
- Added: Filter function to Iterators/Iterables (Iterable implements it by default)
- Changed: Cleanup of some variables/mappers
- Added/Fixed: AVL/RBTreeMap got reworked and SubMaps work more properly now. Also forEach support got improved a lot
- Added/Fixed: TreeSubSets (RB/AVL) got their functional implementations improved too.
- Added: Pairs are now a thing. In Mutable/Immutable Form
### Version 0.3.6
- Fixed: addAll non Type Specific Lists was causing crashes.
- Fixed/Changed: clearAndTrim's implementation was all over the place. In some cases causing crash scenarios.
- Fixed: Wrappers didn't implement toString/equals/hashCode
- Added: Tests for addAll Bug
- Changed: Cleaned up CodeStyle as bugs were fixed.
### Version 0.3.5
- Fixed: Simple Code Generator dependency was declared wrong. Its only needed for runtime. Not for Compilation.
- Fixed: ObjectLists Crashed when a null was provided as a Comparator. (Unless the List was Initialized with the ClassType)
- Fixed: LinkedLists didn't implement add(Object)
- Fixed: Object Collections did have the JavaCollections deprecated as the Constructor. This should only be deprecated for Primitives
- Added: Tests with 5k Random names for Object sorting.
- Changed: Object Arrays no longer require a Comparable[] it just assumes now that the elements in the Array are Comparable
- Fixed: Dependency to SimpleCodeGenerator should be no longer a thing. Because the resulting library doesn't need it only the builder does.
### Version 0.3.4
- Fixed: ArrayLists didn't resize properly if they were empty.
### Version 0.3.3
- Added: Flat/Mapping function for Iterables/Iterators to help avoid streams for cleaner looking code
- Fixed: AVLTrees pollFirst/Last is now keeping orders and is fixed
- Fixed: AbstractCollection bulk adding methods now link to the specialized implementations.
- Fixed: A bug with getElements in ArrayList.
- Fixed: PriorityQueue remove/toArray function were renamed so they fit better with other interfaces. (remove => removeFirst and toArray uses a different genericType)
- Added: LinkedList which is a List/PriorityDequeue/Stack which allows for more optimized use-cases and reduced boxing/unboxing.
- Added: Tests for LinkedList
### Version 0.3.2
- Fixed: Map.put wasn't referring to primitive variants.
- Added: ImmutableList.
- Added: Iterator pour function into a List or Array
- Changed: Arrays Wrap is now accessible to Objects and now is ? extends TYPE instead of TYPE.
- Added: OpenHashSets now implement foreach and have less overhead.
- Added: ImmutableOpenHashSet that is not editable (is linked by default for fast iteration)
- Added: CustomOpenHashSets now implement foreach and have less overhead.
- Added: ImmutableOpenHashMap that is not editable (is linked by default for fast iteration)
- Added: Maps can now be created through the interface.
- Fixed: Lists.addElements(T...elements) was adding elements at the beginning of a list instead of the end.
- Fixed: Bugs with the AVLTreeSet. And marked bugs with AVLTreeX that are still present.
### Version 0.3.1
- Fixed: containsKey & containsValue in HashMaps were deprecated for Object Variants.
- Fixed: HashMap wasn't deleting Keys & Values references when removing a Object
- Fixed: AVLTreeMap didn't balance properly.
- Changed: EnumMap no longer tries to access SharedSecrets since its gone in java11
- Added: HashMaps now implement ITrimmable
- Added: AVLTreeSet didn't balance properly
- Fixed: HashMaps & LinkedMaps weren't clearing references properly.
### Version 0.3.0 (Breaking 0.2.0)
- Added: Stack.isEmpty was missing
- Changed: remove/removeLast/enqueue/enqueueFirst no longer use Type Suffixes
- Removed: Suffixes for unmodifiable & synchronize functions.
- Changed: Primitive Stacks no longer depend on the base Stack class. Because seriously not needed.
- Changed: PriorityQueues no longer extends Object Variant.
- Changed: Maps.get function is no longer using Suffixes unless its absolutely necessary.
- Changed: Maps.remove function is no longer using Suffixes unless its absolutely necessary.
- Changed: ObjectList methods are no longer marked Deprecated even so it was for primitive ones.
- Added: Shuffle & Reverse Methods.
- Added: Concat Iterators.
- Added: PriorityQueues
+44
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@@ -0,0 +1,44 @@
### Extra Features
Primitive Collections comes with a few extra features that are disabled by default.
These will be enabled as soon they become relevant or never at all.
But some of these can be already unlocked when the target version changes.
If you compile the library for yourself you will automatically gain access to said features.
### Java17 Exclusive Features
Java17 has some new features that can sadly not really be back-ported but the library still supports them if it is compiled with java17
- RandomGenerator: Java17 has added [RandomGenerator.class](https://docs.oracle.com/en/java/javase/17/docs/api/java.base/java/util/random/RandomGenerator.html).
This allows to use custom random implementations without having to re-implement them yourselves.
### ModuleSettings
Primitive Collections is a huge library.
But maybe you only use like 5-10 different classes.
Normally you would use tools like "Proguard" to get rid of classes that you don't use.
But since a lot of classes have dependencies on each other this would only do so much.
This is where the [ModuleSettings](ModuleSettings.json) come into play.
It allows you to turn of implementations as you wish and adjusts the code that everything still works.
There is 3 layers of control inside of the ModuleSettings.
- Modules directly at the top that turn off everything.
- Type Specific configurations, where you can for example turn of everything thats "Long" based.
- And then there is each type specific module settings.
Allowing for greater control without having to edit hundreds of lines of code.
On top of that:
Any Setting that isn't "Present" can be defined as "Enabled" or "Disabled" using the "Default" argument.
If "Default" is missing, then it will just default to "Enabled".
So if you want to disable just 1 thing you can keep that 1 thing and delete the rest of the Setting.
It will still work as the same.
The default settings just come with everything so you can see what is controllable.
Note: If a global Module setting is disabled but a dependency needs said Module, it will enable only the required classes.
If a Module type (Float-Collection as example) is specifically disabled, the Dependency Resolver will throw errors telling you whats wrong.
How to compile the Code with the ModuleSettings enabled:
```
/gradlew.bat generateLimitSource build -x test
```
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+24 -5
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@@ -1,8 +1,12 @@
![build](https://github.com/Speiger/Primitive-Collections/actions/workflows/build_validator.yml/badge.svg)
![build](https://github.com/Speiger/Primitive-Collections/actions/workflows/build_action.yml/badge.svg)
[![Latest Release](https://jitpack.io/v/Speiger/Primitive-Collections.svg)](https://jitpack.io/#Speiger/Primitive-Collections)
![Maven Central Version](https://img.shields.io/maven-central/v/io.github.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)
![GitHub commit activity](https://img.shields.io/github/commit-activity/y/Speiger/Primitive-Collections)
![Unit Tests](https://github.com/Speiger/Primitive-Collections/actions/workflows/build_tests_action.yml/badge.svg)
![Coverage](https://gist.githubusercontent.com/Speiger/280257cd19cbe1dda3789bebd4ff65cf/raw/jacoco.svg)
[![codecov](https://codecov.io/gh/Speiger/Primitive-Collections/branch/debug/graph/badge.svg?token=WSTSNJM0EN)](https://codecov.io/gh/Speiger/Primitive-Collections)
![Tests Done](https://gist.githubusercontent.com/Speiger/280257cd19cbe1dda3789bebd4ff65cf/raw/tests.svg)
# 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.
@@ -14,6 +18,10 @@ Benchmarks can be found here: [[Charts]](https://github.com/Speiger/Primitive-Co
[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.
[Here](EXTRAS.md) you also find features that can be used when you compile the library for yourself.
These features are not used by default to have a wider range of compat, or require self compilation.
Such as pruning classes that are not needed in your code.
## Main Features:
- ArrayLists / LinkedLists / CopyOnWriteLists
- HashSets/Maps (Linked & HashControl)
@@ -36,14 +44,21 @@ To ensure that problems can be dealt with even if it is breaking the current API
# How to install
Using Jitpack Gradle
```gradle
```groovy
repositories {
maven {
url = "https://jitpack.io"
}
}
dependencies {
implementation 'com.github.Speiger:Primitive-Collections:0.7.0'
implementation 'com.github.Speiger:Primitive-Collections:0.9.0'
}
```
Using Maven Central
```groovy
dependencies {
implementation 'io.github.speiger:Primitive-Collections:0.9.0'
}
```
@@ -68,7 +83,11 @@ Please if you want to contribute follow the [Rule-Sheet](RuleSheet.md). It keeps
# How to Build
The SourceCode can be generated via:
```
/gradlew.bat generateSource
```
to generate SourceCode and build the jar:
/gradlew.bat build
```
/gradlew.bat build
```
+15
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@@ -0,0 +1,15 @@
# Security Policy
## Supported Versions
Due to how the releases work, only the latest versions will be supported.
## Reporting a Vulnerability
If you have discovered a security vulnerability in this project, please report it privately.
**Please refrain from posting in public issues.**
This gives me time to process issues that are being found, and reduces the possiblity of abuse while patches are being created.
Please disclose it [here](https://github.com/Speiger/Primitive-Collections/security/advisories/new).
Please consider that this project is developed by a single person.
So please provide a reasonable timeframe when reporting.
+256 -25
View File
@@ -1,5 +1,7 @@
plugins {
id 'java-library'
id "jacoco"
id "com.vanniktech.maven.publish" version "0.28.0"
}
tasks.withType(JavaCompile) {
@@ -9,6 +11,7 @@ tasks.withType(JavaCompile) {
apply plugin: 'java'
apply plugin: 'eclipse'
apply plugin: 'maven-publish'
apply plugin: 'signing'
repositories {
mavenCentral()
@@ -18,16 +21,22 @@ repositories {
}
archivesBaseName = 'Primitive Collections'
version = '0.7.0';
version = RELEASE_VERSION;
sourceCompatibility = targetCompatibility = compileJava.sourceCompatibility = compileJava.targetCompatibility = JavaVersion.current();
System.out.println("Java Version: "+compileJava.sourceCompatibility)
java {
withJavadocJar()
withSourcesJar()
}
javadoc {
options.tags = [ "implSpec", "note" ]
}
eclipse {
classpath {
downloadJavadoc = true
@@ -39,14 +48,16 @@ sourceSets {
builder
}
configurations {
builderCompile.extendsFrom compile
}
dependencies {
builderImplementation 'de.speiger:Simple-Code-Generator:1.1.4'
builderImplementation 'com.google.code.gson:gson:2.10'
builderImplementation 'de.speiger:Simple-Code-Generator:1.3.0'
testImplementation 'junit:junit:4.12'
testImplementation 'com.google.guava:guava-testlib:31.0.1-jre'
testImplementation 'com.google.guava:guava-testlib:33.6.0-jre'
}
@@ -62,7 +73,7 @@ task generateGithubSource(type: JavaExec) {
description = 'Builds the sourcecode for Github Actions'
classpath = sourceSets.builder.runtimeClasspath
main = 'speiger.src.builder.PrimitiveCollectionsBuilder'
args = ['false', 'true']
args = ['silent']
}
task forceGenerateSource(type: JavaExec) {
@@ -70,17 +81,31 @@ task forceGenerateSource(type: JavaExec) {
description = 'Builds the sourcecode forceful'
classpath = sourceSets.builder.runtimeClasspath
main = 'speiger.src.builder.PrimitiveCollectionsBuilder'
args = ['true']
args = ['force']
}
task javadocJar(type: Jar) {
from javadoc
classifier = 'javadoc'
task generateTestSource(type: JavaExec) {
group = 'internal'
description = 'Builds the sourcecode for the Tests'
classpath = sourceSets.builder.runtimeClasspath
main = 'speiger.src.builder.PrimitiveCollectionsBuilder'
args = ['tests', 'silent']
}
task srcJar(type: Jar) {
from sourceSets.main.allSource
classifier = 'sources'
task forceGenerateTestSource(type: JavaExec) {
group = 'internal'
description = 'Builds the sourcecode for the Tests'
classpath = sourceSets.builder.runtimeClasspath
main = 'speiger.src.builder.PrimitiveCollectionsBuilder'
args = ['tests', 'silent', 'force']
}
task generateLimitSource(type: JavaExec) {
group = 'internal'
description = 'Builds the Sourcecode with the ModuleSettings.json applied'
classpath = sourceSets.builder.runtimeClasspath
main = 'speiger.src.builder.PrimitiveCollectionsBuilder'
args = ['silent', 'load']
}
compileJava.dependsOn generateGithubSource
@@ -89,22 +114,159 @@ javadoc.failOnError = false
javadoc.options.memberLevel = JavadocMemberLevel.PUBLIC
javadoc.options.quiet()
artifacts {
archives javadocJar
archives srcJar
task testBooleans(type: Test) {
group 'tests'
description 'Tests all Boolean Collections'
filter {
excludeTestsMatching "speiger.src.testers.**.*"
includeTestsMatching "speiger.src.tests.booleans.**.*"
}
useJUnit()
ignoreFailures = true
maxHeapSize = maxMemory
}
task testBytes(type: Test) {
group 'tests'
description 'Tests all Byte Collections'
filter {
excludeTestsMatching "speiger.src.testers.**.*"
includeTestsMatching "speiger.src.tests.bytes.**.*"
}
useJUnit()
ignoreFailures = true
maxHeapSize = maxMemory
maxParallelForks = testThreads as Integer
}
task testShorts(type: Test) {
group 'tests'
description 'Tests all Short Collections'
filter {
excludeTestsMatching "speiger.src.testers.**.*"
includeTestsMatching "speiger.src.tests.shorts.**.*"
}
useJUnit()
ignoreFailures = true
maxHeapSize = maxMemory
maxParallelForks = testThreads as Integer
}
task testChars(type: Test) {
group 'tests'
description 'Tests all Character Collections'
filter {
excludeTestsMatching "speiger.src.testers.**.*"
includeTestsMatching "speiger.src.tests.chars.**.*"
}
useJUnit()
ignoreFailures = true
maxHeapSize = maxMemory
maxParallelForks = testThreads as Integer
}
task testInts(type: Test) {
group 'tests'
description 'Tests all Int Collections'
filter {
excludeTestsMatching "speiger.src.testers.**.*"
includeTestsMatching "speiger.src.tests.ints.**.*"
}
useJUnit()
ignoreFailures = true
maxHeapSize = maxMemory
maxParallelForks = testThreads as Integer
}
task testLongs(type: Test) {
group 'tests'
description 'Tests all Long Collections'
filter {
excludeTestsMatching "speiger.src.testers.**.*"
includeTestsMatching "speiger.src.tests.longs.**.*"
}
useJUnit()
ignoreFailures = true
maxHeapSize = maxMemory
maxParallelForks = testThreads as Integer
}
task testFloats(type: Test) {
group 'tests'
description 'Tests all Float Collections'
filter {
excludeTestsMatching "speiger.src.testers.**.*"
includeTestsMatching "speiger.src.tests.floats.**.*"
}
useJUnit()
ignoreFailures = true
maxHeapSize = maxMemory
maxParallelForks = testThreads as Integer
}
task testDoubles(type: Test) {
group 'tests'
description 'Tests all Double Collections'
filter {
excludeTestsMatching "speiger.src.testers.**.*"
includeTestsMatching "speiger.src.tests.doubles.**.*"
}
useJUnit()
ignoreFailures = true
maxHeapSize = maxMemory
maxParallelForks = testThreads as Integer
}
task testObjects(type: Test) {
group 'tests'
description 'Tests all Object Collections'
filter {
excludeTestsMatching "speiger.src.testers.**.*"
includeTestsMatching "speiger.src.tests.objects.**.*"
}
useJUnit()
ignoreFailures = true
maxHeapSize = maxMemory
maxParallelForks = testThreads as Integer
}
if(System.getProperty("full_test_suite", "false").toBoolean()) {
test.dependsOn testBooleans
test.dependsOn testBytes
test.dependsOn testShorts
test.dependsOn testChars
test.dependsOn testInts
test.dependsOn testLongs
test.dependsOn testFloats
test.dependsOn testDoubles
test.dependsOn testObjects
}
test {
useJUnit()
filter {
excludeTestsMatching "speiger.src.testers.**.*"
excludeTestsMatching "speiger.src.tests.**.*"
excludeTestsMatching "tests.**.*"
}
useJUnit()
ignoreFailures = true
maxHeapSize = maxMemory
}
jacocoTestReport {
executionData fileTree(project.buildDir.absolutePath).include("jacoco/*.exec")
reports {
xml.required = true
html.required = true
csv.required = true
}
}
publishing {
Properties props = new Properties()
if(file("$buildDir/credentials.properties").exists()) {
props.load(new FileInputStream("$buildDir/credentials.properties"))
}
publications {
mavenJava(MavenPublication) {
personal(MavenPublication) {
pom {
name = 'Primitive Collections'
description = 'A Primitive Collection library that reduces memory usage and improves performance'
@@ -113,8 +275,6 @@ publishing {
artifactId = project.archivesBaseName.replace(" ", "-")
groupId = 'de.speiger'
from components.java
artifact tasks.srcJar
artifact tasks.javadocJar
licenses {
license {
name = 'The Apache License, Version 2.0'
@@ -139,11 +299,82 @@ publishing {
}
repositories {
maven {
name = "Speiger_Maven"
def auth = System.getenv("Speiger_Maven_Auth")?.split(';');
url version.endsWith('SNAPSHOT') ? "https://maven.speiger.com/repository/debug" : "https://maven.speiger.com/repository/main"
credentials(PasswordCredentials) {
username props.mavenUser
password props.mavenPassword
username auth?[0]
password auth?[1]
}
}
}
}
}
tasks.withType(PublishToMavenRepository) {
def predicate = provider {
(repository == publishing.repositories.mavenCentral && publication == publishing.publications.maven) ||
(repository != publishing.repositories.mavenCentral && publication != publishing.publications.maven)
}
onlyIf("publishing binary to the external repository, or binary and sources to the internal one") {
predicate.get()
}
}
tasks.withType(PublishToMavenLocal) {
def predicate = provider {
publication == publishing.publications.personal
}
onlyIf("publishing binary and sources") {
predicate.get()
}
}
//Maven central Start
//Disabling due to java8 incompat, only needed to manually publishing anyways
signing.useGpgCmd()
import com.vanniktech.maven.publish.SonatypeHost
import com.vanniktech.maven.publish.JavaLibrary
import com.vanniktech.maven.publish.JavadocJar
mavenPublishing {
configure(new JavaLibrary(new JavadocJar.None(), true))
}
mavenPublishing {
publishToMavenCentral(SonatypeHost.CENTRAL_PORTAL)
signAllPublications()
pom {
name = 'Primitive Collections'
description = 'A Primitive Collection library that reduces memory usage and improves performance'
url = 'https://github.com/Speiger/Primitive-Collections'
version = project.version
group = 'io.github.speiger'
licenses {
license {
name = 'The Apache License, Version 2.0'
url = 'http://www.apache.org/licenses/LICENSE-2.0.txt'
}
}
developers {
developer {
id = 'speiger'
name = 'Speiger'
}
}
scm {
connection = 'scm:git:git://github.com/Speiger/Primitive-Collections.git'
developerConnection = 'scm:git:ssh://github.com:Speiger/Primitive-Collections.git'
url = 'https://github.com/Speiger/Primitive-Collections'
}
issueManagement {
system = 'github'
url = 'https://github.com/Speiger/Primitive-Collections/issues'
}
}
}
+6 -1
View File
@@ -1 +1,6 @@
org.gradle.jvmargs=-Xmx3G
org.gradle.jvmargs=-Xmx3G
maxMemory = 2048m
testThreads = 4
RELEASE_VERSION = 1.0.0
+5 -5
View File
@@ -1,5 +1,5 @@
distributionBase=GRADLE_USER_HOME
distributionPath=wrapper/dists
distributionUrl=https\://services.gradle.org/distributions/gradle-7.3-bin.zip
zipStoreBase=GRADLE_USER_HOME
zipStorePath=wrapper/dists
distributionBase=GRADLE_USER_HOME
distributionPath=wrapper/dists
distributionUrl=https\://services.gradle.org/distributions/gradle-8.10-bin.zip
zipStoreBase=GRADLE_USER_HOME
zipStorePath=wrapper/dists
+1 -1
View File
@@ -1,5 +1,5 @@
jdk:
- openjdk9
- openjdk21
install:
- chmod +x ./gradlew
- ./gradlew build publishToMavenLocal
@@ -3,15 +3,15 @@ package speiger.src.builder;
@SuppressWarnings("javadoc")
public enum ClassType
{
BOOLEAN("boolean", "Boolean", "Boolean", "booleans", "BOOLEAN", "false"),
BYTE("byte", "Byte", "Byte", "bytes", "BYTE", "(byte)0"),
SHORT("short", "Short", "Short", "shorts", "SHORT", "(short)0"),
CHAR("char", "Character", "Char", "chars", "CHAR", "(char)0"),
INT("int", "Integer", "Int", "ints", "INT", "0"),
LONG("long", "Long", "Long", "longs", "LONG", "0L"),
FLOAT("float", "Float", "Float", "floats", "FLOAT", "0F"),
DOUBLE("double", "Double", "Double", "doubles", "DOUBLE", "0D"),
OBJECT("T", "T", "Object", "objects", "OBJECT", "null");
BOOLEAN("boolean", "Boolean", "Boolean", "booleans", "BOOLEAN", "false", "false"),
BYTE("byte", "Byte", "Byte", "bytes", "BYTE", "(byte)0", "(byte)-1"),
SHORT("short", "Short", "Short", "shorts", "SHORT", "(short)0", "(short)-1"),
CHAR("char", "Character", "Char", "chars", "CHAR", "(char)0", "(char)-1"),
INT("int", "Integer", "Int", "ints", "INT", "0", "-1"),
LONG("long", "Long", "Long", "longs", "LONG", "0L", "-1L"),
FLOAT("float", "Float", "Float", "floats", "FLOAT", "0F", "-1F"),
DOUBLE("double", "Double", "Double", "doubles", "DOUBLE", "0D", "-1D"),
OBJECT("T", "T", "Object", "objects", "OBJECT", "null", "null");
String keyType;
String classType;
@@ -19,8 +19,9 @@ public enum ClassType
String pathType;
String capType;
String emptyValue;
String invalidValue;
private ClassType(String keyType, String classType, String fileType, String pathType, String capType, String emptyValue)
private ClassType(String keyType, String classType, String fileType, String pathType, String capType, String emptyValue, String invalidValue)
{
this.keyType = keyType;
this.classType = classType;
@@ -28,6 +29,7 @@ public enum ClassType
this.pathType = pathType;
this.capType = capType;
this.emptyValue = emptyValue;
this.invalidValue = invalidValue;
}
public String getKeyType()
@@ -50,6 +52,11 @@ public enum ClassType
return classType;
}
public String getClassPath()
{
return this == OBJECT ? "Object" : classType;
}
public String getClassType(boolean value)
{
return value && this == OBJECT ? "V" : classType;
@@ -90,6 +97,11 @@ public enum ClassType
return emptyValue;
}
public String getInvalidValue()
{
return invalidValue;
}
public boolean isObject()
{
return this == OBJECT;
@@ -102,7 +114,7 @@ public enum ClassType
public boolean needsCustomJDKType()
{
return this == BYTE || this == SHORT || this == CHAR || this == FLOAT;
return this == BOOLEAN || this == BYTE || this == SHORT || this == CHAR || this == FLOAT;
}
public boolean needsCast()
@@ -121,6 +133,12 @@ public enum ClassType
}
}
public String getApply(ClassType other) {
if(other == BOOLEAN) return "test";
if(other == ClassType.OBJECT) return "apply";
return "applyAs"+other.getFileType();
}
public String getEquals(boolean not)
{
switch(this)
@@ -1,452 +0,0 @@
package speiger.src.builder;
import java.nio.file.Path;
import java.util.ArrayList;
import java.util.LinkedHashSet;
import java.util.List;
import java.util.Set;
import java.util.function.UnaryOperator;
import speiger.src.builder.mappers.ArgumentMapper;
import speiger.src.builder.mappers.IMapper;
import speiger.src.builder.mappers.InjectMapper;
import speiger.src.builder.mappers.LineMapper;
import speiger.src.builder.mappers.SimpleMapper;
import speiger.src.builder.processor.TemplateProcess;
@SuppressWarnings("javadoc")
public class GlobalVariables
{
List<IMapper> operators = new ArrayList<>();
Set<String> flags = new LinkedHashSet<>();
ClassType type;
ClassType valueType;
public GlobalVariables(ClassType type, ClassType subType)
{
this.type = type;
valueType = subType;
}
public GlobalVariables createVariables()
{
addSimpleMapper("VALUE_PACKAGE", valueType.getPathType());
addSimpleMapper("PACKAGE", type.getPathType());
addSimpleMapper("CLASS_TYPE", type.getClassType());
addSimpleMapper("CLASS_VALUE_TYPE", valueType.getClassValueType());
addSimpleMapper("KEY_TYPE", type.getKeyType());
addSimpleMapper("KEY_SPECIAL_TYPE", type.isObject() ? "E" : type.getKeyType());
addSimpleMapper("VALUE_TYPE", valueType.getValueType());
addSimpleMapper("VALUE_SPECIAL_TYPE", valueType.isObject() ? "E" : valueType.getKeyType());
addSimpleMapper("EMPTY_KEY_VALUE", type.getEmptyValue());
addSimpleMapper("EMPTY_VALUE", valueType.getEmptyValue());
addSimpleMapper(" KEY_GENERIC_TYPE", type.isObject() ? "<"+type.getKeyType()+">" : "");
addSimpleMapper(" KEY_KEY_GENERIC_TYPE", type.isObject() ? "<"+type.getKeyType()+", "+type.getKeyType()+">" : "");
addSimpleMapper(" VALUE_GENERIC_TYPE", valueType.isObject() ? "<"+valueType.getValueType()+">" : "");
addSimpleMapper(" VALUE_VALUE_GENERIC_TYPE", valueType.isObject() ? "<"+valueType.getValueType()+", "+valueType.getValueType()+">" : "");
addSimpleMapper(" KEY_VALUE_GENERIC_TYPE", type.isObject() ? (valueType.isObject() ? "<"+type.getKeyType()+", "+valueType.getValueType()+">" : "<"+type.getKeyType()+">") : (valueType.isObject() ? "<"+valueType.getValueType()+">" : ""));
addSimpleMapper(" KEY_VALUE_VALUE_GENERIC_TYPE", type.isObject() ? (valueType.isObject() ? "<"+type.getKeyType()+", "+valueType.getValueType()+", "+valueType.getValueType()+">" : "<"+type.getKeyType()+">") : (valueType.isObject() ? "<"+valueType.getValueType()+", "+valueType.getValueType()+">" : ""));
addSimpleMapper(" NO_GENERIC_TYPE", type.isObject() ? "<?>" : "");
addSimpleMapper(" NO_KV_GENERIC_TYPE", type.isObject() ? (valueType.isObject() ? "<?, ?>" : "<?>") : valueType.isObject() ? "<?>" : "");
addSimpleMapper(" KEY_COMPAREABLE_TYPE", type.isObject() ? "<"+type.getKeyType()+" extends Comparable<T>>" : "");
addSimpleMapper(" KEY_SUPER_GENERIC_TYPE", type.isObject() ? "<? super "+type.getKeyType()+">" : "");
addSimpleMapper(" VALUE_SUPER_GENERIC_TYPE", valueType.isObject() ? "<? super "+valueType.getValueType()+">" : "");
addSimpleMapper(" KEY_VALUE_SUPER_GENERIC_TYPE", type.isObject() ? (valueType.isObject() ? "<? super "+type.getKeyType()+", ? super "+valueType.getValueType()+">" : "<? super "+type.getKeyType()+">") : (valueType.isObject() ? "<? super "+valueType.getValueType()+">" : ""));
addSimpleMapper(" KEY_ENUM_VALUE_GENERIC_TYPE", type.isObject() ? (valueType.isObject() ? "<"+type.getKeyType()+" extends Enum<"+type.getKeyType()+">, "+valueType.getValueType()+">" : "<"+type.getKeyType()+" extends Enum<"+type.getKeyType()+">>") : (valueType.isObject() ? "<"+valueType.getValueType()+">" : ""));
addSimpleMapper(" KEY_VALUE_ENUM_GENERIC_TYPE", type.isObject() ? (valueType.isObject() ? "<"+type.getKeyType()+", "+valueType.getValueType()+" extends Enum<"+valueType.getValueType()+">>" : "<"+type.getKeyType()+">") : (valueType.isObject() ? "<"+valueType.getValueType()+" extends Enum<"+valueType.getValueType()+">>" : ""));
addInjectMapper(" KEY_SPECIAL_GENERIC_TYPE", type.isObject() ? "<%s>" : "").removeBraces().setBraceType("<>");
addInjectMapper(" VALUE_SPECIAL_GENERIC_TYPE", valueType.isObject() ? "<%s>" : "").removeBraces().setBraceType("<>");
addInjectMapper(" KSK_GENERIC_TYPE", type.isObject() ? "<%s, "+type.getKeyType()+">" : "<%s>").removeBraces().setBraceType("<>");
addInjectMapper(" KKS_GENERIC_TYPE", type.isObject() ? "<"+type.getKeyType()+", %s>" : "<%s>").removeBraces().setBraceType("<>");
addArgumentMapper(" KSS_GENERIC_TYPE", type.isObject() ? "<%1$s, %2$s>" : "<%2$s>").removeBraces().setBraceType("<>");
addInjectMapper(" VSV_GENERIC_TYPE", valueType.isObject() ? "<%s, "+valueType.getValueType()+">" : "<%s>").removeBraces().setBraceType("<>");
addInjectMapper(" VVS_GENERIC_TYPE", valueType.isObject() ? "<"+valueType.getValueType()+", %s>" : "<%s>").removeBraces().setBraceType("<>");
addArgumentMapper(" VSS_GENERIC_TYPE", valueType.isObject() ? "<%1$s, %2$s>" : "<%2$s>").removeBraces().setBraceType("<>");
addSimpleMapper(" GENERIC_KEY_BRACES", type.isObject() ? " <"+type.getKeyType()+">" : "");
addSimpleMapper(" GENERIC_VALUE_BRACES", valueType.isObject() ? " <"+valueType.getValueType()+">" : "");
addInjectMapper(" GENERIC_SPECIAL_KEY_BRACES", type.isObject() ? " <%s>" : "").removeBraces().setBraceType("<>");
addInjectMapper(" GENERIC_SPECIAL_VALUE_BRACES", valueType.isObject() ? " <%s>" : "").removeBraces().setBraceType("<>");
addSimpleMapper(" GENERIC_KEY_ENUM_VALUE_BRACES", type.isObject() ? (valueType.isObject() ? " <"+type.getKeyType()+" extends Enum<"+type.getKeyType()+">, "+valueType.getValueType()+">" : " <"+type.getKeyType()+" extends Enum<"+type.getKeyType()+">>") : (valueType.isObject() ? " <"+valueType.getValueType()+">" : ""));
addInjectMapper(" GENERIC_KEY_SPECIAL_BRACES", type.isObject() ? " <"+type.getKeyType()+", %s>" : " <%s>").removeBraces().setBraceType("<>");
addInjectMapper(" GENERIC_VALUE_SPECIAL_BRACES", valueType.isObject() ? " <"+valueType.getKeyType()+", %s>" : " <%s>").removeBraces().setBraceType("<>");
addSimpleMapper(" GENERIC_KEY_VALUE_BRACES", type.isObject() ? (valueType.isObject() ? " <"+type.getKeyType()+", "+valueType.getValueType()+">" : " <"+type.getKeyType()+">") : (valueType.isObject() ? " <"+valueType.getValueType()+">" : ""));
addSimpleMapper(" COMPAREABLE_KEY_BRACES", type.isObject() ? " <"+type.getKeyType()+" extends Comparable<T>>" : "");
addSimpleMapper("KV_BRACES", type.isObject() || valueType.isObject() ? "<>" : "");
addSimpleMapper("BRACES", type.isObject() ? "<>" : "");
if(type.needsCustomJDKType())
{
addSimpleMapper("JAVA_TYPE", type.getCustomJDKType().getKeyType());
addSimpleMapper("SANITY_CAST", "castTo"+type.getFileType());
}
addSimpleMapper("JAVA_CLASS", type.getCustomJDKType().getClassType());
if(valueType.needsCustomJDKType())
{
addSimpleMapper("SANITY_CAST_VALUE", "castTo"+valueType.getFileType());
}
addComment("@ArrayType", "@param <%s> the type of array that the operation should be applied");
addComment("@Type", "@param <%s> the type of elements maintained by this Collection");
addValueComment("@ValueArrayType", "@param <%s> the type of array that the operation should be applied");
addValueComment("@ValueType", "@param <%s> the type of elements maintained by this Collection");
addAnnontion("@PrimitiveOverride", "@Override");
addSimpleMapper("@PrimitiveDoc", "");
addAnnontion("@Primitive", "@Deprecated");
addValueAnnontion("@ValuePrimitiveOverride", "@Override");
addValueAnnontion("@ValuePrimitive", "@Deprecated");
return this;
}
public GlobalVariables createHelperVariables()
{
createHelperVars(type, false, "KEY");
createHelperVars(valueType, true, "VALUE");
return this;
}
private void createHelperVars(ClassType type, boolean value, String fix)
{
addArgumentMapper("EQUALS_"+fix+"_TYPE", "Objects.equals(%2$s, "+(type.isObject() ? "%1$s" : fix+"_TO_OBJ(%1$s)")+")").removeBraces();
addInjectMapper(fix+"_EQUALS_NOT_NULL", type.getComparableValue()+" != "+(type.isPrimitiveBlocking() || type.needsCast() ? type.getEmptyValue() : "0")).removeBraces();
addInjectMapper(fix+"_EQUALS_NULL", type.getComparableValue()+" == "+(type.isPrimitiveBlocking() || type.needsCast() ? type.getEmptyValue() : "0")).removeBraces();
addArgumentMapper(fix+"_EQUALS_NOT", type.getEquals(true)).removeBraces();
addArgumentMapper(fix+"_EQUALS", type.getEquals(false)).removeBraces();
addArgumentMapper("COMPAREABLE_TO_"+fix, type.isObject() ? "((Comparable<"+type.getKeyType(value)+">)%1$s).compareTo(("+type.getKeyType(value)+")%2$s)" : type.getClassType(value)+".compare(%1$s, %2$s)").removeBraces();
addArgumentMapper("COMPARE_TO_"+fix, type.isObject() ? "%1$s.compareTo(%2$s)" : type.getClassType(value)+".compare(%1$s, %2$s)").removeBraces();
addInjectMapper(fix+"_TO_OBJ", type.isObject() ? "%s" : type.getClassType(value)+".valueOf(%s)").removeBraces();
addInjectMapper("OBJ_TO_"+fix, type.isObject() ? "%s" : "%s."+type.getKeyType(value)+"Value()").removeBraces();
addInjectMapper("CLASS_TO_"+fix, type.isObject() ? "("+type.getKeyType(value)+")%s" : "(("+type.getClassType(value)+")%s)."+type.getKeyType(value)+"Value()").removeBraces();
addInjectMapper(fix+"_TO_HASH", type.isObject() ? "Objects.hashCode(%s)" : type.getClassType(value)+".hashCode(%s)").removeBraces();
addInjectMapper(fix+"_TO_STRING", type.isObject() ? "Objects.toString(%s)" : type.getClassType(value)+".toString(%s)").removeBraces();
addSimpleMapper("CAST_"+fix+"_ARRAY ", type.isObject() ? "("+fix+"_TYPE[])" : "");
addSimpleMapper("EMPTY_"+fix+"_ARRAY", type.isObject() ? "("+fix+"_TYPE[])ARRAYS.EMPTY_ARRAY" : "ARRAYS.EMPTY_ARRAY");
addInjectMapper("NEW_"+fix+"_ARRAY", type.isObject() ? "("+fix+"_TYPE[])new Object[%s]" : "new "+fix+"_TYPE[%s]").removeBraces();
addInjectMapper("NEW_SPECIAL_"+fix+"_ARRAY", type.isObject() ? "(E[])new Object[%s]" : "new "+fix+"_TYPE[%s]").removeBraces();
addInjectMapper("NEW_CLASS"+(value ? "_VALUE" : "")+"_ARRAY", type.isObject() ? "(CLASS_TYPE[])new Object[%s]" : "new CLASS_TYPE[%s]").removeBraces();
}
public GlobalVariables createPreFunctions()
{
addSimpleMapper("ENTRY_SET", type.getFileType().toLowerCase()+"2"+valueType.getFileType()+"EntrySet");
return this;
}
public GlobalVariables createClassTypes()
{
addSimpleMapper("JAVA_PREDICATE", type.isPrimitiveBlocking() ? "" : type.getCustomJDKType().getFileType()+"Predicate");
addSimpleMapper("JAVA_CONSUMER", type.isPrimitiveBlocking() ? "" : "java.util.function."+type.getCustomJDKType().getFileType()+"Consumer");
addSimpleMapper("JAVA_SUPPLIER", type.isPrimitiveBlocking() ? "" : "java.util.function."+type.getCustomJDKType().getFileType()+"Supplier");
addSimpleMapper("JAVA_FUNCTION", type.getFunctionClass(valueType));
addSimpleMapper("JAVA_BINARY_OPERATOR", type == ClassType.BOOLEAN ? "" : (type.isObject() ? "java.util.function.BinaryOperator" : "java.util.function."+type.getCustomJDKType().getFileType()+"BinaryOperator"));
addSimpleMapper("JAVA_UNARY_OPERATOR", type.isObject() ? "BinaryOperator" : type == ClassType.BOOLEAN ? "" : type.getCustomJDKType().getFileType()+"UnaryOperator");
addSimpleMapper("JAVA_SPLIT_ITERATOR", type.isPrimitiveBlocking() ? "Spliterator" : "Of"+type.getCustomJDKType().getFileType());
addSimpleMapper("JAVA_STREAM", type.isPrimitiveBlocking() ? "" : type.getCustomJDKType().getFileType()+"Stream");
addSimpleMapper("JAVA_BUFFER", type.getFileType()+"Buffer");
//Final Classes
addClassMapper("ARRAY_LIST", "ArrayList");
addAbstractMapper("COPY_ON_WRITE_LIST", "CopyOnWrite%sArrayList");
addClassMapper("ASYNC_BUILDER", "AsyncBuilder");
addClassMapper("LINKED_LIST", "LinkedList");
addAbstractMapper("IMMUTABLE_LIST", "Immutable%sList");
addClassMapper("ARRAY_FIFO_QUEUE", "ArrayFIFOQueue");
addClassMapper("ARRAY_PRIORITY_QUEUE", "ArrayPriorityQueue");
addClassMapper("HEAP_PRIORITY_QUEUE", "HeapPriorityQueue");
addClassMapper("LINKED_CUSTOM_HASH_SET", "LinkedOpenCustomHashSet");
addClassMapper("LINKED_HASH_SET", "LinkedOpenHashSet");
addAbstractMapper("IMMUTABLE_HASH_SET", "Immutable%sOpenHashSet");
addClassMapper("CUSTOM_HASH_SET", "OpenCustomHashSet");
addClassMapper("HASH_SET", "OpenHashSet");
addAbstractBiMapper("IMMUTABLE_HASH_MAP", "Immutable%sOpenHashMap", "2");
addBiClassMapper("LINKED_CUSTOM_HASH_MAP", "LinkedOpenCustomHashMap", "2");
addBiClassMapper("LINKED_HASH_MAP", "LinkedOpenHashMap", "2");
addBiClassMapper("CUSTOM_HASH_MAP", "OpenCustomHashMap", "2");
addBiClassMapper("CONCURRENT_HASH_MAP", "ConcurrentOpenHashMap", "2");
addBiClassMapper("AVL_TREE_MAP", "AVLTreeMap", "2");
addBiClassMapper("RB_TREE_MAP", "RBTreeMap", "2");
addFunctionValueMappers("LINKED_ENUM_MAP", valueType.isObject() ? "LinkedEnum2ObjectMap" : "LinkedEnum2%sMap");
addFunctionValueMappers("ENUM_MAP", valueType.isObject() ? "Enum2ObjectMap" : "Enum2%sMap");
addBiClassMapper("HASH_MAP", "OpenHashMap", "2");
addBiClassMapper("ARRAY_MAP", "ArrayMap", "2");
addBiClassMapper("IMMUTABLE_PAIR", "ImmutablePair", "");
addBiClassMapper("MUTABLE_PAIR", "MutablePair", "");
addClassMapper("RB_TREE_SET", "RBTreeSet");
addClassMapper("AVL_TREE_SET", "AVLTreeSet");
addClassMapper("ARRAY_SET", "ArraySet");
//Abstract Classes
addAbstractMapper("ABSTRACT_COLLECTION", "Abstract%sCollection");
addAbstractMapper("ABSTRACT_PRIORITY_QUEUE", "Abstract%sPriorityQueue");
addAbstractMapper("ABSTRACT_SET", "Abstract%sSet");
addAbstractMapper("ABSTRACT_LIST", "Abstract%sList");
addAbstractBiMapper("ABSTRACT_MAP", "Abstract%sMap", "2");
addClassMapper("SUB_LIST", "SubList");
addAbstractMapper("BASE_TASK", "Base%sTask");
//Helper Classes
addClassMapper("LISTS", "Lists");
addClassMapper("SETS", "Sets");
addClassMapper("COLLECTIONS", "Collections");
addClassMapper("ARRAYS", "Arrays");
addClassMapper("PRIORITY_QUEUES", "PriorityQueues");
addClassMapper("SPLIT_ITERATORS", "Splititerators");
addClassMapper("ITERATORS", "Iterators");
addClassMapper("ITERABLES", "Iterables");
addBiClassMapper("MAPS", "Maps", "2");
//Interfaces
addClassMapper("LIST_ITERATOR", "ListIterator");
addClassMapper("BI_ITERATOR", "BidirectionalIterator");
addBiClassMapper("BI_CONSUMER", "Consumer", "");
addClassMapper("BI_TO_OBJECT_CONSUMER", "ObjectConsumer");
addAbstractMapper("BI_FROM_OBJECT_CONSUMER", "Object%sConsumer");
addClassMapper("SPLIT_ITERATOR", "Splititerator");
addClassMapper("ITERATOR", "Iterator");
addClassMapper("ITERABLE", "Iterable");
addClassMapper("COLLECTION", "Collection");
addClassMapper("TO_OBJECT_FUNCTION", "2ObjectFunction");
addBiClassMapper("FUNCTION", "Function", "2");
addClassMapper("LIST_ITER", "ListIter");
addClassMapper("LIST", "List");
addBiClassMapper("NAVIGABLE_MAP", "NavigableMap", "2");
addBiClassMapper("ORDERED_MAP", "OrderedMap", "2");
addBiClassMapper("SORTED_MAP", "SortedMap", "2");
addBiClassMapper("CONCURRENT_MAP", "ConcurrentMap", "2");
addBiClassMapper("MAP", "Map", "2");
addClassMapper("NAVIGABLE_SET", "NavigableSet");
addBiClassMapper("PAIR", "Pair", "");
addClassMapper("PRIORITY_QUEUE", "PriorityQueue");
addClassMapper("PRIORITY_DEQUEUE", "PriorityDequeue");
addClassMapper("PREDICATE", "2BooleanFunction");
addClassMapper("SORTED_SET", "SortedSet");
addClassMapper("ORDERED_SET", "OrderedSet");
addClassMapper("SET", "Set");
addClassMapper("STRATEGY", "Strategy");
addClassMapper("STACK", "Stack");
addClassMapper("SUPPLIER", "Supplier");
addAbstractMapper("SINGLE_UNARY_OPERATOR", "%1$s%1$sUnaryOperator");
addClassMapper("TASK", "Task");
addBiClassMapper("UNARY_OPERATOR", "UnaryOperator", "");
if(type.isObject())
{
if(!valueType.isObject()) addSimpleMapper("VALUE_CONSUMER", valueType.getFileType()+"Consumer");
else addSimpleMapper("VALUE_CONSUMER", "Consumer");
addSimpleMapper("CONSUMER", "Consumer");
addSimpleMapper("COMPARATOR", "Comparator");
addSimpleMapper("IARRAY", "IObjectArray");
}
else
{
if(valueType.isObject())
{
addSimpleMapper("VALUE_CONSUMER", "Consumer");
addSimpleMapper("CONSUMER", type.getFileType()+"Consumer");
}
else addClassMapper("CONSUMER", "Consumer");
addClassMapper("COMPARATOR", "Comparator");
addFunctionMappers("IARRAY", "I%sArray");
}
return this;
}
public GlobalVariables createFunctions()
{
addSimpleMapper("APPLY_KEY_VALUE", type.isObject() ? "apply" : "applyAs"+type.getNonFileType());
addSimpleMapper("APPLY_VALUE", valueType.isObject() ? "apply" : "applyAs"+valueType.getNonFileType());
addSimpleMapper("APPLY_CAST", "applyAs"+type.getCustomJDKType().getNonFileType());
addSimpleMapper("APPLY", type.isObject() ? "apply" : "applyAs"+type.getNonFileType());
addFunctionValueMapper("BULK_MERGE", "mergeAll");
addFunctionValueMappers("COMPUTE_IF_ABSENT", "compute%sIfAbsent");
addFunctionValueMappers("COMPUTE_IF_PRESENT", "compute%sIfPresent");
addFunctionValueMapper("COMPUTE", "compute");
addFunctionMapper("DEQUEUE_LAST", "dequeueLast");
addFunctionMapper("DEQUEUE", "dequeue");
addFunctionMappers("POLL_FIRST_ENTRY_KEY", "pollFirst%sKey");
addFunctionMappers("POLL_LAST_ENTRY_KEY", "pollLast%sKey");
addFunctionMapper("POLL_FIRST_KEY", "pollFirst");
addFunctionMapper("POLL_LAST_KEY", "pollLast");
addFunctionMappers("FIRST_ENTRY_KEY", "first%sKey");
addFunctionValueMappers("FIRST_ENTRY_VALUE", "first%sValue");
addFunctionMapper("FIRST_KEY", "first");
addFunctionMappers("LAST_ENTRY_KEY", "last%sKey");
addFunctionValueMappers("LAST_ENTRY_VALUE", "last%sValue");
addFunctionMappers("ENTRY_KEY", "get%sKey");
addFunctionValueMappers("ENTRY_VALUE", "get%sValue");
addFunctionMappers("KEY_ENTRY", "set%sKey");
addFunctionValueMappers("VALUE_ENTRY", "set%sValue");
addFunctionMapper("GET_KEY", "get");
if(type.isObject()) addFunctionValueMapper("GET_VALUE", valueType.isObject() ? "getObject" : "get");
else addSimpleMapper("GET_VALUE", "get");
addSimpleMapper("GET_JAVA", type.isObject() ? "get" : "getAs"+type.getCustomJDKType().getNonFileType());
addFunctionMapper("LAST_KEY", "last");
addFunctionValueMapper("MERGE", "merge");
addFunctionMapper("NEXT", "next");
addFunctionMapper("PREVIOUS", "previous");
addFunctionMapper("REMOVE_SWAP", "swapRemove");
if(type.isObject()) addFunctionMapper("REMOVE_VALUE", "rem");
else addSimpleMapper("REMOVE_VALUE", "remove");
addFunctionMapper("REMOVE_KEY", "rem");
addFunctionMapper("REMOVE_LAST", "removeLast");
addFunctionMapper("REMOVE", "remove");
addFunctionValueMappers("REPLACE_VALUES", valueType.isObject() ? "replaceObjects" : "replace%ss");
addFunctionMappers("REPLACE", type.isObject() ? "replaceObjects" : "replace%ss");
addFunctionMappers("SORT", "sort%ss");
addFunctionValueMappers("SUPPLY_IF_ABSENT", "supply%sIfAbsent");
addSimpleMapper("VALUE_TEST_VALUE", valueType.isObject() ? "getBoolean" : "get");
addSimpleMapper("TEST_VALUE", type.isObject() ? "getBoolean" : "get");
addSimpleMapper("NEW_STREAM", type.isPrimitiveBlocking() ? "" : type.getCustomJDKType().getKeyType()+"Stream");
addSimpleMapper("TO_ARRAY", "to"+type.getNonFileType()+"Array");
addSimpleMapper("[SPACE]", " ");
return this;
}
public GlobalVariables createFlags()
{
flags.add("TYPE_"+type.getCapType());
flags.add("VALUE_"+valueType.getCapType());
if(type == valueType) flags.add("SAME_TYPE");
if(type.hasFunction(valueType)) flags.add("JDK_FUNCTION");
if(!type.needsCustomJDKType()) flags.add("JDK_TYPE");
if(!type.isPrimitiveBlocking()) flags.add("PRIMITIVES");
if(!valueType.isPrimitiveBlocking()) flags.add("VALUE_PRIMITIVES");
if(valueType.needsCustomJDKType()) flags.add("JDK_VALUE");
return this;
}
public TemplateProcess create(String fileName, String splitter, boolean valueOnly)
{
TemplateProcess process = new TemplateProcess(String.format(fileName+".java", (splitter != null ? type.getFileType()+splitter+valueType.getFileType() : (valueOnly ? valueType : type).getFileType())));
process.setPathBuilder(new PathBuilder(type.getPathType()));
process.addFlags(flags);
process.addMappers(operators);
return process;
}
public ClassType getType()
{
return type;
}
private void addClassMapper(String pattern, String replacement)
{
operators.add(new SimpleMapper(type.name()+"[VALUE_"+pattern+"]", "VALUE_"+pattern, valueType.getFileType()+replacement));
operators.add(new SimpleMapper(type.name()+"["+pattern+"]", pattern, type.getFileType()+replacement));
}
private void addBiClassMapper(String pattern, String replacement, String splitter)
{
operators.add(new SimpleMapper(type.name()+"[KEY_"+pattern+"]", "KEY_"+pattern, type.getFileType()+splitter+type.getFileType()+replacement));
operators.add(new SimpleMapper(type.name()+"[VALUE_"+pattern+"]", "VALUE_"+pattern, valueType.getFileType()+splitter+valueType.getFileType()+replacement));
operators.add(new SimpleMapper(type.name()+"["+pattern+"]", pattern, type.getFileType()+splitter+valueType.getFileType()+replacement));
}
private void addAbstractMapper(String pattern, String replacement)
{
operators.add(new SimpleMapper(type.name()+"[VALUE_"+pattern+"]", "VALUE_"+pattern, String.format(replacement, valueType.getFileType())));
operators.add(new SimpleMapper(type.name()+"["+pattern+"]", pattern, String.format(replacement, type.getFileType())));
}
private void addAbstractBiMapper(String pattern, String replacement, String splitter)
{
operators.add(new SimpleMapper(type.name()+"["+pattern+"]", pattern, String.format(replacement, type.getFileType()+splitter+valueType.getFileType())));
}
private void addFunctionMapper(String pattern, String replacement)
{
operators.add(new SimpleMapper(type.name()+"[VALUE_"+pattern+"]", "VALUE_"+pattern, replacement+valueType.getNonFileType()));
operators.add(new SimpleMapper(type.name()+"["+pattern+"]", pattern, replacement+type.getNonFileType()));
}
private void addFunctionValueMapper(String pattern, String replacement)
{
operators.add(new SimpleMapper(type.name()+"["+pattern+"]", pattern, replacement+valueType.getNonFileType()));
}
private void addFunctionMappers(String pattern, String replacement)
{
operators.add(new SimpleMapper(type.name()+"[VALUE_"+pattern+"]", "VALUE_"+pattern, String.format(replacement, valueType.getNonFileType())));
operators.add(new SimpleMapper(type.name()+"["+pattern+"]", pattern, String.format(replacement, type.getNonFileType())));
}
private void addFunctionValueMappers(String pattern, String replacement)
{
operators.add(new SimpleMapper(type.name()+"["+pattern+"]", pattern, String.format(replacement, valueType.getNonFileType())));
}
private void addSimpleMapper(String pattern, String replacement)
{
operators.add(new SimpleMapper(type.name()+"["+pattern+"]", pattern, replacement));
}
private void addAnnontion(String pattern, String value)
{
if(type == ClassType.OBJECT) operators.add(new LineMapper(type.name()+"["+pattern+"]", pattern));
else operators.add(new SimpleMapper(type.name()+"["+pattern+"]", pattern, value));
}
private void addValueAnnontion(String pattern, String value)
{
if(valueType == ClassType.OBJECT) operators.add(new LineMapper(valueType.name()+"["+pattern+"]", pattern));
else operators.add(new SimpleMapper(valueType.name()+"["+pattern+"]", pattern, value));
}
private void addComment(String pattern, String value)
{
if(type == ClassType.OBJECT) operators.add(new InjectMapper(type.name()+"["+pattern+"]", pattern, value).removeBraces());
else operators.add(new LineMapper(type.name()+"["+pattern+"]", pattern));
}
private void addValueComment(String pattern, String value)
{
if(valueType == ClassType.OBJECT) operators.add(new InjectMapper(valueType.name()+"["+pattern+"]", pattern, value).removeBraces());
else operators.add(new LineMapper(valueType.name()+"["+pattern+"]", pattern));
}
private InjectMapper addInjectMapper(String pattern, String replacement)
{
InjectMapper mapper = new InjectMapper(type.name()+"["+pattern+"]", pattern, replacement);
operators.add(mapper);
return mapper;
}
private ArgumentMapper addArgumentMapper(String pattern, String replacement)
{
return addArgumentMapper(pattern, replacement, ", ");
}
private ArgumentMapper addArgumentMapper(String pattern, String replacement, String splitter)
{
ArgumentMapper mapper = new ArgumentMapper(type.name()+"["+pattern+"]", pattern, replacement, splitter);
operators.add(mapper);
return mapper;
}
class PathBuilder implements UnaryOperator<Path>
{
String before;
public PathBuilder(String before)
{
this.before = before;
}
@Override
public Path apply(Path t)
{
return t.subpath(0, 6).resolve(before).resolve(t.subpath(6, t.getNameCount()));
}
}
}
@@ -0,0 +1,155 @@
package speiger.src.builder;
import java.nio.file.Path;
import java.util.ArrayList;
import java.util.Arrays;
import java.util.Comparator;
import java.util.HashMap;
import java.util.HashSet;
import java.util.LinkedHashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import java.util.function.BiConsumer;
import java.util.function.Consumer;
import java.util.function.Predicate;
import java.util.function.UnaryOperator;
import speiger.src.builder.mappers.IMapper;
import speiger.src.builder.processor.TemplateProcess;
@SuppressWarnings("javadoc")
public class ModulePackage
{
private static final BiConsumer<String, RequiredType> VOID = (K, V) -> {};
public static final ClassType[] TYPE = ClassType.values();
final ClassType keyType;
final ClassType valueType;
Set<String> blocked = new HashSet<>();
Map<String, String> nameRemapper = new HashMap<>();
Map<String, String> splitters = new HashMap<>();
List<Predicate<String>> blockedFilters = new ArrayList<>();
List<IMapper> mappers = new ArrayList<>();
Set<String> flags = new LinkedHashSet<>();
Set<String> globalFlags;
Map<String, Integer> flaggedValues = new HashMap<>();
BiConsumer<String, RequiredType> requirements = VOID;
public ModulePackage(Set<String> globalFlags, ClassType keyType, ClassType valueType) {
this.globalFlags = globalFlags;
this.keyType = keyType;
this.valueType = valueType;
}
public void finish() {
requirements = VOID;
mappers.sort(Comparator.comparing(IMapper::getSearchValue, Comparator.comparingInt(String::length).reversed()));
mappers.sort(Comparator.comparing(IMapper::getSearchValue, this::sort));
}
public void setRequirements(BiConsumer<String, RequiredType> requirements) {
this.requirements = requirements;
}
public boolean isSame() {
return keyType == valueType;
}
public boolean isEnumValid() {
return keyType == ClassType.OBJECT;
}
public ClassType getKeyType() {
return keyType;
}
public ClassType getValueType() {
return valueType;
}
public void addFlag(String flag) {
flags.add(flag);
}
public void addGlobalFlag(String flag) {
globalFlags.add(flag);
}
public void addValue(String key, int value) {
flaggedValues.put(key, value);
}
public void addRequirement(String fileName, RequiredType type) {
requirements.accept(fileName, type);
}
public void addMapper(IMapper mapper) {
mappers.add(mapper);
}
public void addBlockedFilter(Predicate<String> filter) {
blockedFilters.add(filter);
}
public void addBlockedFiles(String... names) {
blocked.addAll(Arrays.asList(names));
}
public void addSplitter(String fileName, String splitter) {
splitters.put(fileName, splitter);
}
public void addRemapper(String fileName, String actualName) {
nameRemapper.put(fileName, actualName);
}
public void process(String fileName, Consumer<TemplateProcess> result) {
if(isBlocked(fileName)) return;
String splitter = String.format(splitters.getOrDefault(fileName, keyType.getFileType()), keyType.getFileType(), valueType.getFileType());
String newName = String.format(nameRemapper.getOrDefault(fileName, "%s"+fileName), splitter);
TemplateProcess process = new TemplateProcess(newName+".java");
process.setPathBuilder(new PathBuilder(keyType.getPathType()));
process.addFlags(flags);
process.addFlags(globalFlags);
process.addMappers(mappers);
process.addValues(flaggedValues);
result.accept(process);
}
private boolean isBlocked(String fileName) {
if(blocked.contains(fileName)) return true;
for(int i = 0,m=blockedFilters.size();i<m;i++) {
if(blockedFilters.get(i).test(fileName)) return true;
}
return false;
}
public static List<ModulePackage> createPackages(Set<String> globalFlags) {
List<ModulePackage> list = new ArrayList<>();
for(ClassType key : TYPE) {
for(ClassType value : TYPE) {
list.add(new ModulePackage(globalFlags, key, value));
}
}
return list;
}
private int sort(String key, String value) {
if(value.contains(key)) return 1;
else if(key.contains(value)) return -1;
return 0;
}
class PathBuilder implements UnaryOperator<Path> {
String before;
public PathBuilder(String before) {
this.before = before;
}
@Override
public Path apply(Path t) {
return t.subpath(0, 6).resolve(before).resolve(t.subpath(6, t.getNameCount()));
}
}
}
@@ -1,265 +1,230 @@
package speiger.src.builder;
import java.io.BufferedWriter;
import java.io.IOException;
import java.nio.file.Files;
import java.nio.file.Path;
import java.nio.file.Paths;
import java.util.ArrayList;
import java.util.EnumSet;
import java.util.HashMap;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import java.util.StringJoiner;
import java.util.function.Consumer;
import java.util.stream.Stream;
import speiger.src.builder.processor.TemplateProcess;
import speiger.src.builder.processor.TemplateProcessor;
@SuppressWarnings("javadoc")
public class PrimitiveCollectionsBuilder extends TemplateProcessor
{
Map<String, EnumSet<ClassType>> blocked = new HashMap<>();
Map<String, String> nameRemapper = new HashMap<>();
Map<String, String> biRequired = new HashMap<>();
Set<String> enumRequired = new HashSet<>();
public static final ClassType[] TYPE = ClassType.values();
List<GlobalVariables> variables = new ArrayList<>();
List<GlobalVariables> biVariables = new ArrayList<>();
List<GlobalVariables> enumVariables = new ArrayList<>();
public PrimitiveCollectionsBuilder()
{
this(false);
}
public PrimitiveCollectionsBuilder(boolean silencedSuccess)
{
super(silencedSuccess, Paths.get("src/builder/resources/speiger/assets/collections/templates/"), Paths.get("src/main/java/speiger/src/collections/"), Paths.get("src/builder/resources/speiger/assets/collections/"));
}
public PrimitiveCollectionsBuilder(Path sourceFolder, Path outputFolder, Path dataFolder)
{
this(false, sourceFolder, outputFolder, dataFolder);
}
public PrimitiveCollectionsBuilder(boolean silencedSuccess, Path sourceFolder, Path outputFolder, Path dataFolder)
{
super(silencedSuccess, sourceFolder, outputFolder, dataFolder);
}
@Override
protected boolean isFileValid(Path fileName)
{
return true;
}
@Override
protected boolean relativePackages()
{
return true;
}
@Override
protected boolean debugUnusedMappers()
{
return false;
}
@Override
protected void afterFinish()
{
if(getVersion() > 8)
{
Path basePath = Paths.get("src/main/java");
try(BufferedWriter writer = Files.newBufferedWriter(basePath.resolve("module-info.java")))
{
writer.write(getModuleInfo(basePath));
}
catch(Exception e)
{
e.printStackTrace();
}
}
}
@Override
protected void init()
{
variables.clear();
for(ClassType clzType : TYPE)
{
for(ClassType subType : TYPE)
{
create(clzType, subType);
}
}
enumRequired.add("EnumMap");
enumRequired.add("LinkedEnumMap");
biRequired.put("BiConsumer", "");
biRequired.put("UnaryOperator", "");
biRequired.put("Pair", "");
biRequired.put("MutablePair", "");
biRequired.put("ImmutablePair", "");
addBiClass("Function", "Maps", "Map", "SortedMap", "OrderedMap", "NavigableMap", "ConcurrentMap", "AbstractMap", "ConcurrentOpenHashMap", "ImmutableOpenHashMap", "OpenHashMap", "LinkedOpenHashMap", "OpenCustomHashMap", "LinkedOpenCustomHashMap", "ArrayMap", "RBTreeMap", "AVLTreeMap");
nameRemapper.put("BiConsumer", "%sConsumer");
nameRemapper.put("IArray", "I%sArray");
nameRemapper.put("AbstractMap", "Abstract%sMap");
nameRemapper.put("AbstractCollection", "Abstract%sCollection");
nameRemapper.put("AbstractPriorityQueue", "Abstract%sPriorityQueue");
nameRemapper.put("AbstractSet", "Abstract%sSet");
nameRemapper.put("AbstractList", "Abstract%sList");
nameRemapper.put("EnumMap", "Enum2%sMap");
nameRemapper.put("LinkedEnumMap", "LinkedEnum2%sMap");
nameRemapper.put("ImmutableList", "Immutable%sList");
nameRemapper.put("CopyOnWriteList", "CopyOnWrite%sArrayList");
nameRemapper.put("ImmutableOpenHashSet", "Immutable%sOpenHashSet");
nameRemapper.put("ImmutableOpenHashMap", "Immutable%sOpenHashMap");
addBlockage(ClassType.OBJECT, "Consumer", "Comparator", "Stack");
addBlockage(ClassType.BOOLEAN, "ArraySet", "AVLTreeSet", "RBTreeSet", "SortedSet", "OrderedSet", "NavigableSet", "OpenHashSet", "OpenCustomHashSet", "LinkedOpenHashSet", "LinkedOpenCustomHashSet");
addBlockage(ClassType.BOOLEAN, "ConcurrentOpenHashMap", "ImmutableOpenHashMap", "ImmutableOpenHashSet", "SortedMap", "OrderedMap", "NavigableMap", "ConcurrentMap", "OpenHashMap", "LinkedOpenHashMap", "OpenCustomHashMap", "LinkedOpenCustomHashMap", "ArrayMap", "RBTreeMap", "AVLTreeMap");
}
protected void create(ClassType mainType, ClassType subType)
{
GlobalVariables type = new GlobalVariables(mainType, subType);
type.createFlags();
type.createHelperVariables();
type.createVariables();
type.createPreFunctions();
type.createClassTypes();
type.createFunctions();
if(mainType == subType) variables.add(type);
biVariables.add(type);
if(mainType.isObject()) enumVariables.add(type);
}
protected void addBiClass(String...classNames)
{
for(String s : classNames)
{
biRequired.put(s, "2");
}
}
protected void addBlockage(ClassType type, String...args)
{
for(String s : args)
{
EnumSet<ClassType> set = blocked.get(s);
if(set == null)
{
set = EnumSet.noneOf(ClassType.class);
blocked.put(s, set);
}
set.add(type);
}
}
@Override
public void createProcesses(String name, Consumer<TemplateProcess> acceptor)
{
String splitter = biRequired.get(name);
boolean valueRequired = enumRequired.contains(name);
List<GlobalVariables> vars = getVariablesByClass(name, splitter != null);
EnumSet<ClassType> types = blocked.get(name);
for(int i = 0,m=vars.size();i<m;i++)
{
GlobalVariables type = vars.get(i);
if(types == null || !types.contains(type.getType()))
{
acceptor.accept(type.create(nameRemapper.getOrDefault(name, "%s"+name), splitter, valueRequired));
}
}
}
protected List<GlobalVariables> getVariablesByClass(String name, boolean bi) {
if(enumRequired.contains(name)) return enumVariables;
if(bi) return biVariables;
return variables;
}
private String getModuleInfo(Path basePath) {
StringJoiner joiner = new StringJoiner("\n", "", "\n");
try(Stream<Path> stream = Files.walk(getOutputFolder()))
{
stream.filter(Files::isDirectory)
.filter(this::containsFiles)
.map(basePath::relativize)
.map(Path::toString)
.map(this::sanitize)
.forEach(T -> joiner.add("\texports "+T+";"));
}
catch(Exception e)
{
e.printStackTrace();
throw new RuntimeException(e);
}
StringBuilder builder = new StringBuilder();
builder.append("/** @author Speiger */\n");
builder.append("module ").append(sanitize(basePath.relativize(getOutputFolder()).toString())).append(" {\n");
builder.append(joiner.toString()).append("}");
return builder.toString();
}
private String sanitize(String input)
{
return input.replace("\\", ".").replace("/", ".");
}
private boolean containsFiles(Path path)
{
try(Stream<Path> stream = Files.walk(path, 1))
{
return stream.filter(Files::isRegularFile).findFirst().isPresent();
}
catch(Exception e)
{
e.printStackTrace();
}
return false;
}
private int getVersion()
{
String version = System.getProperty("java.version");
if(version.startsWith("1.")) return Integer.parseInt(version.substring(2, 3));
int dot = version.indexOf(".");
return Integer.parseInt(dot != -1 ? version.substring(0, dot) : version);
}
public static void main(String...args)
{
try
{
if(args.length == 0) {
new PrimitiveCollectionsBuilder().process(false);
} else if(args.length == 1) {
new PrimitiveCollectionsBuilder().process(Boolean.parseBoolean(args[0]));
} else if(args.length == 2) {
new PrimitiveCollectionsBuilder(Boolean.parseBoolean(args[1])).process(Boolean.parseBoolean(args[0]));
} else if(args.length == 3) {
new PrimitiveCollectionsBuilder(Paths.get(args[0]), Paths.get(args[1]), Paths.get(args[2])).process(false);
} else if(args.length == 4) {
new PrimitiveCollectionsBuilder(false, Paths.get(args[0]), Paths.get(args[1]), Paths.get(args[2])).process(Boolean.parseBoolean(args[3]));
} else if(args.length == 4) {
new PrimitiveCollectionsBuilder(Boolean.parseBoolean(args[4]), Paths.get(args[0]), Paths.get(args[1]), Paths.get(args[2])).process(Boolean.parseBoolean(args[3]));
} else {
System.out.println("Invalid argument count passed in");
System.exit(1);
}
}
catch(InterruptedException e)
{
e.printStackTrace();
}
catch(IOException e)
{
e.printStackTrace();
}
}
}
package speiger.src.builder;
import java.io.BufferedWriter;
import java.io.IOException;
import java.nio.file.Files;
import java.nio.file.Path;
import java.nio.file.Paths;
import java.util.ArrayList;
import java.util.Arrays;
import java.util.Collections;
import java.util.HashMap;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import java.util.StringJoiner;
import java.util.function.Consumer;
import java.util.stream.Stream;
import speiger.src.builder.modules.AsyncModule;
import speiger.src.builder.modules.BaseModule;
import speiger.src.builder.modules.CollectionModule;
import speiger.src.builder.modules.FunctionModule;
import speiger.src.builder.modules.JavaModule;
import speiger.src.builder.modules.ListModule;
import speiger.src.builder.modules.MapModule;
import speiger.src.builder.modules.PairModule;
import speiger.src.builder.modules.PrioQueueModule;
import speiger.src.builder.modules.SetModule;
import speiger.src.builder.processor.TemplateProcess;
import speiger.src.builder.processor.TemplateProcessor;
@SuppressWarnings("javadoc")
public class PrimitiveCollectionsBuilder extends TemplateProcessor
{
private static final int SPECIAL = 0x1; //Detects if the Builder is generating tests
private static final int LOAD = 0x2; //If Configs should be loaded
private static final int ANTI_SAVE = SPECIAL | LOAD; //If save should be disabled since load/save shouldn't happen at the same time.
