mirror of
https://github.com/spring-projects/spring-framework
synced 2026-06-08 17:33:33 +00:00
Compare commits
1 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| 6ffc44db78 |
@@ -1,5 +1,5 @@
|
||||
<!--
|
||||
!!! For Security Vulnerabilities, please go to https://spring.io/security-policy !!!
|
||||
!!! For Security Vulnerabilities, please go to https://pivotal.io/security !!!
|
||||
-->
|
||||
**Affects:** \<Spring Framework version>
|
||||
|
||||
@@ -14,4 +14,4 @@ Thanks for taking the time to create an issue. Please read the following:
|
||||
Issue or Pull Request? Create only one, not both. GitHub treats them as the same.
|
||||
If unsure, start with an issue, and if you submit a pull request later, the
|
||||
issue will be closed as superseded.
|
||||
-->
|
||||
-->
|
||||
@@ -1,33 +0,0 @@
|
||||
name: Send notification
|
||||
description: Sends a Google Chat message as a notification of the job's outcome
|
||||
inputs:
|
||||
webhook-url:
|
||||
description: 'Google Chat Webhook URL'
|
||||
required: true
|
||||
status:
|
||||
description: 'Status of the job'
|
||||
required: true
|
||||
build-scan-url:
|
||||
description: 'URL of the build scan to include in the notification'
|
||||
run-name:
|
||||
description: 'Name of the run to include in the notification'
|
||||
default: ${{ format('{0} {1}', github.ref_name, github.job) }}
|
||||
runs:
|
||||
using: composite
|
||||
steps:
|
||||
- shell: bash
|
||||
run: |
|
||||
echo "BUILD_SCAN=${{ inputs.build-scan-url == '' && ' [build scan unavailable]' || format(' [<{0}|Build Scan>]', inputs.build-scan-url) }}" >> "$GITHUB_ENV"
|
||||
echo "RUN_URL=${{ github.server_url }}/${{ github.repository }}/actions/runs/${{ github.run_id }}" >> "$GITHUB_ENV"
|
||||
- shell: bash
|
||||
if: ${{ inputs.status == 'success' }}
|
||||
run: |
|
||||
curl -X POST '${{ inputs.webhook-url }}' -H 'Content-Type: application/json' -d '{ text: "<${{ env.RUN_URL }}|${{ inputs.run-name }}> was successful ${{ env.BUILD_SCAN }}"}' || true
|
||||
- shell: bash
|
||||
if: ${{ inputs.status == 'failure' }}
|
||||
run: |
|
||||
curl -X POST '${{ inputs.webhook-url }}' -H 'Content-Type: application/json' -d '{ text: "<users/all> *<${{ env.RUN_URL }}|${{ inputs.run-name }}> failed* ${{ env.BUILD_SCAN }}"}' || true
|
||||
- shell: bash
|
||||
if: ${{ inputs.status == 'cancelled' }}
|
||||
run: |
|
||||
curl -X POST '${{ inputs.webhook-url }}' -H 'Content-Type: application/json' -d '{ text: "<${{ env.RUN_URL }}|${{ inputs.run-name }}> was cancelled"}' || true
|
||||
@@ -1,34 +0,0 @@
|
||||
name: Backport Bot
|
||||
|
||||
on:
|
||||
issues:
|
||||
types: [labeled]
|
||||
pull_request:
|
||||
types: [labeled]
|
||||
push:
|
||||
branches:
|
||||
- '*.x'
|
||||
permissions:
|
||||
contents: read
|
||||
jobs:
|
||||
build:
|
||||
permissions:
|
||||
contents: read
|
||||
issues: write
|
||||
pull-requests: write
|
||||
runs-on: ubuntu-latest
|
||||
steps:
|
||||
- name: Check out code
