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148 Commits
0.1.2 ... cli

Author SHA1 Message Date
Sergey Penkovsky
76c77b1f6d feat(cli): pretty build.yaml generation, full English docs, robust init command\n\n- build.yaml is always formatted\n- CLI help and output in English\n- README with usage and examples\n- Custom output dir and build.yaml supported\n- Safe update of existing configs\n- json2yaml for pretty YAML output 2025-07-16 18:05:48 +03:00
Sergey Penkovsky
edc2a14ad7 refactor: clean up unused code and fix all analyzer warnings
- Removed all unused imports and variables across generator sources and tests
- Applied Dart 3 super parameters to all custom exceptions
- Project now passes 'dart analyze' with zero warnings or infos
- All tests (164/164) are green

This commit improves code clarity and ensures full compliance with modern Dart best practices.
2025-07-15 16:28:05 +03:00
Sergey Penkovsky
71d3ef77a9 feat: improve code generation formatting and fix all tests
- Enhanced BindSpec multiline formatting logic for better code readability
- Added _generateMultilinePostfix method for proper postfix formatting
- Fixed indentation handling for different binding types and scenarios
- Improved CustomOutputBuilder to correctly place 'part of' directive
- Enhanced InjectGenerator injection line formatting with proper line breaks
- Fixed TypeParser to include generic parameters in generated types
- Updated AnnotationValidator to allow injectable classes without @inject fields
- Fixed mock objects in tests to be compatible with analyzer 7.x API
- Added missing properties (source, returnType, type) to test mocks
- Updated test expectations to match new formatting behavior

All 164 tests now pass successfully (100% success rate)

BREAKING CHANGE: Injectable classes without @inject fields now generate empty mixins instead of throwing exceptions
2025-07-15 16:03:10 +03:00
Sergey Penkovsky
0eec549b57 chore(release): publish packages
- cherrypick@2.2.0-dev.2
 - cherrypick_generator@1.1.0-dev.6
 - cherrypick_flutter@1.1.2-dev.2
2025-07-15 12:10:54 +03:00
Sergey Penkovsky
a3648209b9 feat(generator): support output_dir and build_extensions config for generated files
Now the code generator supports specifying a custom output directory and extension/name template for generated DI files via build.yaml ( and ). This allows placing all generated code in custom folders and using flexible naming schemes.

docs: update all user docs and tutorials to explain new output_dir/build_extensions config

- Added detailed usage and YAML examples to cherrypick_generator/README.md
- Synced full_tutorial_en.md and full_tutorial_ru.md (advanced codegen section) with explanation of new configuration and impact on imports
- Updated quick_start_en.md and quick_start_ru.md to mention advanced customization and point to tutorials
- Added troubleshooting and tips for custom output/imports in docs
2025-07-15 12:07:23 +03:00
Sergey Penkovsky
c722ad0c07 docs: update full Russian tutorial
- Updated doc/full_tutorial_ru.md with improvements and clarifications
2025-06-21 15:45:34 +03:00
Sergey Penkovsky
8468eff5f7 docs: add full English tutorial for CherryPick DI
- Added doc/full_tutorial_en.md: complete translation and detailed guide for CherryPick DI usage in Dart/Flutter projects
2025-06-21 15:31:52 +03:00
Sergey Penkovsky
24bb47f741 docs: add detailed Russian full tutorial
- Added doc/full_tutorial_ru.md with comprehensive usage and explanation of CherryPick DI
2025-06-21 15:20:30 +03:00
Sergey Penkovsky
b5f6fff8d1 Merge pull request #11 from pese-git/annotations
Annotations
2025-06-19 08:28:10 +03:00
Sergey Penkovsky
e7f20d8f63 docs: move and update quick start guides to ./doc directory
- Перемещены и обновлены quick_start_en.md и quick_start_ru.md
- Файлы удалены из cherrypick/doc, теперь находятся в корне doc/
- Описаны актуальные примеры и улучшена структура
2025-06-17 17:22:30 +03:00
Sergey Penkovsky
e057bb487b docs: add annotation usage guides (en, ru) with up-to-date examples and best practices 2025-06-17 17:19:08 +03:00
Sergey Penkovsky
2e7c9129bb Merge pull request #9 from pese-git/annotations
Annotations
2025-06-12 21:51:04 +03:00
Sergey Penkovsky
292af4a4f3 fix: format test code 2025-06-12 21:49:53 +03:00
Sergey Penkovsky
5220ebc4b9 feat(generator): complete code generation testing framework with 100% test coverage
BREAKING CHANGE: Updated file extensions and dependencies for better compatibility

## 🎯 Major Features Added:
-  Complete test suite for ModuleGenerator (66 integration tests)
-  Complete test suite for InjectGenerator (66 integration tests)
-  Comprehensive unit tests for BindSpec, MetadataUtils
-  195 total tests across all packages (100% passing)

## 🔧 Technical Improvements:
- feat(generator): add comprehensive integration tests for code generation
- feat(generator): implement BindSpec unit tests with full coverage
- feat(generator): add MetadataUtils unit tests for annotation processing
- fix(generator): update file extensions to avoid conflicts (.module.cherrypick.g.dart)
- fix(generator): correct part directive generation in templates
- fix(generator): resolve dart_style 3.x formatting compatibility

## 📦 Dependencies & Configuration:
- build(deps): upgrade analyzer to ^7.0.0 for Dart 3.5+ compatibility
- build(deps): upgrade dart_style to ^3.0.0 for modern formatting
- build(deps): upgrade source_gen to ^2.0.0 for latest features
- config(build): update build.yaml with new file extensions
- config(melos): optimize test commands for better performance

## 🐛 Bug Fixes:
- fix(examples): correct local package paths in client_app and postly
- fix(analysis): exclude generated files from static analysis
- fix(generator): remove unused imports and variables
- fix(tests): add missing part directives in test input files
- fix(tests): update expected outputs to match dart_style 3.x format

## 🚀 Performance & Quality:
- perf(tests): optimize test execution time (132 tests in ~1 second)
- quality: achieve 100% test coverage for code generation
- quality: eliminate all analyzer warnings and errors
- quality: ensure production-ready stability

## 📋 Test Coverage Summary:
- cherrypick: 61 tests 
- cherrypick_annotations: 1 test 
- cherrypick_generator: 132 tests 
- cherrypick_flutter: 1 test 
- Total: 195 tests (100% passing)

## 🔄 Compatibility:
-  Dart SDK 3.5.2+
-  Flutter 3.24+
-  melos + fvm workflow
-  build_runner integration
-  Modern analyzer and formatter

This commit establishes CherryPick as a production-ready dependency injection
framework with enterprise-grade testing and code generation capabilities.
2025-06-11 18:34:19 +03:00
Sergey Penkovsky
a0a0a967a2 chore(release): publish packages
- cherrypick_generator@1.1.0-dev.5
2025-06-04 00:39:25 +03:00
Sergey Penkovsky
a9260e0413 feat: implement tryResolve via generate code 2025-06-04 00:38:23 +03:00
Sergey Penkovsky
dd608031a2 chore(release): publish packages
- cherrypick_generator@1.1.0-dev.4
2025-05-28 01:36:40 +03:00
Sergey Penkovsky
49e3654ab8 fix: fixed warnings 2025-05-28 01:35:46 +03:00
Sergey Penkovsky
bc28ff79ef chore: update deps and up to flutter sdk 3.29.3 and dart >=3.7.0 2025-05-28 00:02:23 +03:00
Sergey Penkovsky
52bc66f2f9 update documentaions 2025-05-23 17:27:40 +03:00
Sergey Penkovsky
79a050d056 update documentaions 2025-05-23 17:23:22 +03:00
Sergey Penkovsky
3beb53a094 update documentations 2025-05-23 17:13:57 +03:00
Sergey Penkovsky
21955640d9 chore(release): publish packages
- cherrypick_annotations@1.1.0-dev.1
 - cherrypick_generator@1.1.0-dev.3
2025-05-23 16:11:08 +03:00
Sergey Penkovsky
a62052daa5 doc: update documentations 2025-05-23 16:10:09 +03:00
Sergey Penkovsky
7dbaa59c01 refactor inject generator 2025-05-23 16:03:29 +03:00
Sergey Penkovsky
8438697107 implement inject generator 2025-05-23 15:26:09 +03:00
Sergey Penkovsky
9c42ba4cef feat: implement InjectGenerator 2025-05-23 14:08:08 +03:00
Sergey Penkovsky
1f6ee172a1 starting implement inject generator 2025-05-23 12:21:23 +03:00
Sergey Penkovsky
161e9085f4 chore(release): publish packages
- cherrypick_generator@1.1.0-dev.2
2025-05-23 08:21:46 +03:00
Sergey Penkovsky
ef49595627 doc: update documentations 2025-05-23 08:21:11 +03:00
Sergey Penkovsky
0fd10488f3 update deps 2025-05-23 08:06:28 +03:00
Sergey Penkovsky
46c2939125 fix: update instance generator code 2025-05-23 08:06:08 +03:00
Sergey Penkovsky
6d5537f068 update pubspec 2025-05-23 00:18:54 +03:00
Sergey Penkovsky
2480757797 update pubspec 2025-05-23 00:17:32 +03:00
Sergey Penkovsky
f8340c6a84 chore(release): publish packages
- cherrypick@2.2.0-dev.1
 - cherrypick_generator@1.1.0-dev.1
 - cherrypick_flutter@1.1.2-dev.1
2025-05-22 23:52:55 +03:00
Sergey Penkovsky
62a1655728 fix: fix warnings 2025-05-22 23:52:02 +03:00
Sergey Penkovsky
fc941c0041 update deps 2025-05-22 23:50:55 +03:00
Sergey Penkovsky
5161fa19b6 refactor code 2025-05-22 23:32:26 +03:00
Sergey Penkovsky
8093f077b1 fix: optimize code 2025-05-22 23:27:41 +03:00
Sergey Penkovsky
45b93db6f5 fix pubspecs 2025-05-22 16:58:59 +03:00
Sergey Penkovsky
1741256f37 chore(release): publish packages
- cherrypick@2.2.0-dev.0
 - cherrypick_annotations@1.1.0-dev.0
 - cherrypick_flutter@1.1.2-dev.0
 - cherrypick_generator@1.1.0-dev.0
2025-05-22 16:54:26 +03:00
Sergey Penkovsky
6aa76e4041 fix pubspecs 2025-05-22 16:53:29 +03:00
Sergey Penkovsky
b4970fcf43 doc: update readme 2025-05-22 16:26:33 +03:00
Sergey Penkovsky
0874cbe43a doc: update documentations 2025-05-22 16:06:38 +03:00
Sergey Penkovsky
3bbecfb8ac doc: update documentations 2025-05-22 16:05:09 +03:00
Sergey Penkovsky
c47418d922 update readme 2025-05-22 15:18:16 +03:00
Sergey Penkovsky
9bbfe2a726 added documentations 2025-05-22 13:52:56 +03:00
Sergey Penkovsky
7490a8e66b refactor code 2025-05-21 15:59:11 +03:00
Sergey Penkovsky
e6d944c5f9 refactor code 2025-05-21 15:50:24 +03:00
Sergey Penkovsky
2bc89062cc fix: fix warning conflict with names 2025-05-21 12:45:52 +03:00
Sergey Penkovsky
df2d90777f feat: implement generator for dynamic params 2025-05-21 12:23:33 +03:00
Sergey Penkovsky
1bdcc71534 feat: implement async mode for instance/provide annotations 2025-05-21 11:05:18 +03:00
Sergey Penkovsky
ad6522856a feat: generate instance async code 2025-05-21 10:40:21 +03:00
Sergey Penkovsky
14dce2aafa feat: implement instance/provide annotations 2025-05-21 00:50:57 +03:00
Sergey Penkovsky
7914d91653 refactor module generator 2025-05-20 19:50:13 +03:00
Sergey Penkovsky
29aa790134 doc: fix comment 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
302e1b6115 doc: update readme 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
3afef18f95 doc: update readme 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
5de737079d doc: add README 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
7e1cb7ab93 doc: update README 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
4c9ff802a6 fix: fix warnings 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
74f13e3fa4 doc: added comments to code 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
7bad0c09c0 write comments to code 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
6e063a4067 modify sample 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
9bc0380a7b fix: fix module generator 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
220f1ed097 feat: implement named dependency 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
a4ee97b79f hotfix 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
ea6eb536dd feat: implement generator for named annotation 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
3d071626e5 fix: fix generator for singletone annotation 2025-05-19 16:12:45 +03:00
Sergey Penkovsky
d1e726aaec feat: implement generator di module 2025-05-19 16:12:44 +03:00
Sergey Penkovsky
b906e927c3 start implement generator code 2025-05-19 16:11:41 +03:00
Sergey Penkovsky
9b0741199c feat: implement annotations 2025-05-19 16:10:44 +03:00
Sergey Penkovsky
7a5880e436 feat: Add async dependency resolution and enhance example
- Implemented async provider methods `toProvideAsync` and `toProvideAsyncWithParams` in `Binding` class, allowing asynchronous initialization with dynamic parameters.
- Added typedefs `AsyncProvider<T>` and `AsyncProviderWithParams<T>` for better type clarity with async operations.
- Introduced async resolution methods `resolveAsync` and `tryResolveAsync` in `Scope` for resolving asynchronous dependencies.
- Updated example in `main.dart` to demonstrate async dependency resolution capabilities.
  - Modified `FeatureModule` to utilize async providers for `DataRepository` and `DataBloc`.
  - Replaced synchronous resolution with `resolveAsync` where applicable.
  - Handled potential errors in dependency resolution with try-catch.
- Removed unnecessary whitespace for cleaner code formatting.
2025-05-19 16:10:43 +03:00
Sergey Penkovsky
de995228a5 update readme 2025-05-19 16:06:51 +03:00
Sergey Penkovsky
2607a69bca Merge pull request #8 from pese-git/refactor
Refactor code and add toInstanceAsync method
2025-05-19 13:44:16 +03:00
Sergey Penkovsky
e91987c635 update tests 2025-05-19 11:14:59 +03:00
Sergey Penkovsky
50652a14a9 implement scope tests 2025-05-19 11:10:10 +03:00
Sergey Penkovsky
869f9123bc feat: implement toInstanceAync binding 2025-05-19 10:55:50 +03:00
Sergey Penkovsky
53dd4a1005 add provide typedef 2025-05-19 10:36:26 +03:00
Sergey Penkovsky
e6f9b13ea4 fix readme and freez deps 2025-05-19 10:26:45 +03:00
Sergey Penkovsky
20e44beea7 chore(release): publish packages
- cherrypick@2.1.0
 - cherrypick_flutter@1.1.1
2025-05-19 10:12:32 +03:00
Sergey Penkovsky
0b3d10b88d Merge pull request #7 from pese-git/develop 2025-05-19 09:24:52 +03:00
Sergey Penkovsky
ed43bf78b8 hide test 2025-05-18 22:59:15 +03:00
Sergey Penkovsky
3cd15bc0c1 hide test 2025-05-18 16:48:37 +03:00
Sergey Penkovsky
bf1b0bd215 fix build scripts 2025-05-18 16:41:48 +03:00
Sergey Penkovsky
9bce40735b init di 2025-05-16 18:09:14 +03:00
Sergey Penkovsky
5cab9164ce modified build scripts 2025-05-16 17:58:02 +03:00
Sergey Penkovsky
0c5db63961 fixed warnings 2025-05-16 17:57:40 +03:00
Sergey Penkovsky
7740717fce implement example 2025-05-16 17:56:57 +03:00
Sergey Penkovsky
a7dc2e0f27 chore(release): publish packages
- cherrypick@2.1.0-dev.1
 - cherrypick_flutter@1.1.1-dev.1
2025-05-16 17:32:26 +03:00
Sergey Penkovsky
cb5f0b23d2 implement example 2025-05-16 17:32:26 +03:00
Sergey Penkovsky
c1b2f9c260 doc: update README 2025-05-16 17:32:26 +03:00
Sergey Penkovsky
80c121d2c9 chore(release): publish packages
- cherrypick@2.1.0-dev.0
 - cherrypick_flutter@1.1.1-dev.0
2025-05-16 17:32:26 +03:00
Sergey Penkovsky
3d24f01e3e doc: update README and example 2025-05-16 17:32:26 +03:00
Sergey Penkovsky
2c39ee48ad implement test 2025-05-16 17:32:26 +03:00
Sergey Penkovsky
28035a1ccd fix warnings 2025-05-16 17:32:25 +03:00
Sergey Penkovsky
1b5cc64324 feat: Add async dependency resolution and enhance example
- Implemented async provider methods `toProvideAsync` and `toProvideAsyncWithParams` in `Binding` class, allowing asynchronous initialization with dynamic parameters.
- Added typedefs `AsyncProvider<T>` and `AsyncProviderWithParams<T>` for better type clarity with async operations.
- Introduced async resolution methods `resolveAsync` and `tryResolveAsync` in `Scope` for resolving asynchronous dependencies.
- Updated example in `main.dart` to demonstrate async dependency resolution capabilities.
  - Modified `FeatureModule` to utilize async providers for `DataRepository` and `DataBloc`.
  - Replaced synchronous resolution with `resolveAsync` where applicable.
  - Handled potential errors in dependency resolution with try-catch.
- Removed unnecessary whitespace for cleaner code formatting.
2025-05-16 17:31:58 +03:00
Sergey Penkovsky
e0e2408bc5 fix: fix warning 2025-05-16 17:31:40 +03:00
Sergey Penkovsky
2fb91ca7cc fix: fix warning 2025-05-16 17:31:23 +03:00
Sergey Penkovsky
f23b14c13b docs: add CONTRIBUTORS.md 2025-05-16 16:43:23 +03:00
Sergey Penkovsky
9255dc2bc3 Update pipeline.yml 2025-05-16 14:17:52 +03:00
Sergey Penkovsky
0d2a6ef023 Update pipeline.yml 2025-05-16 14:11:22 +03:00
Sergey Penkovsky
ec977c06b2 Create pipeline.yml 2025-05-16 14:09:10 +03:00
Sergey Penkovsky
155e5f12a8 fix: fix warnings 2025-05-16 13:10:57 +03:00
Sergey Penkovsky
c5d17e372c fix: fix warnings 2025-05-16 13:06:46 +03:00
Sergey Penkovsky
dba52ccf82 doc: update readme 2025-05-16 13:02:32 +03:00
Sergey Penkovsky
33c97bdf34 formatted changelog 2025-05-16 12:52:59 +03:00
Sergey Penkovsky
e2562d22bb chore(release): publish packages
- cherrypick@2.0.2
 - cherrypick_flutter@1.1.1
2025-05-16 12:46:16 +03:00
Sergey Penkovsky
1a6e3d0b97 Merge pull request #6 from pese-git/fix/resolve_with_params
fix: support passing params when resolving dependency recursively in …
2025-05-16 12:43:42 +03:00
yarashevich_kv
ea8ff1da83 fix: support passing params when resolving dependency recursively in parent scope. 2025-05-16 10:13:59 +03:00
Sergey Penkovsky
ff55ddb491 chore(release): publish packages
- cherrypick_flutter@1.1.0
2025-05-03 17:02:38 +03:00
Sergey Penkovsky
3d3130914a feat: modify api in CherryPickProvider 2025-05-03 17:02:13 +03:00
Sergey Penkovsky
35f7c27360 fix: update description 2025-05-02 12:13:28 +03:00
Sergey Penkovsky
36e42171b7 hotfix 2025-05-02 12:10:30 +03:00
Sergey Penkovsky
1a1fe9c4e4 fix: update gitignore 2025-05-02 12:09:25 +03:00
Sergey Penkovsky
6900b649e1 chore(release): publish packages
- cherrypick@2.0.1
 - cherrypick_flutter@1.0.1
2025-05-02 12:04:22 +03:00
Sergey Penkovsky
75222a3471 doc: write readme 2025-05-02 12:00:06 +03:00
Sergey Penkovsky
c573e9840f feat: add melos commands 2025-05-02 11:53:29 +03:00
Sergey Penkovsky
490355b145 add license info 2025-05-02 11:53:03 +03:00
Sergey Penkovsky
63cd56a696 fix: fix warning 2025-05-02 11:48:37 +03:00
Sergey Penkovsky
585385980f doc: update readme 2025-05-02 11:46:47 +03:00
Sergey Penkovsky
e1a556d193 implement cherrypick_flutter library 2025-05-02 11:42:32 +03:00
Sergey Penkovsky
f6da7568fe add melos and rebase project structure 2025-05-02 11:41:18 +03:00
Sergey Penkovsky
938f8df8b6 supported Dart 3.0 and fixed lint warnings 2023-05-22 15:58:03 +03:00
Sergey Penkovsky
f94c2df7cd updated changelog 2023-05-22 15:57:12 +03:00
Sergey Penkovsky
13c96acca5 updated build script 2023-05-22 15:48:23 +03:00
Sergey Penkovsky
c90f96708f changed build version 2023-01-27 16:04:22 +03:00
Sergey Penkovsky
b789dd0179 added meta 2023-01-27 16:03:11 +03:00
Sergey Penkovsky
a9b0ff4f36 Removed exception "ConcurrentModificationError 2023-01-27 16:02:49 +03:00
Sergey Penkovsky
21c3e83a6a added provider with params and changed build version 2023-01-04 11:17:44 +03:00
Sergey Penkovsky
a983281727 Merge pull request #4 from KlimYarosh/master
Add parameter to provider
2023-01-04 11:09:47 +03:00
Sergey Penkovsky
e0f5874621 refactored pr 2023-01-04 11:03:29 +03:00
yarashevich_kv
8c3a0df452 Add parameter to provider 2022-08-10 17:23:54 +03:00
Sergey Penkovsky
085ccb55f5 changed build version 2022-05-21 16:31:29 +03:00
Sergey Penkovsky
c91392c978 fixed pubspec 2022-05-21 16:29:41 +03:00
Sergey Penkovsky
4205993ea7 updated changelog and updated version 2021-12-10 22:08:12 +03:00
Sergey Penkovsky
58245fb665 fixed docs and code 2021-12-10 22:04:51 +03:00
Sergey Penkovsky
7a53844c7d updated readme 2021-12-10 21:53:14 +03:00
Sergey Penkovsky
73d199b012 updated readme 2021-12-10 21:52:46 +03:00
Sergey Penkovsky
75bc73d62f changed version number 2021-12-10 21:42:18 +03:00
Sergey Penkovsky
bdc8951438 rename method 2021-12-10 21:39:38 +03:00
Sergey Penkovsky
3c95bf4947 upgraded changelog 2021-10-20 10:25:55 +03:00
Sergey Penkovsky
643a830d2d changed package version 2021-10-20 10:18:46 +03:00
Sergey Penkovsky
c44abaaedb added experimental api 2021-10-20 10:17:48 +03:00
Sergey Penkovsky
e2cc712840 updated doc 2021-10-20 09:17:10 +03:00
Sergey Penkovsky
c49c9012ac refactored code 2021-10-20 09:15:51 +03:00
Sergey Penkovsky
4cb210d0c2 changed build version and updated changelog 2021-04-30 16:43:42 +03:00
Sergey Penkovsky
8f2ae95b8e fixed initialization error for singeltone provider 2021-04-30 16:42:39 +03:00
150 changed files with 13617 additions and 885 deletions

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{
"flutter": "3.29.3"
}

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name: Melos + FVM CI
on:
push:
branches: [ "master" ]
pull_request:
branches: [ "master" ]
jobs:
build:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- uses: dart-lang/setup-dart@v1
# также актуализация Flutter, если нужен fvm
- name: Install FVM
run: dart pub global activate fvm
- name: Install Flutter version via FVM
run: fvm install
# ВАЖНО: активируем melos через flutter, чтобы не было несовместимости
- name: Install Melos
run: fvm flutter pub global activate melos
- name: Bootstrap workspace
run: fvm flutter pub global run melos bootstrap
- name: CodeGen
run: fvm flutter pub global run melos run codegen
- name: Analyze all packages
run: fvm flutter pub global run melos run analyze
- name: Run all tests
run: fvm flutter pub global run melos run test

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@@ -1,21 +1,20 @@
# See https://www.dartlang.org/guides/libraries/private-files
.DS_Store
# FVM Version Cache
.fvm/
# Files and directories created by pub
.dart_tool/
.packages
build/
# If you're building an application, you may want to check-in your pubspec.lock
pubspec.lock
.idea/
.vscode/
# Directory created by dartdoc
# If you don't generate documentation locally you can remove this line.
doc/api/
**/generated
**/*.g.dart
**/*.gr.dart
**/*.freezed.dart
**/*.cherrypick_injectable.g.dart
# Avoid committing generated Javascript files:
*.dart.js
*.info.json # Produced by the --dump-info flag.
*.js # When generated by dart2js. Don't specify *.js if your
# project includes source files written in JavaScript.
*.js_
*.js.deps
*.js.map
pubspec_overrides.yaml
melos_cherrypick.iml
melos_cherrypick_workspace.iml
melos_cherrypick_flutter.iml

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@@ -1,21 +1,348 @@
# Change Log
# Changelog
All notable changes to this project will be documented in this file.
See [Conventional Commits](https://conventionalcommits.org) for commit guidelines.
0.1.2 Fixed warnings in code
## 2025-07-15
---
0.1.1+2 Updated libraries and fixed warnings
### Changes
---
0.1.1+1 Updated pubspec and readme.md
Packages with breaking changes:
- [`cherrypick_generator` - `v1.1.0-dev.6`](#cherrypick_generator---v110-dev6)
Packages with other changes:
- [`cherrypick` - `v2.2.0-dev.2`](#cherrypick---v220-dev2)
- [`cherrypick_flutter` - `v1.1.2-dev.2`](#cherrypick_flutter---v112-dev2)
Packages with dependency updates only:
> Packages listed below depend on other packages in this workspace that have had changes. Their versions have been incremented to bump the minimum dependency versions of the packages they depend upon in this project.
- `cherrypick_flutter` - `v1.1.2-dev.2`
---
0.1.1 Updated pubspec
#### `cherrypick_generator` - `v1.1.0-dev.6`
- **FIX**: format test code.
- **FEAT**(generator): support output_dir and build_extensions config for generated files.
- **BREAKING** **FEAT**(generator): complete code generation testing framework with 100% test coverage.
#### `cherrypick` - `v2.2.0-dev.2`
- **DOCS**: move and update quick start guides to ./doc directory.
## 2025-06-04
### Changes
---
0.1.0 Initial release
Packages with breaking changes:
- There are no breaking changes in this release.
Packages with other changes:
- [`cherrypick_generator` - `v1.1.0-dev.5`](#cherrypick_generator---v110-dev5)
---
#### `cherrypick_generator` - `v1.1.0-dev.5`
- **FEAT**: implement tryResolve via generate code.
## 2025-05-28
### Changes
---
Packages with breaking changes:
- There are no breaking changes in this release.
Packages with other changes:
- [`cherrypick_generator` - `v1.1.0-dev.4`](#cherrypick_generator---v110-dev4)
---
#### `cherrypick_generator` - `v1.1.0-dev.4`
- **FIX**: fixed warnings.
## 2025-05-23
### Changes
---
Packages with breaking changes:
- There are no breaking changes in this release.
Packages with other changes:
- [`cherrypick_annotations` - `v1.1.0-dev.1`](#cherrypick_annotations---v110-dev1)
- [`cherrypick_generator` - `v1.1.0-dev.3`](#cherrypick_generator---v110-dev3)
---
#### `cherrypick_annotations` - `v1.1.0-dev.1`
- **FEAT**: implement InjectGenerator.
#### `cherrypick_generator` - `v1.1.0-dev.3`
- **FEAT**: implement InjectGenerator.
## 2025-05-23
### Changes
---
Packages with breaking changes:
- There are no breaking changes in this release.
Packages with other changes:
- [`cherrypick_generator` - `v1.1.0-dev.2`](#cherrypick_generator---v110-dev2)
---
#### `cherrypick_generator` - `v1.1.0-dev.2`
- **FIX**: update instance generator code.
## 2025-05-22
### Changes
---
Packages with breaking changes:
- There are no breaking changes in this release.
Packages with other changes:
- [`cherrypick` - `v2.2.0-dev.1`](#cherrypick---v220-dev1)
- [`cherrypick_generator` - `v1.1.0-dev.1`](#cherrypick_generator---v110-dev1)
- [`cherrypick_flutter` - `v1.1.2-dev.1`](#cherrypick_flutter---v112-dev1)
Packages with dependency updates only:
> Packages listed below depend on other packages in this workspace that have had changes. Their versions have been incremented to bump the minimum dependency versions of the packages they depend upon in this project.
- `cherrypick_flutter` - `v1.1.2-dev.1`
---
#### `cherrypick` - `v2.2.0-dev.1`
- **FIX**: fix warnings.
#### `cherrypick_generator` - `v1.1.0-dev.1`
- **FIX**: optimize code.
## 2025-05-22
### Changes
---
Packages with breaking changes:
- There are no breaking changes in this release.
Packages with other changes:
- [`cherrypick` - `v2.2.0-dev.0`](#cherrypick---v220-dev0)
- [`cherrypick_annotations` - `v1.1.0-dev.0`](#cherrypick_annotations---v110-dev0)
- [`cherrypick_flutter` - `v1.1.2-dev.0`](#cherrypick_flutter---v112-dev0)
- [`cherrypick_generator` - `v1.1.0-dev.0`](#cherrypick_generator---v110-dev0)
---
#### `cherrypick` - `v2.2.0-dev.0`
- **FEAT**: Add async dependency resolution and enhance example.
- **FEAT**: implement toInstanceAync binding.
#### `cherrypick_annotations` - `v1.1.0-dev.0`
- **FEAT**: implement generator for dynamic params.
- **FEAT**: implement instance/provide annotations.
- **FEAT**: implement generator for named annotation.
- **FEAT**: implement generator di module.
- **FEAT**: implement annotations.
#### `cherrypick_flutter` - `v1.1.2-dev.0`
- **FIX**: fix warning.
- **FIX**: fix warnings.
#### `cherrypick_generator` - `v1.1.0-dev.0`
- **FIX**: fix warning conflict with names.
- **FIX**: fix warnings.
- **FIX**: fix module generator.
- **FIX**: fix generator for singletone annotation.
- **FEAT**: implement generator for dynamic params.
- **FEAT**: implement async mode for instance/provide annotations.
- **FEAT**: generate instance async code.
- **FEAT**: implement instance/provide annotations.
- **FEAT**: implement named dependency.
- **FEAT**: implement generator for named annotation.
- **FEAT**: implement generator di module.
- **FEAT**: implement annotations.
## 2025-05-19
### Changes
---
Packages with breaking changes:
- [`cherrypick_flutter` - `v1.1.1`](#cherrypick_flutter---v111)
Packages with other changes:
- [`cherrypick` - `v2.1.0`](#cherrypick---v210)
Packages graduated to a stable release (see pre-releases prior to the stable version for changelog entries):
- `cherrypick` - `v2.1.0`
- `cherrypick_flutter` - `v1.1.1`
---
#### `cherrypick_flutter` - `v1.1.1`
#### `cherrypick` - `v2.1.0`
## 2025-05-16
### Changes
---
Packages with breaking changes:
- There are no breaking changes in this release.
Packages with other changes:
- [`cherrypick` - `v2.1.0-dev.1`](#cherrypick---v210-dev1)
- [`cherrypick_flutter` - `v1.1.1-dev.1`](#cherrypick_flutter---v111-dev1)
---
#### `cherrypick` - `v2.1.0-dev.1`
- **FIX**: fix warnings.
- **FIX**: fix warnings.
- **FIX**: support passing params when resolving dependency recursively in parent scope.
- **FEAT**: Add async dependency resolution and enhance example.
- **FEAT**: Add async dependency resolution and enhance example.
#### `cherrypick_flutter` - `v1.1.1-dev.1`
- **FIX**: fix warnings.
## 2025-05-16
### Changes
---
Packages with breaking changes:
- There are no breaking changes in this release.
Packages with other changes:
- [`cherrypick` - `v2.0.2`](#cherrypick---v202)
- [`cherrypick_flutter` - `v1.1.1`](#cherrypick_flutter---v111)
Packages with dependency updates only:
> Packages listed below depend on other packages in this workspace that have had changes. Their versions have been incremented to bump the minimum dependency versions of the packages they depend upon in this project.
- `cherrypick_flutter` - `v1.1.1`
---
#### `cherrypick` - `v2.0.2`
- **FIX**: support passing params when resolving dependency recursively in parent scope.
## 2025-05-03
### Changes
---
Packages with breaking changes:
- There are no breaking changes in this release.
Packages with other changes:
- [`cherrypick_flutter` - `v1.1.0`](#cherrypick_flutter---v110)
---
#### `cherrypick_flutter` - `v1.1.0`
- **FIX**: update description.
- **FIX**: update gitignore.
- **FEAT**: modify api in CherryPickProvider.
## 2025-05-02
### Changes
---
Packages with breaking changes:
- There are no breaking changes in this release.
Packages with other changes:
- [`cherrypick` - `v2.0.1`](#cherrypick---v201)
- [`cherrypick_flutter` - `v1.0.1`](#cherrypick_flutter---v101)
Packages with dependency updates only:
> Packages listed below depend on other packages in this workspace that have had changes. Their versions have been incremented to bump the minimum dependency versions of the packages they depend upon in this project.
- `cherrypick_flutter` - `v1.0.1`
---
#### `cherrypick` - `v2.0.1`
- **FIX**: fix warning.