private static final int SAVE = 0x4; //if the configuration should be created
Set<String> globalFlags = new HashSet<>();
List<ModulePackage> simplePackages = new ArrayList<>();
List<ModulePackage> biPackages = new ArrayList<>();
List<ModulePackage> enumPackages = new ArrayList<>();
Map<String, RequiredType> requirements = new HashMap<>();
SettingsManager manager = new SettingsManager();
int flags;
public PrimitiveCollectionsBuilder() {
this(false);
}
public PrimitiveCollectionsBuilder(boolean silencedSuccess) {
super(silencedSuccess, Paths.get("src/builder/resources/speiger/assets/collections/templates/"), Paths.get("src/main/java/speiger/src/collections/"), Paths.get("src/builder/resources/speiger/assets/collections/"));
}
public PrimitiveCollectionsBuilder(Path sourceFolder, Path outputFolder, Path dataFolder) {
this(false, sourceFolder, outputFolder, dataFolder);
}
public PrimitiveCollectionsBuilder(boolean silencedSuccess, Path sourceFolder, Path outputFolder, Path dataFolder) {
super(silencedSuccess, sourceFolder, outputFolder, dataFolder);
}
private PrimitiveCollectionsBuilder setFlags(int flags) {
this.flags = flags;
if((flags & ANTI_SAVE) != 0) {
this.flags &= ~SAVE;
}
return this;
}
private static PrimitiveCollectionsBuilder createTests(boolean silent, int flags) {
return new PrimitiveCollectionsBuilder(silent,
Paths.get("src/builder/resources/speiger/assets/tests/templates/"),
Paths.get("src/test/java/speiger/src/tests/"),
Paths.get("src/builder/resources/speiger/assets/tests/")).setFlags(flags | SPECIAL);
}
private static PrimitiveCollectionsBuilder createTesters(boolean silent, int flags) {
return new PrimitiveCollectionsBuilder(silent,
Paths.get("src/builder/resources/speiger/assets/testers/templates/"),
Paths.get("src/test/java/speiger/src/testers/"),
Paths.get("src/builder/resources/speiger/assets/testers/")).setFlags(flags | SPECIAL);
}
@Override
protected boolean isFileValid(Path fileName) { return true; }
@Override
protected boolean relativePackages() { return true; }
@Override
protected boolean debugUnusedMappers() { return false; }
@Override
protected void afterFinish() {
if((flags & SPECIAL) == 0 && getVersion() > 8) {
Path basePath = Paths.get("src/main/java");
try(BufferedWriter writer = Files.newBufferedWriter(basePath.resolve("module-info.java"))) {
writer.write(getModuleInfo(basePath));
}
catch(Exception e) { e.printStackTrace(); }
}
}
public List<BaseModule> createModules() {
List<BaseModule> modules = new ArrayList<>();
modules.add(JavaModule.INSTANCE);
modules.add(FunctionModule.INSTANCE);
modules.add(CollectionModule.INSTANCE);
modules.add(PrioQueueModule.INSTANCE);
modules.add(ListModule.INSTANCE);
modules.add(SetModule.INSTANCE);
modules.add(MapModule.INSTANCE);
modules.add(PairModule.INSTANCE);
modules.add(AsyncModule.INSTANCE);
return modules;
}
@Override
protected void init() {
prepPackages();
//Init Modules here
addModules(createModules());
finishPackages();
}
public void addModules(List<BaseModule> modules) {
for(int i = 0,m=modules.size();i<m;i++) {
modules.get(i).setManager(manager);
}
manager.resolve();
for(int i = 0,m=modules.size();i<m;i++) {
biPackages.forEach(modules.get(i)::init);
}
modules.forEach(BaseModule::cleanup);
}
private void finishPackages() {
biPackages.forEach(ModulePackage::finish);
if((flags & SAVE) != 0) manager.save();
}
private void prepPackages() {
if((flags & LOAD) != 0) manager.load();
for(ModulePackage entry : ModulePackage.createPackages(globalFlags)) {
entry.setRequirements(requirements::put);
biPackages.add(entry);
if(entry.isSame()) simplePackages.add(entry);
if(entry.isEnumValid()) enumPackages.add(entry);
}
}
@Override
public void createProcesses(String fileName, Consumer<TemplateProcess> process) {
List<ModulePackage> packages = getPackagesByRequirement(requirements.get(fileName));
for(int i = 0,m=packages.size();i<m;i++) {
packages.get(i).process(fileName, process);
}
}
protected List<ModulePackage> getPackagesByRequirement(RequiredType type) {
if(type == null) return simplePackages;
if(type == RequiredType.BI_CLASS) return biPackages;
if(type == RequiredType.ENUM) return enumPackages;
return Collections.emptyList();
}
private String getModuleInfo(Path basePath) {
StringJoiner joiner = new StringJoiner("\n", "", "\n");
try(Stream<Path> stream = Files.walk(getOutputFolder())) {
stream.filter(Files::isDirectory)
.filter(this::containsFiles)
.map(basePath::relativize)
.map(Path::toString)
.map(this::sanitize)
.forEach(T -> joiner.add("\texports "+T+";"));
}
catch(Exception e) {
e.printStackTrace();
throw new RuntimeException(e);
}
StringBuilder builder = new StringBuilder();
builder.append("/** @author Speiger */\n");
builder.append("module ").append(sanitize(basePath.relativize(getOutputFolder()).toString())).append(" {\n");
builder.append(joiner.toString()).append("}");
return builder.toString();
}
private String sanitize(String input) {
return input.replace("\\", ".").replace("/", ".");
}
private boolean containsFiles(Path path) {
try(Stream<Path> stream = Files.walk(path, 1)) {
return stream.filter(Files::isRegularFile).findFirst().isPresent();
}
catch(Exception e) { e.printStackTrace(); }
return false;
}
private int getVersion() {
String version = System.getProperty("java.version");
if(version.startsWith("1.")) return Integer.parseInt(version.substring(2, 3));
int dot = version.indexOf(".");
return Integer.parseInt(dot != -1 ? version.substring(0, dot) : version);
}
public static void main(String...args) {
try
{
Set<String> flags = new HashSet<>(Arrays.asList(args));
boolean silent = flags.contains("silent");
boolean force = flags.contains("force");
boolean tests = flags.contains("tests");
boolean forceTests = flags.contains("force-tests");
boolean load = flags.contains("load");
boolean save = flags.contains("save");
int flag = (load ? LOAD : 0) | (save ? SAVE : 0);
new PrimitiveCollectionsBuilder(silent).setFlags(flag).process(force);
if(tests) {
createTests(silent, flag).process(force || forceTests);
createTesters(silent, flag).process(force || forceTests);
}
}
catch(InterruptedException | IOException e)
{
e.printStackTrace();
}
}
}
@@ -0,0 +1,8 @@
package speiger.src.builder;
@SuppressWarnings("javadoc")
public enum RequiredType
{
BI_CLASS,
ENUM
}
@@ -0,0 +1,217 @@
package speiger.src.builder;
import java.io.BufferedReader;
import java.io.IOException;
import java.io.OutputStreamWriter;
import java.nio.file.Files;
import java.nio.file.Paths;
import java.util.ArrayList;
import java.util.LinkedHashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import java.util.TreeMap;
import java.util.TreeSet;
import com.google.gson.JsonElement;
import com.google.gson.JsonObject;
import com.google.gson.JsonParser;
import com.google.gson.internal.Streams;
import com.google.gson.stream.JsonWriter;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.dependencies.IDependency.LoadingState;
import speiger.src.builder.modules.BaseModule;
@SuppressWarnings("javadoc")
public class SettingsManager
{
boolean loaded;
Map<String, LoadingState> parsedData = new TreeMap<>();
JsonObject data = new JsonObject();
Set<String> moduleNames = new TreeSet<>(String.CASE_INSENSITIVE_ORDER);
Set<IDependency> allDependencies = new LinkedHashSet<>();
public void resolve() {
if(!loaded) return;
Set<IDependency> roots = new LinkedHashSet<>();
Set<IDependency> leafs = new LinkedHashSet<>();
for(IDependency entry : allDependencies) {
if(entry.isRoot()) {
roots.add(entry);
}
if(entry.isLeaf()) {
leafs.add(entry);
}
}
/**
* This has to be 2 iteration passes.
* Due to Key Value Pairs, first pass does all initials keys, and the second pass processes the values.
* May require more passes but extremely unlikely
*/
for(int i = 0;i<2;i++) {
for(ClassType keyType : ModulePackage.TYPE) {
for(ClassType valueType : ModulePackage.TYPE) {
for(IDependency entry : roots) {
entry.resolveRequirements(keyType, valueType);
}
}
}
}
List<String> errors = new ArrayList<>();
for(ClassType keyType : ModulePackage.TYPE) {
for(ClassType valueType : ModulePackage.TYPE) {
for(IDependency entry : leafs) {
entry.validateDependency(errors::add, keyType, valueType);
}
}
}
if(errors.size() > 0) {
throw new IllegalStateException("Issues with dependencies found: "+String.join("\n", errors));
}
}
public void addModule(BaseModule module) {
if(loaded) {
if(module.isBiModule()) {
for(ClassType keyType : ModulePackage.TYPE) {
for(ClassType valueType : ModulePackage.TYPE) {
if(!module.isModuleValid(keyType, valueType)) continue;
for(IDependency dependency : module.getDependencies(keyType, valueType)) {
dependency.set(parsedData);
allDependencies.add(dependency);
}
}
}
return;
}
for(ClassType keyType : ModulePackage.TYPE) {
if(!module.isModuleValid(keyType, keyType)) continue;
for(IDependency dependency : module.getDependencies(keyType, keyType)) {
dependency.set(parsedData);
allDependencies.add(dependency);
}
}
return;
}
String moduleName = module.getModuleName();
moduleNames.add(moduleName);
data.addProperty(moduleName, true);
if(module.isBiModule()) {
for(ClassType keyType : ModulePackage.TYPE) {
for(ClassType valueType : ModulePackage.TYPE) {
if(!module.isModuleValid(keyType, valueType)) continue;
JsonObject obj = new JsonObject();
for(IDependency dependency : module.getDependencies(keyType, valueType)) {
String key = dependency.getName();
if(key != null) obj.addProperty(key, true);
}
addModule(keyType, valueType, true, moduleName, obj);
}
}
return;
}
for(ClassType keyType : ModulePackage.TYPE) {
if(!module.isModuleValid(keyType, keyType)) continue;
JsonObject obj = new JsonObject();
for(IDependency dependency : module.getDependencies(keyType, keyType)) {
String key = dependency.getName();
if(key != null) obj.addProperty(key, true);
}
addModule(keyType, keyType, false, moduleName, obj);
}
}
public void printModuleSettings(List<BaseModule> modules) {
JsonObject data = new JsonObject();
for(BaseModule module : modules) {
String moduleName = module.getModuleName();
if(module.isBiModule()) {
for(ClassType keyType : ModulePackage.TYPE) {
for(ClassType valueType : ModulePackage.TYPE) {
if(!module.isModuleValid(keyType, valueType)) continue;
JsonObject obj = new JsonObject();
for(IDependency dependency : module.getDependencies(keyType, valueType)) {
String key = dependency.getName();
if(key != null) obj.addProperty(key, dependency.isLoaded(keyType, valueType).getJsonResult());
}
addModule(data, keyType, valueType, true, moduleName, obj);
}
}
continue;
}
for(ClassType keyType : ModulePackage.TYPE) {
if(!module.isModuleValid(keyType, keyType)) continue;
JsonObject obj = new JsonObject();
for(IDependency dependency : module.getDependencies(keyType, keyType)) {
String key = dependency.getName();
if(key != null) obj.addProperty(key, dependency.isLoaded(keyType, keyType).getJsonResult());
}
addModule(data, keyType, keyType, false, moduleName, obj);
}
}
try {
System.out.println();
JsonWriter writer = new JsonWriter(new OutputStreamWriter(System.out));
writer.setIndent("\t");
Streams.write(data, writer);
writer.flush();
System.out.println();
} catch (IOException e) {
e.printStackTrace();
}
}
public void load() {
try(BufferedReader reader = Files.newBufferedReader(Paths.get("ModulSettings.json"))) {
data = JsonParser.parseReader(reader).getAsJsonObject();
loaded = true;
IDependency.flatten("", false, data, parsedData);
JsonElement element = data.get("Default");
LoadingState.setOptionalResolver(LoadingState.of(element == null ? true : element.getAsBoolean()));
}
catch(Exception e) { e.printStackTrace(); }
}
public void save() {
data.asMap().keySet().removeAll(moduleNames);
JsonObject result = new JsonObject();
for(String s : moduleNames) {
result.addProperty(s, true);
}
result.asMap().putAll(data.asMap());
try(JsonWriter writer = new JsonWriter(Files.newBufferedWriter(Paths.get("ModulSettings.json")))) {
writer.setIndent("\t");
Streams.write(result, writer);
}
catch(Exception e) { e.printStackTrace(); }
}
private void addModule(JsonObject data, ClassType keyType, ClassType valueType, boolean bi, String moduleName, JsonObject obj) {
JsonObject result = getObject(data, keyType.getClassPath(), true);
if(bi) {
result = getObject(result, valueType.getClassPath(), true);
}
result.add(moduleName, obj);
}
private void addModule(ClassType keyType, ClassType valueType, boolean bi, String moduleName, JsonObject obj) {
JsonObject result = getObject(data, keyType.getClassPath(), true);
if(bi) {
result = getObject(result, valueType.getClassPath(), true);
}
result.add(moduleName, obj);
}
private JsonObject getObject(JsonObject data, String name, boolean create) {
JsonObject obj = data.getAsJsonObject(name);
if(obj == null) {
obj = new JsonObject();
data.add(name, obj);
if(create) obj.addProperty("Enabled", true);
}
return obj;
}
}
@@ -0,0 +1,137 @@
package speiger.src.builder.dependencies;
import java.util.ArrayList;
import java.util.List;
import java.util.Map;
import java.util.Set;
import java.util.StringJoiner;
import java.util.TreeSet;
import java.util.function.Consumer;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.Requirements.Requirement;
@SuppressWarnings("javadoc")
public abstract class BaseDependency implements IDependency {
protected static boolean FETCH_FAILURES = false;
protected static Set<String> FAILURE_KEYS = new TreeSet<>();
protected final String name;
protected final boolean biType;
protected Map<String, LoadingState> dependencies;
protected List<IDependency> children = new ArrayList<>();
protected List<Requirement> requirements = new ArrayList<>();
protected ClassType keyType;
protected ClassType valueType;
public BaseDependency(String name, boolean biType) {
this.name = name;
this.biType = biType;
}
@Override
public String toString() {
return name;
}
@Override
public void set(Map<String, LoadingState> dependency) {
dependencies = dependency;
}
@Override
public IDependency addDependency(Requirement require) {
requirements.add(require);
require.dependency.addChild(this);
return this;
}
@Override
public void addChild(IDependency child) {
children.add(child);
}
@Override
public boolean isLeaf() {
return children.isEmpty();
}
@Override
public boolean isRoot() {
return requirements.isEmpty();
}
protected LoadingState getGlobalState() {
return dependencies.getOrDefault(name, LoadingState.OPTIONAL);
}
@Override
public String getLocalStateKey(ClassType keyType, ClassType valueType) {
return (biType ? keyType.getClassPath()+"-"+valueType.getClassPath() : keyType.getClassPath())+"-"+name;
}
protected LoadingState getLocalState(ClassType keyType, ClassType valueType) {
return dependencies.getOrDefault(getLocalStateKey(keyType, valueType), LoadingState.OPTIONAL);
}
protected LoadingState getReqirementState(ClassType keyType, ClassType valueType) {
LoadingState state = requirements.isEmpty() ? LoadingState.REQUIRED : LoadingState.OPTIONAL;
for(int i = 0,m=requirements.size();i<m;i++) {
state = state.merge(requirements.get(i).test(keyType, valueType));
}
return state.resolveIfUndefined();
}
@Override
public void resolveRequirements(ClassType keyType, ClassType valueType) {
if(!children.isEmpty()) {
for(IDependency child : children) {
if(child == this) continue;
child.resolveRequirements(keyType, valueType);
}
}
if(getLocalState(keyType, valueType) == LoadingState.REQUIRED) {
for(Requirement req : requirements) {
dependencies.putIfAbsent(req.key(keyType, valueType), LoadingState.REQUIRED);
}
}
}
@Override
public void validateDependency(Consumer<String> result, ClassType keyType, ClassType valueType) {
if(getLocalState(keyType, valueType) == LoadingState.REQUIRED) {
FETCH_FAILURES = true;
for(Requirement req : requirements) {
req.test(keyType, valueType);
}
FETCH_FAILURES = false;
if(FAILURE_KEYS.size() > 0) {
int size = FAILURE_KEYS.size();
StringJoiner joiner = new StringJoiner("], [", "[", "]");
FAILURE_KEYS.forEach(joiner::add);
FAILURE_KEYS.clear();
String joins = size > 1 ? "["+joiner.toString()+"]" : joiner.toString();
result.accept("["+getLocalStateKey(keyType, valueType)+"] Requires "+joins+" but it specifically has been disabled!");
}
}
}
@Override
public void set(ClassType key, ClassType value) {
this.keyType = key;
this.valueType = value;
}
@Override
public boolean isEnabled() {
if(keyType == null || keyType == null) return false;
return isLoaded(keyType, valueType).getJsonResult();
}
@Override
public String getName() {
return name;
}
}
@@ -0,0 +1,29 @@
package speiger.src.builder.dependencies;
import speiger.src.builder.ClassType;
@SuppressWarnings("javadoc")
public class FunctionDependency extends BaseDependency {
ModuleDependency owner;
public FunctionDependency(ModuleDependency owner, String name) {
super(name, owner.biType);
this.owner = owner;
}
@Override
public LoadingState isLoaded(ClassType key, ClassType value) {
if(dependencies == null) return LoadingState.REQUIRED;
LoadingState result = getLocalState(key, value);
if(FETCH_FAILURES && result == LoadingState.REJECTED) {
FAILURE_KEYS.add(getLocalStateKey(key, value));
}
return result.resolveIfUndefined().merge(getReqirementState(key, value));
}
@Override
public String getLocalStateKey(ClassType keyType, ClassType valueType) {
return (biType ? keyType.getClassPath()+"-"+valueType.getClassPath() : keyType.getClassPath())+"-"+owner.getName()+"-"+name;
}
}
@@ -0,0 +1,104 @@
package speiger.src.builder.dependencies;
import java.util.Map;
import java.util.Map.Entry;
import java.util.function.Consumer;
import com.google.gson.JsonElement;
import com.google.gson.JsonObject;
import com.google.gson.JsonPrimitive;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.Requirements.Requirement;
@SuppressWarnings("javadoc")
public interface IDependency {
public void set(Map<String, LoadingState> dependency);
public void set(ClassType key, ClassType value);
public LoadingState isLoaded(ClassType key, ClassType value);
public String getLocalStateKey(ClassType keyType, ClassType valueType);
public boolean isEnabled();
public boolean isLeaf();
public boolean isRoot();
public String getName();
public void validateDependency(Consumer<String> result, ClassType keyType, ClassType valueType);
public void resolveRequirements(ClassType keyType, ClassType valueType);
public void addChild(IDependency child);
public <T extends IDependency> T addDependency(Requirement require);
public default <T extends IDependency> T addKeyDependency(IDependency dependency) { return addDependency(new Requirement(dependency, Requirements.KEY_TEST, Requirements.KEY_GETTER)); }
public default <T extends IDependency> T addValueDependency(IDependency dependency) { return addDependency(new Requirement(dependency, Requirements.VALUE_TEST, Requirements.VALUE_GETTER)); }
public default <T extends IDependency> T addEntryDependency(IDependency dependency) { return addDependency(new Requirement(dependency, Requirements.ENTRY_TEST, Requirements.ENTRY_GETTER)); }
public default <T extends IDependency> T addTypeDependency(IDependency dependency, ClassType type) { return addDependency(new Requirement(dependency, Requirements.typedTest(type), Requirements.typedKey(type))); }
public default <T extends IDependency> T addOptionalTypeDependency(IDependency dependency, ClassType type, boolean key) { return addDependency(new Requirement(dependency, Requirements.optionalTest(type, key), Requirements.optionalKey(type, key))); }
public default <T extends IDependency> T addOptionalTypeDependency(ClassType type, boolean key) { return addDependency(new Requirement(this, Requirements.optionalTest(type, key), Requirements.optionalKey(type, key))); }
public static void flatten(String prefix, boolean applyMiddle, JsonObject object, Map<String, LoadingState> result) {
if(applyMiddle) prefix+="-";
for(Entry<String, JsonElement> entry : object.entrySet()) {
String key = entry.getKey();
JsonElement value = entry.getValue();
if(value instanceof JsonPrimitive) {
String entryKey = prefix+key;
if("Enabled".equalsIgnoreCase(key)) {
entryKey = prefix.substring(0, prefix.length()-1);
}
result.put(entryKey, LoadingState.of(((JsonPrimitive)value).getAsBoolean()));
}
if(value instanceof JsonObject) {
flatten(prefix+key, true, (JsonObject)value, result);
}
}
}
public static enum LoadingState {
OPTIONAL,
REQUIRED,
REJECTED;
private static LoadingState RESOLVED = LoadingState.REQUIRED;
public static LoadingState of(boolean value) {
return value ? REQUIRED : REJECTED;
}
public LoadingState merge(LoadingState merge) {
return ordinal() > merge.ordinal() ? this : merge;
}
public LoadingState replaceIfUndefined(LoadingState state) {
return this == OPTIONAL ? state : this;
}
public LoadingState resolveIfUndefined() {
return this == OPTIONAL ? RESOLVED : this;
}
public LoadingState mergeDown(LoadingState merge) {
if(merge == REJECTED || ordinal() > merge.ordinal()) {
return this;
}
return merge;
}
public LoadingState mergeUp(LoadingState merge) {
if(merge == REQUIRED || ordinal() > merge.ordinal()) {
return this;
}
return merge;
}
public static void setOptionalResolver(LoadingState state) {
RESOLVED = state;
}
public boolean getJsonResult() {
LoadingState state = this == OPTIONAL ? RESOLVED : this;
return state == REQUIRED;
}
}
}
@@ -0,0 +1,31 @@
package speiger.src.builder.dependencies;
import speiger.src.builder.ClassType;
import speiger.src.builder.modules.BaseModule;
@SuppressWarnings("javadoc")
public class ModuleDependency extends BaseDependency {
BaseModule owner;
public ModuleDependency(BaseModule owner, boolean biType) {
super(owner.getModuleName(), biType);
this.owner = owner;
}
public FunctionDependency createDependency(String name) {
FunctionDependency result = new FunctionDependency(this, name);
if(biType) result.addEntryDependency(this);
else result.addKeyDependency(this);
return result;
}
@Override
public LoadingState isLoaded(ClassType key, ClassType value) {
if(dependencies == null) return LoadingState.REQUIRED;
LoadingState result = getLocalState(key, value);
if(FETCH_FAILURES && result == LoadingState.REJECTED) {
FAILURE_KEYS.add(getLocalStateKey(key, value));
}
return result.replaceIfUndefined(getGlobalState()).resolveIfUndefined().merge(getReqirementState(key, value));
}
}
@@ -0,0 +1,68 @@
package speiger.src.builder.dependencies;
import java.util.function.Consumer;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.IDependency.LoadingState;
@SuppressWarnings("javadoc")
public class Requirements {
public static final RequirementTest KEY_TEST = (T, K, V) -> T.isLoaded(K, K);
public static final RequirementTest VALUE_TEST = (T, K, V) -> T.isLoaded(V, V);
public static final RequirementTest ENTRY_TEST = (T, K, V) -> T.isLoaded(K, V);
public static RequirementTest typedTest(ClassType type) {
return (T, K, V) -> T.isLoaded(type, type);
}
public static RequirementTest optionalTest(ClassType type, boolean key) {
return (T, K, V) -> (key ? K : V) != type ? T.isLoaded(type, type) : LoadingState.REQUIRED;
}
public static final RequirementKey KEY_GETTER = (T, K, V) -> T.getLocalStateKey(K, K);
public static final RequirementKey VALUE_GETTER = (T, K, V) -> T.getLocalStateKey(V, V);
public static final RequirementKey ENTRY_GETTER = (T, K, V) -> T.getLocalStateKey(K, V);
public static RequirementKey typedKey(ClassType type) {
return (T, K, V) -> T.getLocalStateKey(type, type);
}
public static RequirementKey optionalKey(ClassType type, boolean key) {
return (T, K, V) -> (key ? K : V) != type ? T.getLocalStateKey(type, type) : "";
}
public interface RequirementTest {
public LoadingState test(IDependency test, ClassType keyType, ClassType valueType);
}
public static interface RequirementKey {
public String key(IDependency test, ClassType keyType, ClassType valueType);
}
public static interface RequirementResolver {
public void resolve(IDependency test, Consumer<String> result, ClassType keyType, ClassType valueType);
}
public static class Requirement {
IDependency dependency;
RequirementTest test;
RequirementKey key;
public Requirement(IDependency dependency, RequirementTest test, RequirementKey key) {
this.dependency = dependency;
this.test = test;
this.key = key;
}
public LoadingState test(ClassType keyType, ClassType valueType) {
return test.test(dependency, keyType, valueType);
}
public String key(ClassType keyType, ClassType valueType) {
return key.key(dependency, keyType, valueType);
}
}
}
@@ -0,0 +1,53 @@
package speiger.src.builder.modules;
import java.util.Arrays;
import java.util.List;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.dependencies.ModuleDependency;
@SuppressWarnings("javadoc")
public class AsyncModule extends BaseModule
{
public static final BaseModule INSTANCE = new AsyncModule();
public static final ModuleDependency MODULE = new ModuleDependency(INSTANCE, false).addKeyDependency(JavaModule.MODULE);
@Override
public String getModuleName() { return "Async"; }
@Override
protected void loadVariables() {}
@Override
protected void loadRemappers() {}
@Override
protected void loadTestClasses() {}
@Override
protected void loadFunctions() {}
@Override
public List<IDependency> getDependencies(ClassType keyType, ClassType valueType) { return Arrays.asList(MODULE); }
@Override
protected void loadBlockades() {
if(!MODULE.isEnabled()) {
addBlockedFiles("AsyncBuilder", "Task");
}
}
@Override
protected void loadFlags() {
if(MODULE.isEnabled()) {
addKeyFlag("ASYNC_MODULE");
}
}
@Override
protected void loadClasses()
{
//Implementation Classes
addClassMapper("ASYNC_BUILDER", "AsyncBuilder");
//Abstract Classes
addAbstractMapper("BASE_TASK", "Base%sTask");
//Interfaces
addClassMapper("TASK", "Task");
}
}
@@ -0,0 +1,198 @@
package speiger.src.builder.modules;
import java.util.Collections;
import java.util.List;
import java.util.function.Consumer;
import java.util.function.Predicate;
import speiger.src.builder.ClassType;
import speiger.src.builder.ModulePackage;
import speiger.src.builder.RequiredType;
import speiger.src.builder.SettingsManager;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.mappers.ArgumentMapper;
import speiger.src.builder.mappers.InjectMapper;
import speiger.src.builder.mappers.LineMapper;
import speiger.src.builder.mappers.SimpleMapper;
@SuppressWarnings("javadoc")
public abstract class BaseModule
{
SettingsManager manager;
ModulePackage entry;
protected ClassType keyType;
protected ClassType valueType;
public final void setManager(SettingsManager manager) {
this.manager = manager;
manager.addModule(this);
}
public final void init(ModulePackage entry) {
this.entry = entry;
keyType = entry.getKeyType();
valueType = entry.getValueType();
for(IDependency dependency : getDependencies(keyType, valueType)) {
dependency.set(keyType, valueType);
}
loadVariables();
loadClasses();
loadTestClasses();
loadFunctions();
loadRemappers();
loadBlockades();
loadFlags();
}
public final void cleanup() {
entry = null;
keyType = null;
valueType = null;
manager = null;
}
protected abstract void loadVariables();
protected abstract void loadClasses();
protected abstract void loadTestClasses();
protected abstract void loadFunctions();
protected abstract void loadRemappers();
protected abstract void loadBlockades();
protected abstract void loadFlags();
public abstract String getModuleName();
public boolean isBiModule() { return false; }
public List<IDependency> getDependencies(ClassType keyType, ClassType valueType) { return Collections.emptyList(); }
public boolean isModuleValid(ClassType keyType, ClassType valueType) { return true; }
public ClassType keyType() { return keyType; }
public ClassType valueType() { return valueType; }
protected void addFlag(String name) {
entry.addFlag(name);
}
protected void addValue(String name, int value) {
entry.addValue(name, value);
}
protected void addKeyFlag(String name) {
entry.addFlag(name);
entry.addGlobalFlag(keyType.getCapType()+"_"+name);
}
protected void addBiRequirement(String fileName) {
entry.addRequirement(fileName, RequiredType.BI_CLASS);
entry.addSplitter(fileName, "%1$s2%2$s");
}
protected void addEnumRequirement(String fileName) {
entry.addRequirement(fileName, RequiredType.ENUM);
entry.addSplitter(fileName, "%2$s");
}
protected void addBiRequirement(String fileName, String splitter) {
entry.addRequirement(fileName, RequiredType.BI_CLASS);
entry.addSplitter(fileName, "%1$s"+splitter+"%2$s");
}
protected void addRequirement(String fileName, String splitter, RequiredType type) {
entry.addRequirement(fileName, type);
entry.addSplitter(fileName, splitter);
}
protected void addRemapper(String fileName, String actualName) {
entry.addRemapper(fileName, actualName);
}
protected void addBlockedFiles(String... name) {
entry.addBlockedFiles(name);
}
protected void addBlockedFilter(Predicate<String> filter) {
entry.addBlockedFilter(filter);
}
protected void addClassMapper(String pattern, String replacement) {
entry.addMapper(new SimpleMapper("VALUE_"+pattern, "VALUE_"+pattern, valueType.getFileType()+replacement));
entry.addMapper(new SimpleMapper(pattern, pattern, keyType.getFileType()+replacement));
}
protected void addBiClassMapper(String pattern, String replacement, String splitter) {
entry.addMapper(new SimpleMapper("KEY_"+pattern, "KEY_"+pattern, keyType.getFileType()+splitter+keyType.getFileType()+replacement));
entry.addMapper(new SimpleMapper("VALUE_"+pattern, "VALUE_"+pattern, valueType.getFileType()+splitter+valueType.getFileType()+replacement));
entry.addMapper(new SimpleMapper(pattern, pattern, keyType.getFileType()+splitter+valueType.getFileType()+replacement));
}
protected void addAbstractMapper(String pattern, String replacement) {
entry.addMapper(new SimpleMapper("VALUE_"+pattern, "VALUE_"+pattern, String.format(replacement, valueType.getFileType())));
entry.addMapper(new SimpleMapper(pattern, pattern, String.format(replacement, keyType.getFileType())));
}
protected void addAbstractBiMapper(String pattern, String replacement, String splitter) {
entry.addMapper(new SimpleMapper(pattern, pattern, String.format(replacement, keyType.getFileType()+splitter+valueType.getFileType())));
}
protected void addFunctionMapper(String pattern, String replacement) {
entry.addMapper(new SimpleMapper("VALUE_"+pattern, "VALUE_"+pattern, replacement+valueType.getNonFileType()));
entry.addMapper(new SimpleMapper(pattern, pattern, replacement+keyType.getNonFileType()));
}
protected void addFunctionValueMapper(String pattern, String replacement) {
entry.addMapper(new SimpleMapper(pattern, pattern, replacement+valueType.getNonFileType()));
}
protected void addFunctionMappers(String pattern, String replacement) {
entry.addMapper(new SimpleMapper("VALUE_"+pattern, "VALUE_"+pattern, String.format(replacement, valueType.getNonFileType())));
entry.addMapper(new SimpleMapper(pattern, pattern, String.format(replacement, keyType.getNonFileType())));
}
protected void addFunctionValueMappers(String pattern, String replacement) {
entry.addMapper(new SimpleMapper(pattern, pattern, String.format(replacement, valueType.getNonFileType())));
}
protected void addSimpleMapper(String pattern, String replacement) {
entry.addMapper(new SimpleMapper(pattern, pattern, replacement));
}
protected void addAnnontion(String pattern, String value) {
if(keyType == ClassType.OBJECT) entry.addMapper(new LineMapper(pattern, pattern));
else entry.addMapper(new SimpleMapper(pattern, pattern, value));
}
protected void addValueAnnontion(String pattern, String value) {
if(valueType == ClassType.OBJECT) entry.addMapper(new LineMapper(pattern, pattern));
else entry.addMapper(new SimpleMapper(pattern, pattern, value));
}
protected void addComment(String pattern, String value) {
if(keyType == ClassType.OBJECT) entry.addMapper(new InjectMapper(pattern, pattern, value).removeBraces());
else entry.addMapper(new LineMapper(pattern, pattern));
}
protected void addValueComment(String pattern, String value) {
if(valueType == ClassType.OBJECT) entry.addMapper(new InjectMapper(pattern, pattern, value).removeBraces());
else entry.addMapper(new LineMapper(pattern, pattern));
}
protected InjectMapper addInjectMapper(String pattern, String replacement) {
InjectMapper mapper = new InjectMapper(pattern, pattern, replacement);
entry.addMapper(mapper);
return mapper;
}
protected ArgumentMapper addArgumentMapper(String pattern, String replacement) {
return addArgumentMapper(pattern, replacement, ", ");
}
protected ArgumentMapper addArgumentMapper(String pattern, String replacement, String splitter) {
ArgumentMapper mapper = new ArgumentMapper(pattern, pattern, replacement, splitter);
entry.addMapper(mapper);
return mapper;
}
public static <T> T make(T input, Consumer<T> processor) {
processor.accept(input);
return input;
}
}
@@ -0,0 +1,137 @@
package speiger.src.builder.modules;
import java.util.Arrays;
import java.util.List;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.FunctionDependency;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.dependencies.ModuleDependency;
@SuppressWarnings("javadoc")
public class CollectionModule extends BaseModule
{
public static final BaseModule INSTANCE = new CollectionModule();
public static final ModuleDependency MODULE = new ModuleDependency(INSTANCE, false)
.addKeyDependency(FunctionModule.MODULE)
.addOptionalTypeDependency(FunctionModule.MODULE, ClassType.OBJECT, true)
.addOptionalTypeDependency(FunctionModule.MODULE, ClassType.INT, true)
.addOptionalTypeDependency(ClassType.OBJECT, true);
public static final FunctionDependency STREAMS = MODULE.createDependency("Streams");
public static final FunctionDependency SPLIT_ITERATORS = MODULE.createDependency("Splititerators").addKeyDependency(STREAMS);
public static final FunctionDependency IARRAY = MODULE.createDependency("IArray");
public static final FunctionDependency STRATEGY = MODULE.createDependency("Strategy");
@Override
public String getModuleName() { return "Collection"; }
@Override
protected void loadVariables() {}
@Override
public List<IDependency> getDependencies(ClassType keyType, ClassType valueType) { return Arrays.asList(MODULE, STREAMS, SPLIT_ITERATORS, IARRAY, STRATEGY); }
@Override
protected void loadFlags() {
if(MODULE.isEnabled()) addKeyFlag("COLLECTION_MODULE");
if(STREAMS.isEnabled()) addKeyFlag("STREAM_FEATURE");
if(SPLIT_ITERATORS.isEnabled()) addKeyFlag("SPLIT_ITERATOR_FEATURE");
if(IARRAY.isEnabled()) addKeyFlag("IARRAY_FEATURE");
}
@Override
protected void loadBlockades() {
if(!MODULE.isEnabled()) {
addBlockedFiles("Iterable", "Iterables", "Iterator", "Iterators", "BidirectionalIterator", "ListIterator");
addBlockedFiles("Arrays", "Collection", "OrderedCollection", "AbstractCollection", "Collections", "Stack");
}
if(!SPLIT_ITERATORS.isEnabled()) addBlockedFiles("Splititerator", "Splititerators");
if(!IARRAY.isEnabled()) addBlockedFiles("IArray");
if(!STRATEGY.isEnabled()) addBlockedFiles("Strategy");
if(keyType.isObject())
{
addBlockedFiles("Stack");
addBlockedFiles("CollectionStreamTester");
}
if(keyType == ClassType.BOOLEAN)
{
addBlockedFiles("CollectionRemoveIfTester", "CollectionStreamTester");
addBlockedFilter(T -> T.endsWith("Tester") && T.startsWith("Iterable"));
}
}
@Override
protected void loadRemappers()
{
//Main Classes
addRemapper("IArray", "I%sArray");
addRemapper("AbstractCollection", "Abstract%sCollection");
//Test Classes
addRemapper("AbstractIteratorTester", "Abstract%sIteratorTester");
addRemapper("MinimalCollection", "Minimal%sCollection");
addRemapper("TestCollectionGenerator", "Test%sCollectionGenerator");
addRemapper("AbstractContainerTester", "Abstract%sContainerTester");
addRemapper("AbstractCollectionTester", "Abstract%sCollectionTester");
addRemapper("SimpleTestGenerator", "Simple%sTestGenerator");
}
@Override
protected void loadFunctions()
{
addFunctionMapper("NEXT", "next");
addSimpleMapper("NEW_STREAM", keyType.isPrimitiveBlocking() ? "" : keyType.getCustomJDKType().getKeyType()+"Stream");
addFunctionMapper("PREVIOUS", "previous");
addFunctionMapper("REMOVE_KEY", "rem");
addSimpleMapper("TO_ARRAY", "to"+keyType.getNonFileType()+"Array");
addSimpleMapper("VALUE_TO_ARRAY", "to"+valueType.getNonFileType()+"Array");
}
@Override
protected void loadClasses()
{
//Abstract Classes
addAbstractMapper("ABSTRACT_COLLECTION", "Abstract%sCollection");
addAbstractMapper("REVERSED_ORDERED_COLLECTION", "Reverse%sOrderedCollection");
//Helper Classes
addClassMapper("ARRAYS", "Arrays");
addClassMapper("COLLECTIONS", "Collections");
addClassMapper("ITERABLES", "Iterables");
addClassMapper("SPLIT_ITERATORS", "Splititerators");
addClassMapper("ITERATORS", "Iterators");
//Interfaces
addClassMapper("COLLECTION", "Collection");
addClassMapper("ORDERED_COLLECTION", "OrderedCollection");
addClassMapper("ITERABLE", "Iterable");
addClassMapper("SPLIT_ITERATOR", "Splititerator");
addClassMapper("LIST_ITERATOR", "ListIterator");
addClassMapper("BI_ITERATOR", "BidirectionalIterator");
addClassMapper("ITERATOR", "Iterator");
if(keyType.isObject()) addSimpleMapper("STACK", "Stack");
else addClassMapper("STACK", "Stack");
addClassMapper("STRATEGY", "Strategy");
}
@Override
protected void loadTestClasses()
{
//Implementation Classes
addAbstractMapper("MINIMAL_COLLECTION", "Minimal%sCollection");
addClassMapper("BIDIRECTIONAL_ITERATOR_TESTER", "BidirectionalteratorTester");
addClassMapper("LIST_ITERATOR_TESTER", "ListIteratorTester");
addClassMapper("ITERATOR_TESTER", "IteratorTester");
addClassMapper("COLLECTION_TEST_BUILDER", "CollectionTestSuiteBuilder");
addClassMapper("COLLECTION_CONSTRUCTOR_TESTS", "CollectionConstructorTests");
//Abstract Classes
addAbstractMapper("ABSTRACT_COLLECTION_TESTER", "Abstract%sCollectionTester");
addAbstractMapper("ABSTRACT_CONTAINER_TESTER", "Abstract%sContainerTester");
addAbstractMapper("ABSTRACT_ITERATOR_TESTER", "Abstract%sIteratorTester");
//Helper Classes
addAbstractMapper("TEST_COLLECTION_GENERATOR", "Test%sCollectionGenerator");
addAbstractMapper("SIMPLE_TEST_GENERATOR", "Simple%sTestGenerator");
}
}
@@ -0,0 +1,123 @@
package speiger.src.builder.modules;
import java.util.Arrays;
import java.util.List;
import speiger.src.builder.ClassType;
import speiger.src.builder.RequiredType;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.dependencies.ModuleDependency;
@SuppressWarnings("javadoc")
public class FunctionModule extends BaseModule
{
public static final BaseModule INSTANCE = new FunctionModule();
public static final ModuleDependency MODULE = new ModuleDependency(INSTANCE, false).addKeyDependency(JavaModule.MODULE);
@Override
public String getModuleName() { return "Function"; }
@Override
public boolean isBiModule() { return true; }
@Override
protected void loadVariables() {}
@Override
protected void loadFlags() {}
@Override
protected void loadTestClasses() {}
@Override
public List<IDependency> getDependencies(ClassType keyType, ClassType valueType) {
return Arrays.asList(MODULE);
}
@Override
protected void loadBlockades()
{
if(keyType.isObject()) addBlockedFiles("Consumer", "Comparator");
if(!MODULE.isEnabled()) addBlockedFiles("Consumer", "BiConsumer", "Comparator", "Supplier", "Optional", "Function", "UnaryOperator");
if(!keyType.needsCustomJDKType()) addBlockedFiles("Optional");
}
@Override
protected void loadRemappers()
{
addBiRequirement("BiConsumer", "");
addBiRequirement("UnaryOperator", "");
if(valueType == ClassType.BOOLEAN) {
addRequirement("Function", "%1$s", RequiredType.BI_CLASS);
addRemapper("Function", (keyType.isObject() ? "" : "%s")+"Predicate");
}
else if(keyType.isObject() && !valueType.isObject()) {
addRequirement("Function", "%2$s", RequiredType.BI_CLASS);
addRemapper("Function", "To%sFunction");
}
else if(keyType == valueType) {
addRequirement("Function", "%1$s", RequiredType.BI_CLASS);
addRemapper("Function", (keyType.isObject() ? "" : "%s")+"UnaryOperator");
}
else if(valueType.isObject()) {
addRequirement("Function", "%1$s", RequiredType.BI_CLASS);
addRemapper("Function", "%sFunction");
}
else addBiRequirement("Function");
addRemapper("BiConsumer", "%sConsumer");
addRemapper("Optional", "Optional%s");
}
@Override
protected void loadFunctions()
{
addSimpleMapper("APPLY", keyType.getApply(valueType));
addSimpleMapper("SUPPLY_GET", keyType.isObject() ? "get" : "getAs"+keyType.getNonFileType());
addSimpleMapper("VALUE_SUPPLY_GET", valueType.isObject() ? "get" : "getAs"+valueType.getNonFileType());
}
@Override
protected void loadClasses()
{
//Interfaces
addBiClassMapper("BI_CONSUMER", "Consumer", "");
addClassMapper("BI_TO_OBJECT_CONSUMER", "ObjectConsumer");
addAbstractMapper("BI_FROM_OBJECT_CONSUMER", "Object%sConsumer");
addAbstractMapper("BI_FROM_INT_CONSUMER", "Int%sConsumer");
if(keyType.isObject()) {
addSimpleMapper("TO_OBJECT_FUNCTION", keyType.getNonFileType()+"UnaryOperator");
addSimpleMapper("VALUE_TO_OBJECT_FUNCTION", valueType.isObject() ? "UnaryOperator" : valueType.getFileType()+"Function");
}
else {
addSimpleMapper("TO_OBJECT_FUNCTION", keyType.getNonFileType()+"Function");
addSimpleMapper("VALUE_TO_OBJECT_FUNCTION", valueType.isObject() ? "UnaryOperator" : valueType.getFileType()+"Function");
}
if(valueType == ClassType.BOOLEAN) addFunctionMappers("FUNCTION", "%sPredicate");
else if(keyType.isObject() && !valueType.isObject()) addFunctionValueMappers("FUNCTION", "To%sFunction");
else if(keyType == valueType) addFunctionMappers("FUNCTION", "%sUnaryOperator");
else if(valueType.isObject()) addFunctionMappers("FUNCTION", "%sFunction");
else addBiClassMapper("FUNCTION", "Function", "2");
addFunctionMappers("PREDICATE", "%sPredicate");
addClassMapper("SUPPLIER", "Supplier");
addSimpleMapper("OPTIONAL", keyType.isObject() ? "Optional" : String.format("Optional%s", keyType.getFileType()));
addSimpleMapper("VALUE_OPTIONAL", valueType.isObject() ? "Optional" : String.format("Optional%s", valueType.getFileType()));
addAbstractMapper("SINGLE_UNARY_OPERATOR", "%1$s%1$sUnaryOperator");
addBiClassMapper("UNARY_OPERATOR", "UnaryOperator", "");
if(keyType.isObject())
{
if(!valueType.isObject()) addSimpleMapper("VALUE_CONSUMER", valueType.getFileType()+"Consumer");
else addSimpleMapper("VALUE_CONSUMER", "Consumer");
addSimpleMapper("CONSUMER", "Consumer");
addSimpleMapper("IARRAY", "IObjectArray");
}
else
{
if(valueType.isObject())
{
addSimpleMapper("VALUE_CONSUMER", "Consumer");
addSimpleMapper("CONSUMER", keyType.getFileType()+"Consumer");
}
else addClassMapper("CONSUMER", "Consumer");
addFunctionMappers("IARRAY", "I%sArray");
}
addSimpleMapper("VALUE_COMPARATOR", valueType.isObject() ? "Comparator" : String.format("%sComparator", valueType.getNonFileType()));
addSimpleMapper("COMPARATOR", keyType.isObject() ? "Comparator" : String.format("%sComparator", keyType.getNonFileType()));
}
}
@@ -0,0 +1,235 @@
package speiger.src.builder.modules;
import java.util.Arrays;
import java.util.List;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.dependencies.ModuleDependency;
@SuppressWarnings("javadoc")
public class JavaModule extends BaseModule
{
public static final BaseModule INSTANCE = new JavaModule();
public static final ModuleDependency MODULE = new ModuleDependency(INSTANCE, false);
@Override
public String getModuleName() { return "Base"; }
@Override
protected void loadVariables()
{
createHelperVars(keyType, false, "KEY");
createHelperVars(valueType, true, "VALUE");
loadBaseVariables();
}
@Override
public List<IDependency> getDependencies(ClassType keyType, ClassType valueType) {
return Arrays.asList(MODULE);
}
@Override
protected void loadFlags()
{
addFlag("TYPE_"+keyType.getCapType());
addFlag("VALUE_"+valueType.getCapType());
addValue("JAVA_VERSION", getVersion());
if(keyType == valueType) addFlag("SAME_TYPE");
if(keyType.hasFunction(valueType)) addFlag("JDK_FUNCTION");
if(!keyType.needsCustomJDKType()) addFlag("JDK_TYPE");
if(!keyType.isPrimitiveBlocking()) addFlag("PRIMITIVES");
if(!valueType.isPrimitiveBlocking()) addFlag("VALUE_PRIMITIVES");
if(!valueType.needsCustomJDKType()) addFlag("JDK_VALUE");
}
private int getVersion() {
String version = System.getProperty("java.version");
if(version.startsWith("1.")) return Integer.parseInt(version.substring(2, 3));
int dot = version.indexOf(".");
return Integer.parseInt(dot != -1 ? version.substring(0, dot) : version);
}
@Override
protected void loadRemappers() {}
@Override
protected void loadBlockades() {}
@Override
protected void loadFunctions()
{
addSimpleMapper("APPLY_KEY_VALUE", keyType.isObject() ? "apply" : "applyAs"+keyType.getNonFileType());
addSimpleMapper("APPLY_VALUE", valueType.isObject() ? "apply" : "applyAs"+valueType.getNonFileType());
addSimpleMapper("APPLY_CAST", "applyAs"+keyType.getCustomJDKType().getNonFileType());
addSimpleMapper("GET_OPTIONAL", keyType.isObject() ? "ofNullable" : "of");
addSimpleMapper("GET_OPTIONAL_VALUE", valueType.isObject() ? "ofNullable" : "of");
//Shared by Maps and Pairs so moved to java.