|
||||
uses: actions/checkout@v4
|
||||
- name: Set up Java
|
||||
uses: actions/setup-java@v4
|
||||
with:
|
||||
distribution: 'liberica'
|
||||
java-version: 17
|
||||
- name: Download BackportBot
|
||||
run: wget https://github.com/spring-io/backport-bot/releases/download/latest/backport-bot-0.0.1-SNAPSHOT.jar
|
||||
- name: Backport
|
||||
env:
|
||||
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
|
||||
GITHUB_EVENT: ${{ toJSON(github.event) }}
|
||||
run: java -jar backport-bot-0.0.1-SNAPSHOT.jar --github.accessToken="$GITHUB_TOKEN" --github.event_name "$GITHUB_EVENT_NAME" --github.event "$GITHUB_EVENT"
|
||||
@@ -1,64 +0,0 @@
|
||||
name: Build and deploy snapshot
|
||||
on:
|
||||
push:
|
||||
branches:
|
||||
- 6.1.x
|
||||
concurrency:
|
||||
group: ${{ github.workflow }}-${{ github.ref }}
|
||||
jobs:
|
||||
build-and-deploy-snapshot:
|
||||
if: ${{ github.repository == 'spring-projects/spring-framework' }}
|
||||
name: Build and deploy snapshot
|
||||
runs-on: ubuntu-latest
|
||||
steps:
|
||||
- name: Set up Java
|
||||
uses: actions/setup-java@v4
|
||||
with:
|
||||
distribution: 'liberica'
|
||||
java-version: 17
|
||||
- name: Check out code
|
||||
uses: actions/checkout@v4
|
||||
- name: Set up Gradle
|
||||
uses: gradle/actions/setup-gradle@417ae3ccd767c252f5661f1ace9f835f9654f2b5
|
||||
with:
|
||||
cache-read-only: false
|
||||
- name: Configure Gradle properties
|
||||
shell: bash
|
||||
run: |
|
||||
mkdir -p $HOME/.gradle
|
||||
echo 'systemProp.user.name=spring-builds+github' >> $HOME/.gradle/gradle.properties
|
||||
echo 'systemProp.org.gradle.internal.launcher.welcomeMessageEnabled=false' >> $HOME/.gradle/gradle.properties
|
||||
echo 'org.gradle.daemon=false' >> $HOME/.gradle/gradle.properties
|
||||
echo 'org.gradle.daemon=4' >> $HOME/.gradle/gradle.properties
|
||||
- name: Build and publish
|
||||
id: build
|
||||
env:
|
||||
CI: 'true'
|
||||
GRADLE_ENTERPRISE_URL: 'https://ge.spring.io'
|
||||
GRADLE_ENTERPRISE_ACCESS_KEY: ${{ secrets.GRADLE_ENTERPRISE_SECRET_ACCESS_KEY }}
|
||||
GRADLE_ENTERPRISE_CACHE_USERNAME: ${{ secrets.GRADLE_ENTERPRISE_CACHE_USER }}
|
||||
GRADLE_ENTERPRISE_CACHE_PASSWORD: ${{ secrets.GRADLE_ENTERPRISE_CACHE_PASSWORD }}
|
||||
run: ./gradlew -PdeploymentRepository=$(pwd)/deployment-repository build publishAllPublicationsToDeploymentRepository
|
||||
- name: Deploy
|
||||
uses: spring-io/artifactory-deploy-action@v0.0.1
|
||||
with:
|
||||
uri: 'https://repo.spring.io'
|
||||
username: ${{ secrets.ARTIFACTORY_USERNAME }}
|
||||
password: ${{ secrets.ARTIFACTORY_PASSWORD }}
|
||||
build-name: ${{ format('spring-framework-{0}', github.ref_name)}}
|
||||
repository: 'libs-snapshot-local'
|
||||
folder: 'deployment-repository'
|
||||
signing-key: ${{ secrets.GPG_PRIVATE_KEY }}
|
||||
signing-passphrase: ${{ secrets.GPG_PASSPHRASE }}
|
||||
artifact-properties: |
|
||||
/**/framework-api-*.zip::zip.name=spring-framework,zip.deployed=false
|
||||