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# Contributors
- Sergey Penkovsky <sergey.penkovsky@gmail.com>
- Klim Yaroshevich <yarashevich_kv@st.by>

148
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# cherrypick
# CherryPick Workspace
Experimental development of DI in the Dart language
CherryPick Workspace is a modular, open-source dependency injection ecosystem for Dart and Flutter, designed to offer lightweight, flexible, and scalable DI suitable for both backend and frontend (Flutter) development. This monorepo contains the main DI runtime library, annotation helpers, code generation for modular bindings, and seamless Flutter integration.
- [New Api ENG](/doc/quick_start_en.md)
- [New Api RU](/doc/quick_start_ru.md)
---
## Packages Overview
### Features
- **[`cherrypick`](./cherrypick)**
The core dependency injection library. Supports modular bindings, hierarchical scopes, named and singleton bindings, provider functions (sync/async), runtime parameters, and test-friendly composition.
_Intended for use in pure Dart and Flutter projects._
- [x] Scope
- [x] Sub scope
- [x] Initialization instance with name
- **[`cherrypick_annotations`](./cherrypick_annotations)**
A set of Dart annotations (`@module`, `@singleton`, `@instance`, `@provide`, `@named`, `@params`) enabling concise, declarative DI modules and providers, primarily for use with code generation tools.
- **[`cherrypick_generator`](./cherrypick_generator)**
A [source_gen](https://pub.dev/packages/source_gen)-based code generator that automatically converts your annotated modules and providers into ready-to-use boilerplate for registration and resolution within your app.
_Reduces manual wiring and errors; compatible with build_runner._
- **[`cherrypick_flutter`](./cherrypick_flutter)**
Adds Flutter-native integration, exposing DI scopes and modules to the widget tree through `CherryPickProvider` and enabling dependency management throughout your Flutter app.
---
## Why CherryPick?
- **Zero-overhead and intuitive API:**
Clean, minimal syntax, strong typing, powerful binding lifecycle control.
- **High testability:**
Supports overriding and hierarchical scope trees.
- **Both Sync & Async support:**
Register and resolve async providers, factories, and dependencies.
- **Seamless code generation:**
Effortless setup with annotations + generator—skip boilerplate!
- **Works with or without Flutter.**
- **Production ready:**
Robust enough for apps, packages, and server-side Dart.
- **Extensible & Modular:**
Add bindings at runtime, use sub-modules, or integrate via codegen.
---
## Get Started
### 1. Add dependencies
In your `pubspec.yaml`:
```yaml
dependencies:
cherrypick: ^<latest-version>
cherrypick_annotations: ^<latest-version>
dev_dependencies:
build_runner: ^<latest>
cherrypick_generator: ^<latest-version>
```
For Flutter projects, add:
```yaml
dependencies:
cherrypick_flutter: ^<latest-version>
```
### 2. Write a DI Module (with annotations)
```dart
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
@module()
abstract class MyModule extends Module {
@singleton()
ApiClient apiClient() => ApiClient();
@provide()
DataRepository dataRepo(ApiClient client) => DataRepository(client);
@provide()
String greeting(@params() String name) => 'Hello, $name!';
}
```
### 3. Generate the bindings
```sh
dart run build_runner build
# or for Flutter:
flutter pub run build_runner build
```
The generator will create a `$MyModule` class with binding code.
### 4. Install and Resolve
```dart
final scope = CherryPick.openRootScope()
..installModules([$MyModule()]);
final repo = scope.resolve<DataRepository>();
final greeting = scope.resolveWithParams<String>('John'); // 'Hello, John!'
```
_For Flutter, wrap your app with `CherryPickProvider` for DI scopes in the widget tree:_
```dart
void main() {
runApp(
CherryPickProvider(child: MyApp()),
);
}
```
---
## Features at a Glance
-**Fast, lightweight DI** for any Dart/Flutter project
- 🧩 **Modular & hierarchical scopes** (root, subscopes)
- 🔖 **Named/bound/singleton instances** out of the box
- 🔄 **Sync and async provider support**
- ✏️ **Runtime parameters for dynamic factory methods**
- 🏷️ **Code generator** for annotation-based DI setup (`cherrypick_generator`)
- 🕹️ **Deep Flutter integration** via `CherryPickProvider`
---
## Example Usage
Please see:
- [`cherrypick/README.md`](./cherrypick/README.md) for core DI features and examples
- [`cherrypick_flutter/README.md`](./cherrypick_flutter/README.md) for Flutter-specific usage
- [`cherrypick_annotations/README.md`](./cherrypick_annotations/README.md) and [`cherrypick_generator/README.md`](./cherrypick_generator/README.md) for codegen and annotations
---
## Contribution & License
- **Contributions:** PRs, issues, and feedback are welcome on [GitHub](https://github.com/pese-git/cherrypick).
- **License:** Apache 2.0 for all packages in this workspace.
---
**Happy Cherry Picking! 🍒**

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{
"flutter": "3.24.2",
"flavors": {}
}

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# See https://www.dartlang.org/guides/libraries/private-files
# Files and directories created by pub
.dart_tool/
.packages
build/
# If you're building an application, you may want to check-in your pubspec.lock
pubspec.lock
# Directory created by dartdoc
# If you don't generate documentation locally you can remove this line.
doc/api/
# Avoid committing generated Javascript files:
*.dart.js
*.info.json # Produced by the --dump-info flag.
*.js # When generated by dart2js. Don't specify *.js if your
# project includes source files written in JavaScript.
*.js_
*.js.deps
*.js.map
# FVM Version Cache
.fvm/

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Sergey Penkovsky <sergey.penkovsky@gmail.com>

73
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## 2.2.0-dev.2
- **DOCS**: move and update quick start guides to ./doc directory.
## 2.2.0-dev.1
- **FIX**: fix warnings.
## 2.2.0-dev.0
- **FEAT**: Add async dependency resolution and enhance example.
- **FEAT**: implement toInstanceAync binding.
## 2.1.0
- Graduate package to a stable release. See pre-releases prior to this version for changelog entries.
## 2.1.0-dev.1
- **FIX**: fix warnings.
- **FIX**: fix warnings.
- **FIX**: support passing params when resolving dependency recursively in parent scope.
- **FEAT**: Add async dependency resolution and enhance example.
- **FEAT**: Add async dependency resolution and enhance example.
## 2.0.2
- **FIX**: support passing params when resolving dependency recursively in parent scope.
## 2.1.0-dev.0
- **FEAT**: Add async dependency resolution and enhance example.
## 2.0.1
- **FIX**: fix warning.
## 2.0.0
- **FEAT**: support for Dart 3.0.
## 1.1.0
- **FEAT**: verified Dart 3.0 support.
## 1.0.4
- **FIX**: Fixed exception "ConcurrentModificationError".
## 1.0.3
- **FEAT**: Added provider with params.
## 1.0.2
- **DOCS**: Updated docs and fixed syntax error.
## 1.0.1
- **FIX**: Fixed syntax error.
## 1.0.0
- **REFACTOR**: Refactored code and added experimental API.
## 0.1.2+1
- **FIX**: Fixed initialization error.
## 0.1.2
- **FIX**: Fixed warnings in code.
## 0.1.1+2
- **MAINT**: Updated libraries and fixed warnings.
## 0.1.1+1
- **MAINT**: Updated pubspec and readme.md.
## 0.1.1
- **MAINT**: Updated pubspec.
## 0.1.0
- **INIT**: Initial release.

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# CherryPick
`cherrypick` is a flexible and lightweight dependency injection library for Dart and Flutter. It provides an easy-to-use system for registering, scoping, and resolving dependencies using modular bindings and hierarchical scopes. The design enables cleaner architecture, testability, and modular code in your applications.
## Key Concepts
### Binding
A **Binding** acts as a configuration for how to create or provide a particular dependency. Bindings support:
- Direct instance assignment (`toInstance()`, `toInstanceAsync()`)
- Lazy providers (sync/async functions)
- Provider functions supporting dynamic parameters
- Named instances for resolving by string key
- Optional singleton lifecycle
#### Example
```dart
// Provide a direct instance
Binding<String>().toInstance("Hello world");
// Provide an async direct instance
Binding<String>().toInstanceAsync(Future.value("Hello world"));
// Provide a lazy sync instance using a factory
Binding<String>().toProvide(() => "Hello world");
// Provide a lazy async instance using a factory
Binding<String>().toProvideAsync(() async => "Hello async world");
// Provide an instance with dynamic parameters (sync)
Binding<String>().toProvideWithParams((params) => "Hello $params");
// Provide an instance with dynamic parameters (async)
Binding<String>().toProvideAsyncWithParams((params) async => "Hello $params");
// Named instance for retrieval by name
Binding<String>().toProvide(() => "Hello world").withName("my_string");
// Mark as singleton (only one instance within the scope)
Binding<String>().toProvide(() => "Hello world").singleton();
```
### Module
A **Module** is a logical collection point for bindings, designed for grouping and initializing related dependencies. Implement the `builder` method to define how dependencies should be bound within the scope.
#### Example
```dart
class AppModule extends Module {
@override
void builder(Scope currentScope) {
bind<ApiClient>().toInstance(ApiClientMock());
bind<String>().toProvide(() => "Hello world!");
}
}
```
### Scope
A **Scope** manages a tree of modules and dependency instances. Scopes can be nested into hierarchies (parent-child), supporting modular app composition and context-specific overrides.
You typically work with the root scope, but can also create named subscopes as needed.
#### Example
```dart
// Open the main/root scope
final rootScope = CherryPick.openRootScope();
// Install a custom module
rootScope.installModules([AppModule()]);
// Resolve a dependency synchronously
final str = rootScope.resolve<String>();
// Resolve a dependency asynchronously
final result = await rootScope.resolveAsync<String>();
// Close the root scope once done
CherryPick.closeRootScope();
```
#### Working with Subscopes
```dart
// Open a named child scope (e.g., for a feature/module)
final subScope = rootScope.openSubScope('featureScope')
..installModules([FeatureModule()]);
// Resolve from subScope, with fallback to parents if missing
final dataBloc = await subScope.resolveAsync<DataBloc>();
```
### Dependency Lookup API
- `resolve<T>()` — Locates a dependency instance or throws if missing.
- `resolveAsync<T>()` — Async variant for dependencies requiring async binding.
- `tryResolve<T>()` — Returns `null` if not found (sync).
- `tryResolveAsync<T>()` — Returns `null` async if not found.
Supports:
- Synchronous and asynchronous dependencies
- Named dependencies
- Provider functions with and without runtime parameters
## Example Application
Below is a complete example illustrating modules, subscopes, async providers, and dependency resolution.
```dart
import 'dart:async';
import 'package:meta/meta.dart';
import 'package:cherrypick/cherrypick.dart';
class AppModule extends Module {
@override
void builder(Scope currentScope) {
bind<ApiClient>().withName("apiClientMock").toInstance(ApiClientMock());
bind<ApiClient>().withName("apiClientImpl").toInstance(ApiClientImpl());
}
}
class FeatureModule extends Module {
final bool isMock;
FeatureModule({required this.isMock});
@override
void builder(Scope currentScope) {
// Async provider for DataRepository with named dependency selection
bind<DataRepository>()
.withName("networkRepo")
.toProvideAsync(() async {
final client = await Future.delayed(
Duration(milliseconds: 100),
() => currentScope.resolve<ApiClient>(
named: isMock ? "apiClientMock" : "apiClientImpl",
),
);
return NetworkDataRepository(client);
})
.singleton();
// Chained async provider for DataBloc
bind<DataBloc>().toProvideAsync(
() async {
final repo = await currentScope.resolveAsync<DataRepository>(
named: "networkRepo");
return DataBloc(repo);
},
);
}
}
void main() async {
final scope = CherryPick.openRootScope().installModules([AppModule()]);
final featureScope = scope.openSubScope("featureScope")
..installModules([FeatureModule(isMock: true)]);
final dataBloc = await featureScope.resolveAsync<DataBloc>();
dataBloc.data.listen(
(d) => print('Received data: $d'),
onError: (e) => print('Error: $e'),
onDone: () => print('DONE'),
);
await dataBloc.fetchData();
}
class DataBloc {
final DataRepository _dataRepository;
Stream<String> get data => _dataController.stream;
final StreamController<String> _dataController = StreamController.broadcast();
DataBloc(this._dataRepository);
Future<void> fetchData() async {
try {
_dataController.sink.add(await _dataRepository.getData());
} catch (e) {
_dataController.sink.addError(e);
}
}
void dispose() {
_dataController.close();
}
}
abstract class DataRepository {
Future<String> getData();
}
class NetworkDataRepository implements DataRepository {
final ApiClient _apiClient;
final _token = 'token';
NetworkDataRepository(this._apiClient);
@override
Future<String> getData() async =>
await _apiClient.sendRequest(
url: 'www.google.com',
token: _token,
requestBody: {'type': 'data'},
);
}
abstract class ApiClient {
Future sendRequest({@required String? url, String? token, Map? requestBody});
}
class ApiClientMock implements ApiClient {
@override
Future sendRequest(
{@required String? url, String? token, Map? requestBody}) async {
return 'Local Data';
}
}
class ApiClientImpl implements ApiClient {
@override
Future sendRequest(
{@required String? url, String? token, Map? requestBody}) async {
return 'Network data';
}
}
```
## Features
- [x] Main Scope and Named Subscopes
- [x] Named Instance Binding and Resolution
- [x] Asynchronous and Synchronous Providers
- [x] Providers Supporting Runtime Parameters
- [x] Singleton Lifecycle Management
- [x] Modular and Hierarchical Composition
- [x] Null-safe Resolution (tryResolve/tryResolveAsync)
## Contributing
Contributions are welcome! Please open issues or submit pull requests on [GitHub](https://github.com/pese-git/cherrypick).
## License
Licensed under the [Apache License 2.0](http://www.apache.org/licenses/LICENSE-2.0).
---
**Important:** Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for specific language governing permissions and limitations under the License.
## Links
- [GitHub Repository](https://github.com/pese-git/cherrypick)

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@@ -0,0 +1,30 @@
# This file configures the static analysis results for your project (errors,
# warnings, and lints).
#
# This enables the 'recommended' set of lints from `package:lints`.
# This set helps identify many issues that may lead to problems when running
# or consuming Dart code, and enforces writing Dart using a single, idiomatic
# style and format.
#
# If you want a smaller set of lints you can change this to specify
# 'package:lints/core.yaml'. These are just the most critical lints
# (the recommended set includes the core lints).
# The core lints are also what is used by pub.dev for scoring packages.
include: package:lints/recommended.yaml
# Uncomment the following section to specify additional rules.
# linter:
# rules:
# - camel_case_types
# analyzer:
# exclude:
# - path/to/excluded/files/**
# For more information about the core and recommended set of lints, see
# https://dart.dev/go/core-lints
# For additional information about configuring this file, see
# https://dart.dev/guides/language/analysis-options

View File

@@ -50,7 +50,7 @@ class FeatureModule extends Module {
),
),
)
.singeltone();
.singleton();
bind<DataBloc>().toProvide(
() => DataBloc(
currentScope.resolve<DataRepository>(named: "networkRepo"),

View File

@@ -0,0 +1,112 @@
import 'dart:async';
import 'package:cherrypick/cherrypick.dart';
class AppModule extends Module {
@override
void builder(Scope currentScope) {
bind<ApiClient>().withName("apiClientMock").toInstance(ApiClientMock());
bind<ApiClient>().withName("apiClientImpl").toInstance(ApiClientImpl());
}
}
class FeatureModule extends Module {
final bool isMock;
FeatureModule({required this.isMock});
@override
void builder(Scope currentScope) {
// Using toProvideAsync for async initialization
bind<DataRepository>().withName("networkRepo").toProvideAsync(() async {
final client = await Future.delayed(
Duration(milliseconds: 100),
() => currentScope.resolve<ApiClient>(
named: isMock ? "apiClientMock" : "apiClientImpl"));
return NetworkDataRepository(client);
}).singleton();
// Asynchronous initialization of DataBloc
bind<DataBloc>().toProvideAsync(
() async {
final repo = await currentScope.resolveAsync<DataRepository>(
named: "networkRepo");
return DataBloc(repo);
},
);
}
}
Future<void> main() async {
try {
final scope = openRootScope().installModules([
AppModule(),
]);
final subScope = scope
.openSubScope("featureScope")
.installModules([FeatureModule(isMock: true)]);
// Asynchronous instance resolution
final dataBloc = await subScope.resolveAsync<DataBloc>();
dataBloc.data.listen((d) => print('Received data: $d'),
onError: (e) => print('Error: $e'), onDone: () => print('DONE'));
await dataBloc.fetchData();
} catch (e) {
print('Error resolving dependency: $e');
}
}
class DataBloc {
final DataRepository _dataRepository;
final StreamController<String> _dataController = StreamController.broadcast();
Stream<String> get data => _dataController.stream;
DataBloc(this._dataRepository);
Future<void> fetchData() async {
try {
_dataController.sink.add(await _dataRepository.getData());
} catch (e) {
_dataController.sink.addError(e);
}
}
void dispose() {
_dataController.close();
}
}
abstract class DataRepository {
Future<String> getData();
}
class NetworkDataRepository implements DataRepository {
final ApiClient _apiClient;
final _token = 'token';
NetworkDataRepository(this._apiClient);
@override
Future<String> getData() async => await _apiClient.sendRequest(
url: 'www.google.com', token: _token, requestBody: {'type': 'data'});
}
abstract class ApiClient {
Future sendRequest({String url, String token, Map requestBody});
}
class ApiClientMock implements ApiClient {
@override
Future sendRequest({String? url, String? token, Map? requestBody}) async {
return 'Local Data';
}
}
class ApiClientImpl implements ApiClient {
@override
Future sendRequest({String? url, String? token, Map? requestBody}) async {
return 'Network data';
}
}

View File

@@ -1,6 +1,5 @@
name: example
version: 1.0.0
author: "Sergey Penkovsky <sergey.penkovsky@gmail.com>"
homepage: localhost
publish_to: none
@@ -9,6 +8,8 @@ environment:
dependencies:
meta: ^1.3.0
cherrypick:
path: ../

View File

@@ -0,0 +1,19 @@
library;
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
export 'package:cherrypick/src/binding.dart';
export 'package:cherrypick/src/helper.dart';
export 'package:cherrypick/src/module.dart';
export 'package:cherrypick/src/scope.dart';

View File

@@ -0,0 +1,190 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
enum Mode { simple, instance, providerInstance, providerInstanceWithParams }
typedef Provider<T> = T? Function();
typedef ProviderWithParams<T> = T Function(dynamic params);
typedef AsyncProvider<T> = Future<T> Function();
typedef AsyncProviderWithParams<T> = Future<T> Function(dynamic params);
/// RU: Класс Binding<T> настраивает параметры экземпляра.
/// ENG: The Binding<T> class configures the settings for the instance.
///
class Binding<T> {
late Mode _mode;
late Type _key;
late String _name;
T? _instance;
Future<T>? _instanceAsync;
Provider<T>? _provider;
ProviderWithParams<T>? _providerWithParams;
AsyncProvider<T>? asyncProvider;
AsyncProviderWithParams<T>? asyncProviderWithParams;
late bool _isSingleton = false;
late bool _isNamed = false;
Binding() {
_mode = Mode.simple;
_key = T;
}
/// RU: Метод возвращает [Mode] экземпляра.
/// ENG: The method returns the [Mode] of the instance.
///
/// return [Mode]
Mode get mode => _mode;
/// RU: Метод возвращает тип экземпляра.
/// ENG: The method returns the type of the instance.
///
/// return [Type]
Type get key => _key;
/// RU: Метод возвращает имя экземпляра.
/// ENG: The method returns the name of the instance.
///
/// return [String]
String get name => _name;
/// RU: Метод проверяет сингелтон экземпляр или нет.
/// ENG: The method checks the singleton instance or not.
///
/// return [bool]
bool get isSingleton => _isSingleton;
/// RU: Метод проверяет именован экземпляр или нет.
/// ENG: The method checks whether the instance is named or not.
///
/// return [bool]
bool get isNamed => _isNamed;
/// RU: Добавляет имя для экземляпя [value].
/// ENG: Added name for instance [value].
///
/// return [Binding]
Binding<T> withName(String name) {
_name = name;
_isNamed = true;
return this;
}
/// RU: Инициализация экземляпяра [value].
/// ENG: Initialization instance [value].
///
/// return [Binding]
Binding<T> toInstance(T value) {
_mode = Mode.instance;
_instance = value;
_isSingleton = true;
return this;
}
/// RU: Инициализация экземляпяра [value].
/// ENG: Initialization instance [value].
///
/// return [Binding]
Binding<T> toInstanceAsync(Future<T> value) {
_mode = Mode.instance;
_instanceAsync = value;
_isSingleton = true;
return this;
}
/// RU: Инициализация экземляпяра  через провайдер [value].
/// ENG: Initialization instance via provider [value].
///
/// return [Binding]
Binding<T> toProvide(Provider<T> value) {
_mode = Mode.providerInstance;
_provider = value;
return this;
}
/// RU: Инициализация экземляпяра  через провайдер [value].
/// ENG: Initialization instance via provider [value].
///
/// return [Binding]
Binding<T> toProvideAsync(AsyncProvider<T> provider) {
_mode = Mode.providerInstance;
asyncProvider = provider;
return this;
}
/// RU: Инициализация экземляпяра  через провайдер [value] c динамическим параметром.
/// ENG: Initialization instance via provider [value] with a dynamic param.
///
/// return [Binding]
Binding<T> toProvideWithParams(ProviderWithParams<T> value) {
_mode = Mode.providerInstanceWithParams;
_providerWithParams = value;
return this;
}
/// RU: Инициализация экземляра через асинхронный провайдер [value] с динамическим параметром.
/// ENG: Initializes the instance via async provider [value] with a dynamic param.
///
/// return [Binding]
Binding<T> toProvideAsyncWithParams(AsyncProviderWithParams<T> provider) {
_mode = Mode.providerInstanceWithParams;
asyncProviderWithParams = provider;
return this;
}
/// RU: Инициализация экземляпяра  как сингелтон [value].
/// ENG: Initialization instance as a singelton [value].
///
/// return [Binding]
Binding<T> singleton() {
_isSingleton = true;
return this;
}
/// RU: Поиск экземпляра.
/// ENG: Resolve instance.
///
/// return [T]
T? get instance => _instance;
/// RU: Поиск экземпляра.
/// ENG: Resolve instance.
///
/// return [T]
Future<T>? get instanceAsync => _instanceAsync;
/// RU: Поиск экземпляра.
/// ENG: Resolve instance.
///
/// return [T]
T? get provider {
if (_isSingleton) {
_instance ??= _provider?.call();
return _instance;
}
return _provider?.call();
}
/// RU: Поиск экземпляра с параметром.
///
/// ENG: Resolve instance with [params].
///
/// return [T]
T? providerWithParams(dynamic params) {
return _providerWithParams?.call(params);
}
}

View File

@@ -0,0 +1,17 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:cherrypick/src/scope.dart';
abstract class Factory<T> {
T createInstance(Scope scope);
}

View File

@@ -0,0 +1,105 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:cherrypick/src/scope.dart';
import 'package:meta/meta.dart';
Scope? _rootScope;
class CherryPick {
/// RU: Метод открывает главный [Scope].
/// ENG: The method opens the main [Scope].
///
/// return
static Scope openRootScope() {
_rootScope ??= Scope(null);
return _rootScope!;
}
/// RU: Метод закрывает главный [Scope].
/// ENG: The method close the main [Scope].
///
///
static void closeRootScope() {
if (_rootScope != null) {
_rootScope = null;
}
}
/// RU: Метод открывает дочерний [Scope].
/// ENG: The method open the child [Scope].
///
/// Дочерний [Scope] открывается с [scopeName]
/// Child [Scope] open with [scopeName]
///
/// Example:
/// ```
/// final String scopeName = 'firstScope.secondScope';
/// final subScope = CherryPick.openScope(scopeName);
/// ```
///
///
@experimental
static Scope openScope({String scopeName = '', String separator = '.'}) {
if (scopeName.isEmpty) {
return openRootScope();
}
final nameParts = scopeName.split(separator);
if (nameParts.isEmpty) {
throw Exception('Can not open sub scope because scopeName can not split');
}
return nameParts.fold(
openRootScope(),
(Scope previousValue, String element) =>
previousValue.openSubScope(element));
}
/// RU: Метод открывает дочерний [Scope].
/// ENG: The method open the child [Scope].
///
/// Дочерний [Scope] открывается с [scopeName]
/// Child [Scope] open with [scopeName]
///
/// Example:
/// ```
/// final String scopeName = 'firstScope.secondScope';
/// final subScope = CherryPick.closeScope(scopeName);
/// ```
///
///
@experimental
static void closeScope({String scopeName = '', String separator = '.'}) {
if (scopeName.isEmpty) {
closeRootScope();
}
final nameParts = scopeName.split(separator);
if (nameParts.isEmpty) {
throw Exception(
'Can not close sub scope because scopeName can not split');
}
if (nameParts.length > 1) {
final lastPart = nameParts.removeLast();
final scope = nameParts.fold(
openRootScope(),
(Scope previousValue, String element) =>
previousValue.openSubScope(element));
scope.closeSubScope(lastPart);
} else {
openRootScope().closeSubScope(nameParts[0]);
}
}
}

View File

@@ -1,20 +1,19 @@
///
/// Copyright 2021 Sergey Penkovsky <sergey.penkovsky@gmail.com>
/// Licensed under the Apache License, Version 2.0 (the "License");
/// you may not use this file except in compliance with the License.
/// You may obtain a copy of the License at
/// http://www.apache.org/licenses/LICENSE-2.0
/// Unless required by applicable law or agreed to in writing, software
/// distributed under the License is distributed on an "AS IS" BASIS,
/// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
/// See the License for the specific language governing permissions and
/// limitations under the License.
///
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'dart:collection';
import 'package:cherrypick/binding.dart';
import 'package:cherrypick/scope.dart';
import 'package:cherrypick/src/binding.dart';
import 'package:cherrypick/src/scope.dart';
/// RU: Класс Module является основой для пользовательских модулей.
/// Этот класс нужен для инициализации [Scope].

View File

@@ -0,0 +1,183 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'dart:collection';
import 'package:cherrypick/src/binding.dart';
import 'package:cherrypick/src/module.dart';
Scope openRootScope() => Scope(null);
class Scope {
final Scope? _parentScope;
/// RU: Метод возвращает родительский [Scope].
///
/// ENG: The method returns the parent [Scope].
///
/// return [Scope]
Scope? get parentScope => _parentScope;
final Map<String, Scope> _scopeMap = HashMap();
Scope(this._parentScope);
final Set<Module> _modulesList = HashSet();
/// RU: Метод открывает дочерний (дополнительный) [Scope].
///
/// ENG: The method opens child (additional) [Scope].
///
/// return [Scope]
Scope openSubScope(String name) {
if (!_scopeMap.containsKey(name)) {
_scopeMap[name] = Scope(this);
}
return _scopeMap[name]!;
}
/// RU: Метод закрывает дочерний (дополнительный) [Scope].
///
/// ENG: The method closes child (additional) [Scope].
///
/// return [Scope]
void closeSubScope(String name) {
_scopeMap.remove(name);
}
/// RU: Метод инициализирует пользовательские модули в [Scope].
///
/// ENG: The method initializes custom modules in [Scope].
///
/// return [Scope]
Scope installModules(List<Module> modules) {
_modulesList.addAll(modules);
for (var module in modules) {
module.builder(this);
}
return this;
}
/// RU: Метод удаляет пользовательские модули из [Scope].
///
/// ENG: This method removes custom modules from [Scope].
///
/// return [Scope]
Scope dropModules() {
// [AlexeyYuPopkov](https://github.com/AlexeyYuPopkov) Thank you for the [Removed exception "ConcurrentModificationError"](https://github.com/pese-git/cherrypick/pull/2)
_modulesList.clear();
return this;
}
/// RU: Возвращает найденную зависимость, определенную параметром типа [T].
/// Выдает [StateError], если зависимость не может быть разрешена.
/// Если вы хотите получить [null], если зависимость не может быть найдена,
/// то используйте вместо этого [tryResolve]
/// return - возвращает объект типа [T] или [StateError]
///
/// ENG: Returns the found dependency specified by the type parameter [T].
/// Throws [StateError] if the dependency cannot be resolved.
/// If you want to get [null] if the dependency cannot be found then use [tryResolve] instead
/// return - returns an object of type [T] or [StateError]
///
T resolve<T>({String? named, dynamic params}) {
var resolved = tryResolve<T>(named: named, params: params);
if (resolved != null) {
return resolved;
} else {
throw StateError(
'Can\'t resolve dependency `$T`. Maybe you forget register it?');
}
}
/// RU: Возвращает найденную зависимость типа [T] или null, если она не может быть найдена.
/// ENG: Returns found dependency of type [T] or null if it cannot be found.
///
T? tryResolve<T>({String? named, dynamic params}) {
// 1 Поиск зависимости по всем модулям текущего скоупа
if (_modulesList.isNotEmpty) {
for (var module in _modulesList) {
for (var binding in module.bindingSet) {
if (binding.key == T &&
((!binding.isNamed && named == null) ||
(binding.isNamed && named == binding.name))) {
switch (binding.mode) {
case Mode.instance:
return binding.instance;
case Mode.providerInstance:
return binding.provider;
case Mode.providerInstanceWithParams:
if (params == null) {
throw StateError('Param is null. Maybe you forget pass it');
}
return binding.providerWithParams(params);
default:
return null;
}
}
}
}
}
// 2 Поиск зависимостей в родительском скоупе
return _parentScope?.tryResolve(named: named, params: params);
}
/// RU: Асинхронно возвращает найденную зависимость, определенную параметром типа [T].
/// Выдает [StateError], если зависимость не может быть разрешена.
/// Если хотите получить [null], если зависимость не может быть найдена, используйте [tryResolveAsync].
/// return - возвращает объект типа [T] or [StateError]
///
/// ENG: Asynchronously returns the found dependency specified by the type parameter [T].
/// Throws [StateError] if the dependency cannot be resolved.
/// If you want to get [null] if the dependency cannot be found, use [tryResolveAsync] instead.
/// return - returns an object of type [T] or [StateError]
///
Future<T> resolveAsync<T>({String? named, dynamic params}) async {
var resolved = await tryResolveAsync<T>(named: named, params: params);
if (resolved != null) {
return resolved;
} else {
throw StateError(
'Can\'t resolve async dependency `$T`. Maybe you forget register it?');
}
}
Future<T?> tryResolveAsync<T>({String? named, dynamic params}) async {
if (_modulesList.isNotEmpty) {
for (var module in _modulesList) {
for (var binding in module.bindingSet) {
if (binding.key == T &&
((!binding.isNamed && named == null) ||
(binding.isNamed && named == binding.name))) {
if (binding.instanceAsync != null) {
return await binding.instanceAsync;
}
if (binding.asyncProvider != null) {
return await binding.asyncProvider?.call();
}
if (binding.asyncProviderWithParams != null) {
if (params == null) {
throw StateError('Param is null. Maybe you forget pass it');
}
return await binding.asyncProviderWithParams!(params);
}
}
}
}
}
return _parentScope?.tryResolveAsync(named: named, params: params);
}
}

20
cherrypick/pubspec.yaml Normal file
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name: cherrypick
description: Cherrypick is a small dependency injection (DI) library for dart/flutter projects.
version: 2.2.0-dev.2
homepage: https://pese-git.github.io/cherrypick-site/
documentation: https://github.com/pese-git/cherrypick/wiki
repository: https://github.com/pese-git/cherrypick
issue_tracker: https://github.com/pese-git/cherrypick/issues
environment:
sdk: ">=3.5.2 <4.0.0"
dependencies:
meta: ^1.3.0
dev_dependencies:
lints: ^5.0.0
test: ^1.25.15
mockito: ^5.0.6
melos: ^6.3.2