addFunctionMappers("ENTRY_KEY", "get%sKey");
addFunctionValueMappers("ENTRY_VALUE", "get%sValue");
addFunctionMappers("KEY_ENTRY", "set%sKey");
addFunctionValueMappers("VALUE_ENTRY", "set%sValue");
}
@Override
protected void loadClasses()
{
if(getVersion() >= 17) addSimpleMapper("RANDOM", "RandomGenerator");
else addSimpleMapper("RANDOM", "Random");
addSimpleMapper("JAVA_PREDICATE", keyType.isPrimitiveBlocking() ? "" : keyType.getCustomJDKType().getFileType()+"Predicate");
addSimpleMapper("JAVA_CONSUMER", keyType.isPrimitiveBlocking() ? "" : "java.util.function."+keyType.getCustomJDKType().getFileType()+"Consumer");
addSimpleMapper("JAVA_SUPPLIER", keyType.isPrimitiveBlocking() ? "" : "java.util.function."+keyType.getCustomJDKType().getFileType()+"Supplier");
addSimpleMapper("JAVA_FUNCTION", keyType.getFunctionClass(valueType));
addSimpleMapper("JAVA_BINARY_OPERATOR", keyType == ClassType.BOOLEAN ? "" : (keyType.isObject() ? "java.util.function.BinaryOperator" : "java.util.function."+keyType.getCustomJDKType().getFileType()+"BinaryOperator"));
addSimpleMapper("JAVA_UNARY_OPERATOR", keyType.isObject() ? "BinaryOperator" : keyType == ClassType.BOOLEAN ? "" : keyType.getCustomJDKType().getFileType()+"UnaryOperator");
addSimpleMapper("JAVA_SPLIT_ITERATOR", keyType.isPrimitiveBlocking() ? "Spliterator" : "Of"+keyType.getCustomJDKType().getFileType());
addSimpleMapper("JAVA_STREAM", keyType.isPrimitiveBlocking() ? "" : keyType.getCustomJDKType().getFileType()+"Stream");
addSimpleMapper("JAVA_BUFFER", keyType.getFileType()+"Buffer");
}
@Override
protected void loadTestClasses()
{
addClassMapper("HELPERS", "Helpers");
addClassMapper("SAMPLE_ELEMENTS", "Samples");
}
private void loadBaseVariables()
{
addSimpleMapper("VALUE_PACKAGE", valueType.getPathType());
addSimpleMapper("PACKAGE", keyType.getPathType());
addSimpleMapper("CLASS_TYPE", keyType.getClassType());
addSimpleMapper("CLASS_VALUE_TYPE", valueType.getClassValueType());
addSimpleMapper("KEY_TYPE", keyType.getKeyType());
addSimpleMapper("KEY_OBJECT_TYPE", keyType.isObject() ? "Object" : keyType.getKeyType());
addSimpleMapper("KEY_STRING_TYPE", keyType.isObject() ? "String" : keyType.getKeyType());
addSimpleMapper("KEY_SPECIAL_TYPE", keyType.isObject() ? "E" : keyType.getKeyType());
addSimpleMapper("CLASS_OBJECT_TYPE", keyType.getClassType());
addSimpleMapper("CLASS_OBJECT_VALUE_TYPE", valueType.getClassValueType());
addSimpleMapper("CLASS_STRING_TYPE", keyType.isObject() ? "String" : keyType.getClassType());
addSimpleMapper("CLASS_STRING_VALUE_TYPE", valueType.isObject() ? "String" : valueType.getClassValueType());
addSimpleMapper("VALUE_TYPE", valueType.getValueType());
addSimpleMapper("VALUE_OBJECT_TYPE", valueType.isObject() ? "Object" : valueType.getValueType());
addSimpleMapper("VALUE_STRING_TYPE", valueType.isObject() ? "String" : valueType.getValueType());
addSimpleMapper("VALUE_SPECIAL_TYPE", valueType.isObject() ? "E" : valueType.getKeyType());
addSimpleMapper("KEY_JAVA_TYPE", keyType.getCustomJDKType().getKeyType());
addSimpleMapper("VALUE_JAVA_TYPE", keyType.getCustomJDKType().getKeyType());
addSimpleMapper("EMPTY_KEY_VALUE", keyType.getEmptyValue());
addSimpleMapper("EMPTY_VALUE", valueType.getEmptyValue());
addSimpleMapper("INVALID_KEY_VALUE", keyType.getInvalidValue());
addSimpleMapper("INVALID_VALUE", valueType.getInvalidValue());
addSimpleMapper(" KEY_STRING_GENERIC_TYPE", keyType.isObject() ? "<String>" : "");
addSimpleMapper(" VALUE_STRING_GENERIC_TYPE", valueType.isObject() ? "<String>" : "");
addSimpleMapper(" KEY_VALUE_STRING_GENERIC_TYPE", keyType.isObject() ? (valueType.isObject() ? "<String, String>" : "<String>") : (valueType.isObject() ? "<String>" : ""));
addSimpleMapper(" KEY_SAME_GENERIC_TYPE", keyType.isObject() ? "<T, T>" : "");
addSimpleMapper(" VALUE_SAME_GENERIC_TYPE", keyType.isObject() ? "<V, V>" : "");
addSimpleMapper(" KEY_GENERIC_TYPE", keyType.isObject() ? "<"+keyType.getKeyType()+">" : "");
addSimpleMapper(" KEY_KEY_GENERIC_TYPE", keyType.isObject() ? "<"+keyType.getKeyType()+", "+keyType.getKeyType()+">" : "");
addSimpleMapper(" KEY_CLASS_GENERIC_TYPE", keyType.isObject() ? "<"+keyType.getClassType()+">" : "");
addSimpleMapper(" VALUE_GENERIC_TYPE", valueType.isObject() ? "<"+valueType.getValueType()+">" : "");
addSimpleMapper(" VALUE_VALUE_GENERIC_TYPE", valueType.isObject() ? "<"+valueType.getValueType()+", "+valueType.getValueType()+">" : "");
addSimpleMapper(" VALUE_CLASS_GENERIC_TYPE", valueType.isObject() ? "<"+valueType.getClassValueType()+">" : "");
addSimpleMapper(" KEY_VALUE_GENERIC_TYPE", keyType.isObject() ? (valueType.isObject() ? "<"+keyType.getKeyType()+", "+valueType.getValueType()+">" : "<"+keyType.getKeyType()+">") : (valueType.isObject() ? "<"+valueType.getValueType()+">" : ""));
addSimpleMapper(" KEY_VALUE_VALUE_GENERIC_TYPE", keyType.isObject() ? (valueType.isObject() ? "<"+keyType.getKeyType()+", "+valueType.getValueType()+", "+valueType.getValueType()+">" : "<"+keyType.getKeyType()+">") : (valueType.isObject() ? "<"+valueType.getValueType()+", "+valueType.getValueType()+">" : ""));
addInjectMapper(" KEY_VALUE_SPECIAL_GENERIC_TYPE", keyType.isObject() ? (valueType.isObject() ? "<"+keyType.getKeyType()+", "+valueType.getValueType()+", %s>" : "<"+keyType.getKeyType()+", %s>") : (valueType.isObject() ? "<"+valueType.getValueType()+", %s>" : "<%s>")).setBraceType("<>").removeBraces();
addSimpleMapper(" NO_GENERIC_TYPE", keyType.isObject() ? "<?>" : "");
addSimpleMapper(" NO_KV_GENERIC_TYPE", keyType.isObject() ? (valueType.isObject() ? "<?, ?>" : "<?>") : valueType.isObject() ? "<?>" : "");
addSimpleMapper(" KEY_COMPAREABLE_TYPE", keyType.isObject() ? "<"+keyType.getKeyType()+" extends Comparable<T>>" : "");
addSimpleMapper(" KEY_SUPER_GENERIC_TYPE", keyType.isObject() ? "<? super "+keyType.getKeyType()+">" : "");
addSimpleMapper(" VALUE_SUPER_GENERIC_TYPE", valueType.isObject() ? "<? super "+valueType.getValueType()+">" : "");
addSimpleMapper(" KEY_VALUE_SUPER_GENERIC_TYPE", keyType.isObject() ? (valueType.isObject() ? "<? super "+keyType.getKeyType()+", ? super "+valueType.getValueType()+">" : "<? super "+keyType.getKeyType()+">") : (valueType.isObject() ? "<? super "+valueType.getValueType()+">" : ""));
addSimpleMapper(" KEY_UNKNOWN_GENERIC_TYPE", keyType.isObject() ? "<? extends "+keyType.getKeyType()+">" : "");
addSimpleMapper(" VALUE_UNKNOWN_GENERIC_TYPE", valueType.isObject() ? "<? extends "+valueType.getValueType()+">" : "");
addSimpleMapper(" KEY_VALUE_UNKNOWN_GENERIC_TYPE", keyType.isObject() ? (valueType.isObject() ? "<? extends "+keyType.getKeyType()+", ? extends "+valueType.getValueType()+">" : "<? extends "+keyType.getKeyType()+">") : (valueType.isObject() ? "<? extends "+valueType.getValueType()+">" : ""));
addSimpleMapper(" KEY_ENUM_VALUE_GENERIC_TYPE", keyType.isObject() ? (valueType.isObject() ? "<"+keyType.getKeyType()+" extends Enum<"+keyType.getKeyType()+">, "+valueType.getValueType()+">" : "<"+keyType.getKeyType()+" extends Enum<"+keyType.getKeyType()+">>") : (valueType.isObject() ? "<"+valueType.getValueType()+">" : ""));
addSimpleMapper(" KEY_VALUE_ENUM_GENERIC_TYPE", keyType.isObject() ? (valueType.isObject() ? "<"+keyType.getKeyType()+", "+valueType.getValueType()+" extends Enum<"+valueType.getValueType()+">>" : "<"+keyType.getKeyType()+">") : (valueType.isObject() ? "<"+valueType.getValueType()+" extends Enum<"+valueType.getValueType()+">>" : ""));
addInjectMapper(" KEY_SPECIAL_GENERIC_TYPE", keyType.isObject() ? "<%s>" : "").removeBraces().setBraceType("<>");
addInjectMapper(" VALUE_SPECIAL_GENERIC_TYPE", valueType.isObject() ? "<%s>" : "").removeBraces().setBraceType("<>");
addInjectMapper(" KSK_GENERIC_TYPE", keyType.isObject() ? "<%s, "+keyType.getKeyType()+">" : "<%s>").removeBraces().setBraceType("<>");
addInjectMapper(" KKS_GENERIC_TYPE", keyType.isObject() ? "<"+keyType.getKeyType()+", %s>" : "<%s>").removeBraces().setBraceType("<>");
addArgumentMapper(" KSS_GENERIC_TYPE", keyType.isObject() ? "<%1$s, %2$s>" : "<%2$s>").removeBraces().setBraceType("<>");
addInjectMapper(" SK_GENERIC_TYPE", keyType.isObject() ? "<%s, "+keyType.getKeyType()+">" : "").removeBraces().setBraceType("<>");
addInjectMapper(" KS_GENERIC_TYPE", keyType.isObject() ? "<"+keyType.getKeyType()+", %s>" : "").removeBraces().setBraceType("<>");
addInjectMapper(" VSV_GENERIC_TYPE", valueType.isObject() ? "<%s, "+valueType.getValueType()+">" : "<%s>").removeBraces().setBraceType("<>");
addInjectMapper(" VVS_GENERIC_TYPE", valueType.isObject() ? "<"+valueType.getValueType()+", %s>" : "<%s>").removeBraces().setBraceType("<>");
addArgumentMapper(" VSS_GENERIC_TYPE", valueType.isObject() ? "<%1$s, %2$s>" : "<%2$s>").removeBraces().setBraceType("<>");
addInjectMapper(" SV_GENERIC_TYPE", valueType.isObject() ? "<%s, "+valueType.getValueType()+">" : "").removeBraces().setBraceType("<>");
addInjectMapper(" VS_GENERIC_TYPE", valueType.isObject() ? "<"+valueType.getValueType()+", %s>" : "").removeBraces().setBraceType("<>");
addSimpleMapper(" GENERIC_KEY_BRACES", keyType.isObject() ? " <"+keyType.getKeyType()+">" : "");
addSimpleMapper(" GENERIC_VALUE_BRACES", valueType.isObject() ? " <"+valueType.getValueType()+">" : "");
addInjectMapper(" GENERIC_SPECIAL_KEY_BRACES", keyType.isObject() ? " <%s>" : "").removeBraces().setBraceType("<>");
addInjectMapper(" GENERIC_SPECIAL_VALUE_BRACES", valueType.isObject() ? " <%s>" : "").removeBraces().setBraceType("<>");
addSimpleMapper(" GENERIC_KEY_ENUM_VALUE_BRACES", keyType.isObject() ? (valueType.isObject() ? " <"+keyType.getKeyType()+" extends Enum<"+keyType.getKeyType()+">, "+valueType.getValueType()+">" : " <"+keyType.getKeyType()+" extends Enum<"+keyType.getKeyType()+">>") : (valueType.isObject() ? " <"+valueType.getValueType()+">" : ""));
addInjectMapper(" GENERIC_KEY_SPECIAL_BRACES", keyType.isObject() ? " <"+keyType.getKeyType()+", %s>" : " <%s>").removeBraces().setBraceType("<>");
addInjectMapper(" GENERIC_VALUE_SPECIAL_BRACES", valueType.isObject() ? " <"+valueType.getKeyType()+", %s>" : " <%s>").removeBraces().setBraceType("<>");
addSimpleMapper(" GENERIC_KEY_VALUE_BRACES", keyType.isObject() ? (valueType.isObject() ? " <"+keyType.getKeyType()+", "+valueType.getValueType()+">" : " <"+keyType.getKeyType()+">") : (valueType.isObject() ? " <"+valueType.getValueType()+">" : ""));
addSimpleMapper(" COMPAREABLE_KEY_BRACES", keyType.isObject() ? " <"+keyType.getKeyType()+" extends Comparable<T>>" : "");
addSimpleMapper("KV_BRACES", keyType.isObject() || valueType.isObject() ? "<>" : "");
addSimpleMapper("VALUE_BRACES", valueType.isObject() ? "<>" : "");
addSimpleMapper("BRACES", keyType.isObject() ? "<>" : "");
if(keyType.needsCustomJDKType())
{
addSimpleMapper("JAVA_TYPE", keyType.getCustomJDKType().getKeyType());
addSimpleMapper("SANITY_CAST", "castTo"+keyType.getFileType());
}
addSimpleMapper("JAVA_CLASS", keyType.getCustomJDKType().getClassType());
if(valueType.needsCustomJDKType())
{
addSimpleMapper("SANITY_CAST_VALUE", "castTo"+valueType.getFileType());
}
addSimpleMapper("[SPACE]", " ");
addComment("@ArrayType", "@param <%s> the keyType of array that the operation should be applied");
addComment("@Type", "@param <%s> the keyType of elements maintained by this Collection");
addValueComment("@ValueArrayType", "@param <%s> the keyType of array that the operation should be applied");
addValueComment("@ValueType", "@param <%s> the keyType of elements maintained by this Collection");
addSimpleMapper("@Java21", getVersion() >= 21 ? "@Override" : "");
addAnnontion("@PrimitiveOverride", "@Override");
addSimpleMapper("@PrimitiveDoc", "");
addAnnontion("@Primitive", "@Deprecated");
addValueAnnontion("@ValuePrimitiveOverride", "@Override");
addValueAnnontion("@ValuePrimitive", "@Deprecated");
}
private void createHelperVars(ClassType type, boolean value, String fix)
{
addArgumentMapper("EQUALS_"+fix+"_TYPE", "Objects.equals(%2$s, "+(type.isObject() ? "%1$s" : fix+"_TO_OBJ(%1$s)")+")").removeBraces();
addInjectMapper(fix+"_EQUALS_NOT_NULL", type.getComparableValue()+" != "+(type.isPrimitiveBlocking() || type.needsCast() ? type.getEmptyValue() : "0")).removeBraces();
addInjectMapper(fix+"_EQUALS_NULL", type.getComparableValue()+" == "+(type.isPrimitiveBlocking() || type.needsCast() ? type.getEmptyValue() : "0")).removeBraces();
addArgumentMapper(fix+"_EQUALS_NOT", type.getEquals(true)).removeBraces();
addArgumentMapper(fix+"_EQUALS", type.getEquals(false)).removeBraces();
addSimpleMapper("FILE_"+fix+"_TYPE", type.getFileType());
addArgumentMapper("COMPAREABLE_TO_"+fix, type.isObject() ? "((Comparable<"+type.getKeyType(value)+">)%1$s).compareTo(("+type.getKeyType(value)+")%2$s)" : type.getClassType(value)+".compare(%1$s, %2$s)").removeBraces();
addArgumentMapper("COMPARE_TO_"+fix, type.isObject() ? "%1$s.compareTo(%2$s)" : type.getClassType(value)+".compare(%1$s, %2$s)").removeBraces();
addInjectMapper(fix+"_TO_OBJ", type.isObject() ? "%s" : type.getClassType(value)+".valueOf(%s)").removeBraces();
addInjectMapper("OBJ_TO_"+fix, type.isObject() ? "%s" : "%s."+type.getKeyType(value)+"Value()").removeBraces();
addInjectMapper("CLASS_TO_"+fix, type.isObject() ? "("+type.getKeyType(value)+")%s" : "(("+type.getClassType(value)+")%s)."+type.getKeyType(value)+"Value()").removeBraces();
addInjectMapper(fix+"_TO_HASH", type.isObject() ? "Objects.hashCode(%s)" : type.getClassType(value)+".hashCode(%s)").removeBraces();
addInjectMapper(fix+"_TO_STRING", type.isObject() ? "Objects.toString(%s)" : type.getClassType(value)+".toString(%s)").removeBraces();
addSimpleMapper("CAST_"+fix+"_ARRAY ", type.isObject() ? "("+fix+"_TYPE[])" : "");
addSimpleMapper("EMPTY_"+fix+"_ARRAY", type.isObject() ? "("+fix+"_TYPE[])ARRAYS.EMPTY_ARRAY" : "ARRAYS.EMPTY_ARRAY");
addInjectMapper("NEW_"+fix+"_ARRAY", type.isObject() ? "("+fix+"_TYPE[])new Object[%s]" : "new "+fix+"_TYPE[%s]").removeBraces();
addInjectMapper("NEW_SPECIAL_"+fix+"_ARRAY", type.isObject() ? "(E[])new Object[%s]" : "new "+fix+"_TYPE[%s]").removeBraces();
if(value) addInjectMapper("NEW_CLASS_VALUE_ARRAY", type.isObject() ? "(CLASS_VALUE_TYPE[])new Object[%s]" : "new CLASS_VALUE_TYPE[%s]").removeBraces();
else addInjectMapper("NEW_CLASS_ARRAY", type.isObject() ? "(CLASS_TYPE[])new Object[%s]" : "new CLASS_TYPE[%s]").removeBraces();
}
}
@@ -0,0 +1,120 @@
package speiger.src.builder.modules;
import java.util.Arrays;
import java.util.List;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.FunctionDependency;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.dependencies.ModuleDependency;
@SuppressWarnings("javadoc")
public class ListModule extends BaseModule
{
public static final BaseModule INSTANCE = new ListModule();
public static final ModuleDependency MODULE = new ModuleDependency(INSTANCE, false).addKeyDependency(CollectionModule.MODULE).addKeyDependency(CollectionModule.SPLIT_ITERATORS);
public static final FunctionDependency IMPLEMENTATION = MODULE.createDependency("Implementations");
public static final FunctionDependency WRAPPERS = MODULE.createDependency("Wrappers");
public static final FunctionDependency ARRAY_LIST = MODULE.createDependency("ArrayList").addKeyDependency(IMPLEMENTATION);
public static final FunctionDependency LINKED_LIST = MODULE.createDependency("LinkedList").addKeyDependency(IMPLEMENTATION);
public static final FunctionDependency IMMUTABLE_LIST = MODULE.createDependency("ImmutableList").addKeyDependency(IMPLEMENTATION);
public static final FunctionDependency COPY_ON_WRITE_LIST = MODULE.createDependency("CopyOnWriteList").addKeyDependency(IMPLEMENTATION);
@Override
public String getModuleName() { return "List"; }
@Override
public List<IDependency> getDependencies(ClassType keyType, ClassType valueType) { return Arrays.asList(MODULE, IMPLEMENTATION, WRAPPERS, ARRAY_LIST, LINKED_LIST, IMMUTABLE_LIST, COPY_ON_WRITE_LIST); }
@Override
protected void loadVariables() {}
@Override
protected void loadFlags() {
if(MODULE.isEnabled()) addKeyFlag("LIST_MODULE");
if(WRAPPERS.isEnabled()) addKeyFlag("LISTS_FEATURE");
if(ARRAY_LIST.isEnabled()) addKeyFlag("ARRAY_LIST_FEATURE");
if(LINKED_LIST.isEnabled()) addKeyFlag("LINKED_LIST_FEATURE");
if(IMMUTABLE_LIST.isEnabled()) addKeyFlag("IMMUTABLE_LIST_FEATURE");
if(COPY_ON_WRITE_LIST.isEnabled()) addKeyFlag("COPY_ON_WRITE_LIST_FEATURE");
}
@Override
protected void loadBlockades()
{
if(!WRAPPERS.isEnabled()) addBlockedFiles("Lists");
if(!ARRAY_LIST.isEnabled()) addBlockedFiles("ArrayList");
if(!LINKED_LIST.isEnabled()) addBlockedFiles("LinkedList");
if(!IMMUTABLE_LIST.isEnabled()) addBlockedFiles("ImmutableList");
if(!COPY_ON_WRITE_LIST.isEnabled()) addBlockedFiles("CopyOnWriteList");
if(!MODULE.isEnabled()) addBlockedFiles("List", "AbstractList");
if(keyType.isObject()) addBlockedFiles("ListFillBufferTester");
if(keyType == ClassType.BOOLEAN) addBlockedFiles("ListFillBufferTester", "ListReplaceAllTester");
}
@Override
protected void loadRemappers()
{
//Main Classes
addRemapper("AbstractList", "Abstract%sList");
addRemapper("ImmutableList", "Immutable%sList");
addRemapper("CopyOnWriteList", "CopyOnWrite%sArrayList");
//Test Classes
addRemapper("AbstractListTester", "Abstract%sListTester");
addRemapper("AbstractListIndexOfTester", "Abstract%sListIndexOfTester");
addRemapper("TestListGenerator", "Test%sListGenerator");
}
@Override
protected void loadFunctions()
{
addFunctionMapper("GET_KEY", "get");
addFunctionMapper("GET_FIRST_KEY", "getFirst");
addFunctionMapper("GET_LAST_KEY", "getLast");
addFunctionMapper("REMOVE_FIRST_KEY", "removeFirst");
addFunctionMapper("REMOVE_LAST_KEY", "removeLast");
addFunctionMapper("REMOVE_SWAP", "swapRemove");
addFunctionMappers("REPLACE", keyType.isObject() ? "replaceObjects" : "replace%ss");
addFunctionMappers("SORT", "sort%ss");
}
@Override
protected void loadClasses()
{
//Implementation Classes
addClassMapper("ARRAY_LIST", "ArrayList");
addAbstractMapper("COPY_ON_WRITE_LIST", "CopyOnWrite%sArrayList");
addClassMapper("LINKED_LIST", "LinkedList");
addAbstractMapper("IMMUTABLE_LIST", "Immutable%sList");
//Abstract Classes
addAbstractMapper("ABSTRACT_LIST", "Abstract%sList");
//SubClasses
addClassMapper("SUB_LIST", "SubList");
addClassMapper("LIST_ITER", "ListIter");
//Helper Classes
addClassMapper("LISTS", "Lists");
//Interfaces
addClassMapper("LIST", "List");
}
@Override
protected void loadTestClasses()
{
//Implementation Classes
addClassMapper("LIST_TEST_BUILDER", "ListTestSuiteBuilder");
addClassMapper("LIST_TESTS", "ListTests");
//Abstract Classes
addAbstractMapper("ABSTRACT_LIST_INDEX_OF_TESTER", "Abstract%sListIndexOfTester");
addAbstractMapper("ABSTRACT_LIST_TESTER", "Abstract%sListTester");
//Helper classes
addAbstractMapper("TEST_LIST_GENERATOR", "Test%sListGenerator");
}
}
@@ -0,0 +1,308 @@
package speiger.src.builder.modules;
import java.util.ArrayList;
import java.util.Arrays;
import java.util.List;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.FunctionDependency;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.dependencies.ModuleDependency;
@SuppressWarnings("javadoc")
public class MapModule extends BaseModule
{
public static final BaseModule INSTANCE = new MapModule();
public static final ModuleDependency MODULE = new ModuleDependency(INSTANCE, true)
.addKeyDependency(SetModule.MODULE)
.addValueDependency(CollectionModule.MODULE)
.addEntryDependency(SetModule.MODULE)
.addTypeDependency(SetModule.MODULE, ClassType.OBJECT);
public static final FunctionDependency IMPLEMENTATION = MODULE.createDependency("Implementations");
public static final FunctionDependency WRAPPERS = MODULE.createDependency("Wrappers").addKeyDependency(SetModule.WRAPPERS).addOptionalTypeDependency(SetModule.WRAPPERS, ClassType.OBJECT, true);
public static final FunctionDependency ORDERED_MAP = MODULE.createDependency("OrderedMap").addKeyDependency(SetModule.ORDERED_SET).addOptionalTypeDependency(SetModule.ORDERED_SET, ClassType.OBJECT, true);
public static final FunctionDependency SORTED_MAP = MODULE.createDependency("SortedMap").addKeyDependency(SetModule.SORTED_SET).addOptionalTypeDependency(SetModule.SORTED_SET, ClassType.OBJECT, true);
public static final FunctionDependency ARRAY_MAP = MODULE.createDependency("ArrayMap").addEntryDependency(ORDERED_MAP).addEntryDependency(IMPLEMENTATION);
public static final FunctionDependency IMMUTABLE_MAP = MODULE.createDependency("ImmutableMap").addEntryDependency(IMPLEMENTATION);
public static final FunctionDependency HASH_MAP = MODULE.createDependency("HashMap").addEntryDependency(IMPLEMENTATION);
public static final FunctionDependency LINKED_MAP = MODULE.createDependency("LinkedHashMap").addEntryDependency(HASH_MAP).addEntryDependency(ORDERED_MAP);
public static final FunctionDependency CUSTOM_MAP = MODULE.createDependency("CustomHashMap").addEntryDependency(IMPLEMENTATION).addKeyDependency(CollectionModule.STRATEGY);
public static final FunctionDependency LINKED_CUSTOM_MAP = MODULE.createDependency("LinkedCustomHashMap").addEntryDependency(CUSTOM_MAP).addEntryDependency(ORDERED_MAP);
public static final FunctionDependency ENUM_MAP = MODULE.createDependency("EnumMap").addEntryDependency(IMPLEMENTATION);
public static final FunctionDependency LINKED_ENUM_MAP = MODULE.createDependency("LinkedEnumMap").addEntryDependency(ENUM_MAP).addEntryDependency(ORDERED_MAP);
public static final FunctionDependency REF_MAP = MODULE.createDependency("ReferenceHashMap").addEntryDependency(IMPLEMENTATION);
public static final FunctionDependency LINKED_REF_MAP = MODULE.createDependency("LinkedReferenceMap").addEntryDependency(REF_MAP).addEntryDependency(ORDERED_MAP);
public static final FunctionDependency CONCURRENT_MAP = MODULE.createDependency("ConcurrentMap").addEntryDependency(IMPLEMENTATION);
public static final FunctionDependency AVL_TREE_MAP = MODULE.createDependency("AVLTreeMap").addEntryDependency(SORTED_MAP).addEntryDependency(IMPLEMENTATION);
public static final FunctionDependency RB_TREE_MAP = MODULE.createDependency("RBTreeMap").addEntryDependency(SORTED_MAP).addEntryDependency(IMPLEMENTATION);
@Override
public String getModuleName() { return "Map"; }
@Override
public boolean isBiModule() { return true; }
@Override
protected void loadVariables() {}
@Override
public boolean isModuleValid(ClassType keyType, ClassType valueType) { return keyType != ClassType.BOOLEAN; }
@Override
public List<IDependency> getDependencies(ClassType keyType, ClassType valueType) {
List<IDependency> dependencies = new ArrayList<>(Arrays.asList(MODULE, ORDERED_MAP, SORTED_MAP, IMPLEMENTATION, WRAPPERS, ARRAY_MAP, IMMUTABLE_MAP, HASH_MAP, LINKED_MAP, CUSTOM_MAP, LINKED_CUSTOM_MAP, CONCURRENT_MAP, AVL_TREE_MAP, RB_TREE_MAP));
if(keyType == ClassType.OBJECT) dependencies.addAll(Arrays.asList(ENUM_MAP, LINKED_ENUM_MAP, REF_MAP, LINKED_REF_MAP));
return dependencies;
}
@Override
protected void loadFlags()
{
if(MODULE.isEnabled()) addFlag("MAP_MODULE");
if(WRAPPERS.isEnabled()) addFlag("MAPS_FEATURE");
if(ORDERED_MAP.isEnabled()) addFlag("ORDERED_MAP_FEATURE");
if(ARRAY_MAP.isEnabled()) addFlag("ARRAY_MAP_FEATURE");
if(LINKED_MAP.isEnabled()) addFlag("LINKED_MAP_FEATURE");
if(LINKED_CUSTOM_MAP.isEnabled()) addFlag("LINKED_CUSTOM_MAP_FEATURE");
if(LINKED_ENUM_MAP.isEnabled()) addFlag("LINKED_ENUM_MAP_FEATURE");
if(SORTED_MAP.isEnabled()) addFlag("SORTED_MAP_FEATURE");
if(AVL_TREE_MAP.isEnabled()) addFlag("AVL_TREE_MAP_FEATURE");
if(RB_TREE_MAP.isEnabled()) addFlag("RB_TREE_MAP_FEATURE");
if(REF_MAP.isEnabled()) addFlag("REF_MAP_FEATURE");
if(LINKED_REF_MAP.isEnabled()) addFlag("LINKED_REF_MAP_FEATURE");
if(CONCURRENT_MAP.isEnabled()) addFlag("CONCURRENT_MAP_FEATURE");
if(IMMUTABLE_MAP.isEnabled()) addFlag("IMMUTABLE_MAP_FEATURE");
if(HASH_MAP.isEnabled()) addFlag("MAP_FEATURE");
if(CUSTOM_MAP.isEnabled()) addFlag("CUSTOM_MAP_FEATURE");
if(ENUM_MAP.isEnabled()) addFlag("ENUM_MAP_FEATURE");
}
@Override
protected void loadBlockades()
{
if(!MODULE.isEnabled()) addBlockedFiles("Map", "AbstractMap");
if(!WRAPPERS.isEnabled()) addBlockedFiles("Maps");
if(!IMMUTABLE_MAP.isEnabled()) addBlockedFiles("ImmutableOpenHashMap");
if(!CONCURRENT_MAP.isEnabled()) addBlockedFiles("ConcurrentMap", "ConcurrentOpenHashMap");
if(!ORDERED_MAP.isEnabled()) addBlockedFiles("OrderedMap");
if(!REF_MAP.isEnabled()) addBlockedFiles("ReferenceHashMap");
if(!LINKED_REF_MAP.isEnabled()) addBlockedFiles("LinkedReferenceHashMap");
if(!HASH_MAP.isEnabled()) addBlockedFiles("OpenHashMap");
if(!LINKED_MAP.isEnabled()) addBlockedFiles("LinkedOpenHashMap");
if(!CUSTOM_MAP.isEnabled()) addBlockedFiles("OpenCustomHashMap");
if(!LINKED_CUSTOM_MAP.isEnabled()) addBlockedFiles("LinkedOpenCustomHashMap");
if(!ENUM_MAP.isEnabled()) addBlockedFiles("EnumMap");
if(!LINKED_ENUM_MAP.isEnabled()) addBlockedFiles("LinkedEnumMap");
if(!ARRAY_MAP.isEnabled()) addBlockedFiles("ArrayMap");
if(!SORTED_MAP.isEnabled()) addBlockedFiles("SortedMap", "NavigableMap");
if(!AVL_TREE_MAP.isEnabled()) addBlockedFiles("AVLTreeMap");
if(!RB_TREE_MAP.isEnabled()) addBlockedFiles("RBTreeMap");
if(keyType == ClassType.BOOLEAN)
{
//Main Classes
addBlockedFiles("SortedMap", "NavigableMap", "RBTreeMap", "AVLTreeMap");
addBlockedFiles("OrderedMap", "ArrayMap", "LinkedOpenHashMap", "LinkedOpenCustomHashMap");
addBlockedFiles("ConcurrentMap", "ConcurrentOpenHashMap");
addBlockedFiles("Map", "Maps", "AbstractMap", "ImmutableOpenHashMap", "OpenHashMap", "OpenCustomHashMap");
//Test Classes
addBlockedFiles("TestMap", "MapTests", "MapTestSuiteBuilder", "MapConstructorTests", "TestMapGenerator", "SimpleMapTestGenerator", "DerivedMapGenerators", "AbstractMapTester");
addBlockedFiles("TestSortedMapGenerator", "OrderedMapTestSuiteBuilder", "NavigableMapTestSuiteBuilder", "SortedMapTestSuiteBuilder");
addBlockedFiles("TestOrderedMapGenerator");
addBlockedFilter(T -> T.endsWith("Tester") && (T.startsWith("Map") || T.startsWith("OrderedMap") || T.startsWith("SortedMap") || T.startsWith("NavigableMap")));
}
if(valueType == ClassType.OBJECT) {
addBlockedFiles("MapComputeIfAbsentNonDefaultTester", "MapComputeIfPresentNonDefaultTester", "MapComputeNonDefaultTester", "MapSupplyIfAbsentNonDefaultTester");
}
}
@Override
protected void loadRemappers()
{
//Main Classes
addBiRequirement("Map");
addBiRequirement("SortedMap");
addBiRequirement("OrderedMap");
addBiRequirement("NavigableMap");
addBiRequirement("ConcurrentMap");
addBiRequirement("AbstractMap");
addEnumRequirement("EnumMap");
addEnumRequirement("LinkedEnumMap");
addEnumRequirement("ReferenceHashMap");
addEnumRequirement("LinkedReferenceHashMap");
addBiRequirement("ConcurrentOpenHashMap");
addBiRequirement("ImmutableOpenHashMap");
addBiRequirement("OpenHashMap");
addBiRequirement("LinkedOpenHashMap");
addBiRequirement("OpenCustomHashMap");
addBiRequirement("LinkedOpenCustomHashMap");
addBiRequirement("ArrayMap");
addBiRequirement("RBTreeMap");
addBiRequirement("AVLTreeMap");
addBiRequirement("Maps");
addRemapper("AbstractMap", "Abstract%sMap");
addRemapper("EnumMap", "Enum2%sMap");
addRemapper("LinkedEnumMap", "LinkedEnum2%sMap");
addRemapper("ReferenceHashMap", "Reference2%sHashMap");
addRemapper("LinkedReferenceHashMap", "Reference2%sLinkedHashMap");
addRemapper("ImmutableOpenHashMap", "Immutable%sOpenHashMap");
//Test Classes
addBiRequirement("TestMapGenerator");
addBiRequirement("TestSortedMapGenerator");
addBiRequirement("TestOrderedMapGenerator");
addBiRequirement("SimpleMapTestGenerator");
addBiRequirement("DerivedMapGenerators");
addBiRequirement("AbstractMapTester");
addBiRequirement("MapTestSuiteBuilder");
addBiRequirement("SortedMapTestSuiteBuilder");
addBiRequirement("NavigableMapTestSuiteBuilder");
addBiRequirement("OrderedMapTestSuiteBuilder");
addBiRequirement("MapTests");
addBiRequirement("MapConstructorTests");
addBiRequirement("TestMap");
addBiRequirement("MapAddToTester");
addBiRequirement("MapSubFromTester");
addBiRequirement("MapClearTester");
addBiRequirement("MapComputeIfAbsentTester");
addBiRequirement("MapComputeIfPresentTester");
addBiRequirement("MapComputeTester");
addBiRequirement("MapComputeIfAbsentNonDefaultTester");
addBiRequirement("MapComputeIfPresentNonDefaultTester");
addBiRequirement("MapComputeNonDefaultTester");
addBiRequirement("MapCopyTester");
addBiRequirement("MapContainsTester");
addBiRequirement("MapContainsKeyTester");
addBiRequirement("MapContainsValueTester");
addBiRequirement("MapCreatorTester");
addBiRequirement("MapEntrySetTester");
addBiRequirement("MapEqualsTester");
addBiRequirement("MapForEachTester");
addBiRequirement("MapGetOrDefaultTester");
addBiRequirement("MapGetTester");
addBiRequirement("MapHashCodeTester");
addBiRequirement("MapIsEmptyTester");
addBiRequirement("MapMergeTester");
addBiRequirement("MapMergeBulkTester");
addBiRequirement("MapPutAllArrayTester");
addBiRequirement("MapPutAllTester");
addBiRequirement("MapPutIfAbsentTester");
addBiRequirement("MapPutTester");
addBiRequirement("MapRemoveEntryTester");
addBiRequirement("MapRemoveOrDefaultTester");
addBiRequirement("MapRemoveTester");
addBiRequirement("MapReplaceAllTester");
addBiRequirement("MapReplaceEntryTester");
addBiRequirement("MapReplaceTester");
addBiRequirement("MapSizeTester");
addBiRequirement("MapSupplyIfAbsentTester");
addBiRequirement("MapSupplyIfAbsentNonDefaultTester");
addBiRequirement("MapToStringTester");
addBiRequirement("NavigableMapNavigationTester");
addBiRequirement("SortedMapNavigationTester");
addBiRequirement("OrderedMapNavigationTester");
addBiRequirement("OrderedMapMoveTester");
addBiRequirement("OrderedMapPutTester");
addBiRequirement("MapConstructorTester");
addRemapper("TestMapGenerator", "Test%sMapGenerator");
addRemapper("TestSortedMapGenerator", "Test%sSortedMapGenerator");
addRemapper("TestOrderedMapGenerator", "Test%sOrderedMapGenerator");
addRemapper("SimpleMapTestGenerator", "Simple%sMapTestGenerator");
addRemapper("DerivedMapGenerators", "Derived%sMapGenerators");
addRemapper("AbstractMapTester", "Abstract%sMapTester");
addRemapper("TestMap", "Test%sMap");
}
@Override
protected void loadFunctions()
{
addFunctionValueMapper("BULK_MERGE", "mergeAll");
addFunctionValueMappers("COMPUTE_IF_ABSENT", "compute%sIfAbsent");
addFunctionValueMappers("COMPUTE_IF_PRESENT", "compute%sIfPresent");
addFunctionValueMapper("COMPUTE", "compute");
addFunctionMapper("DEQUEUE_LAST", "dequeueLast");
addFunctionMapper("DEQUEUE", "dequeue");
addSimpleMapper("ENTRY_SET", keyType.getFileType().toLowerCase()+"2"+valueType.getFileType()+"EntrySet");
addFunctionMappers("FIRST_ENTRY_KEY", "first%sKey");
addFunctionValueMappers("FIRST_ENTRY_VALUE", "first%sValue");
if(keyType.isObject()) addFunctionValueMapper("GET_VALUE", valueType.isObject() ? "getObject" : "get");
else addSimpleMapper("GET_VALUE", "get");
addFunctionMappers("LAST_ENTRY_KEY", "last%sKey");
addFunctionValueMappers("LAST_ENTRY_VALUE", "last%sValue");
addFunctionValueMapper("MERGE", "merge");
addFunctionMappers("POLL_FIRST_ENTRY_KEY", "pollFirst%sKey");
addFunctionMappers("POLL_LAST_ENTRY_KEY", "pollLast%sKey");
if(keyType.isObject()) addFunctionMapper("REMOVE_VALUE", "rem");
else addSimpleMapper("REMOVE_VALUE", "remove");
addFunctionMapper("REMOVE", "remove");
addFunctionValueMappers("REPLACE_VALUES", valueType.isObject() ? "replaceObjects" : "replace%ss");
addFunctionValueMappers("SUPPLY_IF_ABSENT", "supply%sIfAbsent");
}
@Override
protected void loadClasses()
{
//Implementation Classes
addAbstractBiMapper("IMMUTABLE_HASH_MAP", "Immutable%sOpenHashMap", "2");
addBiClassMapper("LINKED_CUSTOM_HASH_MAP", "LinkedOpenCustomHashMap", "2");
addBiClassMapper("LINKED_HASH_MAP", "LinkedOpenHashMap", "2");
addBiClassMapper("CUSTOM_HASH_MAP", "OpenCustomHashMap", "2");
addBiClassMapper("CONCURRENT_HASH_MAP", "ConcurrentOpenHashMap", "2");
addBiClassMapper("AVL_TREE_MAP", "AVLTreeMap", "2");
addBiClassMapper("RB_TREE_MAP", "RBTreeMap", "2");
addFunctionValueMappers("LINKED_ENUM_MAP", valueType.isObject() ? "LinkedEnum2ObjectMap" : "LinkedEnum2%sMap");
addFunctionValueMappers("ENUM_MAP", valueType.isObject() ? "Enum2ObjectMap" : "Enum2%sMap");
addFunctionValueMappers("REF_MAP", valueType.isObject() ? "Reference2ObjectHashMap" : "Reference2%sHashMap");
addFunctionValueMappers("LINKED_REF_MAP", valueType.isObject() ? "Reference2ObjectLinkedHashMap" : "Reference2%sLinkedHashMap");
addBiClassMapper("HASH_MAP", "OpenHashMap", "2");
addBiClassMapper("ARRAY_MAP", "ArrayMap", "2");
//Abstract Classes
addAbstractBiMapper("ABSTRACT_MAP", "Abstract%sMap", "2");
addAbstractBiMapper("REVERSED_ORDERED_MAP", "Reversed%sOrderedMap", "2");
//Helper Classes
addBiClassMapper("MAPS", "Maps", "2");
//Interfaces
addBiClassMapper("NAVIGABLE_MAP", "NavigableMap", "2");
addBiClassMapper("ORDERED_MAP", "OrderedMap", "2");
addBiClassMapper("SORTED_MAP", "SortedMap", "2");
addBiClassMapper("CONCURRENT_MAP", "ConcurrentMap", "2");
addBiClassMapper("MAP", "Map", "2");
}
@Override
protected void loadTestClasses()
{
//Implementation Classes
addAbstractBiMapper("SIMPLE_TEST_MAP", "Test%sMap", "2");
addBiClassMapper("MAP_TESTS", "MapTests", "2");
addAbstractBiMapper("NAVIGABLE_MAP_TEST_BUILDER", "%sNavigableMapTestSuiteBuilder", "2");
addAbstractBiMapper("SORTED_MAP_TEST_BUILDER", "%sSortedMapTestSuiteBuilder", "2");
addAbstractBiMapper("ORDERED_MAP_TEST_BUILDER", "%sOrderedMapTestSuiteBuilder", "2");
addAbstractBiMapper("MAP_TEST_BUILDER", "%sMapTestSuiteBuilder", "2");
//Abstract Classes
addAbstractBiMapper("ABSTRACT_MAP_TESTER", "Abstract%sMapTester", "2");
//Helper Classes
addAbstractBiMapper("MAP_CONSTRUCTOR_TESTS", "%sMapConstructorTests", "2");
addAbstractBiMapper("SIMPLE_MAP_TEST_GENERATOR", "Simple%sMapTestGenerator", "2");
addAbstractBiMapper("DERIVED_MAP_GENERATORS", "Derived%sMapGenerators", "2");
addAbstractBiMapper("TEST_ORDERED_MAP_GENERATOR", "Test%sOrderedMapGenerator", "2");
addAbstractBiMapper("TEST_SORTED_MAP_GENERATOR", "Test%sSortedMapGenerator", "2");
addAbstractBiMapper("TEST_MAP_GENERATOR", "Test%sMapGenerator", "2");
}
}
@@ -0,0 +1,71 @@
package speiger.src.builder.modules;
import java.util.Arrays;
import java.util.List;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.FunctionDependency;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.dependencies.ModuleDependency;
@SuppressWarnings("javadoc")
public class PairModule extends BaseModule
{
public static final BaseModule INSTANCE = new PairModule();
public static final ModuleDependency MODULE = new ModuleDependency(INSTANCE, true).addKeyDependency(JavaModule.MODULE);
public static final FunctionDependency IMMUTABLE = MODULE.createDependency("Immutable");
public static final FunctionDependency MUTABLE = MODULE.createDependency("Mutable");
// public static final DependencyModule MODULE = new BiTypeModule(INSTANCE);
// public static final DependencyFunction IMMUTABLE = MODULE.createFunction("Immutable");
// public static final DependencyFunction MUTABLE = MODULE.createFunction("Mutable");
@Override
public String getModuleName() { return "Pair"; }
@Override
public boolean isBiModule() { return true; }
@Override
protected void loadVariables() {}
@Override
protected void loadFunctions() {}
@Override
protected void loadTestClasses() {}
@Override
public List<IDependency> getDependencies(ClassType keyType, ClassType valueType) { return Arrays.asList(MODULE, IMMUTABLE, MUTABLE); }
@Override
protected void loadFlags() {
if(MODULE.isEnabled()) addFlag("PAIR_MODULE");
if(MUTABLE.isEnabled()) addFlag("MUTABLE_PAIR");
if(IMMUTABLE.isEnabled()) addFlag("IMMUTABLE_PAIR");
}
@Override
protected void loadBlockades() {
if(!MODULE.isEnabled()) addBlockedFiles("Pair");
if(!MUTABLE.isEnabled()) addBlockedFiles("MutablePair");
if(!IMMUTABLE.isEnabled()) addBlockedFiles("ImmutablePair");
}
@Override
protected void loadRemappers() {
//Main Classes
addBiRequirement("Pair", "");
addBiRequirement("MutablePair", "");
addBiRequirement("ImmutablePair", "");
//Test Classes
addBiRequirement("PairTester", "");
}
@Override
protected void loadClasses() {
//Implementations
addBiClassMapper("IMMUTABLE_PAIR", "ImmutablePair", "");
addBiClassMapper("MUTABLE_PAIR", "MutablePair", "");
//Interfaces
addBiClassMapper("PAIR", "Pair", "");
}
}
@@ -0,0 +1,102 @@
package speiger.src.builder.modules;
import java.util.Arrays;
import java.util.List;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.FunctionDependency;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.dependencies.ModuleDependency;
@SuppressWarnings("javadoc")
public class PrioQueueModule extends BaseModule
{
public static final BaseModule INSTANCE = new PrioQueueModule();
public static final ModuleDependency MODULE = new ModuleDependency(INSTANCE, false).addKeyDependency(CollectionModule.MODULE);
public static final FunctionDependency IMPLEMENTATION = MODULE.createDependency("Implementations");
public static final FunctionDependency WRAPPERS = MODULE.createDependency("Wrappers");
public static final FunctionDependency DEQUEUE = MODULE.createDependency("Dequeue");
public static final FunctionDependency FIFO_QUEUE = MODULE.createDependency("FiFoQueue").addKeyDependency(DEQUEUE).addKeyDependency(IMPLEMENTATION);
public static final FunctionDependency HEAP_QUEUE = MODULE.createDependency("HeapQueue").addKeyDependency(IMPLEMENTATION);
public static final FunctionDependency ARRAY_PRIO_QUEUE = MODULE.createDependency("ArrayPrioQueue").addKeyDependency(IMPLEMENTATION);
@Override
public String getModuleName() { return "PriorityQueue"; }
@Override
protected void loadVariables() {}
@Override
protected void loadFunctions() {}
@Override
public List<IDependency> getDependencies(ClassType keyType, ClassType valueType) { return Arrays.asList(MODULE, WRAPPERS, IMPLEMENTATION, DEQUEUE, FIFO_QUEUE, HEAP_QUEUE, ARRAY_PRIO_QUEUE); }
@Override
protected void loadFlags() {
if(MODULE.isEnabled()) addFlag("QUEUE_MODULE");
if(WRAPPERS.isEnabled()) addKeyFlag("QUEUES_FEATURE");
if(DEQUEUE.isEnabled()) addKeyFlag("DEQUEUE_FEATURE");
if(FIFO_QUEUE.isEnabled()) addKeyFlag("FIFO_QUEUE_FEATURE");
if(HEAP_QUEUE.isEnabled()) addKeyFlag("HEAP_QUEUE_FEATURE");
if(ARRAY_PRIO_QUEUE.isEnabled()) addKeyFlag("ARRAY_QUEUE_FEATURE");
}
@Override
protected void loadBlockades() {
if(!MODULE.isEnabled()) addBlockedFiles("PriorityQueue", "AbstractPriorityQueue");
if(!WRAPPERS.isEnabled()) addBlockedFiles("PriorityQueues");
if(!DEQUEUE.isEnabled()) addBlockedFiles("PriorityDequeue");
if(!FIFO_QUEUE.isEnabled()) addBlockedFiles("ArrayFIFOQueue");
if(!HEAP_QUEUE.isEnabled()) addBlockedFiles("HeapPriorityQueue");
if(!ARRAY_PRIO_QUEUE.isEnabled()) addBlockedFiles("ArrayPriorityQueue");
if(keyType == ClassType.BOOLEAN) {
addBlockedFiles("QueueTests");
}
}
@Override
protected void loadRemappers() {
//Main Classes
addRemapper("AbstractPriorityQueue", "Abstract%sPriorityQueue");
//Test Classes
addRemapper("TestQueueGenerator", "Test%sQueueGenerator");
addRemapper("AbstractQueueTester", "Abstract%sQueueTester");
addRemapper("SimpleQueueTestGenerator", "Simple%sQueueTestGenerator");
}
@Override
protected void loadClasses() {
//Implementation Classes
addClassMapper("ARRAY_FIFO_QUEUE", "ArrayFIFOQueue");
addClassMapper("ARRAY_PRIORITY_QUEUE", "ArrayPriorityQueue");
addClassMapper("HEAP_PRIORITY_QUEUE", "HeapPriorityQueue");
//Abstract Classes
addAbstractMapper("ABSTRACT_PRIORITY_QUEUE", "Abstract%sPriorityQueue");
//Helper Classes
addClassMapper("PRIORITY_QUEUES", "PriorityQueues");
//Interfaces
addClassMapper("PRIORITY_QUEUE", "PriorityQueue");
addClassMapper("PRIORITY_DEQUEUE", "PriorityDequeue");
}
@Override
protected void loadTestClasses()
{
//Implementation Classes
addClassMapper("DEQUEUE_TEST_BUILDER", "DequeueTestSuiteBuilder");
addClassMapper("QUEUE_TEST_BUILDER", "QueueTestSuiteBuilder");
addClassMapper("QUEUE_TESTS", "QueueTests");
//Abstract Classes
addAbstractMapper("ABSTRACT_QUEUE_TESTER", "Abstract%sQueueTester");
//Helper Classes
addAbstractMapper("SIMPLE_QUEUE_TEST_GENERATOR", "Simple%sQueueTestGenerator");
addAbstractMapper("TEST_QUEUE_GENERATOR", "Test%sQueueGenerator");
}
}
@@ -0,0 +1,162 @@
package speiger.src.builder.modules;
import java.util.Arrays;
import java.util.List;
import speiger.src.builder.ClassType;
import speiger.src.builder.dependencies.FunctionDependency;
import speiger.src.builder.dependencies.IDependency;
import speiger.src.builder.dependencies.ModuleDependency;
@SuppressWarnings("javadoc")
public class SetModule extends BaseModule
{
public static final BaseModule INSTANCE = new SetModule();
public static final ModuleDependency MODULE = new ModuleDependency(INSTANCE, false).addKeyDependency(CollectionModule.MODULE).addKeyDependency(CollectionModule.SPLIT_ITERATORS);
public static final FunctionDependency IMPLEMENTATION = MODULE.createDependency("Implementations");
public static final FunctionDependency WRAPPERS = MODULE.createDependency("Wrappers");
public static final FunctionDependency ORDERED_SET = MODULE.createDependency("OrderedSet");
public static final FunctionDependency SORTED_SET = MODULE.createDependency("SortedSet");
public static final FunctionDependency ARRAY_SET = MODULE.createDependency("ArraySet").addKeyDependency(ORDERED_SET).addKeyDependency(IMPLEMENTATION);
public static final FunctionDependency IMMUTABLE_SET = MODULE.createDependency("ImmutableSet").addKeyDependency(ORDERED_SET).addKeyDependency(IMPLEMENTATION);
public static final FunctionDependency HASH_SET = MODULE.createDependency("HashSet").addKeyDependency(IMPLEMENTATION);
public static final FunctionDependency LINKED_SET = MODULE.createDependency("LinkedHashSet").addKeyDependency(ORDERED_SET).addKeyDependency(HASH_SET);
public static final FunctionDependency CUSTOM_SET = MODULE.createDependency("CustomHashSet").addKeyDependency(IMPLEMENTATION).addKeyDependency(CollectionModule.STRATEGY);
public static final FunctionDependency LINKED_CUSTOM_SET = MODULE.createDependency("LinkedCustomHashSet").addKeyDependency(ORDERED_SET).addKeyDependency(CUSTOM_SET);
public static final FunctionDependency AVL_TREE_SET = MODULE.createDependency("AVLTreeSet").addKeyDependency(SORTED_SET).addKeyDependency(IMPLEMENTATION);
public static final FunctionDependency RB_TREE_SET = MODULE.createDependency("RBTreeSet").addKeyDependency(SORTED_SET).addKeyDependency(IMPLEMENTATION);
@Override
public String getModuleName() { return "Set"; }
@Override
protected void loadVariables() {}
@Override
public boolean isModuleValid(ClassType keyType, ClassType valueType) { return keyType != ClassType.BOOLEAN; }
@Override
public List<IDependency> getDependencies(ClassType keyType, ClassType valueType) { return Arrays.asList(MODULE, WRAPPERS, ORDERED_SET, SORTED_SET, IMPLEMENTATION, ARRAY_SET, IMMUTABLE_SET, HASH_SET, LINKED_SET, CUSTOM_SET, LINKED_CUSTOM_SET, AVL_TREE_SET, RB_TREE_SET); }
@Override
protected void loadFlags()
{
if(MODULE.isEnabled()) addFlag("SET_MODULE");
if(WRAPPERS.isEnabled()) addFlag("SETS_FEATURE");
if(ORDERED_SET.isEnabled()) addFlag("ORDERED_SET_FEATURE");
if(SORTED_SET.isEnabled()) addFlag("SORTED_SET_FEATURE");
if(IMMUTABLE_SET.isEnabled()) addFlag("IMMUTABLE_SET_FEATURE");
if(ARRAY_SET.isEnabled()) addFlag("ARRAY_SET_FEATURE");
if(HASH_SET.isEnabled()) addFlag("HASH_SET_FEATURE");
if(LINKED_SET.isEnabled()) addFlag("LINKED_SET_FEATURE");
if(CUSTOM_SET.isEnabled()) addFlag("CUSTOM_HASH_SET_FEATURE");
if(LINKED_CUSTOM_SET.isEnabled()) addFlag("LINKED_CUSTOM_SET_FEATURE");
if(AVL_TREE_SET.isEnabled()) addFlag("AVL_TREE_SET_FEATURE");
if(RB_TREE_SET.isEnabled()) addFlag("RB_TREE_SET_FEATURE");
}
@Override
protected void loadBlockades()
{
if(!MODULE.isEnabled()) addBlockedFiles("Set", "AbstractSet");
if(!WRAPPERS.isEnabled()) addBlockedFiles("Sets");
if(!IMMUTABLE_SET.isEnabled()) addBlockedFiles("ImmutableOpenHashSet");
if(!ORDERED_SET.isEnabled()) addBlockedFiles("OrderedSet");
if(!HASH_SET.isEnabled()) addBlockedFiles("OpenHashSet");
if(!LINKED_SET.isEnabled()) addBlockedFiles("LinkedOpenHashSet");
if(!CUSTOM_SET.isEnabled()) addBlockedFiles("OpenCustomHashSet");
if(!LINKED_CUSTOM_SET.isEnabled()) addBlockedFiles("LinkedOpenCustomHashSet");
if(!ARRAY_SET.isEnabled()) addBlockedFiles("ArraySet");
if(!SORTED_SET.isEnabled()) addBlockedFiles("SortedSet", "NavigableSet");
if(!AVL_TREE_SET.isEnabled()) addBlockedFiles("AVLTreeSet");
if(!RB_TREE_SET.isEnabled()) addBlockedFiles("RBTreeSet");
if(keyType == ClassType.BOOLEAN)
{
//Main Classes
addBlockedFiles("SortedSet", "NavigableSet", "AVLTreeSet", "RBTreeSet");
addBlockedFiles("OrderedSet", "ArraySet", "LinkedOpenHashSet", "LinkedOpenCustomHashSet");
addBlockedFiles("Set", "Sets", "AbstractSet", "OpenHashSet", "OpenCustomHashSet", "ImmutableOpenHashSet");
//Test Classes
addBlockedFiles("SetTests", "SetTestSuiteBuilder", "TestSetGenerator");
addBlockedFiles("OrderedSetTestSuiteBuilder", "TestOrderedSetGenerator", "OrderedSetMoveTester", "OrderedSetNavigationTester", "OrderedSetIterationTester");
addBlockedFiles("SortedSetTestSuiteBuilder", "TestSortedSetGenerator", "SortedSetNaviationTester", "SortedSetSubsetTestSetGenerator", "SortedSetIterationTester", "SortedSetNaviationTester");
addBlockedFiles("NavigableSetTestSuiteBuilder", "TestNavigableSetGenerator", "NavigableSetNavigationTester");
addBlockedFiles("MinimalSet", "AbstractSetTester", "SetAddAllTester", "SetAddTester", "SetCreationTester", "SetEqualsTester", "SetRemoveTester");
}
}
@Override
protected void loadRemappers()
{
//Main Classes
addRemapper("AbstractSet", "Abstract%sSet");
addRemapper("ImmutableOpenHashSet", "Immutable%sOpenHashSet");
//Test Classes
addRemapper("MinimalSet", "Minimal%sSet");
addRemapper("TestNavigableSetGenerator", "Test%sNavigableSetGenerator");
addRemapper("TestSortedSetGenerator", "Test%sSortedSetGenerator");
addRemapper("TestOrderedSetGenerator", "Test%sOrderedSetGenerator");
addRemapper("TestSetGenerator", "Test%sSetGenerator");
addRemapper("AbstractSetTester", "Abstract%sSetTester");
}
@Override
protected void loadFunctions()
{
addFunctionMapper("POLL_FIRST_KEY", "pollFirst");
addFunctionMapper("POLL_LAST_KEY", "pollLast");
addFunctionMapper("FIRST_KEY", "first");
addFunctionMapper("LAST_KEY", "last");
}
@Override
protected void loadTestClasses()
{
//Implementation Classes
addAbstractMapper("MINIMAL_SET", "Minimal%sSet");
addClassMapper("ORDERED_SET_TEST_BUILDER", "OrderedSetTestSuiteBuilder");
addClassMapper("SORTED_SET_TEST_BUILDER", "SortedSetTestSuiteBuilder");
addClassMapper("NAVIGABLE_SET_TEST_BUILDER", "NavigableSetTestSuiteBuilder");
addClassMapper("SET_TEST_BUILDER", "SetTestSuiteBuilder");
addClassMapper("SET_TESTS", "SetTests");
//Abstract Classes
addAbstractMapper("ABSTRACT_SET_TESTER", "Abstract%sSetTester");
//Helper Classes
addClassMapper("SUB_SORTED_SET_CLASS_GENERATOR", "SortedSetSubsetTestSetGenerator");
addClassMapper("SUB_NAVIGABLE_SET_CLASS_GENERATOR", "NavigableSetSubsetTestSetGenerator");
addAbstractMapper("TEST_NAVIGABLE_SET_GENERATOR", "Test%sNavigableSetGenerator");
addAbstractMapper("TEST_SORTED_SET_GENERATOR", "Test%sSortedSetGenerator");
addAbstractMapper("TEST_ORDERED_SET_GENERATOR", "Test%sOrderedSetGenerator");
addAbstractMapper("TEST_SET_GENERATOR", "Test%sSetGenerator");
}
@Override
protected void loadClasses()
{
//Implementation Classes
addClassMapper("LINKED_CUSTOM_HASH_SET", "LinkedOpenCustomHashSet");
addClassMapper("LINKED_HASH_SET", "LinkedOpenHashSet");
addAbstractMapper("IMMUTABLE_HASH_SET", "Immutable%sOpenHashSet");
addClassMapper("CUSTOM_HASH_SET", "OpenCustomHashSet");
addClassMapper("HASH_SET", "OpenHashSet");
addClassMapper("RB_TREE_SET", "RBTreeSet");
addClassMapper("AVL_TREE_SET", "AVLTreeSet");
addClassMapper("ARRAY_SET", "ArraySet");
//Abstract Classes
addAbstractMapper("ABSTRACT_SET", "Abstract%sSet");
addAbstractMapper("REVERSED_ORDERED_SET", "Reversed%sOrderedSet");
//Helper Classes
addClassMapper("SETS", "Sets");
//Interfaces
addClassMapper("NAVIGABLE_SET", "NavigableSet");
addClassMapper("SORTED_SET", "SortedSet");
addClassMapper("ORDERED_SET", "OrderedSet");
addClassMapper("SET", "Set");
}
}
@@ -1,264 +1,346 @@
package speiger.src.collections.PACKAGE.collections;
import java.util.Collection;
import java.util.Objects;
import java.util.AbstractCollection;
#if TYPE_OBJECT
import java.util.function.Consumer;
#endif
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.CONSUMER;
import speiger.src.collections.PACKAGE.utils.ITERATORS;
#endif
/**
* Abstract Type Specific Collection that reduces boxing/unboxing
* @Type(T)
*/
public abstract class ABSTRACT_COLLECTION KEY_GENERIC_TYPE extends AbstractCollection<CLASS_TYPE> implements COLLECTION KEY_GENERIC_TYPE
{
@Override
public abstract ITERATOR KEY_GENERIC_TYPE iterator();
#if !TYPE_OBJECT
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public boolean add(CLASS_TYPE e) { return COLLECTION.super.add(e); }
#endif
@Override
public boolean addAll(COLLECTION KEY_GENERIC_TYPE c) {
boolean modified = false;
for(ITERATOR KEY_GENERIC_TYPE iter = c.iterator();iter.hasNext();modified |= add(iter.NEXT()));
return modified;
}
@Override
public COLLECTION KEY_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
#if !TYPE_OBJECT
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public boolean contains(Object e) { return COLLECTION.super.contains(e); }
/**
* A Type-Specific implementation of contains. This implementation iterates over the elements and returns true if the value match.