/**/framework-api-*-docs.zip::zip.type=docs
|
||||
/**/framework-api-*-schema.zip::zip.type=schema
|
||||
- name: Send notification
|
||||
uses: ./.github/actions/send-notification
|
||||
if: always()
|
||||
with:
|
||||
webhook-url: ${{ secrets.GOOGLE_CHAT_WEBHOOK_URL }}
|
||||
status: ${{ job.status }}
|
||||
build-scan-url: ${{ steps.build.outputs.build-scan-url }}
|
||||
run-name: ${{ format('{0} | Linux | Java 17', github.ref_name) }}
|
||||
@@ -1,80 +0,0 @@
|
||||
name: CI
|
||||
on:
|
||||
push:
|
||||
branches:
|
||||
- 6.1.x
|
||||
concurrency:
|
||||
group: ${{ github.workflow }}-${{ github.ref }}
|
||||
jobs:
|
||||
ci:
|
||||
if: ${{ github.repository == 'spring-projects/spring-framework' }}
|
||||
strategy:
|
||||
matrix:
|
||||
os:
|
||||
- id: ubuntu-latest
|
||||
name: Linux
|
||||
java:
|
||||
- version: 17
|
||||
toolchain: false
|
||||
- version: 21
|
||||
toolchain: true
|
||||
exclude:
|
||||
- os:
|
||||
name: Linux
|
||||
java:
|
||||
version: 17
|
||||
name: '${{ matrix.os.name}} | Java ${{ matrix.java.version}}'
|
||||
runs-on: ${{ matrix.os.id }}
|
||||
steps:
|
||||
- name: Set up Java
|
||||
uses: actions/setup-java@v4
|
||||
with:
|
||||
distribution: 'liberica'
|
||||
java-version: |
|
||||
${{ matrix.java.version }}
|
||||
${{ matrix.java.toolchain && '17' || '' }}
|
||||
- name: Prepare Windows runner
|
||||
if: ${{ runner.os == 'Windows' }}
|
||||
run: |
|
||||
git config --global core.autocrlf true
|
||||
git config --global core.longPaths true
|
||||
Stop-Service -name Docker
|
||||
- name: Check out code
|
||||
uses: actions/checkout@v4
|
||||
- name: Set up Gradle
|
||||
uses: gradle/actions/setup-gradle@417ae3ccd767c252f5661f1ace9f835f9654f2b5
|
||||
with:
|
||||
cache-read-only: false
|
||||
- name: Configure Gradle properties
|
||||
shell: bash
|
||||
run: |
|
||||
mkdir -p $HOME/.gradle
|
||||
echo 'systemProp.user.name=spring-builds+github' >> $HOME/.gradle/gradle.properties
|
||||
echo 'systemProp.org.gradle.internal.launcher.welcomeMessageEnabled=false' >> $HOME/.gradle/gradle.properties
|
||||
echo 'org.gradle.daemon=false' >> $HOME/.gradle/gradle.properties
|
||||
echo 'org.gradle.daemon=4' >> $HOME/.gradle/gradle.properties
|
||||
- name: Configure toolchain properties
|
||||
if: ${{ matrix.java.toolchain }}
|
||||
shell: bash
|
||||
run: |
|
||||
echo toolchainVersion=${{ matrix.java.version }} >> $HOME/.gradle/gradle.properties
|
||||
echo systemProp.org.gradle.java.installations.auto-detect=false >> $HOME/.gradle/gradle.properties
|
||||
echo systemProp.org.gradle.java.installations.auto-download=false >> $HOME/.gradle/gradle.properties
|
||||
echo systemProp.org.gradle.java.installations.paths=${{ format('$JAVA_HOME_{0}_X64', matrix.java.version) }} >> $HOME/.gradle/gradle.properties
|
||||
- name: Build
|
||||
id: build
|
||||
env:
|
||||
CI: 'true'
|
||||
GRADLE_ENTERPRISE_URL: 'https://ge.spring.io'
|
||||
GRADLE_ENTERPRISE_ACCESS_KEY: ${{ secrets.GRADLE_ENTERPRISE_SECRET_ACCESS_KEY }}