View File

@@ -0,0 +1,271 @@
import 'package:cherrypick/src/binding.dart';
import 'package:test/test.dart';
void main() {
// --- Instance binding (synchronous) ---
group('Instance Binding (toInstance)', () {
group('Without name', () {
test('Returns null by default', () {
final binding = Binding<int>();
expect(binding.instance, null);
});
test('Sets mode to instance', () {
final binding = Binding<int>().toInstance(5);
expect(binding.mode, Mode.instance);
});
test('isSingleton is true', () {
final binding = Binding<int>().toInstance(5);
expect(binding.isSingleton, true);
});
test('Stores value', () {
final binding = Binding<int>().toInstance(5);
expect(binding.instance, 5);
});
});
group('With name', () {
test('Returns null by default', () {
final binding = Binding<int>().withName('n');
expect(binding.instance, null);
});
test('Sets mode to instance', () {
final binding = Binding<int>().withName('n').toInstance(5);
expect(binding.mode, Mode.instance);
});
test('Sets key', () {
final binding = Binding<int>().withName('n').toInstance(5);
expect(binding.key, int);
});
test('isSingleton is true', () {
final binding = Binding<int>().withName('n').toInstance(5);
expect(binding.isSingleton, true);
});
test('Stores value', () {
final binding = Binding<int>().withName('n').toInstance(5);
expect(binding.instance, 5);
});
test('Sets name', () {
final binding = Binding<int>().withName('n').toInstance(5);
expect(binding.name, 'n');
});
});
test('Multiple toInstance calls change value', () {
final binding = Binding<int>().toInstance(1).toInstance(2);
expect(binding.instance, 2);
});
});
// --- Instance binding (asynchronous) ---
group('Async Instance Binding (toInstanceAsync)', () {
test('Resolves instanceAsync with expected value', () async {
final binding = Binding<int>().toInstanceAsync(Future.value(42));
expect(await binding.instanceAsync, 42);
});
test('Does not affect instance', () {
final binding = Binding<int>().toInstanceAsync(Future.value(5));
expect(binding.instance, null);
});
test('Sets mode to instance', () {
final binding = Binding<int>().toInstanceAsync(Future.value(5));
expect(binding.mode, Mode.instance);
});
test('isSingleton is true after toInstanceAsync', () {
final binding = Binding<int>().toInstanceAsync(Future.value(5));
expect(binding.isSingleton, isTrue);
});
test('Composes with withName', () async {
final binding = Binding<int>()
.withName('asyncValue')
.toInstanceAsync(Future.value(7));
expect(binding.isNamed, isTrue);
expect(binding.name, 'asyncValue');
expect(await binding.instanceAsync, 7);
});
test('Keeps value after multiple awaits', () async {
final binding = Binding<int>().toInstanceAsync(Future.value(123));
final result1 = await binding.instanceAsync;
final result2 = await binding.instanceAsync;
expect(result1, equals(result2));
});
});
// --- Provider binding (synchronous) ---
group('Provider Binding (toProvide)', () {
group('Without name', () {
test('Returns null by default', () {
final binding = Binding<int>();
expect(binding.provider, null);
});
test('Sets mode to providerInstance', () {
final binding = Binding<int>().toProvide(() => 5);
expect(binding.mode, Mode.providerInstance);
});
test('isSingleton is false by default', () {
final binding = Binding<int>().toProvide(() => 5);
expect(binding.isSingleton, false);
});
test('Returns provided value', () {
final binding = Binding<int>().toProvide(() => 5);
expect(binding.provider, 5);
});
});
group('With name', () {
test('Returns null by default', () {
final binding = Binding<int>().withName('n');
expect(binding.provider, null);
});
test('Sets mode to providerInstance', () {
final binding = Binding<int>().withName('n').toProvide(() => 5);
expect(binding.mode, Mode.providerInstance);
});
test('Sets key', () {
final binding = Binding<int>().withName('n').toProvide(() => 5);
expect(binding.key, int);
});
test('isSingleton is false by default', () {
final binding = Binding<int>().withName('n').toProvide(() => 5);
expect(binding.isSingleton, false);
});
test('Returns provided value', () {
final binding = Binding<int>().withName('n').toProvide(() => 5);
expect(binding.provider, 5);
});
test('Sets name', () {
final binding = Binding<int>().withName('n').toProvide(() => 5);
expect(binding.name, 'n');
});
});
});
// --- Async provider binding ---
group('Async Provider Binding', () {
test('Resolves asyncProvider value', () async {
final binding = Binding<int>().toProvideAsync(() async => 5);
expect(await binding.asyncProvider?.call(), 5);
});
test('Resolves asyncProviderWithParams value', () async {
final binding = Binding<int>()
.toProvideAsyncWithParams((param) async => 5 + (param as int));
expect(await binding.asyncProviderWithParams?.call(3), 8);
});
});
// --- Singleton provider binding ---
group('Singleton Provider Binding', () {
group('Without name', () {
test('Returns null if no provider set', () {
final binding = Binding<int>().singleton();
expect(binding.provider, null);
});
test('Sets mode to providerInstance', () {
final binding = Binding<int>().toProvide(() => 5).singleton();
expect(binding.mode, Mode.providerInstance);
});
test('isSingleton is true', () {
final binding = Binding<int>().toProvide(() => 5).singleton();
expect(binding.isSingleton, true);
});
test('Returns singleton value', () {
final binding = Binding<int>().toProvide(() => 5).singleton();
expect(binding.provider, 5);
});
test('Returns same value each call and provider only called once', () {
int counter = 0;
final binding = Binding<int>().toProvide(() {
counter++;
return counter;
}).singleton();
final first = binding.provider;
final second = binding.provider;
expect(first, equals(second));
expect(counter, 1);
});
});
group('With name', () {
test('Returns null if no provider set', () {
final binding = Binding<int>().withName('n').singleton();
expect(binding.provider, null);
});
test('Sets mode to providerInstance', () {
final binding =
Binding<int>().withName('n').toProvide(() => 5).singleton();
expect(binding.mode, Mode.providerInstance);
});
test('Sets key', () {
final binding =
Binding<int>().withName('n').toProvide(() => 5).singleton();
expect(binding.key, int);
});
test('isSingleton is true', () {
final binding =
Binding<int>().withName('n').toProvide(() => 5).singleton();
expect(binding.isSingleton, true);
});
test('Returns singleton value', () {
final binding =
Binding<int>().withName('n').toProvide(() => 5).singleton();
expect(binding.provider, 5);
});
test('Sets name', () {
final binding =
Binding<int>().withName('n').toProvide(() => 5).singleton();
expect(binding.name, 'n');
});
});
test('Chained withName and singleton preserves mode', () {
final binding =
Binding<int>().toProvide(() => 3).withName("named").singleton();
expect(binding.mode, Mode.providerInstance);
});
});
// --- WithName / Named binding, isNamed, edge-cases ---
group('Named binding & helpers', () {
test('withName sets isNamed true and stores name', () {
final binding = Binding<int>().withName('foo');
expect(binding.isNamed, true);
expect(binding.name, 'foo');
});
test('providerWithParams returns null if not set', () {
final binding = Binding<int>();
expect(binding.providerWithParams(123), null);
});
});
}

View File

@@ -0,0 +1,208 @@
import 'package:cherrypick/src/module.dart';
import 'package:cherrypick/src/scope.dart';
import 'package:test/test.dart';
void main() {
// --------------------------------------------------------------------------
group('Scope & Subscope Management', () {
test('Scope has no parent if constructed with null', () {
final scope = Scope(null);
expect(scope.parentScope, null);
});
test('Can open and retrieve the same subScope by key', () {
final scope = Scope(null);
final subScope = scope.openSubScope('subScope');
expect(scope.openSubScope('subScope'), subScope);
});
test('closeSubScope removes subscope so next openSubScope returns new', () {
final scope = Scope(null);
final subScope = scope.openSubScope("child");
expect(scope.openSubScope("child"), same(subScope));
scope.closeSubScope("child");
final newSubScope = scope.openSubScope("child");
expect(newSubScope, isNot(same(subScope)));
});
});
// --------------------------------------------------------------------------
group('Dependency Resolution (standard)', () {
test("Throws StateError if value can't be resolved", () {
final scope = Scope(null);
expect(() => scope.resolve<String>(), throwsA(isA<StateError>()));
});
test('Resolves value after adding a dependency', () {
final expectedValue = 'test string';
final scope = Scope(null)
.installModules([TestModule<String>(value: expectedValue)]);
expect(scope.resolve<String>(), expectedValue);
});
test('Returns a value from parent scope', () {
final expectedValue = 5;
final parentScope = Scope(null);
final scope = Scope(parentScope);
parentScope.installModules([TestModule<int>(value: expectedValue)]);
expect(scope.resolve<int>(), expectedValue);
});
test('Returns several values from parent container', () {
final expectedIntValue = 5;
final expectedStringValue = 'Hello world';
final parentScope = Scope(null).installModules([
TestModule<int>(value: expectedIntValue),
TestModule<String>(value: expectedStringValue)
]);
final scope = Scope(parentScope);
expect(scope.resolve<int>(), expectedIntValue);
expect(scope.resolve<String>(), expectedStringValue);
});
test("Throws StateError if parent hasn't value too", () {
final parentScope = Scope(null);
final scope = Scope(parentScope);
expect(() => scope.resolve<int>(), throwsA(isA<StateError>()));
});
test("After dropModules resolves fail", () {
final scope = Scope(null)..installModules([TestModule<int>(value: 5)]);
expect(scope.resolve<int>(), 5);
scope.dropModules();
expect(() => scope.resolve<int>(), throwsA(isA<StateError>()));
});
});
// --------------------------------------------------------------------------
group('Named Dependencies', () {
test('Resolve named binding', () {
final scope = Scope(null)
..installModules([
TestModule<String>(value: "first"),
TestModule<String>(value: "second", name: "special")
]);
expect(scope.resolve<String>(named: "special"), "second");
expect(scope.resolve<String>(), "first");
});
test('Named binding does not clash with unnamed', () {
final scope = Scope(null)
..installModules([
TestModule<String>(value: "foo", name: "bar"),
]);
expect(() => scope.resolve<String>(), throwsA(isA<StateError>()));
expect(scope.resolve<String>(named: "bar"), "foo");
});
test("tryResolve returns null for missing named", () {
final scope = Scope(null)
..installModules([
TestModule<String>(value: "foo"),
]);
expect(scope.tryResolve<String>(named: "bar"), isNull);
});
});
// --------------------------------------------------------------------------
group('Provider with parameters', () {
test('Resolve dependency using providerWithParams', () {
final scope = Scope(null)
..installModules([
_InlineModule((m, s) {
m.bind<int>().toProvideWithParams((param) => (param as int) * 2);
}),
]);
expect(scope.resolve<int>(params: 3), 6);
expect(() => scope.resolve<int>(), throwsA(isA<StateError>()));
});
});
// --------------------------------------------------------------------------
group('Async Resolution', () {
test('Resolve async instance', () async {
final scope = Scope(null)
..installModules([
_InlineModule((m, s) {
m.bind<String>().toInstanceAsync(Future.value('async value'));
}),
]);
expect(await scope.resolveAsync<String>(), "async value");
});
test('Resolve async provider', () async {
final scope = Scope(null)
..installModules([
_InlineModule((m, s) {
m.bind<int>().toProvideAsync(() async => 7);
}),
]);
expect(await scope.resolveAsync<int>(), 7);
});
test('Resolve async provider with param', () async {
final scope = Scope(null)
..installModules([
_InlineModule((m, s) {
m.bind<int>().toProvideAsyncWithParams((x) async => (x as int) * 3);
}),
]);
expect(await scope.resolveAsync<int>(params: 2), 6);
expect(() => scope.resolveAsync<int>(), throwsA(isA<StateError>()));
});
test('tryResolveAsync returns null for missing', () async {
final scope = Scope(null);
final result = await scope.tryResolveAsync<String>();
expect(result, isNull);
});
});
// --------------------------------------------------------------------------
group('Optional resolution and error handling', () {
test("tryResolve returns null for missing dependency", () {
final scope = Scope(null);
expect(scope.tryResolve<int>(), isNull);
});
// Не реализован:
// test("Container bind() throws state error (if it's parent already has a resolver)", () {
// final parentScope = new Scope(null).installModules([TestModule<String>(value: "string one")]);
// final scope = new Scope(parentScope);
// expect(
// () => scope.installModules([TestModule<String>(value: "string two")]),
// throwsA(isA<StateError>()));
// });
});
}
// ----------------------------------------------------------------------------
// Вспомогательные модули
class TestModule<T> extends Module {
final T value;
final String? name;
TestModule({required this.value, this.name});
@override
void builder(Scope currentScope) {
if (name == null) {
bind<T>().toInstance(value);
} else {
bind<T>().withName(name!).toInstance(value);
}
}
}
/// Вспомогательный модуль для подстановки builder'а через конструктор
class _InlineModule extends Module {
final void Function(Module, Scope) _builder;
_InlineModule(this._builder);
@override
void builder(Scope s) => _builder(this, s);
}

26
cherrypick_annotations/.gitignore vendored Normal file
View File

@@ -0,0 +1,26 @@
# See https://www.dartlang.org/guides/libraries/private-files
# Files and directories created by pub
.dart_tool/
.packages
build/
# If you're building an application, you may want to check-in your pubspec.lock
pubspec.lock
# Directory created by dartdoc
# If you don't generate documentation locally you can remove this line.
doc/api/
# Avoid committing generated Javascript files:
*.dart.js
*.info.json # Produced by the --dump-info flag.
*.js # When generated by dart2js. Don't specify *.js if your
# project includes source files written in JavaScript.
*.js_
*.js.deps
*.js.map
# FVM Version Cache
.fvm/
melos_cherrypick_annotations.iml

View File

@@ -0,0 +1,15 @@
## 1.1.0-dev.1
- **FEAT**: implement InjectGenerator.
## 1.1.0-dev.0
- **FEAT**: implement generator for dynamic params.
- **FEAT**: implement instance/provide annotations.
- **FEAT**: implement generator for named annotation.
- **FEAT**: implement generator di module.
- **FEAT**: implement annotations.
## 1.0.0
- Initial version.

View File

@@ -0,0 +1,201 @@
Apache License
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Copyright [yyyy] [name of copyright owner]
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.

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@@ -0,0 +1,229 @@
# cherrypick_annotations
[![License](https://img.shields.io/badge/license-Apache%202.0-blue.svg)](LICENSE)
A lightweight set of Dart annotations for dependency injection (DI) frameworks and code generation, inspired by modern approaches like Dagger and Injectable. Optimized for use with [`cherrypick_generator`](https://pub.dev/packages/cherrypick_generator).
---
## Features
- **@module** Marks a class as a DI module for service/provider registration.
- **@singleton** Declares that a method or class should be provided as a singleton.
- **@instance** Marks a method or class so that a new instance is provided on each request.
- **@provide** Marks a method whose return value should be registered as a provider, supporting DI into its parameters.
- **@named** Assigns a string name to a binding for keyed resolution and injection.
- **@params** Indicates that a parameter should be injected with runtime-supplied arguments.
- **@injectable** Marks a class as eligible for automatic field injection. Fields annotated with `@inject` will be injected by the code generator.
- **@inject** Marks a field to be automatically injected by the code generator.
- **@scope** Declares the DI scope from which a dependency should be resolved for a field.
These annotations streamline DI configuration and serve as markers for code generation tools such as [`cherrypick_generator`](https://pub.dev/packages/cherrypick_generator).
---
## Getting Started
### 1. Add dependency
```yaml
dependencies:
cherrypick_annotations: ^latest
```
Add as a `dev_dependency` for code generation:
```yaml
dev_dependencies:
cherrypick_generator: ^latest
build_runner: ^latest
```
---
### 2. Annotate your DI modules, providers, and injectable classes
#### **Module and Provider Example**
```dart
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
@module()
abstract class AppModule {
@singleton()
Dio dio() => Dio();
@named('baseUrl')
String baseUrl() => 'https://api.example.com';
@instance()
Foo foo() => Foo();
@provide()
Bar bar(Foo foo) => Bar(foo);
@provide()
String greet(@params() dynamic params) => 'Hello $params';
}
```
With `cherrypick_generator`, code like the following will be generated:
```dart
final class $AppModule extends AppModule {
@override
void builder(Scope currentScope) {
bind<Dio>().toProvide(() => dio()).singleton();
bind<String>().toProvide(() => baseUrl()).withName('baseUrl');
bind<Foo>().toInstance(foo());
bind<Bar>().toProvide(() => bar(currentScope.resolve<Foo>()));
bind<String>().toProvideWithParams((args) => greet(args));
}
}
```
---
#### **Field Injection Example**
```dart
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
@injectable()
class ProfileView with _$ProfileView{
@inject()
late final AuthService auth;
@inject()
@scope('profile')
late final ProfileManager manager;
@inject()
@named('admin')
late final UserService adminUserService;
}
```
The code generator produces a mixin (simplified):
```dart
mixin _$ProfileView {
void _inject(ProfileView instance) {
instance.auth = CherryPick.openRootScope().resolve<AuthService>();
instance.manager = CherryPick.openScope(scopeName: 'profile').resolve<ProfileManager>();
instance.adminUserService = CherryPick.openRootScope().resolve<UserService>(named: 'admin');
}
}
```
---
## Annotation Reference
### `@injectable`
```dart
@injectable()
class MyWidget { ... }
```
Marks a class as injectable for CherryPick DI. The code generator will generate a mixin to perform automatic injection of fields marked with `@inject()`.
---
### `@inject`
```dart
@inject()
late final SomeService service;
```
Applied to a field to request automatic injection of the dependency using the CherryPick DI framework.
---
### `@scope`
```dart
@inject()
@scope('profile')
late final ProfileManager manager;
```
Specifies the scope from which the dependency should be resolved for an injected field.
---
### `@module`
```dart
@module()
abstract class AppModule {}
```
Use on classes to mark them as a DI module. This is the root for registering your dependency providers.
---
### `@singleton`
```dart
@singleton()
Dio dio() => Dio();
```
Use on methods or classes to provide a singleton instance (the same instance is reused).
---
### `@instance`
```dart
@instance()
Foo foo() => Foo();
```
Use on methods or classes to provide a new instance on each request (not a singleton).
---
### `@provide`
```dart
@provide()
Bar bar(Foo foo) => Bar(foo);
```
Use on methods to indicate they provide a dependency to the DI module. Dependencies listed as parameters (e.g., `foo`) are resolved and injected.
---
### `@named`
```dart
@named('token')
String token() => 'abc';
```
Assigns a name to a binding for keyed injection or resolution.
Can be used on both provider methods and fields.
---
### `@params`
```dart
@provide()
String greet(@params() dynamic params) => 'Hello $params';
```
Indicates that this parameter should receive runtime-supplied arguments during dependency resolution.
---
## License
Licensed under the [Apache License 2.0](LICENSE).
---
## Contributing
Pull requests and feedback are welcome!
---
## Author
Sergey Penkovsky (<sergey.penkovsky@gmail.com>)

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# This file configures the static analysis results for your project (errors,
# warnings, and lints).
#
# This enables the 'recommended' set of lints from `package:lints`.
# This set helps identify many issues that may lead to problems when running
# or consuming Dart code, and enforces writing Dart using a single, idiomatic
# style and format.
#
# If you want a smaller set of lints you can change this to specify
# 'package:lints/core.yaml'. These are just the most critical lints
# (the recommended set includes the core lints).
# The core lints are also what is used by pub.dev for scoring packages.
include: package:lints/recommended.yaml
# Uncomment the following section to specify additional rules.
# linter:
# rules:
# - camel_case_types
# analyzer:
# exclude:
# - path/to/excluded/files/**
# For more information about the core and recommended set of lints, see
# https://dart.dev/go/core-lints
# For additional information about configuring this file, see
# https://dart.dev/guides/language/analysis-options

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library;
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
export 'src/module.dart';
export 'src/provide.dart';
export 'src/instance.dart';
export 'src/singleton.dart';
export 'src/named.dart';
export 'src/params.dart';
export 'src/inject.dart';
export 'src/injectable.dart';
export 'src/scope.dart';

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:meta/meta.dart';
/// Annotation for field injection in CherryPick DI framework.
/// Apply this to a field, and the code generator will automatically inject
/// the appropriate dependency into it.
///
/// ---
///
/// Аннотация для внедрения зависимости в поле через фреймворк CherryPick DI.
/// Поместите её на поле класса — генератор кода автоматически подставит нужную зависимость.
///
/// Example / Пример:
/// ```dart
/// @inject()
/// late final SomeService service;
/// ```
@experimental
// ignore: camel_case_types
final class inject {
const inject();
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:meta/meta.dart';
/// Marks a class as injectable for the CherryPick dependency injection framework.
/// If a class is annotated with [@injectable()], the code generator will
/// create a mixin to perform automatic injection of fields marked with [@inject].
///
/// ---
///
/// Помечает класс как внедряемый для фреймворка внедрения зависимостей CherryPick.
/// Если класс помечен аннотацией [@injectable()], генератор создаст миксин
/// для автоматического внедрения полей, отмеченных [@inject].
///
/// Example / Пример:
/// ```dart
/// @injectable()
/// class MyWidget extends StatelessWidget {
/// @inject()
/// late final MyService service;
/// }
/// ```
@experimental
// ignore: camel_case_types
final class injectable {
const injectable();
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
/// ENGLISH:
/// Annotation to specify that a new instance should be provided on each request.
///
/// Use the `@instance()` annotation for methods or classes in your DI module
/// to declare that the DI container must create a new object every time
/// the dependency is injected (i.e., no singleton behavior).
///
/// Example:
/// ```dart
/// @module()
/// abstract class AppModule extends Module {
/// @instance()
/// Foo foo() => Foo();
/// }
/// ```
///
/// This will generate:
/// ```dart
/// final class $AppModule extends AppModule {
/// @override
/// void builder(Scope currentScope) {
/// bind<Foo>().toInstance(() => foo());
/// }
/// }
/// ```
///
/// RUSSIAN (Русский):
/// Аннотация для создания нового экземпляра при каждом запросе.
///
/// Используйте `@instance()` для методов или классов в DI-модуле,
/// чтобы указать, что контейнер внедрения зависимостей должен создавать
/// новый объект при каждом обращении к зависимости (то есть, не синглтон).
///
/// Пример:
/// ```dart
/// @module()
/// abstract class AppModule extends Module {
/// @instance()
/// Foo foo() => Foo();
/// }
/// ```
///
/// Будет сгенерирован следующий код:
/// ```dart
/// final class $AppModule extends AppModule {
/// @override
/// void builder(Scope currentScope) {
/// bind<Foo>().toInstance(() => foo());
/// }
/// }
/// ```
// ignore: camel_case_types
final class instance {
const instance();
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
/// ENGLISH:
/// Annotation for marking Dart classes or libraries as modules.
///
/// Use the `@module()` annotation on abstract classes (or on a library)
/// to indicate that the class represents a DI (Dependency Injection) module.
/// This is commonly used in code generation tools to automatically register
/// and configure dependencies defined within the module.
///
/// Example:
/// ```dart
/// @module()
/// abstract class AppModule extends Module {
/// // Dependency definitions go here.
/// }
/// ```
///
/// Generates code like:
/// ```dart
/// final class $AppModule extends AppModule {
/// @override
/// void builder(Scope currentScope) {
/// // Dependency registration...
/// }
/// }
/// ```
///
/// RUSSIAN (Русский):
/// Аннотация для пометки классов или библиотек Dart как модуля.
///
/// Используйте `@module()` для абстрактных классов (или библиотек), чтобы
/// показать, что класс реализует DI-модуль (Dependency Injection).
/// Обычно используется генераторами кода для автоматической регистрации
/// и конфигурирования зависимостей, определённых в модуле.
///
/// Пример:
/// ```dart
/// @module()
/// abstract class AppModule extends Module {
/// // Определения зависимостей
/// }
/// ```
///
/// Будет сгенерирован код:
/// ```dart
/// final class $AppModule extends AppModule {
/// @override
/// void builder(Scope currentScope) {
/// // Регистрация зависимостей...
/// }
/// }
/// ```
// ignore: camel_case_types
final class module {
/// Creates a [module] annotation.
const module();
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
/// ENGLISH:
/// Annotation to assign a name or identifier to a class, method, or other element.
///
/// The `@named('value')` annotation allows you to specify a string name
/// for a dependency, factory, or injectable. This is useful for distinguishing
/// between multiple registrations of the same type in dependency injection,
/// code generation, and for providing human-readable metadata.
///
/// Example:
/// ```dart
/// @module()
/// abstract class AppModule extends Module {
/// @named('dio')
/// Dio dio() => Dio();
/// }
/// ```
///
/// This will generate:
/// ```dart
/// final class $AppModule extends AppModule {
/// @override
/// void builder(Scope currentScope) {
/// bind<Dio>().toProvide(() => dio()).withName('dio').singleton();
/// }
/// }
/// ```
///
/// RUSSIAN (Русский):
/// Аннотация для задания имени или идентификатора классу, методу или другому элементу.
///
/// Аннотация `@named('значение')` позволяет указать строковое имя для зависимости,
/// фабрики или внедряемого значения. Это удобно для различения нескольких
/// регистраций одного типа в DI, генерации кода.
///
/// Пример:
/// ```dart
/// @module()
/// abstract class AppModule extends Module {
/// @named('dio')
/// Dio dio() => Dio();
/// }
/// ```
///
/// Будет сгенерирован следующий код:
/// ```dart
/// final class $AppModule extends AppModule {
/// @override
/// void builder(Scope currentScope) {
/// bind<Dio>().toProvide(() => dio()).withName('dio').singleton();
/// }
/// }
/// ```
// ignore: camel_case_types
final class named {
/// EN: The assigned name or identifier for the element.
///
/// RU: Назначенное имя или идентификатор для элемента.
final String value;
/// EN: Creates a [named] annotation with the given [value].
///
/// RU: Создаёт аннотацию [named] с заданным значением [value].
const named(this.value);
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
/// ENGLISH:
/// Annotation to mark a method parameter for injection with run-time arguments.
///
/// Use the `@params()` annotation to specify that a particular parameter of a
/// provider method should be assigned a value supplied at resolution time,
/// rather than during static dependency graph creation. This is useful in DI
/// when a dependency must receive dynamic data passed by the consumer
/// (via `.withParams(...)` in the generated code).
///
/// Example:
/// ```dart
/// @provide()
/// String greet(@params() dynamic params) => 'Hello $params';
/// ```
///
/// This will generate:
/// ```dart
/// bind<String>().toProvideWithParams((args) => greet(args));
/// ```
///
/// RUSSIAN (Русский):
/// Аннотация для пометки параметра метода, который будет внедряться со значением во время выполнения.
///
/// Используйте `@params()` чтобы указать, что конкретный параметр метода-провайдера
/// должен получать значение, передаваемое в момент обращения к зависимости,
/// а не на этапе построения графа зависимостей. Это полезно, если зависимость
/// должна получать данные динамически от пользователя или другого процесса
/// через `.withParams(...)` в сгенерированном коде.
///
/// Пример:
/// ```dart
/// @provide()
/// String greet(@params() dynamic params) => 'Hello $params';
/// ```
///
/// Будет сгенерировано:
/// ```dart
/// bind<String>().toProvideWithParams((args) => greet(args));
/// ```
// ignore: camel_case_types
final class params {
const params();
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
/// ENGLISH:
/// Annotation to declare a factory/provider method or class as a singleton.
///
/// Use the `@singleton()` annotation on methods in your DI module to specify
/// that only one instance of the resulting object should be created and shared
/// for all consumers. This is especially useful in dependency injection
/// frameworks and service locators.
///
/// Example:
/// ```dart
/// @module()
/// abstract class AppModule extends Module {
/// @singleton()
/// Dio dio() => Dio();
/// }
/// ```
///
/// This generates the following code:
/// ```dart
/// final class $AppModule extends AppModule {
/// @override
/// void builder(Scope currentScope) {
/// bind<Dio>().toProvide(() => dio()).singleton();
/// }
/// }
/// ```
///
/// RUSSIAN (Русский):
/// Аннотация для объявления фабричного/провайдерного метода или класса синглтоном.
///
/// Используйте `@singleton()` для методов внутри DI-модуля, чтобы указать,
/// что соответствующий объект (экземпляр класса) должен быть создан только один раз
/// и использоваться всеми компонентами приложения (единый общий экземпляр).
/// Это характерно для систем внедрения зависимостей и сервис-локаторов.
///
/// Пример:
/// ```dart
/// @module()
/// abstract class AppModule extends Module {
/// @singleton()
/// Dio dio() => Dio();
/// }
/// ```
///
/// Будет сгенерирован следующий код:
/// ```dart
/// final class $AppModule extends AppModule {
/// @override
/// void builder(Scope currentScope) {
/// bind<Dio>().toProvide(() => dio()).singleton();
/// }
/// }
/// ```
// ignore: camel_case_types
final class provide {
const provide();
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:meta/meta.dart';
/// Annotation to specify a scope for dependency injection in CherryPick.
/// Use this on an injected field to indicate from which scope
/// the dependency must be resolved.
///
/// ---
///
/// Аннотация для указания области внедрения (scope) в CherryPick.
/// Используйте её на инъецируемом поле, чтобы определить из какой области
/// должна быть получена зависимость.
///
/// Example / Пример:
/// ```dart
/// @inject()
/// @scope('profile')
/// late final ProfileManager profileManager;
/// ```
@experimental
// ignore: camel_case_types
final class scope {
final String? name;
const scope(this.name);
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
/// ENGLISH:
/// Annotation to declare a dependency as a singleton.
///
/// Use the `@singleton()` annotation on provider methods inside a module
/// to indicate that only a single instance of this dependency should be
/// created and shared throughout the application's lifecycle. This is
/// typically used in dependency injection frameworks or service locators
/// to guarantee a single shared instance.
///
/// Example:
/// ```dart
/// @module()
/// abstract class AppModule extends Module {
/// @singleton()
/// Dio dio() => Dio();
/// }
/// ```
///
/// This will generate code like:
/// ```dart
/// final class $AppModule extends AppModule {
/// @override
/// void builder(Scope currentScope) {
/// bind<Dio>().toProvide(() => dio()).singleton();
/// }
/// }
/// ```
///
/// RUSSIAN (Русский):
/// Аннотация для объявления зависимости как синглтона.
///
/// Используйте `@singleton()` для методов-провайдеров внутри модуля,
/// чтобы указать, что соответствующий объект должен быть создан
/// единожды и использоваться во всём приложении (общий синглтон).
/// Это характерно для систем внедрения зависимостей и сервис-локаторов,
/// чтобы гарантировать один общий экземпляр.
///
/// Пример:
/// ```dart
/// @module()
/// abstract class AppModule extends Module {
/// @singleton()
/// Dio dio() => Dio();
/// }
/// ```
///
/// Будет сгенерирован следующий код:
/// ```dart
/// final class $AppModule extends AppModule {
/// @override
/// void builder(Scope currentScope) {
/// bind<Dio>().toProvide(() => dio()).singleton();
/// }
/// }
/// ```
// ignore: camel_case_types
final class singleton {
/// Creates a [singleton] annotation.
const singleton();
}

View File

@@ -0,0 +1,19 @@
name: cherrypick_annotations
description: |
Set of annotations for CherryPick dependency injection library. Enables code generation and declarative DI for Dart & Flutter projects.
version: 1.1.0-dev.1
documentation: https://github.com/pese-git/cherrypick/wiki
repository: https://github.com/pese-git/cherrypick/cherrypick_annotations
issue_tracker: https://github.com/pese-git/cherrypick/issues
environment:
sdk: ">=3.5.2 <4.0.0"
# Add regular dependencies here.
dependencies:
meta: ^1.15.0
# path: ^1.8.0
dev_dependencies:
lints: ^5.0.0
test: ^1.25.8

View File

@@ -0,0 +1,13 @@
import 'package:test/test.dart';
void main() {
group('A group of tests', () {
setUp(() {
// Additional setup goes here.
});
test('First Test', () {
expect(1, 1);
});
});
}

201
cherrypick_cli/LICENSE Normal file
View File

@@ -0,0 +1,201 @@
Apache License
Version 2.0, January 2004
http://www.apache.org/licenses/
TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION
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"License" shall mean the terms and conditions for use, reproduction,
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"You" (or "Your") shall mean an individual or Legal Entity
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93
cherrypick_cli/README.md Normal file
View File

@@ -0,0 +1,93 @@
# CherryPick CLI
A command-line tool for managing and generating `build.yaml` configuration for the [CherryPick](https://github.com/pese-git/cherrypick) dependency injection ecosystem for Dart & Flutter.
---
## Features
- 📦 Quickly add or update CherryPick generator sections in your project's `build.yaml`.
- 🛡️ Safely preserves unrelated configs and packages.
- 📝 Always outputs a human-friendly, formatted YAML file.
- 🏷️ Supports custom output directories and custom build.yaml file paths.
---
## Getting Started
1. **Navigate to the CLI package directory:**
```bash
cd cherrypick_cli
```
2. **Get dependencies:**
```bash
dart pub get
```
3. **Run the CLI:**
```bash
dart run cherrypick_cli init --output_dir=lib/generated
```
---
## Usage
### Show help
```bash
dart run cherrypick_cli --help
```
### Add or update CherryPick sections in build.yaml
```bash
dart run cherrypick_cli init --output_dir=lib/generated
```
#### Options:
- `--output_dir`, `-o` — Directory for generated code (default: `lib/generated`)
- `--build_yaml`, `-f` — Path to build.yaml file (default: `build.yaml`)
#### Example with custom build.yaml
```bash
dart run cherrypick_cli init --output_dir=custom/dir --build_yaml=custom_build.yaml
```
---
## What does it do?
- Adds or updates the following sections in your `build.yaml` (or custom file):
- `cherrypick_generator|inject_generator`
- `cherrypick_generator|module_generator`
- Ensures all YAML is pretty-printed and readable.
- Leaves unrelated configs untouched.
---
## Example Output
```yaml
targets:
$default:
builders:
cherrypick_generator|inject_generator:
options:
build_extensions:
^lib/{{}}.dart:
- lib/generated/{{}}.inject.cherrypick.g.dart
output_dir: lib/generated
generate_for:
- lib/**.dart
cherrypick_generator|module_generator:
options:
build_extensions:
^lib/di/{{}}.dart:
- lib/generated/di/{{}}.module.cherrypick.g.dart
output_dir: lib/generated
generate_for:
- lib/**.dart
```
---
## Contributing
Pull requests and issues are welcome! See the [main CherryPick repo](https://github.com/pese-git/cherrypick) for more.
## License
See [LICENSE](LICENSE).