* @param e the element that should be searched for.
* @return true if the value was found.
*/
@Override
public boolean contains(KEY_TYPE e) {
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) { if(KEY_EQUALS(iter.NEXT(), e)) return true; }
return false;
}
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public boolean addAll(Collection<? extends CLASS_TYPE> c)
{
return c instanceof COLLECTION ? addAll((COLLECTION KEY_GENERIC_TYPE)c) : super.addAll(c);
}
#endif
/**
* A Type-Specific implementation of containsAll. This implementation iterates over all elements and checks all elements are present in the other collection.
* @param c the collection that should be checked if it contains all elements.
* @return true if all elements were found in the collection
* @throws java.lang.NullPointerException if the collection is null
*/
@Override
public boolean containsAll(COLLECTION KEY_GENERIC_TYPE c) {
Objects.requireNonNull(c);
if(c.isEmpty()) return true;
for(ITERATOR KEY_GENERIC_TYPE iter = c.iterator();iter.hasNext();)
if(!contains(iter.NEXT()))
return false;
return true;
}
@Override
public boolean containsAll(Collection<?> c) {
Objects.requireNonNull(c);
return c instanceof COLLECTION ? containsAll((COLLECTION KEY_GENERIC_TYPE)c) : super.containsAll(c);
}
/**
* This implementation iterates over the elements of the collection and checks if they are stored in this collection
* @param c the elements that should be checked for
* @return true if any element is in this collection
* @throws java.lang.NullPointerException if the collection is null
*/
@Override
@Primitive
public boolean containsAny(Collection<?> c) {
Objects.requireNonNull(c);
if(c.isEmpty()) return false;
for(Object e : c)
if(contains(e))
return true;
return false;
}
/**
* This implementation iterates over the elements of the collection and checks if they are stored in this collection.
* @param c the elements that should be checked for
* @return true if any element is in this collection
* @throws java.lang.NullPointerException if the collection is null
*/
@Override
public boolean containsAny(COLLECTION KEY_GENERIC_TYPE c) {
Objects.requireNonNull(c);
if(c.isEmpty()) return false;
for(ITERATOR KEY_GENERIC_TYPE iter = c.iterator();iter.hasNext();)
if(contains(iter.NEXT()))
return true;
return false;
}
#if !TYPE_OBJECT
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public boolean remove(Object e) { return COLLECTION.super.remove(e); }
/**
* A Type-Specific implementation of remove. This implementation iterates over the elements until it finds the element that is searched for or it runs out of elements.
* It stops after finding the first element
* @param e the element that is searched for
* @return true if the element was found and removed.
*/
@Override
public boolean REMOVE_KEY(KEY_TYPE e) {
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(KEY_EQUALS(iter.NEXT(), e)) {
iter.remove();
return true;
}
}
return false;
}
#endif
/**
* A Type-Specific implementation of removeAll. This Implementation iterates over all elements and removes them as they were found in the other collection.
* @param c the elements that should be deleted
* @return true if the collection was modified.
* @throws java.lang.NullPointerException if the collection is null
*/
@Override
public boolean removeAll(COLLECTION KEY_GENERIC_TYPE c) {
Objects.requireNonNull(c);
if(c.isEmpty()) return false;
boolean modified = false;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(c.contains(iter.NEXT())) {
iter.remove();
modified = true;
}
}
return modified;
}
@Override
public boolean removeAll(COLLECTION KEY_GENERIC_TYPE c, CONSUMER KEY_GENERIC_TYPE r) {
Objects.requireNonNull(c);
if(c.isEmpty()) return false;
Objects.requireNonNull(r);
boolean modified = false;
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;
}
}
return modified;
}
/**
* A Type-Specific implementation of retainAll. This Implementation iterates over all elements and removes them as they were not found in the other collection.
* @param c the elements that should be kept
* @return true if the collection was modified.
* @throws java.lang.NullPointerException if the collection is null
*/
@Override
public boolean retainAll(COLLECTION KEY_GENERIC_TYPE c) {
Objects.requireNonNull(c);
if(c.isEmpty()) {
boolean modified = !isEmpty();
clear();
return modified;
}
boolean modified = false;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(!c.contains(iter.NEXT())) {
iter.remove();
modified = true;
}
}
return modified;
}
@Override
public boolean retainAll(COLLECTION KEY_GENERIC_TYPE c, CONSUMER KEY_GENERIC_TYPE r) {
Objects.requireNonNull(c);
Objects.requireNonNull(r);
if(c.isEmpty()) {
boolean modified = !isEmpty();
forEach(r);
clear();
return modified;
}
boolean modified = false;
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;
}
}
return modified;
}
#if !TYPE_OBJECT
/**
* A Type-Specific implementation of toArray that links to {@link #TO_ARRAY(KEY_TYPE[])} with a newly created array.
* @return an array containing all of the elements in this collection
*/
@Override
public KEY_TYPE[] TO_ARRAY() {
return TO_ARRAY(new KEY_TYPE[size()]);
}
/**
* A Type-Specific implementation of toArray. This implementation iterates over all elements and unwraps them into primitive type.
* @param a array that the elements should be injected to. If null or to small a new array with the right size is created
* @return an array containing all of the elements in this collection
*/
@Override
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
package speiger.src.collections.PACKAGE.collections;
import java.util.Collection;
#if ORDERED_MAP_FEATURE
import java.util.function.Supplier;
#endif
import java.util.Objects;
import java.util.AbstractCollection;
#if TYPE_OBJECT
import java.util.function.Consumer;
#endif
#if ORDERED_MAP_FEATURE
import speiger.src.collections.PACKAGE.lists.LIST_ITERATOR;
#endif
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.CONSUMER;
import speiger.src.collections.PACKAGE.utils.ITERATORS;
import speiger.src.collections.PACKAGE.utils.ARRAYS;
#endif
/**
* Abstract Type Specific Collection that reduces boxing/unboxing
* @Type(T)
*/
public abstract class ABSTRACT_COLLECTION KEY_GENERIC_TYPE extends AbstractCollection<CLASS_TYPE> implements COLLECTION KEY_GENERIC_TYPE
{
@Override
public abstract ITERATOR KEY_GENERIC_TYPE iterator();
#if !TYPE_OBJECT
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public boolean add(CLASS_TYPE e) { return COLLECTION.super.add(e); }
#endif
@Override
public boolean addAll(COLLECTION KEY_GENERIC_TYPE c) {
boolean modified = false;
for(ITERATOR KEY_GENERIC_TYPE iter = c.iterator();iter.hasNext();modified |= add(iter.NEXT()));
return modified;
}
@Override
public COLLECTION KEY_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
#if !TYPE_OBJECT
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public boolean contains(Object e) { return COLLECTION.super.contains(e); }
/**
* A Type-Specific implementation of contains. This implementation iterates over the elements and returns true if the value match.
* @param e the element that should be searched for.
* @return true if the value was found.
*/
@Override
public boolean contains(KEY_TYPE e) {
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) { if(KEY_EQUALS(iter.NEXT(), e)) return true; }
return false;
}
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public boolean addAll(Collection<? extends CLASS_TYPE> c)
{
return c instanceof COLLECTION ? addAll((COLLECTION KEY_GENERIC_TYPE)c) : super.addAll(c);
}
#endif
/**
* A Type-Specific implementation of containsAll. This implementation iterates over all elements and checks all elements are present in the other collection.
* @param c the collection that should be checked if it contains all elements.
* @return true if all elements were found in the collection
* @throws java.lang.NullPointerException if the collection is null
*/
@Override
public boolean containsAll(COLLECTION KEY_GENERIC_TYPE c) {
Objects.requireNonNull(c);
if(c.isEmpty()) return true;
for(ITERATOR KEY_GENERIC_TYPE iter = c.iterator();iter.hasNext();)
if(!contains(iter.NEXT()))
return false;
return true;
}
@Override
public boolean containsAll(Collection<?> c) {
Objects.requireNonNull(c);
return c instanceof COLLECTION ? containsAll((COLLECTION KEY_GENERIC_TYPE)c) : super.containsAll(c);
}
/**
* This implementation iterates over the elements of the collection and checks if they are stored in this collection
* @param c the elements that should be checked for
* @return true if any element is in this collection
* @throws java.lang.NullPointerException if the collection is null
*/
@Override
@Primitive
public boolean containsAny(Collection<?> c) {
Objects.requireNonNull(c);
if(c.isEmpty()) return false;
for(Object e : c)
if(contains(e))
return true;
return false;
}
/**
* This implementation iterates over the elements of the collection and checks if they are stored in this collection.
* @param c the elements that should be checked for
* @return true if any element is in this collection
* @throws java.lang.NullPointerException if the collection is null
*/
@Override
public boolean containsAny(COLLECTION KEY_GENERIC_TYPE c) {
Objects.requireNonNull(c);
if(c.isEmpty()) return false;
for(ITERATOR KEY_GENERIC_TYPE iter = c.iterator();iter.hasNext();)
if(contains(iter.NEXT()))
return true;
return false;
}
#if !TYPE_OBJECT
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public boolean remove(Object e) { return COLLECTION.super.remove(e); }
/**
* A Type-Specific implementation of remove. This implementation iterates over the elements until it finds the element that is searched for or it runs out of elements.
* It stops after finding the first element
* @param e the element that is searched for
* @return true if the element was found and removed.
*/
@Override
public boolean REMOVE_KEY(KEY_TYPE e) {
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(KEY_EQUALS(iter.NEXT(), e)) {
iter.remove();
return true;
}
}
return false;
}
#endif
/**
* A Type-Specific implementation of removeAll. This Implementation iterates over all elements and removes them as they were found in the other collection.
* @param c the elements that should be deleted
* @return true if the collection was modified.
* @throws java.lang.NullPointerException if the collection is null
*/
@Override
public boolean removeAll(COLLECTION KEY_GENERIC_TYPE c) {
Objects.requireNonNull(c);
if(c.isEmpty()) return false;
boolean modified = false;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(c.contains(iter.NEXT())) {
iter.remove();
modified = true;
}
}
return modified;
}
@Override
public boolean removeAll(COLLECTION KEY_GENERIC_TYPE c, CONSUMER KEY_GENERIC_TYPE r) {
Objects.requireNonNull(c);
if(c.isEmpty()) return false;
Objects.requireNonNull(r);
boolean modified = false;
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;
}
}
return modified;
}
/**
* A Type-Specific implementation of retainAll. This Implementation iterates over all elements and removes them as they were not found in the other collection.
* @param c the elements that should be kept
* @return true if the collection was modified.
* @throws java.lang.NullPointerException if the collection is null
*/
@Override
public boolean retainAll(COLLECTION KEY_GENERIC_TYPE c) {
Objects.requireNonNull(c);
if(c.isEmpty()) {
boolean modified = !isEmpty();
clear();
return modified;
}
boolean modified = false;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(!c.contains(iter.NEXT())) {
iter.remove();
modified = true;
}
}
return modified;
}
@Override
public boolean retainAll(COLLECTION KEY_GENERIC_TYPE c, CONSUMER KEY_GENERIC_TYPE r) {
Objects.requireNonNull(c);
Objects.requireNonNull(r);
if(c.isEmpty()) {
boolean modified = !isEmpty();
forEach(r);
clear();
return modified;
}
boolean modified = false;
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;
}
}
return modified;
}
#if !TYPE_OBJECT
/**
* A Type-Specific implementation of toArray that links to {@link #TO_ARRAY(KEY_TYPE[])} with a newly created array.
* @return an array containing all of the elements in this collection
*/
@Override
public KEY_TYPE[] TO_ARRAY() {
if(isEmpty()) return ARRAYS.EMPTY_ARRAY;
return TO_ARRAY(new KEY_TYPE[size()]);
}
/**
* A Type-Specific implementation of toArray. This implementation iterates over all elements and unwraps them into primitive type.
* @param a array that the elements should be injected to. If null or to small a new array with the right size is created
* @return an array containing all of the elements in this collection
*/
@Override
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
#if ORDERED_MAP_FEATURE
public static class REVERSED_ORDERED_COLLECTION KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION KEY_GENERIC_TYPE implements ORDERED_COLLECTION KEY_GENERIC_TYPE {
ORDERED_COLLECTION KEY_GENERIC_TYPE collection;
Supplier<ITERATOR KEY_GENERIC_TYPE> reverseIterator;
public REVERSED_ORDERED_COLLECTION(ORDERED_COLLECTION KEY_GENERIC_TYPE collection, Supplier<ITERATOR KEY_GENERIC_TYPE> reverseIterator) {
this.collection = collection;
this.reverseIterator = reverseIterator;
}
@Override
public boolean add(KEY_TYPE o) { return collection.add(o); }
@Override
public ORDERED_COLLECTION KEY_GENERIC_TYPE reversed() { return collection; }
@Override
public void addFirst(KEY_TYPE e) { collection.addLast(e); }
@Override
public void addLast(KEY_TYPE e) { collection.addFirst(e); }
@Override
#if !TYPE_OBJECT
public boolean contains(KEY_TYPE e) { return collection.contains(e); }
#else
public boolean contains(Object e) { return collection.contains(e); }
#endif
@Override
#if !TYPE_OBJECT
public boolean REMOVE_KEY(KEY_TYPE e) { return collection.REMOVE_KEY(e); }
#else
public boolean remove(Object e) { return collection.remove(e); }
#endif
@Override
public void clear() { collection.clear(); }
@Override
public KEY_TYPE GET_FIRST_KEY() { return collection.GET_LAST_KEY(); }
@Override
public KEY_TYPE REMOVE_FIRST_KEY() { return collection.REMOVE_LAST_KEY(); }
@Override
public KEY_TYPE GET_LAST_KEY() { return collection.GET_FIRST_KEY(); }
@Override
public KEY_TYPE REMOVE_LAST_KEY() { return collection.REMOVE_FIRST_KEY(); }
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() { return reverseIterator.get(); }
@Override
public int size() { return collection.size(); }
}
public static class ReverseBiIterator KEY_GENERIC_TYPE implements LIST_ITERATOR KEY_GENERIC_TYPE {
LIST_ITERATOR KEY_GENERIC_TYPE it;
public ReverseBiIterator(LIST_ITERATOR KEY_GENERIC_TYPE it) {
this.it = it;
}
@Override
public KEY_TYPE NEXT() { return it.PREVIOUS(); }
@Override
public boolean hasNext() { return it.hasPrevious(); }
@Override
public boolean hasPrevious() { return it.hasNext(); }
@Override
public KEY_TYPE PREVIOUS() { return it.NEXT(); }
@Override
public void remove() { it.remove(); }
@Override
public int nextIndex() { return it.previousIndex(); }
@Override
public int previousIndex() { return it.nextIndex(); }
@Override
public void set(KEY_TYPE e) { it.set(e); }
@Override
public void add(KEY_TYPE e) { it.add(e); }
}
#endif
}
@@ -1,19 +1,11 @@
package speiger.src.collections.PACKAGE.collections;
#if !TYPE_OBJECT
import speiger.src.collections.objects.collections.ObjectBidirectionalIterator;
/**
* A Type-Specific {@link ObjectBidirectionalIterator} to reduce (un)boxing
*/
public interface BI_ITERATOR KEY_GENERIC_TYPE extends ITERATOR KEY_GENERIC_TYPE, ObjectBidirectionalIterator<CLASS_TYPE>
#else
/**
* This is a basically a {@link java.util.ListIterator} without the index functions.
* Allowing to have a simple Bidirectional Iterator without having to keep track of the Iteration index.
* @Type(T)
*/
public interface BI_ITERATOR KEY_GENERIC_TYPE extends ITERATOR KEY_GENERIC_TYPE
#endif
{
/**
* Returns true if the Iterator has a Previous element
@@ -29,11 +21,11 @@ public interface BI_ITERATOR KEY_GENERIC_TYPE extends ITERATOR KEY_GENERIC_TYPE
public KEY_TYPE PREVIOUS();
#if !TYPE_OBJECT
/** {@inheritDoc}
/**
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
* @return the Previous element of the iterator.+
*/
@Override
@Deprecated
public default CLASS_TYPE previous() {
return KEY_TO_OBJ(PREVIOUS());
@@ -1,312 +1,323 @@
package speiger.src.collections.PACKAGE.collections;
import java.util.Collection;
#if PRIMITIVES
import java.util.Objects;
import java.util.function.JAVA_PREDICATE;
import java.util.function.Predicate;
import java.util.stream.JAVA_STREAM;
import java.util.stream.StreamSupport;
#endif
#if TYPE_OBJECT
import java.util.function.Consumer;
import speiger.src.collections.ints.functions.function.Int2ObjectFunction;
#else
import speiger.src.collections.PACKAGE.functions.CONSUMER;
#endif
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
import speiger.src.collections.PACKAGE.utils.COLLECTIONS;
import speiger.src.collections.utils.SanityChecks;
/**
* A Type-Specific {@link Collection} that reduces (un)boxing
* @Type(T)
*/
public interface COLLECTION KEY_GENERIC_TYPE extends Collection<CLASS_TYPE>, ITERABLE KEY_GENERIC_TYPE
{
#if !TYPE_OBJECT
/**
* A Type-Specific add function to reduce (un)boxing
* @param o the element that should be added
* @return true if the element was added to the collection
*/
public boolean add(KEY_TYPE o);
#endif
/**
* A Type-Specific addAll function to reduce (un)boxing
* @param c the collection of elements that should be added
* @return true if elements were added into the collection
*/
public boolean addAll(COLLECTION KEY_GENERIC_TYPE c);
/**
* A Type-Specific Array based addAll method to reduce the amount of Wrapping
* @param e the elements that should be added
* @return if the collection was modified
*/
public default boolean addAll(KEY_TYPE... e) { return addAll(e, 0, e.length); }
/**
* A Type-Specific Array based addAll method to reduce the amount of Wrapping
* @param e the elements that should be added
* @param length how many elements of the array should be added
* @return if the collection was modified
*/
public default boolean addAll(KEY_TYPE[] e, int length) { return addAll(e, 0, length); }
/**
* A Type-Specific Array based addAll method to reduce the amount of Wrapping
* @param e the elements that should be added
* @param offset where to start within the array
* @param length how many elements of the array should be added
* @return if the collection was modified
*/
public default boolean addAll(KEY_TYPE[] e, int offset, int length) {
if(length <= 0) return false;
SanityChecks.checkArrayCapacity(e.length, offset, length);
boolean added = false;
for(int i = 0;i<length;i++) {
if(add(e[offset+i])) added = true;
}
return added;
}
#if !TYPE_OBJECT
/**
* A Type-Specific contains function to reduce (un)boxing
* @param o the element that is checked for
* @return true if the element is found in the collection
*/
public boolean contains(KEY_TYPE o);
#endif
/**
* A Type-Specific containsAll function to reduce (un)boxing
* @param c the collection of elements that should be tested for
* @return true if all the element is found in the collection
*/
public boolean containsAll(COLLECTION KEY_GENERIC_TYPE c);
/**
* A Type-Specific containsAny function to reduce (un)boxing
* @param c the collection of elements that should be tested for
* @return true if any element was found
*/
public boolean containsAny(COLLECTION KEY_GENERIC_TYPE c);
/**
* Returns true if any element of the Collection is found in the provided collection.
* A Small Optimization function to find out of any element is present when comparing collections and not all of them.
* @param c the collection of elements that should be tested for
* @return true if any element was found.
*/
@Primitive
public boolean containsAny(Collection<?> c);
#if !TYPE_OBJECT
/**
* A Type-Specific remove function that reduces (un)boxing.
* @param o the element that should be removed
* @return true if the element was removed
* @see Collection#remove(Object)
*/
public boolean REMOVE_KEY(KEY_TYPE o);
#endif
/**
* A Type-Specific removeAll function that reduces (un)boxing.
* @param c the collection of elements that should be removed
* @return true if any element was removed
* @see Collection#removeAll(Collection)
*/
public boolean removeAll(COLLECTION KEY_GENERIC_TYPE c);
/**
* A Type-Specific removeAll function that reduces (un)boxing.
* It also notifies the remover of which exact element is going to be removed.
* @param c the collection of elements that should be removed
* @param r elements that got removed
* @return true if any element was removed
* @see Collection#removeAll(Collection)
*/
public boolean removeAll(COLLECTION KEY_GENERIC_TYPE c, CONSUMER KEY_GENERIC_TYPE r);
/**
* A Type-Specific retainAll function that reduces (un)boxing.
* @param c the collection of elements that should be kept
* @return true if any element was removed
* @see Collection#retainAll(Collection)
*/
public boolean retainAll(COLLECTION KEY_GENERIC_TYPE c);
/**
* A Type-Specific retainAll function that reduces (un)boxing.
* It also notifies the remover of which exact element is going to be removed.
* @param c the collection of elements that should be kept
* @param r elements that got removed
* @return true if any element was removed
* @see Collection#retainAll(Collection)
*/
public boolean retainAll(COLLECTION KEY_GENERIC_TYPE c, CONSUMER KEY_GENERIC_TYPE r);
/**
* A Helper function to reduce the usage of Streams and allows to collect all elements
* @param collection that the elements should be inserted to
* @param <E> the collection type
* @return the input with the desired elements
*/
default <E extends COLLECTION KEY_GENERIC_TYPE> E pour(E collection) {
collection.addAll(this);
return collection;
}
/**
* A Function that does a shallow clone of the Collection itself.
* This function is more optimized then a copy constructor since the Collection does not have to be unsorted/resorted.
* It can be compared to Cloneable but with less exception risk
* @return a Shallow Copy of the collection
* @note Wrappers and view collections will not support this feature
*/
public COLLECTION KEY_GENERIC_TYPE copy();
#if TYPE_OBJECT
/**
* A Helper function that simplifies the process of creating a new Array.
* @param action the array creation function
* @return an array containing all of the elements in this collection
* @see Collection#toArray(Object[])
*/
default KEY_TYPE[] TO_ARRAY(Int2ObjectFunction<KEY_TYPE[]> action) {
return TO_ARRAY(action.get(size()));
}
#else
/**
* A Type-Specific toArray function that delegates to {@link #TO_ARRAY(KEY_TYPE[])} with a newly created array.
* @return an array containing all of the elements in this collection
* @see Collection#toArray()
*/
public KEY_TYPE[] TO_ARRAY();
/**
* A Type-Specific toArray function that reduces (un)boxing.
* @param a array that the elements should be injected to. If null or to small a new array with the right size is created
* @return an array containing all of the elements in this collection
* @see Collection#toArray(Object[])
*/
public KEY_TYPE[] TO_ARRAY(KEY_TYPE[] a);
#if PRIMITIVES
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public default boolean removeIf(Predicate<? super CLASS_TYPE> filter) {
Objects.requireNonNull(filter);
#if TYPE_BYTE || TYPE_SHORT || TYPE_CHAR || TYPE_FLOAT
return remIf(v -> filter.test(KEY_TO_OBJ(SanityChecks.SANITY_CAST(v))));
#else
return remIf(v -> filter.test(KEY_TO_OBJ(v)));
#endif
}
/**
* A Type-Specific removeIf function to reduce (un)boxing.
* <p>Removes elements that were selected by the filter
* @see Collection#removeIf(Predicate)
* @param filter Filters the elements that should be removed
* @return true if the collection was modified
* @throws java.lang.NullPointerException if filter is null
*/
public default boolean remIf(JAVA_PREDICATE filter) {
Objects.requireNonNull(filter);
boolean removed = false;
final ITERATOR each = iterator();
while (each.hasNext()) {
if (filter.test(each.NEXT())) {
each.remove();
removed = true;
}
}
return removed;
}
#endif
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public default boolean add(CLASS_TYPE o) { return add(OBJ_TO_KEY(o)); }
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public default boolean contains(Object o) { return o != null && contains(CLASS_TO_KEY(o)); }
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public default boolean remove(Object o) { return o != null && REMOVE_KEY(CLASS_TO_KEY(o)); }
#endif
/**
* Returns a Type-Specific Iterator to reduce (un)boxing
* @return a iterator of the collection
* @see Collection#iterator()
*/
@Override
public ITERATOR KEY_GENERIC_TYPE iterator();
/**
* Creates a Wrapped Collection that is Synchronized
* @return a new Collection that is synchronized
* @see COLLECTIONS#synchronize
*/
public default COLLECTION KEY_GENERIC_TYPE synchronize() { return COLLECTIONS.synchronize(this); }
/**
* Creates a Wrapped Collection that is Synchronized
* @param mutex is the controller of the synchronization block
* @return a new Collection Wrapper that is synchronized
* @see COLLECTIONS#synchronize
*/
public default COLLECTION KEY_GENERIC_TYPE synchronize(Object mutex) { return COLLECTIONS.synchronize(this, mutex); }
/**
* Creates a Wrapped Collection that is unmodifiable
* @return a new Collection Wrapper that is unmodifiable
* @see COLLECTIONS#unmodifiable
*/
public default COLLECTION KEY_GENERIC_TYPE unmodifiable() { return COLLECTIONS.unmodifiable(this); }
#if PRIMITIVES
/**
* Returns a Java-Type-Specific Stream to reduce boxing/unboxing.
* @return a Stream of the closest java type
*/
default JAVA_STREAM primitiveStream() { return StreamSupport.NEW_STREAM(SPLIT_ITERATORS.createJavaSplititerator(this, 0), false); }
/**
* Returns a Java-Type-Specific Parallel Stream to reduce boxing/unboxing.
* @return a Stream of the closest java type
*/
default JAVA_STREAM parallelPrimitiveStream() { return StreamSupport.NEW_STREAM(SPLIT_ITERATORS.createJavaSplititerator(this, 0), true); }
#endif
/**
* A Type Specific Type Splititerator to reduce boxing/unboxing
* @return type specific splititerator
*/
@Override
default SPLIT_ITERATOR KEY_GENERIC_TYPE spliterator() { return SPLIT_ITERATORS.createSplititerator(this, 0); }
package speiger.src.collections.PACKAGE.collections;
import java.util.Collection;
#if PRIMITIVES
import java.util.Objects;
import java.util.function.JAVA_PREDICATE;
import java.util.function.Predicate;
#if SPLIT_ITERATOR_FEATURE && STREAM_FEATURE
import java.util.stream.JAVA_STREAM;
import java.util.stream.StreamSupport;
#endif
#endif
#if TYPE_OBJECT
import java.util.function.Consumer;
import java.util.function.IntFunction;
#else
import speiger.src.collections.PACKAGE.functions.CONSUMER;
#endif
#if SPLIT_ITERATOR_FEATURE
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
#endif
import speiger.src.collections.PACKAGE.utils.COLLECTIONS;
import speiger.src.collections.utils.ISizeProvider;
import speiger.src.collections.utils.SanityChecks;
/**
* A Type-Specific {@link Collection} that reduces (un)boxing
* @Type(T)
*/
public interface COLLECTION KEY_GENERIC_TYPE extends Collection<CLASS_TYPE>, ITERABLE KEY_GENERIC_TYPE, ISizeProvider
{
#if !TYPE_OBJECT
/**
* A Type-Specific add function to reduce (un)boxing
* @param o the element that should be added
* @return true if the element was added to the collection
*/
public boolean add(KEY_TYPE o);
#endif
/**
* A Type-Specific addAll function to reduce (un)boxing
* @param c the collection of elements that should be added
* @return true if elements were added into the collection
*/
public boolean addAll(COLLECTION KEY_GENERIC_TYPE c);
/**
* A Type-Specific Array based addAll method to reduce the amount of Wrapping
* @param e the elements that should be added
* @return if the collection was modified
*/
public default boolean addAll(KEY_TYPE... e) { return addAll(e, 0, e.length); }
/**
* A Type-Specific Array based addAll method to reduce the amount of Wrapping
* @param e the elements that should be added
* @param length how many elements of the array should be added
* @return if the collection was modified
*/
public default boolean addAll(KEY_TYPE[] e, int length) { return addAll(e, 0, length); }
/**
* A Type-Specific Array based addAll method to reduce the amount of Wrapping
* @param e the elements that should be added
* @param offset where to start within the array
* @param length how many elements of the array should be added
* @return if the collection was modified
*/
public default boolean addAll(KEY_TYPE[] e, int offset, int length) {
if(length <= 0) return false;
SanityChecks.checkArrayCapacity(e.length, offset, length);
boolean added = false;
for(int i = 0;i<length;i++) {
if(add(e[offset+i])) added = true;
}
return added;
}
#if !TYPE_OBJECT
/**
* A Type-Specific contains function to reduce (un)boxing
* @param o the element that is checked for
* @return true if the element is found in the collection
*/
public boolean contains(KEY_TYPE o);
#endif
/**
* A Type-Specific containsAll function to reduce (un)boxing
* @param c the collection of elements that should be tested for
* @return true if all the element is found in the collection
*/
public boolean containsAll(COLLECTION KEY_GENERIC_TYPE c);
/**
* A Type-Specific containsAny function to reduce (un)boxing
* @param c the collection of elements that should be tested for
* @return true if any element was found
*/
public boolean containsAny(COLLECTION KEY_GENERIC_TYPE c);
/**
* Returns true if any element of the Collection is found in the provided collection.
* A Small Optimization function to find out of any element is present when comparing collections and not all of them.
* @param c the collection of elements that should be tested for
* @return true if any element was found.
*/
@Primitive
public boolean containsAny(Collection<?> c);
#if !TYPE_OBJECT
/**
* A Type-Specific remove function that reduces (un)boxing.
* @param o the element that should be removed
* @return true if the element was removed
* @see Collection#remove(Object)
*/
public boolean REMOVE_KEY(KEY_TYPE o);
#endif
/**
* A Type-Specific removeAll function that reduces (un)boxing.
* @param c the collection of elements that should be removed
* @return true if any element was removed
* @see Collection#removeAll(Collection)
*/
public boolean removeAll(COLLECTION KEY_GENERIC_TYPE c);
/**
* A Type-Specific removeAll function that reduces (un)boxing.
* It also notifies the remover of which exact element is going to be removed.
* @param c the collection of elements that should be removed
* @param r elements that got removed
* @return true if any element was removed
* @see Collection#removeAll(Collection)
*/
public boolean removeAll(COLLECTION KEY_GENERIC_TYPE c, CONSUMER KEY_GENERIC_TYPE r);
/**
* A Type-Specific retainAll function that reduces (un)boxing.
* @param c the collection of elements that should be kept
* @return true if any element was removed
* @see Collection#retainAll(Collection)
*/
public boolean retainAll(COLLECTION KEY_GENERIC_TYPE c);
/**
* A Type-Specific retainAll function that reduces (un)boxing.
* It also notifies the remover of which exact element is going to be removed.
* @param c the collection of elements that should be kept
* @param r elements that got removed
* @return true if any element was removed
* @see Collection#retainAll(Collection)
*/
public boolean retainAll(COLLECTION KEY_GENERIC_TYPE c, CONSUMER KEY_GENERIC_TYPE r);
/**
* A Helper function to reduce the usage of Streams and allows to collect all elements
* @param collection that the elements should be inserted to
* @param <E> the collection type
* @return the input with the desired elements
*/
default <E extends COLLECTION KEY_GENERIC_TYPE> E pour(E collection) {
collection.addAll(this);
return collection;
}
/**
* A Function that does a shallow clone of the Collection itself.
* This function is more optimized then a copy constructor since the Collection does not have to be unsorted/resorted.
* It can be compared to Cloneable but with less exception risk
* @return a Shallow Copy of the collection
* @note Wrappers and view collections will not support this feature
*/
public COLLECTION KEY_GENERIC_TYPE copy();
#if TYPE_OBJECT
/**
* A Helper function that simplifies the process of creating a new Array.
* @param action the array creation function
* @param <E> the returning arrayType
* @return an array containing all of the elements in this collection
* @see Collection#toArray(Object[])
*/
default <E> E[] TO_ARRAY(IntFunction<E[]> action) {
return TO_ARRAY(action.apply(size()));
}
#else
/**
* A Type-Specific toArray function that delegates to {@link #TO_ARRAY(KEY_TYPE[])} with a newly created array.
* @return an array containing all of the elements in this collection
* @see Collection#toArray()
*/
public KEY_TYPE[] TO_ARRAY();
/**
* A Type-Specific toArray function that reduces (un)boxing.
* @param a array that the elements should be injected to. If null or to small a new array with the right size is created
* @return an array containing all of the elements in this collection
* @see Collection#toArray(Object[])
*/
public KEY_TYPE[] TO_ARRAY(KEY_TYPE[] a);
#if PRIMITIVES
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public default boolean removeIf(Predicate<? super CLASS_TYPE> filter) {
Objects.requireNonNull(filter);
#if TYPE_BYTE || TYPE_SHORT || TYPE_CHAR || TYPE_FLOAT
return remIf(v -> filter.test(KEY_TO_OBJ(SanityChecks.SANITY_CAST(v))));
#else
return remIf(v -> filter.test(KEY_TO_OBJ(v)));
#endif
}
/**
* A Type-Specific removeIf function to reduce (un)boxing.
* <p>Removes elements that were selected by the filter
* @see Collection#removeIf(Predicate)
* @param filter Filters the elements that should be removed
* @return true if the collection was modified
* @throws java.lang.NullPointerException if filter is null
*/
public default boolean remIf(JAVA_PREDICATE filter) {
Objects.requireNonNull(filter);
boolean removed = false;
final ITERATOR each = iterator();
while (each.hasNext()) {
if (filter.test(each.NEXT())) {
each.remove();
removed = true;
}
}
return removed;
}
#endif
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public default boolean add(CLASS_TYPE o) { return add(OBJ_TO_KEY(o)); }
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public default boolean contains(Object o) { return o != null && contains(CLASS_TO_KEY(o)); }
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
public default boolean remove(Object o) { return o != null && REMOVE_KEY(CLASS_TO_KEY(o)); }
#endif
/**
* Returns a Type-Specific Iterator to reduce (un)boxing
* @return a iterator of the collection
* @see Collection#iterator()
*/
@Override
public ITERATOR KEY_GENERIC_TYPE iterator();
/**
* Creates a Wrapped Collection that is Synchronized
* @return a new Collection that is synchronized
* @see COLLECTIONS#synchronize
*/
public default COLLECTION KEY_GENERIC_TYPE synchronize() { return COLLECTIONS.synchronize(this); }
/**
* Creates a Wrapped Collection that is Synchronized
* @param mutex is the controller of the synchronization block
* @return a new Collection Wrapper that is synchronized
* @see COLLECTIONS#synchronize
*/
public default COLLECTION KEY_GENERIC_TYPE synchronize(Object mutex) { return COLLECTIONS.synchronize(this, mutex); }
/**
* Creates a Wrapped Collection that is unmodifiable
* @return a new Collection Wrapper that is unmodifiable
* @see COLLECTIONS#unmodifiable
*/
public default COLLECTION KEY_GENERIC_TYPE unmodifiable() { return COLLECTIONS.unmodifiable(this); }
#if SPLIT_ITERATOR_FEATURE
#if PRIMITIVES
/**
* Returns a Java-Type-Specific Stream to reduce boxing/unboxing.
* @return a Stream of the closest java type
*/
default JAVA_STREAM primitiveStream() { return StreamSupport.NEW_STREAM(SPLIT_ITERATORS.createJavaSplititerator(this, 0), false); }
/**
* Returns a Java-Type-Specific Parallel Stream to reduce boxing/unboxing.
* @return a Stream of the closest java type
*/
default JAVA_STREAM parallelPrimitiveStream() { return StreamSupport.NEW_STREAM(SPLIT_ITERATORS.createJavaSplititerator(this, 0), true); }
#endif
#if STREAM_FEATURE
/**
* A Type Specific Type Splititerator to reduce boxing/unboxing
* @return type specific splititerator
*/
@Override
default SPLIT_ITERATOR KEY_GENERIC_TYPE spliterator() { return SPLIT_ITERATORS.createSplititerator(this, 0); }
#endif
#endif
}
@@ -1,331 +1,496 @@
package speiger.src.collections.PACKAGE.collections;
import java.util.Objects;
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;
import speiger.src.collections.objects.functions.consumer.BI_FROM_OBJECT_CONSUMER;
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
import speiger.src.collections.PACKAGE.lists.LIST;
import speiger.src.collections.PACKAGE.lists.ARRAY_LIST;
#if !TYPE_BOOLEAN
import speiger.src.collections.PACKAGE.sets.SET;
import speiger.src.collections.PACKAGE.sets.LINKED_HASH_SET;
#endif
import speiger.src.collections.PACKAGE.utils.ASYNC_BUILDER;
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
import speiger.src.collections.PACKAGE.utils.ITERABLES;
import speiger.src.collections.PACKAGE.utils.ITERATORS;
/**
* A Type-Specific {@link Iterable} that reduces (un)boxing
* @Type(T)
*/
public interface ITERABLE KEY_GENERIC_TYPE extends Iterable<CLASS_TYPE>
{
/**
* Returns an iterator over elements of type {@code T}.
*
* @return an Iterator.
*/
@Override
ITERATOR KEY_GENERIC_TYPE iterator();
#if !TYPE_OBJECT
/**
* A Type Specific foreach function that reduces (un)boxing
*
* @implSpec
* <p>The default implementation behaves as if:
* <pre>{@code
* iterator().forEachRemaining(action);
* }</pre>
*
* @param action The action to be performed for each element
* @throws NullPointerException if the specified action is null
* @see Iterable#forEach(Consumer)
*/
default void forEach(CONSUMER action) {
Objects.requireNonNull(action);
iterator().forEachRemaining(action);
}
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Deprecated
@Override
default void forEach(Consumer<? super CLASS_TYPE> action) {
Objects.requireNonNull(action);
iterator().forEachRemaining(action);
}
#endif
/**
* Helper function to reduce Lambda usage and allow for more method references, since these are faster/cleaner.
* @param input the object that should be included
* @param action The action to be performed for each element
* @param <E> the generic type of the Object
* @throws java.lang.NullPointerException if the specified action is null
*/
default <E> void forEach(E input, BI_FROM_OBJECT_CONSUMER KSK_GENERIC_TYPE<E> action) {
Objects.requireNonNull(action);
iterator().forEachRemaining(input, action);
}
/**
* A Type Specific Type Splititerator to reduce boxing/unboxing
* @return type specific splititerator
*/
@Override
default SPLIT_ITERATOR KEY_GENERIC_TYPE spliterator() { return SPLIT_ITERATORS.createUnknownSplititerator(iterator(), 0); }
/**
* Creates a Async Builder for moving work of the thread.
* It is not designed to split the work to multithreaded work, so using this keep it singlethreaded, but it allows to be moved to another thread.
* @see ASYNC_BUILDER
* @return a AsyncBuilder
*/
default ASYNC_BUILDER KEY_GENERIC_TYPE asAsync() {
return new ASYNC_BUILDERBRACES(this);
}
/**
* A Helper function to reduce the usage of Streams and allows to convert a Iterable to something else.
* @param mapper the mapping function
* @param <E> The return type.
* @return a new Iterable that returns the desired result
*/
default <E> ObjectIterable<E> map(TO_OBJECT_FUNCTION KKS_GENERIC_TYPE<E> mapper) {
return ITERABLES.map(this, mapper);
}
/**
* A Helper function to reduce the usage of Streams and allows to convert a Iterable to something else.
* @param mapper the flatMapping function
* @param <V> The return type supplier.
* @param <E> The return type.
* @return a new Iterable that returns the desired result
*/
default <E, V extends Iterable<E>> ObjectIterable<E> flatMap(TO_OBJECT_FUNCTION KKS_GENERIC_TYPE<V> mapper) {
return ITERABLES.flatMap(this, mapper);
}
/**
* A Helper function to reduce the usage of Streams and allows to convert a Iterable to something else.
* @param mapper the flatMapping function
* @param <E> The return type.
* @return a new Iterable that returns the desired result
*/
default <E> ObjectIterable<E> arrayflatMap(TO_OBJECT_FUNCTION KKS_GENERIC_TYPE<E[]> mapper) {
return ITERABLES.arrayFlatMap(this, mapper);
}
/**
* A Helper function to reduce the usage of Streams and allows to filter out unwanted elements
* @param filter the elements that should be kept.
* @return a Iterable that filtered out all unwanted elements
*/
default ITERABLE KEY_GENERIC_TYPE filter(PREDICATE KEY_GENERIC_TYPE filter) {
return ITERABLES.filter(this, filter);
}
/**
* A Helper function to reduce the usage of Streams and allows to filter out duplicated elements
* @return a Iterable that filtered out all duplicated elements
*/
default ITERABLE KEY_GENERIC_TYPE distinct() {
return ITERABLES.distinct(this);
}
/**
* A Helper function to reduce the usage of Streams and allows to limit the amount of elements
* @param limit the amount of elements it should be limited to
* @return a Iterable that is limited in length
*/
default ITERABLE KEY_GENERIC_TYPE limit(long limit) {
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
* @return a Peeked Iterable
*/
default ITERABLE KEY_GENERIC_TYPE peek(CONSUMER KEY_GENERIC_TYPE action) {
return ITERABLES.peek(this, action);
}
/**
* A Helper function to reduce the usage of Streams and allows to collect all elements
* @param collection that the elements should be inserted to
* @param <E> the collection type
* @return the input with the desired elements
*/
default <E extends COLLECTION KEY_GENERIC_TYPE> E pour(E collection) {
ITERATORS.pour(iterator(), collection);
return collection;
}
/**
* A Helper function that reduces the usage of streams and allows to collect all elements as a ArrayList
* @return a new ArrayList of all elements
*/
default LIST KEY_GENERIC_TYPE pourAsList() {
return pour(new ARRAY_LISTBRACES());
}
#if !TYPE_BOOLEAN
/**
* A Helper function that reduces the usage of streams and allows to collect all elements as a LinkedHashSet
* @return a new LinkedHashSet of all elements
*/
default SET KEY_GENERIC_TYPE pourAsSet() {
return pour(new LINKED_HASH_SETBRACES());
}
#endif
/**
* Helper function to reduce stream usage that allows to filter for any matches.
* @param filter that should be applied
* @return true if any matches were found
*/
default boolean matchesAny(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(filter.TEST_VALUE(iter.NEXT())) return true;
}
return false;
}
/**
* Helper function to reduce stream usage that allows to filter for no matches.
* @param filter that should be applied
* @return true if no matches were found
*/
default boolean matchesNone(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(filter.TEST_VALUE(iter.NEXT())) return false;
}
return true;
}
/**
* Helper function to reduce stream usage that allows to filter for all matches.
* @param filter that should be applied
* @return true if all matches.
*/
default boolean matchesAll(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(!filter.TEST_VALUE(iter.NEXT())) return false;
}
return true;
}
/**
* Helper function to reduce stream usage that allows to filter for the first match.
* @param filter that should be applied
* @return the found value or the null equivalent variant.
*/
default KEY_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
KEY_TYPE entry = iter.NEXT();
if(filter.TEST_VALUE(entry)) return entry;
}
return EMPTY_VALUE;
}
#if !TYPE_OBJECT
/**
* Performs a <a href="package-summary.html#Reduction">reduction</a> on the
* elements of this Iterable
* @param operator the operation that should be applied
* @param identity the start value
* @return the reduction result, returns identity if nothing was found
*/
default KEY_TYPE reduce(KEY_TYPE identity, UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = identity;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
state = operator.APPLY_VALUE(state, iter.NEXT());
}
return state;
}
#else
/**
* Performs a <a href="package-summary.html#Reduction">reduction</a> on the
* elements of this Iterable
* @param operator the operation that should be applied
* @param identity the start value
* @Type(E)
* @return the reduction result, returns identity if nothing was found
*/
default <KEY_SPECIAL_TYPE> KEY_SPECIAL_TYPE reduce(KEY_SPECIAL_TYPE identity, BiFunction<KEY_SPECIAL_TYPE, KEY_TYPE, KEY_SPECIAL_TYPE> operator) {
Objects.requireNonNull(operator);
KEY_SPECIAL_TYPE state = identity;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
state = operator.APPLY_VALUE(state, iter.NEXT());
}
return state;
}
#endif
/**
* Performs a <a href="package-summary.html#Reduction">reduction</a> on the
* elements of this Iterable
* @param operator the operation that should be applied
* @return the reduction result, returns null value if nothing was found
*/
default KEY_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = EMPTY_VALUE;
boolean empty = true;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(empty) {
empty = false;
state = iter.NEXT();
continue;
}
state = operator.APPLY_VALUE(state, iter.NEXT());
}
return state;
}
/**
* Helper function to reduce stream usage that allows to count the valid elements.
* @param filter that should be applied
* @return the amount of Valid Elements
*/
default int count(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
int result = 0;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(filter.TEST_VALUE(iter.NEXT())) result++;
}
return result;
}
package speiger.src.collections.PACKAGE.collections;
import java.util.Objects;
import java.util.function.Consumer;
#if JDK_FUNCTION
import java.util.function.PREDICATE;
#endif
#if JDK_TYPE
import java.util.OPTIONAL;
#endif
#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.function.IntFunction;
import java.util.Comparator;
#if BOOLEAN_COLLECTION_MODULE
import speiger.src.collections.booleans.collections.BooleanIterable;
#endif
#iterate
#argument OUTPUT_ITERABLE ByteIterable ShortIterable IntIterable LongIterable FloatIterable DoubleIterable
#argument MAPPER ToByteFunction ToShortFunction ToIntFunction ToLongFunction ToFloatFunction ToDoubleFunction
#argument PACKAGE bytes shorts ints longs floats doubles
#argument FILTER_TYPE BYTE_COLLECTION_MODULE SHORT_COLLECTION_MODULE INT_COLLECTION_MODULE LONG_COLLECTION_MODULE FLOAT_COLLECTION_MODULE DOUBLE_COLLECTION_MODULE
#if FILTER_TYPE
import speiger.src.collections.objects.functions.function.MAPPER;
import speiger.src.collections.PACKAGE.collections.OUTPUT_ITERABLE;
#endif
#enditerate
#endif
#if !JDK_TYPE
import speiger.src.collections.PACKAGE.functions.OPTIONAL;
#endif
import speiger.src.collections.PACKAGE.functions.function.TO_OBJECT_FUNCTION;
import speiger.src.collections.ints.functions.consumer.BI_FROM_INT_CONSUMER;
import speiger.src.collections.objects.functions.consumer.BI_FROM_OBJECT_CONSUMER;
#if !JDK_FUNCTION
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
#endif
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
#if ARRAY_LIST_FEATURE || LINKED_LIST_FEATURE
import speiger.src.collections.PACKAGE.lists.LIST;
#if ARRAY_LIST_FEATURE
import speiger.src.collections.PACKAGE.lists.ARRAY_LIST;
#else
import speiger.src.collections.PACKAGE.lists.LINKED_LIST;
#endif
#endif
#if SET_MODULE && !TYPE_BOOLEAN
#if LINKED_SET_FEATURE || LINKED_CUSTOM_SET_FEATURE || SET_FEATURE || CUSTOM_SET_FEATURE || RB_TREE_SET_FEATURE || AVL_TREE_SET_FEATURE || ARRAY_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.SET;
#if LINKED_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.LINKED_HASH_SET;
#else if LINKED_CUSTOM_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.LINKED_CUSTOM_HASH_SET;
#else if SET_FEATURE
import speiger.src.collections.PACKAGE.sets.HASH_SET;
#else if CUSTOM_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.CUSTOM_HASH_SET;
#else if RB_TREE_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.RB_TREE_SET;
#else if AVL_TREE_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.AVL_TREE_SET;
#else if ARRAY_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.ARRAY_SET;
#endif
#endif
#endif
import speiger.src.collections.PACKAGE.utils.ARRAYS;
#if ASYNC_MODULE
import speiger.src.collections.PACKAGE.utils.ASYNC_BUILDER;
#endif
#if SPLIT_ITERATOR_FEATURE
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
#endif
import speiger.src.collections.PACKAGE.utils.ITERABLES;
import speiger.src.collections.PACKAGE.utils.ITERATORS;
#if !LINKED_HASH_SET_FEATURE && LINKED_CUSTOM_HASH_SET_FEATURE
import speiger.src.collections.PACKAGE.utils.STRATEGY;
#endif
import speiger.src.collections.utils.ISizeProvider;
/**
* A Type-Specific {@link Iterable} that reduces (un)boxing
* @Type(T)
*/
public interface ITERABLE KEY_GENERIC_TYPE extends Iterable<CLASS_TYPE>
{
/**
* Returns an iterator over elements of type {@code T}.
*
* @return an Iterator.
*/
@Override
ITERATOR KEY_GENERIC_TYPE iterator();
#if !TYPE_OBJECT
/**
* A Type Specific foreach function that reduces (un)boxing
*
* @implSpec
* <p>The default implementation behaves as if:
* <pre>{@code
* iterator().forEachRemaining(action);
* }</pre>
*
* @param action The action to be performed for each element
* @throws NullPointerException if the specified action is null
* @see Iterable#forEach(Consumer)
*/
default void forEach(CONSUMER action) {
Objects.requireNonNull(action);
iterator().forEachRemaining(action);
}
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Deprecated
@Override
default void forEach(Consumer<? super CLASS_TYPE> action) {
Objects.requireNonNull(action);
iterator().forEachRemaining(action);
}
#endif
/**
* A Indexed forEach implementation that allows you to keep track of how many elements were already iterated over.
* @param action The action to be performed for each element
* @throws java.lang.NullPointerException if the specified action is null
*/
public default void forEachIndexed(BI_FROM_INT_CONSUMER KEY_GENERIC_TYPE action) {
Objects.requireNonNull(action);
int index = 0;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();action.accept(index++, iter.NEXT()));
}
/**
* Helper function to reduce Lambda usage and allow for more method references, since these are faster/cleaner.
* @param input the object that should be included
* @param action The action to be performed for each element
* @param <E> the generic type of the Object
* @throws java.lang.NullPointerException if the specified action is null
*/
default <E> void forEach(E input, BI_FROM_OBJECT_CONSUMER KSK_GENERIC_TYPE<E> action) {
Objects.requireNonNull(action);
iterator().forEachRemaining(input, action);
}
#if SPLIT_ITERATOR_FEATURE
/**
* A Type Specific Type Splititerator to reduce boxing/unboxing
* @return type specific splititerator
*/
@Override
default SPLIT_ITERATOR KEY_GENERIC_TYPE spliterator() { return SPLIT_ITERATORS.createUnknownSplititerator(iterator(), 0); }
#endif
#if ASYNC_MODULE
/**
* Creates a Async Builder for moving work of the thread.
* It is not designed to split the work to multithreaded work, so using this keep it singlethreaded, but it allows to be moved to another thread.
* @see ASYNC_BUILDER
* @return a AsyncBuilder
*/
default ASYNC_BUILDER KEY_GENERIC_TYPE asAsync() {
return new ASYNC_BUILDERBRACES(this);
}
#endif
/**
* A Helper function to reduce the usage of Streams and allows to convert a Iterable to something else.
* @param mapper the mapping function
* @param <E> The return type.