|
||||
GRADLE_ENTERPRISE_CACHE_USERNAME: ${{ secrets.GRADLE_ENTERPRISE_CACHE_USER }}
|
||||
GRADLE_ENTERPRISE_CACHE_PASSWORD: ${{ secrets.GRADLE_ENTERPRISE_CACHE_PASSWORD }}
|
||||
run: ./gradlew check antora
|
||||
- name: Send notification
|
||||
uses: ./.github/actions/send-notification
|
||||
if: always()
|
||||
with:
|
||||
webhook-url: ${{ secrets.GOOGLE_CHAT_WEBHOOK_URL }}
|
||||
status: ${{ job.status }}
|
||||
build-scan-url: ${{ steps.build.outputs.build-scan-url }}
|
||||
run-name: ${{ format('{0} | {1} | Java {2}', github.ref_name, matrix.os.name, matrix.java.version) }}
|
||||
@@ -1,34 +0,0 @@
|
||||
name: Deploy Docs
|
||||
on:
|
||||
push:
|
||||
branches:
|
||||
- 'main'
|
||||
- '*.x'
|
||||
- '!gh-pages'
|
||||
tags:
|
||||
- 'v*'
|
||||
repository_dispatch:
|
||||
types: request-build-reference # legacy
|
||||
workflow_dispatch:
|
||||
permissions:
|
||||
actions: write
|
||||
jobs:
|
||||
build:
|
||||
runs-on: ubuntu-latest
|
||||
if: github.repository_owner == 'spring-projects'
|
||||
steps:
|
||||
- name: Check out code
|
||||
uses: actions/checkout@v4
|
||||
with:
|
||||
ref: docs-build
|
||||
fetch-depth: 1
|
||||
- name: Dispatch (partial build)
|
||||
if: github.ref_type == 'branch'
|
||||
env:
|
||||
GH_TOKEN: ${{ secrets.GITHUB_TOKEN }}
|
||||
run: gh workflow run deploy-docs.yml -r $(git rev-parse --abbrev-ref HEAD) -f build-refname=${{ github.ref_name }}
|
||||
- name: Dispatch (full build)
|
||||
if: github.ref_type == 'tag'
|
||||
env:
|
||||
GH_TOKEN: ${{ secrets.GITHUB_TOKEN }}
|
||||
run: gh workflow run deploy-docs.yml -r $(git rev-parse --abbrev-ref HEAD)
|
||||
@@ -1,13 +1,10 @@
|
||||
name: "Validate Gradle Wrapper"
|
||||
on: [push, pull_request]
|
||||
|
||||
permissions:
|
||||
contents: read
|
||||
|
||||
jobs:
|
||||
validation:
|
||||
name: "Validation"
|
||||
runs-on: ubuntu-latest
|
||||
steps:
|
||||
- uses: actions/checkout@v4
|
||||
- uses: gradle/wrapper-validation-action@v2
|
||||
- uses: actions/checkout@v2
|
||||
- uses: gradle/wrapper-validation-action@v1
|
||||
|
||||
+13
-23
@@ -1,41 +1,35 @@
|
||||
# Miscellaneous
|
||||
*.java.hsp
|
||||
*.sonarj
|
||||
*.sw*
|
||||
.DS_Store
|
||||
.settings
|
||||
.springBeans
|
||||
bin
|
||||
build.sh
|
||||
integration-repo
|
||||
ivy-cache
|
||||
argfile*
|
||||
activemq-data/
|
||||
classes/
|
||||
|
||||
# Log files
|
||||
jxl.log
|
||||
jmx.log
|
||||
derby.log
|
||||
|
||||
# Gradle artifacts
|
||||
spring-test/test-output/
|
||||
.gradle
|
||||
.gradletasknamecache
|
||||
argfile*
|
||||
pom.xml
|
||||
activemq-data/
|
||||
|
||||
classes/
|
||||
/build
|
||||
buildSrc/build
|
||||
/spring-*/build
|
||||
/framework-*/build
|
||||
/spring-core/kotlin-coroutines/build
|
||||
/framework-bom/build
|
||||
/integration-tests/build
|
||||
/src/asciidoc/build
|
||||
spring-test/test-output/
|
||||
|
||||
# Maven artifacts
|
||||
pom.xml
|
||||
/target/
|
||||
target/
|
||||
|
||||