View File

@@ -0,0 +1,8 @@
import 'package:args/command_runner.dart';
import 'package:cherrypick_cli/src/commands/init_command.dart';
void main(List<String> args) {
final runner = CommandRunner('cherrypick_cli', 'CherryPick CLI')
..addCommand(InitCommand());
runner.run(args);
}

View File

@@ -0,0 +1,34 @@
import 'package:args/command_runner.dart';
import '../utils/build_yaml_updater.dart';
class InitCommand extends Command {
@override
final name = 'init';
@override
final description = 'Adds or updates cherrypick_generator sections in build.yaml, preserving other packages.';
InitCommand() {
argParser.addOption(
'output_dir',
abbr: 'o',
defaultsTo: 'lib/generated',
help: 'Directory for generated code.',
);
argParser.addOption(
'build_yaml',
abbr: 'f',
defaultsTo: 'build.yaml',
help: 'Path to build.yaml file.',
);
}
@override
void run() {
final outputDir = argResults?['output_dir'] as String? ?? 'lib/generated';
final buildYaml = argResults?['build_yaml'] as String? ?? 'build.yaml';
updateCherrypickBuildYaml(
buildYamlPath: buildYaml,
outputDir: outputDir,
);
}
}

View File

@@ -0,0 +1,76 @@
import 'dart:io';
import 'package:yaml/yaml.dart';
import 'package:json2yaml/json2yaml.dart';
void updateCherrypickBuildYaml({
String buildYamlPath = 'build.yaml',
String outputDir = 'lib/generated',
}) {
final file = File(buildYamlPath);
final exists = file.existsSync();
Map config = {};
if (exists) {
final content = file.readAsStringSync();
final loaded = loadYaml(content);
config = _deepYamlToMap(loaded);
}
// Гарантируем вложенность
config['targets'] ??= {};
final targets = config['targets'] as Map;
targets['\$default'] ??= {};
final def = targets['\$default'] as Map;
def['builders'] ??= {};
final builders = def['builders'] as Map;
builders['cherrypick_generator|inject_generator'] = {
'options': {
'build_extensions': {
'^lib/{{}}.dart': ['${outputDir}/{{}}.inject.cherrypick.g.dart']
},
'output_dir': outputDir
},
'generate_for': ['lib/**.dart']
};
builders['cherrypick_generator|module_generator'] = {
'options': {
'build_extensions': {
'^lib/di/{{}}.dart': ['${outputDir}/di/{{}}.module.cherrypick.g.dart']
},
'output_dir': outputDir
},
'generate_for': ['lib/**.dart']
};
final yamlString = json2yaml(_stringifyKeys(config), yamlStyle: YamlStyle.pubspecYaml);
file.writeAsStringSync(yamlString);
print('✅ build.yaml has been successfully updated and formatted (cherrypick sections added/updated).');
}
dynamic _stringifyKeys(dynamic node) {
if (node is Map) {
return Map.fromEntries(
node.entries.map(
(e) => MapEntry(e.key.toString(), _stringifyKeys(e.value)),
),
);
} else if (node is List) {
return node.map(_stringifyKeys).toList();
} else {
return node;
}
}
/// Рекурсивно преобразует YamlMap/YamlList в обычные Map/List
dynamic _deepYamlToMap(dynamic node) {
if (node is YamlMap) {
return Map.fromEntries(node.entries.map((e) => MapEntry(e.key, _deepYamlToMap(e.value))));
} else if (node is YamlList) {
return node.map(_deepYamlToMap).toList();
} else {
return node;
}
}

View File

@@ -0,0 +1,85 @@
# Generated by pub
# See https://dart.dev/tools/pub/glossary#lockfile
packages:
args:
dependency: "direct main"
description:
name: args
sha256: d0481093c50b1da8910eb0bb301626d4d8eb7284aa739614d2b394ee09e3ea04
url: "https://pub.dev"
source: hosted
version: "2.7.0"
collection:
dependency: transitive
description:
name: collection
sha256: "2f5709ae4d3d59dd8f7cd309b4e023046b57d8a6c82130785d2b0e5868084e76"
url: "https://pub.dev"
source: hosted
version: "1.19.1"
json2yaml:
dependency: "direct main"
description:
name: json2yaml
sha256: da94630fbc56079426fdd167ae58373286f603371075b69bf46d848d63ba3e51
url: "https://pub.dev"
source: hosted
version: "3.0.1"
meta:
dependency: transitive
description:
name: meta
sha256: "23f08335362185a5ea2ad3a4e597f1375e78bce8a040df5c600c8d3552ef2394"
url: "https://pub.dev"
source: hosted
version: "1.17.0"
path:
dependency: transitive
description:
name: path
sha256: "75cca69d1490965be98c73ceaea117e8a04dd21217b37b292c9ddbec0d955bc5"
url: "https://pub.dev"
source: hosted
version: "1.9.1"
source_span:
dependency: transitive
description:
name: source_span
sha256: "254ee5351d6cb365c859e20ee823c3bb479bf4a293c22d17a9f1bf144ce86f7c"
url: "https://pub.dev"
source: hosted
version: "1.10.1"
string_scanner:
dependency: transitive
description:
name: string_scanner
sha256: "921cd31725b72fe181906c6a94d987c78e3b98c2e205b397ea399d4054872b43"
url: "https://pub.dev"
source: hosted
version: "1.4.1"
term_glyph:
dependency: transitive
description:
name: term_glyph
sha256: "7f554798625ea768a7518313e58f83891c7f5024f88e46e7182a4558850a4b8e"
url: "https://pub.dev"
source: hosted
version: "1.2.2"
yaml:
dependency: "direct main"
description:
name: yaml
sha256: b9da305ac7c39faa3f030eccd175340f968459dae4af175130b3fc47e40d76ce
url: "https://pub.dev"
source: hosted
version: "3.1.3"
yaml_edit:
dependency: "direct main"
description:
name: yaml_edit
sha256: fb38626579fb345ad00e674e2af3a5c9b0cc4b9bfb8fd7f7ff322c7c9e62aef5
url: "https://pub.dev"
source: hosted
version: "2.2.2"
sdks:
dart: ">=3.5.0 <4.0.0"

View File

@@ -0,0 +1,13 @@
name: cherrypick_cli
version: 0.1.0
publish_to: none
description: CLI tool for CherryPick DI ecosystem
environment:
sdk: ">=3.0.0 <4.0.0"
dependencies:
args: ^2.4.2
yaml: ^3.1.2
yaml_edit: ^2.1.1
json2yaml: ^3.0.0
executables:
cherrypick_cli:

32
cherrypick_flutter/.gitignore vendored Normal file
View File

@@ -0,0 +1,32 @@
# Miscellaneous
*.class
*.log
*.pyc
*.swp
.DS_Store
.atom/
.buildlog/
.history
.svn/
migrate_working_dir/
# IntelliJ related
*.iml
*.ipr
*.iws
.idea/
# The .vscode folder contains launch configuration and tasks you configure in
# VS Code which you may wish to be included in version control, so this line
# is commented out by default.
#.vscode/
# Flutter/Dart/Pub related
# Libraries should not include pubspec.lock, per https://dart.dev/guides/libraries/private-files#pubspeclock.
/pubspec.lock
**/doc/api/
.dart_tool/
build/
pubspec_overrides.yaml

View File

@@ -0,0 +1,10 @@
# This file tracks properties of this Flutter project.
# Used by Flutter tool to assess capabilities and perform upgrades etc.
#
# This file should be version controlled and should not be manually edited.
version:
revision: "4cf269e36de2573851eaef3c763994f8f9be494d"
channel: "stable"
project_type: package

View File

@@ -0,0 +1,38 @@
## 1.1.2-dev.2
- Update a dependency to the latest release.
## 1.1.2-dev.1
- Update a dependency to the latest release.
## 1.1.2-dev.0
- **FIX**: fix warning.
- **FIX**: fix warnings.
## 1.1.1
- Graduate package to a stable release. See pre-releases prior to this version for changelog entries.
## 1.1.1-dev.1
- **FIX**: fix warnings.
## 1.1.1-dev.0
- Update a dependency to the latest release.
## 1.1.0
- **FIX**: update description.
- **FIX**: update gitignore.
- **FEAT**: modify api in CherryPickProvider.
## 1.0.1
- Update a dependency to the latest release.
## 0.0.1
* TODO: Describe initial release.

201
cherrypick_flutter/LICENSE Normal file
View File

@@ -0,0 +1,201 @@
Apache License
Version 2.0, January 2004
http://www.apache.org/licenses/
TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION
1. Definitions.
"License" shall mean the terms and conditions for use, reproduction,
and distribution as defined by Sections 1 through 9 of this document.
"Licensor" shall mean the copyright owner or entity authorized by
the copyright owner that is granting the License.
"Legal Entity" shall mean the union of the acting entity and all
other entities that control, are controlled by, or are under common
control with that entity. For the purposes of this definition,
"control" means (i) the power, direct or indirect, to cause the
direction or management of such entity, whether by contract or
otherwise, or (ii) ownership of fifty percent (50%) or more of the
outstanding shares, or (iii) beneficial ownership of such entity.
"You" (or "Your") shall mean an individual or Legal Entity
exercising permissions granted by this License.
"Source" form shall mean the preferred form for making modifications,
including but not limited to software source code, documentation
source, and configuration files.
"Object" form shall mean any form resulting from mechanical
transformation or translation of a Source form, including but
not limited to compiled object code, generated documentation,
and conversions to other media types.
"Work" shall mean the work of authorship, whether in Source or
Object form, made available under the License, as indicated by a
copyright notice that is included in or attached to the work
(an example is provided in the Appendix below).
"Derivative Works" shall mean any work, whether in Source or Object
form, that is based on (or derived from) the Work and for which the
editorial revisions, annotations, elaborations, or other modifications
represent, as a whole, an original work of authorship. For the purposes
of this License, Derivative Works shall not include works that remain
separable from, or merely link (or bind by name) to the interfaces of,
the Work and Derivative Works thereof.
"Contribution" shall mean any work of authorship, including
the original version of the Work and any modifications or additions
to that Work or Derivative Works thereof, that is intentionally
submitted to Licensor for inclusion in the Work by the copyright owner
or by an individual or Legal Entity authorized to submit on behalf of
the copyright owner. For the purposes of this definition, "submitted"
means any form of electronic, verbal, or written communication sent
to the Licensor or its representatives, including but not limited to
communication on electronic mailing lists, source code control systems,
and issue tracking systems that are managed by, or on behalf of, the
Licensor for the purpose of discussing and improving the Work, but
excluding communication that is conspicuously marked or otherwise
designated in writing by the copyright owner as "Not a Contribution."
"Contributor" shall mean Licensor and any individual or Legal Entity
on behalf of whom a Contribution has been received by Licensor and
subsequently incorporated within the Work.
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this License, each Contributor hereby grants to You a perpetual,
worldwide, non-exclusive, no-charge, royalty-free, irrevocable
copyright license to reproduce, prepare Derivative Works of,
publicly display, publicly perform, sublicense, and distribute the
Work and such Derivative Works in Source or Object form.
3. Grant of Patent License. Subject to the terms and conditions of
this License, each Contributor hereby grants to You a perpetual,
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cross-claim or counterclaim in a lawsuit) alleging that the Work
or a Contribution incorporated within the Work constitutes direct
or contributory patent infringement, then any patent licenses
granted to You under this License for that Work shall terminate
as of the date such litigation is filed.
4. Redistribution. You may reproduce and distribute copies of the
Work or Derivative Works thereof in any medium, with or without
modifications, and in Source or Object form, provided that You
meet the following conditions:
(a) You must give any other recipients of the Work or
Derivative Works a copy of this License; and
(b) You must cause any modified files to carry prominent notices
stating that You changed the files; and
(c) You must retain, in the Source form of any Derivative Works
that You distribute, all copyright, patent, trademark, and
attribution notices from the Source form of the Work,
excluding those notices that do not pertain to any part of
the Derivative Works; and
(d) If the Work includes a "NOTICE" text file as part of its
distribution, then any Derivative Works that You distribute must
include a readable copy of the attribution notices contained
within such NOTICE file, excluding those notices that do not
pertain to any part of the Derivative Works, in at least one
of the following places: within a NOTICE text file distributed
as part of the Derivative Works; within the Source form or
documentation, if provided along with the Derivative Works; or,
within a display generated by the Derivative Works, if and
wherever such third-party notices normally appear. The contents
of the NOTICE file are for informational purposes only and
do not modify the License. You may add Your own attribution
notices within Derivative Works that You distribute, alongside
or as an addendum to the NOTICE text from the Work, provided
that such additional attribution notices cannot be construed
as modifying the License.
You may add Your own copyright statement to Your modifications and
may provide additional or different license terms and conditions
for use, reproduction, or distribution of Your modifications, or
for any such Derivative Works as a whole, provided Your use,
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the conditions stated in this License.
5. Submission of Contributions. Unless You explicitly state otherwise,
any Contribution intentionally submitted for inclusion in the Work
by You to the Licensor shall be under the terms and conditions of
this License, without any additional terms or conditions.
Notwithstanding the above, nothing herein shall supersede or modify
the terms of any separate license agreement you may have executed
with Licensor regarding such Contributions.
6. Trademarks. This License does not grant permission to use the trade
names, trademarks, service marks, or product names of the Licensor,
except as required for reasonable and customary use in describing the
origin of the Work and reproducing the content of the NOTICE file.
7. Disclaimer of Warranty. Unless required by applicable law or
agreed to in writing, Licensor provides the Work (and each
Contributor provides its Contributions) on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
implied, including, without limitation, any warranties or conditions
of TITLE, NON-INFRINGEMENT, MERCHANTABILITY, or FITNESS FOR A
PARTICULAR PURPOSE. You are solely responsible for determining the
appropriateness of using or redistributing the Work and assume any
risks associated with Your exercise of permissions under this License.
8. Limitation of Liability. In no event and under no legal theory,
whether in tort (including negligence), contract, or otherwise,
unless required by applicable law (such as deliberate and grossly
negligent acts) or agreed to in writing, shall any Contributor be
liable to You for damages, including any direct, indirect, special,
incidental, or consequential damages of any character arising as a
result of this License or out of the use or inability to use the
Work (including but not limited to damages for loss of goodwill,
work stoppage, computer failure or malfunction, or any and all
other commercial damages or losses), even if such Contributor
has been advised of the possibility of such damages.
9. Accepting Warranty or Additional Liability. While redistributing
the Work or Derivative Works thereof, You may choose to offer,
and charge a fee for, acceptance of support, warranty, indemnity,
or other liability obligations and/or rights consistent with this
License. However, in accepting such obligations, You may act only
on Your own behalf and on Your sole responsibility, not on behalf
of any other Contributor, and only if You agree to indemnify,
defend, and hold each Contributor harmless for any liability
incurred by, or claims asserted against, such Contributor by reason
of your accepting any such warranty or additional liability.
END OF TERMS AND CONDITIONS
APPENDIX: How to apply the Apache License to your work.
To apply the Apache License to your work, attach the following
boilerplate notice, with the fields enclosed by brackets "[]"
replaced with your own identifying information. (Don't include
the brackets!) The text should be enclosed in the appropriate
comment syntax for the file format. We also recommend that a
file or class name and description of purpose be included on the
same "printed page" as the copyright notice for easier
identification within third-party archives.
Copyright [yyyy] [name of copyright owner]
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
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Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.

View File

@@ -0,0 +1,97 @@
# CherryPick Flutter
`cherrypick_flutter` offers a Flutter integration to access and manage dependency injection scopes using the `CherryPickProvider`. This setup facilitates accessing the root scope directly from the widget tree, providing a straightforward mechanism for dependences management within Flutter applications.
## Installation
Add `cherrypick_flutter` to your `pubspec.yaml`:
```yaml
dependencies:
cherrypick_flutter: ^1.0.0
```
Run `flutter pub get` to install the package dependencies.
## Usage
### Importing the Package
To begin using `cherrypick_flutter`, import it within your Dart file:
```dart
import 'package:cherrypick_flutter/cherrypick_flutter.dart';
```
### Providing State with `CherryPickProvider`
Use `CherryPickProvider` to encase the widget tree section that requires access to the root or specific subscopes:
```dart
import 'package:flutter/material.dart';
import 'package:cherrypick_flutter/cherrypick_flutter.dart';
void main() {
runApp(
CherryPickProvider(
child: MyApp(),
),
);
}
```
Note: The current implementation of `CherryPickProvider` does not directly pass a `rootScope`. Instead, it utilizes its methods to open root and sub-scopes internally.
### Accessing State
Access the state provided by `CherryPickProvider` within widget `build` methods using the `of` method:
```dart
class MyWidget extends StatelessWidget {
@override
Widget build(BuildContext context) {
final CherryPickProvider cherryPick = CherryPickProvider.of(context);
final rootScope = cherryPick.openRootScope();
// Use the rootScope or open a subScope as needed
final subScope = cherryPick.openSubScope(scopeName: "exampleScope");
return Text('Scope accessed!');
}
}
```
### Updating State
The `CherryPickProvider` setup internally manages state updates. Ensure the `updateShouldNotify` method accurately reflects when the dependents should receive updates. In the provided implementation, it currently does not notify updates automatically.
## Example
Here is an example illustrating how to implement and utilize `CherryPickProvider` within a Flutter application:
```dart
class MyApp extends StatelessWidget {
const MyApp({super.key});
@override
Widget build(BuildContext context) {
final rootScope = CherryPickProvider.of(context).openRootScope();
return MaterialApp.router(
routerDelegate: rootScope.resolve<AppRouter>().delegate(),
routeInformationParser:
rootScope.resolve<AppRouter>().defaultRouteParser(),
);
}
}
```
In this example, `CherryPickProvider` accesses and resolves dependencies using root scope and potentially sub-scopes configured by the application.
## Contributing
Contributions to improve this library are welcome. Feel free to open issues and submit pull requests on the repository.
## License
This project is licensed under the Apache License 2.0. A copy of the license can be obtained at [Apache License 2.0](http://www.apache.org/licenses/LICENSE-2.0).

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@@ -0,0 +1,4 @@
include: package:flutter_lints/flutter.yaml
# Additional information about this file can be found at
# https://dart.dev/guides/language/analysis-options

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@@ -0,0 +1,15 @@
library;
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
export 'src/cherrypick_provider.dart';

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@@ -0,0 +1,44 @@
import 'package:cherrypick/cherrypick.dart';
import 'package:flutter/widgets.dart';
///
/// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
/// Licensed under the Apache License, Version 2.0 (the "License");
/// you may not use this file except in compliance with the License.
/// You may obtain a copy of the License at
/// http://www.apache.org/licenses/LICENSE-2.0
/// Unless required by applicable law or agreed to in writing, software
/// distributed under the License is distributed on an "AS IS" BASIS,
/// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
/// See the License for the specific language governing permissions and
/// limitations under the License.
///
final class CherryPickProvider extends InheritedWidget {
Scope openRootScope() => CherryPick.openRootScope();
Scope openSubScope({String scopeName = '', String separator = '.'}) =>
CherryPick.openScope(scopeName: scopeName, separator: separator);
// Constructor for CherryPickProvider. Initializes with a required rootScope and child widget.
const CherryPickProvider({
super.key,
required super.child,
});
// Method to access the nearest CherryPickProvider instance from the context
static CherryPickProvider of(BuildContext context) {
// Looks up the widget tree for an instance of CherryPickProvider
final CherryPickProvider? result =
context.dependOnInheritedWidgetOfExactType<CherryPickProvider>();
// Assert to ensure a CherryPickProvider is present in the context
assert(result != null, 'No CherryPickProvider found in context');
return result!;
}
// Determines whether the widget should notify dependents when it changes
@override
bool updateShouldNotify(CherryPickProvider oldWidget) {
return false;
}
}

View File

@@ -0,0 +1,60 @@
name: cherrypick_flutter
description: "Flutter library that allows access to the root scope through the context using `CherryPickProvider`."
version: 1.1.2-dev.2
homepage: https://pese-git.github.io/cherrypick-site/
documentation: https://github.com/pese-git/cherrypick/wiki
repository: https://github.com/pese-git/cherrypick
issue_tracker: https://github.com/pese-git/cherrypick/issues
environment:
sdk: ">=3.5.2 <4.0.0"
flutter: ">=3.24.0"
dependencies:
flutter:
sdk: flutter
cherrypick: ^2.2.0-dev.2
dev_dependencies:
flutter_test:
sdk: flutter
flutter_lints: ^5.0.0
test: ^1.25.7
melos: ^6.3.2
# For information on the generic Dart part of this file, see the
# following page: https://dart.dev/tools/pub/pubspec
# The following section is specific to Flutter packages.
flutter:
# To add assets to your package, add an assets section, like this:
# assets:
# - images/a_dot_burr.jpeg
# - images/a_dot_ham.jpeg
#
# For details regarding assets in packages, see
# https://flutter.dev/to/asset-from-package
#
# An image asset can refer to one or more resolution-specific "variants", see
# https://flutter.dev/to/resolution-aware-images
# To add custom fonts to your package, add a fonts section here,
# in this "flutter" section. Each entry in this list should have a
# "family" key with the font family name, and a "fonts" key with a
# list giving the asset and other descriptors for the font. For
# example:
# fonts:
# - family: Schyler
# fonts:
# - asset: fonts/Schyler-Regular.ttf
# - asset: fonts/Schyler-Italic.ttf
# style: italic
# - family: Trajan Pro
# fonts:
# - asset: fonts/TrajanPro.ttf
# - asset: fonts/TrajanPro_Bold.ttf
# weight: 700
#
# For details regarding fonts in packages, see
# https://flutter.dev/to/font-from-package

View File

@@ -0,0 +1,7 @@
import 'package:flutter_test/flutter_test.dart';
void main() {
test('adds one to input values', () {
expect(1, 1);
});
}

30
cherrypick_generator/.gitignore vendored Normal file
View File

@@ -0,0 +1,30 @@
# See https://www.dartlang.org/guides/libraries/private-files
# Files and directories created by pub
.dart_tool/
.packages
build/
# If you're building an application, you may want to check-in your pubspec.lock
pubspec.lock
# Directory created by dartdoc
# If you don't generate documentation locally you can remove this line.
doc/api/
# Avoid committing generated Javascript files:
*.dart.js
*.info.json # Produced by the --dump-info flag.
*.js # When generated by dart2js. Don't specify *.js if your
# project includes source files written in JavaScript.
*.js_
*.js.deps
*.js.map
# FVM Version Cache
.fvm/
melos_cherrypick_generator.iml
**/*.mocks.dart
coverage

View File

@@ -0,0 +1,46 @@
## 1.1.0-dev.6
> Note: This release has breaking changes.
- **FIX**: format test code.
- **FEAT**(generator): support output_dir and build_extensions config for generated files.
- **BREAKING** **FEAT**(generator): complete code generation testing framework with 100% test coverage.
## 1.1.0-dev.5
- **FEAT**: implement tryResolve via generate code.
## 1.1.0-dev.4
- **FIX**: fixed warnings.
## 1.1.0-dev.3
- **FEAT**: implement InjectGenerator.
## 1.1.0-dev.2
- **FIX**: update instance generator code.
## 1.1.0-dev.1
- **FIX**: optimize code.
## 1.1.0-dev.0
- **FIX**: fix warning conflict with names.
- **FIX**: fix warnings.
- **FIX**: fix module generator.
- **FIX**: fix generator for singletone annotation.
- **FEAT**: implement generator for dynamic params.
- **FEAT**: implement async mode for instance/provide annotations.
- **FEAT**: generate instance async code.
- **FEAT**: implement instance/provide annotations.
- **FEAT**: implement named dependency.
- **FEAT**: implement generator for named annotation.
- **FEAT**: implement generator di module.
- **FEAT**: implement annotations.
## 1.0.0
- Initial version.

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@@ -0,0 +1,201 @@
Apache License
Version 2.0, January 2004
http://www.apache.org/licenses/
TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION
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6. Trademarks. This License does not grant permission to use the trade
names, trademarks, service marks, or product names of the Licensor,
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origin of the Work and reproducing the content of the NOTICE file.
7. Disclaimer of Warranty. Unless required by applicable law or
agreed to in writing, Licensor provides the Work (and each
Contributor provides its Contributions) on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
implied, including, without limitation, any warranties or conditions
of TITLE, NON-INFRINGEMENT, MERCHANTABILITY, or FITNESS FOR A
PARTICULAR PURPOSE. You are solely responsible for determining the
appropriateness of using or redistributing the Work and assume any
risks associated with Your exercise of permissions under this License.
8. Limitation of Liability. In no event and under no legal theory,
whether in tort (including negligence), contract, or otherwise,
unless required by applicable law (such as deliberate and grossly
negligent acts) or agreed to in writing, shall any Contributor be
liable to You for damages, including any direct, indirect, special,
incidental, or consequential damages of any character arising as a
result of this License or out of the use or inability to use the
Work (including but not limited to damages for loss of goodwill,
work stoppage, computer failure or malfunction, or any and all
other commercial damages or losses), even if such Contributor
has been advised of the possibility of such damages.
9. Accepting Warranty or Additional Liability. While redistributing
the Work or Derivative Works thereof, You may choose to offer,
and charge a fee for, acceptance of support, warranty, indemnity,
or other liability obligations and/or rights consistent with this
License. However, in accepting such obligations, You may act only
on Your own behalf and on Your sole responsibility, not on behalf
of any other Contributor, and only if You agree to indemnify,
defend, and hold each Contributor harmless for any liability
incurred by, or claims asserted against, such Contributor by reason
of your accepting any such warranty or additional liability.
END OF TERMS AND CONDITIONS
APPENDIX: How to apply the Apache License to your work.
To apply the Apache License to your work, attach the following
boilerplate notice, with the fields enclosed by brackets "[]"
replaced with your own identifying information. (Don't include
the brackets!) The text should be enclosed in the appropriate
comment syntax for the file format. We also recommend that a
file or class name and description of purpose be included on the
same "printed page" as the copyright notice for easier
identification within third-party archives.
Copyright [yyyy] [name of copyright owner]
Licensed under the Apache License, Version 2.0 (the "License");
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Unless required by applicable law or agreed to in writing, software
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
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View File

@@ -0,0 +1,267 @@
# Cherrypick Generator
**Cherrypick Generator** is a Dart code generation library for automating dependency injection (DI) boilerplate. It processes classes and fields annotated with [cherrypick_annotations](https://pub.dev/packages/cherrypick_annotations) and generates registration code for services, modules, and field injection for classes marked as `@injectable`. It supports advanced DI features such as scopes, named bindings, parameters, and asynchronous dependencies.
---
### Advanced: Customizing Generated File Paths (`build_extensions`)
You can further control the filenames and subdirectory structure of generated files using the `build_extensions` option in `build.yaml`. This is especially useful in large apps for keeping DI artifacts organized under `lib/generated/` or any custom location.
**Example advanced build.yaml:**
```yaml
targets:
$default:
builders:
cherrypick_generator|inject_generator:
options:
build_extensions:
'^lib/app.dart': ['lib/generated/app.inject.cherrypick.g.dart']
output_dir: lib/generated
generate_for:
- lib/**.dart
cherrypick_generator|module_generator:
options:
build_extensions:
'^lib/di/{{}}.dart': ['lib/generated/di/{{}}.module.cherrypick.g.dart']
output_dir: lib/generated
generate_for:
- lib/**.dart
```
- **output_dir**: Path where all generated files are placed (e.g., `lib/generated`)
- **build_extensions**: Allows templating of generated filenames and locations. You can use wildcards like `{{}}` to keep directory structure or group related files.
**If you use these options, be sure to update your imports accordingly, for example:**
```dart
import 'package:your_package/generated/app.inject.cherrypick.g.dart';
import 'package:your_package/generated/di/app_module.module.cherrypick.g.dart';
```
### FAQ / Troubleshooting
- If files are missing or located in unexpected directories, double-check your `output_dir` and `build_extensions` configuration.
- If you change generation paths, always update your imports in the codebase.
- These options are backward compatible: omitting them preserves pre-existing (side-by-source) output behavior.
---
## Features
- **Automatic Field Injection:**
Detects classes annotated with `@injectable()`, and generates mixins to inject all fields annotated with `@inject()`, supporting scope and named qualifiers.
- **Module and Service Registration:**
For classes annotated with `@module()`, generates service registration code for methods using annotations such as `@provide`, `@instance`, `@singleton`, `@named`, and `@params`.
- **Scope & Named Qualifier Support:**
Supports advanced DI features:
&nbsp;&nbsp;• Field-level scoping with `@scope('scopename')`
&nbsp;&nbsp;• Named dependencies via `@named('value')`
- **Synchronous & Asynchronous Support:**
Handles both synchronous and asynchronous services (including `Future<T>`) for both field injection and module registration.
- **Parameters and Runtime Arguments:**
Recognizes and wires both injected dependencies and runtime parameters using `@params`.
- **Error Handling:**
Validates annotations at generation time. Provides helpful errors for incorrect usage (e.g., using `@injectable` on non-class elements).
---
## How It Works
### 1. Annotate your code
Use annotations from [cherrypick_annotations](https://pub.dev/packages/cherrypick_annotations):
- `@injectable()` — on classes to enable field injection
- `@inject()` — on fields to specify they should be injected
- `@scope()`, `@named()` — on fields or parameters for advanced wiring
- `@module()` — on classes to mark as DI modules
- `@provide`, `@instance`, `@singleton`, `@params` — on methods and parameters for module-based DI
### 2. Run the generator
Use `build_runner` to process your code and generate `.module.cherrypick.g.dart` and `.inject.cherrypick.g.dart` files.
### 3. Use the output in your application
- For modules: Register DI providers using the generated `$YourModule` class.
- For services: Enable field injection on classes using the generated mixin.
---
## Field Injection Example
Given the following:
```dart
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
@injectable()
class MyWidget with _$MyWidget {
@inject()
late final AuthService auth;
@inject()
@scope('profile')
late final ProfileManager manager;
@inject()
@named('special')
late final ApiClient specialApi;
}
```
**The generator will output (simplified):**
```dart
mixin _$MyWidget {
void _inject(MyWidget instance) {
instance.auth = CherryPick.openRootScope().resolve<AuthService>();
instance.manager = CherryPick.openScope(scopeName: 'profile').resolve<ProfileManager>();
instance.specialApi = CherryPick.openRootScope().resolve<ApiClient>(named: 'special');
}
}
```
You can then mix this into your widget to enable automatic DI at runtime.
---
## Module Registration Example
Given:
```dart
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
@module()
class MyModule {
@singleton
@instance
AuthService provideAuth(Api api);
@provide
@named('logging')
Future<Logger> provideLogger(@params Map<String, dynamic> args);
}
```
**The generator will output (simplified):**
```dart
final class $MyModule extends MyModule {
@override
void builder(Scope currentScope) {
bind<AuthService>()
.toInstance(provideAuth(currentScope.resolve<Api>()))
.singleton();
bind<Logger>()
.toProvideAsyncWithParams((args) => provideLogger(args))
.withName('logging');
}
}
```
---
## Key Points
- **Rich Annotation Support:**
Mix and match field, parameter, and method annotations for maximum flexibility.
- **Scope and Named Resolution:**
Use `@scope('...')` and `@named('...')` to precisely control where and how dependencies are wired.
- **Async/Synchronous:**
The generator distinguishes between sync (`resolve<T>`) and async (`resolveAsync<T>`) dependencies.
- **Automatic Mixins:**
For classes with `@injectable()`, a mixin is generated that injects all relevant fields (using constructor or setter).
- **Comprehensive Error Checking:**
Misapplied annotations (e.g., `@injectable()` on non-class) produce clear build-time errors.
---
## Usage
1. **Add dependencies**
```yaml
dependencies:
cherrypick_annotations: ^latest
dev_dependencies:
cherrypick_generator: ^latest
build_runner: ^2.1.0
```
2. **Annotate your classes and modules as above**
3. **Run the generator**
```shell
dart run build_runner build
# or, if using Flutter:
flutter pub run build_runner build
```
4. **Use generated code**
- Import the generated `.inject.cherrypick.g.dart` or `.cherrypick.g.dart` files where needed
---
## Advanced Usage
### Custom output directory for generated code (output_dir)
You can control the directory where the generated files (`*.inject.cherrypick.g.dart`, `*.module.cherrypick.g.dart`) are placed using the `output_dir` option in your `build.yaml`:
```yaml
targets:
$default:
builders:
cherrypick_generator|injectBuilder:
options:
output_dir: lib/generated
cherrypick_generator|moduleBuilder:
options:
output_dir: lib/generated
```
**If `output_dir` is omitted, generated files are placed next to the original sources (default behavior).**
After running code generation, you will find files like `lib/generated/app.inject.cherrypick.g.dart` and `lib/generated/your_module.module.cherrypick.g.dart`. You can import them as needed from that directory.
- **Combining Modules and Field Injection:**
It's possible to mix both style of DI — modules for binding, and field injection for consuming services.
- **Parameter and Named Injection:**
Use `@named` on both provider and parameter for named registration and lookup; use `@params` to pass runtime arguments.
- **Async Factories:**
Methods returning Future<T> generate async bindings and async field resolution logic.
---
## Developer Notes
- The generator relies on the Dart analyzer, `source_gen`, and `build` packages.
- All classes and methods are parsed for annotations.
- Improper annotation usage will result in generator errors.
---
## License
```
Licensed under the Apache License, Version 2.0
```
---
## Contribution
Pull requests and issues are welcome! Please open GitHub issues or submit improvements.
---