* @return a new Iterable that returns the desired result
*/
default <E> ObjectIterable<E> map(TO_OBJECT_FUNCTION KKS_GENERIC_TYPE<E> mapper) {
return ITERABLES.map(this, mapper);
}
#if TYPE_OBJECT
#iterate
#argument OUTPUT_ITERABLE BooleanIterable ByteIterable ShortIterable IntIterable LongIterable FloatIterable DoubleIterable
#argument MAPPER Predicate ToByteFunction ToShortFunction ToIntFunction ToLongFunction ToFloatFunction ToDoubleFunction
#argument DATA_TYPE Boolean Byte Short Int Long Float Double
#argument FILTER_TYPE BOOLEAN_COLLECTION_MODULE BYTE_COLLECTION_MODULE SHORT_COLLECTION_MODULE INT_COLLECTION_MODULE LONG_COLLECTION_MODULE FLOAT_COLLECTION_MODULE DOUBLE_COLLECTION_MODULE
#if FILTER_TYPE
/**
* A Helper function to reduce the usage of Streams and allows to convert a Iterable to something else.
* @param mapper the mapping function
* @return a new Iterable that returns the desired result
*/
default OUTPUT_ITERABLE mapToDATA_TYPE(MAPPER<T> mapper) {
return ITERABLES.mapToDATA_TYPE(this, mapper);
}
#endif
#enditerate
#endif
/**
* A Helper function to reduce the usage of Streams and allows to convert a Iterable to something else.
* @param mapper the flatMapping function
* @param <V> The return type supplier.
* @param <E> The return type.
* @return a new Iterable that returns the desired result
* @note does not support TO_ARRAY optimizations.
*/
default <E, V extends Iterable<E>> ObjectIterable<E> flatMap(TO_OBJECT_FUNCTION KKS_GENERIC_TYPE<V> mapper) {
return ITERABLES.flatMap(this, mapper);
}
/**
* A Helper function to reduce the usage of Streams and allows to convert a Iterable to something else.
* @param mapper the flatMapping function
* @param <E> The return type.
* @return a new Iterable that returns the desired result
* @note does not support TO_ARRAY optimizations.
*/
default <E> ObjectIterable<E> arrayflatMap(TO_OBJECT_FUNCTION KKS_GENERIC_TYPE<E[]> mapper) {
return ITERABLES.arrayFlatMap(this, mapper);
}
/**
* A Helper function to reduce the usage of Streams and allows to filter out unwanted elements
* @param filter the elements that should be kept.
* @return a Iterable that filtered out all unwanted elements
* @note does not support TO_ARRAY optimizations.
*/
default ITERABLE KEY_GENERIC_TYPE filter(PREDICATE KEY_GENERIC_TYPE filter) {
return ITERABLES.filter(this, filter);
}
/**
* A Helper function to reduce the usage of Streams and allows to filter out duplicated elements
* @return a Iterable that filtered out all duplicated elements
* @note does not support TO_ARRAY optimizations.
*/
default ITERABLE KEY_GENERIC_TYPE distinct() {
return ITERABLES.distinct(this);
}
/**
* A Helper function to reduce the usage of Streams and allows to repeat elements a desired amount of times
* @param repeats how many times the elements should be repeated
* @return a Iterable that is repeating multiple times
*/
default ITERABLE KEY_GENERIC_TYPE repeat(int repeats) {
return ITERABLES.repeat(this, repeats);
}
/**
* A Helper function to reduce the usage of Streams and allows to limit the amount of elements
* @param limit the amount of elements it should be limited to
* @return a Iterable that is limited in length
*/
default ITERABLE KEY_GENERIC_TYPE limit(long limit) {
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
* @return a Peeked Iterable
*/
default ITERABLE KEY_GENERIC_TYPE peek(CONSUMER KEY_GENERIC_TYPE action) {
return ITERABLES.peek(this, action);
}
/**
* A Helper function to reduce the usage of Streams and allows to collect all elements
* @param collection that the elements should be inserted to
* @param <E> the collection type
* @return the input with the desired elements
*/
default <E extends COLLECTION KEY_GENERIC_TYPE> E pour(E collection) {
ITERATORS.pour(iterator(), collection);
return collection;
}
#if ARRAY_LIST_FEATURE || LINKED_LIST_FEATURE
/**
* A Helper function that reduces the usage of streams and allows to collect all elements as a ArrayList
* @return a new ArrayList of all elements
*/
default LIST KEY_GENERIC_TYPE pourAsList() {
#if ARRAY_LIST_FEATURE
return pour(new ARRAY_LISTBRACES());
#else
return pour(new LINKED_LISTBRACES());
#endif
}
#endif
#if !TYPE_BOOLEAN && SET_MODULE
#if LINKED_SET_FEATURE || LINKED_CUSTOM_SET_FEATURE || SET_FEATURE || CUSTOM_SET_FEATURE || RB_TREE_SET_FEATURE || AVL_TREE_SET_FEATURE || ARRAY_SET_FEATURE
/**
* A Helper function that reduces the usage of streams and allows to collect all elements as a LinkedHashSet
* @return a new LinkedHashSet of all elements
*/
default SET KEY_GENERIC_TYPE pourAsSet() {
#if LINKED_SET_FEATURE
return pour(new LINKED_HASH_SETBRACES());
#else if LINKED_CUSTOM_SET_FEATURE
return pour(new LINKED_CUSTOM_HASH_SETBRACES(STRATEGY.normalStrategy()));
#else if SET_FEATURE
return pour(new HASH_SETBRACES());
#else if CUSTOM_SET_FEATURE
return pour(new CUSTOM_HASH_SETBRACES(STRATEGY.normalStrategy()));
#else if RB_TREE_SET_FEATURE
return pour(new RB_Tree_SETBRACES());
#else if AVL_TREE_SET_FEATURE
return pour(new AVL_Tree_SETBRACES());
#else if ARRAY_SET_FEATURE
return pour(new ARRAY_SETBRACES());
#endif
}
#endif
#endif
#if TYPE_OBJECT
/**
* A Helper function that reduces the usage of streams and allows to collect all elements as a Array
* @param action is the creator function of said Array to ensure type is kept.
* @param <E> the returning arrayType
* @return a new Array of all elements
*/
default <E> E[] TO_ARRAY(IntFunction<E[]> action) {
ISizeProvider prov = ISizeProvider.of(this);
if(prov != null) {
int size = prov.size();
if(size >= 0) {
E[] array = action.apply(size);
ITERATORS.unwrap(array, iterator());
return array;
}
}
return ARRAYS.pour(iterator(), action);
}
#else
/**
* A Helper function that reduces the usage of streams and allows to collect all elements as a Array
* @return a new Array of all elements
*/
default KEY_TYPE[] TO_ARRAY() {
ISizeProvider prov = ISizeProvider.of(this);
if(prov != null) {
int size = prov.size();
if(size >= 0) {
KEY_TYPE[] array = NEW_KEY_ARRAY(size);
ITERATORS.unwrap(array, iterator());
return array;
}
}
return ARRAYS.pour(iterator());
}
#endif
/**
* Helper function to reduce stream usage that allows to filter for any matches.
* @param filter that should be applied
* @return true if any matches were found
*/
default boolean matchesAny(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(filter.test(iter.NEXT())) return true;
}
return false;
}
/**
* Helper function to reduce stream usage that allows to filter for no matches.
* @param filter that should be applied
* @return true if no matches were found
*/
default boolean matchesNone(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(filter.test(iter.NEXT())) return false;
}
return true;
}
/**
* Helper function to reduce stream usage that allows to filter for all matches.
* @param filter that should be applied
* @return true if all matches.
*/
default boolean matchesAll(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(!filter.test(iter.NEXT())) return false;
}
return true;
}
/**
* Helper function to reduce stream usage that allows to filter for the first match.
* @param filter that should be applied
* @return the found value or the null equivalent variant.
*/
default OPTIONAL KEY_GENERIC_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
KEY_TYPE entry = iter.NEXT();
if(filter.test(entry)) return OPTIONAL.GET_OPTIONAL(entry);
}
return OPTIONAL.empty();
}
#if !TYPE_OBJECT
/**
* Performs a <a href="package-summary.html#Reduction">reduction</a> on the
* elements of this Iterable
* @param operator the operation that should be applied
* @param identity the start value
* @return the reduction result, returns identity if nothing was found
*/
default KEY_TYPE reduce(KEY_TYPE identity, UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = identity;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
state = operator.APPLY_VALUE(state, iter.NEXT());
}
return state;
}
#else
/**
* Performs a <a href="package-summary.html#Reduction">reduction</a> on the
* elements of this Iterable
* @param operator the operation that should be applied
* @param identity the start value
* @Type(E)
* @return the reduction result, returns identity if nothing was found
*/
default <KEY_SPECIAL_TYPE> KEY_SPECIAL_TYPE reduce(KEY_SPECIAL_TYPE identity, BiFunction<KEY_SPECIAL_TYPE, KEY_TYPE, KEY_SPECIAL_TYPE> operator) {
Objects.requireNonNull(operator);
KEY_SPECIAL_TYPE state = identity;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
state = operator.APPLY_VALUE(state, iter.NEXT());
}
return state;
}
#endif
/**
* Performs a <a href="package-summary.html#Reduction">reduction</a> on the
* elements of this Iterable
* @param operator the operation that should be applied
* @return the reduction result, returns null value if nothing was found
*/
default OPTIONAL KEY_GENERIC_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = EMPTY_VALUE;
boolean empty = true;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(empty) {
empty = false;
state = iter.NEXT();
continue;
}
state = operator.APPLY_VALUE(state, iter.NEXT());
}
return empty ? OPTIONAL.empty() : OPTIONAL.GET_OPTIONAL(state);
}
/**
* Helper function to reduce stream usage that allows to count the valid elements.
* @param filter that should be applied
* @return the amount of Valid Elements
*/
default int count(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
int result = 0;
for(ITERATOR KEY_GENERIC_TYPE iter = iterator();iter.hasNext();) {
if(filter.test(iter.NEXT())) result++;
}
return result;
}
}
@@ -0,0 +1,83 @@
package speiger.src.collections.PACKAGE.collections;
#if JAVA_VERSION>=21
import java.util.SequencedCollection;
public interface ORDERED_COLLECTION KEY_GENERIC_TYPE extends COLLECTION KEY_GENERIC_TYPE, SequencedCollection<CLASS_TYPE> {
#else
public interface ORDERED_COLLECTION KEY_GENERIC_TYPE extends COLLECTION KEY_GENERIC_TYPE {
#endif
@Java21
ORDERED_COLLECTION KEY_GENERIC_TYPE reversed();
/**
* A method to add an element to the start of a collection
* @param e that should be added at the start.
*/
public void addFirst(KEY_TYPE e);
/**
* A method to add an element to the end of a collection
* @param e that should be added at the end.
*/
public void addLast(KEY_TYPE e);
/**
* A method to get the first element in the collection
* @return first element in the collection
*/
public KEY_TYPE GET_FIRST_KEY();
/**
* A method to get and remove the first element in the collection
* @return first element in the collection
*/
public KEY_TYPE REMOVE_FIRST_KEY();
/**
* A method to get the last element in the collection
* @return last element in the collection
*/
public KEY_TYPE GET_LAST_KEY();
/**
* A method to get and remove the last element in the collection
* @return last element in the collection
*/
public KEY_TYPE REMOVE_LAST_KEY();
#if JAVA_VERSION>=21 && !TYPE_OBJECT
@Override
@Deprecated
default void addFirst(CLASS_TYPE e) {
addFirst(OBJ_TO_KEY(e));
}
@Override
@Deprecated
default void addLast(CLASS_TYPE e) {
addLast(OBJ_TO_KEY(e));
}
@Override
@Deprecated
default CLASS_TYPE getFirst() {
return KEY_TO_OBJ(GET_FIRST_KEY());
}
@Override
@Deprecated
default CLASS_TYPE getLast() {
return KEY_TO_OBJ(GET_LAST_KEY());
}
@Override
@Deprecated
default CLASS_TYPE removeFirst() {
return KEY_TO_OBJ(REMOVE_FIRST_KEY());
}
@Override
@Deprecated
default CLASS_TYPE removeLast() {
return KEY_TO_OBJ(REMOVE_LAST_KEY());
}
#endif
}
@@ -1,5 +1,7 @@
package speiger.src.collections.PACKAGE.collections;
import java.util.NoSuchElementException;
import speiger.src.collections.utils.Stack;
/**
@@ -14,6 +16,14 @@ public interface STACK
*/
public void push(KEY_TYPE e);
/**
* Helper function that pushes the top element on top of the stack again.
* @throws NoSuchElementException if the stack is empty
*/
public default void pushTop() {
push(top());
}
/**
* Removes the Object on top of the stack.
* @return the element that is on top of the stack
@@ -59,4 +69,19 @@ public interface STACK
public default boolean isEmpty() {
return size() == 0;
}
/**
* A method to drop the contents of the Stack without clearing the stack
* @Type(E)
* @return the contents of the stack into a seperate array.
*/
public default GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY() { return TO_ARRAY(NEW_SPECIAL_KEY_ARRAY(size())); }
/**
* A method to drop the contents of the Stack without clearing the stack
* @param input where the elements should be inserted to. If it does not fit then it creates a new appropiatly created array
* @Type(E)
* @return the contents of the stack into a seperate array.
* @note if the Type is generic then a Object Array is created instead of a Type Array
*/
public GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY(KEY_SPECIAL_TYPE[] input);
}
@@ -1,70 +1,70 @@
package speiger.src.collections.PACKAGE.functions;
import java.util.Comparator;
import java.util.Objects;
/**
* Type-Specific Class for Comparator to reduce (un)boxing
*/
public interface COMPARATOR extends Comparator<CLASS_TYPE>
{
/**
* Type-Specific compare function to reduce (un)boxing
* @param o1 the first object to be compared.
* @param o2 the second object to be compared.
* @return a negative integer, zero, or a positive integer as the first argument is less than, equal to, or greater than the second.
* @see Comparator#compare(Object, Object)
*/
int compare(KEY_TYPE o1, KEY_TYPE o2);
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
default int compare(CLASS_TYPE o1, CLASS_TYPE o2) {
return compare(OBJ_TO_KEY(o1), OBJ_TO_KEY(o2));
}
/**
* A Wrapper function to convert a Non-Type-Specific Comparator to a Type-Specific-Comparator
* @param c comparator to convert
* @return the wrapper of the comparator
* @throws NullPointerException if the comparator is null
*/
public static COMPARATOR of(Comparator<CLASS_TYPE> c) {
Objects.requireNonNull(c);
return (K, V) -> c.compare(KEY_TO_OBJ(K), KEY_TO_OBJ(V));
}
@Override
public default COMPARATOR reversed() {
return new Reversed(this);
}
/**
* A Type Specific Reversed Comparator to reduce boxing/unboxing
*/
static class Reversed implements COMPARATOR
{
COMPARATOR original;
/**
* default constructor
* @param original that is going to be reversed
*/
public Reversed(COMPARATOR original) {
this.original = original;
}
public int compare(KEY_TYPE o1, KEY_TYPE o2) {
return original.compare(o2, o1);
}
@Override
public COMPARATOR reversed() {
return original;
}
}
package speiger.src.collections.PACKAGE.functions;
import java.util.Comparator;
import java.util.Objects;
/**
* Type-Specific Class for Comparator to reduce (un)boxing
*/
public interface COMPARATOR extends Comparator<CLASS_TYPE>
{
/**
* Type-Specific compare function to reduce (un)boxing
* @param o1 the first object to be compared.
* @param o2 the second object to be compared.
* @return a negative integer, zero, or a positive integer as the first argument is less than, equal to, or greater than the second.
* @see Comparator#compare(Object, Object)
*/
int compare(KEY_TYPE o1, KEY_TYPE o2);
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
default int compare(CLASS_TYPE o1, CLASS_TYPE o2) {
return compare(OBJ_TO_KEY(o1), OBJ_TO_KEY(o2));
}
/**
* A Wrapper function to convert a Non-Type-Specific Comparator to a Type-Specific-Comparator
* @param c comparator to convert
* @return the wrapper of the comparator
* @throws NullPointerException if the comparator is null
*/
public static COMPARATOR of(Comparator<CLASS_TYPE> c) {
Objects.requireNonNull(c);
return (K, V) -> c.compare(KEY_TO_OBJ(K), KEY_TO_OBJ(V));
}
@Override
public default COMPARATOR reversed() {
return new Reversed(this);
}
/**
* A Type Specific Reversed Comparator to reduce boxing/unboxing
*/
static class Reversed implements COMPARATOR
{
COMPARATOR original;
/**
* default constructor
* @param original that is going to be reversed
*/
public Reversed(COMPARATOR original) {
this.original = original;
}
public int compare(KEY_TYPE o1, KEY_TYPE o2) {
return original.compare(o2, o1);
}
@Override
public COMPARATOR reversed() {
return original;
}
}
}
@@ -0,0 +1,89 @@
package speiger.src.collections.PACKAGE.functions;
import java.util.NoSuchElementException;
import java.util.function.Supplier;
public final class OPTIONAL KEY_GENERIC_TYPE {
private static final OPTIONAL NO_GENERIC_TYPE EMPTY = new OPTIONALBRACES();
private final boolean isPresent;
private final KEY_TYPE value;
private OPTIONAL() {
this.isPresent = false;
this.value = EMPTY_VALUE;
}
private OPTIONAL(KEY_TYPE value) {
this.isPresent = true;
this.value = value;
}
public static OPTIONAL KEY_GENERIC_TYPE empty() {
return EMPTY;
}
public static OPTIONAL KEY_GENERIC_TYPE of(KEY_TYPE value) {
return new OPTIONALBRACES(value);
}
public KEY_TYPE SUPPLY_GET() {
if(!isPresent) throw new NoSuchElementException("No value present");
return value;
}
public boolean isPresent() {
return isPresent;
}
public boolean isEmpty() {
return !isPresent;
}
public void ifPresent(CONSUMER KEY_GENERIC_TYPE consumer) {
if(isPresent) consumer.accept(value);
}
public void ifPresentOrElse(CONSUMER KEY_GENERIC_TYPE action, Runnable emptyAction) {
if (isPresent) action.accept(value);
else emptyAction.run();
}
public KEY_TYPE orElse(KEY_TYPE other) {
return isPresent ? value : other;
}
public KEY_TYPE orElseGet(SUPPLIER KEY_GENERIC_TYPE other) {
return isPresent ? value : other.SUPPLY_GET();
}
public KEY_TYPE orElseThrow() {
if (!isPresent) throw new NoSuchElementException("No value present");
return value;
}
public <X extends Throwable> KEY_TYPE orElseThrow(Supplier<? extends X> exceptionSupplier) throws X {
if(isPresent) return value;
else throw exceptionSupplier.get();
}
@Override
public boolean equals(Object obj) {
if(obj == this) return true;
if(obj instanceof OPTIONAL) {
OPTIONAL KEY_GENERIC_TYPE other = (OPTIONAL KEY_GENERIC_TYPE)obj;
return (isPresent && other.isPresent ? KEY_EQUALS(value, other.value) : isPresent == other.isPresent);
}
return false;
}
@Override
public int hashCode() {
return isPresent ? KEY_TO_HASH(value) : 0;
}
@Override
public String toString() {
return isPresent ? "OPTIONAL["+value+"]" : "OPTIONAL.empty";
}
}
@@ -1,26 +1,19 @@
package speiger.src.collections.PACKAGE.functions;
/**
* Type-Specific Supplier interface that reduces (un)boxing and allows to merge other consumer types into this interface
* @Type(T)
*/
#if TYPE_OBJECT
public interface SUPPLIER KEY_GENERIC_TYPE extends java.util.function.Supplier<KEY_TYPE>
#else if JDK_TYPE && !TYPE_BOOLEAN
public interface SUPPLIER KEY_GENERIC_TYPE extends JAVA_SUPPLIER
#else
public interface SUPPLIER KEY_GENERIC_TYPE
#endif
{
/**
* @return the supplied value
*/
public KEY_TYPE GET_KEY();
#if JDK_TYPE && PRIMITIVES
@Override
public default KEY_TYPE GET_JAVA() {
return GET_KEY();
}
#endif
package speiger.src.collections.PACKAGE.functions;
/**
* Type-Specific Supplier interface that reduces (un)boxing and allows to merge other consumer types into this interface
* @Type(T)
*/
#if TYPE_OBJECT
public interface SUPPLIER KEY_GENERIC_TYPE extends java.util.function.Supplier<KEY_TYPE>
#else if JDK_TYPE && !TYPE_BOOLEAN
public interface SUPPLIER KEY_GENERIC_TYPE extends JAVA_SUPPLIER
#else
public interface SUPPLIER KEY_GENERIC_TYPE
#endif
{
/**
* @return the supplied value
*/
public KEY_TYPE SUPPLY_GET();
}
@@ -1,92 +1,92 @@
package speiger.src.collections.PACKAGE.functions;
import java.util.concurrent.RunnableFuture;
#if !TYPE_OBJECT
import java.util.concurrent.CancellationException;
import java.util.concurrent.ExecutionException;
import java.util.concurrent.TimeUnit;
import java.util.concurrent.TimeoutException;
#endif
/**
*
* A Type Specific Task interface that allows you to keep track of the task that is currently running.<br>
* It extends Runnable future and supports said functions but also provides quality of life functions like:<br>
*
* - isSuccesfull: which allows to detect if the task was completed properly and not interrupted or crashed.
* - pause/resume: which allows to pause/resume the task at any moment, making it easier to create thread-safe actions.
* @Type(T)
*/
public interface TASK KEY_GENERIC_TYPE extends RunnableFuture<CLASS_TYPE> {
/**
* Helper function to detect if the task is currently paused.
* @return true if paused
*/
public boolean isPaused();
/**
* Pauses the task, which lets the thread finish without completing the task.
* Tasks are written in the way where they can pause without any issues.
* This won't be instant, as this function is applied asynchronous and doesn't check if the thread paused.
* So make sure it had the time to pause.
*/
public void pause();
/**
* Pauses the task, which lets the thread finish without completing the task.
* Tasks are written in the way where they can pause without any issues.
* This won't be instant, as this function is applied asynchronous.
* It will await the pausing of the task.
*/
public void awaitPausing();
/**
* Continues the task if it wasn't already completed.
* This is done by resubmitting the task to the executor provided.
*/
public void resume();
/**
* Quality of life function that allows to detect if no cancellation/exception was applied to this task and it completed on its own.
* @return true if it was properly completed
*/
public boolean isSuccessful();
#if !TYPE_OBJECT
/**
* A Type Specific get method that allows to reduce (un)boxing of primtives.
*
* Waits if necessary for the computation to complete, and then
* retrieves its result.
*
* @return the computed result as primitive
* @throws CancellationException if the computation was cancelled
* @throws ExecutionException if the computation threw an exception
* @throws InterruptedException if the current thread was interrupted
* while waiting
*/
public KEY_TYPE GET_KEY() throws InterruptedException, ExecutionException;
/**
* Waits if necessary for at most the given time for the computation
* to complete, and then retrieves its result, if available.
*
* @param timeout the maximum time to wait
* @param unit the time unit of the timeout argument
* @return the computed result as primitive
* @throws CancellationException if the computation was cancelled
* @throws ExecutionException if the computation threw an exception
* @throws InterruptedException if the current thread was interrupted while waiting
* @throws TimeoutException if the wait timed out
*/
public KEY_TYPE GET_KEY(long timeout, TimeUnit unit) throws InterruptedException, ExecutionException, TimeoutException;
@Override
@Deprecated
public default CLASS_TYPE get() throws InterruptedException, ExecutionException { return KEY_TO_OBJ(GET_KEY()); }
@Override
@Deprecated
public default CLASS_TYPE get(long timeout, TimeUnit unit) throws InterruptedException, ExecutionException, TimeoutException { return KEY_TO_OBJ(GET_KEY(timeout, unit)); }
#endif
package speiger.src.collections.PACKAGE.functions;
import java.util.concurrent.RunnableFuture;
#if !TYPE_OBJECT
import java.util.concurrent.CancellationException;
import java.util.concurrent.ExecutionException;
import java.util.concurrent.TimeUnit;
import java.util.concurrent.TimeoutException;
#endif
/**
*
* A Type Specific Task interface that allows you to keep track of the task that is currently running.<br>
* It extends Runnable future and supports said functions but also provides quality of life functions like:<br>
*
* - isSuccesfull: which allows to detect if the task was completed properly and not interrupted or crashed.
* - pause/resume: which allows to pause/resume the task at any moment, making it easier to create thread-safe actions.
* @Type(T)
*/
public interface TASK KEY_GENERIC_TYPE extends RunnableFuture<CLASS_TYPE> {
/**
* Helper function to detect if the task is currently paused.
* @return true if paused
*/
public boolean isPaused();
/**
* Pauses the task, which lets the thread finish without completing the task.
* Tasks are written in the way where they can pause without any issues.
* This won't be instant, as this function is applied asynchronous and doesn't check if the thread paused.
* So make sure it had the time to pause.
*/
public void pause();
/**
* Pauses the task, which lets the thread finish without completing the task.
* Tasks are written in the way where they can pause without any issues.
* This won't be instant, as this function is applied asynchronous.
* It will await the pausing of the task.
*/
public void awaitPausing();
/**
* Continues the task if it wasn't already completed.
* This is done by resubmitting the task to the executor provided.
*/
public void resume();
/**
* Quality of life function that allows to detect if no cancellation/exception was applied to this task and it completed on its own.
* @return true if it was properly completed
*/
public boolean isSuccessful();
#if !TYPE_OBJECT
/**
* A Type Specific get method that allows to reduce (un)boxing of primtives.
*
* Waits if necessary for the computation to complete, and then
* retrieves its result.
*
* @return the computed result as primitive
* @throws CancellationException if the computation was cancelled
* @throws ExecutionException if the computation threw an exception
* @throws InterruptedException if the current thread was interrupted
* while waiting
*/
public KEY_TYPE GET_KEY() throws InterruptedException, ExecutionException;
/**
* Waits if necessary for at most the given time for the computation
* to complete, and then retrieves its result, if available.
*
* @param timeout the maximum time to wait
* @param unit the time unit of the timeout argument
* @return the computed result as primitive
* @throws CancellationException if the computation was cancelled
* @throws ExecutionException if the computation threw an exception
* @throws InterruptedException if the current thread was interrupted while waiting
* @throws TimeoutException if the wait timed out
*/
public KEY_TYPE GET_KEY(long timeout, TimeUnit unit) throws InterruptedException, ExecutionException, TimeoutException;
@Override
@Deprecated
public default CLASS_TYPE get() throws InterruptedException, ExecutionException { return KEY_TO_OBJ(GET_KEY()); }
@Override
@Deprecated
public default CLASS_TYPE get(long timeout, TimeUnit unit) throws InterruptedException, ExecutionException, TimeoutException { return KEY_TO_OBJ(GET_KEY(timeout, unit)); }
#endif
}
@@ -1,79 +1,134 @@
package speiger.src.collections.PACKAGE.functions.function;
#if JDK_FUNCTION && VALUE_BOOLEAN
import java.util.Objects;
#endif
/**
* A Type Specific Function interface that reduces boxing/unboxing and fills the gaps of interfaces that are missing.
* @Type(T)
* @ValueType(V)
*/
@FunctionalInterface
#if JDK_FUNCTION
public interface FUNCTION KEY_VALUE_GENERIC_TYPE extends JAVA_FUNCTION KEY_VALUE_GENERIC_TYPE
#else
public interface FUNCTION KEY_VALUE_GENERIC_TYPE
#endif
{
/**
* Type Specific get function to reduce boxing/unboxing
* @param k the value that should be processed
* @return the result of the function
*/
public VALUE_TYPE GET_VALUE(KEY_TYPE k);
#if JDK_FUNCTION
#if VALUE_BOOLEAN
@Override
public default VALUE_TYPE test(KEY_TYPE k) { return GET_VALUE(k); }
/**
* A Type specific and-function helper function that reduces boxing/unboxing
* @param other the other function that should be merged with.
* @return a function that compares values in a and comparason
*/
public default FUNCTION KEY_VALUE_GENERIC_TYPE andType(FUNCTION KEY_VALUE_GENERIC_TYPE other) {
Objects.requireNonNull(other);
return T -> GET_VALUE(T) && other.GET_VALUE(T);
}
@Override
@Deprecated
public default FUNCTION KEY_VALUE_GENERIC_TYPE and(JAVA_FUNCTION KEY_VALUE_SUPER_GENERIC_TYPE other) {
Objects.requireNonNull(other);
return T -> GET_VALUE(T) && other.test(T);
}
@Override
public default FUNCTION KEY_VALUE_GENERIC_TYPE negate() {
return T -> !GET_VALUE(T);
}
/**
* A Type specific or-function helper function that reduces boxing/unboxing
* @param other the other function that should be merged with.
* @return a function that compares values in a or comparason
*/
public default FUNCTION KEY_VALUE_GENERIC_TYPE orType(FUNCTION KEY_VALUE_GENERIC_TYPE other) {
Objects.requireNonNull(other);
return T -> GET_VALUE(T) || other.GET_VALUE(T);
}
@Override
@Deprecated
public default FUNCTION KEY_VALUE_GENERIC_TYPE or(JAVA_FUNCTION KEY_VALUE_SUPER_GENERIC_TYPE other) {
Objects.requireNonNull(other);
return T -> GET_VALUE(T) || other.test(T);
}
#else if VALUE_OBJECT
@Override
public default VALUE_TYPE apply(KEY_TYPE k) { return GET_VALUE(k); }
#else
@Override
public default VALUE_TYPE APPLY_VALUE(KEY_TYPE k) { return GET_VALUE(k); }
#endif
#endif
package speiger.src.collections.PACKAGE.functions.function;
#if VALUE_BOOLEAN || SAME_TYPE
import java.util.Objects;
#endif
/**
* A Type Specific Function interface that reduces boxing/unboxing and fills the gaps of interfaces that are missing.
* @Type(T)
* @ValueType(V)
*/
@FunctionalInterface
#if JDK_FUNCTION
public interface FUNCTION KEY_VALUE_GENERIC_TYPE extends JAVA_FUNCTION KEY_VALUE_GENERIC_TYPE
#else
public interface FUNCTION KEY_VALUE_GENERIC_TYPE
#endif
{
/**
* Type Specific get function to reduce boxing/unboxing
* @param k the value that should be processed
* @return the result of the function
*/
public VALUE_TYPE APPLY(KEY_TYPE k);
#if SAME_TYPE
/**
* Creates a Default function that returns the input provided.
* @Type(T)
* @return a input returning function
*/
public static GENERIC_KEY_BRACES FUNCTION KEY_SAME_GENERIC_TYPE identity() {
return T -> T;
}
/**
* Returns a composed function that first applies the {@code before}
* function to its input, and then applies this function to the result.
* If evaluation of either function throws an exception, it is relayed to
* the caller of the composed function.
*
* @Type(I)
* @param before the function that should be used first
* @return a composed function with a different starting function.
*/
public default GENERIC_SPECIAL_VALUE_BRACES<I> FUNCTION SV_GENERIC_TYPE<I> compose(FUNCTION SK_GENERIC_TYPE<I> before) {
Objects.requireNonNull(before);
return T -> APPLY(before.APPLY(T));
}
/**
* Returns a composed function that first applies this function to
* its input, and then applies the {@code after} function to the result.
* If evaluation of either function throws an exception, it is relayed to
* the caller of the composed function.
*
* @Type(I)
* @param after the function that should be used last
* @return a composed function with a different starting function.
*/
public default GENERIC_SPECIAL_VALUE_BRACES<I> FUNCTION KS_GENERIC_TYPE<I> andThen(FUNCTION VS_GENERIC_TYPE<I> after) {
Objects.requireNonNull(after);
return T -> after.APPLY(APPLY(T));
}
#endif
#if VALUE_BOOLEAN
/**
* Creates a Always true function that may be useful if you don't need to process information or just want a default.
* @Type(T)
* @return a default returning function
*/
public static GENERIC_KEY_BRACES FUNCTION KEY_GENERIC_TYPE alwaysTrue() {
return T -> true;
}
/**
* Creates a Always false function that may be useful if you don't need to process information or just want a default.
* @Type(T)
* @return a default returning function
*/
public static GENERIC_KEY_BRACES FUNCTION KEY_GENERIC_TYPE alwaysFalse() {
return T -> false;
}
/**
* A Type specific and-function helper function that reduces boxing/unboxing
* @param other the other function that should be merged with.
* @return a function that compares values in a and comparason
*/
public default FUNCTION KEY_VALUE_GENERIC_TYPE andType(FUNCTION KEY_VALUE_GENERIC_TYPE other) {
Objects.requireNonNull(other);
return T -> APPLY(T) && other.APPLY(T);
}
#if JDK_FUNCTION
@Override
@Deprecated
public default FUNCTION KEY_VALUE_GENERIC_TYPE and(JAVA_FUNCTION KEY_VALUE_SUPER_GENERIC_TYPE other) {
Objects.requireNonNull(other);
return T -> APPLY(T) && other.APPLY(T);
}
@Override
#else
/**
* A type specific inverter function
* @return the same function but inverts the result
*/
#endif
public default FUNCTION KEY_VALUE_GENERIC_TYPE negate() {
return T -> !APPLY(T);
}
/**
* A Type specific or-function helper function that reduces boxing/unboxing
* @param other the other function that should be merged with.
* @return a function that compares values in a or comparason
*/
public default FUNCTION KEY_VALUE_GENERIC_TYPE orType(FUNCTION KEY_VALUE_GENERIC_TYPE other) {
Objects.requireNonNull(other);
return T -> APPLY(T) || other.APPLY(T);
}
#if JDK_FUNCTION
@Override
@Deprecated
public default FUNCTION KEY_VALUE_GENERIC_TYPE or(JAVA_FUNCTION KEY_VALUE_SUPER_GENERIC_TYPE other) {
Objects.requireNonNull(other);
return T -> APPLY(T) || other.APPLY(T);
}
#endif
#endif
}
@@ -1,16 +1,25 @@
package speiger.src.collections.PACKAGE.lists;
import java.util.Collection;
import java.util.Iterator;
import java.util.List;
import java.util.ListIterator;
import java.util.NoSuchElementException;
import java.util.Objects;
import java.util.RandomAccess;
import speiger.src.collections.PACKAGE.collections.ABSTRACT_COLLECTION;
import speiger.src.collections.PACKAGE.collections.COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if SPLIT_ITERATOR_FEATURE
import speiger.src.collections.PACKAGE.collections.SPLIT_ITERATOR;
#endif
#if INT_LIST_MODULE && !TYPE_INT
import speiger.src.collections.ints.lists.IntList;
#endif
#if SPLIT_ITERATOR_FEATURE
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
#endif
import speiger.src.collections.utils.SanityChecks;
/**
@@ -66,8 +75,7 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
*/
@Override
@Deprecated
public boolean addAll(Collection<? extends CLASS_TYPE> c)
{
public boolean addAll(Collection<? extends CLASS_TYPE> c) {
return c instanceof COLLECTION ? addAll((COLLECTION KEY_GENERIC_TYPE)c) : addAll(size(), c);
}
@@ -221,6 +229,11 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
return new SubList(this, 0, fromIndex, toIndex);
}
@Override
public LIST KEY_GENERIC_TYPE reversed() {
return new ReversedList(this);
}
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() {
return listIterator(0);
@@ -230,13 +243,25 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
public LIST_ITERATOR KEY_GENERIC_TYPE listIterator() {
return listIterator(0);
}
@Override
public LIST_ITERATOR KEY_GENERIC_TYPE listIterator(int index) {
if(index < 0 || index > size()) throw new IndexOutOfBoundsException();
return new LIST_ITER(index);
}
@Override
public LIST_ITERATOR KEY_GENERIC_TYPE indexedIterator(int...indecies) {
return new IndexedIterator(indecies);
}
#if INT_LIST_MODULE
@Override
public LIST_ITERATOR KEY_GENERIC_TYPE indexedIterator(IntList indecies) {
return new ListIndexedIterator(indecies);
}
#endif
@Override
public void size(int size) {
while(size > size()) add(EMPTY_KEY_VALUE);
@@ -245,6 +270,138 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
public ABSTRACT_LIST KEY_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
private class ReversedList extends ABSTRACT_LIST KEY_GENERIC_TYPE
{
final ABSTRACT_LIST KEY_GENERIC_TYPE list;
public ReversedList(ABSTRACT_LIST KEY_GENERIC_TYPE list) {
this.list = list;
}
@Override
public void add(int index, KEY_TYPE e) {
list.add(list.size() - index - 1, e);
}
@Override
public boolean addAll(int index, COLLECTION KEY_GENERIC_TYPE c) {
return addCollection(index, c);
}
@Override
public boolean addAll(int index, LIST KEY_GENERIC_TYPE c) {
if(c instanceof RandomAccess) {
for(int i = 0,m=c.size();i<m;i++) {
list.add(list.size() - index - i - 1, c.GET_KEY(i));
}
return true;
}
return addCollection(index, c);
}
private boolean addCollection(int index, COLLECTION KEY_GENERIC_TYPE c) {
int i = 0;
for(ITERATOR KEY_GENERIC_TYPE iter = c.iterator();iter.hasNext();i++) {
list.add(list.size() - index - i - 1, iter.NEXT());
}
return true;
}
@Override
public boolean addAll(int index, Collection<? extends CLASS_TYPE> c) {
int i = 0;
for(Iterator<? extends CLASS_TYPE> iter = c.iterator();iter.hasNext();i++) {
list.add(list.size() - index - i - 1, iter.next());
}
return true;
}
@Override
public KEY_TYPE GET_KEY(int index) {
return list.GET_KEY(list.size() - index - 1);
}
@Override
public KEY_TYPE set(int index, KEY_TYPE e) {
return list.set(list.size() - index - 1, e);
}
@Override
public KEY_TYPE REMOVE(int index) {
return list.REMOVE(list.size() - index - 1);
}
@Override
public void addElements(int from, KEY_TYPE[] a, int offset, int length) {
for(int i = 0,m=length;i<m;i++) {
list.add(list.size() - from - i - 1, a[i+offset]);
}
}
@Override
public KEY_TYPE[] getElements(int from, KEY_TYPE[] a, int offset, int length) {
return reverse(list.getElements(list.size() - from - 1, a, offset, length));
}
@Override
public void removeElements(int from, int to) {
list.removeElements(list.size() - to - 1, list.size() - from - 1);
}
@Override
public KEY_TYPE swapRemove(int index) {
return list.swapRemove(list.size() - index - 1);
}
#if TYPE_OBJECT
@Override
public <K> K[] extractElements(int from, int to, Class<K> type) {
return reverse(list.extractElements(list.size() - to - 1, list.size() - from - 1, type));
}
#else
@Override
public KEY_TYPE[] extractElements(int from, int to) {
return reverse(list.extractElements(list.size() - to - 1, list.size() - from - 1));
}
#endif
@Override
public int size() {
return list.size();
}
@Override
public void clear() {
list.clear();
}
@Override
public LIST KEY_GENERIC_TYPE reversed() {
return list;
}
#if TYPE_OBJECT
private <K> K[] reverse(K[] data) {
for (int i = 0, mid = data.length >> 1, j = data.length - 1; i < mid; i++, j--) {
K t = data[i];
data[i] = data[j];
data[j] = t;
}
return data;
}
#else
private KEY_TYPE[] reverse(KEY_TYPE[] data) {
for (int i = 0, mid = data.length >> 1, j = data.length - 1; i < mid; i++, j--) {
KEY_TYPE t = data[i];
data[i] = data[j];
data[j] = t;
}
return data;
}
#endif
}
private class SubList extends ABSTRACT_LIST KEY_GENERIC_TYPE
{
final ABSTRACT_LIST KEY_GENERIC_TYPE list;
@@ -379,9 +536,10 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
public int size() {
return size;
}
#if SPLIT_ITERATOR_FEATURE
@Override
public SPLIT_ITERATOR KEY_GENERIC_TYPE spliterator() { return SPLIT_ITERATORS.createSplititerator(this, 16464); }
#endif
@Override
public LIST_ITERATOR KEY_GENERIC_TYPE listIterator(int index) {
@@ -490,7 +648,155 @@ public abstract class ABSTRACT_LIST KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION
}
}
}
#if INT_LIST_MODULE
private class ListIndexedIterator implements LIST_ITERATOR KEY_GENERIC_TYPE {
IntList indecies;
int index;
int lastReturned = -1;
ListIndexedIterator(IntList indecies) {
this.indecies = indecies;
}
@Override
public boolean hasNext() {
return index < indecies.size();
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
int i = index++;
return GET_KEY((lastReturned = indecies.getInt(i)));
}
@Override
public boolean hasPrevious() {
return index > 0;
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
index--;
return GET_KEY((lastReturned = indecies.getInt(index)));
}
@Override
public int nextIndex() {
return index;
}
@Override
public int previousIndex() {
return index-1;
}
@Override
public void remove() { throw new UnsupportedOperationException(); }
@Override
public void add(KEY_TYPE e) { throw new UnsupportedOperationException(); }
@Override
public void set(KEY_TYPE e) {
if(lastReturned == -1) throw new IllegalStateException();
ABSTRACT_LIST.this.set(lastReturned, e);
}
@Override
public int skip(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, indecies.size() - index);
index += steps;
if(steps > 0) lastReturned = Math.min(index-1, indecies.size()-1);
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;
if(steps > 0) lastReturned = Math.max(index, 0);
return steps;
}
}
#endif
private class IndexedIterator implements LIST_ITERATOR KEY_GENERIC_TYPE {
int[] indecies;
int index;
int lastReturned = -1;
IndexedIterator(int[] indecies) {
this.indecies = indecies;
}
@Override
public boolean hasNext() {
return index < indecies.length;
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
int i = index++;
return GET_KEY((lastReturned = indecies[i]));
}
@Override
public boolean hasPrevious() {
return index > 0;
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
index--;
return GET_KEY((lastReturned = indecies[index]));
}
@Override
public int nextIndex() {
return index;
}
@Override
public int previousIndex() {
return index-1;
}
@Override
public void remove() { throw new UnsupportedOperationException(); }
@Override
public void add(KEY_TYPE e) { throw new UnsupportedOperationException(); }
@Override
public void set(KEY_TYPE e) {
if(lastReturned == -1) throw new IllegalStateException();
ABSTRACT_LIST.this.set(lastReturned, e);
}
@Override
public int skip(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
int steps = Math.min(amount, indecies.length - index);
index += steps;
if(steps > 0) lastReturned = Math.min(index-1, indecies.length-1);
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;
if(steps > 0) lastReturned = Math.max(index, 0);
return steps;
}
}
private class LIST_ITER implements LIST_ITERATOR KEY_GENERIC_TYPE {
int index;
int lastReturned = -1;
@@ -568,7 +874,7 @@ 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);
if(steps > 0) lastReturned = Math.max(index, 0);
return steps;
}
}
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
@@ -3,18 +3,40 @@ package speiger.src.collections.PACKAGE.lists;
import java.util.Arrays;
#if TYPE_OBJECT
import java.util.Comparator;
#else if !TYPE_BOOLEAN
import java.util.stream.JAVA_STREAM;
import java.util.stream.StreamSupport;
#endif
import java.util.Collection;
import java.util.NoSuchElementException;
import java.util.Objects;
#if JDK_TYPE
import java.util.OPTIONAL;
#if SPLIT_ITERATOR_FEATURE && STREAM_FEATURE
#if PRIMITIVES
import java.util.function.Supplier;
#else
import java.util.stream.Stream;
import java.util.stream.Collector;
#endif
import speiger.src.collections.PACKAGE.utils.COLLECTIONS;
#endif
#endif
#if TYPE_OBJECT
import java.util.function.BiFunction;
import java.util.function.Consumer;
#endif
import java.util.function.Predicate;
import java.util.function.UnaryOperator;
#if !TYPE_OBJECT && JDK_FUNCTION
import java.util.function.PREDICATE;
#endif
#if PRIMITIVES
#if !JDK_FUNCTION
import java.util.function.JAVA_PREDICATE;
#endif
import java.util.function.JAVA_UNARY_OPERATOR;
#endif
@@ -22,19 +44,22 @@ import speiger.src.collections.PACKAGE.collections.COLLECTION;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
import speiger.src.collections.PACKAGE.functions.CONSUMER;
#if !JDK_TYPE
import speiger.src.collections.PACKAGE.functions.OPTIONAL;
#endif
import speiger.src.collections.PACKAGE.utils.ARRAYS;
#endif
import speiger.src.collections.objects.functions.consumer.BI_FROM_OBJECT_CONSUMER;
#if !JDK_FUNCTION
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
#endif
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
import speiger.src.collections.objects.utils.ObjectArrays;
import speiger.src.collections.PACKAGE.utils.ITERATORS;
#if PRIMITIVES
import java.util.stream.JAVA_STREAM;
import java.util.stream.StreamSupport;
#endif
#if SPLIT_ITERATOR_FEATURE
import speiger.src.collections.PACKAGE.collections.SPLIT_ITERATOR;
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
#endif
import speiger.src.collections.utils.SanityChecks;
#if TYPE_OBJECT
@@ -111,6 +136,42 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
data = Arrays.copyOfRange(a, offset, offset+length);
}
#if JDK_TYPE && SPLIT_ITERATOR_FEATURE && STREAM_FEATURE
#if TYPE_OBJECT
/**
* Creates a Collector for a ImmutableList
* @Type(T)
* @return a collector
*/
public static <T> Collector<T, COLLECTION<T>, ImmutableObjectList<T>> toList() {
return Collector.of(COLLECTIONS::wrapper, COLLECTION::add, ImmutableObjectList::merge, E -> new IMMUTABLE_LIST<>(E.toArray((T[])new Object[E.size()])));
}
/**
* Collects a Stream to a ImmutableList
* @Type(T)
* @return a list with the contents of the Stream
*/
public static <T> ImmutableObjectList KEY_GENERIC_TYPE toList(Stream<T> stream) {
return stream.collect(toList());
}
private static <T> COLLECTION<T> merge(COLLECTION<T> a, COLLECTION<T> b) {
a.addAll(b);
return a;
}
#else
/**
* Collects a Stream to a ImmutableList
* @return a list with the contents of the Stream
*/
public static IMMUTABLE_LIST toList(JAVA_STREAM stream) {
return new IMMUTABLE_LIST(stream.collect((Supplier<COLLECTION>)COLLECTIONS::wrapper, COLLECTION::add, COLLECTION::addAll).TO_ARRAY());
}
#endif
#endif
@Override
public boolean add(KEY_TYPE e) { throw new UnsupportedOperationException(); }
@Override
@@ -129,7 +190,8 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
@Override
public KEY_TYPE[] getElements(int from, KEY_TYPE[] a, int offset, int length) {
SanityChecks.checkArrayCapacity(data.length, offset, length);
SanityChecks.checkArrayCapacity(a.length, offset, length);
SanityChecks.checkArrayCapacity(data.length, from, length);
System.arraycopy(data, from, a, offset, length);
return a;
}
@@ -301,7 +363,7 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
public boolean matchesAny(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=data.length;i<m;i++) {
if(filter.TEST_VALUE(data[i])) return true;
if(filter.test(data[i])) return true;
}
return false;
}
@@ -310,7 +372,7 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
public boolean matchesNone(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=data.length;i<m;i++) {
if(filter.TEST_VALUE(data[i])) return false;
if(filter.test(data[i])) return false;
}
return true;
}
@@ -319,18 +381,18 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
public boolean matchesAll(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=data.length;i<m;i++) {
if(!filter.TEST_VALUE(data[i])) return false;
if(!filter.test(data[i])) return false;
}
return true;
}
@Override
public KEY_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
public OPTIONAL KEY_GENERIC_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=data.length;i<m;i++) {
if(filter.TEST_VALUE(data[i])) return data[i];
if(filter.test(data[i])) return OPTIONAL.GET_OPTIONAL(data[i]);
}
return EMPTY_VALUE;
return OPTIONAL.empty();
}
#if !TYPE_OBJECT
@@ -357,7 +419,7 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
#endif
@Override
public KEY_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
public OPTIONAL KEY_GENERIC_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = EMPTY_VALUE;
boolean empty = true;
@@ -369,7 +431,7 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
}
state = operator.APPLY_VALUE(state, data[i]);
}
return state;
return empty ? OPTIONAL.empty() : OPTIONAL.GET_OPTIONAL(state);
}
@Override
@@ -377,7 +439,7 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
Objects.requireNonNull(filter);
int result = 0;
for(int i = 0,m=data.length;i<m;i++) {
if(filter.TEST_VALUE(data[i])) result++;
if(filter.test(data[i])) result++;
}
return result;
}
@@ -436,6 +498,7 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
@Override
@Primitive
public Object[] toArray() {
if(data.length == 0) return ObjectArrays.EMPTY_ARRAY;
Object[] obj = new Object[data.length];
for(int i = 0,m=data.length;i<m;i++)
obj[i] = KEY_TO_OBJ(data[i]);
@@ -487,7 +550,8 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
throw new IndexOutOfBoundsException("Index: " + index + ", Size: " + data.length);
}
#if PRIMITIVES
#if SPLIT_ITERATOR_FEATURE
#if PRIMITIVES && STREAM_FEATURE
/**
* Returns a Java-Type-Specific Stream to reduce boxing/unboxing.