# Eclipse artifacts, including WTP generated manifests
|
||||
bin
|
||||
.classpath
|
||||
.project
|
||||
.settings
|
||||
.springBeans
|
||||
spring-*/src/main/java/META-INF/MANIFEST.MF
|
||||
|
||||
# IDEA artifacts and output dirs
|
||||
@@ -46,8 +40,4 @@ spring-*/src/main/java/META-INF/MANIFEST.MF
|
||||
out
|
||||
test-output
|
||||
atlassian-ide-plugin.xml
|
||||
|
||||
# VS Code
|
||||
.vscode/
|
||||
|
||||
cached-antora-playbook.yml
|
||||
.gradletasknamecache
|
||||
|
||||
@@ -0,0 +1,23 @@
|
||||
Juergen Hoeller <jhoeller@pivotal.io> jhoeller <jhoeller@vmware.com>
|
||||
<jhoeller@pivotal.io> <jhoeller@vmware.com>
|
||||
<jhoeller@pivotal.io> <jhoeller@gopivotal.com>
|
||||
<rstoyanchev@pivotal.io> <rstoyanchev@vmware.com>
|
||||
<rstoyanchev@pivotal.io> <rstoyanchev@gopivotal.com>
|
||||
<pwebb@pivotal.io> <pwebb@vmware.com>
|
||||
<pwebb@pivotal.io> <pwebb@gopivotal.com>
|
||||
<cbeams@pivotal.io> <cbeams@vmware.com>
|
||||
<cbeams@pivotal.io> <cbeams@gopivotal.com>
|
||||
<cbeams@pivotal.io> <cbeams@gmail.com>
|
||||
<apoutsma@pivotal.io> <apoutsma@vmware.com>
|
||||
<apoutsma@pivotal.io> <apoutsma@gopivotal.com>
|
||||
<apoutsma@pivotal.io> <poutsma@mac.com>
|
||||
<ogierke@pivotal.io> <ogierke@vmware.com>
|
||||
<ogierke@pivotal.io> <ogierke@gopivotal.com>
|
||||
<dsyer@pivotal.io> <dsyer@vmware.com>
|
||||
<dsyer@pivotal.io> <dsyer@gopivotal.com>
|
||||
<dsyer@pivotal.io> <david_syer@hotmail.com>
|
||||
<aclement@pivotal.io> <aclement@vmware.com>
|
||||
<aclement@pivotal.io> <aclement@gopivotal.com>
|
||||
<aclement@pivotal.io> <andrew.clement@gmail.com>
|
||||
<dmitry.katsubo@gmail.com> <dmitry.katsubo@gmai.com>
|
||||
Nick Williams <nicholas@nicholaswilliams.net> Nicholas Williams <nicholas@nicholaswilliams.net>
|
||||
@@ -1,3 +0,0 @@
|
||||
# Enable auto-env through the sdkman_auto_env config
|
||||
# Add key=value pairs of SDKs to use below
|
||||
java=17.0.10-librca
|
||||
+20
-21
@@ -6,7 +6,7 @@ First off, thank you for taking the time to contribute! :+1: :tada:
|
||||
|
||||
* [Code of Conduct](#code-of-conduct)
|
||||
* [How to Contribute](#how-to-contribute)
|
||||
* [Ask questions](#ask-questions)
|
||||
* [Discuss](#discuss)
|
||||
* [Create an Issue](#create-an-issue)
|
||||
* [Issue Lifecycle](#issue-lifecycle)
|
||||
* [Submit a Pull Request](#submit-a-pull-request)
|
||||
@@ -22,10 +22,11 @@ Please report unacceptable behavior to spring-code-of-conduct@pivotal.io.
|
||||
|
||||
### How to Contribute
|
||||
|
||||
#### Ask questions
|
||||
#### Discuss
|
||||
|
||||
If you have a question, check Stack Overflow using
|
||||
[this list of tags](https://stackoverflow.com/questions/tagged/spring+or+spring-mvc+or+spring-aop+or+spring-jdbc+or+spring-transactions+or+spring-annotations+or+spring-jms+or+spring-el+or+spring-test+or+spring+or+spring-remoting+or+spring-orm+or+spring-jmx+or+spring-cache+or+spring-webflux?tab=Newest). Find an existing discussion, or start a new one if necessary.