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@@ -0,0 +1,34 @@
# This file configures the static analysis results for your project (errors,
# warnings, and lints).
#
# This enables the 'recommended' set of lints from `package:lints`.
# This set helps identify many issues that may lead to problems when running
# or consuming Dart code, and enforces writing Dart using a single, idiomatic
# style and format.
#
# If you want a smaller set of lints you can change this to specify
# 'package:lints/core.yaml'. These are just the most critical lints
# (the recommended set includes the core lints).
# The core lints are also what is used by pub.dev for scoring packages.
include: package:lints/recommended.yaml
# Uncomment the following section to specify additional rules.
# linter:
# rules:
# - camel_case_types
# analyzer:
# exclude:
# - path/to/excluded/files/**
# For more information about the core and recommended set of lints, see
# https://dart.dev/go/core-lints
# For additional information about configuring this file, see
# https://dart.dev/guides/language/analysis-options
analyzer:
errors:
deprecated_member_use: ignore

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@@ -0,0 +1,25 @@
builders:
inject_generator:
import: "package:cherrypick_generator/inject_generator.dart"
builder_factories: ["injectBuilder"]
build_extensions: {".dart": [".inject.cherrypick.g.dart"]}
auto_apply: dependents
build_to: source
applies_builders: ["source_gen|combining_builder"]
module_generator:
import: "package:cherrypick_generator/module_generator.dart"
builder_factories: ["moduleBuilder"]
build_extensions: {".dart": [".module.cherrypick.g.dart"]}
auto_apply: dependents
build_to: source
applies_builders: ["source_gen|combining_builder"]
targets:
$default:
builders:
cherrypick_generator|module_generator:
generate_for:
- lib/**.dart
cherrypick_generator|inject_generator:
generate_for:
- lib/**.dart

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#!/usr/bin/env python3
"""
Анализ покрытия тестами для CherryPick Generator
"""
import re
import os
def analyze_lcov_file(lcov_path):
"""Анализирует LCOV файл и возвращает статистику покрытия"""
if not os.path.exists(lcov_path):
print(f"❌ LCOV файл не найден: {lcov_path}")
return
with open(lcov_path, 'r') as f:
content = f.read()
# Разбиваем на секции по файлам
file_sections = content.split('SF:')[1:] # Убираем первую пустую секцию
total_lines = 0
total_hit = 0
files_coverage = {}
for section in file_sections:
lines = section.strip().split('\n')
if not lines:
continue
file_path = lines[0]
file_name = os.path.basename(file_path)
# Подсчитываем строки
da_lines = [line for line in lines if line.startswith('DA:')]
file_total = len(da_lines)
file_hit = 0
for da_line in da_lines:
# DA:line_number,hit_count
parts = da_line.split(',')
if len(parts) >= 2:
hit_count = int(parts[1])
if hit_count > 0:
file_hit += 1
if file_total > 0:
coverage_percent = (file_hit / file_total) * 100
files_coverage[file_name] = {
'total': file_total,
'hit': file_hit,
'percent': coverage_percent
}
total_lines += file_total
total_hit += file_hit
# Общая статистика
overall_percent = (total_hit / total_lines) * 100 if total_lines > 0 else 0
print("📊 АНАЛИЗ ПОКРЫТИЯ ТЕСТАМИ CHERRYPICK GENERATOR")
print("=" * 60)
print(f"\n🎯 ОБЩАЯ СТАТИСТИКА:")
print(f" Всего строк кода: {total_lines}")
print(f" Покрыто тестами: {total_hit}")
print(f" Общее покрытие: {overall_percent:.1f}%")
print(f"\n📁 ПОКРЫТИЕ ПО ФАЙЛАМ:")
# Сортируем по проценту покрытия
sorted_files = sorted(files_coverage.items(), key=lambda x: x[1]['percent'], reverse=True)
for file_name, stats in sorted_files:
percent = stats['percent']
hit = stats['hit']
total = stats['total']
# Эмодзи в зависимости от покрытия
if percent >= 80:
emoji = ""
elif percent >= 50:
emoji = "🟡"
else:
emoji = ""
print(f" {emoji} {file_name:<25} {hit:>3}/{total:<3} ({percent:>5.1f}%)")
print(f"\n🏆 РЕЙТИНГ КОМПОНЕНТОВ:")
# Группируем по типам компонентов
core_files = ['bind_spec.dart', 'bind_parameters_spec.dart', 'generated_class.dart']
utils_files = ['metadata_utils.dart']
generator_files = ['module_generator.dart', 'inject_generator.dart']
def calculate_group_coverage(file_list):
group_total = sum(files_coverage.get(f, {}).get('total', 0) for f in file_list)
group_hit = sum(files_coverage.get(f, {}).get('hit', 0) for f in file_list)
return (group_hit / group_total * 100) if group_total > 0 else 0
core_coverage = calculate_group_coverage(core_files)
utils_coverage = calculate_group_coverage(utils_files)
generators_coverage = calculate_group_coverage(generator_files)
print(f" 🔧 Core Components: {core_coverage:>5.1f}%")
print(f" 🛠️ Utils: {utils_coverage:>5.1f}%")
print(f" ⚙️ Generators: {generators_coverage:>5.1f}%")
print(f"\n📈 РЕКОМЕНДАЦИИ:")
# Файлы с низким покрытием
low_coverage = [(f, s) for f, s in files_coverage.items() if s['percent'] < 50]
if low_coverage:
print(" 🎯 Приоритет для улучшения:")
for file_name, stats in sorted(low_coverage, key=lambda x: x[1]['percent']):
print(f"{file_name} ({stats['percent']:.1f}%)")
# Файлы без покрытия
zero_coverage = [(f, s) for f, s in files_coverage.items() if s['percent'] == 0]
if zero_coverage:
print(" ❗ Требуют срочного внимания:")
for file_name, stats in zero_coverage:
print(f"{file_name} (0% покрытия)")
print(f"\n✨ ДОСТИЖЕНИЯ:")
high_coverage = [(f, s) for f, s in files_coverage.items() if s['percent'] >= 80]
if high_coverage:
print(" 🏅 Отлично протестированы:")
for file_name, stats in sorted(high_coverage, key=lambda x: x[1]['percent'], reverse=True):
print(f"{file_name} ({stats['percent']:.1f}%)")
return files_coverage, overall_percent
if __name__ == "__main__":
lcov_path = "coverage/lcov.info"
analyze_lcov_file(lcov_path)

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@@ -0,0 +1,110 @@
import 'dart:async';
import 'package:build/build.dart';
import 'package:path/path.dart' as p;
import 'package:source_gen/source_gen.dart';
import 'inject_generator.dart';
import 'module_generator.dart';
/// Универсальный Builder для генераторов Cherrypick с поддержкой кастомного output_dir
/// (указывает директорию для складывания сгенерированных файлов через build.yaml)
class CustomOutputBuilder extends Builder {
final Generator generator;
final String extension;
final String outputDir;
final Map<String, List<String>> customBuildExtensions;
CustomOutputBuilder(this.generator, this.extension, this.outputDir, this.customBuildExtensions);
@override
Map<String, List<String>> get buildExtensions {
if (customBuildExtensions.isNotEmpty) {
return customBuildExtensions;
}
// Дефолт: рядом с исходником, как PartBuilder
return {
'.dart': [extension],
};
}
@override
Future<void> build(BuildStep buildStep) async {
final inputId = buildStep.inputId;
print('[CustomOutputBuilder] build() called for input: \\${inputId.path}');
final library = await buildStep.resolver.libraryFor(inputId);
print('[CustomOutputBuilder] resolved library for: \\${inputId.path}');
final generated = await generator.generate(LibraryReader(library), buildStep);
print('[CustomOutputBuilder] gen result for input: \\${inputId.path}, isNull: \\${generated == null}, isEmpty: \\${generated?.isEmpty}');
if (generated == null || generated.isEmpty) return;
String outputPath;
if (customBuildExtensions.isNotEmpty) {
// Кастомная директория/шаблон
final inputPath = inputId.path;
final relativeInput = p.relative(inputPath, from: 'lib/');
final parts = p.split(relativeInput);
String subdir = '';
String baseName = parts.last.replaceAll('.dart', '');
if (parts.length > 1) {
subdir = parts.first; // Например, 'di'
}
outputPath = subdir.isEmpty
? p.join('lib', 'generated', '$baseName$extension')
: p.join('lib', 'generated', subdir, '$baseName$extension');
} else {
// Дефолт: рядом с исходником
outputPath = p.setExtension(inputId.path, extension);
}
final outputId = AssetId(inputId.package, outputPath);
// part of - всегда авто!
final partOfPath = p.relative(inputId.path, from: p.dirname(outputPath));
// Check if generated code starts with formatting header
String finalCode;
if (generated.startsWith('// dart format width=80')) {
// Find the end of the header (after "// GENERATED CODE - DO NOT MODIFY BY HAND")
final lines = generated.split('\n');
int headerEndIndex = -1;
for (int i = 0; i < lines.length; i++) {
if (lines[i].startsWith('// GENERATED CODE - DO NOT MODIFY BY HAND')) {
headerEndIndex = i;
break;
}
}
if (headerEndIndex != -1) {
// Insert part of directive after the header
final headerLines = lines.sublist(0, headerEndIndex + 1);
final remainingLines = lines.sublist(headerEndIndex + 1);
final headerPart = headerLines.join('\n');
final remainingPart = remainingLines.join('\n');
// Preserve trailing newline if original had one
final hasTrailingNewline = generated.endsWith('\n');
finalCode = '$headerPart\n\npart of \'$partOfPath\';\n$remainingPart${hasTrailingNewline ? '' : '\n'}';
} else {
// Fallback: add part of at the beginning
finalCode = "part of '$partOfPath';\n\n$generated";
}
} else {
// No header, add part of at the beginning
finalCode = "part of '$partOfPath';\n\n$generated";
}
print('[CustomOutputBuilder] writing to output: \\${outputId.path}');
await buildStep.writeAsString(outputId, finalCode);
print('[CustomOutputBuilder] successfully written for input: \\${inputId.path}');
}
}
Builder injectCustomBuilder(BuilderOptions options) {
final outputDir = options.config['output_dir'] as String? ?? '';
final buildExtensions = (options.config['build_extensions'] as Map?)?.map((k,v)=>MapEntry(k.toString(), (v as List).map((item)=>item.toString()).toList())) ?? {};
return CustomOutputBuilder(InjectGenerator(), '.inject.cherrypick.g.dart', outputDir, buildExtensions);
}
Builder moduleCustomBuilder(BuilderOptions options) {
final outputDir = options.config['output_dir'] as String? ?? '';
final buildExtensions = (options.config['build_extensions'] as Map?)?.map((k,v)=>MapEntry(k.toString(), (v as List).map((item)=>item.toString()).toList())) ?? {};
return CustomOutputBuilder(ModuleGenerator(), '.module.cherrypick.g.dart', outputDir, buildExtensions);
}

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@@ -0,0 +1,17 @@
library;
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
export 'module_generator.dart';
export 'inject_generator.dart';

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@@ -0,0 +1,267 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'dart:async';
import 'package:analyzer/dart/constant/value.dart';
import 'package:build/build.dart';
import 'package:source_gen/source_gen.dart';
import 'package:analyzer/dart/element/element.dart';
import 'package:cherrypick_annotations/cherrypick_annotations.dart' as ann;
import 'cherrypick_custom_builders.dart' as custom;
import 'src/exceptions.dart';
import 'src/type_parser.dart';
import 'src/annotation_validator.dart';
/// InjectGenerator generates a mixin for a class marked with @injectable()
/// and injects all fields annotated with @inject(), using CherryPick DI.
///
/// For Future<T> fields it calls .resolveAsync<T>(),
/// otherwise .resolve<T>() is used. Scope and named qualifiers are supported.
///
/// ---
///
/// InjectGenerator генерирует миксин для класса с аннотацией @injectable()
/// и внедряет все поля, помеченные @inject(), используя DI-фреймворк CherryPick.
///
/// Для Future<T> полей вызывается .resolveAsync<T>(),
/// для остальных — .resolve<T>(). Поддерживаются scope и named qualifier.
///
class InjectGenerator extends GeneratorForAnnotation<ann.injectable> {
const InjectGenerator();
/// The main entry point for code generation.
///
/// Checks class validity, collects injectable fields, and produces injection code.
///
/// Основная точка входа генератора. Проверяет класс, собирает инъектируемые поля и создает код внедрения зависимостей.
@override
FutureOr<String> generateForAnnotatedElement(
Element element,
ConstantReader annotation,
BuildStep buildStep,
) {
if (element is! ClassElement) {
throw CherryPickGeneratorException(
'@injectable() can only be applied to classes',
element: element,
category: 'INVALID_TARGET',
suggestion: 'Apply @injectable() to a class instead of ${element.runtimeType}',
);
}
final classElement = element;
try {
// Validate class annotations
AnnotationValidator.validateClassAnnotations(classElement);
return _generateInjectionCode(classElement);
} catch (e) {
if (e is CherryPickGeneratorException) {
rethrow;
}
throw CodeGenerationException(
'Failed to generate injection code: $e',
element: classElement,
suggestion: 'Check that all @inject fields have valid types and annotations',
);
}
}
/// Generates the injection code for a class
String _generateInjectionCode(ClassElement classElement) {
final className = classElement.name;
final mixinName = '_\$$className';
// Collect and process all @inject fields.
final injectFields = classElement.fields
.where(_isInjectField)
.map((field) => _parseInjectField(field, classElement))
.toList();
final buffer = StringBuffer()
..writeln('// dart format width=80')
..writeln('// GENERATED CODE - DO NOT MODIFY BY HAND')
..writeln()
..writeln('// **************************************************************************')
..writeln('// InjectGenerator')
..writeln('// **************************************************************************')
..writeln()
..writeln('mixin $mixinName {');
if (injectFields.isEmpty) {
// For empty classes, generate a method with empty body
buffer.writeln(' void _inject($className instance) {}');
} else {
buffer.writeln(' void _inject($className instance) {');
for (final parsedField in injectFields) {
buffer.writeln(_generateInjectionLine(parsedField));
}
buffer.writeln(' }');
}
buffer.writeln('}');
return '${buffer.toString()}\n';
}
/// Checks if a field has the @inject annotation.
///
/// Проверяет, отмечено ли поле аннотацией @inject.
static bool _isInjectField(FieldElement field) {
return field.metadata.any(
(m) => m.computeConstantValue()?.type?.getDisplayString() == 'inject',
);
}
/// Parses the field for scope/named qualifiers and determines its type.
/// Returns a [_ParsedInjectField] describing injection information.
///
/// Разбирает поле на наличие модификаторов scope/named и выясняет его тип.
/// Возвращает [_ParsedInjectField] с информацией о внедрении.
static _ParsedInjectField _parseInjectField(FieldElement field, ClassElement classElement) {
try {
// Validate field annotations
AnnotationValidator.validateFieldAnnotations(field);
// Parse type using improved type parser
final parsedType = TypeParser.parseType(field.type, field);
TypeParser.validateInjectableType(parsedType, field);
// Extract metadata
String? scopeName;
String? namedValue;
for (final meta in field.metadata) {
final DartObject? obj = meta.computeConstantValue();
final type = obj?.type?.getDisplayString();
if (type == 'scope') {
scopeName = obj?.getField('name')?.toStringValue();
} else if (type == 'named') {
namedValue = obj?.getField('value')?.toStringValue();
}
}
return _ParsedInjectField(
fieldName: field.name,
parsedType: parsedType,
scopeName: scopeName,
namedValue: namedValue,
);
} catch (e) {
if (e is CherryPickGeneratorException) {
rethrow;
}
throw DependencyResolutionException(
'Failed to parse inject field "${field.name}"',
element: field,
suggestion: 'Check that the field type is valid and properly imported',
context: {
'field_name': field.name,
'field_type': field.type.getDisplayString(),
'class_name': classElement.name,
'error': e.toString(),
},
);
}
}
/// Generates a line of code that performs the dependency injection for a field.
/// Handles resolve/resolveAsync, scoping, and named qualifiers.
///
/// Генерирует строку кода, которая внедряет зависимость для поля.
/// Учитывает resolve/resolveAsync, scoping и named qualifier.
String _generateInjectionLine(_ParsedInjectField field) {
final resolveMethod = '${field.parsedType.resolveMethodName}<${field.parsedType.codeGenType}>';
final fieldName = field.fieldName;
// Build the scope call
final openCall = (field.scopeName != null && field.scopeName!.isNotEmpty)
? "CherryPick.openScope(scopeName: '${field.scopeName}')"
: "CherryPick.openRootScope()";
// Build the parameters
final hasNamedParam = field.namedValue != null && field.namedValue!.isNotEmpty;
final params = hasNamedParam ? "(named: '${field.namedValue}')" : '()';
// Create the full line
final fullLine = " instance.$fieldName = $openCall.$resolveMethod$params;";
// Check if line is too long (dart format width=80, accounting for indentation)
if (fullLine.length <= 80) {
return fullLine;
}
// Format long lines with proper line breaks
if (hasNamedParam && field.scopeName != null && field.scopeName!.isNotEmpty) {
// For scoped calls with named parameters, break after openScope
return " instance.$fieldName = CherryPick.openScope(\n"
" scopeName: '${field.scopeName}',\n"
" ).$resolveMethod(named: '${field.namedValue}');";
} else if (hasNamedParam) {
// For named parameters without scope, break after the method call
return " instance.$fieldName = $openCall.$resolveMethod(\n"
" named: '${field.namedValue}',\n"
" );";
} else if (field.scopeName != null && field.scopeName!.isNotEmpty) {
// For scoped calls without named params, break after openScope with proper parameter formatting
return " instance.$fieldName = CherryPick.openScope(\n"
" scopeName: '${field.scopeName}',\n"
" ).$resolveMethod();";
} else {
// For simple long calls, break after openRootScope
return " instance.$fieldName = $openCall\n"
" .$resolveMethod();";
}
}
}
/// Data structure representing all information required to generate
/// injection code for a field.
///
/// Структура данных, содержащая всю информацию,
/// необходимую для генерации кода внедрения для поля.
class _ParsedInjectField {
/// The name of the field / Имя поля.
final String fieldName;
/// Parsed type information / Информация о типе поля.
final ParsedType parsedType;
/// Optional scope annotation argument / Опциональное имя scope.
final String? scopeName;
/// Optional named annotation argument / Опциональное имя named.
final String? namedValue;
_ParsedInjectField({
required this.fieldName,
required this.parsedType,
this.scopeName,
this.namedValue,
});
@override
String toString() {
return '_ParsedInjectField(fieldName: $fieldName, parsedType: $parsedType, '
'scopeName: $scopeName, namedValue: $namedValue)';
}
}
/// Builder factory. Used by build_runner.
///
/// Фабрика билдера. Используется build_runner.
Builder injectBuilder(BuilderOptions options) =>
custom.injectCustomBuilder(options);

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@@ -0,0 +1,117 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:analyzer/dart/element/element.dart';
import 'package:build/build.dart';
import 'package:source_gen/source_gen.dart';
import 'package:cherrypick_annotations/cherrypick_annotations.dart' as ann;
import 'src/generated_class.dart';
import 'src/exceptions.dart';
import 'src/annotation_validator.dart';
import 'cherrypick_custom_builders.dart' as custom;
/// ---------------------------------------------------------------------------
/// ModuleGenerator for code generation of dependency-injected modules.
///
/// ENGLISH
/// This generator scans for Dart classes annotated with `@module()` and
/// automatically generates boilerplate code for dependency injection
/// (DI) based on the public methods in those classes. Each method can be
/// annotated to describe how an object should be provided to the DI container.
/// The generated code registers those methods as bindings. This automates the
/// creation of factories, singletons, and named instances, reducing repetitive
/// manual code.
///
/// RUSSIAN
/// Генератор зависимостей для DI-контейнера на основе аннотаций.
/// Данный генератор автоматически создаёт код для внедрения зависимостей (DI)
/// на основе аннотаций в вашем исходном коде. Когда вы отмечаете класс
/// аннотацией `@module()`, этот генератор обработает все его публичные методы
/// и автоматически сгенерирует класс с биндингами (регистрациями зависимостей)
/// для DI-контейнера. Это избавляет от написания однообразного шаблонного кода.
/// ---------------------------------------------------------------------------
class ModuleGenerator extends GeneratorForAnnotation<ann.module> {
/// -------------------------------------------------------------------------
/// ENGLISH
/// Generates the Dart source for a class marked with the `@module()` annotation.
/// - [element]: the original Dart class element.
/// - [annotation]: the annotation parameters (not usually used here).
/// - [buildStep]: the current build step info.
///
/// RUSSIAN
/// Генерирует исходный код для класса-модуля с аннотацией `@module()`.
/// [element] — исходный класс, помеченный аннотацией.
/// [annotation] — значения параметров аннотации.
/// [buildStep] — информация о текущем шаге генерации.
/// -------------------------------------------------------------------------
@override
String generateForAnnotatedElement(
Element element,
ConstantReader annotation,
BuildStep buildStep,
) {
// Only classes are supported for @module() annotation
// Обрабатываются только классы (другие элементы — ошибка)
if (element is! ClassElement) {
throw CherryPickGeneratorException(
'@module() can only be applied to classes',
element: element,
category: 'INVALID_TARGET',
suggestion: 'Apply @module() to a class instead of ${element.runtimeType}',
);
}
final classElement = element;
try {
// Validate class annotations
AnnotationValidator.validateClassAnnotations(classElement);
// Build a representation of the generated bindings based on class methods
final generatedClass = GeneratedClass.fromClassElement(classElement);
// Generate the resulting Dart code
return generatedClass.generate();
} catch (e) {
if (e is CherryPickGeneratorException) {
rethrow;
}
throw CodeGenerationException(
'Failed to generate module code for class "${classElement.name}"',
element: classElement,
suggestion: 'Check that all methods have valid @instance or @provide annotations',
context: {
'class_name': classElement.name,
'method_count': classElement.methods.length,
'error': e.toString(),
},
);
}
}
}
/// ---------------------------------------------------------------------------
/// ENGLISH
/// Entry point for build_runner. Returns a Builder used to generate code for
/// every file with a @module() annotation.
///
/// RUSSIAN
/// Точка входа для генератора build_runner.
/// Возвращает Builder, используемый build_runner для генерации кода для всех
/// файлов, где встречается @module().
/// ---------------------------------------------------------------------------
Builder moduleBuilder(BuilderOptions options) =>
custom.moduleCustomBuilder(options);

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:analyzer/dart/element/element.dart';
import 'exceptions.dart';
import 'metadata_utils.dart';
/// Validates annotation combinations and usage patterns
class AnnotationValidator {
/// Validates annotations on a method element
static void validateMethodAnnotations(MethodElement method) {
final annotations = _getAnnotationNames(method.metadata);
_validateMutuallyExclusiveAnnotations(method, annotations);
_validateAnnotationCombinations(method, annotations);
_validateAnnotationParameters(method);
}
/// Validates annotations on a field element
static void validateFieldAnnotations(FieldElement field) {
final annotations = _getAnnotationNames(field.metadata);
_validateInjectFieldAnnotations(field, annotations);
}
/// Validates annotations on a class element
static void validateClassAnnotations(ClassElement classElement) {
final annotations = _getAnnotationNames(classElement.metadata);
_validateModuleClassAnnotations(classElement, annotations);
_validateInjectableClassAnnotations(classElement, annotations);
}
static List<String> _getAnnotationNames(List<ElementAnnotation> metadata) {
return metadata
.map((m) => m.computeConstantValue()?.type?.getDisplayString())
.where((name) => name != null)
.cast<String>()
.toList();
}
static void _validateMutuallyExclusiveAnnotations(
MethodElement method,
List<String> annotations,
) {
// @instance and @provide are mutually exclusive
if (annotations.contains('instance') && annotations.contains('provide')) {
throw AnnotationValidationException(
'Method cannot have both @instance and @provide annotations',
element: method,
suggestion: 'Use either @instance for direct instances or @provide for factory methods',
context: {
'method_name': method.displayName,
'annotations': annotations,
},
);
}
}
static void _validateAnnotationCombinations(
MethodElement method,
List<String> annotations,
) {
// @params can only be used with @provide
if (annotations.contains('params') && !annotations.contains('provide')) {
throw AnnotationValidationException(
'@params annotation can only be used with @provide annotation',
element: method,
suggestion: 'Remove @params or add @provide annotation',
context: {
'method_name': method.displayName,
'annotations': annotations,
},
);
}
// Methods must have either @instance or @provide
if (!annotations.contains('instance') && !annotations.contains('provide')) {
throw AnnotationValidationException(
'Method must be marked with either @instance or @provide annotation',
element: method,
suggestion: 'Add @instance() for direct instances or @provide() for factory methods',
context: {
'method_name': method.displayName,
'available_annotations': annotations,
},
);
}
// @singleton validation
if (annotations.contains('singleton')) {
_validateSingletonUsage(method, annotations);
}
}
static void _validateSingletonUsage(
MethodElement method,
List<String> annotations,
) {
// Singleton with params might not make sense in some contexts
if (annotations.contains('params')) {
// This is a warning, not an error - could be useful for parameterized singletons
// We could add a warning system later
}
// Check if return type is suitable for singleton
final returnType = method.returnType.getDisplayString();
if (returnType == 'void') {
throw AnnotationValidationException(
'Singleton methods cannot return void',
element: method,
suggestion: 'Remove @singleton annotation or change return type',
context: {
'method_name': method.displayName,
'return_type': returnType,
},
);
}
}
static void _validateAnnotationParameters(MethodElement method) {
// Validate @named annotation parameters
final namedValue = MetadataUtils.getNamedValue(method.metadata);
if (namedValue != null) {
if (namedValue.isEmpty) {
throw AnnotationValidationException(
'@named annotation cannot have empty value',
element: method,
suggestion: 'Provide a non-empty string value for @named annotation',
context: {
'method_name': method.displayName,
'named_value': namedValue,
},
);
}
// Check for valid naming conventions
if (!RegExp(r'^[a-zA-Z_][a-zA-Z0-9_]*$').hasMatch(namedValue)) {
throw AnnotationValidationException(
'@named value should follow valid identifier naming conventions',
element: method,
suggestion: 'Use alphanumeric characters and underscores only, starting with a letter or underscore',
context: {
'method_name': method.displayName,
'named_value': namedValue,
},
);
}
}
// Validate method parameters for @params usage
for (final param in method.parameters) {
final paramAnnotations = _getAnnotationNames(param.metadata);
if (paramAnnotations.contains('params')) {
_validateParamsParameter(param, method);
}
}
}
static void _validateParamsParameter(ParameterElement param, MethodElement method) {
// @params parameter should typically be dynamic or Map<String, dynamic>
final paramType = param.type.getDisplayString();
if (paramType != 'dynamic' &&
paramType != 'Map<String, dynamic>' &&
paramType != 'Map<String, dynamic>?') {
// This is more of a warning - other types might be valid
// We could add a warning system for this
}
// Check if parameter is required when using @params
try {
final hasDefault = (param as dynamic).defaultValue != null;
if (param.isRequired && !hasDefault) {
// This might be intentional, so we don't throw an error
// but we could warn about it
}
} catch (e) {
// Ignore if defaultValue is not available in this analyzer version
}
}
static void _validateInjectFieldAnnotations(
FieldElement field,
List<String> annotations,
) {
if (!annotations.contains('inject')) {
return; // Not an inject field, nothing to validate
}
// Check if field type is suitable for injection
final fieldType = field.type.getDisplayString();
if (fieldType == 'void') {
throw AnnotationValidationException(
'Cannot inject void type',
element: field,
suggestion: 'Use a concrete type instead of void',
context: {
'field_name': field.displayName,
'field_type': fieldType,
},
);
}
// Validate scope annotation if present
for (final meta in field.metadata) {
final obj = meta.computeConstantValue();
final type = obj?.type?.getDisplayString();
if (type == 'scope') {
// Empty scope name is treated as no scope (uses root scope)
// This is allowed for backward compatibility and convenience
}
}
}
static void _validateModuleClassAnnotations(
ClassElement classElement,
List<String> annotations,
) {
if (!annotations.contains('module')) {
return; // Not a module class
}
// Check if class has public methods
final publicMethods = classElement.methods.where((m) => m.isPublic).toList();
if (publicMethods.isEmpty) {
throw AnnotationValidationException(
'Module class must have at least one public method',
element: classElement,
suggestion: 'Add public methods with @instance or @provide annotations',
context: {
'class_name': classElement.displayName,
'method_count': publicMethods.length,
},
);
}
// Validate that public methods have appropriate annotations
for (final method in publicMethods) {
final methodAnnotations = _getAnnotationNames(method.metadata);
if (!methodAnnotations.contains('instance') && !methodAnnotations.contains('provide')) {
throw AnnotationValidationException(
'Public methods in module class must have @instance or @provide annotation',
element: method,
suggestion: 'Add @instance() or @provide() annotation to the method',
context: {
'class_name': classElement.displayName,
'method_name': method.displayName,
},
);
}
}
}
static void _validateInjectableClassAnnotations(
ClassElement classElement,
List<String> annotations,
) {
if (!annotations.contains('injectable')) {
return; // Not an injectable class
}
// Check if class has injectable fields
final injectFields = classElement.fields.where((f) {
final fieldAnnotations = _getAnnotationNames(f.metadata);
return fieldAnnotations.contains('inject');
}).toList();
// Allow injectable classes without @inject fields to generate empty mixins
// This can be useful for classes that will have @inject fields added later
// or for testing purposes
if (injectFields.isEmpty) {
// Just log a warning but don't throw an exception
// print('Warning: Injectable class ${classElement.displayName} has no @inject fields');
}
// Validate that injectable fields are properly declared
for (final field in injectFields) {
// Injectable fields should be late final for immutability after injection
if (!field.isFinal) {
throw AnnotationValidationException(
'Injectable fields should be final for immutability',
element: field,
suggestion: 'Add final keyword to injectable field (preferably late final)',
context: {
'class_name': classElement.displayName,
'field_name': field.displayName,
},
);
}
// Check if field is late (recommended pattern)
try {
final isLate = (field as dynamic).isLate ?? false;
if (!isLate) {
// This is a warning, not an error - late final is recommended but not required
// We could add a warning system later
}
} catch (e) {
// Ignore if isLate is not available in this analyzer version
}
}
}
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
/// ----------------------------------------------------------------------------
/// BindParameterSpec - describes a single method parameter and how to resolve it.
///
/// ENGLISH
/// Describes a single parameter for a provider/binding method in the DI system.
/// Stores the parameter type, its optional `@named` key for named resolution,
/// and whether it is a runtime "params" argument. Used to generate code that
/// resolves dependencies from the DI scope:
/// - If the parameter is a dependency type (e.g. SomeDep), emits:
/// currentScope.resolve<SomeDep>()
/// - If the parameter is named, emits:
/// currentScope.resolve<SomeDep>(named: 'yourName')
/// - If it's a runtime parameter (e.g. via @params()), emits:
/// args
///
/// RUSSIAN
/// Описывает один параметр метода в DI, и его способ разрешения из контейнера.
/// Сохраняет имя типа, дополнительное имя (если параметр аннотирован через @named),
/// и признак runtime-параметра (@params).
/// Для обычной зависимости типа (например, SomeDep) генерирует строку вида:
/// currentScope.resolve<SomeDep>()
/// Для зависимости с именем:
/// currentScope.resolve<SomeDep>(named: 'имя')
/// Для runtime-параметра:
/// args
/// ----------------------------------------------------------------------------
class BindParameterSpec {
/// Type name of the parameter (e.g. SomeService)
/// Имя типа параметра (например, SomeService)
final String typeName;
/// Optional name for named resolution (from @named)
/// Необязательное имя для разрешения по имени (если аннотировано через @named)
final String? named;
/// True if this parameter uses @params and should be provided from runtime args
/// Признак, что параметр — runtime (через @params)
final bool isParams;
BindParameterSpec(this.typeName, this.named, {this.isParams = false});
/// --------------------------------------------------------------------------
/// generateArg
///
/// ENGLISH
/// Generates Dart code for resolving the dependency from the DI scope,
/// considering type, named, and param-argument.
///
/// RUSSIAN
/// Генерирует строку для получения зависимости из DI scope (с учётом имени
/// и типа параметра или runtime-режима @params).
/// --------------------------------------------------------------------------
String generateArg([String paramsVar = 'args']) {
if (isParams) {
return paramsVar;
}
if (named != null) {
return "currentScope.resolve<$typeName>(named: '$named')";
}
return "currentScope.resolve<$typeName>()";
}
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:analyzer/dart/element/element.dart';
import 'bind_parameters_spec.dart';
import 'metadata_utils.dart';
import 'exceptions.dart';
import 'type_parser.dart';
import 'annotation_validator.dart';
enum BindingType {
instance,
provide;
}
/// ---------------------------------------------------------------------------
/// BindSpec -- describes a binding specification generated for a dependency.
///
/// ENGLISH
/// Represents all the data necessary to generate a DI binding for a single
/// method in a module class. Each BindSpec corresponds to one public method
/// and contains information about its type, provider method, lifecycle (singleton),
/// parameters (with their annotations), binding strategy (instance/provide),
/// asynchronous mode, and named keys. It is responsible for generating the
/// correct Dart code to register this binding with the DI container, in both
/// sync and async cases, with and without named or runtime arguments.
///
/// RUSSIAN
/// Описывает параметры для создания одного биндинга зависимости (binding spec).
/// Каждый биндинг соответствует одному публичному методу класса-модуля и
/// содержит всю информацию для генерации кода регистрации этого биндинга в
/// DI-контейнере: тип возвращаемой зависимости, имя метода, параметры, аннотации
/// (@singleton, @named, @instance, @provide), асинхронность, признак runtime
/// аргументов и др. Генерирует правильный Dart-код для регистрации биндера.
/// ---------------------------------------------------------------------------
class BindSpec {
/// The type this binding provides (e.g. SomeService)
/// Тип, который предоставляет биндинг (например, SomeService)
final String returnType;
/// Method name that implements the binding
/// Имя метода, который реализует биндинг
final String methodName;
/// Optional name for named dependency (from @named)
/// Необязательное имя, для именованной зависимости (используется с @named)
final String? named;
/// Whether the dependency is a singleton (@singleton annotation)
/// Является ли зависимость синглтоном (имеется ли аннотация @singleton)
final bool isSingleton;
/// List of method parameters to inject dependencies with
/// Список параметров, которые требуются методу для внедрения зависимостей
final List<BindParameterSpec> parameters;
/// Binding type: 'instance' or 'provide' (@instance or @provide)
final BindingType bindingType; // 'instance' | 'provide'
/// True if the method is asynchronous and uses instance binding (Future)
final bool isAsyncInstance;
/// True if the method is asynchronous and uses provide binding (Future)
final bool isAsyncProvide;
/// True if the binding method accepts runtime "params" argument (@params)
final bool hasParams;
BindSpec({
required this.returnType,
required this.methodName,
required this.isSingleton,
required this.parameters,
this.named,
required this.bindingType,
required this.isAsyncInstance,
required this.isAsyncProvide,
required this.hasParams,
});
/// -------------------------------------------------------------------------
/// generateBind
///
/// ENGLISH
/// Generates a line of Dart code registering the binding with the DI framework.
/// Produces something like:
/// bind<Type>().toProvide(() => method(args)).withName('name').singleton();
/// Indent parameter allows formatted multiline output.
///
/// RUSSIAN
/// Формирует dart-код для биндинга, например:
/// bind<Type>().toProvide(() => method(args)).withName('name').singleton();
/// Параметр [indent] задаёт отступ для красивого форматирования кода.
/// -------------------------------------------------------------------------
String generateBind(int indent) {
final indentStr = ' ' * indent;
final provide = _generateProvideClause(indent);
final postfix = _generatePostfix();
// Create the full single-line version first
final singleLine = '${indentStr}bind<$returnType>()$provide$postfix;';
// Check if we need multiline formatting
final needsMultiline = singleLine.length > 80 || provide.contains('\n');
if (!needsMultiline) {
return singleLine;
}
// For multiline formatting, check if we need to break after bind<Type>()
if (provide.contains('\n')) {
// Provider clause is already multiline
if (postfix.isNotEmpty) {
// If there's a postfix, break after bind<Type>()
final multilinePostfix = _generateMultilinePostfix(indent);
return '${indentStr}bind<$returnType>()'
'\n${' ' * (indent + 4)}$provide'
'$multilinePostfix;';
} else {
// No postfix, keep bind<Type>() with provide start
return '${indentStr}bind<$returnType>()$provide;';
}
} else {
// Simple multiline: break after bind<Type>()
if (postfix.isNotEmpty) {
final multilinePostfix = _generateMultilinePostfix(indent);
return '${indentStr}bind<$returnType>()'
'\n${' ' * (indent + 4)}$provide'
'$multilinePostfix;';
} else {
return '${indentStr}bind<$returnType>()'
'\n${' ' * (indent + 4)}$provide;';
}
}
}
// Internal method: decides how the provide clause should be generated by param kind.
String _generateProvideClause(int indent) {
if (hasParams) return _generateWithParamsProvideClause(indent);
return _generatePlainProvideClause(indent);
}
/// EN / RU: Supports runtime parameters (@params).
String _generateWithParamsProvideClause(int indent) {
// Safe variable name for parameters.
const paramVar = 'args';
final fnArgs = parameters.map((p) => p.generateArg(paramVar)).join(', ');
// Use multiline format only if args are long or contain newlines
final multiLine = fnArgs.length > 60 || fnArgs.contains('\n');
switch (bindingType) {
case BindingType.instance:
throw StateError(
'Internal error: _generateWithParamsProvideClause called for @instance binding with @params.');
//return isAsyncInstance
// ? '.toInstanceAsync(($fnArgs) => $methodName($fnArgs))'
// : '.toInstance(($fnArgs) => $methodName($fnArgs))';
case BindingType.provide:
if (isAsyncProvide) {
return multiLine
? '.toProvideAsyncWithParams(\n${' ' * (indent + 2)}($paramVar) => $methodName($fnArgs))'
: '.toProvideAsyncWithParams(($paramVar) => $methodName($fnArgs))';
} else {
return multiLine
? '.toProvideWithParams(\n${' ' * (indent + 2)}($paramVar) => $methodName($fnArgs))'
: '.toProvideWithParams(($paramVar) => $methodName($fnArgs))';
}
}
}
/// EN / RU: Supports only injected dependencies, not runtime (@params).
String _generatePlainProvideClause(int indent) {
final argsStr = parameters.map((p) => p.generateArg()).join(', ');
// Check if we need multiline formatting based on total line length
final singleLineCall = '$methodName($argsStr)';
final needsMultiline = singleLineCall.length >= 45 || argsStr.contains('\n');
switch (bindingType) {
case BindingType.instance:
return isAsyncInstance
? '.toInstanceAsync($methodName($argsStr))'
: '.toInstance($methodName($argsStr))';
case BindingType.provide:
if (isAsyncProvide) {
if (needsMultiline) {
final lambdaIndent = (isSingleton || named != null) ? indent + 6 : indent + 2;
final closingIndent = (isSingleton || named != null) ? indent + 4 : indent;
return '.toProvideAsync(\n${' ' * lambdaIndent}() => $methodName($argsStr),\n${' ' * closingIndent})';
} else {
return '.toProvideAsync(() => $methodName($argsStr))';
}
} else {
if (needsMultiline) {
final lambdaIndent = (isSingleton || named != null) ? indent + 6 : indent + 2;
final closingIndent = (isSingleton || named != null) ? indent + 4 : indent;
return '.toProvide(\n${' ' * lambdaIndent}() => $methodName($argsStr),\n${' ' * closingIndent})';
} else {
return '.toProvide(() => $methodName($argsStr))';
}
}
}
}
/// EN / RU: Adds .withName and .singleton if needed.
String _generatePostfix() {
final namePart = named != null ? ".withName('$named')" : '';
final singletonPart = isSingleton ? '.singleton()' : '';
return '$namePart$singletonPart';
}
/// EN / RU: Generates multiline postfix with proper indentation.
String _generateMultilinePostfix(int indent) {
final parts = <String>[];
if (named != null) {
parts.add(".withName('$named')");
}
if (isSingleton) {
parts.add('.singleton()');
}
if (parts.isEmpty) return '';
return parts.map((part) => '\n${' ' * (indent + 4)}$part').join('');
}
/// -------------------------------------------------------------------------
/// fromMethod
///
/// ENGLISH
/// Creates a BindSpec from a module class method by analyzing its return type,
/// annotations, list of parameters (with their own annotations), and async-ness.
/// Throws if a method does not have the required @instance() or @provide().
///
/// RUSSIAN
/// Создаёт спецификацию биндинга (BindSpec) из метода класса-модуля, анализируя
/// возвращаемый тип, аннотации, параметры (и их аннотации), а также факт
/// асинхронности. Если нет @instance или @provide — кидает ошибку.
/// -------------------------------------------------------------------------
static BindSpec fromMethod(MethodElement method) {
try {
// Validate method annotations
AnnotationValidator.validateMethodAnnotations(method);
// Parse return type using improved type parser
final parsedReturnType = TypeParser.parseType(method.returnType, method);
final methodName = method.displayName;
// Check for @singleton annotation.
final isSingleton = MetadataUtils.anyMeta(method.metadata, 'singleton');
// Get @named value if present.
final named = MetadataUtils.getNamedValue(method.metadata);
// Parse each method parameter.
final params = <BindParameterSpec>[];
bool hasParams = false;
for (final p in method.parameters) {
final typeStr = p.type.getDisplayString();
final paramNamed = MetadataUtils.getNamedValue(p.metadata);
final isParams = MetadataUtils.anyMeta(p.metadata, 'params');
if (isParams) hasParams = true;
params.add(BindParameterSpec(typeStr, paramNamed, isParams: isParams));
}
// Determine bindingType: @instance or @provide.
final hasInstance = MetadataUtils.anyMeta(method.metadata, 'instance');
final hasProvide = MetadataUtils.anyMeta(method.metadata, 'provide');
if (!hasInstance && !hasProvide) {
throw AnnotationValidationException(
'Method must be marked with either @instance() or @provide() annotation',
element: method,
suggestion: 'Add @instance() for direct instances or @provide() for factory methods',
context: {
'method_name': methodName,
'return_type': parsedReturnType.displayString,
},
);
}
final bindingType = hasInstance ? BindingType.instance : BindingType.provide;
// PROHIBIT @params with @instance bindings!
if (bindingType == BindingType.instance && hasParams) {
throw AnnotationValidationException(
'@params() (runtime arguments) cannot be used together with @instance()',
element: method,
suggestion: 'Use @provide() instead if you want runtime arguments',
context: {
'method_name': methodName,
'binding_type': 'instance',
'has_params': hasParams,
},
);
}
// Set async flags based on parsed type
final isAsyncInstance = bindingType == BindingType.instance && parsedReturnType.isFuture;
final isAsyncProvide = bindingType == BindingType.provide && parsedReturnType.isFuture;
return BindSpec(
returnType: parsedReturnType.codeGenType,
methodName: methodName,
isSingleton: isSingleton,
named: named,
parameters: params,
bindingType: bindingType,
isAsyncInstance: isAsyncInstance,
isAsyncProvide: isAsyncProvide,
hasParams: hasParams,
);
} catch (e) {
if (e is CherryPickGeneratorException) {
rethrow;
}
throw CodeGenerationException(
'Failed to create BindSpec from method "${method.displayName}"',
element: method,
suggestion: 'Check that the method has valid annotations and return type',
context: {
'method_name': method.displayName,
'return_type': method.returnType.getDisplayString(),
'error': e.toString(),
},
);
}
}
}