* @return a Stream of the closest java type
@@ -505,6 +569,7 @@ public class IMMUTABLE_LIST KEY_GENERIC_TYPE extends ABSTRACT_LIST KEY_GENERIC_T
@Override
public SPLIT_ITERATOR KEY_GENERIC_TYPE spliterator() { return SPLIT_ITERATORS.createArraySplititerator(data, data.length, 16464); }
#endif
private class LIST_ITER implements LIST_ITERATOR KEY_GENERIC_TYPE {
int index;
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
@@ -3,15 +3,31 @@ package speiger.src.collections.PACKAGE.maps.abstracts;
import java.util.AbstractMap;
import java.util.Map;
import java.util.Objects;
#if VALUE_BOOLEAN && JDK_FUNCTION
import java.util.function.PREDICATE;
#endif
import speiger.src.collections.PACKAGE.collections.ITERATOR;
import speiger.src.collections.PACKAGE.functions.consumer.BI_CONSUMER;
#if !VALUE_BOOLEAN || !JDK_FUNCTION
import speiger.src.collections.PACKAGE.functions.function.FUNCTION;
#endif
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
import speiger.src.collections.PACKAGE.maps.interfaces.MAP;
#if ORDERED_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.interfaces.ORDERED_MAP;
import speiger.src.collections.PACKAGE.sets.ORDERED_SET;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ORDERED_COLLECTION;
#if !TYPE_OBJECT
import speiger.src.collections.objects.sets.AbstractObjectSet;
import speiger.src.collections.objects.sets.ObjectOrderedSet;
#endif
#endif
import speiger.src.collections.PACKAGE.sets.ABSTRACT_SET;
import speiger.src.collections.PACKAGE.sets.SET;
#if MAPS_FEATURE
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
#endif
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ABSTRACT_COLLECTION;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
#if !SAME_TYPE
@@ -19,6 +35,7 @@ import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ITERATOR;
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.objects.collections.ObjectIterable;
#if !TYPE_OBJECT && !VALUE_OBJECT
import speiger.src.collections.objects.collections.ObjectIterator;
#endif
@@ -34,7 +51,7 @@ import speiger.src.collections.utils.SanityChecks;
*/
public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CLASS_TYPE, CLASS_VALUE_TYPE> implements MAP KEY_VALUE_GENERIC_TYPE
{
protected VALUE_TYPE defaultReturnValue = EMPTY_VALUE;
protected VALUE_TYPE defaultReturnValue = INVALID_VALUE;
@Override
public VALUE_TYPE getDefaultReturnValue() {
@@ -47,6 +64,22 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
return this;
}
protected ObjectIterable<MAP.Entry KEY_VALUE_GENERIC_TYPE> getFastIterable(MAP KEY_VALUE_GENERIC_TYPE map) {
#if MAPS_FEATURE
return MAPS.fastIterable(map);
#else
return map.ENTRY_SET();
#endif
}
protected ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> getFastIterator(MAP KEY_VALUE_GENERIC_TYPE map) {
#if MAPS_FEATURE
return MAPS.fastIterator(map);
#else
return map.ENTRY_SET().iterator();
#endif
}
@Override
public MAP KEY_VALUE_GENERIC_TYPE copy() {
throw new UnsupportedOperationException();
@@ -63,14 +96,14 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
#if VALUE_PRIMITIVES
@Override
public void addToAll(MAP KEY_VALUE_GENERIC_TYPE m) {
for(MAP.Entry KEY_VALUE_GENERIC_TYPE entry : MAPS.fastIterable(m))
for(MAP.Entry KEY_VALUE_GENERIC_TYPE entry : getFastIterable(m))
addTo(entry.ENTRY_KEY(), entry.ENTRY_VALUE());
}
#endif
@Override
public void putAll(MAP KEY_VALUE_GENERIC_TYPE m) {
for(ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = MAPS.fastIterator(m);iter.hasNext();) {
for(ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = getFastIterator(m);iter.hasNext();) {
MAP.Entry KEY_VALUE_GENERIC_TYPE entry = iter.next();
put(entry.ENTRY_KEY(), entry.ENTRY_VALUE());
}
@@ -95,13 +128,13 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
public void putAll(CLASS_TYPE[] keys, CLASS_VALUE_TYPE[] values, int offset, int size) {
SanityChecks.checkArrayCapacity(keys.length, offset, size);
SanityChecks.checkArrayCapacity(values.length, offset, size);
for(int i = 0;i<size;i++) put(keys[i], values[i]);
for(int i = 0;i<size;i++) put(OBJ_TO_KEY(keys[i]), OBJ_TO_VALUE(values[i]));
}
#endif
@Override
public void putAllIfAbsent(MAP KEY_VALUE_GENERIC_TYPE m) {
for(MAP.Entry KEY_VALUE_GENERIC_TYPE entry : MAPS.fastIterable(m))
for(MAP.Entry KEY_VALUE_GENERIC_TYPE entry : getFastIterable(m))
putIfAbsent(entry.ENTRY_KEY(), entry.ENTRY_VALUE());
}
@@ -161,14 +194,14 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
@Override
public void REPLACE_VALUES(MAP KEY_VALUE_GENERIC_TYPE m) {
for(MAP.Entry KEY_VALUE_GENERIC_TYPE entry : MAPS.fastIterable(m))
for(MAP.Entry KEY_VALUE_GENERIC_TYPE entry : getFastIterable(m))
replace(entry.ENTRY_KEY(), entry.ENTRY_VALUE());
}
@Override
public void REPLACE_VALUES(UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) {
Objects.requireNonNull(mappingFunction);
for(ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = MAPS.fastIterator(this);iter.hasNext();) {
for(ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = getFastIterator(this);iter.hasNext();) {
MAP.Entry KEY_VALUE_GENERIC_TYPE entry = iter.next();
entry.setValue(mappingFunction.APPLY_VALUE(entry.ENTRY_KEY(), entry.ENTRY_VALUE()));
}
@@ -177,6 +210,96 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
@Override
public VALUE_TYPE COMPUTE(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) {
Objects.requireNonNull(mappingFunction);
#if !VALUE_OBJECT
VALUE_TYPE newValue = mappingFunction.APPLY_VALUE(key, GET_VALUE(key));
#else
VALUE_TYPE value = GET_VALUE(key);
VALUE_TYPE newValue = mappingFunction.APPLY_VALUE(key, value);
if(VALUE_EQUALS(newValue, getDefaultReturnValue())) {
if(VALUE_EQUALS_NOT(value, getDefaultReturnValue()) || containsKey(key)) {
remove(key);
return getDefaultReturnValue();
}
return getDefaultReturnValue();
}
#endif
put(key, newValue);
return newValue;
}
@Override
public VALUE_TYPE COMPUTE_IF_ABSENT(KEY_TYPE key, FUNCTION KEY_VALUE_GENERIC_TYPE mappingFunction) {
Objects.requireNonNull(mappingFunction);
#if VALUE_OBJECT
VALUE_TYPE value;
if((value = GET_VALUE(key)) == getDefaultReturnValue() || !containsKey(key)) {
VALUE_TYPE newValue = mappingFunction.APPLY(key);
if(VALUE_EQUALS_NOT(newValue, getDefaultReturnValue())) {
put(key, newValue);
return newValue;
}
}
return value;
#else
if(!containsKey(key)) {
VALUE_TYPE newValue = mappingFunction.APPLY(key);
put(key, newValue);
return newValue;
}
return get(key);
#endif
}
@Override
public VALUE_TYPE SUPPLY_IF_ABSENT(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider) {
Objects.requireNonNull(valueProvider);
#if VALUE_OBJECT
VALUE_TYPE value;
if((value = GET_VALUE(key)) == getDefaultReturnValue() || !containsKey(key)) {
VALUE_TYPE newValue = valueProvider.VALUE_SUPPLY_GET();
if(VALUE_EQUALS_NOT(newValue, getDefaultReturnValue())) {
put(key, newValue);
return newValue;
}
}
return value;
#else
if(!containsKey(key)) {
VALUE_TYPE newValue = valueProvider.VALUE_SUPPLY_GET();
put(key, newValue);
return newValue;
}
return get(key);
#endif
}
@Override
public VALUE_TYPE COMPUTE_IF_PRESENT(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) {
Objects.requireNonNull(mappingFunction);
#if VALUE_OBJECT
VALUE_TYPE value;
if(VALUE_EQUALS_NOT((value = GET_VALUE(key)), getDefaultReturnValue()) || containsKey(key)) {
VALUE_TYPE newValue = mappingFunction.APPLY_VALUE(key, value);
if(VALUE_EQUALS_NOT(newValue, getDefaultReturnValue())) {
put(key, newValue);
return newValue;
}
remove(key);
}
#else
if(containsKey(key)) {
VALUE_TYPE newValue = mappingFunction.APPLY_VALUE(key, GET_VALUE(key));
put(key, newValue);
return newValue;
}
#endif
return getDefaultReturnValue();
}
#if !VALUE_OBJECT
@Override
public VALUE_TYPE COMPUTENonDefault(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) {
Objects.requireNonNull(mappingFunction);
VALUE_TYPE value = GET_VALUE(key);
VALUE_TYPE newValue = mappingFunction.APPLY_VALUE(key, value);
if(VALUE_EQUALS(newValue, getDefaultReturnValue())) {
@@ -191,11 +314,11 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
}
@Override
public VALUE_TYPE COMPUTE_IF_ABSENT(KEY_TYPE key, FUNCTION KEY_VALUE_GENERIC_TYPE mappingFunction) {
public VALUE_TYPE COMPUTE_IF_ABSENTNonDefault(KEY_TYPE key, FUNCTION KEY_VALUE_GENERIC_TYPE mappingFunction) {
Objects.requireNonNull(mappingFunction);
VALUE_TYPE value;
if((value = GET_VALUE(key)) == getDefaultReturnValue() || !containsKey(key)) {
VALUE_TYPE newValue = mappingFunction.GET_VALUE(key);
VALUE_TYPE newValue = mappingFunction.APPLY(key);
if(VALUE_EQUALS_NOT(newValue, getDefaultReturnValue())) {
put(key, newValue);
return newValue;
@@ -205,11 +328,11 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
}
@Override
public VALUE_TYPE SUPPLY_IF_ABSENT(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider) {
public VALUE_TYPE SUPPLY_IF_ABSENTNonDefault(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider) {
Objects.requireNonNull(valueProvider);
VALUE_TYPE value;
if((value = GET_VALUE(key)) == getDefaultReturnValue() || !containsKey(key)) {
VALUE_TYPE newValue = valueProvider.VALUE_GET_KEY();
VALUE_TYPE newValue = valueProvider.VALUE_SUPPLY_GET();
if(VALUE_EQUALS_NOT(newValue, getDefaultReturnValue())) {
put(key, newValue);
return newValue;
@@ -219,7 +342,7 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
}
@Override
public VALUE_TYPE COMPUTE_IF_PRESENT(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) {
public VALUE_TYPE COMPUTE_IF_PRESENTNonDefault(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) {
Objects.requireNonNull(mappingFunction);
VALUE_TYPE value;
if(VALUE_EQUALS_NOT((value = GET_VALUE(key)), getDefaultReturnValue()) || containsKey(key)) {
@@ -232,7 +355,8 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
}
return getDefaultReturnValue();
}
#endif
@Override
public VALUE_TYPE MERGE(KEY_TYPE key, VALUE_TYPE value, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) {
Objects.requireNonNull(mappingFunction);
@@ -246,7 +370,7 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
@Override
public void BULK_MERGE(MAP KEY_VALUE_GENERIC_TYPE m, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) {
Objects.requireNonNull(mappingFunction);
for(MAP.Entry KEY_VALUE_GENERIC_TYPE entry : MAPS.fastIterable(m)) {
for(MAP.Entry KEY_VALUE_GENERIC_TYPE entry : getFastIterable(m)) {
KEY_TYPE key = entry.ENTRY_KEY();
VALUE_TYPE oldValue = GET_VALUE(key);
VALUE_TYPE newValue = VALUE_EQUALS(oldValue, getDefaultReturnValue()) ? entry.ENTRY_VALUE() : mappingFunction.APPLY_VALUE(oldValue, entry.ENTRY_VALUE());
@@ -298,7 +422,7 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
@Override
public void forEach(BI_CONSUMER KEY_VALUE_GENERIC_TYPE action) {
Objects.requireNonNull(action);
for(ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = MAPS.fastIterator(this);iter.hasNext();) {
for(ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = getFastIterator(this);iter.hasNext();) {
MAP.Entry KEY_VALUE_GENERIC_TYPE entry = iter.next();
action.accept(entry.ENTRY_KEY(), entry.ENTRY_VALUE());
}
@@ -332,7 +456,7 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() {
return new ITERATOR KEY_GENERIC_TYPE() {
ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = MAPS.fastIterator(ABSTRACT_MAP.this);
ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = getFastIterator(ABSTRACT_MAP.this);
@Override
public boolean hasNext() {
return iter.hasNext();
@@ -383,7 +507,7 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
@Override
public VALUE_ITERATOR VALUE_GENERIC_TYPE iterator() {
return new VALUE_ITERATOR VALUE_GENERIC_TYPE() {
ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = MAPS.fastIterator(ABSTRACT_MAP.this);
ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = getFastIterator(ABSTRACT_MAP.this);
@Override
public boolean hasNext() {
return iter.hasNext();
@@ -423,11 +547,137 @@ public abstract class ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE extends AbstractMap<CL
@Override
public int hashCode() {
int hash = 0;
ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = MAPS.fastIterator(this);
ObjectIterator<MAP.Entry KEY_VALUE_GENERIC_TYPE> iter = getFastIterator(this);
while(iter.hasNext()) hash += iter.next().hashCode();
return hash;
}
public static class REVERSED_ORDERED_MAP KEY_VALUE_GENERIC_TYPE extends ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE implements ORDERED_MAP KEY_VALUE_GENERIC_TYPE {
ORDERED_MAP KEY_VALUE_GENERIC_TYPE map;
public REVERSED_ORDERED_MAP(ORDERED_MAP KEY_VALUE_GENERIC_TYPE map) {
this.map = map;
}
@Override
public ABSTRACT_MAP KEY_VALUE_GENERIC_TYPE setDefaultReturnValue(VALUE_TYPE v) {
map.setDefaultReturnValue(v);
return this;
}
@Override
public VALUE_TYPE getDefaultReturnValue() { return map.getDefaultReturnValue(); }
@Override
public ORDERED_MAP KEY_VALUE_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
@Override
public VALUE_TYPE put(KEY_TYPE key, VALUE_TYPE value) { return map.put(key, value); }
@Override
public VALUE_TYPE putIfAbsent(KEY_TYPE key, VALUE_TYPE value) { return map.putIfAbsent(key, value); }
#if VALUE_PRIMITIVES
@Override
public VALUE_TYPE addTo(KEY_TYPE key, VALUE_TYPE value) { return map.addTo(key, value); }
@Override
public VALUE_TYPE subFrom(KEY_TYPE key, VALUE_TYPE value) { return map.subFrom(key, value); }
#endif
@Override
public VALUE_TYPE REMOVE_VALUE(KEY_TYPE key) { return map.REMOVE_VALUE(key); }
#if !TYPE_OBJECT || !VALUE_OBJECT
@Override
public boolean remove(KEY_TYPE key, VALUE_TYPE value) { return map.remove(key, value); }
#endif
@Override
public VALUE_TYPE REMOVE_VALUEOrDefault(KEY_TYPE key, VALUE_TYPE defaultValue) { return map.REMOVE_VALUEOrDefault(key, defaultValue); }
@Override
#if TYPE_OBJECT
public boolean containsKey(Object key) { return map.containsKey(key); }
#else
public boolean containsKey(KEY_TYPE key) { return map.containsKey(key); }
#endif
@Override
#if VALUE_OBJECT
public boolean containsValue(Object value) { return map.containsValue(value); }
#else
public boolean containsValue(VALUE_TYPE value) { return map.containsValue(value); }
#endif
@Override
public boolean replace(KEY_TYPE key, VALUE_TYPE oldValue, VALUE_TYPE newValue) { return map.replace(key, oldValue, newValue); }
@Override
public VALUE_TYPE replace(KEY_TYPE key, VALUE_TYPE value) { return map.replace(key, value); }
@Override
public void REPLACE_VALUES(MAP KEY_VALUE_GENERIC_TYPE m) { map.REPLACE_VALUES(m); }
@Override
public void REPLACE_VALUES(UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { map.REPLACE_VALUES(mappingFunction); }
@Override
public VALUE_TYPE COMPUTE(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { return map.COMPUTE(key, mappingFunction); }
@Override
public VALUE_TYPE COMPUTE_IF_ABSENT(KEY_TYPE key, FUNCTION KEY_VALUE_GENERIC_TYPE mappingFunction) { return map.COMPUTE_IF_ABSENT(key, mappingFunction); }
@Override
public VALUE_TYPE SUPPLY_IF_ABSENT(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider) { return map.SUPPLY_IF_ABSENT(key, valueProvider); }
@Override
public VALUE_TYPE COMPUTE_IF_PRESENT(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { return map.COMPUTE_IF_PRESENT(key, mappingFunction); }
#if !VALUE_OBJECT
@Override
public VALUE_TYPE COMPUTENonDefault(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { return map.COMPUTENonDefault(key, mappingFunction); }
@Override
public VALUE_TYPE COMPUTE_IF_ABSENTNonDefault(KEY_TYPE key, FUNCTION KEY_VALUE_GENERIC_TYPE mappingFunction) { return map.COMPUTE_IF_ABSENTNonDefault(key, mappingFunction); }
@Override
public VALUE_TYPE SUPPLY_IF_ABSENTNonDefault(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider) { return map.SUPPLY_IF_ABSENTNonDefault(key, valueProvider); }
@Override
public VALUE_TYPE COMPUTE_IF_PRESENTNonDefault(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction) { return map.COMPUTE_IF_PRESENTNonDefault(key, mappingFunction); }
#endif
@Override
public VALUE_TYPE MERGE(KEY_TYPE key, VALUE_TYPE value, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction) { return map.MERGE(key, value, mappingFunction); }
#if !TYPE_OBJECT || !VALUE_OBJECT
@Override
public VALUE_TYPE getOrDefault(KEY_TYPE key, VALUE_TYPE defaultValue) { return map.getOrDefault(key, defaultValue); }
#endif
@Override
public VALUE_TYPE GET_VALUE(KEY_TYPE key) { return map.GET_VALUE(key); }
@Override
public VALUE_TYPE putAndMoveToFirst(KEY_TYPE key, VALUE_TYPE value) { return map.putAndMoveToLast(key, value); }
@Override
public VALUE_TYPE putAndMoveToLast(KEY_TYPE key, VALUE_TYPE value) { return map.putAndMoveToFirst(key, value); }
@Override
public VALUE_TYPE putFirst(KEY_TYPE key, VALUE_TYPE value) { return map.putLast(key, value); }
@Override
public VALUE_TYPE putLast(KEY_TYPE key, VALUE_TYPE value) { return map.putFirst(key, value); }
@Override
public boolean moveToFirst(KEY_TYPE key) { return map.moveToLast(key); }
@Override
public boolean moveToLast(KEY_TYPE key) { return map.moveToFirst(key); }
@Override
public VALUE_TYPE getAndMoveToFirst(KEY_TYPE key) { return map.getAndMoveToLast(key); }
@Override
public VALUE_TYPE getAndMoveToLast(KEY_TYPE key) { return map.getAndMoveToFirst(key); }
@Override
public KEY_TYPE FIRST_ENTRY_KEY() { return map.LAST_ENTRY_KEY(); }
@Override
public KEY_TYPE POLL_FIRST_ENTRY_KEY() { return map.POLL_LAST_ENTRY_KEY(); }
@Override
public KEY_TYPE LAST_ENTRY_KEY() { return map.FIRST_ENTRY_KEY(); }
@Override
public KEY_TYPE POLL_LAST_ENTRY_KEY() { return map.POLL_FIRST_ENTRY_KEY(); }
@Override
public VALUE_TYPE FIRST_ENTRY_VALUE() { return map.LAST_ENTRY_VALUE(); }
@Override
public VALUE_TYPE LAST_ENTRY_VALUE() { return map.FIRST_ENTRY_VALUE(); }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE firstEntry() { return map.lastEntry(); }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE lastEntry() { return map.firstEntry(); }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE pollFirstEntry() { return map.pollLastEntry(); }
@Override
public MAP.Entry KEY_VALUE_GENERIC_TYPE pollLastEntry() { return map.pollFirstEntry(); }
@Override
public ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET() { return new AbstractObjectSet.ReversedObjectOrderedSet<>(map.ENTRY_SET()); }
@Override
public ORDERED_SET KEY_GENERIC_TYPE keySet() { return new ABSTRACT_SET.REVERSED_ORDERED_SETBRACES(map.keySet()); }
@Override
public VALUE_ORDERED_COLLECTION VALUE_GENERIC_TYPE values() { return map.values().reversed(); }
@Override
public ORDERED_MAP KEY_VALUE_GENERIC_TYPE reversed() { return map; }
}
/**
* A Simple Type Specific Entry class to reduce boxing/unboxing
* @Type(T)
@@ -1,95 +1,95 @@
package speiger.src.collections.PACKAGE.maps.interfaces;
import java.util.concurrent.ConcurrentMap;
import java.util.function.BiConsumer;
import java.util.function.BiFunction;
import java.util.function.Function;
/**
* A type specific ConcurrentMap interface that reduces boxing/unboxing.
* Since the interface adds nothing new. It is there just for completion sake.
* @Type(T)
* @ValueType(V)
*/
public interface CONCURRENT_MAP KEY_VALUE_GENERIC_TYPE extends ConcurrentMap<CLASS_TYPE, CLASS_VALUE_TYPE>, MAP KEY_VALUE_GENERIC_TYPE
{
@Override
@Primitive
public default CLASS_VALUE_TYPE compute(CLASS_TYPE key, BiFunction<? super CLASS_TYPE, ? super CLASS_VALUE_TYPE, ? extends CLASS_VALUE_TYPE> mappingFunction) {
return MAP.super.compute(key, mappingFunction);
}
@Override
@Primitive
public default CLASS_VALUE_TYPE computeIfAbsent(CLASS_TYPE key, Function<? super CLASS_TYPE, ? extends CLASS_VALUE_TYPE> mappingFunction) {
return MAP.super.computeIfAbsent(key, mappingFunction);
}
@Override
@Primitive
public default CLASS_VALUE_TYPE computeIfPresent(CLASS_TYPE key, BiFunction<? super CLASS_TYPE, ? super CLASS_VALUE_TYPE, ? extends CLASS_VALUE_TYPE> mappingFunction) {
return MAP.super.computeIfPresent(key, mappingFunction);
}
@Override
@Primitive
public default void forEach(BiConsumer<? super CLASS_TYPE, ? super CLASS_VALUE_TYPE> action) {
MAP.super.forEach(action);
}
@Override
@Primitive
public default CLASS_VALUE_TYPE merge(CLASS_TYPE key, CLASS_VALUE_TYPE value, BiFunction<? super CLASS_VALUE_TYPE, ? super CLASS_VALUE_TYPE, ? extends CLASS_VALUE_TYPE> mappingFunction) {
return MAP.super.merge(key, value, mappingFunction);
}
#if TYPE_OBJECT && VALUE_OBJECT
@Override
public CLASS_VALUE_TYPE getOrDefault(Object key, CLASS_VALUE_TYPE defaultValue);
@Override
public CLASS_VALUE_TYPE putIfAbsent(CLASS_TYPE key, CLASS_VALUE_TYPE value);
@Override
public boolean remove(Object key, Object value);
@Override
public boolean replace(CLASS_TYPE key, CLASS_VALUE_TYPE oldValue, CLASS_VALUE_TYPE newValue);
@Override
public CLASS_VALUE_TYPE replace(CLASS_TYPE key, CLASS_VALUE_TYPE value);
#else
@Primitive
@Override
public default CLASS_VALUE_TYPE getOrDefault(Object key, CLASS_VALUE_TYPE defaultValue) {
return MAP.super.getOrDefault(key, defaultValue);
}
@Override
@Primitive
public default CLASS_VALUE_TYPE putIfAbsent(CLASS_TYPE key, CLASS_VALUE_TYPE value) {
return MAP.super.putIfAbsent(key, value);
}
@Override
@Deprecated
public default boolean remove(Object key, Object value) {
return MAP.super.remove(key, value);
}
@Override
@Deprecated
public default boolean replace(CLASS_TYPE key, CLASS_VALUE_TYPE oldValue, CLASS_VALUE_TYPE newValue) {
return MAP.super.replace(key, oldValue, newValue);
}
@Override
@Deprecated
public default CLASS_VALUE_TYPE replace(CLASS_TYPE key, CLASS_VALUE_TYPE value) {
return MAP.super.replace(key, value);
}
#endif
@Override
@Deprecated
public default void replaceAll(BiFunction<? super CLASS_TYPE, ? super CLASS_VALUE_TYPE, ? extends CLASS_VALUE_TYPE> mappingFunction) {
MAP.super.replaceAll(mappingFunction);
}
package speiger.src.collections.PACKAGE.maps.interfaces;
import java.util.concurrent.ConcurrentMap;
import java.util.function.BiConsumer;
import java.util.function.BiFunction;
import java.util.function.Function;
/**
* A type specific ConcurrentMap interface that reduces boxing/unboxing.
* Since the interface adds nothing new. It is there just for completion sake.
* @Type(T)
* @ValueType(V)
*/
public interface CONCURRENT_MAP KEY_VALUE_GENERIC_TYPE extends ConcurrentMap<CLASS_TYPE, CLASS_VALUE_TYPE>, MAP KEY_VALUE_GENERIC_TYPE
{
@Override
@Primitive
public default CLASS_VALUE_TYPE compute(CLASS_TYPE key, BiFunction<? super CLASS_TYPE, ? super CLASS_VALUE_TYPE, ? extends CLASS_VALUE_TYPE> mappingFunction) {
return MAP.super.compute(key, mappingFunction);
}
@Override
@Primitive
public default CLASS_VALUE_TYPE computeIfAbsent(CLASS_TYPE key, Function<? super CLASS_TYPE, ? extends CLASS_VALUE_TYPE> mappingFunction) {
return MAP.super.computeIfAbsent(key, mappingFunction);
}
@Override
@Primitive
public default CLASS_VALUE_TYPE computeIfPresent(CLASS_TYPE key, BiFunction<? super CLASS_TYPE, ? super CLASS_VALUE_TYPE, ? extends CLASS_VALUE_TYPE> mappingFunction) {
return MAP.super.computeIfPresent(key, mappingFunction);
}
@Override
@Primitive
public default void forEach(BiConsumer<? super CLASS_TYPE, ? super CLASS_VALUE_TYPE> action) {
MAP.super.forEach(action);
}
@Override
@Primitive
public default CLASS_VALUE_TYPE merge(CLASS_TYPE key, CLASS_VALUE_TYPE value, BiFunction<? super CLASS_VALUE_TYPE, ? super CLASS_VALUE_TYPE, ? extends CLASS_VALUE_TYPE> mappingFunction) {
return MAP.super.merge(key, value, mappingFunction);
}
#if TYPE_OBJECT && VALUE_OBJECT
@Override
public CLASS_VALUE_TYPE getOrDefault(Object key, CLASS_VALUE_TYPE defaultValue);
@Override
public CLASS_VALUE_TYPE putIfAbsent(CLASS_TYPE key, CLASS_VALUE_TYPE value);
@Override
public boolean remove(Object key, Object value);
@Override
public boolean replace(CLASS_TYPE key, CLASS_VALUE_TYPE oldValue, CLASS_VALUE_TYPE newValue);
@Override
public CLASS_VALUE_TYPE replace(CLASS_TYPE key, CLASS_VALUE_TYPE value);
#else
@Primitive
@Override
public default CLASS_VALUE_TYPE getOrDefault(Object key, CLASS_VALUE_TYPE defaultValue) {
return MAP.super.getOrDefault(key, defaultValue);
}
@Override
@Primitive
public default CLASS_VALUE_TYPE putIfAbsent(CLASS_TYPE key, CLASS_VALUE_TYPE value) {
return MAP.super.putIfAbsent(key, value);
}
@Override
@Deprecated
public default boolean remove(Object key, Object value) {
return MAP.super.remove(key, value);
}
@Override
@Deprecated
public default boolean replace(CLASS_TYPE key, CLASS_VALUE_TYPE oldValue, CLASS_VALUE_TYPE newValue) {
return MAP.super.replace(key, oldValue, newValue);
}
@Override
@Deprecated
public default CLASS_VALUE_TYPE replace(CLASS_TYPE key, CLASS_VALUE_TYPE value) {
return MAP.super.replace(key, value);
}
#endif
@Override
@Deprecated
public default void replaceAll(BiFunction<? super CLASS_TYPE, ? super CLASS_VALUE_TYPE, ? extends CLASS_VALUE_TYPE> mappingFunction) {
MAP.super.replaceAll(mappingFunction);
}
}
@@ -10,36 +10,72 @@ import java.util.function.BiConsumer;
import java.util.function.BiFunction;
import java.util.function.Consumer;
import java.util.function.Function;
#if VALUE_BOOLEAN && JDK_FUNCTION
import java.util.function.PREDICATE;
#endif
#if TYPE_OBJECT
#if AVL_TREE_MAP_FEATURE || RB_TREE_MAP_FEATURE
import java.util.Comparator;
#endif
#endif
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
import speiger.src.collections.PACKAGE.functions.consumer.BI_CONSUMER;
#if !VALUE_BOOLEAN || !JDK_FUNCTION
import speiger.src.collections.PACKAGE.functions.function.FUNCTION;
#endif
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
#if !TYPE_OBJECT && !TYPE_BOOLEAN
#if !TYPE_OBJECT && !TYPE_BOOLEAN && SORTED_MAP_FEATURE
#if AVL_TREE_MAP_FEATURE || RB_TREE_MAP_FEATURE
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#endif
#endif
#if !TYPE_BOOLEAN
#if LINKED_CUSTOM_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.customHash.LINKED_CUSTOM_HASH_MAP;
#endif
#if CUSTOM_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.customHash.CUSTOM_HASH_MAP;
#endif
#if LINKED_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.hash.LINKED_HASH_MAP;
#endif
#if MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.hash.HASH_MAP;
#endif
#if IMMUTABLE_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.immutable.IMMUTABLE_HASH_MAP;
#endif
#if AVL_TREE_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.tree.AVL_TREE_MAP;
#endif
#if RB_TREE_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.tree.RB_TREE_MAP;
#endif
#if ARRAY_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.misc.ARRAY_MAP;
#endif
#if CONCURRENT_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.concurrent.CONCURRENT_HASH_MAP;
#endif
#if TYPE_OBJECT
#if ENUM_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.misc.ENUM_MAP;
#endif
#if LINKED_ENUM_MAP_FEATURE
import speiger.src.collections.PACKAGE.maps.impl.misc.LINKED_ENUM_MAP;
#endif
#endif
import speiger.src.collections.objects.collections.ObjectIterable;
#if CUSTOM_MAP_FEATURE || LINKED_CUSTOM_MAP_FEATURE
import speiger.src.collections.PACKAGE.utils.STRATEGY;
#endif
#if MAPS_FEATURE
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
#endif
#endif
import speiger.src.collections.PACKAGE.sets.SET;
#if !SAME_TYPE
import speiger.src.collections.VALUE_PACKAGE.functions.function.VALUE_UNARY_OPERATOR;
@@ -102,6 +138,26 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
*/
public VALUE_TYPE put(KEY_TYPE key, VALUE_TYPE value);
/**
* A Helper method that allows to put int a MAP.Entry into a map.
* @param entry then Entry that should be inserted.
* @return the last present value or default return value.
*/
public default VALUE_TYPE put(Entry KEY_VALUE_GENERIC_TYPE entry) {
return put(entry.ENTRY_KEY(), entry.ENTRY_VALUE());
}
#if !TYPE_OBJECT || !VALUE_OBJECT
/**
* A Helper method that allows to put int a Map.Entry into a map.
* @param entry then Entry that should be inserted.
* @return the last present value or default return value.
*/
public default CLASS_VALUE_TYPE put(Map.Entry<CLASS_TYPE, CLASS_VALUE_TYPE> entry) {
return put(OBJ_TO_KEY(entry.getKey()), OBJ_TO_VALUE(entry.getValue()));
}
#endif
/**
* Type Specific array method to bulk add elements into a map without creating a wrapper and increasing performances
* @param keys the keys that should be added
@@ -326,21 +382,26 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
public void REPLACE_VALUES(UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction);
/**
* A Type Specific compute method to reduce boxing/unboxing
* If the generated value equals the getDefaultReturnValue it will simply not insert it since that is treated as "null".
* A "Null Value" will be treated as "Do not insert/remove" based on how the Java has specified it.
* @param key the key that should be computed
* @param mappingFunction the operator that should generate the value
* @return the result of the computation
*/
public VALUE_TYPE COMPUTE(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction);
/**
* A Type Specific compute method to reduce boxing/unboxing
* A Type Specific computeIfAbsent method to reduce boxing/unboxing
* If the generated value equals the getDefaultReturnValue it will simply not insert it since that is treated as "null".
* A "Null Value" will be treated as "Do not insert/remove" based on how the Java has specified it.
* @param key the key that should be computed
* @param mappingFunction the operator that should generate the value if not present
* @return the result of the computed value or present value
*/
public VALUE_TYPE COMPUTE_IF_ABSENT(KEY_TYPE key, FUNCTION KEY_VALUE_GENERIC_TYPE mappingFunction);
/**
* A Supplier based computeIfAbsent function to fill the most used usecase of this function
* If the generated value equals the getDefaultReturnValue it will simply not insert it since that is treated as "null".
* A "Null Value" will be treated as "Do not insert/remove" based on how the Java has specified it.
* @param key the key that should be computed
* @param valueProvider the value if not present
* @return the result of the computed value or present value
@@ -348,14 +409,57 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
public VALUE_TYPE SUPPLY_IF_ABSENT(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider);
/**
* A Type Specific compute method to reduce boxing/unboxing
* If the generated value equals the getDefaultReturnValue it will simply not insert it since that is treated as "null".
* A "Null Value" will be treated as "Do not insert/remove" based on how the Java has specified it.
* @param key the key that should be computed
* @param mappingFunction the operator that should generate the value if present
* @return the result of the default return value or present value
* @note if not present then compute is not executed
*/
public VALUE_TYPE COMPUTE_IF_PRESENT(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction);
#if !VALUE_OBJECT
/**
* A Type Specific compute method to reduce boxing/unboxing
* If the generated value equals the getDefaultReturnValue it will simply not insert it since that is treated as "null".
* A "Null Value" will be treated as "Do not insert/remove" based on how the Java has specified it.
* @param key the key that should be computed
* @param mappingFunction the operator that should generate the value
* @return the result of the computation
*/
public VALUE_TYPE COMPUTENonDefault(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction);
/**
* A Type Specific computeIfAbsent method to reduce boxing/unboxing
* If the generated value equals the getDefaultReturnValue it will simply not insert it since that is treated as "null".
* A "Null Value" will be treated as "Do not insert/remove" based on how the Java has specified it.
* @param key the key that should be computed
* @param mappingFunction the operator that should generate the value if not present
* @return the result of the computed value or present value
*/
public VALUE_TYPE COMPUTE_IF_ABSENTNonDefault(KEY_TYPE key, FUNCTION KEY_VALUE_GENERIC_TYPE mappingFunction);
/**
* A Supplier based computeIfAbsent function to fill the most used usecase of this function
* If the generated value equals the getDefaultReturnValue it will simply not insert it since that is treated as "null".
* A "Null Value" will be treated as "Do not insert/remove" based on how the Java has specified it.
* @param key the key that should be computed
* @param valueProvider the value if not present
* @return the result of the computed value or present value
*/
public VALUE_TYPE SUPPLY_IF_ABSENTNonDefault(KEY_TYPE key, VALUE_SUPPLIER VALUE_GENERIC_TYPE valueProvider);
/**
* A Type Specific compute method to reduce boxing/unboxing
* If the generated value equals the getDefaultReturnValue it will simply not insert it since that is treated as "null".
* A "Null Value" will be treated as "Do not insert/remove" based on how the Java has specified it.
* @param key the key that should be computed
* @param mappingFunction the operator that should generate the value if present
* @return the result of the default return value or present value
* @note if not present then compute is not executed
*/
public VALUE_TYPE COMPUTE_IF_PRESENTNonDefault(KEY_TYPE key, UNARY_OPERATOR KEY_VALUE_GENERIC_TYPE mappingFunction);
#endif
/**
* A Type Specific merge method to reduce boxing/unboxing
* If the generated value equals the getDefaultReturnValue it will simply not insert it since that is treated as "null".
* A "Null Value" will be treated as "Do not insert/remove" based on how the Java has specified it.
* @param key the key that should be be searched for
* @param value the value that should be merged with
* @param mappingFunction the operator that should generate the new Value
@@ -365,6 +469,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
public VALUE_TYPE MERGE(KEY_TYPE key, VALUE_TYPE value, VALUE_UNARY_OPERATOR VALUE_VALUE_GENERIC_TYPE mappingFunction);
/**
* A Bulk method for merging Maps.
* If the generated value equals the getDefaultReturnValue it will simply not insert it since that is treated as "null".
* A "Null Value" will be treated as "Do not insert/remove" based on how the Java has specified it.
* @param m the entries that should be bulk added
* @param mappingFunction the operator that should generate the new Value
* @note if the result matches the default return value then the key is removed from the map
@@ -384,13 +490,19 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return VALUE_TO_OBJ(replace(OBJ_TO_KEY(key), OBJ_TO_VALUE(value)));
}
#endif
@Override
public default VALUE_TYPE APPLY(KEY_TYPE key) {
return GET_VALUE(key);
}
/**
* A Type Specific get method to reduce boxing/unboxing
* @param key the key that is searched for
* @return the searched value or default return value
*/
@Override
public VALUE_TYPE GET_VALUE(KEY_TYPE key);
#if !TYPE_OBJECT || !VALUE_OBJECT
/**
* A Type Specific getOrDefault method to reduce boxing/unboxing
* @param key the key that is searched for
@@ -485,7 +597,7 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
*/
public ObjectSet<Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET();
#if !TYPE_BOOLEAN
#if MAPS_FEATURE
/**
* Creates a Wrapped Map that is Synchronized
* @return a new Map that is synchronized
@@ -638,6 +750,7 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
}
#endif
#if MAP_FEATURE
/**
* Helper function to unify code
* @Type(T)
@@ -711,6 +824,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return new HASH_MAPKV_BRACES(map);
}
#endif
#if LINKED_MAP_FEATURE
/**
* Helper function to unify code
* @Type(T)
@@ -784,6 +899,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return new IMMUTABLE_HASH_MAPKV_BRACES(map);
}
#endif
#if IMMUTABLE_MAP_FEATURE
/**
* Helper function to unify code
* @param keys the keys that should be inserted
@@ -836,7 +953,9 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return new IMMUTABLE_HASH_MAPKV_BRACES(map);
}
#endif
#if TYPE_OBJECT
#if ENUM_MAP_FEATURE
/**
* Helper function to unify code
* @param keyType the EnumClass that should be used
@@ -904,6 +1023,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return new ENUM_MAPKV_BRACES(map);
}
#endif
#if LINKED_ENUM_MAP_FEATURE
/**
* Helper function to unify code
* @param keyType the EnumClass that should be used
@@ -970,7 +1091,10 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
public GENERIC_KEY_ENUM_VALUE_BRACES LINKED_ENUM_MAP KEY_VALUE_GENERIC_TYPE linkedEnumMap(MAP KEY_VALUE_GENERIC_TYPE map) {
return new LINKED_ENUM_MAPKV_BRACES(map);
}
#endif
#endif
#if CUSTOM_MAP_FEATURE
/**
* Helper function to unify code
* @param strategy the Hash Controller
@@ -1050,6 +1174,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return new CUSTOM_HASH_MAPKV_BRACES(map, strategy);
}
#endif
#if LINKED_CUSTOM_MAP_FEATURE
/**
* Helper function to unify code
* @param strategy the Hash Controller
@@ -1129,6 +1255,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return new LINKED_CUSTOM_HASH_MAPKV_BRACES(map, strategy);
}
#endif
#if ARRAY_MAP_FEATURE
/**
* Helper function to unify code
* @Type(T)
@@ -1202,7 +1330,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return new ARRAY_MAPKV_BRACES(map);
}
#endif
#if RB_TREE_MAP_FEATURE
/**
* Helper function to unify code
* @Type(T)
@@ -1280,6 +1409,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return new RB_TREE_MAPKV_BRACES(map, comp);
}
#endif
#if AVL_TREE_MAP_FEATURE
/**
* Helper function to unify code
* @Type(T)
@@ -1356,6 +1487,7 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
public GENERIC_KEY_VALUE_BRACES AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE avlTreeMap(Map<? extends CLASS_TYPE, ? extends CLASS_VALUE_TYPE> map, COMPARATOR KEY_GENERIC_TYPE comp) {
return new AVL_TREE_MAPKV_BRACES(map, comp);
}
#endif
}
/**
@@ -1434,7 +1566,11 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
* @return self
*/
public BuilderCache KEY_VALUE_GENERIC_TYPE putAll(MAP KEY_VALUE_GENERIC_TYPE map) {
#if MAPS_FEATURE
return putAll(MAPS.fastIterable(map));
#else
return putAll(map.ENTRY_SET());
#endif
}
/**
@@ -1463,11 +1599,14 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return this;
}
#if MAP_FEATURE || LINKED_MAP_FEATURE || CUSTOM_MAP_FEATURE || LINKED_CUSTOM_MAP_FEATURE || AVL_TREE_MAP_FEATURE || RB_TREE_MAP_FEATURE || CONCURRENT_MAP_FEATURE
private <E extends MAP KEY_VALUE_GENERIC_TYPE> E putElements(E e){
e.putAll(keys, values, 0, size);
return e;
}
#endif
#if MAP_FEATURE
/**
* Builds the Keys and Values into a Hash Map
* @return a HASH_MAP
@@ -1476,6 +1615,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return putElements(new HASH_MAPKV_BRACES(size));
}
#endif
#if LINKED_MAP_FEATURE
/**
* Builds the Keys and Values into a Linked Hash Map
* @return a LINKED_HASH_MAP
@@ -1484,6 +1625,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return putElements(new LINKED_HASH_MAPKV_BRACES(size));
}
#endif
#if IMMUTABLE_MAP_FEATURE
/**
* Builds the Keys and Values into a Immutable Hash Map
* @return a IMMUTABLE_HASH_MAP
@@ -1492,6 +1635,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return new IMMUTABLE_HASH_MAPKV_BRACES(Arrays.copyOf(keys, size), Arrays.copyOf(values, size));
}
#endif
#if CUSTOM_MAP_FEATURE
/**
* Builds the Keys and Values into a Custom Hash Map
* @param strategy the that controls the keys and values
@@ -1501,6 +1646,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return putElements(new CUSTOM_HASH_MAPKV_BRACES(size, strategy));
}
#endif
#if LINKED_CUSTOM_MAP_FEATURE
/**
* Builds the Keys and Values into a Linked Custom Hash Map
* @param strategy the that controls the keys and values
@@ -1510,6 +1657,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return putElements(new LINKED_CUSTOM_HASH_MAPKV_BRACES(size, strategy));
}
#endif
#if CONCURRENT_MAP_FEATURE
/**
* Builds the Keys and Values into a Concurrent Hash Map
* @return a CONCURRENT_HASH_MAP
@@ -1518,6 +1667,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return putElements(new CONCURRENT_HASH_MAPKV_BRACES(size));
}
#endif
#if ARRAY_MAP_FEATURE
/**
* Builds the Keys and Values into a Array Map
* @return a ARRAY_MAP
@@ -1526,6 +1677,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return new ARRAY_MAPKV_BRACES(keys, values, size);
}
#endif
#if RB_TREE_MAP_FEATURE
/**
* Builds the Keys and Values into a RedBlack TreeMap
* @return a RB_TREE_MAP
@@ -1543,6 +1696,8 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
return putElements(new RB_TREE_MAPKV_BRACES(comp));
}
#endif
#if AVL_TREE_MAP_FEATURE
/**
* Builds the Keys and Values into a AVL TreeMap
* @return a AVL_TREE_MAP
@@ -1559,6 +1714,7 @@ public interface MAP KEY_VALUE_GENERIC_TYPE extends Map<CLASS_TYPE, CLASS_VALUE_
public AVL_TREE_MAP KEY_VALUE_GENERIC_TYPE avlTreeMap(COMPARATOR KEY_GENERIC_TYPE comp) {
return putElements(new AVL_TREE_MAPKV_BRACES(comp));
}
#endif
}
#endif
}
@@ -2,7 +2,9 @@ package speiger.src.collections.PACKAGE.maps.interfaces;
import java.util.NavigableMap;
import speiger.src.collections.PACKAGE.sets.NAVIGABLE_SET;
#if MAPS_FEATURE
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
#endif
/**
* A Type Specific Navigable Map interface with a couple helper methods
@@ -37,6 +39,8 @@ public interface NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE extends SORTED_MAP KEY_VAL
/** @return a Type Specific Navigable Key Set */
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE keySet();
#if MAPS_FEATURE
/**
* Creates a Wrapped NavigableMap that is Synchronized
* @return a new NavigableMap that is synchronized
@@ -59,6 +63,7 @@ public interface NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE extends SORTED_MAP KEY_VAL
*/
public default NAVIGABLE_MAP KEY_VALUE_GENERIC_TYPE unmodifiable() { return MAPS.unmodifiable(this); }
#endif
#if !TYPE_OBJECT
/**
* A Type Specific SubMap method to reduce boxing/unboxing
@@ -1,6 +1,15 @@
package speiger.src.collections.PACKAGE.maps.interfaces;
#if JAVA_VERSION>=21
import java.util.Map;
import java.util.SequencedMap;
#endif
#if MAPS_FEATURE
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
#endif
import speiger.src.collections.PACKAGE.maps.abstracts.ABSTRACT_MAP;
import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_ORDERED_COLLECTION;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.sets.ORDERED_SET;
#endif
@@ -15,7 +24,11 @@ import speiger.src.collections.objects.sets.ObjectOrderedSet;
* @Type(T)
* @ValueType(V)
*/
#if JAVA_VERSION>=21
public interface ORDERED_MAP KEY_VALUE_GENERIC_TYPE extends MAP KEY_VALUE_GENERIC_TYPE, SequencedMap<CLASS_TYPE, CLASS_VALUE_TYPE>
#else
public interface ORDERED_MAP KEY_VALUE_GENERIC_TYPE extends MAP KEY_VALUE_GENERIC_TYPE
#endif
{
/**
* A customized put method that allows you to insert into the first index.
@@ -35,6 +48,26 @@ public interface ORDERED_MAP KEY_VALUE_GENERIC_TYPE extends MAP KEY_VALUE_GENERI
*/
public VALUE_TYPE putAndMoveToLast(KEY_TYPE key, VALUE_TYPE value);
/**
* A alternative to putAndMoveToFirst.
* This method simply puts an entry at the first spot of the Map but only if the entry is missing.
* @param key the key that should be inserted
* @param value the value that should be inserted
* @return the previous present or default return value
* @see java.util.Map#put(Object, Object)
*/
public VALUE_TYPE putFirst(KEY_TYPE key, VALUE_TYPE value);
/**
* A alternative to putAndMoveToLast.
* This method simply puts an entry at the last spot of the Map but only if the entry is missing.
* @param key the key that should be inserted
* @param value the value that should be inserted
* @return the previous present or default return value
* @see java.util.Map#put(Object, Object)
*/
public VALUE_TYPE putLast(KEY_TYPE key, VALUE_TYPE value);
/**
* A specific move method to move a given key/value to the first index.
* @param key that should be moved to the first index
@@ -95,13 +128,35 @@ public interface ORDERED_MAP KEY_VALUE_GENERIC_TYPE extends MAP KEY_VALUE_GENERI
*/
public VALUE_TYPE LAST_ENTRY_VALUE();
@Java21
public MAP.Entry KEY_VALUE_GENERIC_TYPE firstEntry();
@Java21
public MAP.Entry KEY_VALUE_GENERIC_TYPE lastEntry();
@Java21
public MAP.Entry KEY_VALUE_GENERIC_TYPE pollFirstEntry();
@Java21
public MAP.Entry KEY_VALUE_GENERIC_TYPE pollLastEntry();
@Override
public ORDERED_MAP KEY_VALUE_GENERIC_TYPE copy();
@Override
public ORDERED_SET KEY_GENERIC_TYPE keySet();
@Override
public VALUE_ORDERED_COLLECTION VALUE_GENERIC_TYPE values();
@Override
public ObjectOrderedSet<MAP.Entry KEY_VALUE_GENERIC_TYPE> ENTRY_SET();
@Java21
public default ORDERED_MAP KEY_VALUE_GENERIC_TYPE reversed() { return new ABSTRACT_MAP.REVERSED_ORDERED_MAPKV_BRACES(this); }
#if JAVA_VERSION>=21
@Override
default ORDERED_SET KEY_GENERIC_TYPE sequencedKeySet() { return keySet(); }
@Override
default VALUE_ORDERED_COLLECTION VALUE_GENERIC_TYPE sequencedValues() { return values(); }
@Override
default ObjectOrderedSet<Map.Entry<CLASS_TYPE, CLASS_VALUE_TYPE>> sequencedEntrySet() { return (ObjectOrderedSet<Map.Entry<CLASS_TYPE, CLASS_VALUE_TYPE>>)(Object)ENTRY_SET(); }
#endif
#if MAPS_FEATURE
/**
* Creates a Wrapped SortedMap that is Synchronized
* @return a new SortedMap that is synchronized
@@ -127,6 +182,23 @@ public interface ORDERED_MAP KEY_VALUE_GENERIC_TYPE extends MAP KEY_VALUE_GENERI
@Override
public default ORDERED_MAP KEY_VALUE_GENERIC_TYPE unmodifiable() { return MAPS.unmodifiable(this); }
#endif
#if JAVA_VERSION>=21
#if !SAME_TYPE || !TYPE_OBJECT
@Override
@Deprecated
public default CLASS_VALUE_TYPE putFirst(CLASS_TYPE k, CLASS_VALUE_TYPE v) {
return putFirst(OBJ_TO_KEY(k), OBJ_TO_VALUE(v));
}
@Override
@Deprecated
public default CLASS_VALUE_TYPE putLast(CLASS_TYPE k, CLASS_VALUE_TYPE v) {
return putLast(OBJ_TO_KEY(k), OBJ_TO_VALUE(v));
}
#endif
#endif
/**
* Fast Ordered Entry Set that allows for a faster Entry Iterator by recycling the Entry Object and just exchanging 1 internal value
* @Type(T)
@@ -10,7 +10,9 @@ import speiger.src.collections.VALUE_PACKAGE.collections.VALUE_COLLECTION;
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#endif
import speiger.src.collections.PACKAGE.sets.SORTED_SET;
#if MAPS_FEATURE
import speiger.src.collections.PACKAGE.utils.maps.MAPS;
#endif
#if !TYPE_OBJECT
import speiger.src.collections.objects.sets.ObjectSortedSet;
#endif
@@ -37,6 +39,7 @@ public interface SORTED_MAP KEY_VALUE_GENERIC_TYPE extends SortedMap<CLASS_TYPE,
@Override
public VALUE_COLLECTION VALUE_GENERIC_TYPE values();
#if MAPS_FEATURE
/**
* Creates a Wrapped SortedMap that is Synchronized
* @return a new SortedMap that is synchronized
@@ -59,6 +62,7 @@ public interface SORTED_MAP KEY_VALUE_GENERIC_TYPE extends SortedMap<CLASS_TYPE,
*/
public default SORTED_MAP KEY_VALUE_GENERIC_TYPE unmodifiable() { return MAPS.unmodifiable(this); }
#endif
#if !TYPE_OBJECT
/**
* A Type Specific SubMap method to reduce boxing/unboxing
@@ -1,7 +1,12 @@
package speiger.src.collections.PACKAGE.misc.pairs;
#if IMMUTABLE_PAIR
import speiger.src.collections.PACKAGE.misc.pairs.impl.IMMUTABLE_PAIR;
#endif
#if MUTABLE_PAIR
import speiger.src.collections.PACKAGE.misc.pairs.impl.MUTABLE_PAIR;
#endif
/**
* Key Value Pair Interface that allows to reduce boxing/unboxing.
* @Type(T)
@@ -9,6 +14,7 @@ import speiger.src.collections.PACKAGE.misc.pairs.impl.MUTABLE_PAIR;
*/
public interface PAIR KEY_VALUE_GENERIC_TYPE
{
#if IMMUTABLE_PAIR
/**
* Empty Reference for Immutable Pairs
*/
@@ -68,6 +74,8 @@ public interface PAIR KEY_VALUE_GENERIC_TYPE
return new IMMUTABLE_PAIRKV_BRACES(pair.ENTRY_KEY(), pair.ENTRY_VALUE());
}
#endif
#if MUTABLE_PAIR
/**
* @Type(T)
* @ValueType(V)
@@ -118,6 +126,7 @@ public interface PAIR KEY_VALUE_GENERIC_TYPE
return new MUTABLE_PAIRKV_BRACES(pair.ENTRY_KEY(), pair.ENTRY_VALUE());
}
#endif
/**
* Sets the Key of the Pair.
* @param key the key that should be set.
@@ -1,46 +1,46 @@
package speiger.src.collections.PACKAGE.queues;
#if TYPE_OBJECT
import java.util.Objects;
#endif
import java.util.StringJoiner;
/**
* Helper class that implements all the essential methods for the PriorityQueues
* @Type(T)
*/
public abstract class ABSTRACT_PRIORITY_QUEUE KEY_GENERIC_TYPE implements PRIORITY_QUEUE KEY_GENERIC_TYPE
{
@Override
public boolean equals(Object obj) {
if(obj instanceof PRIORITY_QUEUE) {
PRIORITY_QUEUE KEY_GENERIC_TYPE queue = (PRIORITY_QUEUE KEY_GENERIC_TYPE)obj;
if(queue.size() != size()) return false;
for(int i = 0,m=size();i<m;i++) {
if(KEY_EQUALS_NOT(queue.peek(i), peek(i))) return false;
}
return true;
}
return false;
}
@Override
public int hashCode() {
int result = 1;
for (int i = 0,m=size();i<m;i++) {
result = 31 * result + KEY_TO_HASH(peek(i));
}
return result;
}
@Override
public String toString()
{
if(isEmpty()) return "[]";
StringJoiner joiner = new StringJoiner(", ", "[", "]");
for (int i = 0,m=size();i<m;i++) {
joiner.add(KEY_TO_STRING(peek(i)));
}
return joiner.toString();
}
}
package speiger.src.collections.PACKAGE.queues;
#if TYPE_OBJECT
import java.util.Objects;
#endif
import java.util.StringJoiner;
/**
* Helper class that implements all the essential methods for the PriorityQueues
* @Type(T)
*/
public abstract class ABSTRACT_PRIORITY_QUEUE KEY_GENERIC_TYPE implements PRIORITY_QUEUE KEY_GENERIC_TYPE
{
@Override
public boolean equals(Object obj) {
if(obj instanceof PRIORITY_QUEUE) {
PRIORITY_QUEUE KEY_GENERIC_TYPE queue = (PRIORITY_QUEUE KEY_GENERIC_TYPE)obj;
if(queue.size() != size()) return false;
for(int i = 0,m=size();i<m;i++) {
if(KEY_EQUALS_NOT(queue.peek(i), peek(i))) return false;
}
return true;
}
return false;
}
@Override
public int hashCode() {
int result = 1;
for (int i = 0,m=size();i<m;i++) {
result = 31 * result + KEY_TO_HASH(peek(i));
}
return result;
}
@Override
public String toString()
{
if(isEmpty()) return "[]";
StringJoiner joiner = new StringJoiner(", ", "[", "]");
for (int i = 0,m=size();i<m;i++) {
joiner.add(KEY_TO_STRING(peek(i)));
}
return joiner.toString();
}
}
@@ -1,444 +1,523 @@
package speiger.src.collections.PACKAGE.queues;
import java.util.Arrays;
#if TYPE_OBJECT
import java.util.Comparator;
import java.util.function.Consumer;
import java.util.function.BiFunction;
#endif
import java.util.Objects;
import java.util.NoSuchElementException;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
import speiger.src.collections.PACKAGE.functions.CONSUMER;
#endif
import speiger.src.collections.objects.functions.consumer.BI_FROM_OBJECT_CONSUMER;
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
import speiger.src.collections.utils.ITrimmable;
/**
* A Simple First In First Out Priority Queue that is a Good Replacement for a linked list (or ArrayDequeue)
* Its specific implementation uses a backing array that grows and shrinks as it is needed.
* @Type(T)
*/
public class ARRAY_FIFO_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEUE KEY_GENERIC_TYPE implements PRIORITY_DEQUEUE KEY_GENERIC_TYPE, ITrimmable
{
/** Max Possible ArraySize without the JVM Crashing */
private static final int MAX_ARRAY_SIZE = Integer.MAX_VALUE - 8;
/** The Minimum Capacity that is allowed */
public static final int MIN_CAPACITY = 4;
/** The Backing array */
protected transient KEY_TYPE[] array;
/** The First Index pointer */
protected int first;
/** The Last Index pointer */
protected int last;
/** The Minimum Capacity of the Queue **/
protected int minCapacity;
/**
* Constructor using a initial array
* @param values the Array that should be used
*/
public ARRAY_FIFO_QUEUE(KEY_TYPE[] values) {
this(values, 0, values.length);
}
/**
* Constructor using a initial array
* @param values the Array that should be used
* @param size the amount of elements that are in the initial array
* @throws IllegalStateException if values is smaller then size
*/
public ARRAY_FIFO_QUEUE(KEY_TYPE[] values, int size) {
this(values, 0, size);
}
/**
* Constructor using a initial array
* @param values the Array that should be used
* @param offset where to begin in the initial array
* @param size the amount of elements that are in the initial array
* @throws IllegalStateException if values is smaller then size
*/
public ARRAY_FIFO_QUEUE(KEY_TYPE[] values, int offset, int size) {
if (values.length < size) throw new IllegalArgumentException("Initial array (" + values.length + ") is smaller then the expected size (" + size + ")");
if(values.length <= 0) values = NEW_KEY_ARRAY(MIN_CAPACITY);
else if(values.length < MIN_CAPACITY) values = Arrays.copyOf(values, MIN_CAPACITY);
minCapacity = MIN_CAPACITY;
array = values;
first = offset;
last = (offset + size) % array.length;
if(array.length == size) expand();
}
/**
* Constructor with a Min Capacity
* @param capacity the initial capacity of the backing array
* @throws IllegalStateException if the initial size is smaller 0
*/
public ARRAY_FIFO_QUEUE(int capacity) {
if (capacity < 0) throw new IllegalArgumentException("Initial capacity (" + capacity + ") is negative");
array = NEW_KEY_ARRAY(Math.max(MIN_CAPACITY, capacity+1));
minCapacity = array.length;
}
/**
* Default Construtor
*/
public ARRAY_FIFO_QUEUE() {
this(MIN_CAPACITY);
}
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() {
return new Iter();
}
@Override
public int size() {
final int apparentLength = last - first;
return apparentLength >= 0 ? apparentLength : array.length + apparentLength;
}
@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) {
array[last++] = e;
if(last == array.length) last = 0;
if(last == first) expand();
}
@Override
public void enqueueFirst(KEY_TYPE e) {
if(first == 0) first = array.length;
array[--first] = e;
if(first == last) expand();
}
@Override
public KEY_TYPE dequeue() {
if(first == last) throw new NoSuchElementException();
KEY_TYPE data = array[first];
#if TYPE_OBJECT
array[first] = null;
#endif
if(++first == array.length) first = 0;
reduce();
return data;
}
@Override
public KEY_TYPE dequeueLast() {
if(first == last) throw new NoSuchElementException();
if(last == 0) last = array.length;
KEY_TYPE data = array[--last];
#if TYPE_OBJECT
array[last] = null;
#endif
reduce();
return data;
}
@Override
public KEY_TYPE peek(int index) {
if(first == last || index < 0 || index >= size()) throw new NoSuchElementException();
index += first;
return index >= array.length ? array[index-array.length] : array[index];
}
@Override
public boolean removeFirst(KEY_TYPE e) {
if(first == last) return false;
for(int i = 0,m=size();i<m;i++) {
int index = (first + i) % array.length;
if(e == array[index])
return removeIndex(index);
}
return false;
}
@Override
public boolean removeLast(KEY_TYPE e) {
if(first == last) return false;
for(int i = size()-1;i>=0;i--) {
int index = (first + i) % array.length;
if(e == array[index])
return removeIndex(index);
}
return false;
}
protected boolean removeIndex(int index) {
if(first >= last ? index < first && index > last : index < first || index > last) return false;
if(index == first) {
#if TYPE_OBJECT
array[first] = null;
#endif
first++;
}
else if(index == last) {
last--;
#if TYPE_OBJECT
array[last] = null;
#endif
}
else if(index > last) {
System.arraycopy(array, first, array, first+1, (index - first));
#if TYPE_OBJECT
array[first] = null;
#endif
first = ++first % array.length;
}
else if(index < first) {
System.arraycopy(array, index+1, array, index, (last - index) - 1);
#if TYPE_OBJECT
array[last] = null;
#endif
if(--last < 0) last += array.length;
}
else {
if(index - first < last - index) {
System.arraycopy(array, first, array, first+1, (index - first));
#if TYPE_OBJECT
array[first] = null;
#endif
first = ++first % array.length;
}
else {
System.arraycopy(array, index+1, array, index, (last - index) - 1);
#if TYPE_OBJECT
array[last] = null;
#endif
if(--last < 0) last += array.length;
}
}
reduce();
return true;
}
@Override
public void onChanged() {}
@Override
public ARRAY_FIFO_QUEUE KEY_GENERIC_TYPE copy() {
ARRAY_FIFO_QUEUE KEY_GENERIC_TYPE queue = new ARRAY_FIFO_QUEUEBRACES();
queue.first = first;
queue.last = last;
queue.minCapacity = minCapacity;
queue.array = Arrays.copyOf(array, array.length);
return queue;
}
@Override
public COMPARATOR KEY_SUPER_GENERIC_TYPE comparator() { return null; }
@Override
public void forEach(CONSUMER KEY_SUPER_GENERIC_TYPE action) {
Objects.requireNonNull(action);
if(first == last) return;
for(int i = 0,m=size();i<m;i++)
action.accept(array[(first + i) % array.length]);
clearAndTrim(0);
}
@Override
public <E> void forEach(E input, BI_FROM_OBJECT_CONSUMER KSK_GENERIC_TYPE<E> action) {
Objects.requireNonNull(action);
if(first == last) return;
for(int i = 0,m=size();i<m;i++)
action.accept(input, array[(first + i) % array.length]);
clearAndTrim(0);
}
@Override
public boolean matchesAny(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=size();i<m;i++) {
if(filter.TEST_VALUE(array[(first + i) % array.length])) return true;
}
return false;
}
@Override
public boolean matchesNone(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=size();i<m;i++) {
if(filter.TEST_VALUE(array[(first + i) % array.length])) return false;
}
return true;
}
@Override
public boolean matchesAll(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=size();i<m;i++) {
if(!filter.TEST_VALUE(array[(first + i) % array.length])) return false;
}
return true;
}
@Override
public KEY_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=size();i<m;i++) {
int index = (first + i) % array.length;
if(filter.TEST_VALUE(array[index])) {
KEY_TYPE data = array[index];
removeIndex(index);
return data;
}
}
return EMPTY_VALUE;
}
#if !TYPE_OBJECT
@Override
public KEY_TYPE reduce(KEY_TYPE identity, UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = identity;
for(int i = 0,m=size();i<m;i++) {
state = operator.APPLY_VALUE(state, array[(first + i) % array.length]);
}
return state;
}
#else
@Override
public <KEY_SPECIAL_TYPE> KEY_SPECIAL_TYPE reduce(KEY_SPECIAL_TYPE identity, BiFunction<KEY_SPECIAL_TYPE, KEY_TYPE, KEY_SPECIAL_TYPE> operator) {
Objects.requireNonNull(operator);
KEY_SPECIAL_TYPE state = identity;
for(int i = 0,m=size();i<m;i++) {
state = operator.APPLY_VALUE(state, array[(first + i) % array.length]);
}
return state;
}
#endif
@Override
public KEY_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = EMPTY_VALUE;
boolean empty = true;
for(int i = 0,m=size();i<m;i++) {
if(empty) {
empty = false;
state = array[(first + i) % array.length];
continue;
}
state = operator.APPLY_VALUE(state, array[(first + i) % array.length]);
}
return state;
}
@Override
public int count(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
int result = 0;
for(int i = 0,m=size();i<m;i++) {
if(filter.TEST_VALUE(array[(first + i) % array.length])) result++;
}
return result;
}
@Override
public boolean trim(int size) {
int newSize = Math.max(Math.max(size, size()), minCapacity);
if(newSize >= array.length) return false;
KEY_TYPE[] newArray = NEW_KEY_ARRAY(newSize);
if(first <= last) System.arraycopy(array, first, newArray, 0, last - first);
else {
System.arraycopy(array, first, newArray, 0, array.length - first);
System.arraycopy(array, 0, newArray, array.length - first, last);
}
first = 0;
last = size();
array = newArray;
return true;
}
/**
* Trims the collection down to the requested size and clears all elements while doing so
* @param size the amount of elements that should be allowed
* @note this will enforce minimum size of the collection itself
*/
@Override
public void clearAndTrim(int size) {
int newSize = Math.max(minCapacity, size);
if(array.length <= newSize) {
clear();
return;
}
first = last = 0;
array = NEW_KEY_ARRAY(newSize);
}
@Override
public GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY(KEY_SPECIAL_TYPE[] input) {
if(input == null || input.length < size()) input = NEW_SPECIAL_KEY_ARRAY(size());
if (first <= last) System.arraycopy(array, first, input, 0, last - first);
else {
System.arraycopy(array, first, input, 0, array.length - first);
System.arraycopy(array, 0, input, array.length - first, last);
}
return input;
}
protected void reduce() {
final int size = size();
if (array.length > minCapacity && size <= array.length / 4) resize(size, Math.max(array.length / 2, minCapacity));
}
protected void expand() {
resize(array.length, (int)Math.min(MAX_ARRAY_SIZE, 2L * array.length));
}
protected final void resize(int oldSize, int newSize) {
KEY_TYPE[] newArray = NEW_KEY_ARRAY(newSize);
if(first >= last) {
if(oldSize != 0)
{
System.arraycopy(array, first, newArray, 0, array.length - first);
System.arraycopy(array, 0, newArray, array.length - first, last);
}
}
else System.arraycopy(array, first, newArray, 0, last-first);
first = 0;
last = oldSize;
array = newArray;
}
private class Iter implements ITERATOR KEY_GENERIC_TYPE
{
int index = first;
@Override
public boolean hasNext()
{
return index != last;
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
KEY_TYPE value = array[index];
removeIndex(index);
index = ++index % array.length;
return value;
}
}
package speiger.src.collections.PACKAGE.queues;
import java.util.Arrays;
#if TYPE_OBJECT
import java.util.Comparator;
import java.util.function.Consumer;
import java.util.function.BiFunction;
#endif
import java.util.Objects;
#if JDK_TYPE
import java.util.OPTIONAL;
#if SPLIT_ITERATOR_FEATURE && STREAM_FEATURE
#if !TYPE_OBJECT
import java.util.stream.JAVA_STREAM;
#else
import java.util.stream.Stream;
import java.util.stream.Collector;
#endif
#endif
#endif
import java.util.NoSuchElementException;
#if JDK_FUNCTION
import java.util.function.PREDICATE;
#endif
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if !JDK_TYPE
import speiger.src.collections.PACKAGE.functions.OPTIONAL;
#endif
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
import speiger.src.collections.PACKAGE.functions.CONSUMER;
#endif
import speiger.src.collections.ints.functions.consumer.BI_FROM_INT_CONSUMER;
import speiger.src.collections.objects.functions.consumer.BI_FROM_OBJECT_CONSUMER;
#if !JDK_FUNCTION
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
#endif
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
import speiger.src.collections.utils.ITrimmable;
/**
* A Simple First In First Out Priority Queue that is a Good Replacement for a linked list (or ArrayDequeue)
* Its specific implementation uses a backing array that grows and shrinks as it is needed.