|
||||
[this list of tags](https://stackoverflow.com/questions/tagged/spring+or+spring-mvc+or+spring-aop+or+spring-jdbc+or+spring-transactions+or+spring-annotations+or+spring-jms+or+spring-el+or+spring-test+or+spring+or+spring-remoting+or+spring-orm+or+spring-jmx+or+spring-cache+or+spring-webflux?tab=Newest).
|
||||
Find an existing discussion, or start a new one if necessary.
|
||||
|
||||
If you believe there is an issue, search through
|
||||
[existing issues](https://github.com/spring-projects/spring-framework/issues) trying a
|
||||
@@ -38,18 +39,14 @@ decision.
|
||||
|
||||
Reporting an issue or making a feature request is a great way to contribute. Your feedback
|
||||
and the conversations that result from it provide a continuous flow of ideas. However,
|
||||
before creating a ticket, please take the time to [ask and research](#ask-questions) first.
|
||||
before creating a ticket, please take the time to [discuss and research](#discuss) first.
|
||||
|
||||
If you create an issue after a discussion on Stack Overflow, please provide a description
|
||||
If creating an issue after a discussion on Stack Overflow, please provide a description
|
||||
in the issue instead of simply referring to Stack Overflow. The issue tracker is an
|
||||
important place of record for design discussions and should be self-sufficient.
|
||||
|
||||
Once you're ready, create an issue on [GitHub](https://github.com/spring-projects/spring-framework/issues).
|
||||
|
||||
Many issues are caused by subtle behavior, typos, and unintended configuration.
|
||||
Creating a [Minimal Reproducible Example](https://stackoverflow.com/help/minimal-reproducible-example)
|
||||
(starting with https://start.spring.io for example) of the problem helps the team
|
||||
quickly triage your issue and get to the core of the problem.
|
||||
Once you're ready, create an issue on
|
||||
[GitHub](https://github.com/spring-projects/spring-framework/issues).
|
||||
|
||||
#### Issue Lifecycle
|
||||
|
||||
@@ -66,7 +63,7 @@ follow-up reports will need to be created as new issues with a fresh description
|
||||
#### Submit a Pull Request
|
||||
|
||||
1. If you have not previously done so, please sign the
|
||||
[Contributor License Agreement](https://cla.spring.io/sign/spring). You will be reminded
|
||||
[Contributor License Agreement](https://cla.pivotal.io/sign/spring). You will be reminded
|
||||
automatically when you submit the PR.
|
||||
|
||||
1. Should you create an issue first? No, just create the pull request and use the
|
||||
@@ -75,7 +72,7 @@ to start a discussion first or have already created an issue, once a pull reques
|
||||
created, we will close the issue as superseded by the pull request, and the discussion
|
||||
about the issue will continue under the pull request.
|
||||
|
||||
1. Always check out the `main` branch and submit pull requests against it
|
||||
1. Always check out the `master` branch and submit pull requests against it
|
||||
(for target version see [settings.gradle](settings.gradle)).
|
||||
Backports to prior versions will be considered on a case-by-case basis and reflected as
|
||||
the fix version in the issue tracker.
|
||||
@@ -123,13 +120,15 @@ define the source file coding standards we use along with some IDEA editor setti
|
||||
|
||||
### Reference Docs
|
||||
|
||||
The reference documentation is authored in [Asciidoctor](https://asciidoctor.org/) format
|
||||
using [Antora](https://docs.antora.org/antora/latest/). The source files for the documentation
|
||||
reside in the [framework-docs/modules/ROOT](framework-docs/modules/ROOT) directory. For
|
||||
trivial changes, you may be able to browse, edit source files, and submit directly from GitHub.
|
||||
The reference documentation is in the [src/docs/asciidoc](src/docs/asciidoc) directory, in
|
||||
[Asciidoctor](https://asciidoctor.org/) format. For trivial changes, you may be able to browse,
|
||||
edit source files, and submit directly from GitHub.