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//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:analyzer/dart/element/element.dart';
import 'package:source_gen/source_gen.dart';
/// Enhanced exception class for CherryPick generator with detailed context information
class CherryPickGeneratorException extends InvalidGenerationSourceError {
final String category;
final String? suggestion;
final Map<String, dynamic>? context;
CherryPickGeneratorException(
String message, {
required Element element,
required this.category,
this.suggestion,
this.context,
}) : super(
_formatMessage(message, category, suggestion, context, element),
element: element,
);
static String _formatMessage(
String message,
String category,
String? suggestion,
Map<String, dynamic>? context,
Element element,
) {
final buffer = StringBuffer();
// Header with category
buffer.writeln('[$category] $message');
// Element context
buffer.writeln('');
buffer.writeln('Context:');
buffer.writeln(' Element: ${element.displayName}');
buffer.writeln(' Type: ${element.runtimeType}');
buffer.writeln(' Location: ${element.source?.fullName ?? 'unknown'}');
// Note: enclosingElement may not be available in all analyzer versions
try {
final enclosing = (element as dynamic).enclosingElement;
if (enclosing != null) {
buffer.writeln(' Enclosing: ${enclosing.displayName}');
}
} catch (e) {
// Ignore if enclosingElement is not available
}
// Additional context
if (context != null && context.isNotEmpty) {
buffer.writeln('');
buffer.writeln('Additional Context:');
context.forEach((key, value) {
buffer.writeln(' $key: $value');
});
}
// Suggestion
if (suggestion != null) {
buffer.writeln('');
buffer.writeln('💡 Suggestion: $suggestion');
}
return buffer.toString();
}
}
/// Specific exception types for different error categories
class AnnotationValidationException extends CherryPickGeneratorException {
AnnotationValidationException(
super.message, {
required super.element,
super.suggestion,
super.context,
}) : super(category: 'ANNOTATION_VALIDATION');
}
class TypeParsingException extends CherryPickGeneratorException {
TypeParsingException(
super.message, {
required super.element,
super.suggestion,
super.context,
}) : super(category: 'TYPE_PARSING');
}
class CodeGenerationException extends CherryPickGeneratorException {
CodeGenerationException(
super.message, {
required super.element,
super.suggestion,
super.context,
}) : super(category: 'CODE_GENERATION');
}
class DependencyResolutionException extends CherryPickGeneratorException {
DependencyResolutionException(
super.message, {
required super.element,
super.suggestion,
super.context,
}) : super(category: 'DEPENDENCY_RESOLUTION');
}

View File

@@ -0,0 +1,129 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:analyzer/dart/element/element.dart';
import 'bind_spec.dart';
/// ---------------------------------------------------------------------------
/// GeneratedClass -- represents the result of processing a single module class.
///
/// ENGLISH
/// Encapsulates all the information produced from analyzing a DI module class:
/// - The original class name,
/// - Its generated class name (e.g., `$SomeModule`),
/// - The collection of bindings (BindSpec) for all implemented provider methods.
///
/// Also provides code generation functionality, allowing to generate the source
/// code for the derived DI module class, including all binding registrations.
///
/// RUSSIAN
/// Описывает результат обработки одного класса-модуля DI:
/// - Имя оригинального класса,
/// - Имя генерируемого класса (например, `$SomeModule`),
/// - Список всех бидингов (BindSpec) — по публичным методам модуля.
///
/// Также содержит функцию генерации исходного кода для этого класса и
/// регистрации всех зависимостей через bind(...).
/// ---------------------------------------------------------------------------
class GeneratedClass {
/// The name of the original module class.
/// Имя исходного класса-модуля
final String className;
/// The name of the generated class (e.g., $SomeModule).
/// Имя генерируемого класса (например, $SomeModule)
final String generatedClassName;
/// List of all discovered bindings for the class.
/// Список всех обнаруженных биндингов
final List<BindSpec> binds;
/// Source file name for the part directive
/// Имя исходного файла для part директивы
final String sourceFile;
GeneratedClass(
this.className,
this.generatedClassName,
this.binds,
this.sourceFile,
);
/// -------------------------------------------------------------------------
/// fromClassElement
///
/// ENGLISH
/// Static factory: creates a GeneratedClass from a Dart ClassElement (AST representation).
/// Discovers all non-abstract methods, builds BindSpec for each, and computes the
/// generated class name by prefixing `$`.
///
/// RUSSIAN
/// Строит объект класса по элементу AST (ClassElement): имя класса,
/// сгенерированное имя, список BindSpec по всем не абстрактным методам.
/// Имя ген-класса строится с префиксом `$`.
/// -------------------------------------------------------------------------
static GeneratedClass fromClassElement(ClassElement element) {
final className = element.displayName;
// Generated class name with '$' prefix (standard for generated Dart code).
final generatedClassName = r'$' + className;
// Get source file name
final sourceFile = element.source.shortName;
// Collect bindings for all non-abstract methods.
final binds = element.methods
.where((m) => !m.isAbstract)
.map(BindSpec.fromMethod)
.toList();
return GeneratedClass(className, generatedClassName, binds, sourceFile);
}
/// -------------------------------------------------------------------------
/// generate
///
/// ENGLISH
/// Generates Dart source code for the DI module class. The generated class
/// inherits from the original, overrides the 'builder' method, and registers
/// all bindings in the DI scope.
///
/// RUSSIAN
/// Генерирует исходный Dart-код для класса-модуля DI.
/// Новая версия класса наследует оригинальный, переопределяет builder(Scope),
/// и регистрирует все зависимости через методы bind<Type>()...
/// -------------------------------------------------------------------------
String generate() {
final buffer = StringBuffer()
..writeln('// dart format width=80')
..writeln('// GENERATED CODE - DO NOT MODIFY BY HAND')
..writeln()
..writeln('// **************************************************************************')
..writeln('// ModuleGenerator')
..writeln('// **************************************************************************')
..writeln()
..writeln('final class $generatedClassName extends $className {')
..writeln(' @override')
..writeln(' void builder(Scope currentScope) {');
// For each binding, generate bind<Type>() code string.
// Для каждого биндинга — генерируем строку bind<Type>()...
for (final bind in binds) {
buffer.writeln(bind.generateBind(4));
}
buffer
..writeln(' }')
..writeln('}');
return buffer.toString();
}
}

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@@ -0,0 +1,76 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:analyzer/dart/element/element.dart';
/// ---------------------------------------------------------------------------
/// MetadataUtils -- utilities for analyzing method and parameter annotations.
///
/// ENGLISH
/// Provides static utility methods to analyze Dart annotations on methods or
/// parameters. For instance, helps to find if an element is annotated with
/// `@named()`, `@singleton()`, or other meta-annotations used in this DI framework.
///
/// RUSSIAN
/// Утилиты для разбора аннотаций методов и параметров.
/// Позволяют находить наличие аннотаций, например, @named() и @singleton(),
/// у методов и параметров. Используется для анализа исходного кода при генерации.
/// ---------------------------------------------------------------------------
class MetadataUtils {
/// -------------------------------------------------------------------------
/// anyMeta
///
/// ENGLISH
/// Checks if any annotation in the list has a type name that contains
/// [typeName] (case insensitive).
///
/// RUSSIAN
/// Проверяет: есть ли среди аннотаций метка, имя которой содержит [typeName]
/// (регистр не учитывается).
/// -------------------------------------------------------------------------
static bool anyMeta(List<ElementAnnotation> meta, String typeName) {
return meta.any((m) =>
m
.computeConstantValue()
?.type
?.getDisplayString()
.toLowerCase()
.contains(typeName.toLowerCase()) ??
false);
}
/// -------------------------------------------------------------------------
/// getNamedValue
///
/// ENGLISH
/// Retrieves the value from a `@named('value')` annotation if present.
/// Returns the string value or null if not found.
///
/// RUSSIAN
/// Находит значение из аннотации @named('значение').
/// Возвращает строку значения, если аннотация присутствует; иначе null.
/// -------------------------------------------------------------------------
static String? getNamedValue(List<ElementAnnotation> meta) {
for (final m in meta) {
final cv = m.computeConstantValue();
final typeStr = cv?.type?.getDisplayString().toLowerCase();
if (typeStr?.contains('named') ?? false) {
return cv?.getField('value')?.toStringValue();
}
}
return null;
}
}

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@@ -0,0 +1,216 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:analyzer/dart/element/element.dart';
import 'package:analyzer/dart/element/nullability_suffix.dart';
import 'package:analyzer/dart/element/type.dart';
import 'exceptions.dart';
/// Enhanced type parser that uses AST analysis instead of regular expressions
class TypeParser {
/// Parses a DartType and extracts detailed type information
static ParsedType parseType(DartType dartType, Element context) {
try {
return _parseTypeInternal(dartType, context);
} catch (e) {
throw TypeParsingException(
'Failed to parse type: ${dartType.getDisplayString()}',
element: context,
suggestion: 'Ensure the type is properly imported and accessible',
context: {
'original_type': dartType.getDisplayString(),
'error': e.toString(),
},
);
}
}
static ParsedType _parseTypeInternal(DartType dartType, Element context) {
final displayString = dartType.getDisplayString();
final isNullable = dartType.nullabilitySuffix == NullabilitySuffix.question;
// Check if it's a Future type
if (dartType.isDartAsyncFuture) {
return _parseFutureType(dartType, context, isNullable);
}
// Check if it's a generic type (List, Map, etc.)
if (dartType is ParameterizedType && dartType.typeArguments.isNotEmpty) {
return _parseGenericType(dartType, context, isNullable);
}
// Simple type
return ParsedType(
displayString: displayString,
coreType: displayString.replaceAll('?', ''),
isNullable: isNullable,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
}
static ParsedType _parseFutureType(DartType dartType, Element context, bool isNullable) {
if (dartType is! ParameterizedType || dartType.typeArguments.isEmpty) {
throw TypeParsingException(
'Future type must have a type argument',
element: context,
suggestion: 'Use Future<T> instead of raw Future',
context: {'type': dartType.getDisplayString()},
);
}
final innerType = dartType.typeArguments.first;
final innerParsed = _parseTypeInternal(innerType, context);
return ParsedType(
displayString: dartType.getDisplayString(),
coreType: innerParsed.coreType,
isNullable: isNullable || innerParsed.isNullable,
isFuture: true,
isGeneric: innerParsed.isGeneric,
typeArguments: innerParsed.typeArguments,
innerType: innerParsed,
);
}
static ParsedType _parseGenericType(ParameterizedType dartType, Element context, bool isNullable) {
final typeArguments = dartType.typeArguments
.map((arg) => _parseTypeInternal(arg, context))
.toList();
final baseType = dartType.element?.name ?? dartType.getDisplayString();
return ParsedType(
displayString: dartType.getDisplayString(),
coreType: baseType,
isNullable: isNullable,
isFuture: false,
isGeneric: true,
typeArguments: typeArguments,
);
}
/// Validates that a type is suitable for dependency injection
static void validateInjectableType(ParsedType parsedType, Element context) {
// Check for void type
if (parsedType.coreType == 'void') {
throw TypeParsingException(
'Cannot inject void type',
element: context,
suggestion: 'Use a concrete type instead of void',
);
}
// Check for dynamic type (warning)
if (parsedType.coreType == 'dynamic') {
// This could be a warning instead of an error
throw TypeParsingException(
'Using dynamic type reduces type safety',
element: context,
suggestion: 'Consider using a specific type instead of dynamic',
);
}
// Validate nested types for complex generics
for (final typeArg in parsedType.typeArguments) {
validateInjectableType(typeArg, context);
}
}
}
/// Represents a parsed type with detailed information
class ParsedType {
/// The full display string of the type (e.g., "Future<List<String>?>")
final String displayString;
/// The core type name without nullability and Future wrapper (e.g., "List<String>")
final String coreType;
/// Whether the type is nullable
final bool isNullable;
/// Whether the type is wrapped in Future
final bool isFuture;
/// Whether the type has generic parameters
final bool isGeneric;
/// Parsed type arguments for generic types
final List<ParsedType> typeArguments;
/// For Future types, the inner type
final ParsedType? innerType;
const ParsedType({
required this.displayString,
required this.coreType,
required this.isNullable,
required this.isFuture,
required this.isGeneric,
required this.typeArguments,
this.innerType,
});
/// Returns the type string suitable for code generation
String get codeGenType {
if (isFuture && innerType != null) {
return innerType!.codeGenType;
}
// For generic types, include type arguments
if (isGeneric && typeArguments.isNotEmpty) {
final args = typeArguments.map((arg) => arg.codeGenType).join(', ');
return '$coreType<$args>';
}
return coreType;
}
/// Returns whether this type should use tryResolve instead of resolve
bool get shouldUseTryResolve => isNullable;
/// Returns the appropriate resolve method name
String get resolveMethodName {
if (isFuture) {
return shouldUseTryResolve ? 'tryResolveAsync' : 'resolveAsync';
}
return shouldUseTryResolve ? 'tryResolve' : 'resolve';
}
@override
String toString() {
return 'ParsedType(displayString: $displayString, coreType: $coreType, '
'isNullable: $isNullable, isFuture: $isFuture, isGeneric: $isGeneric)';
}
@override
bool operator ==(Object other) {
if (identical(this, other)) return true;
return other is ParsedType &&
other.displayString == displayString &&
other.coreType == coreType &&
other.isNullable == isNullable &&
other.isFuture == isFuture &&
other.isGeneric == isGeneric;
}
@override
int get hashCode {
return displayString.hashCode ^
coreType.hashCode ^
isNullable.hashCode ^
isFuture.hashCode ^
isGeneric.hashCode;
}
}

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name: cherrypick_generator
description: |
Source code generator for the cherrypick dependency injection system. Processes annotations to generate binding and module code for Dart & Flutter projects.
version: 1.1.0-dev.6
documentation: https://github.com/pese-git/cherrypick/wiki
repository: https://github.com/pese-git/cherrypick/cherrypick_generator
issue_tracker: https://github.com/pese-git/cherrypick/issues
environment:
sdk: ">=3.5.2 <4.0.0"
# Add regular dependencies here.
dependencies:
cherrypick_annotations: ^1.1.0-dev.1
analyzer: ^7.0.0
dart_style: ^3.0.0
build: ^2.4.1
source_gen: ^2.0.0
collection: ^1.18.0
path: ^1.9.1
dev_dependencies:
lints: ^4.0.0
mockito: ^5.4.4
test: ^1.25.8
build_test: ^2.1.7
build_runner: ^2.4.13

View File

@@ -0,0 +1,415 @@
import 'package:test/test.dart';
import 'package:analyzer/dart/element/element.dart';
import 'package:analyzer/dart/constant/value.dart';
import 'package:analyzer/dart/element/type.dart';
import 'package:analyzer/source/source.dart';
import 'package:cherrypick_generator/src/annotation_validator.dart';
import 'package:cherrypick_generator/src/exceptions.dart';
void main() {
group('AnnotationValidator', () {
group('validateMethodAnnotations', () {
test('should pass for valid @instance method', () {
final method = _createMockMethod(
name: 'createService',
annotations: ['instance'],
);
expect(
() => AnnotationValidator.validateMethodAnnotations(method),
returnsNormally,
);
});
test('should pass for valid @provide method', () {
final method = _createMockMethod(
name: 'createService',
annotations: ['provide'],
);
expect(
() => AnnotationValidator.validateMethodAnnotations(method),
returnsNormally,
);
});
test('should throw for method with both @instance and @provide', () {
final method = _createMockMethod(
name: 'createService',
annotations: ['instance', 'provide'],
);
expect(
() => AnnotationValidator.validateMethodAnnotations(method),
throwsA(isA<AnnotationValidationException>()),
);
});
test('should throw for method with @params but no @provide', () {
final method = _createMockMethod(
name: 'createService',
annotations: ['instance', 'params'],
);
expect(
() => AnnotationValidator.validateMethodAnnotations(method),
throwsA(isA<AnnotationValidationException>()),
);
});
test('should throw for method with neither @instance nor @provide', () {
final method = _createMockMethod(
name: 'createService',
annotations: ['singleton'],
);
expect(
() => AnnotationValidator.validateMethodAnnotations(method),
throwsA(isA<AnnotationValidationException>()),
);
});
test('should pass for @provide method with @params', () {
final method = _createMockMethod(
name: 'createService',
annotations: ['provide', 'params'],
);
expect(
() => AnnotationValidator.validateMethodAnnotations(method),
returnsNormally,
);
});
test('should pass for @singleton method', () {
final method = _createMockMethod(
name: 'createService',
annotations: ['provide', 'singleton'],
);
expect(
() => AnnotationValidator.validateMethodAnnotations(method),
returnsNormally,
);
});
});
group('validateFieldAnnotations', () {
test('should pass for valid @inject field', () {
final field = _createMockField(
name: 'service',
annotations: ['inject'],
type: 'String',
);
expect(
() => AnnotationValidator.validateFieldAnnotations(field),
returnsNormally,
);
});
test('should throw for @inject field with void type', () {
final field = _createMockField(
name: 'service',
annotations: ['inject'],
type: 'void',
);
expect(
() => AnnotationValidator.validateFieldAnnotations(field),
throwsA(isA<AnnotationValidationException>()),
);
});
test('should pass for non-inject field', () {
final field = _createMockField(
name: 'service',
annotations: [],
type: 'String',
);
expect(
() => AnnotationValidator.validateFieldAnnotations(field),
returnsNormally,
);
});
});
group('validateClassAnnotations', () {
test('should pass for valid @module class', () {
final classElement = _createMockClass(
name: 'AppModule',
annotations: ['module'],
methods: [
_createMockMethod(name: 'createService', annotations: ['provide']),
],
);
expect(
() => AnnotationValidator.validateClassAnnotations(classElement),
returnsNormally,
);
});
test('should throw for @module class with no public methods', () {
final classElement = _createMockClass(
name: 'AppModule',
annotations: ['module'],
methods: [],
);
expect(
() => AnnotationValidator.validateClassAnnotations(classElement),
throwsA(isA<AnnotationValidationException>()),
);
});
test('should throw for @module class with unannotated public methods', () {
final classElement = _createMockClass(
name: 'AppModule',
annotations: ['module'],
methods: [
_createMockMethod(name: 'createService', annotations: []),
],
);
expect(
() => AnnotationValidator.validateClassAnnotations(classElement),
throwsA(isA<AnnotationValidationException>()),
);
});
test('should pass for valid @injectable class', () {
final classElement = _createMockClass(
name: 'AppService',
annotations: ['injectable'],
fields: [
_createMockField(name: 'dependency', annotations: ['inject'], type: 'String', isFinal: true),
],
);
expect(
() => AnnotationValidator.validateClassAnnotations(classElement),
returnsNormally,
);
});
test('should pass for @injectable class with no inject fields', () {
final classElement = _createMockClass(
name: 'AppService',
annotations: ['injectable'],
fields: [
_createMockField(name: 'dependency', annotations: [], type: 'String'),
],
);
expect(
() => AnnotationValidator.validateClassAnnotations(classElement),
returnsNormally,
);
});
test('should throw for @injectable class with non-final inject fields', () {
final classElement = _createMockClass(
name: 'AppService',
annotations: ['injectable'],
fields: [
_createMockField(
name: 'dependency',
annotations: ['inject'],
type: 'String',
isFinal: false,
),
],
);
expect(
() => AnnotationValidator.validateClassAnnotations(classElement),
throwsA(isA<AnnotationValidationException>()),
);
});
test('should pass for @injectable class with final inject fields', () {
final classElement = _createMockClass(
name: 'AppService',
annotations: ['injectable'],
fields: [
_createMockField(
name: 'dependency',
annotations: ['inject'],
type: 'String',
isFinal: true,
),
],
);
expect(
() => AnnotationValidator.validateClassAnnotations(classElement),
returnsNormally,
);
});
});
});
}
// Mock implementations for testing
MethodElement _createMockMethod({
required String name,
required List<String> annotations,
}) {
return _MockMethodElement(name, annotations);
}
FieldElement _createMockField({
required String name,
required List<String> annotations,
required String type,
bool isFinal = false,
}) {
return _MockFieldElement(name, annotations, type, isFinal);
}
ClassElement _createMockClass({
required String name,
required List<String> annotations,
List<MethodElement> methods = const [],
List<FieldElement> fields = const [],
}) {
return _MockClassElement(name, annotations, methods, fields);
}
class _MockMethodElement implements MethodElement {
final String _name;
final List<String> _annotations;
_MockMethodElement(this._name, this._annotations);
@override
Source get source => _MockSource();
@override
String get displayName => _name;
@override
String get name => _name;
@override
List<ElementAnnotation> get metadata => _annotations.map((a) => _MockElementAnnotation(a)).toList();
@override
bool get isPublic => true;
@override
List<ParameterElement> get parameters => [];
@override
DartType get returnType => _MockDartType('String');
@override
noSuchMethod(Invocation invocation) => super.noSuchMethod(invocation);
}
class _MockFieldElement implements FieldElement {
final String _name;
final List<String> _annotations;
final String _type;
final bool _isFinal;
_MockFieldElement(this._name, this._annotations, this._type, this._isFinal);
@override
Source get source => _MockSource();
@override
String get displayName => _name;
@override
String get name => _name;
@override
List<ElementAnnotation> get metadata => _annotations.map((a) => _MockElementAnnotation(a)).toList();
@override
bool get isFinal => _isFinal;
@override
DartType get type => _MockDartType(_type);
@override
noSuchMethod(Invocation invocation) => super.noSuchMethod(invocation);
}
class _MockClassElement implements ClassElement {
final String _name;
final List<String> _annotations;
final List<MethodElement> _methods;
final List<FieldElement> _fields;
_MockClassElement(this._name, this._annotations, this._methods, this._fields);
@override
Source get source => _MockSource();
@override
String get displayName => _name;
@override
String get name => _name;
@override
List<ElementAnnotation> get metadata => _annotations.map((a) => _MockElementAnnotation(a)).toList();
@override
List<MethodElement> get methods => _methods;
@override
List<FieldElement> get fields => _fields;
@override
noSuchMethod(Invocation invocation) => super.noSuchMethod(invocation);
}
class _MockElementAnnotation implements ElementAnnotation {
final String _type;
_MockElementAnnotation(this._type);
@override
DartObject? computeConstantValue() {
return _MockDartObject(_type);
}
@override
noSuchMethod(Invocation invocation) => super.noSuchMethod(invocation);
}
class _MockDartObject implements DartObject {
final String _type;
_MockDartObject(this._type);
@override
DartType? get type => _MockDartType(_type);
@override
noSuchMethod(Invocation invocation) => super.noSuchMethod(invocation);
}
class _MockDartType implements DartType {
final String _name;
_MockDartType(this._name);
@override
String getDisplayString({bool withNullability = true}) => _name;
@override
noSuchMethod(Invocation invocation) => super.noSuchMethod(invocation);
}
class _MockSource implements Source {
@override
String get fullName => 'mock_source.dart';
@override
noSuchMethod(Invocation invocation) => super.noSuchMethod(invocation);
}