* @Type(T)
*/
public class ARRAY_FIFO_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEUE KEY_GENERIC_TYPE implements PRIORITY_DEQUEUE KEY_GENERIC_TYPE, ITrimmable
{
/** Max Possible ArraySize without the JVM Crashing */
private static final int MAX_ARRAY_SIZE = Integer.MAX_VALUE - 8;
/** The Minimum Capacity that is allowed */
public static final int MIN_CAPACITY = 4;
/** The Backing array */
protected transient KEY_TYPE[] array;
/** The First Index pointer */
protected int first;
/** The Last Index pointer */
protected int last;
/** The Minimum Capacity of the Queue **/
protected int minCapacity;
/**
* Constructor using a initial array
* @param values the Array that should be used
*/
public ARRAY_FIFO_QUEUE(KEY_TYPE[] values) {
this(values, 0, values.length);
}
/**
* Constructor using a initial array
* @param values the Array that should be used
* @param size the amount of elements that are in the initial array
* @throws IllegalStateException if values is smaller then size
*/
public ARRAY_FIFO_QUEUE(KEY_TYPE[] values, int size) {
this(values, 0, size);
}
/**
* Constructor using a initial array
* @param values the Array that should be used
* @param offset where to begin in the initial array
* @param size the amount of elements that are in the initial array
* @throws IllegalStateException if values is smaller then size
*/
public ARRAY_FIFO_QUEUE(KEY_TYPE[] values, int offset, int size) {
if (values.length < size) throw new IllegalArgumentException("Initial array (" + values.length + ") is smaller then the expected size (" + size + ")");
if(values.length <= 0) values = NEW_KEY_ARRAY(MIN_CAPACITY);
else if(values.length < MIN_CAPACITY) values = Arrays.copyOf(values, MIN_CAPACITY);
minCapacity = MIN_CAPACITY;
array = values;
first = offset;
last = (offset + size) % array.length;
if(array.length == size) expand();
}
/**
* Constructor with a Min Capacity
* @param capacity the initial capacity of the backing array
* @throws IllegalStateException if the initial size is smaller 0
*/
public ARRAY_FIFO_QUEUE(int capacity) {
if (capacity < 0) throw new IllegalArgumentException("Initial capacity (" + capacity + ") is negative");
array = NEW_KEY_ARRAY(Math.max(MIN_CAPACITY, capacity+1));
minCapacity = array.length;
}
/**
* Default Construtor
*/
public ARRAY_FIFO_QUEUE() {
this(MIN_CAPACITY);
}
#if JDK_TYPE && SPLIT_ITERATOR_FEATURE && STREAM_FEATURE
#if TYPE_OBJECT
/**
* Creates a Collector for a ArrayFIFOQueue
* @Type(T)
* @return a collector
*/
public static <T> Collector<T, ARRAY_FIFO_QUEUE<T>, ARRAY_FIFO_QUEUE<T>> toQueue() {
return Collector.of(ARRAY_FIFO_QUEUE::new, ARRAY_FIFO_QUEUE::enqueue, ARRAY_FIFO_QUEUE::merge);
}
/**
* Collects a Stream to a ArrayFIFOQueue
* @Type(T)
* @return a queue with the contents of the Stream
*/
public static <T> ARRAY_FIFO_QUEUE KEY_GENERIC_TYPE toQueue(Stream<T> stream) {
return stream.collect(ARRAY_FIFO_QUEUE::new, ARRAY_FIFO_QUEUE::enqueue, ARRAY_FIFO_QUEUE::merge);
}
private ARRAY_FIFO_QUEUE<T> merge(ARRAY_FIFO_QUEUE<T> a) {
enqueueAll(a.toArray((T[])new Object[a.size()]));
return this;
}
#else
/**
* Collects a Stream to a ArrayFIFOQueue
* @return a queue with the contents of the Stream
*/
public static ARRAY_FIFO_QUEUE toQueue(JAVA_STREAM stream) {
return stream.collect(ARRAY_FIFO_QUEUE::new, ARRAY_FIFO_QUEUE::enqueue, ARRAY_FIFO_QUEUE::merge);
}
private ARRAY_FIFO_QUEUE merge(ARRAY_FIFO_QUEUE a) {
enqueueAll(a.TO_ARRAY());
return this;
}
#endif
#endif
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() {
return new Iter();
}
@Override
public int size() {
final int apparentLength = last - first;
return apparentLength >= 0 ? apparentLength : array.length + apparentLength;
}
@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) {
array[last++] = e;
if(last == array.length) last = 0;
if(last == first) expand();
}
@Override
public void enqueueFirst(KEY_TYPE e) {
if(first == 0) first = array.length;
array[--first] = e;
if(first == last) expand();
}
@Override
public KEY_TYPE dequeue() {
if(first == last) throw new NoSuchElementException();
KEY_TYPE data = array[first];
#if TYPE_OBJECT
array[first] = null;
#endif
if(++first == array.length) first = 0;
reduce();
return data;
}
@Override
public KEY_TYPE dequeueLast() {
if(first == last) throw new NoSuchElementException();
if(last == 0) last = array.length;
KEY_TYPE data = array[--last];
#if TYPE_OBJECT
array[last] = null;
#endif
reduce();
return data;
}
@Override
public KEY_TYPE peek(int index) {
if(first == last || index < 0 || index >= size()) throw new NoSuchElementException();
index += first;
return index >= array.length ? array[index-array.length] : array[index];
}
@Override
public boolean contains(KEY_TYPE e) {
if(first == last) return false;
for(int i = 0,m=size();i<m;i++) {
if(e == array[(first + i) % array.length]) return true;
}
return false;
}
@Override
public boolean removeFirst(KEY_TYPE e) {
if(first == last) return false;
for(int i = 0,m=size();i<m;i++) {
int index = (first + i) % array.length;
if(e == array[index])
return removeIndex(index);
}
return false;
}
@Override
public boolean removeLast(KEY_TYPE e) {
if(first == last) return false;
for(int i = size()-1;i>=0;i--) {
int index = (first + i) % array.length;
if(e == array[index])
return removeIndex(index);
}
return false;
}
protected boolean removeIndex(int index) {
if(first >= last ? index < first && index > last : index < first || index > last) return false;
if(index == first) {
#if TYPE_OBJECT
array[first] = null;
#endif
first++;
}
else if(index == last) {
last--;
#if TYPE_OBJECT
array[last] = null;
#endif
}
else if(index > last) {
System.arraycopy(array, first, array, first+1, (index - first));
#if TYPE_OBJECT
array[first] = null;
#endif
first = ++first % array.length;
}
else if(index < first) {
System.arraycopy(array, index+1, array, index, (last - index) - 1);
#if TYPE_OBJECT
array[last] = null;
#endif
if(--last < 0) last += array.length;
}
else {
if(index - first < last - index) {
System.arraycopy(array, first, array, first+1, (index - first));
#if TYPE_OBJECT
array[first] = null;
#endif
first = ++first % array.length;
}
else {
System.arraycopy(array, index+1, array, index, (last - index) - 1);
#if TYPE_OBJECT
array[last] = null;
#endif
if(--last < 0) last += array.length;
}
}
reduce();
return true;
}
@Override
public void onChanged() {}
@Override
public ARRAY_FIFO_QUEUE KEY_GENERIC_TYPE copy() {
ARRAY_FIFO_QUEUE KEY_GENERIC_TYPE queue = new ARRAY_FIFO_QUEUEBRACES();
queue.first = first;
queue.last = last;
queue.minCapacity = minCapacity;
queue.array = Arrays.copyOf(array, array.length);
return queue;
}
@Override
public COMPARATOR KEY_SUPER_GENERIC_TYPE comparator() { return null; }
@Override
public void forEach(CONSUMER KEY_SUPER_GENERIC_TYPE action) {
Objects.requireNonNull(action);
if(first == last) return;
for(int i = 0,m=size();i<m;i++)
action.accept(array[(first + i) % array.length]);
clearAndTrim(0);
}
@Override
public void forEachIndexed(BI_FROM_INT_CONSUMER KEY_GENERIC_TYPE action) {
Objects.requireNonNull(action);
if(first == last) return;
for(int i = 0,m=size();i<m;i++)
action.accept(i, array[(first + i) % array.length]);
clearAndTrim(0);
}
@Override
public <E> void forEach(E input, BI_FROM_OBJECT_CONSUMER KSK_GENERIC_TYPE<E> action) {
Objects.requireNonNull(action);
if(first == last) return;
for(int i = 0,m=size();i<m;i++)
action.accept(input, array[(first + i) % array.length]);
clearAndTrim(0);
}
@Override
public boolean matchesAny(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=size();i<m;i++) {
if(filter.test(array[(first + i) % array.length])) return true;
}
return false;
}
@Override
public boolean matchesNone(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=size();i<m;i++) {
if(filter.test(array[(first + i) % array.length])) return false;
}
return true;
}
@Override
public boolean matchesAll(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=size();i<m;i++) {
if(!filter.test(array[(first + i) % array.length])) return false;
}
return true;
}
@Override
public OPTIONAL KEY_GENERIC_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0,m=size();i<m;i++) {
int index = (first + i) % array.length;
if(filter.test(array[index])) {
KEY_TYPE data = array[index];
removeIndex(index);
return OPTIONAL.GET_OPTIONAL(data);
}
}
return OPTIONAL.empty();
}
#if !TYPE_OBJECT
@Override
public KEY_TYPE reduce(KEY_TYPE identity, UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = identity;
for(int i = 0,m=size();i<m;i++) {
state = operator.APPLY_VALUE(state, array[(first + i) % array.length]);
}
return state;
}
#else
@Override
public <KEY_SPECIAL_TYPE> KEY_SPECIAL_TYPE reduce(KEY_SPECIAL_TYPE identity, BiFunction<KEY_SPECIAL_TYPE, KEY_TYPE, KEY_SPECIAL_TYPE> operator) {
Objects.requireNonNull(operator);
KEY_SPECIAL_TYPE state = identity;
for(int i = 0,m=size();i<m;i++) {
state = operator.APPLY_VALUE(state, array[(first + i) % array.length]);
}
return state;
}
#endif
@Override
public OPTIONAL KEY_GENERIC_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = EMPTY_VALUE;
boolean empty = true;
for(int i = 0,m=size();i<m;i++) {
if(empty) {
empty = false;
state = array[(first + i) % array.length];
continue;
}
state = operator.APPLY_VALUE(state, array[(first + i) % array.length]);
}
return empty ? OPTIONAL.empty() : OPTIONAL.GET_OPTIONAL(state);
}
@Override
public int count(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
int result = 0;
for(int i = 0,m=size();i<m;i++) {
if(filter.test(array[(first + i) % array.length])) result++;
}
return result;
}
@Override
public boolean trim(int size) {
int newSize = Math.max(Math.max(size, size()), minCapacity);
if(newSize >= array.length) return false;
KEY_TYPE[] newArray = NEW_KEY_ARRAY(newSize);
if(first <= last) System.arraycopy(array, first, newArray, 0, last - first);
else {
System.arraycopy(array, first, newArray, 0, array.length - first);
System.arraycopy(array, 0, newArray, array.length - first, last);
}
first = 0;
last = size();
array = newArray;
return true;
}
/**
* Trims the collection down to the requested size and clears all elements while doing so
* @param size the amount of elements that should be allowed
* @note this will enforce minimum size of the collection itself
*/
@Override
public void clearAndTrim(int size) {
int newSize = Math.max(minCapacity, size);
if(array.length <= newSize) {
clear();
return;
}
first = last = 0;
array = NEW_KEY_ARRAY(newSize);
}
@Override
public GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY(KEY_SPECIAL_TYPE[] input) {
if(input == null || input.length < size()) input = NEW_SPECIAL_KEY_ARRAY(size());
if (first <= last) System.arraycopy(array, first, input, 0, last - first);
else {
System.arraycopy(array, first, input, 0, array.length - first);
System.arraycopy(array, 0, input, array.length - first, last);
}
return input;
}
protected void reduce() {
final int size = size();
if (array.length > minCapacity && size <= array.length / 4) resize(size, Math.max(array.length / 2, minCapacity));
}
protected void expand() {
resize(array.length, (int)Math.min(MAX_ARRAY_SIZE, 2L * array.length));
}
protected final void resize(int oldSize, int newSize) {
KEY_TYPE[] newArray = NEW_KEY_ARRAY(newSize);
if(first >= last) {
if(oldSize != 0)
{
System.arraycopy(array, first, newArray, 0, array.length - first);
System.arraycopy(array, 0, newArray, array.length - first, last);
}
}
else System.arraycopy(array, first, newArray, 0, last-first);
first = 0;
last = oldSize;
array = newArray;
}
private class Iter implements ITERATOR KEY_GENERIC_TYPE
{
int index = first;
@Override
public boolean hasNext()
{
return index != last;
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
KEY_TYPE value = array[index];
removeIndex(index);
index = ++index % array.length;
return value;
}
}
}
@@ -1,421 +1,501 @@
package speiger.src.collections.PACKAGE.queues;
import java.util.Arrays;
import java.util.NoSuchElementException;
#if TYPE_OBJECT
import java.util.Comparator;
import java.util.function.Consumer;
import java.util.function.BiFunction;
#endif
import java.util.Objects;
import speiger.src.collections.PACKAGE.collections.COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
import speiger.src.collections.PACKAGE.functions.CONSUMER;
#endif
import speiger.src.collections.objects.functions.consumer.BI_FROM_OBJECT_CONSUMER;
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
import speiger.src.collections.PACKAGE.utils.ARRAYS;
import speiger.src.collections.utils.SanityChecks;
/**
* A Array Priority Queue, this is a very unoptimized implementation of the PriorityQueue for very specific usecases.
* It allows for duplicated entries and works like {@link java.util.List#indexOf(Object)} search.
* It is highly suggested to use HeapPriorityQueue otherwise, unless you know why you need this specific implementation
* @Type(T)
*/
public class ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEUE KEY_GENERIC_TYPE
{
/** The Backing Array */
protected transient KEY_TYPE[] array = EMPTY_KEY_ARRAY;
/** The Amount of elements stored within the array */
protected int size;
/** The Last known first index pointer */
protected int firstIndex = -1;
/** The Sorter of the Array */
protected COMPARATOR KEY_SUPER_GENERIC_TYPE comparator;
/**
* Default Constructor
*/
public ARRAY_PRIORITY_QUEUE() {
this(0, null);
}
/**
* Constructor using custom sorter
* @param comp Comparator to sort the Array. Can be null
*/
public ARRAY_PRIORITY_QUEUE(COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this(0, comp);
}
/**
* Constructor with a Min Capacity
* @param size the initial capacity of the backing array
* @throws IllegalStateException if the initial size is smaller 0
*/
public ARRAY_PRIORITY_QUEUE(int size) {
this(size, null);
}
/**
* Constructor with a Min Capacity and custom Sorter
* @param size the initial capacity of the backing array
* @param comp Comparator to sort the Array. Can be null
* @throws IllegalStateException if the initial size is smaller 0
*/
public ARRAY_PRIORITY_QUEUE(int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
if(size < 0) throw new IllegalAccessError("Size has to be 0 or positive");
if(size > 0) array = NEW_KEY_ARRAY(size);
comparator = comp;
}
/**
* Constructor using a initial array
* @param array the Array that should be used
*/
public ARRAY_PRIORITY_QUEUE(KEY_TYPE[] array) {
this(array, array.length);
}
/**
* Constructor using a initial array
* @param array the Array that should be used
* @param size the amount of elements found within the array
* @throws NegativeArraySizeException if size is smaller then 0
*/
public ARRAY_PRIORITY_QUEUE(KEY_TYPE[] array, int size) {
this.array = Arrays.copyOf(array, size);
this.size = size;
}
/**
* Constructor using a initial array and a custom sorter
* @param array the Array that should be used
* @param comp Comparator to sort the Array. Can be null
*/
public ARRAY_PRIORITY_QUEUE(KEY_TYPE[] array, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this(array, array.length, comp);
}
/**
* Constructor using a initial array and a custom sorter
* @param array the Array that should be used
* @param size the amount of elements found within the array
* @param comp Comparator to sort the Array. Can be null
* @throws NegativeArraySizeException if size is smaller then 0
*/
public ARRAY_PRIORITY_QUEUE(KEY_TYPE[] array, int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this.array = Arrays.copyOf(array, size);
this.size = size;
this.comparator = comp;
}
/**
* Constructor using a Collection
* @param c the Collection that should be used
*/
public ARRAY_PRIORITY_QUEUE(COLLECTION KEY_GENERIC_TYPE c) {
array = CAST_KEY_ARRAY c.TO_ARRAY();
size = c.size();
}
/**
* Constructor using a Collection and a custom sorter
* @param c the Collection that should be used
* @param comp Comparator to sort the Array. Can be null
*/
public ARRAY_PRIORITY_QUEUE(COLLECTION KEY_GENERIC_TYPE c, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
array = CAST_KEY_ARRAY c.TO_ARRAY();
size = c.size();
comparator = comp;
}
/**
* Wrapping method to help serialization
* @param array the array that should be used
* @Type(T)
* @return a ArrayPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array) {
return wrap(array, array.length);
}
/**
* Wrapping method to help serialization
* @param array the array that should be used
* @param size the amount of elements within the array
* @Type(T)
* @return a ArrayPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, int size) {
ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new ARRAY_PRIORITY_QUEUEBRACES();
queue.array = array;
queue.size = size;
return queue;
}
/**
* Wrapping method to help serialization, using a custom sorter
* @param array the array that should be used
* @param comp Comparator to sort the Array. Can be null
* @Type(T)
* @return a ArrayPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
return wrap(array, array.length, comp);
}
/**
* Wrapping method to help serialization, using a custom sorter
* @param array the array that should be used
* @param size the amount of elements within the array
* @param comp Comparator to sort the Array. Can be null
* @Type(T)
* @return a ArrayPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new ARRAY_PRIORITY_QUEUEBRACES(comp);
queue.array = array;
queue.size = size;
return queue;
}
@Override
public void enqueue(KEY_TYPE e) {
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;
else if(compare > 0) firstIndex = -1;
}
array[size++] = e;
}
@Override
public KEY_TYPE dequeue() {
if(size <= 0) throw new NoSuchElementException();
int index = findFirstIndex();
KEY_TYPE value = array[index];
if(index != --size) System.arraycopy(array, index+1, array, index, size - index);
#if TYPE_OBJECT
array[size] = null;
#endif
firstIndex = -1;
return value;
}
@Override
public KEY_TYPE peek(int index) {
if(index < 0 || index >= size) throw new NoSuchElementException();
return array[index];
}
@Override
public boolean removeFirst(KEY_TYPE e) {
for(int i = 0;i<size;i++)
if(KEY_EQUALS(e, array[i])) return removeIndex(i);
return false;
}
@Override
public boolean removeLast(KEY_TYPE e) {
for(int i = size-1;i>=0;i--)
if(KEY_EQUALS(e, array[i])) return removeIndex(i);
return false;
}
protected boolean removeIndex(int index) {
if(index != --size) System.arraycopy(array, index+1, array, index, size - index);
#if TYPE_OBJECT
array[size] = null;
#endif
if(index == firstIndex) firstIndex = -1;
else if(firstIndex != -1 && index >= firstIndex) firstIndex--;
return true;
}
@Override
public void onChanged() {
firstIndex = -1;
}
@Override
public int size() {
return size;
}
@Override
public void clear() {
#if TYPE_OBJECT
Arrays.fill(array, null);
#endif
size = 0;
}
@Override
public void forEach(CONSUMER KEY_SUPER_GENERIC_TYPE action) {
Objects.requireNonNull(action);
for(int i = 0,m=size;i<m;i++) action.accept(dequeue());
}
@Override
public <E> void forEach(E input, BI_FROM_OBJECT_CONSUMER KSK_GENERIC_TYPE<E> action) {
Objects.requireNonNull(action);
for(int i = 0,m=size;i<m;i++) action.accept(input, dequeue());
}
@Override
public boolean matchesAny(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(array[i])) return true;
}
return false;
}
@Override
public boolean matchesNone(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(array[i])) return false;
}
return true;
}
@Override
public boolean matchesAll(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(!filter.TEST_VALUE(array[i])) return false;
}
return true;
}
#if !TYPE_OBJECT
@Override
public KEY_TYPE reduce(KEY_TYPE identity, UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = identity;
for(int i = 0;i<size;i++) {
state = operator.APPLY_VALUE(state, array[i]);
}
return state;
}
#else
@Override
public <KEY_SPECIAL_TYPE> KEY_SPECIAL_TYPE reduce(KEY_SPECIAL_TYPE identity, BiFunction<KEY_SPECIAL_TYPE, KEY_TYPE, KEY_SPECIAL_TYPE> operator) {
Objects.requireNonNull(operator);
KEY_SPECIAL_TYPE state = identity;
for(int i = 0;i<size;i++) {
state = operator.APPLY_VALUE(state, array[i]);
}
return state;
}
#endif
@Override
public KEY_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = EMPTY_VALUE;
boolean empty = true;
for(int i = 0;i<size;i++) {
if(empty) {
empty = false;
state = array[i];
continue;
}
state = operator.APPLY_VALUE(state, array[i]);
}
return state;
}
@Override
public KEY_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(array[i])) {
KEY_TYPE data = array[i];
removeIndex(i);
return data;
}
}
return EMPTY_VALUE;
}
@Override
public int count(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
int result = 0;
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(array[i])) result++;
}
return result;
}
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() {
return new Iter();
}
@Override
public ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE copy() {
ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new ARRAY_PRIORITY_QUEUEBRACES();
queue.firstIndex = firstIndex;
queue.size = size;
queue.comparator = comparator;
queue.array = Arrays.copyOf(array, array.length);
return queue;
}
@Override
public COMPARATOR KEY_SUPER_GENERIC_TYPE comparator() {
return comparator;
}
@Override
public GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY(KEY_SPECIAL_TYPE[] input) {
if(input == null || input.length < size()) input = NEW_SPECIAL_KEY_ARRAY(size());
System.arraycopy(array, 0, input, 0, size());
return input;
}
protected int findFirstIndex() {
if(firstIndex == -1) {
int index = size-1;
KEY_TYPE value = array[index];
if(comparator == null) {
for(int i = index;i>=0;i--) {
if(COMPAREABLE_TO_KEY(array[i], value) < 0)
value = array[index = i];
}
}
else {
for(int i = index;i>=0;i--) {
if(comparator.compare(array[i], value) < 0)
value = array[index = i];
}
}
firstIndex = index;
}
return firstIndex;
}
private class Iter implements ITERATOR KEY_GENERIC_TYPE {
@Override
public boolean hasNext() {
return !isEmpty();
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return dequeue();
}
}
package speiger.src.collections.PACKAGE.queues;
import java.util.Arrays;
import java.util.NoSuchElementException;
#if TYPE_OBJECT
import java.util.Comparator;
import java.util.function.Consumer;
import java.util.function.BiFunction;
#endif
import java.util.Objects;
#if JDK_TYPE
import java.util.OPTIONAL;
#if SPLIT_ITERATOR_FEATURE && STREAM_FEATURE
#if !TYPE_OBJECT
import java.util.stream.JAVA_STREAM;
#else
import java.util.stream.Stream;
import java.util.stream.Collector;
#endif
#endif
#endif
#if JDK_FUNCTION
import java.util.function.PREDICATE;
#endif
import speiger.src.collections.PACKAGE.collections.COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if !JDK_TYPE
import speiger.src.collections.PACKAGE.functions.OPTIONAL;
#endif
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
import speiger.src.collections.PACKAGE.functions.CONSUMER;
#endif
import speiger.src.collections.ints.functions.consumer.BI_FROM_INT_CONSUMER;
import speiger.src.collections.objects.functions.consumer.BI_FROM_OBJECT_CONSUMER;
#if !JDK_FUNCTION
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
#endif
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
import speiger.src.collections.PACKAGE.utils.ARRAYS;
import speiger.src.collections.utils.SanityChecks;
/**
* A Array Priority Queue, this is a very unoptimized implementation of the PriorityQueue for very specific usecases.
* It allows for duplicated entries and works like {@link java.util.List#indexOf(Object)} search.
* It is highly suggested to use HeapPriorityQueue otherwise, unless you know why you need this specific implementation
* @Type(T)
*/
public class ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEUE KEY_GENERIC_TYPE
{
/** The Backing Array */
protected transient KEY_TYPE[] array = EMPTY_KEY_ARRAY;
/** The Amount of elements stored within the array */
protected int size;
/** The Last known first index pointer */
protected int firstIndex = -1;
/** The Sorter of the Array */
protected COMPARATOR KEY_SUPER_GENERIC_TYPE comparator;
/**
* Default Constructor
*/
public ARRAY_PRIORITY_QUEUE() {
this(0, null);
}
/**
* Constructor using custom sorter
* @param comp Comparator to sort the Array. Can be null
*/
public ARRAY_PRIORITY_QUEUE(COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this(0, comp);
}
/**
* Constructor with a Min Capacity
* @param size the initial capacity of the backing array
* @throws IllegalStateException if the initial size is smaller 0
*/
public ARRAY_PRIORITY_QUEUE(int size) {
this(size, null);
}
/**
* Constructor with a Min Capacity and custom Sorter
* @param size the initial capacity of the backing array
* @param comp Comparator to sort the Array. Can be null
* @throws IllegalStateException if the initial size is smaller 0
*/
public ARRAY_PRIORITY_QUEUE(int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
if(size < 0) throw new IllegalAccessError("Size has to be 0 or positive");
if(size > 0) array = NEW_KEY_ARRAY(size);
comparator = comp;
}
/**
* Constructor using a initial array
* @param array the Array that should be used
*/
public ARRAY_PRIORITY_QUEUE(KEY_TYPE[] array) {
this(array, array.length);
}
/**
* Constructor using a initial array
* @param array the Array that should be used
* @param size the amount of elements found within the array
* @throws NegativeArraySizeException if size is smaller then 0
*/
public ARRAY_PRIORITY_QUEUE(KEY_TYPE[] array, int size) {
this.array = Arrays.copyOf(array, size);
this.size = size;
}
/**
* Constructor using a initial array and a custom sorter
* @param array the Array that should be used
* @param comp Comparator to sort the Array. Can be null
*/
public ARRAY_PRIORITY_QUEUE(KEY_TYPE[] array, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this(array, array.length, comp);
}
/**
* Constructor using a initial array and a custom sorter
* @param array the Array that should be used
* @param size the amount of elements found within the array
* @param comp Comparator to sort the Array. Can be null
* @throws NegativeArraySizeException if size is smaller then 0
*/
public ARRAY_PRIORITY_QUEUE(KEY_TYPE[] array, int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this.array = Arrays.copyOf(array, size);
this.size = size;
this.comparator = comp;
}
/**
* Constructor using a Collection
* @param c the Collection that should be used
*/
public ARRAY_PRIORITY_QUEUE(COLLECTION KEY_GENERIC_TYPE c) {
array = CAST_KEY_ARRAY c.TO_ARRAY();
size = c.size();
}
/**
* Constructor using a Collection and a custom sorter
* @param c the Collection that should be used
* @param comp Comparator to sort the Array. Can be null
*/
public ARRAY_PRIORITY_QUEUE(COLLECTION KEY_GENERIC_TYPE c, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
array = CAST_KEY_ARRAY c.TO_ARRAY();
size = c.size();
comparator = comp;
}
/**
* Wrapping method to help serialization
* @param array the array that should be used
* @Type(T)
* @return a ArrayPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array) {
return wrap(array, array.length);
}
/**
* Wrapping method to help serialization
* @param array the array that should be used
* @param size the amount of elements within the array
* @Type(T)
* @return a ArrayPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, int size) {
ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new ARRAY_PRIORITY_QUEUEBRACES();
queue.array = array;
queue.size = size;
return queue;
}
/**
* Wrapping method to help serialization, using a custom sorter
* @param array the array that should be used
* @param comp Comparator to sort the Array. Can be null
* @Type(T)
* @return a ArrayPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
return wrap(array, array.length, comp);
}
/**
* Wrapping method to help serialization, using a custom sorter
* @param array the array that should be used
* @param size the amount of elements within the array
* @param comp Comparator to sort the Array. Can be null
* @Type(T)
* @return a ArrayPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new ARRAY_PRIORITY_QUEUEBRACES(comp);
queue.array = array;
queue.size = size;
return queue;
}
#if JDK_TYPE && SPLIT_ITERATOR_FEATURE && STREAM_FEATURE
#if TYPE_OBJECT
/**
* Creates a Collector for a ArrayPriorityQueue
* @Type(T)
* @return a collector
*/
public static <T> Collector<T, ARRAY_PRIORITY_QUEUE<T>, ARRAY_PRIORITY_QUEUE<T>> toQueue() {
return Collector.of(ARRAY_PRIORITY_QUEUE::new, ARRAY_PRIORITY_QUEUE::enqueue, ARRAY_PRIORITY_QUEUE::merge);
}
/**
* Collects a Stream to a ArrayPriorityQueue
* @Type(T)
* @return a queue with the contents of the Stream
*/
public static <T> ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE toQueue(Stream<T> stream) {
return stream.collect(ARRAY_PRIORITY_QUEUE::new, ARRAY_PRIORITY_QUEUE::enqueue, ARRAY_PRIORITY_QUEUE::merge);
}
private ARRAY_PRIORITY_QUEUE<T> merge(ARRAY_PRIORITY_QUEUE<T> a) {
enqueueAll(a.toArray((T[])new Object[a.size()]));
return this;
}
#else
/**
* Collects a Stream to a ArrayPriorityQueue
* @return a queue with the contents of the Stream
*/
public static ARRAY_PRIORITY_QUEUE toQueue(JAVA_STREAM stream) {
return stream.collect(ARRAY_PRIORITY_QUEUE::new, ARRAY_PRIORITY_QUEUE::enqueue, ARRAY_PRIORITY_QUEUE::merge);
}
private ARRAY_PRIORITY_QUEUE merge(ARRAY_PRIORITY_QUEUE a) {
enqueueAll(a.TO_ARRAY());
return this;
}
#endif
#endif
@Override
public void enqueue(KEY_TYPE e) {
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;
else if(compare > 0) firstIndex = -1;
}
array[size++] = e;
}
@Override
public KEY_TYPE dequeue() {
if(size <= 0) throw new NoSuchElementException();
int index = findFirstIndex();
KEY_TYPE value = array[index];
if(index != --size) System.arraycopy(array, index+1, array, index, size - index);
#if TYPE_OBJECT
array[size] = null;
#endif
firstIndex = -1;
return value;
}
@Override
public KEY_TYPE first() {
if(isEmpty()) throw new NoSuchElementException();
if(firstIndex == -1) findFirstIndex();
return array[firstIndex];
}
@Override
public KEY_TYPE peek(int index) {
if(index < 0 || index >= size) throw new NoSuchElementException();
return array[index];
}
@Override
public boolean contains(KEY_TYPE e) {
for(int i = 0;i<size;i++)
if(KEY_EQUALS(e, array[i])) return true;
return false;
}
@Override
public boolean removeFirst(KEY_TYPE e) {
for(int i = 0;i<size;i++)
if(KEY_EQUALS(e, array[i])) return removeIndex(i);
return false;
}
@Override
public boolean removeLast(KEY_TYPE e) {
for(int i = size-1;i>=0;i--)
if(KEY_EQUALS(e, array[i])) return removeIndex(i);
return false;
}
protected boolean removeIndex(int index) {
if(index != --size) System.arraycopy(array, index+1, array, index, size - index);
#if TYPE_OBJECT
array[size] = null;
#endif
if(index == firstIndex) firstIndex = -1;
else if(firstIndex != -1 && index >= firstIndex) firstIndex--;
return true;
}
@Override
public void onChanged() {
firstIndex = -1;
}
@Override
public int size() {
return size;
}
@Override
public void clear() {
#if TYPE_OBJECT
Arrays.fill(array, null);
#endif
size = 0;
}
@Override
public void forEach(CONSUMER KEY_SUPER_GENERIC_TYPE action) {
Objects.requireNonNull(action);
for(int i = 0,m=size;i<m;i++) action.accept(dequeue());
}
@Override
public void forEachIndexed(BI_FROM_INT_CONSUMER KEY_GENERIC_TYPE action) {
Objects.requireNonNull(action);
for(int i = 0,m=size;i<m;i++) action.accept(i, dequeue());
}
@Override
public <E> void forEach(E input, BI_FROM_OBJECT_CONSUMER KSK_GENERIC_TYPE<E> action) {
Objects.requireNonNull(action);
for(int i = 0,m=size;i<m;i++) action.accept(input, dequeue());
}
@Override
public boolean matchesAny(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.test(array[i])) return true;
}
return false;
}
@Override
public boolean matchesNone(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.test(array[i])) return false;
}
return true;
}
@Override
public boolean matchesAll(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(!filter.test(array[i])) return false;
}
return true;
}
#if !TYPE_OBJECT
@Override
public KEY_TYPE reduce(KEY_TYPE identity, UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = identity;
for(int i = 0;i<size;i++) {
state = operator.APPLY_VALUE(state, array[i]);
}
return state;
}
#else
@Override
public <KEY_SPECIAL_TYPE> KEY_SPECIAL_TYPE reduce(KEY_SPECIAL_TYPE identity, BiFunction<KEY_SPECIAL_TYPE, KEY_TYPE, KEY_SPECIAL_TYPE> operator) {
Objects.requireNonNull(operator);
KEY_SPECIAL_TYPE state = identity;
for(int i = 0;i<size;i++) {
state = operator.APPLY_VALUE(state, array[i]);
}
return state;
}
#endif
@Override
public OPTIONAL KEY_GENERIC_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = EMPTY_VALUE;
boolean empty = true;
for(int i = 0;i<size;i++) {
if(empty) {
empty = false;
state = array[i];
continue;
}
state = operator.APPLY_VALUE(state, array[i]);
}
return empty ? OPTIONAL.empty() : OPTIONAL.GET_OPTIONAL(state);
}
@Override
public OPTIONAL KEY_GENERIC_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.test(array[i])) {
KEY_TYPE data = array[i];
removeIndex(i);
return OPTIONAL.GET_OPTIONAL(data);
}
}
return OPTIONAL.empty();
}
@Override
public int count(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
int result = 0;
for(int i = 0;i<size;i++) {
if(filter.test(array[i])) result++;
}
return result;
}
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() {
return new Iter();
}
@Override
public ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE copy() {
ARRAY_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new ARRAY_PRIORITY_QUEUEBRACES();
queue.firstIndex = firstIndex;
queue.size = size;
queue.comparator = comparator;
queue.array = Arrays.copyOf(array, array.length);
return queue;
}
@Override
public COMPARATOR KEY_SUPER_GENERIC_TYPE comparator() {
return comparator;
}
@Override
public GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY(KEY_SPECIAL_TYPE[] input) {
if(input == null || input.length < size()) input = NEW_SPECIAL_KEY_ARRAY(size());
System.arraycopy(array, 0, input, 0, size());
return input;
}
protected int findFirstIndex() {
if(firstIndex == -1) {
int index = size-1;
KEY_TYPE value = array[index];
if(comparator == null) {
for(int i = index;i>=0;i--) {
if(COMPAREABLE_TO_KEY(array[i], value) < 0)
value = array[index = i];
}
}
else {
for(int i = index;i>=0;i--) {
if(comparator.compare(array[i], value) < 0)
value = array[index = i];
}
}
firstIndex = index;
}
return firstIndex;
}
private class Iter implements ITERATOR KEY_GENERIC_TYPE {
@Override
public boolean hasNext() {
return !isEmpty();
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return dequeue();
}
}
}
@@ -1,396 +1,470 @@
package speiger.src.collections.PACKAGE.queues;
import java.util.Arrays;
import java.util.NoSuchElementException;
#if TYPE_OBJECT
import java.util.Comparator;
import java.util.function.Consumer;
import java.util.function.BiFunction;
#endif
import java.util.Objects;
import speiger.src.collections.PACKAGE.collections.COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
import speiger.src.collections.PACKAGE.functions.CONSUMER;
#endif
import speiger.src.collections.objects.functions.consumer.BI_FROM_OBJECT_CONSUMER;
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
import speiger.src.collections.PACKAGE.utils.ARRAYS;
import speiger.src.collections.utils.SanityChecks;
/**
* A Simple Heap base Priority Queue implementation
* It is a ArrayBased Alternative to TreeSets that has less object allocations
* @Type(T)
*/
public class HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEUE KEY_GENERIC_TYPE
{
/** The Backing Array */
protected transient KEY_TYPE[] array = EMPTY_KEY_ARRAY;
/** The Amount of elements stored within the array */
protected int size;
/** The Sorter of the Array */
protected COMPARATOR KEY_SUPER_GENERIC_TYPE comparator;
/**
* Default Constructor
*/
public HEAP_PRIORITY_QUEUE() {
this(0, null);
}
/**
* Constructor using custom sorter
* @param comp Comparator to sort the Array. Can be null
*/
public HEAP_PRIORITY_QUEUE(COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this(0, comp);
}
/**
* Constructor with a Min Capacity
* @param size the initial capacity of the backing array
* @throws IllegalStateException if the initial size is smaller 0
*/
public HEAP_PRIORITY_QUEUE(int size) {
this(size, null);
}
/**
* Constructor with a Min Capacity and custom Sorter
* @param size the initial capacity of the backing array
* @param comp Comparator to sort the Array. Can be null
* @throws IllegalStateException if the initial size is smaller 0
*/
public HEAP_PRIORITY_QUEUE(int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
if(size > 0) array = NEW_KEY_ARRAY(size);
comparator = comp;
}
/**
* Constructor using a initial array
* @param array the Array that should be used
*/
public HEAP_PRIORITY_QUEUE(KEY_TYPE[] array) {
this(array, array.length);
}
/**
* Constructor using a initial array
* @param array the Array that should be used
* @param size the amount of elements found within the array
* @throws NegativeArraySizeException if size is smaller then 0
*/
public HEAP_PRIORITY_QUEUE(KEY_TYPE[] array, int size) {
this.array = Arrays.copyOf(array, size);
this.size = size;
ARRAYS.heapify(array, size, null);
}
/**
* Constructor using a initial array and a custom sorter
* @param array the Array that should be used
* @param comp Comparator to sort the Array. Can be null
*/
public HEAP_PRIORITY_QUEUE(KEY_TYPE[] array, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this(array, array.length, comp);
}
/**
* Constructor using a initial array and a custom sorter
* @param array the Array that should be used
* @param size the amount of elements found within the array
* @param comp Comparator to sort the Array. Can be null
* @throws NegativeArraySizeException if size is smaller then 0
*/
public HEAP_PRIORITY_QUEUE(KEY_TYPE[] array, int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this.array = Arrays.copyOf(array, size);
this.size = size;
comparator = comp;
ARRAYS.heapify(array, size, comp);
}
/**
* Constructor using a Collection
* @param c the Collection that should be used
*/
public HEAP_PRIORITY_QUEUE(COLLECTION KEY_GENERIC_TYPE c) {
array = CAST_KEY_ARRAY c.TO_ARRAY();
size = c.size();
ARRAYS.heapify(array, size, null);
}
/**
* Constructor using a Collection and a custom sorter
* @param c the Collection that should be used
* @param comp Comparator to sort the Array. Can be null
*/
public HEAP_PRIORITY_QUEUE(COLLECTION KEY_GENERIC_TYPE c, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
array = CAST_KEY_ARRAY c.TO_ARRAY();
size = c.size();
comparator = comp;
ARRAYS.heapify(array, size, comp);
}
/**
* Wrapping method to help serialization
* @param array the array that should be used
* @Type(T)
* @return a HeapPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array) {
return wrap(array, array.length);
}
/**
* Wrapping method to help serialization
* @param array the array that should be used
* @param size the amount of elements within the array
* @Type(T)
* @return a HeapPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, int size) {
HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new HEAP_PRIORITY_QUEUEBRACES();
queue.array = array;
queue.size = size;
ARRAYS.heapify(array, size, null);
return queue;
}
/**
* Wrapping method to help serialization, using a custom sorter
* @param array the array that should be used
* @param comp Comparator to sort the Array. Can be null
* @Type(T)
* @return a HeapPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
return wrap(array, array.length, comp);
}
/**
* Wrapping method to help serialization, using a custom sorter
* @param array the array that should be used
* @param size the amount of elements within the array
* @param comp Comparator to sort the Array. Can be null
* @Type(T)
* @return a HeapPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new HEAP_PRIORITY_QUEUEBRACES(comp);
queue.array = array;
queue.size = size;
ARRAYS.heapify(array, size, comp);
return queue;
}
@Override
public int size() {
return size;
}
@Override
public void clear() {
#if TYPE_OBJECT
Arrays.fill(array, null);
#endif
size = 0;
}
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() {
return new Iter();
}
@Override
public void enqueue(KEY_TYPE e) {
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);
}
@Override
public KEY_TYPE dequeue() {
if(size <= 0) throw new NoSuchElementException();
KEY_TYPE value = array[0];
array[0] = array[--size];
#if TYPE_OBJECT
array[size] = null;
#endif
if(size != 0) ARRAYS.shiftDown(array, size, 0, comparator);
return value;
}
@Override
public KEY_TYPE peek(int index) {
if(index < 0 || index >= size) throw new NoSuchElementException();
return array[index];
}
@Override
public boolean removeFirst(KEY_TYPE e) {
for(int i = 0;i<size;i++)
if(KEY_EQUALS(e, array[i])) return removeIndex(i);
return false;
}
@Override
public boolean removeLast(KEY_TYPE e) {
for(int i = size-1;i>=0;i--)
if(KEY_EQUALS(e, array[i])) return removeIndex(i);
return false;
}
@Override
public void forEach(CONSUMER KEY_SUPER_GENERIC_TYPE action) {
Objects.requireNonNull(action);
for(int i = 0,m=size;i<m;i++) action.accept(dequeue());
}
@Override
public <E> void forEach(E input, BI_FROM_OBJECT_CONSUMER KSK_GENERIC_TYPE<E> action) {
Objects.requireNonNull(action);
for(int i = 0,m=size;i<m;i++) action.accept(input, dequeue());
}
@Override
public boolean matchesAny(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(array[i])) return true;
}
return false;
}
@Override
public boolean matchesNone(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(array[i])) return false;
}
return true;
}
@Override
public boolean matchesAll(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(!filter.TEST_VALUE(array[i])) return false;
}
return true;
}
#if !TYPE_OBJECT
@Override
public KEY_TYPE reduce(KEY_TYPE identity, UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = identity;
for(int i = 0;i<size;i++) {
state = operator.APPLY_VALUE(state, array[i]);
}
return state;
}
#else
@Override
public <KEY_SPECIAL_TYPE> KEY_SPECIAL_TYPE reduce(KEY_SPECIAL_TYPE identity, BiFunction<KEY_SPECIAL_TYPE, KEY_TYPE, KEY_SPECIAL_TYPE> operator) {
Objects.requireNonNull(operator);
KEY_SPECIAL_TYPE state = identity;
for(int i = 0;i<size;i++) {
state = operator.APPLY_VALUE(state, array[i]);
}
return state;
}
#endif
@Override
public KEY_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = EMPTY_VALUE;
boolean empty = true;
for(int i = 0;i<size;i++) {
if(empty) {
empty = false;
state = array[i];
continue;
}
state = operator.APPLY_VALUE(state, array[i]);
}
return state;
}
@Override
public KEY_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(array[i])) {
KEY_TYPE data = array[i];
removeIndex(i);
return data;
}
}
return EMPTY_VALUE;
}
@Override
public int count(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
int result = 0;
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(array[i])) result++;
}
return result;
}
protected boolean removeIndex(int index) {
array[index] = array[--size];
#if TYPE_OBJECT
array[size] = null;
#endif
if(size != index) ARRAYS.shiftDown(array, size, index, comparator);
return true;
}
@Override
public void onChanged() {
if(size <= 0) return;
ARRAYS.shiftDown(array, size, 0, comparator);
}
@Override
public HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE copy() {
HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new HEAP_PRIORITY_QUEUEBRACES();
queue.size = size;
queue.comparator = comparator;
queue.array = Arrays.copyOf(array, array.length);
return queue;
}
@Override
public COMPARATOR KEY_SUPER_GENERIC_TYPE comparator() {
return comparator;
}
@Override
public GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY(KEY_SPECIAL_TYPE[] input) {
if(input == null || input.length < size()) input = NEW_SPECIAL_KEY_ARRAY(size());
System.arraycopy(array, 0, input, 0, size());
return input;
}
private class Iter implements ITERATOR KEY_GENERIC_TYPE {
@Override
public boolean hasNext() {
return !isEmpty();
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return dequeue();
}
}
package speiger.src.collections.PACKAGE.queues;
import java.util.Arrays;
import java.util.NoSuchElementException;
#if TYPE_OBJECT
import java.util.Comparator;
import java.util.function.Consumer;
import java.util.function.BiFunction;
#endif
import java.util.Objects;
#if JDK_TYPE
import java.util.OPTIONAL;
#if SPLIT_ITERATOR_FEATURE && STREAM_FEATURE
#if !TYPE_OBJECT
import java.util.stream.JAVA_STREAM;
#else
import java.util.stream.Stream;
import java.util.stream.Collector;
#endif
#endif
#endif
#if JDK_FUNCTION
import java.util.function.PREDICATE;
#endif
import speiger.src.collections.PACKAGE.collections.COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if !JDK_TYPE
import speiger.src.collections.PACKAGE.functions.OPTIONAL;
#endif
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
import speiger.src.collections.PACKAGE.functions.CONSUMER;
#endif
import speiger.src.collections.ints.functions.consumer.BI_FROM_INT_CONSUMER;
import speiger.src.collections.objects.functions.consumer.BI_FROM_OBJECT_CONSUMER;
#if !JDK_FUNCTION
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
#endif
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
import speiger.src.collections.PACKAGE.utils.ARRAYS;
import speiger.src.collections.utils.SanityChecks;
/**
* A Simple Heap base Priority Queue implementation
* It is a ArrayBased Alternative to TreeSets that has less object allocations
* @Type(T)
*/
public class HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE extends ABSTRACT_PRIORITY_QUEUE KEY_GENERIC_TYPE
{
/** The Backing Array */
protected transient KEY_TYPE[] array = EMPTY_KEY_ARRAY;
/** The Amount of elements stored within the array */
protected int size;
/** The Sorter of the Array */
protected COMPARATOR KEY_SUPER_GENERIC_TYPE comparator;
/**
* Default Constructor
*/
public HEAP_PRIORITY_QUEUE() {
this(0, null);
}
/**
* Constructor using custom sorter
* @param comp Comparator to sort the Array. Can be null
*/
public HEAP_PRIORITY_QUEUE(COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this(0, comp);
}
/**
* Constructor with a Min Capacity
* @param size the initial capacity of the backing array
* @throws IllegalStateException if the initial size is smaller 0
*/
public HEAP_PRIORITY_QUEUE(int size) {
this(size, null);
}
/**
* Constructor with a Min Capacity and custom Sorter
* @param size the initial capacity of the backing array
* @param comp Comparator to sort the Array. Can be null
* @throws IllegalStateException if the initial size is smaller 0
*/
public HEAP_PRIORITY_QUEUE(int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
if(size > 0) array = NEW_KEY_ARRAY(size);
comparator = comp;
}
/**
* Constructor using a initial array
* @param array the Array that should be used
*/
public HEAP_PRIORITY_QUEUE(KEY_TYPE[] array) {
this(array, array.length);
}
/**
* Constructor using a initial array
* @param array the Array that should be used
* @param size the amount of elements found within the array
* @throws NegativeArraySizeException if size is smaller then 0
*/
public HEAP_PRIORITY_QUEUE(KEY_TYPE[] array, int size) {
this.array = Arrays.copyOf(array, size);
this.size = size;
ARRAYS.heapify(array, size, null);
}
/**
* Constructor using a initial array and a custom sorter
* @param array the Array that should be used
* @param comp Comparator to sort the Array. Can be null
*/
public HEAP_PRIORITY_QUEUE(KEY_TYPE[] array, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this(array, array.length, comp);
}
/**
* Constructor using a initial array and a custom sorter
* @param array the Array that should be used
* @param size the amount of elements found within the array
* @param comp Comparator to sort the Array. Can be null
* @throws NegativeArraySizeException if size is smaller then 0
*/
public HEAP_PRIORITY_QUEUE(KEY_TYPE[] array, int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
this.array = Arrays.copyOf(array, size);
this.size = size;
comparator = comp;
ARRAYS.heapify(array, size, comp);
}
/**
* Constructor using a Collection
* @param c the Collection that should be used
*/
public HEAP_PRIORITY_QUEUE(COLLECTION KEY_GENERIC_TYPE c) {
array = CAST_KEY_ARRAY c.TO_ARRAY();
size = c.size();
ARRAYS.heapify(array, size, null);
}
/**
* Constructor using a Collection and a custom sorter
* @param c the Collection that should be used
* @param comp Comparator to sort the Array. Can be null
*/
public HEAP_PRIORITY_QUEUE(COLLECTION KEY_GENERIC_TYPE c, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
array = CAST_KEY_ARRAY c.TO_ARRAY();
size = c.size();
comparator = comp;
ARRAYS.heapify(array, size, comp);
}
/**
* Wrapping method to help serialization
* @param array the array that should be used
* @Type(T)
* @return a HeapPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array) {
return wrap(array, array.length);
}
/**
* Wrapping method to help serialization
* @param array the array that should be used
* @param size the amount of elements within the array
* @Type(T)
* @return a HeapPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, int size) {
HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new HEAP_PRIORITY_QUEUEBRACES();
queue.array = array;
queue.size = size;
ARRAYS.heapify(array, size, null);
return queue;
}
/**
* Wrapping method to help serialization, using a custom sorter
* @param array the array that should be used
* @param comp Comparator to sort the Array. Can be null
* @Type(T)
* @return a HeapPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
return wrap(array, array.length, comp);
}
/**
* Wrapping method to help serialization, using a custom sorter
* @param array the array that should be used
* @param size the amount of elements within the array
* @param comp Comparator to sort the Array. Can be null
* @Type(T)
* @return a HeapPriorityQueue containing the original input array
*/
public static GENERIC_KEY_BRACES HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE wrap(KEY_TYPE[] array, int size, COMPARATOR KEY_SUPER_GENERIC_TYPE comp) {
HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new HEAP_PRIORITY_QUEUEBRACES(comp);
queue.array = array;
queue.size = size;
ARRAYS.heapify(array, size, comp);
return queue;
}
#if JDK_TYPE && SPLIT_ITERATOR_FEATURE && STREAM_FEATURE
#if TYPE_OBJECT
/**
* Creates a Collector for a ArrayFIFOQueue
* @Type(T)
* @return a collector
*/
public static <T> Collector<T, HEAP_PRIORITY_QUEUE<T>, HEAP_PRIORITY_QUEUE<T>> toQueue() {
return Collector.of(HEAP_PRIORITY_QUEUE::new, HEAP_PRIORITY_QUEUE::enqueue, HEAP_PRIORITY_QUEUE::merge);
}
/**
* Collects a Stream to a ArrayFIFOQueue
* @Type(T)
* @return a queue with the contents of the Stream
*/
public static <T> HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE toQueue(Stream<T> stream) {
return stream.collect(HEAP_PRIORITY_QUEUE::new, HEAP_PRIORITY_QUEUE::enqueue, HEAP_PRIORITY_QUEUE::merge);
}
private HEAP_PRIORITY_QUEUE<T> merge(HEAP_PRIORITY_QUEUE<T> a) {
enqueueAll(a.toArray((T[])new Object[a.size()]));
return this;
}
#else
/**
* Collects a Stream to a ArrayFIFOQueue
* @return a queue with the contents of the Stream
*/
public static HEAP_PRIORITY_QUEUE toQueue(JAVA_STREAM stream) {
return stream.collect(HEAP_PRIORITY_QUEUE::new, HEAP_PRIORITY_QUEUE::enqueue, HEAP_PRIORITY_QUEUE::merge);
}
private HEAP_PRIORITY_QUEUE merge(HEAP_PRIORITY_QUEUE a) {
enqueueAll(a.TO_ARRAY());
return this;
}
#endif
#endif
@Override
public int size() {
return size;
}
@Override
public void clear() {
#if TYPE_OBJECT
Arrays.fill(array, null);
#endif
size = 0;
}
@Override
public ITERATOR KEY_GENERIC_TYPE iterator() {
return new Iter();
}
@Override
public void enqueue(KEY_TYPE e) {
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);
}
@Override
public KEY_TYPE dequeue() {
if(size <= 0) throw new NoSuchElementException();
KEY_TYPE value = array[0];
array[0] = array[--size];
#if TYPE_OBJECT
array[size] = null;
#endif
if(size != 0) ARRAYS.shiftDown(array, size, 0, comparator);
return value;
}
@Override
public KEY_TYPE peek(int index) {
if(index < 0 || index >= size) throw new NoSuchElementException();
return array[index];
}
@Override
public boolean contains(KEY_TYPE e) {
for(int i = 0;i<size;i++)
if(KEY_EQUALS(e, array[i])) return true;
return false;
}
@Override
public boolean removeFirst(KEY_TYPE e) {
for(int i = 0;i<size;i++)
if(KEY_EQUALS(e, array[i])) return removeIndex(i);
return false;
}
@Override
public boolean removeLast(KEY_TYPE e) {
for(int i = size-1;i>=0;i--)
if(KEY_EQUALS(e, array[i])) return removeIndex(i);
return false;
}
@Override
public void forEach(CONSUMER KEY_SUPER_GENERIC_TYPE action) {
Objects.requireNonNull(action);
for(int i = 0,m=size;i<m;i++) action.accept(dequeue());
}
@Override
public void forEachIndexed(BI_FROM_INT_CONSUMER KEY_GENERIC_TYPE action) {
Objects.requireNonNull(action);
for(int i = 0,m=size;i<m;i++) action.accept(i, dequeue());
}
@Override
public <E> void forEach(E input, BI_FROM_OBJECT_CONSUMER KSK_GENERIC_TYPE<E> action) {
Objects.requireNonNull(action);
for(int i = 0,m=size;i<m;i++) action.accept(input, dequeue());
}
@Override
public boolean matchesAny(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.test(array[i])) return true;
}
return false;
}
@Override
public boolean matchesNone(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.test(array[i])) return false;
}
return true;
}
@Override
public boolean matchesAll(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(!filter.test(array[i])) return false;
}
return true;
}
#if !TYPE_OBJECT
@Override
public KEY_TYPE reduce(KEY_TYPE identity, UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = identity;
for(int i = 0;i<size;i++) {
state = operator.APPLY_VALUE(state, array[i]);
}
return state;
}
#else
@Override
public <KEY_SPECIAL_TYPE> KEY_SPECIAL_TYPE reduce(KEY_SPECIAL_TYPE identity, BiFunction<KEY_SPECIAL_TYPE, KEY_TYPE, KEY_SPECIAL_TYPE> operator) {
Objects.requireNonNull(operator);
KEY_SPECIAL_TYPE state = identity;
for(int i = 0;i<size;i++) {
state = operator.APPLY_VALUE(state, array[i]);
}
return state;
}
#endif
@Override
public OPTIONAL KEY_GENERIC_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = EMPTY_VALUE;
boolean empty = true;
for(int i = 0;i<size;i++) {
if(empty) {
empty = false;
state = array[i];
continue;
}
state = operator.APPLY_VALUE(state, array[i]);
}
return empty ? OPTIONAL.empty() : OPTIONAL.GET_OPTIONAL(state);
}
@Override
public OPTIONAL KEY_GENERIC_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.test(array[i])) {
KEY_TYPE data = array[i];
removeIndex(i);
return OPTIONAL.GET_OPTIONAL(data);
}
}
return OPTIONAL.empty();
}
@Override
public int count(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
int result = 0;
for(int i = 0;i<size;i++) {
if(filter.test(array[i])) result++;
}
return result;
}
protected boolean removeIndex(int index) {
array[index] = array[--size];
#if TYPE_OBJECT
array[size] = null;
#endif
if(size != index) ARRAYS.shiftDown(array, size, index, comparator);
return true;
}
@Override
public void onChanged() {
if(size <= 0) return;
ARRAYS.shiftDown(array, size, 0, comparator);
}
@Override
public HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE copy() {
HEAP_PRIORITY_QUEUE KEY_GENERIC_TYPE queue = new HEAP_PRIORITY_QUEUEBRACES();
queue.size = size;
queue.comparator = comparator;
queue.array = Arrays.copyOf(array, array.length);
return queue;
}
@Override
public COMPARATOR KEY_SUPER_GENERIC_TYPE comparator() {
return comparator;
}
@Override
public GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY(KEY_SPECIAL_TYPE[] input) {
if(input == null || input.length < size()) input = NEW_SPECIAL_KEY_ARRAY(size());
System.arraycopy(array, 0, input, 0, size());
return input;
}
private class Iter implements ITERATOR KEY_GENERIC_TYPE {
@Override
public boolean hasNext() {
return !isEmpty();
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
return dequeue();
}
}
}
@@ -6,7 +6,9 @@ import java.util.Iterator;
#endif
import speiger.src.collections.PACKAGE.collections.COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if QUEUES_FEATURE
import speiger.src.collections.PACKAGE.utils.PRIORITY_QUEUES;
#endif
/**
* A Type Speciifc PriorityDeque or Dequeue interface to allow implementations like FIFO queues.