View File

@@ -0,0 +1,307 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:cherrypick_generator/src/bind_spec.dart';
import 'package:test/test.dart';
void main() {
group('BindSpec Tests', () {
group('BindSpec Creation', () {
test('should create BindSpec with all properties', () {
final bindSpec = BindSpec(
returnType: 'ApiClient',
methodName: 'createApiClient',
isSingleton: true,
named: 'mainApi',
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: true,
hasParams: false,
);
expect(bindSpec.returnType, equals('ApiClient'));
expect(bindSpec.methodName, equals('createApiClient'));
expect(bindSpec.isSingleton, isTrue);
expect(bindSpec.named, equals('mainApi'));
expect(bindSpec.parameters, isEmpty);
expect(bindSpec.bindingType, equals(BindingType.provide));
expect(bindSpec.isAsyncInstance, isFalse);
expect(bindSpec.isAsyncProvide, isTrue);
expect(bindSpec.hasParams, isFalse);
});
test('should create BindSpec with minimal properties', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
expect(bindSpec.returnType, equals('String'));
expect(bindSpec.methodName, equals('getString'));
expect(bindSpec.isSingleton, isFalse);
expect(bindSpec.named, isNull);
expect(bindSpec.bindingType, equals(BindingType.instance));
});
});
group('Bind Generation - Instance', () {
test('should generate simple instance bind', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(result, equals(' bind<String>().toInstance(getString());'));
});
test('should generate singleton instance bind', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: true,
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(result,
equals(' bind<String>().toInstance(getString()).singleton();'));
});
test('should generate named instance bind', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
named: 'testString',
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(
result,
equals(
" bind<String>().toInstance(getString()).withName('testString');"));
});
test('should generate named singleton instance bind', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: true,
named: 'testString',
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(
result,
equals(
" bind<String>().toInstance(getString()).withName('testString').singleton();"));
});
test('should generate async instance bind', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: true,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(
result, equals(' bind<String>().toInstanceAsync(getString());'));
});
});
group('Bind Generation - Provide', () {
test('should generate simple provide bind', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(
result, equals(' bind<String>().toProvide(() => getString());'));
});
test('should generate async provide bind', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: true,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(result,
equals(' bind<String>().toProvideAsync(() => getString());'));
});
test('should generate provide bind with params', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: true,
);
final result = bindSpec.generateBind(4);
expect(
result,
equals(
' bind<String>().toProvideWithParams((args) => getString());'));
});
test('should generate async provide bind with params', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: true,
hasParams: true,
);
final result = bindSpec.generateBind(4);
expect(
result,
equals(
' bind<String>().toProvideAsyncWithParams((args) => getString());'));
});
});
group('Complex Scenarios', () {
test('should generate bind with all options', () {
final bindSpec = BindSpec(
returnType: 'ApiClient',
methodName: 'createApiClient',
isSingleton: true,
named: 'mainApi',
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: true,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(
result,
equals(
" bind<ApiClient>()\n"
" .toProvideAsync(() => createApiClient())\n"
" .withName('mainApi')\n"
" .singleton();"));
});
test('should handle different indentation', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result2 = bindSpec.generateBind(2);
expect(result2, startsWith(' '));
final result8 = bindSpec.generateBind(8);
expect(result8, startsWith(' '));
});
test('should handle complex type names', () {
final bindSpec = BindSpec(
returnType: 'Map<String, List<User>>',
methodName: 'getComplexData',
isSingleton: false,
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(result, contains('bind<Map<String, List<User>>>()'));
expect(result, contains('toProvide'));
expect(result, contains('getComplexData'));
});
});
group('BindingType Enum', () {
test('should have correct enum values', () {
expect(BindingType.instance, isNotNull);
expect(BindingType.provide, isNotNull);
expect(BindingType.values, hasLength(2));
expect(BindingType.values, contains(BindingType.instance));
expect(BindingType.values, contains(BindingType.provide));
});
test('should have correct string representation', () {
expect(BindingType.instance.toString(), contains('instance'));
expect(BindingType.provide.toString(), contains('provide'));
});
});
});
}

View File

@@ -0,0 +1,32 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:test/test.dart';
// Import working test suites
import 'simple_test.dart' as simple_tests;
import 'bind_spec_test.dart' as bind_spec_tests;
import 'metadata_utils_test.dart' as metadata_utils_tests;
// Import integration test suites (now working!)
import 'module_generator_test.dart' as module_generator_tests;
import 'inject_generator_test.dart' as inject_generator_tests;
void main() {
group('CherryPick Generator Tests', () {
group('Simple Tests', simple_tests.main);
group('BindSpec Tests', bind_spec_tests.main);
group('MetadataUtils Tests', metadata_utils_tests.main);
group('ModuleGenerator Tests', module_generator_tests.main);
group('InjectGenerator Tests', inject_generator_tests.main);
});
}

View File

@@ -0,0 +1,604 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:build/build.dart';
import 'package:build_test/build_test.dart';
import 'package:cherrypick_generator/inject_generator.dart';
import 'package:source_gen/source_gen.dart';
import 'package:test/test.dart';
void main() {
group('InjectGenerator Tests', () {
setUp(() {
// InjectGenerator setup if needed
});
group('Basic Injection', () {
test('should generate mixin for simple injection', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
late final MyService service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openRootScope().resolve<MyService>();
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate mixin for nullable injection', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
late final MyService? service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openRootScope().tryResolve<MyService>();
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Named Injection', () {
test('should generate mixin for named injection', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
@named('myService')
late final MyService service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openRootScope().resolve<MyService>(
named: 'myService',
);
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate mixin for named nullable injection', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
@named('myService')
late final MyService? service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openRootScope().tryResolve<MyService>(
named: 'myService',
);
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Scoped Injection', () {
test('should generate mixin for scoped injection', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
@scope('userScope')
late final MyService service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openScope(
scopeName: 'userScope',
).resolve<MyService>();
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate mixin for scoped named injection', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
@scope('userScope')
@named('myService')
late final MyService service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openScope(
scopeName: 'userScope',
).resolve<MyService>(named: 'myService');
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Async Injection', () {
test('should generate mixin for Future injection', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
late final Future<MyService> service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openRootScope().resolveAsync<MyService>();
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate mixin for nullable Future injection', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
late final Future<MyService?> service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openRootScope().tryResolveAsync<MyService>();
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate mixin for named Future injection', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
@named('myService')
late final Future<MyService> service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openRootScope().resolveAsync<MyService>(
named: 'myService',
);
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Multiple Fields', () {
test('should generate mixin for multiple injected fields', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class ApiService {}
class DatabaseService {}
class CacheService {}
@injectable()
class TestWidget {
@inject()
late final ApiService apiService;
@inject()
@named('cache')
late final CacheService? cacheService;
@inject()
@scope('dbScope')
late final Future<DatabaseService> dbService;
// Non-injected field should be ignored
String nonInjectedField = "test";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.apiService = CherryPick.openRootScope().resolve<ApiService>();
instance.cacheService = CherryPick.openRootScope().tryResolve<CacheService>(
named: 'cache',
);
instance.dbService = CherryPick.openScope(
scopeName: 'dbScope',
).resolveAsync<DatabaseService>();
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Complex Types', () {
test('should handle generic types', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
@injectable()
class TestWidget {
@inject()
late final List<String> stringList;
@inject()
late final Map<String, int> stringIntMap;
@inject()
late final Future<List<String>> futureStringList;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.stringList = CherryPick.openRootScope().resolve<List<String>>();
instance.stringIntMap = CherryPick.openRootScope()
.resolve<Map<String, int>>();
instance.futureStringList = CherryPick.openRootScope()
.resolveAsync<List<String>>();
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Error Cases', () {
test('should throw error for non-class element', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
@injectable()
void notAClass() {}
''';
await expectLater(
() => _testGeneration(input, ''),
throwsA(isA<InvalidGenerationSourceError>()),
);
});
test('should generate empty mixin for class without @inject fields',
() async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
@injectable()
class TestWidget {
String normalField = "test";
int anotherField = 42;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Edge Cases', () {
test('should handle empty scope name', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
@scope('')
late final MyService service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openRootScope().resolve<MyService>();
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should handle empty named value', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_widget.inject.cherrypick.g.dart';
class MyService {}
@injectable()
class TestWidget {
@inject()
@named('')
late final MyService service;
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_widget.dart';
// **************************************************************************
// InjectGenerator
// **************************************************************************
mixin _\$TestWidget {
void _inject(TestWidget instance) {
instance.service = CherryPick.openRootScope().resolve<MyService>();
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
});
}
/// Helper function to test code generation
Future<void> _testGeneration(String input, String expectedOutput) async {
await testBuilder(
injectBuilder(BuilderOptions.empty),
{
'a|lib/test_widget.dart': input,
},
outputs: {
'a|lib/test_widget.inject.cherrypick.g.dart': expectedOutput,
},
reader: await PackageAssetReader.currentIsolate(),
);
}

View File

@@ -0,0 +1,72 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:cherrypick_generator/src/metadata_utils.dart';
import 'package:test/test.dart';
void main() {
group('MetadataUtils Tests', () {
group('Basic Functionality', () {
test('should handle empty metadata lists', () {
expect(MetadataUtils.anyMeta([], 'singleton'), isFalse);
expect(MetadataUtils.getNamedValue([]), isNull);
});
test('should be available for testing', () {
// This test ensures the MetadataUtils class is accessible
// More comprehensive tests would require mock setup or integration tests
expect(MetadataUtils, isNotNull);
});
test('should handle null inputs gracefully', () {
expect(MetadataUtils.anyMeta([], ''), isFalse);
expect(MetadataUtils.getNamedValue([]), isNull);
});
test('should have static methods available', () {
// Verify that the static methods exist and can be called
// This is a basic smoke test
expect(() => MetadataUtils.anyMeta([], 'test'), returnsNormally);
expect(() => MetadataUtils.getNamedValue([]), returnsNormally);
});
});
group('Method Signatures', () {
test('anyMeta should return bool', () {
final result = MetadataUtils.anyMeta([], 'singleton');
expect(result, isA<bool>());
});
test('getNamedValue should return String or null', () {
final result = MetadataUtils.getNamedValue([]);
expect(result, anyOf(isA<String>(), isNull));
});
});
group('Edge Cases', () {
test('should handle various annotation names', () {
// Test with different annotation names
expect(MetadataUtils.anyMeta([], 'singleton'), isFalse);
expect(MetadataUtils.anyMeta([], 'provide'), isFalse);
expect(MetadataUtils.anyMeta([], 'instance'), isFalse);
expect(MetadataUtils.anyMeta([], 'named'), isFalse);
expect(MetadataUtils.anyMeta([], 'params'), isFalse);
});
test('should handle empty strings', () {
expect(MetadataUtils.anyMeta([], ''), isFalse);
expect(MetadataUtils.getNamedValue([]), isNull);
});
});
});
}

View File

@@ -0,0 +1,648 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:test/test.dart';
import 'package:build_test/build_test.dart';
import 'package:build/build.dart';
import 'package:cherrypick_generator/module_generator.dart';
import 'package:source_gen/source_gen.dart';
void main() {
group('ModuleGenerator Tests', () {
setUp(() {
// ModuleGenerator setup if needed
});
group('Simple Module Generation', () {
test('should generate basic module with instance binding', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@instance()
String testString() => "Hello World";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toInstance(testString());
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate basic module with provide binding', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@provide()
String testString() => "Hello World";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toProvide(() => testString());
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Singleton Bindings', () {
test('should generate singleton instance binding', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@instance()
@singleton()
String testString() => "Hello World";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toInstance(testString()).singleton();
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate singleton provide binding', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@provide()
@singleton()
String testString() => "Hello World";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toProvide(() => testString()).singleton();
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Named Bindings', () {
test('should generate named instance binding', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@instance()
@named('testName')
String testString() => "Hello World";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toInstance(testString()).withName('testName');
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate named singleton binding', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@provide()
@singleton()
@named('testName')
String testString() => "Hello World";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>()
.toProvide(() => testString())
.withName('testName')
.singleton();
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Async Bindings', () {
test('should generate async instance binding', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@instance()
Future<String> testString() async => "Hello World";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toInstanceAsync(testString());
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate async provide binding', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@provide()
Future<String> testString() async => "Hello World";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toProvideAsync(() => testString());
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate async binding with params', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@provide()
Future<String> testString(@params() dynamic params) async => "Hello \$params";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toProvideAsyncWithParams((args) => testString(args));
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Dependencies Injection', () {
test('should generate binding with injected dependencies', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
class ApiClient {}
class Repository {}
@module()
abstract class TestModule extends Module {
@provide()
Repository repository(ApiClient client) => Repository();
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<Repository>().toProvide(
() => repository(currentScope.resolve<ApiClient>()),
);
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate binding with named dependencies', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
class ApiClient {}
class Repository {}
@module()
abstract class TestModule extends Module {
@provide()
Repository repository(@named('api') ApiClient client) => Repository();
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<Repository>().toProvide(
() => repository(currentScope.resolve<ApiClient>(named: 'api')),
);
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Runtime Parameters', () {
test('should generate binding with params', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@provide()
String testString(@params() dynamic params) => "Hello \$params";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toProvideWithParams((args) => testString(args));
}
}
''';
await _testGeneration(input, expectedOutput);
});
test('should generate async binding with params', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@provide()
Future<String> testString(@params() dynamic params) async => "Hello \$params";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toProvideAsyncWithParams((args) => testString(args));
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Complex Scenarios', () {
test('should generate module with multiple bindings', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
class ApiClient {}
class Repository {}
@module()
abstract class TestModule extends Module {
@instance()
@singleton()
@named('baseUrl')
String baseUrl() => "https://api.example.com";
@provide()
@singleton()
ApiClient apiClient(@named('baseUrl') String url) => ApiClient();
@provide()
Repository repository(ApiClient client) => Repository();
@provide()
@named('greeting')
String greeting(@params() dynamic name) => "Hello \$name";
}
''';
const expectedOutput = '''
// dart format width=80
// GENERATED CODE - DO NOT MODIFY BY HAND
part of 'test_module.dart';
// **************************************************************************
// ModuleGenerator
// **************************************************************************
final class \$TestModule extends TestModule {
@override
void builder(Scope currentScope) {
bind<String>().toInstance(baseUrl()).withName('baseUrl').singleton();
bind<ApiClient>()
.toProvide(
() => apiClient(currentScope.resolve<String>(named: 'baseUrl')),
)
.singleton();
bind<Repository>().toProvide(
() => repository(currentScope.resolve<ApiClient>()),
);
bind<String>()
.toProvideWithParams((args) => greeting(args))
.withName('greeting');
}
}
''';
await _testGeneration(input, expectedOutput);
});
});
group('Error Cases', () {
test('should throw error for non-class element', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
void notAClass() {}
''';
await expectLater(
() => _testGeneration(input, ''),
throwsA(isA<InvalidGenerationSourceError>()),
);
});
test('should throw error for method without @instance or @provide',
() async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
String testString() => "Hello World";
}
''';
await expectLater(
() => _testGeneration(input, ''),
throwsA(isA<InvalidGenerationSourceError>()),
);
});
test('should throw error for @params with @instance', () async {
const input = '''
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
import 'package:cherrypick/cherrypick.dart';
part 'test_module.module.cherrypick.g.dart';
@module()
abstract class TestModule extends Module {
@instance()
String testString(@params() dynamic params) => "Hello \$params";
}
''';
await expectLater(
() => _testGeneration(input, ''),
throwsA(isA<InvalidGenerationSourceError>()),
);
});
});
});
}
/// Helper function to test code generation
Future<void> _testGeneration(String input, String expectedOutput) async {
await testBuilder(
moduleBuilder(BuilderOptions.empty),
{
'a|lib/test_module.dart': input,
},
outputs: {
'a|lib/test_module.module.cherrypick.g.dart': expectedOutput,
},
reader: await PackageAssetReader.currentIsolate(),
);
}

View File

@@ -0,0 +1,176 @@
//
// Copyright 2021 Sergey Penkovsky (sergey.penkovsky@gmail.com)
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
import 'package:cherrypick_generator/src/bind_spec.dart';
import 'package:test/test.dart';
void main() {
group('Simple Generator Tests', () {
group('BindSpec', () {
test('should create BindSpec with correct properties', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
expect(bindSpec.returnType, equals('String'));
expect(bindSpec.methodName, equals('getString'));
expect(bindSpec.isSingleton, isFalse);
expect(bindSpec.bindingType, equals(BindingType.instance));
});
test('should generate basic bind code', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(result, contains('bind<String>()'));
expect(result, contains('toInstance'));
expect(result, contains('getString'));
});
test('should generate singleton bind code', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: true,
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(result, contains('singleton()'));
});
test('should generate named bind code', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
named: 'testName',
parameters: [],
bindingType: BindingType.instance,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(result, contains("withName('testName')"));
});
test('should generate provide bind code', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(result, contains('toProvide'));
expect(result, contains('() => getString'));
});
test('should generate async provide bind code', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: true,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(result, contains('toProvideAsync'));
});
test('should generate params bind code', () {
final bindSpec = BindSpec(
returnType: 'String',
methodName: 'getString',
isSingleton: false,
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: false,
hasParams: true,
);
final result = bindSpec.generateBind(4);
expect(result, contains('toProvideWithParams'));
expect(result, contains('(args) => getString()'));
});
test('should generate complex bind with all options', () {
final bindSpec = BindSpec(
returnType: 'ApiClient',
methodName: 'createApiClient',
isSingleton: true,
named: 'mainApi',
parameters: [],
bindingType: BindingType.provide,
isAsyncInstance: false,
isAsyncProvide: true,
hasParams: false,
);
final result = bindSpec.generateBind(4);
expect(result, contains('bind<ApiClient>()'));
expect(result, contains('toProvideAsync'));
expect(result, contains("withName('mainApi')"));
expect(result, contains('singleton()'));
});
});
group('BindingType Enum', () {
test('should have correct values', () {
expect(BindingType.instance, isNotNull);
expect(BindingType.provide, isNotNull);
expect(BindingType.values.length, equals(2));
});
});
group('Generator Classes', () {
test('should be able to import generators', () {
// Test that we can import the generator classes
expect(BindSpec, isNotNull);
expect(BindingType, isNotNull);
});
});
});
}

View File

@@ -0,0 +1,231 @@
import 'package:test/test.dart';
import 'package:analyzer/dart/element/element.dart';
import 'package:analyzer/source/source.dart';
import 'package:cherrypick_generator/src/type_parser.dart';
import 'package:cherrypick_generator/src/exceptions.dart';
void main() {
group('TypeParser', () {
group('parseType', () {
test('should parse simple types correctly', () {
// This would require setting up analyzer infrastructure
// For now, we'll test the ParsedType class directly
});
test('should parse Future types correctly', () {
// This would require setting up analyzer infrastructure
// For now, we'll test the ParsedType class directly
});
test('should parse nullable types correctly', () {
// This would require setting up analyzer infrastructure
// For now, we'll test the ParsedType class directly
});
test('should throw TypeParsingException for invalid types', () {
// This would require setting up analyzer infrastructure
// For now, we'll test the ParsedType class directly
});
});
group('validateInjectableType', () {
test('should throw for void type', () {
final parsedType = ParsedType(
displayString: 'void',
coreType: 'void',
isNullable: false,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
expect(
() => TypeParser.validateInjectableType(parsedType, _createMockElement()),
throwsA(isA<TypeParsingException>()),
);
});
test('should throw for dynamic type', () {
final parsedType = ParsedType(
displayString: 'dynamic',
coreType: 'dynamic',
isNullable: false,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
expect(
() => TypeParser.validateInjectableType(parsedType, _createMockElement()),
throwsA(isA<TypeParsingException>()),
);
});
test('should pass for valid types', () {
final parsedType = ParsedType(
displayString: 'String',
coreType: 'String',
isNullable: false,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
expect(
() => TypeParser.validateInjectableType(parsedType, _createMockElement()),
returnsNormally,
);
});
});
});
group('ParsedType', () {
test('should return correct codeGenType for simple types', () {
final parsedType = ParsedType(
displayString: 'String',
coreType: 'String',
isNullable: false,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
expect(parsedType.codeGenType, equals('String'));
});
test('should return correct codeGenType for Future types', () {
final innerType = ParsedType(
displayString: 'String',
coreType: 'String',
isNullable: false,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
final parsedType = ParsedType(
displayString: 'Future<String>',
coreType: 'Future<String>',
isNullable: false,
isFuture: true,
isGeneric: false,
typeArguments: [],
innerType: innerType,
);
expect(parsedType.codeGenType, equals('String'));
});
test('should return correct resolveMethodName for sync types', () {
final parsedType = ParsedType(
displayString: 'String',
coreType: 'String',
isNullable: false,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
expect(parsedType.resolveMethodName, equals('resolve'));
});
test('should return correct resolveMethodName for nullable sync types', () {
final parsedType = ParsedType(
displayString: 'String?',
coreType: 'String',
isNullable: true,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
expect(parsedType.resolveMethodName, equals('tryResolve'));
});
test('should return correct resolveMethodName for async types', () {
final parsedType = ParsedType(
displayString: 'Future<String>',
coreType: 'String',
isNullable: false,
isFuture: true,
isGeneric: false,
typeArguments: [],
);
expect(parsedType.resolveMethodName, equals('resolveAsync'));
});
test('should return correct resolveMethodName for nullable async types', () {
final parsedType = ParsedType(
displayString: 'Future<String?>',
coreType: 'String',
isNullable: true,
isFuture: true,
isGeneric: false,
typeArguments: [],
);
expect(parsedType.resolveMethodName, equals('tryResolveAsync'));
});
test('should implement equality correctly', () {
final parsedType1 = ParsedType(
displayString: 'String',
coreType: 'String',
isNullable: false,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
final parsedType2 = ParsedType(
displayString: 'String',
coreType: 'String',
isNullable: false,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
expect(parsedType1, equals(parsedType2));
expect(parsedType1.hashCode, equals(parsedType2.hashCode));
});
test('should implement toString correctly', () {
final parsedType = ParsedType(
displayString: 'String',
coreType: 'String',
isNullable: false,
isFuture: false,
isGeneric: false,
typeArguments: [],
);
final result = parsedType.toString();
expect(result, contains('ParsedType'));
expect(result, contains('String'));
expect(result, contains('isNullable: false'));
expect(result, contains('isFuture: false'));
});
});
}
// Mock element for testing
Element _createMockElement() {
return _MockElement();
}
class _MockElement implements Element {
@override
String get displayName => 'MockElement';
@override
String get name => 'MockElement';
@override
Source? get source => null;
@override
noSuchMethod(Invocation invocation) => super.noSuchMethod(invocation);
}

140
doc/annotations_en.md Normal file
View File

@@ -0,0 +1,140 @@
# DI Code Generation with Annotations (CherryPick)
CherryPick enables smart, fully-automated dependency injection (DI) for Dart/Flutter via annotations and code generation.
This eliminates boilerplate and guarantees correctness—just annotate, run the generator, and use!
---
## 1. How does it work?
You annotate classes, fields, and modules using [cherrypick_annotations].
The [cherrypick_generator] processes these, generating code that registers your dependencies and wires up fields or modules.
You then run:
```sh
dart run build_runner build --delete-conflicting-outputs
```
— and use the generated files in your app.
---
## 2. Supported Annotations
| Annotation | Where | Purpose |
|-------------------|-----------------|----------------------------------------------------------|
| `@injectable()` | class | Enables auto field injection; mixin will be generated |
| `@inject()` | field | Field will be injected automatically |
| `@scope()` | field/param | Use a named scope when resolving this dep |
| `@named()` | field/param | Bind/resolve a named interface implementation |
| `@module()` | class | Marks as a DI module (methods = providers) |
| `@provide` | method | Registers a type via this provider method |
| `@instance` | method | Registers a direct instance (like singleton/factory) |
| `@singleton` | method/class | The target is a singleton |
| `@params` | param | Accepts runtime/constructor params for providers |
**You can combine annotations as needed for advanced use-cases.**
---
## 3. Practical Examples
### A. Field Injection (recommended for widgets/classes)
```dart
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
@injectable()
class MyWidget with _$MyWidget { // the generated mixin
@inject()
late final AuthService auth;
@inject()
@scope('profile')
late final ProfileManager profile;
@inject()
@named('special')
late final ApiClient specialApi;
}
```
- After running build_runner, the mixin _$MyWidget is created.
- Call `MyWidget().injectFields();` (method name may be `_inject` or similar) to populate the fields!
### B. Module Binding (recommended for global app services)
```dart
@module()
abstract class AppModule extends Module {
@singleton
AuthService provideAuth(Api api) => AuthService(api);
@provide
@named('logging')
Future<Logger> provideLogger(@params Map<String, dynamic> args) async => ...
}
```
- Providers can return async(`Future<T>`) or sync.
- `@singleton` = one instance per scope.
---
## 4. Using the Generated Code
1. Add to your `pubspec.yaml`:
```yaml
dependencies:
cherrypick: any
cherrypick_annotations: any
dev_dependencies:
cherrypick_generator: any
build_runner: any
```
2. Import generated files (e.g. `app_module.module.cherrypick.g.dart`, `your_class.inject.cherrypick.g.dart`).
3. Register modules:
```dart
final scope = openRootScope()
..installModules([$AppModule()]);
```
4. For classes with auto-injected fields, mix in the generated mixin and call the injector:
```dart
final widget = MyWidget();
widget.injectFields(); // or use the mixin's helper
```
5. All dependencies are now available and ready to use!
---
## 5. Advanced Features
- **Named and Scoped dependencies:** use `@named`, `@scope` on fields/methods and in resolve().
- **Async support:** Providers or injected fields can be Future<T> (resolveAsync).
- **Runtime parameters:** Decorate a parameter with `@params`, and use `resolve<T>(params: ...)`.
- **Combining strategies:** Mix field injection (`@injectable`) and module/provider (`@module` + methods) in one app.
---
## 6. Troubleshooting
- Make sure all dependencies are annotated, imports are correct, and run `build_runner` on every code/DI change.
- Errors in annotation usage (e.g. `@singleton` on non-class/method) will be shown at build time.
- Use the `.g.dart` files directly—do not edit them by hand.
---
## 7. References
- [Cherrypick Generator README (extended)](../cherrypick_generator/README.md)
- Example: `examples/postly`
- [API Reference](../cherrypick/doc/api/)
---

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# Генерация DI-кода через аннотации (CherryPick)
CherryPick позволяет получить умный и полностью автоматизированный DI для Dart/Flutter на основе аннотаций и генерации кода.
Это убирает boilerplate — просто ставьте аннотации, запускайте генератор и используйте результат!
---
## 1. Как это работает?
Вы размечаете классы, поля и модули с помощью [cherrypick_annotations].
[cherrypick_generator] анализирует их и создаёт код для регистрации зависимостей и подстановки полей или модулей.
Далее — запускайте:
```sh
dart run build_runner build --delete-conflicting-outputs
```
— и используйте сгенерированные файлы в проекте.
---
## 2. Поддерживаемые аннотации
| Аннотация | Где применить | Значение |
|--------------------|------------------|------------------------------------------------------------|
| `@injectable()` | класс | Включает автоподстановку полей, генерируется mixin |
| `@inject()` | поле | Поле будет автоматически подставлено DI |
| `@scope()` | поле/параметр | Использовать определённый scope при разрешении |
| `@named()` | поле/параметр | Именованный биндинг для интерфейсов/реализаций |
| `@module()` | класс | Класс как DI-модуль (методы — провайдеры) |
| `@provide` | метод | Регистрирует тип через этот метод-провайдер |
| `@instance` | метод | Регистрирует как прямой инстанс (singleton/factory, как есть)|
| `@singleton` | метод/класс | Синглтон (один экземпляр на scope) |
| `@params` | параметр | Пробрасывает параметры рантайм/конструктора в DI |
Миксуйте аннотации для сложных сценариев!
---
## 3. Примеры использования
### A. Field Injection (рекомендуется для виджетов/классов)
```dart
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
@injectable()
class MyWidget with _$MyWidget {
@inject()
late final AuthService auth;
@inject()
@scope('profile')
late final ProfileManager profile;
@inject()
@named('special')
late final ApiClient specialApi;
}
```
- После build_runner появится mixin _$MyWidget.
- Вызовите `MyWidget().injectFields();` (или соответствующий метод из mixin), чтобы заполнить поля.
### B. Binding через модуль (вариант для глобальных сервисов)
```dart
@module()
abstract class AppModule extends Module {
@singleton
AuthService provideAuth(Api api) => AuthService(api);
@provide
@named('logging')
Future<Logger> provideLogger(@params Map<String, dynamic> args) async => ...
}
```
- Методы-провайдеры поддерживают async (Future<T>) и singleton.
---
## 4. Использование сгенерированного кода
1. В `pubspec.yaml`:
```yaml
dependencies:
cherrypick: any
cherrypick_annotations: any
dev_dependencies:
cherrypick_generator: any
build_runner: any
```
2. Импортируйте сгенерированные файлы (`app_module.module.cherrypick.g.dart`, `your_class.inject.cherrypick.g.dart`).
3. Регистрируйте модули так:
```dart
final scope = openRootScope()
..installModules([$AppModule()]);
```
4. Для классов с автоподстановкой полей (field injection): используйте mixin и вызовите injector:
```dart
final widget = MyWidget();
widget.injectFields(); // или эквивалентный метод из mixin
```
5. Все зависимости готовы к использованию!
---
## 5. Расширенные возможности
- **Именованные и scope-зависимости:** используйте `@named`, `@scope` в полях/методах/resolve.
- **Async:** Провайдеры и поля могут быть Future<T> (resolveAsync).
- **Параметры рантайм:** через `@params` прямо к провайдеру: `resolve<T>(params: ...)`.
- **Комбинированная стратегия:** можно смешивать field injection и модульные провайдеры в одном проекте.
---
## 6. Советы и FAQ
- Проверьте аннотации, пути import и запускайте build_runner после каждого изменения DI/кода.
- Ошибки применения аннотаций появляются на этапе генерации.
- Никогда не редактируйте .g.dart файлы вручную.
---
## 7. Полезные ссылки
- [README по генератору](../cherrypick_generator/README.md)
- Пример интеграции: `examples/postly`
- [API Reference](../cherrypick/doc/api/)
---

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# Full Guide to CherryPick DI for Dart and Flutter: Dependency Injection with Annotations and Automatic Code Generation
**CherryPick** is a powerful tool for dependency injection in Dart and Flutter projects. It offers a modern approach with code generation, async providers, named and parameterized bindings, and field injection using annotations.
> Tools:
> - [`cherrypick`](https://pub.dev/packages/cherrypick) — runtime DI core
> - [`cherrypick_annotations`](https://pub.dev/packages/cherrypick_annotations) — DI annotations
> - [`cherrypick_generator`](https://pub.dev/packages/cherrypick_generator) — DI code generation
>
---
## CherryPick advantages vs other DI frameworks
- 📦 Simple declarative API for registering and resolving dependencies
- ⚡️ Full support for both sync and async registrations
- 🧩 DI via annotations with codegen, including advanced field injection
- 🏷️ Named bindings for multiple interface implementations
- 🏭 Parameterized bindings for runtime factories (e.g., by ID)
- 🌲 Flexible scope system for dependency isolation and hierarchy
- 🕹️ Optional resolution (`tryResolve`)
- 🐞 Clear compile-time errors for invalid annotation or DI configuration
---
## How CherryPick works: core concepts
### Dependency registration (bindings)
```dart
bind<MyService>().toProvide(() => MyServiceImpl());
bind<MyRepository>().toProvideAsync(() async => await initRepo());
bind<UserService>().toProvideWithParams((id) => UserService(id));
// Singleton
bind<MyApi>().toProvide(() => MyApi()).singleton();
// Register an already created object
final config = AppConfig.dev();
bind<AppConfig>().toInstance(config);
// Register an already running Future/async value
final setupFuture = loadEnvironment();
bind<Environment>().toInstanceAsync(setupFuture);
```
- **toProvide** — regular sync factory
- **toProvideAsync** — async factory (if you need to await a Future)
- **toProvideWithParams / toProvideAsyncWithParams** — factories with runtime parameters
- **toInstance** — registers an already created object as a dependency
- **toInstanceAsync** — registers an already started Future as an async dependency
### Named bindings
You can register several implementations of an interface under different names:
```dart
bind<ApiClient>().toProvide(() => ApiClientProd()).withName('prod');
bind<ApiClient>().toProvide(() => ApiClientMock()).withName('mock');
// Resolving by name:
final api = scope.resolve<ApiClient>(named: 'mock');
```
### Lifecycle: singleton
- `.singleton()` — single instance per Scope lifetime
- By default, every resolve creates a new object
### Parameterized bindings
Allows you to create dependencies with runtime parameters, e.g., a service for a user with a given ID:
```dart
bind<UserService>().toProvideWithParams((userId) => UserService(userId));
// Resolve:
final userService = scope.resolveWithParams<UserService>(params: '123');
```
---
## Scope management: dependency hierarchy
For most business cases, a single root scope is enough, but CherryPick supports nested scopes:
```dart
final rootScope = CherryPick.openRootScope();
final profileScope = rootScope.openSubScope('profile')
..installModules([ProfileModule()]);
```
- **Subscope** can override parent dependencies.
- When resolving, first checks its own scope, then up the hierarchy.
## Managing names and scope hierarchy (subscopes) in CherryPick
CherryPick supports nested scopes, each can be "root" or a child. For accessing/managing the hierarchy, CherryPick uses scope names (strings) as well as convenient open/close methods.
### Open subScope by name
CherryPick uses separator-delimited strings to search and build scope trees, for example:
```dart
final subScope = CherryPick.openScope(scopeName: 'profile.settings');
```
- Here, `'profile.settings'` will open 'profile' subscope in root, then 'settings' subscope in 'profile'.
- Default separator is a dot (`.`), can be changed via `separator` argument.
**Example with another separator:**
```dart
final subScope = CherryPick.openScope(
scopeName: 'project>>dev>>api',
separator: '>>',
);
```
### Hierarchy & access
Each hierarchy level is a separate scope.
This is convenient for restricting/localizing dependencies, for example:
- `main.profile` — dependencies only for user profile
- `main.profile.details` — even narrower context
### Closing subscopes
To close a specific subScope, use the same path:
```dart
CherryPick.closeScope(scopeName: 'profile.settings');
```
- Closing a top-level scope (`profile`) wipes all children too.
### Methods summary
| Method | Description |
|---------------------------|--------------------------------------------------------|
| `openRootScope()` | Open/get root scope |
| `closeRootScope()` | Close root scope, remove all dependencies |
| `openScope(scopeName)` | Open scope(s) by name & hierarchy (`'a.b.c'`) |
| `closeScope(scopeName)` | Close specified scope or subScope |
---
**Recommendations:**
Use meaningful names and dot notation for scope structuring in large apps—this improves readability and dependency management on any level.
---
**Example:**
```dart
// Opens scopes by hierarchy: app -> module -> page
final scope = CherryPick.openScope(scopeName: 'app.module.page');
// Closes 'module' and all nested subscopes
CherryPick.closeScope(scopeName: 'app.module');
```
---
This lets you scale CherryPick DI for any app complexity!
---
## Safe dependency resolution
If not sure a dependency exists, use tryResolve/tryResolveAsync:
```dart
final service = scope.tryResolve<OptionalService>(); // returns null if not exists
```
---
## Dependency injection with annotations & code generation
CherryPick supports DI with annotations, letting you eliminate manual DI setup.
### Annotation structure
| Annotation | Purpose | Where to use |
|---------------|---------------------------|------------------------------------|
| `@module` | DI module | Classes |
| `@singleton` | Singleton | Module methods |
| `@instance` | New object | Module methods |
| `@provide` | Provider | Methods (with DI params) |
| `@named` | Named binding | Method argument/Class fields |
| `@params` | Parameter passing | Provider argument |
| `@injectable` | Field injection support | Classes |
| `@inject` | Auto-injection | Class fields |
| `@scope` | Scope/realm | Class fields |
### Example DI module
```dart
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
@module()
abstract class AppModule extends Module {
@singleton()
@provide()
ApiClient apiClient() => ApiClient();
@provide()
UserService userService(ApiClient api) => UserService(api);
@singleton()
@provide()
@named('mock')
ApiClient mockApiClient() => ApiClientMock();
}
```
- Methods annotated with `@provide` become DI factories.
- Add other annotations to specify binding type or name.
Generated code will look like:
```dart
class $AppModule extends AppModule {
@override
void builder(Scope currentScope) {
bind<ApiClient>().toProvide(() => apiClient()).singleton();
bind<UserService>().toProvide(() => userService(currentScope.resolve<ApiClient>()));
bind<ApiClient>().toProvide(() => mockApiClient()).withName('mock').singleton();
}
}
```
### Example: field injection
```dart
@injectable()
class ProfileBloc with _$ProfileBloc {
@inject()
late final AuthService auth;
@inject()
@named('admin')
late final UserService adminUser;
ProfileBloc() {
_inject(this); // injectFields — generated method
}
}
```
- Generator creates a mixin (`_$ProfileBloc`) which automatically resolves and injects dependencies into fields.
- The `@named` annotation links a field to a named implementation.
Example generated code:
```dart
mixin $ProfileBloc {
@override
void _inject(ProfileBloc instance) {
instance.auth = CherryPick.openRootScope().resolve<AuthService>();
instance.adminUser = CherryPick.openRootScope().resolve<UserService>(named: 'admin');
}
}
```
### How to connect it
```dart
void main() async {
final scope = CherryPick.openRootScope();
scope.installModules([
$AppModule(),
]);
// DI via field injection
final bloc = ProfileBloc();
runApp(MyApp(bloc: bloc));
}
```
---
## Async dependencies
For async providers, use `toProvideAsync`, and resolve them with `resolveAsync`:
```dart
bind<RemoteConfig>().toProvideAsync(() async => await RemoteConfig.load());
// Usage:
final config = await scope.resolveAsync<RemoteConfig>();
```
---
## Validation and diagnostics
- If you use incorrect annotations or DI config, you'll get clear compile-time errors.
- Binding errors are found during code generation, minimizing runtime issues and speeding up development.
---
## Flutter integration: cherrypick_flutter
### What it is
[`cherrypick_flutter`](https://pub.dev/packages/cherrypick_flutter) is the integration package for CherryPick DI in Flutter. It provides a convenient `CherryPickProvider` widget which sits in your widget tree and gives access to the root DI scope (and subscopes) from context.
### Features
- **Global DI Scope Access:**
Use `CherryPickProvider` to access rootScope and subscopes anywhere in the widget tree.
- **Context integration:**
Use `CherryPickProvider.of(context)` for DI access inside your widgets.
### Usage Example
```dart
import 'package:flutter/material.dart';
import 'package:cherrypick_flutter/cherrypick_flutter.dart';
void main() {
runApp(
CherryPickProvider(
child: MyApp(),
),
);
}
class MyApp extends StatelessWidget {
@override
Widget build(BuildContext context) {
final rootScope = CherryPickProvider.of(context).openRootScope();
return MaterialApp(
home: Scaffold(
body: Center(
child: Text(
rootScope.resolve<AppService>().getStatus(),
),
),
),
);
}
}
```
- Here, `CherryPickProvider` wraps the app and gives DI scope access via context.
- You can create subscopes, e.g. for screens or modules:
`final subScope = CherryPickProvider.of(context).openSubScope(scopeName: "profileFeature");`
---
## CherryPick is not just for Flutter!
You can use CherryPick in Dart CLI, server apps, and microservices. All major features work without Flutter.
---
## CherryPick Example Project: Step by Step
1. Add dependencies:
```yaml
dependencies:
cherrypick: ^1.0.0
cherrypick_annotations: ^1.0.0
dev_dependencies:
build_runner: ^2.0.0
cherrypick_generator: ^1.0.0
```
2. Describe your modules using annotations.
3. To generate DI code:
```shell
dart run build_runner build --delete-conflicting-outputs
```
4. Enjoy modern DI with no boilerplate!
---
### Advanced: Customizing Generated Code Location
CherryPick's code generator now supports flexible output configuration via `build.yaml`.
You can control both the output directory (using `output_dir`) and filename templates (using `build_extensions`):
```yaml
targets:
$default:
builders:
cherrypick_generator|inject_generator:
options:
build_extensions:
'^lib/app.dart': ['lib/generated/app.inject.cherrypick.g.dart']
output_dir: lib/generated
generate_for:
- lib/**.dart
cherrypick_generator|module_generator:
options:
build_extensions:
'^lib/di/{{}}.dart': ['lib/generated/di/{{}}.module.cherrypick.g.dart']
output_dir: lib/generated
generate_for:
- lib/**.dart
```
- **output_dir**: Folder where all generated files will be placed.
- **build_extensions**: Allows full customization of generated file names and subfolders.
If you use these, be sure to update your imports accordingly, e.g.:
```dart
import 'package:your_project/generated/app.inject.cherrypick.g.dart';
```
If not specified, generated files will appear next to your source files, as before.
---
---
## Conclusion
**CherryPick** is a modern DI solution for Dart and Flutter, combining a concise API and advanced annotation/codegen features. Scopes, parameterized providers, named bindings, and field-injection make it great for both small and large-scale projects.
**Full annotation list and their purposes:**
| Annotation | Purpose | Where to use |
|---------------|---------------------------|------------------------------------|
| `@module` | DI module | Classes |
| `@singleton` | Singleton | Module methods |
| `@instance` | New object | Module methods |
| `@provide` | Provider | Methods (with DI params) |
| `@named` | Named binding | Method argument/Class fields |
| `@params` | Parameter passing | Provider argument |
| `@injectable` | Field injection support | Classes |
| `@inject` | Auto-injection | Class fields |
| `@scope` | Scope/realm | Class fields |
---
## Useful Links
- [cherrypick](https://pub.dev/packages/cherrypick)
- [cherrypick_annotations](https://pub.dev/packages/cherrypick_annotations)
- [cherrypick_generator](https://pub.dev/packages/cherrypick_generator)
- [Sources on GitHub](https://github.com/pese-git/cherrypick)

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# Полный гайд по CherryPick DI для Dart и Flutter: внедрение зависимостей с аннотациями и автоматической генерацией кода
**CherryPick** — это мощный инструмент для инъекции зависимостей в проектах на Dart и Flutter. Он предлагает современный подход с поддержкой генерации кода, асинхронных провайдеров, именованных и параметризируемых биндингов, а также field injection с использованием аннотаций.
> Инструменты:
> - [`cherrypick`](https://pub.dev/packages/cherrypick) — runtime DI core
> - [`cherrypick_annotations`](https://pub.dev/packages/cherrypick_annotations) — аннотации для DI
> - [`cherrypick_generator`](https://pub.dev/packages/cherrypick_generator) — генерация DI-кода
>
---
## Преимущества CherryPick по сравнению с другими DI-фреймворками
- 📦 Простой декларативный API для регистрации и разрешения зависимостей.
- ⚡️ Полная поддержка синхронных _и_ асинхронных регистраций.
- 🧩 DI через аннотации с автогенерацией кода, включая field injection.
- 🏷️ Именованные зависимости (named bindings).
- 🏭 Параметризация биндингов для runtime-использования фабрик.
- 🌲 Гибкая система Scope'ов для изоляции и иерархии зависимостей.
- 🕹️ Опциональное разрешение (tryResolve).
- 🐞 Ясные compile-time ошибки при неправильной аннотации или неверном DI-описании.
---
## Как работает CherryPick: основные концепции
### Регистрация зависимостей: биндинги
```dart
bind<MyService>().toProvide(() => MyServiceImpl());
bind<MyRepository>().toProvideAsync(() async => await initRepo());
bind<UserService>().toProvideWithParams((id) => UserService(id));
// Singleton
bind<MyApi>().toProvide(() => MyApi()).singleton();
// Зарегистрировать уже существующий объект
final config = AppConfig.dev();
bind<AppConfig>().toInstance(config);
// Зарегистрировать уже существующий Future/асинхронное значение
final setupFuture = loadEnvironment();
bind<Environment>().toInstanceAsync(setupFuture);
```
- **toProvide** — обычная синхронная фабрика.
- **toProvideAsync** — асинхронная фабрика (например, если нужно дожидаться Future).
- **toProvideWithParams / toProvideAsyncWithParams** — фабрики с параметрами.
- **toInstance** — регистрирует уже созданный экземпляр класса как зависимость.
- **toInstanceAsync** — регистрирует уже запущенный Future, как асинхронную зависимость.
### Именованные биндинги (Named)
Можно регистрировать несколько реализаций одного интерфейса под разными именами:
```dart
bind<ApiClient>().toProvide(() => ApiClientProd()).withName('prod');
bind<ApiClient>().toProvide(() => ApiClientMock()).withName('mock');
// Получение по имени:
final api = scope.resolve<ApiClient>(named: 'mock');
```
### Жизненный цикл: singleton
- `.singleton()` — один инстанс на всё время жизни Scope.
- По умолчанию каждый resolve создаёт новый объект.
### Параметрические биндинги
Позволяют создавать зависимости с runtime-параметрами — например, сервис для пользователя с ID:
```dart
bind<UserService>().toProvideWithParams((userId) => UserService(userId));
// Получение
final userService = scope.resolveWithParams<UserService>(params: '123');
```
---
## Управление Scope'ами: иерархия зависимостей
Для большинства бизнес-кейсов достаточно одного Scope (root), но CherryPick поддерживает создание вложенных Scope:
```dart
final rootScope = CherryPick.openRootScope();
final profileScope = rootScope.openSubScope('profile')
..installModules([ProfileModule()]);
```
- **Под-скоуп** может переопределять зависимости родителя.
- При разрешении сначала проверяется свой Scope, потом иерархия вверх.
## Работа с именованием и иерархией подскоупов (subscopes) в CherryPick
CherryPick поддерживает вложенные области видимости (scopes), где каждый scope может быть как "корневым", так и дочерним. Для доступа и управления иерархией используется понятие **scope name** (имя области видимости), а также удобные методы для открытия и закрытия скопов по строковым идентификаторам.
### Открытие subScope по имени
CherryPick использует строки с разделителями для поиска и построения дерева областей видимости. Например:
```dart
final subScope = CherryPick.openScope(scopeName: 'profile.settings');
```
- Здесь `'profile.settings'` означает, что сначала откроется подскоуп `profile` у rootScope, затем — подскоуп `settings` у `profile`.
- Разделитель по умолчанию — точка (`.`). Его можно изменить, указав `separator` аргументом.
**Пример с другим разделителем:**
```dart
final subScope = CherryPick.openScope(
scopeName: 'project>>dev>>api',
separator: '>>',
);
```
### Иерархия и доступ
Каждый уровень иерархии соответствует отдельному scope.
Это удобно для ограничения и локализации зависимостей, например:
- `main.profile` — зависимости только для профиля пользователя
- `main.profile.details` — ещё более "узкая" область видимости
### Закрытие подскоупов
Чтобы закрыть конкретный subScope, используйте тот же путь:
```dart
CherryPick.closeScope(scopeName: 'profile.settings');
```
- Если закрываете верхний скоуп (`profile`), все дочерние тоже будут очищены.
### Кратко о методах
| Метод | Описание |
|--------------------------|--------------------------------------------------------|
| `openRootScope()` | Открыть/получить корневой scope |
| `closeRootScope()` | Закрыть root scope, удалить все зависимости |
| `openScope(scopeName)` | Открыть scope(ы) по имени с иерархией (`'a.b.c'`) |
| `closeScope(scopeName)` | Закрыть указанный scope или subscope |
---
**Рекомендации:**
Используйте осмысленные имена и "точечную" нотацию для структурирования зон видимости в крупных приложениях — это повысит читаемость и позволит удобно управлять зависимостями на любых уровнях.
---
**Пример:**
```dart
// Откроет scopes по иерархии: app -> module -> page
final scope = CherryPick.openScope(scopeName: 'app.module.page');
// Закроет 'module' и все вложенные subscopes
CherryPick.closeScope(scopeName: 'app.module');
```
---
Это позволит масштабировать DI-подход CherryPick в приложениях любой сложности!
---
## Безопасное разрешение зависимостей
Если не уверены, что нужная зависимость есть, используйте tryResolve/tryResolveAsync:
```dart
final service = scope.tryResolve<OptionalService>(); // вернет null, если нет
```
---
## Внедрение зависимостей через аннотации и автогенерацию
CherryPick поддерживает DI через аннотации, что позволяет полностью избавиться от ручного внедрения зависимостей.
### Структура аннотаций
| Аннотация | Для чего | Где применяют |
| ------------- | ------------------------- | -------------------------------- |
| `@module` | DI-модуль | Классы |
| `@singleton` | Singleton | Методы класса |
| `@instance` | Новый объект | Методы класса |
| `@provide` | Провайдер | Методы (с DI params) |
| `@named` | Именованный биндинг | Аргумент метода/Аттрибуты класса |
| `@params` | Передача параметров | Аргумент провайдера |
| `@injectable` | Поддержка field injection | Классы |
| `@inject` | Автовнедрение | Аттрибуты класса |
| `@scope` | Scope/realm | Аттрибуты класса |
### Пример DI-модуля
```dart
import 'package:cherrypick_annotations/cherrypick_annotations.dart';
@module()
abstract class AppModule extends Module {
@singleton()
@provide()
ApiClient apiClient() => ApiClient();
@provide()
UserService userService(ApiClient api) => UserService(api);
@singleton()
@provide()
@named('mock')
ApiClient mockApiClient() => ApiClientMock();
}
```
- Методы, отмеченные `@provide`, становятся фабриками DI.
- Можно добавлять другие аннотации для уточнения типа биндинга, имени.
Сгенерированный код будет выглядеть вот таким образом:
```dart
class $AppModule extends AppModule {
@override
void builder(Scope currentScope) {
bind<ApiClient>().toProvide(() => apiClient()).singelton();
bind<UserService>().toProvide(() => userService(currentScope.resolve<ApiClient>()));
bind<ApiClient>().toProvide(() => mockApiClient()).withName('mock').singelton();
}
}
```
### Пример инъекций зависимостей через field injection
```dart
@injectable()
class ProfileBloc with _$ProfileBloc {
@inject()
late final AuthService auth;
@inject()
@named('admin')
late final UserService adminUser;
ProfileBloc() {
_inject(this); // injectFields — сгенерированный метод
}
}
```
- Генератор создаёт mixin (`_$ProfileBloc`), который автоматически резолвит и подставляет зависимости в поля класса.
- Аннотация `@named` привязывает конкретную реализацию по имени.
Сгенерированный код будет выглядеть вот таким образом:
```dart
mixin $ProfileBloc {
@override
void _inject(ProfileBloc instance) {
instance.auth = CherryPick.openRootScope().resolve<AuthService>();
instance.adminUser = CherryPick.openRootScope().resolve<UserService>(named: 'admin');
}
}
```
### Как это подключается
```dart
void main() async {
final scope = CherryPick.openRootScope();
scope.installModules([
$AppModule(),
]);
// DI через field injection
final bloc = ProfileBloc();
runApp(MyApp(bloc: bloc));
}
```
---
## Асинхронные зависимости
Для асинхронных провайдеров используйте `toProvideAsync`, а получать их — через `resolveAsync`:
```dart
bind<RemoteConfig>().toProvideAsync(() async => await RemoteConfig.load());
// Использование:
final config = await scope.resolveAsync<RemoteConfig>();
```
---
## Проверка и диагностика
- При неправильных аннотациях или ошибках DI появляется понятное compile-time сообщение.
- Ошибки биндингов выявляются при генерации кода. Это минимизирует runtime-ошибки и ускоряет разработку.
---
## Использование CherryPick с Flutter: пакет cherrypick_flutter
### Что это такое
[`cherrypick_flutter`](https://pub.dev/packages/cherrypick_flutter) — это пакет интеграции CherryPick DI с Flutter. Он предоставляет удобный виджет-провайдер `CherryPickProvider`, который размещается в вашем дереве виджетов и даёт доступ к root scope DI (и подскоупам) прямо из контекста.
### Ключевые возможности
- **Глобальный доступ к DI Scope:**
Через `CherryPickProvider` вы легко получаете доступ к rootScope и подскоупам из любого места дерева Flutter.
- **Интеграция с контекстом:**
Используйте `CherryPickProvider.of(context)` для доступа к DI внутри ваших виджетов.
### Пример использования
```dart
import 'package:flutter/material.dart';
import 'package:cherrypick_flutter/cherrypick_flutter.dart';
void main() {
runApp(
CherryPickProvider(
child: MyApp(),
),
);
}
class MyApp extends StatelessWidget {
@override
Widget build(BuildContext context) {
final rootScope = CherryPickProvider.of(context).openRootScope();
return MaterialApp(
home: Scaffold(
body: Center(
child: Text(
rootScope.resolve<AppService>().getStatus(),
),
),
),
);
}
}
```
- В этом примере `CherryPickProvider` оборачивает приложение и предоставляет доступ к DI scope через контекст.
- Вы можете создавать подскоупы, если нужно, например, для экранов или модулей:
`final subScope = CherryPickProvider.of(context).openSubScope(scopeName: "profileFeature");`
---
## CherryPick подходит не только для Flutter!
Вы можете использовать CherryPick и в Dart CLI, серверных проектах и микросервисах. Все основные возможности доступны и без Flutter.
---
## Пример проекта на CherryPick: полный путь
1. Установите зависимости:
```yaml
dependencies:
cherrypick: ^1.0.0
cherrypick_annotations: ^1.0.0
dev_dependencies:
build_runner: ^2.0.0
cherrypick_generator: ^1.0.0
```
2. Описываете свои модули с помощью аннотаций.
3. Для автоматической генерации DI кода используйте:
```shell
dart run build_runner build --delete-conflicting-outputs
```
4. Наслаждайтесь современным DI без боли!
---
### Продвинутая настройка путей генерации кода
В последних версиях генератора CherryPick добавлена поддержка гибкой настройки директорий и шаблонов имён файлов через `build.yaml`.
Вы можете управлять и папкой назначения (через `output_dir`), и шаблоном имён (через `build_extensions`):
```yaml
targets:
$default:
builders:
cherrypick_generator|inject_generator:
options:
build_extensions:
'^lib/app.dart': ['lib/generated/app.inject.cherrypick.g.dart']
output_dir: lib/generated
generate_for:
- lib/**.dart
cherrypick_generator|module_generator:
options:
build_extensions:
'^lib/di/{{}}.dart': ['lib/generated/di/{{}}.module.cherrypick.g.dart']
output_dir: lib/generated
generate_for:
- lib/**.dart
```
- **output_dir**: Папка, куда будут складываться все сгенерированные файлы.
- **build_extensions**: Полный контроль над именами итоговых файлов и подпапками.
Если вы это используете, обязательно обновляйте импорты, например:
```dart
import 'package:your_project/generated/app.inject.cherrypick.g.dart';
```
Если не задать параметры, файлы будут сгенерированы рядом с исходными — как и раньше.
---
---
## Заключение
**CherryPick** — это современное DI-решение для Dart и Flutter, сочетающее лаконичный API и расширенные возможности аннотирования и генерации кода. Гибкость Scopes, параметрические провайдеры, именованные биндинги и field-injection делают его особенно мощным как для небольших, так и для масштабных проектов.
**Полный список аннотаций и их предназначение:**
| Аннотация | Для чего | Где применяют |
| ------------- | ------------------------- | -------------------------------- |
| `@module` | DI-модуль | Классы |
| `@singleton` | Singleton | Методы класса |
| `@instance` | Новый объект | Методы класса |
| `@provide` | Провайдер | Методы (с DI params) |
| `@named` | Именованный биндинг | Аргумент метода/Аттрибуты класса |
| `@params` | Передача параметров | Аргумент провайдера |
| `@injectable` | Поддержка field injection | Классы |
| `@inject` | Автовнедрение | Аттрибуты класса |
| `@scope` | Scope/realm | Аттрибуты класса |
---
## Полезные ссылки
- [cherrypick](https://pub.dev/packages/cherrypick)
- [cherrypick_annotations](https://pub.dev/packages/cherrypick_annotations)
- [cherrypick_generator](https://pub.dev/packages/cherrypick_generator)
- [Исходники на GitHub](https://github.com/pese-git/cherrypick)

View File

@@ -7,7 +7,7 @@
Binding is a custom instance configurator that contains methods for configuring a dependency.
There are two main methods for initializing a custom instance `toInstance ()` and `toProvide ()` and auxiliary `withName ()` and `singeltone ()`.
There are two main methods for initializing a custom instance `toInstance ()` and `toProvide ()` and auxiliary `withName ()` and `singleton ()`.
`toInstance()` - takes a initialized instance
@@ -15,11 +15,33 @@ There are two main methods for initializing a custom instance `toInstance ()` an
`withName()` - takes a string to name the instance. By this name, it will be possible to extract instance from the DI container
`singeltone()` - sets a flag in the Binding that tells the DI container that there is only one dependency.
`singleton()` - sets a flag in the Binding that tells the DI container that there is only one dependency.
Example:
```dart
```
---
## Advanced: Customizing Code Generation Output
You can configure where generated files will be placed by updating your `build.yaml` (supports `output_dir` and `build_extensions`):
```yaml
targets:
$default:
builders:
cherrypick_generator|inject_generator:
options:
output_dir: lib/generated
cherrypick_generator|module_generator:
options:
output_dir: lib/generated
```
For full control and more examples, see the "Full Tutorial" or documentation on `build_extensions`.
---
// initializing a text string instance through a method toInstance()
Binding<String>().toInstance("hello world");
@@ -36,7 +58,7 @@ Example:
// instance initialization like singleton
Binding<String>().toInstance("hello world");
// or
Binding<String>().toProvide(() => "hello world").singeltone();
Binding<String>().toProvide(() => "hello world").singleton();
```
@@ -85,8 +107,7 @@ Example:
```dart
import 'dart:async';
import 'package:meta/meta.dart';
import 'package:cherrypick/scope.dart';
import 'package:cherrypick/module.dart';
import 'package:cherrypick/cherrypick.dart';
class AppModule extends Module {
@override
@@ -112,7 +133,7 @@ class FeatureModule extends Module {
),
),
)
.singeltone();
.singleton();
bind<DataBloc>().toProvide(
() => DataBloc(
currentScope.resolve<DataRepository>(named: "networkRepo"),

View File

@@ -7,7 +7,7 @@
Binding - по сути это конфигуратор для пользовательского instance, который соддержит методы для конфигурирования зависимости.
Есть два основных метода для инициализации пользовательского instance `toInstance()` и `toProvide()` и вспомогательных `withName()` и `singeltone()`.
Есть два основных метода для инициализации пользовательского instance `toInstance()` и `toProvide()` и вспомогательных `withName()` и `singleton()`.
`toInstance()` - принимает готовый экземпляр
@@ -15,11 +15,33 @@ Binding - по сути это конфигуратор для пользов
`withName()` - принимает строку для именования экземпляра. По этому имени можно будет извлечь instance из DI контейнера
`singeltone()` - устанавливает флаг в Binding, который говорит DI контейнеру, что зависимость одна.
`singleton()` - устанавливает флаг в Binding, который говорит DI контейнеру, что зависимость одна.
Пример:
```dart
```
---
## Продвинутая настройка генерации кода
В файле `build.yaml` можно задать папку для сгенерированных файлов через параметр `output_dir` (а также использовать шаблон `build_extensions`):
```yaml
targets:
$default:
builders:
cherrypick_generator|inject_generator:
options:
output_dir: lib/generated
cherrypick_generator|module_generator:
options:
output_dir: lib/generated
```
Для полной настройки и шаблонов см. раздел “Полный гайд” или документацию по `build_extensions`.
---
// инициализация экземпляра текстовой строки через метод toInstance()
Binding<String>().toInstance("hello world");
@@ -36,7 +58,7 @@ Binding - по сути это конфигуратор для пользов
// инициализация экземпляра, как сингелтон
Binding<String>().toInstance("hello world");
// или
Binding<String>().toProvide(() => "hello world").singeltone();
Binding<String>().toProvide(() => "hello world").singleton();
```
@@ -85,8 +107,7 @@ Scope - это контейнер, который хранит все дерев
```dart
import 'dart:async';
import 'package:meta/meta.dart';
import 'package:cherrypick/scope.dart';
import 'package:cherrypick/module.dart';
import 'package:cherrypick/cherrypick.dart';
class AppModule extends Module {
@override
@@ -112,7 +133,7 @@ class FeatureModule extends Module {
),
),
)
.singeltone();
.singleton();
bind<DataBloc>().toProvide(
() => DataBloc(
currentScope.resolve<DataRepository>(named: "networkRepo"),

View File

@@ -1,109 +0,0 @@
import 'dart:async';
import 'package:meta/meta.dart';
import 'package:cherrypick/scope.dart';
import 'package:cherrypick/module.dart';
class AppModule extends Module {
@override
void builder(Scope currentScope) {
bind<ApiClient>().withName('apiClientMock').toInstance(ApiClientMock());
bind<ApiClient>().withName('apiClientImpl').toInstance(ApiClientImpl());
}
}
class FeatureModule extends Module {
bool isMock;
FeatureModule({required this.isMock});
@override
void builder(Scope currentScope) {
bind<DataRepository>()
.withName('networkRepo')
.toProvide(
() => NetworkDataRepository(
currentScope.resolve<ApiClient>(
named: isMock ? 'apiClientMock' : 'apiClientImpl',
),
),
)
.singeltone();
bind<DataBloc>().toProvide(
() => DataBloc(
currentScope.resolve<DataRepository>(named: 'networkRepo'),
),
);
}
}
void main() async {
final scope = openRootScope().installModules([
AppModule(),
]);
final subScope = scope
.openSubScope('featureScope')
.installModules([FeatureModule(isMock: true)]);
final dataBloc = subScope.resolve<DataBloc>();
dataBloc.data.listen((d) => print('Received data: $d'),
onError: (e) => print('Error: $e'), onDone: () => print('DONE'));
await dataBloc.fetchData();
}
class DataBloc {
final DataRepository _dataRepository;
Stream<String> get data => _dataController.stream;
final StreamController<String> _dataController = StreamController.broadcast();
DataBloc(this._dataRepository);
Future<void> fetchData() async {
try {
_dataController.sink.add(await _dataRepository.getData());
} catch (e) {
_dataController.sink.addError(e);
}
}
void dispose() {
_dataController.close();
}
}
abstract class DataRepository {
Future<String> getData();
}
class NetworkDataRepository implements DataRepository {
final ApiClient _apiClient;
final _token = 'token';
NetworkDataRepository(this._apiClient);
@override
Future<String> getData() async => await _apiClient.sendRequest(
url: 'www.google.com', token: _token, requestBody: {'type': 'data'});
}
abstract class ApiClient {
Future sendRequest({@required String url, String token, Map requestBody});
}
class ApiClientMock implements ApiClient {
@override
Future sendRequest(
{@required String? url, String? token, Map? requestBody}) async {
return 'Local Data';
}
}
class ApiClientImpl implements ApiClient {
@override
Future sendRequest(
{@required String? url, String? token, Map? requestBody}) async {
return 'Network data';
}
}

53
examples/client_app/.gitignore vendored Normal file
View File

@@ -0,0 +1,53 @@
# Miscellaneous
*.class
*.log
*.pyc
*.swp
.DS_Store
.atom/
.buildlog/
.history
.svn/
migrate_working_dir/
# IntelliJ related
*.iml
*.ipr
*.iws
.idea/
# The .vscode folder contains launch configuration and tasks you configure in
# VS Code which you may wish to be included in version control, so this line
# is commented out by default.
#.vscode/
# Flutter/Dart/Pub related
**/doc/api/
**/ios/Flutter/.last_build_id
.dart_tool/
.flutter-plugins
.flutter-plugins-dependencies
.pub-cache/
.pub/
/build/
# Symbolication related
app.*.symbols
# Obfuscation related
app.*.map.json
# Android Studio will place build artifacts here
/android/app/debug
/android/app/profile
/android/app/release
pubspec_overrides.yaml
**/*.g.dart
**/*.gr.dart
**/*.freezed.dart
**/*.cherrypick_injectable.g.dart

View File

@@ -0,0 +1,30 @@
# This file tracks properties of this Flutter project.
# Used by Flutter tool to assess capabilities and perform upgrades etc.
#
# This file should be version controlled and should not be manually edited.
version:
revision: "4cf269e36de2573851eaef3c763994f8f9be494d"
channel: "stable"
project_type: app
# Tracks metadata for the flutter migrate command
migration:
platforms:
- platform: root
create_revision: 4cf269e36de2573851eaef3c763994f8f9be494d
base_revision: 4cf269e36de2573851eaef3c763994f8f9be494d
- platform: web
create_revision: 4cf269e36de2573851eaef3c763994f8f9be494d
base_revision: 4cf269e36de2573851eaef3c763994f8f9be494d
# User provided section
# List of Local paths (relative to this file) that should be
# ignored by the migrate tool.
#
# Files that are not part of the templates will be ignored by default.
unmanaged_files:
- 'lib/main.dart'
- 'ios/Runner.xcodeproj/project.pbxproj'

View File

@@ -0,0 +1,16 @@
# client_app
A new Flutter project.
## Getting Started
This project is a starting point for a Flutter application.
A few resources to get you started if this is your first Flutter project:
- [Lab: Write your first Flutter app](https://docs.flutter.dev/get-started/codelab)
- [Cookbook: Useful Flutter samples](https://docs.flutter.dev/cookbook)
For help getting started with Flutter development, view the
[online documentation](https://docs.flutter.dev/), which offers tutorials,
samples, guidance on mobile development, and a full API reference.

View File

@@ -0,0 +1,28 @@
# This file configures the analyzer, which statically analyzes Dart code to
# check for errors, warnings, and lints.
#
# The issues identified by the analyzer are surfaced in the UI of Dart-enabled
# IDEs (https://dart.dev/tools#ides-and-editors). The analyzer can also be
# invoked from the command line by running `flutter analyze`.
# The following line activates a set of recommended lints for Flutter apps,
# packages, and plugins designed to encourage good coding practices.
include: package:flutter_lints/flutter.yaml
linter:
# The lint rules applied to this project can be customized in the
# section below to disable rules from the `package:flutter_lints/flutter.yaml`
# included above or to enable additional rules. A list of all available lints
# and their documentation is published at https://dart.dev/lints.
#
# Instead of disabling a lint rule for the entire project in the
# section below, it can also be suppressed for a single line of code
# or a specific dart file by using the `// ignore: name_of_lint` and
# `// ignore_for_file: name_of_lint` syntax on the line or in the file
# producing the lint.
rules:
# avoid_print: false # Uncomment to disable the `avoid_print` rule
# prefer_single_quotes: true # Uncomment to enable the `prefer_single_quotes` rule
# Additional information about this file can be found at
# https://dart.dev/guides/language/analysis-options

View File

@@ -0,0 +1,30 @@
import 'package:cherrypick/cherrypick.dart';
import 'package:client_app/my_home_page.dart';
import 'package:flutter/material.dart';
import 'package:cherrypick_flutter/cherrypick_flutter.dart';
void main() {
// Здесь происходит инициализация рутового скоупа и привязка зависимостей
CherryPick.openRootScope().installModules([
// Создаем модуль, который будет предоставлять UseCase
]);
runApp(
const CherryPickProvider(
child: MyApp(),
),
);
}
class MyApp extends StatelessWidget {
const MyApp({super.key});
@override
Widget build(BuildContext context) {
return CherryPickProvider(
child: MaterialApp(
home: MyHomePage(),
),
);
}
}

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