@@ -81,6 +83,7 @@ public interface PRIORITY_DEQUEUE KEY_GENERIC_TYPE extends PRIORITY_QUEUE KEY_GE
*/
public default KEY_TYPE last() { return peek(size()-1); }
#if QUEUES_FEATURE
/**
* Creates a Wrapped PriorityDequeue that is Synchronized
* @return a new PriorityDequeue that is synchronized
@@ -96,6 +99,7 @@ public interface PRIORITY_DEQUEUE KEY_GENERIC_TYPE extends PRIORITY_QUEUE KEY_GE
*/
public default PRIORITY_DEQUEUE KEY_GENERIC_TYPE synchronizeQueue(Object mutex) { return PRIORITY_QUEUES.synchronize(this, mutex); }
#endif
@Override
public PRIORITY_DEQUEUE KEY_GENERIC_TYPE copy();
}
@@ -1,192 +1,203 @@
package speiger.src.collections.PACKAGE.queues;
#if TYPE_OBJECT
import java.util.Comparator;
import java.util.Collection;
import java.util.Iterator;
import speiger.src.collections.ints.functions.function.Int2ObjectFunction;
#else
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#endif
import speiger.src.collections.PACKAGE.collections.COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERABLE;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
import speiger.src.collections.PACKAGE.utils.PRIORITY_QUEUES;
/**
* A Simple PriorityQueue (or Queue) interface that provides with the nessesary functions to interact with it, without cluttering with the Collection interface.
* @Type(T)
*/
public interface PRIORITY_QUEUE KEY_GENERIC_TYPE extends ITERABLE KEY_GENERIC_TYPE
{
/**
* @return true if the PriorityQueue is empty
*/
public default boolean isEmpty() { return size() <= 0; }
/**
* @return the amount of elements that are stored in the PriorityQueue
*/
public int size();
/**
* clears all elements within the PriorityQueue,
* this does not resize the backing arrays
*/
public void clear();
/**
* Method to insert a element into the PriorityQueue
* @param e the element that should be inserted
*/
public void enqueue(KEY_TYPE e);
/**
* Method to mass insert elements into the PriorityQueue
* @param e the elements that should be inserted
*/
public default void enqueueAll(KEY_TYPE... e) {
enqueueAll(e, 0, e.length);
}
/**
* Method to mass insert elements into the PriorityQueue
* @param e the elements that should be inserted
* @param length the amount of elements that should be inserted
*/
public default void enqueueAll(KEY_TYPE[] e, int length) {
enqueueAll(e, 0, length);
}
/**
* Method to mass insert elements into the PriorityQueue
* @param e the elements that should be inserted
* @param offset the offset where in the array should be started
* @param length the amount of elements that should be inserted
*/
public default void enqueueAll(KEY_TYPE[] e, int offset, int length) {
for(int i = 0;i<length;i++)
enqueue(e[i+offset]);
}
/**
* Method to mass insert elements into the PriorityQueue
* @param c the elements that should be inserted from the Collection
*/
public default void enqueueAll(COLLECTION KEY_GENERIC_TYPE c) {
for(ITERATOR KEY_GENERIC_TYPE iter = c.iterator();iter.hasNext();)
enqueue(iter.NEXT());
}
#if TYPE_OBJECT
/**
* Method to mass insert elements into the PriorityQueue
* This method exists to add support for Java Collections to make it more useable
* @param c the elements that should be inserted from the Collection
*/
public default void enqueueAll(Collection<? extends CLASS_TYPE> c) {
for(Iterator<? extends CLASS_TYPE> iter = c.iterator();iter.hasNext();)
enqueue(iter.next());
}
#endif
/**
* Method to extract a element from the PriorityQueue
* @return a element from the Queue
* @throws java.util.NoSuchElementException if no element is present
*/
public KEY_TYPE dequeue();
/**
* Peeking function to see whats inside the queue.
* @param index of the element that is requested to be viewed.
* @return the element that is requested
*/
public KEY_TYPE peek(int index);
/**
* Shows the element that is to be returned next
* @return the first element in the Queue
*/
public default KEY_TYPE first() { return peek(0); }
/**
* Removes the first found element in the queue
* @param e the element that should be removed
* @return if a searched element was removed
*/
public boolean removeFirst(KEY_TYPE e);
/**
* Removes the last found element in the queue
* @param e the element that should be removed
* @return if a searched element was removed
*/
public boolean removeLast(KEY_TYPE e);
/**
* Allows to notify the Queue to be revalidate its data
*/
public void onChanged();
/**
* A Function that does a shallow clone of the PriorityQueue itself.
* This function is more optimized then a copy constructor since the PriorityQueue does not have to be unsorted/resorted.
* It can be compared to Cloneable but with less exception risk
* @return a Shallow Copy of the PriorityQueue
* @note Wrappers and view PriorityQueues will not support this feature
*/
public PRIORITY_QUEUE KEY_GENERIC_TYPE copy();
/**
* @return the sorter of the Queue, can be null
*/
public COMPARATOR KEY_SUPER_GENERIC_TYPE comparator();
#if TYPE_OBJECT
/**
* @return draining iterator of the PriorityQueue
*/
public ITERATOR KEY_GENERIC_TYPE iterator();
#endif
/**
* Creates a Wrapped PriorityQueue that is Synchronized
* @return a new PriorityQueue that is synchronized
* @see PRIORITY_QUEUES#synchronize
*/
public default PRIORITY_QUEUE KEY_GENERIC_TYPE synchronizeQueue() { return PRIORITY_QUEUES.synchronize(this); }
/**
* Creates a Wrapped PriorityQueue that is Synchronized
* @param mutex is the controller of the synchronization block
* @return a new PriorityQueue Wrapper that is synchronized
* @see PRIORITY_QUEUES#synchronize
*/
public default PRIORITY_QUEUE KEY_GENERIC_TYPE synchronizeQueue(Object mutex) { return PRIORITY_QUEUES.synchronize(this, mutex); }
/**
* A method to drop the contents of the Queue without clearing the queue
* @Type(E)
* @return the contents of the queue into a seperate array.
*/
public default GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY() { return TO_ARRAY(NEW_SPECIAL_KEY_ARRAY(size())); }
/**
* A method to drop the contents of the Queue without clearing the queue
* @param input where the elements should be inserted to. If it does not fit then it creates a new appropiatly created array
* @Type(E)
* @return the contents of the queue into a seperate array.
* @note if the Type is generic then a Object Array is created instead of a Type Array
*/
public GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY(KEY_SPECIAL_TYPE[] input);
#if TYPE_OBJECT
/**
* A Helper function that simplifies the process of creating a new Array.
* @param action the array creation function
* @return an array containing all of the elements in this collection
* @see Collection#toArray(Object[])
*/
default KEY_TYPE[] TO_ARRAY(Int2ObjectFunction<KEY_TYPE[]> action) {
return TO_ARRAY(action.get(size()));
}
#endif
package speiger.src.collections.PACKAGE.queues;
#if TYPE_OBJECT
import java.util.Comparator;
import java.util.Collection;
import java.util.Iterator;
import java.util.function.IntFunction;
#else
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#endif
import speiger.src.collections.PACKAGE.collections.COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERABLE;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if QUEUES_FEATURE
import speiger.src.collections.PACKAGE.utils.PRIORITY_QUEUES;
#endif
/**
* A Simple PriorityQueue (or Queue) interface that provides with the nessesary functions to interact with it, without cluttering with the Collection interface.
* @Type(T)
*/
public interface PRIORITY_QUEUE KEY_GENERIC_TYPE extends ITERABLE KEY_GENERIC_TYPE
{
/**
* @return true if the PriorityQueue is empty
*/
public default boolean isEmpty() { return size() <= 0; }
/**
* @return the amount of elements that are stored in the PriorityQueue
*/
public int size();
/**
* clears all elements within the PriorityQueue,
* this does not resize the backing arrays
*/
public void clear();
/**
* Method to insert a element into the PriorityQueue
* @param e the element that should be inserted
*/
public void enqueue(KEY_TYPE e);
/**
* Method to mass insert elements into the PriorityQueue
* @param e the elements that should be inserted
*/
public default void enqueueAll(KEY_TYPE... e) {
enqueueAll(e, 0, e.length);
}
/**
* Method to mass insert elements into the PriorityQueue
* @param e the elements that should be inserted
* @param length the amount of elements that should be inserted
*/
public default void enqueueAll(KEY_TYPE[] e, int length) {
enqueueAll(e, 0, length);
}
/**
* Method to mass insert elements into the PriorityQueue
* @param e the elements that should be inserted
* @param offset the offset where in the array should be started
* @param length the amount of elements that should be inserted
*/
public default void enqueueAll(KEY_TYPE[] e, int offset, int length) {
for(int i = 0;i<length;i++)
enqueue(e[i+offset]);
}
/**
* Method to mass insert elements into the PriorityQueue
* @param c the elements that should be inserted from the Collection
*/
public default void enqueueAll(COLLECTION KEY_GENERIC_TYPE c) {
for(ITERATOR KEY_GENERIC_TYPE iter = c.iterator();iter.hasNext();)
enqueue(iter.NEXT());
}
#if TYPE_OBJECT
/**
* Method to mass insert elements into the PriorityQueue
* This method exists to add support for Java Collections to make it more useable
* @param c the elements that should be inserted from the Collection
*/
public default void enqueueAll(Collection<? extends CLASS_TYPE> c) {
for(Iterator<? extends CLASS_TYPE> iter = c.iterator();iter.hasNext();)
enqueue(iter.next());
}
#endif
/**
* Method to extract a element from the PriorityQueue
* @return a element from the Queue
* @throws java.util.NoSuchElementException if no element is present
*/
public KEY_TYPE dequeue();
/**
* Peeking function to see whats inside the queue.
* @param index of the element that is requested to be viewed.
* @return the element that is requested
*/
public KEY_TYPE peek(int index);
/**
* Shows the element that is to be returned next
* @return the first element in the Queue
*/
public default KEY_TYPE first() { return peek(0); }
/**
* Method to find out if a element is part of the queue
* @param e the element that is searched for
* @return true if the element is in the queue
*/
public boolean contains(KEY_TYPE e);
/**
* Removes the first found element in the queue
* @param e the element that should be removed
* @return if a searched element was removed
*/
public boolean removeFirst(KEY_TYPE e);
/**
* Removes the last found element in the queue
* @param e the element that should be removed
* @return if a searched element was removed
*/
public boolean removeLast(KEY_TYPE e);
/**
* Allows to notify the Queue to be revalidate its data
*/
public void onChanged();
/**
* A Function that does a shallow clone of the PriorityQueue itself.
* This function is more optimized then a copy constructor since the PriorityQueue does not have to be unsorted/resorted.
* It can be compared to Cloneable but with less exception risk
* @return a Shallow Copy of the PriorityQueue
* @note Wrappers and view PriorityQueues will not support this feature
*/
public PRIORITY_QUEUE KEY_GENERIC_TYPE copy();
/**
* @return the sorter of the Queue, can be null
*/
public COMPARATOR KEY_SUPER_GENERIC_TYPE comparator();
#if TYPE_OBJECT
/**
* @return draining iterator of the PriorityQueue
*/
public ITERATOR KEY_GENERIC_TYPE iterator();
#endif
#if QUEUES_FEATURE
/**
* Creates a Wrapped PriorityQueue that is Synchronized
* @return a new PriorityQueue that is synchronized
* @see PRIORITY_QUEUES#synchronize
*/
public default PRIORITY_QUEUE KEY_GENERIC_TYPE synchronizeQueue() { return PRIORITY_QUEUES.synchronize(this); }
/**
* Creates a Wrapped PriorityQueue that is Synchronized
* @param mutex is the controller of the synchronization block
* @return a new PriorityQueue Wrapper that is synchronized
* @see PRIORITY_QUEUES#synchronize
*/
public default PRIORITY_QUEUE KEY_GENERIC_TYPE synchronizeQueue(Object mutex) { return PRIORITY_QUEUES.synchronize(this, mutex); }
#endif
/**
* A method to drop the contents of the Queue without clearing the queue
* @Type(E)
* @return the contents of the queue into a seperate array.
*/
public default GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY() { return TO_ARRAY(NEW_SPECIAL_KEY_ARRAY(size())); }
/**
* A method to drop the contents of the Queue without clearing the queue
* @param input where the elements should be inserted to. If it does not fit then it creates a new appropiatly created array
* @Type(E)
* @return the contents of the queue into a seperate array.
* @note if the Type is generic then a Object Array is created instead of a Type Array
*/
public GENERIC_SPECIAL_KEY_BRACES<E> KEY_SPECIAL_TYPE[] TO_ARRAY(KEY_SPECIAL_TYPE[] input);
#if TYPE_OBJECT
/**
* A Helper function that simplifies the process of creating a new Array.
* @param action the array creation function
* @param <E> the returning arrayType
* @return an array containing all of the elements in this collection
* @see Collection#toArray(Object[])
*/
default <E> E[] TO_ARRAY(IntFunction<E[]> action) {
return TO_ARRAY(action.apply(size()));
}
#endif
}
File diff suppressed because it is too large Load Diff
@@ -1,50 +1,152 @@
package speiger.src.collections.PACKAGE.sets;
#if TYPE_OBJECT
import java.util.Objects;
#endif
import java.util.Set;
import speiger.src.collections.PACKAGE.collections.ABSTRACT_COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
/**
* Abstract Type Specific Set that reduces boxing/unboxing
* @Type(T)
*/
public abstract class ABSTRACT_SET KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION KEY_GENERIC_TYPE implements SET KEY_GENERIC_TYPE
{
#if TYPE_OBJECT
@Override
public KEY_TYPE addOrGet(KEY_TYPE o) { throw new UnsupportedOperationException(); }
#endif
@Override
public abstract ITERATOR KEY_GENERIC_TYPE iterator();
@Override
public ABSTRACT_SET KEY_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
@Override
public int hashCode() {
int hashCode = 0;
ITERATOR KEY_GENERIC_TYPE i = iterator();
while(i.hasNext())
hashCode += KEY_TO_HASH(i.NEXT());
return hashCode;
}
@Override
public boolean equals(Object o) {
if (o == this)
return true;
if (!(o instanceof Set))
return false;
Set<?> l = (Set<?>)o;
if(l.size() != size()) return false;
try {
return containsAll(l);
} catch (ClassCastException | NullPointerException unused) {
return false;
}
}
}
package speiger.src.collections.PACKAGE.sets;
#if TYPE_OBJECT
import java.util.Objects;
#endif
import java.util.Set;
import speiger.src.collections.PACKAGE.collections.ABSTRACT_COLLECTION;
import speiger.src.collections.PACKAGE.collections.BI_ITERATOR;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
/**
* Abstract Type Specific Set that reduces boxing/unboxing
* @Type(T)
*/
public abstract class ABSTRACT_SET KEY_GENERIC_TYPE extends ABSTRACT_COLLECTION KEY_GENERIC_TYPE implements SET KEY_GENERIC_TYPE
{
#if TYPE_OBJECT
@Override
public KEY_TYPE addOrGet(KEY_TYPE o) { throw new UnsupportedOperationException(); }
#endif
@Override
public abstract ITERATOR KEY_GENERIC_TYPE iterator();
@Override
public ABSTRACT_SET KEY_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
@Override
public int hashCode() {
int hashCode = 0;
ITERATOR KEY_GENERIC_TYPE i = iterator();
while(i.hasNext())
hashCode += KEY_TO_HASH(i.NEXT());
return hashCode;
}
@Override
public boolean equals(Object o) {
if (o == this)
return true;
if (!(o instanceof Set))
return false;
Set<?> l = (Set<?>)o;
if(l.size() != size()) return false;
try {
return containsAll(l);
} catch (ClassCastException | NullPointerException unused) {
return false;
}
}
#if ORDERED_SET_FEATURE
public static class REVERSED_ORDERED_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE implements ORDERED_SET KEY_GENERIC_TYPE {
protected ORDERED_SET KEY_GENERIC_TYPE set;
public REVERSED_ORDERED_SET(ORDERED_SET KEY_GENERIC_TYPE set) {
this.set = set;
}
@Override
public REVERSED_ORDERED_SET KEY_GENERIC_TYPE copy() { throw new UnsupportedOperationException(); }
@Override
public BI_ITERATOR KEY_GENERIC_TYPE iterator(KEY_TYPE fromElement) {
return set.iterator(fromElement);
}
@Override
public BI_ITERATOR KEY_GENERIC_TYPE iterator() {
return set.reverseIterator();
}
@Override
public BI_ITERATOR KEY_GENERIC_TYPE reverseIterator() {
return set.iterator();
}
@Override
public void addFirst(KEY_TYPE o) {
set.addLast(o);
}
@Override
public void addLast(KEY_TYPE o) {
set.addFirst(o);
}
@Override
#if !TYPE_OBJECT
public boolean remove(KEY_TYPE o) {
#else
public boolean remove(Object o) {
#endif
return set.remove(o);
}
@Override
public boolean add(KEY_TYPE o) {
return set.add(o);
}
@Override
public boolean addAndMoveToFirst(KEY_TYPE o) {
return set.addAndMoveToLast(o);
}
@Override
public boolean addAndMoveToLast(KEY_TYPE o) {
return set.addAndMoveToFirst(o);
}
@Override
public boolean moveToFirst(KEY_TYPE o) {
return set.moveToLast(o);
}
@Override
public boolean moveToLast(KEY_TYPE o) {
return set.moveToFirst(o);
}
@Override
public KEY_TYPE GET_FIRST_KEY() {
return set.GET_LAST_KEY();
}
@Override
public KEY_TYPE REMOVE_FIRST_KEY() {
return set.REMOVE_LAST_KEY();
}
@Override
public KEY_TYPE GET_LAST_KEY() {
return set.GET_FIRST_KEY();
}
@Override
public KEY_TYPE REMOVE_LAST_KEY() {
return set.REMOVE_FIRST_KEY();
}
@Override
public ORDERED_SET KEY_GENERIC_TYPE reversed() {
return set;
}
@Override
public int size() {
return set.size();
}
}
#endif
}
@@ -8,16 +8,33 @@ import java.util.function.BiFunction;
#endif
import java.util.NoSuchElementException;
import java.util.Objects;
#if JDK_TYPE
import java.util.OPTIONAL;
#if !TYPE_OBJECT
import java.util.stream.JAVA_STREAM;
#else
import java.util.stream.Stream;
import java.util.stream.Collector;
#endif
#endif
import java.util.Set;
#if PRIMITIVES
#if JDK_FUNCTION
import java.util.function.PREDICATE;
#endif
#if PRIMITIVES && !JDK_FUNCTION
import java.util.function.JAVA_PREDICATE;
#endif
import speiger.src.collections.PACKAGE.collections.BI_ITERATOR;
import speiger.src.collections.PACKAGE.collections.COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if !JDK_TYPE
import speiger.src.collections.PACKAGE.functions.OPTIONAL;
#endif
import speiger.src.collections.ints.functions.consumer.BI_FROM_INT_CONSUMER;
import speiger.src.collections.objects.functions.consumer.BI_FROM_OBJECT_CONSUMER;
#if !JDK_FUNCTION
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
#endif
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.CONSUMER;
@@ -63,7 +80,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
* @param array the array that should be used for set.
*/
public ARRAY_SET(KEY_TYPE[] array) {
this(array, array.length);
this(array, 0, array.length);
}
/**
@@ -77,6 +94,18 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
addAll(array, length);
}
/**
* Constructur using initial Array
* @param array the array that should be used for set.
* @param offset the starting offset of where the array should be copied from
* @param length the amount of elements present within the array
* @throws NegativeArraySizeException if the length is negative
*/
public ARRAY_SET(KEY_TYPE[] array, int offset, int length) {
this(length);
addAll(array, offset, length);
}
/**
* A Helper constructor that allows to create a Set with exactly the same values as the provided collection.
* @param c the elements that should be added to the set.
@@ -120,6 +149,42 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
for(ITERATOR KEY_GENERIC_TYPE iter = s.iterator();iter.hasNext();data[size++] = iter.NEXT());
}
#if JDK_TYPE && SPLIT_ITERATOR_FEATURE && STREAM_FEATURE
#if TYPE_OBJECT
/**
* Creates a Collector for a ArraySet
* @Type(T)
* @return a collector
*/
public static <T> Collector<T, ARRAY_SET<T>, ARRAY_SET<T>> toList() {
return Collector.of(ARRAY_SET::new, ARRAY_SET::add, ARRAY_SET::merge);
}
/**
* Collects a Stream to a ArraySet
* @Type(T)
* @return a set with the contents of the Stream
*/
public static <T> ARRAY_SET KEY_GENERIC_TYPE toList(Stream<T> stream) {
return stream.collect(ARRAY_SET::new, ARRAY_SET::add, ARRAY_SET::merge);
}
private ARRAY_SET<T> merge(ARRAY_SET<T> a) {
addAll(a);
return this;
}
#else
/**
* Collects a Stream to a ArraySet
* @return a set with the contents of the Stream
*/
public static ARRAY_SET toList(JAVA_STREAM stream) {
return stream.collect(ARRAY_SET::new, ARRAY_SET::add, ARRAY_SET::addAll);
}
#endif
#endif
@Override
public boolean add(KEY_TYPE o) {
int index = findIndex(o);
@@ -142,6 +207,25 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
}
#endif
@Override
public void addFirst(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, 0, data, 1, size++);
data[0] = o;
}
}
@Override
public void addLast(KEY_TYPE o) {
int index = findIndex(o);
if(index == -1) {
if(data.length == size) data = Arrays.copyOf(data, size == 0 ? 2 : size * 2);
data[size++] = o;
}
}
@Override
public boolean addAndMoveToFirst(KEY_TYPE o) {
int index = findIndex(o);
@@ -213,13 +297,13 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
#endif
@Override
public KEY_TYPE FIRST_KEY() {
public KEY_TYPE GET_FIRST_KEY() {
if(size == 0) throw new NoSuchElementException();
return data[0];
}
@Override
public KEY_TYPE LAST_KEY() {
public KEY_TYPE GET_LAST_KEY() {
if(size == 0) throw new NoSuchElementException();
return data[size - 1];
}
@@ -348,7 +432,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
#endif
@Override
public KEY_TYPE POLL_FIRST_KEY() {
public KEY_TYPE REMOVE_FIRST_KEY() {
if(size == 0) throw new NoSuchElementException();
KEY_TYPE result = data[0];
System.arraycopy(data, 1, data, 0, --size);
@@ -359,7 +443,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
}
@Override
public KEY_TYPE POLL_LAST_KEY() {
public KEY_TYPE REMOVE_LAST_KEY() {
if(size == 0) throw new NoSuchElementException();
size--;
#if TYPE_OBJECT
@@ -391,6 +475,12 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
for(int i = 0;i<size;action.accept(data[i++]));
}
@Override
public void forEachIndexed(BI_FROM_INT_CONSUMER KEY_GENERIC_TYPE action) {
Objects.requireNonNull(action);
for(int i = 0;i<size;action.accept(i, data[i++]));
}
@Override
public <E> void forEach(E input, BI_FROM_OBJECT_CONSUMER KSK_GENERIC_TYPE<E> action) {
Objects.requireNonNull(action);
@@ -402,7 +492,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
public boolean matchesAny(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(data[i])) return true;
if(filter.test(data[i])) return true;
}
return false;
}
@@ -411,7 +501,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
public boolean matchesNone(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(data[i])) return false;
if(filter.test(data[i])) return false;
}
return true;
}
@@ -420,18 +510,18 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
public boolean matchesAll(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(!filter.TEST_VALUE(data[i])) return false;
if(!filter.test(data[i])) return false;
}
return true;
}
@Override
public KEY_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
public OPTIONAL KEY_GENERIC_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
Objects.requireNonNull(filter);
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(data[i])) return data[i];
if(filter.test(data[i])) return OPTIONAL.GET_OPTIONAL(data[i]);
}
return EMPTY_VALUE;
return OPTIONAL.empty();
}
#if !TYPE_OBJECT
@@ -458,7 +548,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
#endif
@Override
public KEY_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
public OPTIONAL KEY_GENERIC_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
Objects.requireNonNull(operator);
KEY_TYPE state = EMPTY_VALUE;
boolean empty = true;
@@ -470,7 +560,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
}
state = operator.APPLY_VALUE(state, data[i]);
}
return state;
return empty ? OPTIONAL.empty() : OPTIONAL.GET_OPTIONAL(state);
}
@Override
@@ -478,7 +568,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
Objects.requireNonNull(filter);
int result = 0;
for(int i = 0;i<size;i++) {
if(filter.TEST_VALUE(data[i])) result++;
if(filter.test(data[i])) result++;
}
return result;
}
@@ -499,13 +589,18 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
@Override
public BI_ITERATOR KEY_GENERIC_TYPE iterator() {
return new SetIterator(0);
return new SetIterator(true, 0);
}
@Override
public BI_ITERATOR KEY_GENERIC_TYPE reverseIterator() {
return new SetIterator(false, size);
}
@Override
public BI_ITERATOR KEY_GENERIC_TYPE iterator(KEY_TYPE fromElement) {
int index = findIndex(fromElement);
if(index != -1) return new SetIterator(index);
if(index != -1) return new SetIterator(true, index);
throw new NoSuchElementException();
}
@@ -539,6 +634,7 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
@Override
@Deprecated
public Object[] toArray() {
if(isEmpty()) return ObjectArrays.EMPTY_ARRAY;
Object[] obj = new Object[size()];
for(int i = 0;i<size();i++)
obj[i] = KEY_TO_OBJ(data[i]);
@@ -557,45 +653,57 @@ public class ARRAY_SET KEY_GENERIC_TYPE extends ABSTRACT_SET KEY_GENERIC_TYPE im
}
private class SetIterator implements LIST_ITERATOR KEY_GENERIC_TYPE {
boolean forward;
int index;
int lastReturned = -1;
public SetIterator(int index) {
public SetIterator(boolean forward, int index) {
this.forward = forward;
this.index = index;
}
@Override
public boolean hasNext() {
return index < size();
return forward ? index < size() : index > 0;
}
@Override
public KEY_TYPE NEXT() {
if(!hasNext()) throw new NoSuchElementException();
lastReturned = index;
return data[index++];
if(forward) {
lastReturned = index;
return data[index++];
}
index--;
return data[(lastReturned = index)];
}
@Override
public boolean hasPrevious() {
return index > 0;
return forward ? index > 0 : index < size();
}
@Override
public KEY_TYPE PREVIOUS() {
if(!hasPrevious()) throw new NoSuchElementException();
--index;
return data[(lastReturned = index)];
if(forward) {
index--;
return data[(lastReturned = index)];
}
lastReturned = index;
return data[index++];
}
@Override
public int nextIndex() {
return index;
if(forward) return index;
return size - index;
}
@Override
public int previousIndex() {
return index-1;
if(forward) return index-1;
return (size - index)-1;
}
@Override
@@ -624,15 +732,23 @@ 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");
return forward ? moveForward(amount) : moveBackwards(amount);
}
@Override
public int back(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
return forward ? moveBackwards(amount) : moveForward(amount);
}
private int moveForward(int amount) {
int steps = Math.min(amount, size() - index);
index += steps;
if(steps > 0) lastReturned = Math.min(index-1, size()-1);
return steps;
}
@Override
public int back(int amount) {
if(amount < 0) throw new IllegalStateException("Negative Numbers are not allowed");
private int moveBackwards(int amount) {
int steps = Math.min(amount, index);
index -= steps;
if(steps > 0) lastReturned = Math.min(index, size()-1);
@@ -3,9 +3,13 @@ package speiger.src.collections.PACKAGE.sets;
import java.util.NavigableSet;
import speiger.src.collections.PACKAGE.collections.BI_ITERATOR;
#if SPLIT_ITERATOR_FEATURE
import speiger.src.collections.PACKAGE.collections.SPLIT_ITERATOR;
import speiger.src.collections.PACKAGE.utils.SETS;
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
#endif
#if SETS_FEATURE
import speiger.src.collections.PACKAGE.utils.SETS;
#endif
/**
* A Type Specific Navigable Set interface with a couple helper methods
@@ -119,7 +123,7 @@ public interface NAVIGABLE_SET KEY_GENERIC_TYPE extends NavigableSet<CLASS_TYPE>
@Override
public NAVIGABLE_SET KEY_GENERIC_TYPE copy();
#if !TYPE_BOOLEAN
#if SETS_FEATURE
/**
* Creates a Wrapped NavigableSet that is Synchronized
* @return a new NavigableSet that is synchronized
@@ -143,6 +147,7 @@ public interface NAVIGABLE_SET KEY_GENERIC_TYPE extends NavigableSet<CLASS_TYPE>
public default NAVIGABLE_SET KEY_GENERIC_TYPE unmodifiable() { return SETS.unmodifiable(this); }
#endif
#if SPLIT_ITERATOR_FEATURE
/**
* A Type Specific Type Splititerator to reduce boxing/unboxing
* @return type specific splititerator
@@ -150,6 +155,7 @@ public interface NAVIGABLE_SET KEY_GENERIC_TYPE extends NavigableSet<CLASS_TYPE>
@Override
default SPLIT_ITERATOR KEY_GENERIC_TYPE spliterator() { return SPLIT_ITERATORS.createSplititerator(this, 0); }
#endif
#if !TYPE_OBJECT
@Override
@Deprecated
File diff suppressed because it is too large Load Diff
@@ -1,9 +1,19 @@
package speiger.src.collections.PACKAGE.sets;
#if JAVA_VERSION>=21
import java.util.SequencedSet;
#endif
import speiger.src.collections.PACKAGE.collections.BI_ITERATOR;
import speiger.src.collections.PACKAGE.collections.ORDERED_COLLECTION;
#if SPLIT_ITERATOR_FEATURE
import speiger.src.collections.PACKAGE.collections.SPLIT_ITERATOR;
import speiger.src.collections.PACKAGE.utils.SETS;
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
#endif
import speiger.src.collections.PACKAGE.sets.ABSTRACT_SET.REVERSED_ORDERED_SET;
#if SETS_FEATURE
import speiger.src.collections.PACKAGE.utils.SETS;
#endif
/**
* A Special Set Interface giving Access to some really usefull functions
@@ -13,7 +23,11 @@ import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
*
* @Type(T)
*/
public interface ORDERED_SET KEY_GENERIC_TYPE extends SET KEY_GENERIC_TYPE
#if JAVA_VERSION>=21
public interface ORDERED_SET KEY_GENERIC_TYPE extends SET KEY_GENERIC_TYPE, ORDERED_COLLECTION KEY_GENERIC_TYPE, SequencedSet<CLASS_TYPE>
#else
public interface ORDERED_SET KEY_GENERIC_TYPE extends SET KEY_GENERIC_TYPE, ORDERED_COLLECTION KEY_GENERIC_TYPE
#endif
{
/**
* A customized add method that allows you to insert into the first index.
@@ -50,6 +64,7 @@ public interface ORDERED_SET KEY_GENERIC_TYPE extends SET KEY_GENERIC_TYPE
@Override
public BI_ITERATOR KEY_GENERIC_TYPE iterator();
public BI_ITERATOR KEY_GENERIC_TYPE reverseIterator();
/**
* A type Specific Iterator starting from a given key
@@ -59,6 +74,7 @@ public interface ORDERED_SET KEY_GENERIC_TYPE extends SET KEY_GENERIC_TYPE
*/
public BI_ITERATOR KEY_GENERIC_TYPE iterator(KEY_TYPE fromElement);
#if SPLIT_ITERATOR_FEATURE
/**
* A Type Specific Type Splititerator to reduce boxing/unboxing
* @return type specific splititerator
@@ -66,28 +82,82 @@ public interface ORDERED_SET KEY_GENERIC_TYPE extends SET KEY_GENERIC_TYPE
@Override
default SPLIT_ITERATOR KEY_GENERIC_TYPE spliterator() { return SPLIT_ITERATORS.createSplititerator(this, 0); }
#endif
/**
* A method to get the first element in the set
* @return first element in the set
*/
public KEY_TYPE FIRST_KEY();
public KEY_TYPE GET_FIRST_KEY();
/**
* A method to get and remove the first element in the set
* @return first element in the set
*/
public KEY_TYPE POLL_FIRST_KEY();
public KEY_TYPE REMOVE_FIRST_KEY();
/**
* A method to get the last element in the set
* @return last element in the set
*/
public KEY_TYPE LAST_KEY();
public KEY_TYPE GET_LAST_KEY();
/**
* A method to get and remove the last element in the set
* @return last element in the set
*/
public KEY_TYPE POLL_LAST_KEY();
public KEY_TYPE REMOVE_LAST_KEY();
#if !TYPE_BOOLEAN
#if JAVA_VERSION>=21 && !TYPE_OBJECT
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
default void addFirst(CLASS_TYPE e) { addAndMoveToFirst(OBJ_TO_KEY(e)); }
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
default void addLast(CLASS_TYPE e) { addAndMoveToLast(OBJ_TO_KEY(e)); }
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
default CLASS_TYPE getFirst() { return GET_FIRST_KEY(); }
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
default CLASS_TYPE getLast() { return GET_LAST_KEY(); }
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
default CLASS_TYPE removeFirst() { return REMOVE_FIRST_KEY(); }
/** {@inheritDoc}
* <p>This default implementation delegates to the corresponding type-specific function.
* @deprecated Please use the corresponding type-specific function instead.
*/
@Override
@Deprecated
default CLASS_TYPE removeLast() { return REMOVE_LAST_KEY(); }
#endif
@Java21
public default ORDERED_SET KEY_GENERIC_TYPE reversed() { return new REVERSED_ORDERED_SETBRACES(this); }
#if SETS_FEATURE
/**
* Creates a Wrapped OrderedSet that is Synchronized
* @return a new OrderedSet that is synchronized
File diff suppressed because it is too large Load Diff
@@ -4,11 +4,13 @@ import java.util.Set;
import speiger.src.collections.PACKAGE.collections.COLLECTION;
import speiger.src.collections.PACKAGE.collections.ITERATOR;
#if SPLIT_ITERATOR_FEATURE
import speiger.src.collections.PACKAGE.collections.SPLIT_ITERATOR;
#if !TYPE_BOOLEAN
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
#endif
#if SETS_FEATURE
import speiger.src.collections.PACKAGE.utils.SETS;
#endif
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
/**
@@ -64,7 +66,7 @@ public interface SET KEY_GENERIC_TYPE extends Set<CLASS_TYPE>, COLLECTION KEY_GE
public KEY_TYPE addOrGet(KEY_TYPE o);
#endif
#if !TYPE_BOOLEAN
#if SETS_FEATURE
/**
* Creates a Wrapped Set that is Synchronized
* @return a new Set that is synchronized
@@ -88,10 +90,12 @@ public interface SET KEY_GENERIC_TYPE extends Set<CLASS_TYPE>, COLLECTION KEY_GE
public default SET KEY_GENERIC_TYPE unmodifiable() { return SETS.unmodifiable(this); }
#endif
#if SPLIT_ITERATOR_FEATURE
/**
* A Type Specific Type Splititerator to reduce boxing/unboxing
* @return type specific splititerator
*/
@Override
default SPLIT_ITERATOR KEY_GENERIC_TYPE spliterator() { return SPLIT_ITERATORS.createSplititerator(this, 0); }
}
#endif
}
@@ -3,14 +3,20 @@ package speiger.src.collections.PACKAGE.sets;
import java.util.SortedSet;
import speiger.src.collections.PACKAGE.collections.BI_ITERATOR;
#if SPLIT_ITERATOR_FEATURE
import speiger.src.collections.PACKAGE.collections.SPLIT_ITERATOR;
#endif
#if TYPE_OBJECT
import java.util.Comparator;
#else
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#endif
#if SETS_FEATURE
import speiger.src.collections.PACKAGE.utils.SETS;
#endif
#if SPLIT_ITERATOR_FEATURE
import speiger.src.collections.PACKAGE.utils.SPLIT_ITERATORS;
#endif
/**
* A Type Specific SortedSet implementation to reduce boxing/unboxing
@@ -41,7 +47,7 @@ public interface SORTED_SET KEY_GENERIC_TYPE extends SET KEY_GENERIC_TYPE, Sorte
*/
public BI_ITERATOR KEY_GENERIC_TYPE iterator(KEY_TYPE fromElement);
#if !TYPE_BOOLEAN
#if SETS_FEATURE
/**
* Creates a Wrapped SortedSet that is Synchronized
* @return a new SortedSet that is synchronized
@@ -65,6 +71,7 @@ public interface SORTED_SET KEY_GENERIC_TYPE extends SET KEY_GENERIC_TYPE, Sorte
public default SORTED_SET KEY_GENERIC_TYPE unmodifiable() { return SETS.unmodifiable(this); }
#endif
#if SPLIT_ITERATOR_FEATURE
/**
* A Type Specific Type Splititerator to reduce boxing/unboxing
* @return type specific splititerator
@@ -72,6 +79,7 @@ public interface SORTED_SET KEY_GENERIC_TYPE extends SET KEY_GENERIC_TYPE, Sorte
@Override
default SPLIT_ITERATOR KEY_GENERIC_TYPE spliterator() { return SPLIT_ITERATORS.createSplititerator(this, 0); }
#endif
#if !TYPE_OBJECT
/**
* A Type Specific SubSet method to reduce boxing/unboxing
File diff suppressed because it is too large Load Diff
@@ -7,40 +7,91 @@ import java.util.concurrent.TimeUnit;
import java.util.concurrent.TimeoutException;
import java.util.concurrent.locks.LockSupport;
import java.util.function.Consumer;
#if JDK_TYPE
import java.util.OPTIONAL;
#else
import speiger.src.collections.PACKAGE.functions.OPTIONAL;
#endif
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.CONSUMER;
import speiger.src.collections.PACKAGE.functions.COMPARATOR;
#else
import java.util.function.IntFunction;
import java.util.function.BiFunction;
import java.util.Comparator;
#iterate
#argument MAPPER Predicate ToByteFunction ToShortFunction ToIntFunction ToLongFunction ToFloatFunction ToDoubleFunction
#argument BUILDER BooleanAsyncBuilder ByteAsyncBuilder ShortAsyncBuilder IntAsyncBuilder LongAsyncBuilder FloatAsyncBuilder DoubleAsyncBuilder
#argument PACKAGE booleans bytes shorts ints longs floats doubles
#argument CHECK BOOLEAN_ASYNC_MODULE BYTE_ASYNC_MODULE SHORT_ASYNC_MODULE INT_ASYNC_MODULE LONG_ASYNC_MODULE FLOAT_ASYNC_MODULE DOUBLE_ASYNC_MODULE
#if CHECK
import speiger.src.collections.objects.functions.function.MAPPER;
import speiger.src.collections.PACKAGE.utils.BUILDER;
#endif
#enditerate
#endif
import speiger.src.collections.PACKAGE.collections.ITERABLE;
#if OBJECT_ASYNC_MODULE
import speiger.src.collections.PACKAGE.collections.COLLECTION;
#endif
import speiger.src.collections.PACKAGE.collections.ITERATOR;
import speiger.src.collections.PACKAGE.functions.TASK;
#if !TYPE_OBJECT
import speiger.src.collections.PACKAGE.functions.function.PREDICATE;
import speiger.src.collections.PACKAGE.functions.function.TO_OBJECT_FUNCTION;
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
import speiger.src.collections.PACKAGE.lists.ARRAY_LIST;
import speiger.src.collections.PACKAGE.lists.LIST;
#if !TYPE_BOOLEAN
import speiger.src.collections.PACKAGE.sets.SET;
import speiger.src.collections.PACKAGE.sets.LINKED_HASH_SET;
#endif
#if !TYPE_BOOLEAN
#if OBJECT_ASYNC_MODULE
import speiger.src.collections.PACKAGE.functions.function.TO_OBJECT_FUNCTION;
#endif
import speiger.src.collections.PACKAGE.functions.function.UNARY_OPERATOR;
#if ARRAY_LIST_FEATURE || LINKED_LIST_FEATURE
import speiger.src.collections.PACKAGE.lists.LIST;
#if ARRAY_LIST_FEATURE
import speiger.src.collections.PACKAGE.lists.ARRAY_LIST;
#else if LINKED_LIST_FEATURE
import speiger.src.collections.PACKAGE.lists.LINKED_LIST;
#endif
#endif
#if !TYPE_BOOLEAN && OBJECT_ASYNC_MODULE
#if SET_MODULE
#if LINKED_SET_FEATURE || LINKED_CUSTOM_SET_FEATURE || SET_FEATURE || CUSTOM_SET_FEATURE || RB_TREE_SET_FEATURE || AVL_TREE_SET_FEATURE || ARRAY_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.SET;
#if LINKED_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.LINKED_HASH_SET;
#else if LINKED_CUSTOM_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.LINKED_CUSTOM_HASH_SET;
#else if SET_FEATURE
import speiger.src.collections.PACKAGE.sets.HASH_SET;
#else if CUSTOM_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.CUSTOM_HASH_SET;
#else if RB_TREE_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.RB_TREE_SET;
#else if AVL_TREE_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.AVL_TREE_SET;
#else if ARRAY_SET_FEATURE
import speiger.src.collections.PACKAGE.sets.ARRAY_SET;
#endif
#endif
#endif
#endif
#if !TYPE_BOOLEAN && BOOLEAN_ASYNC_MODULE
#if !TYPE_OBJECT
import speiger.src.collections.booleans.utils.BooleanAsyncBuilder;
#endif
import speiger.src.collections.booleans.utils.BooleanAsyncBuilder.BaseBooleanTask;
#endif
#if !TYPE_OBJECT
#if !TYPE_OBJECT && OBJECT_ASYNC_MODULE
import speiger.src.collections.objects.utils.ObjectAsyncBuilder;
import speiger.src.collections.objects.utils.ObjectAsyncBuilder.BaseObjectTask;
#endif
#if !TYPE_INT
#if !TYPE_INT && INT_ASYNC_MODULE
#if !TYPE_OBJECT
import speiger.src.collections.ints.utils.IntAsyncBuilder;
#endif
import speiger.src.collections.ints.utils.IntAsyncBuilder.BaseIntTask;
#endif
import speiger.src.collections.utils.ISizeProvider;
import speiger.src.collections.utils.SanityChecks;
/**
@@ -113,6 +164,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return new ASYNC_BUILDERBRACES(ITERABLES.wrap(iterable));
}
#if ARRAY_LIST_FEATURE
/**
* Helper function that automatically wraps a array into a AsyncBuilder since it forces this collections Iterable.
* @param values that should be wrapped
@@ -123,6 +175,8 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return new ASYNC_BUILDERBRACES(ARRAY_LIST.wrap(values));
}
#endif
#if OBJECT_ASYNC_MODULE
/**
* Maps the elements to something else
* @param mapper the mapping function
@@ -154,6 +208,26 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return new ObjectAsyncBuilder<>(ITERABLES.arrayFlatMap(iterable, mapper));
}
#endif
#if TYPE_OBJECT
#iterate
#argument BUILDER BooleanAsyncBuilder ByteAsyncBuilder ShortAsyncBuilder IntAsyncBuilder LongAsyncBuilder FloatAsyncBuilder DoubleAsyncBuilder
#argument MAPPER Predicate ToByteFunction ToShortFunction ToIntFunction ToLongFunction ToFloatFunction ToDoubleFunction
#argument TYPE Boolean Byte Short Int Long Float Double
#argument CHECK BOOLEAN_ASYNC_MODULE BYTE_ASYNC_MODULE SHORT_ASYNC_MODULE INT_ASYNC_MODULE LONG_ASYNC_MODULE FLOAT_ASYNC_MODULE DOUBLE_ASYNC_MODULE
#if CHECK
/**
* Maps the elements to something else
* @param mapper the mapping function
* @return a new Builder Object with the mapped Iterable
*/
public BUILDER mapToTYPE(MAPPER<T> mapper) {
return new BUILDER(ITERABLES.mapToTYPE(iterable, mapper));
}
#endif
#enditerate
#endif
/**
* Filters out the unwanted elements out of the Iterable
* @param filter the elements that should be kept
@@ -173,6 +247,16 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return this;
}
/**
* Repeats the elements inside of the Iterable
* @param repeats the amount of times the elements should be repeated
* @return self with a repeater applied
*/
public ASYNC_BUILDER KEY_GENERIC_TYPE repeat(int repeats) {
iterable = ITERABLES.repeat(iterable, repeats);
return this;
}
/**
* Limits how many elements are inside of the Iterable
* @param limit how many elements should max be iterated through
@@ -204,6 +288,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return this;
}
#if OBJECT_ASYNC_MODULE
/**
* Iterates over the Iterable with a desired action
* @param action that should be applied
@@ -213,14 +298,14 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return new ObjectAsyncBuilder<>(new ForEachTask<>(iterable.iterator(), action));
}
#endif
/**
* Reduces the elements inside of the Iterable down to one element
* @param operator that reduces the elements.
* @return self with the reduce action applied
*/
public ASYNC_BUILDER KEY_GENERIC_TYPE reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
task = new SimpleReduceTaskBRACES(iterable.iterator(), operator);
return this;
public ObjectAsyncBuilder<OPTIONAL KEY_GENERIC_TYPE> reduce(UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
return new ObjectAsyncBuilder<>(new SimpleReduceTaskBRACES(iterable.iterator(), operator));
}
#if TYPE_OBJECT
@@ -247,23 +332,66 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
}
#endif
#if OBJECT_ASYNC_MODULE
#if TYPE_OBJECT
/**
* Pours all elements of the Iterable down into a Array.
* @param action creates the final array that should be copied into.
* @return a new Builder with the ToArray function applied
*/
public ObjectAsyncBuilder<KEY_TYPE[]> TO_ARRAY(IntFunction<KEY_TYPE[]> action) {
return new ObjectAsyncBuilder<>(new ArrayTaskBRACES(iterable, action));
}
#else
/**
* Pours all elements of the Iterable down into a Array.
* @return a new Builder with the ToArray function applied
*/
public ObjectAsyncBuilder<KEY_TYPE[]> TO_ARRAY() {
return new ObjectAsyncBuilder<>(new ArrayTaskBRACES(iterable));
}
#endif
#if ARRAY_LIST_FEATURE || LINKED_LIST_FEATURE
/**
* Pours all elements into a List that can be later
* @return a new Builder with the pour function applied
*/
public ObjectAsyncBuilder<LIST KEY_GENERIC_TYPE> pourAsList() {
#if ARRAY_LIST_FEATURE
return pour(new ARRAY_LISTBRACES());
#else
return pour(new LINKED_LISTBRACES());
#endif
}
#if !TYPE_BOOLEAN
#endif
#if !TYPE_BOOLEAN && SET_MODULE
#if LINKED_SET_FEATURE || LINKED_CUSTOM_SET_FEATURE || SET_FEATURE || CUSTOM_SET_FEATURE || RB_TREE_SET_FEATURE || AVL_TREE_SET_FEATURE || ARRAY_SET_FEATURE
/**
* Pours all elements into a Set that can be later
* @return a new Builder with the pour function applied
*/
public ObjectAsyncBuilder<SET KEY_GENERIC_TYPE> pourAsSet() {
#if LINKED_SET_FEATURE
return pour(new LINKED_HASH_SETBRACES());
#else if LINKED_CUSTOM_SET_FEATURE
return pour(new LINKED_CUSTOM_HASH_SETBRACES(STRATEGY.normalStrategy()));
#else if SET_FEATURE
return pour(new HASH_SETBRACES());
#else if CUSTOM_SET_FEATURE
return pour(new CUSTOM_HASH_SETBRACES(STRATEGY.normalStrategy()));
#else if RB_TREE_SET_FEATURE
return pour(new RB_Tree_SETBRACES());
#else if AVL_TREE_SET_FEATURE
return pour(new AVL_Tree_SETBRACES());
#else if ARRAY_SET_FEATURE
return pour(new ARRAY_SETBRACES());
#endif
}
#endif
#endif
/**
* Pours all elements into a collection that can be later
@@ -275,6 +403,8 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return new ObjectAsyncBuilder<>(new CollectTask<>(iterable.iterator(), collection));
}
#endif
#if BOOLEAN_ASYNC_MODULE
/**
* Searches through the elements of the Iterable to find if the desired element is present.
* @param filter that decides the desired elements
@@ -302,17 +432,18 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return new BooleanAsyncBuilder(new MatchTaskBRACES(iterable.iterator(), filter, 2));
}
#endif
/**
* Searches through the elements of the Iterable to find if the desired element.
* If not present it will return the default value of the type
* @param filter that decides the desired elements
* @return self with the findFirst function applied
*/
public ASYNC_BUILDER KEY_GENERIC_TYPE findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
task = new FindFirstTaskBRACES(iterable.iterator(), filter);
return this;
public ObjectAsyncBuilder<OPTIONAL KEY_GENERIC_TYPE> findFirst(PREDICATE KEY_GENERIC_TYPE filter) {
return new ObjectAsyncBuilder<>(new FindFirstTaskBRACES(iterable.iterator(), filter));
}
#if INT_ASYNC_MODULE
/**
* Counts all desired elements inside the Iterable
* @param filter that decides the desired elements
@@ -322,6 +453,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
return new IntAsyncBuilder(new CountTaskBRACES(iterable.iterator(), filter));
}
#endif
/**
* Optional way to add a custom executor that runs this offthread task.
* Can only be set after the action was decided on.
@@ -461,7 +593,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
}
#endif
private static class SimpleReduceTask KEY_GENERIC_TYPE extends BASE_TASK KEY_GENERIC_TYPE
private static class SimpleReduceTask KEY_GENERIC_TYPE extends BaseObjectTask<OPTIONAL KEY_GENERIC_TYPE>
{
ITERATOR KEY_GENERIC_TYPE iter;
UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator;
@@ -471,6 +603,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
public SimpleReduceTask(ITERATOR KEY_GENERIC_TYPE iter, UNARY_OPERATOR KEY_KEY_GENERIC_TYPE operator) {
this.iter = iter;
this.operator = operator;
this.setResult(OPTIONAL.empty());
}
@Override
@@ -485,7 +618,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
}
}
if(!iter.hasNext()) {
setResult(value);
setResult(OPTIONAL.GET_OPTIONAL(value));
return true;
}
return false;
@@ -502,6 +635,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
}
}
#if BOOLEAN_ASYNC_MODULE
private static class MatchTask KEY_GENERIC_TYPE extends BaseBooleanTask
{
ITERATOR KEY_GENERIC_TYPE iter;
@@ -520,11 +654,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
switch(type) {
case 0:
while(shouldRun() && iter.hasNext()) {
#if TYPE_OBJECT
if(filter.getBoolean(iter.NEXT())) {
#else
if(filter.GET_VALUE(iter.NEXT())) {
#endif
if(filter.test(iter.NEXT())) {
setResult(true);
return true;
}
@@ -532,11 +662,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
break;
case 1:
while(shouldRun() && iter.hasNext()) {
#if TYPE_OBJECT
if(filter.getBoolean(iter.NEXT())) {
#else
if(filter.GET_VALUE(iter.NEXT())) {
#endif
if(filter.test(iter.NEXT())) {
setResult(false);
return true;
}
@@ -544,11 +670,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
break;
case 2:
while(shouldRun() && iter.hasNext()) {
#if TYPE_OBJECT
if(!filter.getBoolean(iter.NEXT())) {
#else
if(!filter.GET_VALUE(iter.NEXT())) {
#endif
if(!filter.test(iter.NEXT())) {
setResult(false);
return true;
}
@@ -570,7 +692,8 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
}
}
private static class FindFirstTask KEY_GENERIC_TYPE extends BASE_TASK KEY_GENERIC_TYPE
#endif
private static class FindFirstTask KEY_GENERIC_TYPE extends BaseObjectTask<OPTIONAL KEY_GENERIC_TYPE>
{
ITERATOR KEY_GENERIC_TYPE iter;
PREDICATE KEY_GENERIC_TYPE filter;
@@ -578,18 +701,15 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
public FindFirstTask(ITERATOR KEY_GENERIC_TYPE iter, PREDICATE KEY_GENERIC_TYPE filter) {
this.iter = iter;
this.filter = filter;
this.setResult(OPTIONAL.empty());
}
@Override
protected boolean execute() throws Exception {
while(shouldRun() && iter.hasNext()) {
KEY_TYPE entry = iter.NEXT();
#if TYPE_OBJECT
if(filter.getBoolean(iter.NEXT())) {
#else
if(filter.GET_VALUE(iter.NEXT())) {
#endif
setResult(entry);
if(filter.test(iter.NEXT())) {
setResult(OPTIONAL.GET_OPTIONAL(entry));
return true;
}
}
@@ -604,6 +724,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
}
}
#if INT_ASYNC_MODULE
private static class CountTask KEY_GENERIC_TYPE extends BaseIntTask
{
ITERATOR KEY_GENERIC_TYPE iter;
@@ -618,7 +739,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
@Override
protected boolean execute() throws Exception {
while(shouldRun() && iter.hasNext()) {
if(filter.TEST_VALUE(iter.NEXT())) {
if(filter.test(iter.NEXT())) {
counted++;
}
}
@@ -638,6 +759,8 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
}
}
#endif
#if OBJECT_ASYNC_MODULE
private static class CollectTask KSS_GENERIC_TYPE<V, T extends COLLECTION KEY_SPECIAL_GENERIC_TYPE<V>> extends BaseObjectTask<T>
{
ITERATOR KEY_SPECIAL_GENERIC_TYPE<V> iter;
@@ -668,6 +791,52 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
}
}
private static class ArrayTask KEY_GENERIC_TYPE extends BaseObjectTask<KEY_TYPE[]>
{
ITERATOR KEY_GENERIC_TYPE iter;
COLLECTIONS.CollectionWrapper KEY_GENERIC_TYPE wrapper;
#if TYPE_OBJECT
IntFunction<KEY_TYPE[]> builder;
public ArrayTask(ITERABLE KEY_GENERIC_TYPE iterable, IntFunction<KEY_TYPE[]> builder) {
this.builder = builder;
#else
public ArrayTask(ITERABLE KEY_GENERIC_TYPE iterable) {
#endif
iter = iterable.iterator();
ISizeProvider prov = ISizeProvider.of(iterable);
int size = prov == null ? -1 : prov.size();
wrapper = size < 0 ? COLLECTIONS.wrapper() : COLLECTIONS.wrapper(size);
}
@Override
protected boolean execute() throws Exception {
while(shouldRun() && iter.hasNext()) {
wrapper.add(iter.NEXT());
}
if(!iter.hasNext()) {
#if TYPE_OBJECT
setResult(wrapper.TO_ARRAY(builder));
#else
setResult(wrapper.TO_ARRAY());
#endif
wrapper = null;
return true;
}
return false;
}
@Override
protected void onCompletion() {
super.onCompletion();
iter = null;
#if TYPE_OBJECT
builder = null;
#endif
}
}
private static class ForEachTask<T> extends BaseObjectTask<Void>
{
ITERATOR KEY_GENERIC_TYPE iter;
@@ -694,6 +863,7 @@ public class ASYNC_BUILDER KEY_GENERIC_TYPE
}
}
#endif
/**
* Base Task of the Actions that can be performed.
* Allows to simplify the actions that get executed.
File diff suppressed because it is too large Load Diff
@@ -7,7 +7,9 @@ import speiger.src.collections.utils.IArray;
/**
* Type-Specific Helper class to get the underlying array of array implementations.
#if ARRAY_LIST_FEATURE
* @see speiger.src.collections.PACKAGE.lists.ARRAY_LIST
#endif
* @Type(T)
*/
public interface IARRAY KEY_GENERIC_TYPE extends IArray
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff

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