|
||||
|
||||
When making changes locally, execute `./gradlew antora` and then browse the results under
|
||||
`framework-docs/build/site/index.html`.
|
||||
When making changes locally, execute `./gradlew asciidoctor` and then browse the result under
|
||||
`build/asciidoc/html5/index.html`.
|
||||
|
||||
Asciidoctor also supports live editing. For more details see
|
||||
[AsciiDoc Tooling](https://docs.asciidoctor.org/asciidoctor/latest/tooling/).
|
||||
Asciidoctor also supports live editing. For more details read
|
||||
[Editing AsciiDoc with Live Preview](https://asciidoctor.org/docs/editing-asciidoc-with-live-preview/).
|
||||
Note that if you choose the
|
||||
[System Monitor](https://asciidoctor.org/docs/editing-asciidoc-with-live-preview/#using-a-system-monitor)
|
||||
option, you can find a Guardfile under `src/docs/asciidoc`.
|
||||
|
||||
@@ -1,8 +1,8 @@
|
||||
# <img src="framework-docs/src/docs/spring-framework.png" width="80" height="80"> Spring Framework [](https://github.com/spring-projects/spring-framework/actions/workflows/build-and-deploy-snapshot.yml?query=branch%3A6.1.x) [](https://ge.spring.io/scans?search.rootProjectNames=spring)
|
||||
# <img src="src/docs/spring-framework.png" width="80" height="80"> Spring Framework [](https://ci.spring.io/teams/spring-framework/pipelines/spring-framework-5.3.x?groups=Build")
|
||||
|
||||
This is the home of the Spring Framework: the foundation for all [Spring projects](https://spring.io/projects). Collectively the Spring Framework and the family of Spring projects are often referred to simply as "Spring".
|
||||
|
||||
Spring provides everything required beyond the Java programming language for creating enterprise applications for a wide range of scenarios and architectures. Please read the [Overview](https://docs.spring.io/spring-framework/reference/overview.html) section of the reference documentation for a more complete introduction.
|
||||
Spring provides everything required beyond the Java programming language for creating enterprise applications for a wide range of scenarios and architectures. Please read the [Overview](https://docs.spring.io/spring/docs/current/spring-framework-reference/overview.html#spring-introduction) section as reference for a more complete introduction.
|
||||
|
||||
## Code of Conduct
|
||||
|
||||
@@ -14,24 +14,20 @@ For access to artifacts or a distribution zip, see the [Spring Framework Artifac
|
||||
|
||||
## Documentation
|
||||
|
||||
The Spring Framework maintains reference documentation ([published](https://docs.spring.io/spring-framework/reference/) and [source](framework-docs/modules/ROOT)), GitHub [wiki pages](https://github.com/spring-projects/spring-framework/wiki), and an
|
||||
The Spring Framework maintains reference documentation ([published](https://docs.spring.io/spring-framework/docs/current/spring-framework-reference/) and [source](src/docs/asciidoc)), Github [wiki pages](https://github.com/spring-projects/spring-framework/wiki), and an
|
||||
[API reference](https://docs.spring.io/spring-framework/docs/current/javadoc-api/). There are also [guides and tutorials](https://spring.io/guides) across Spring projects.
|
||||
|
||||
## Micro-Benchmarks
|
||||
|
||||
See the [Micro-Benchmarks](https://github.com/spring-projects/spring-framework/wiki/Micro-Benchmarks) wiki page.
|
||||
See the [Micro-Benchmarks](https://github.com/spring-projects/spring-framework/wiki/Micro-Benchmarks) Wiki page.
|
||||
|
||||
## Build from Source
|
||||
|
||||
See the [Build from Source](https://github.com/spring-projects/spring-framework/wiki/Build-from-Source) wiki page and the [CONTRIBUTING.md](CONTRIBUTING.md) file.
|
||||
|
||||
## Continuous Integration Builds
|
||||
|
||||
Information regarding CI builds can be found in the [Spring Framework Concourse pipeline](ci/README.adoc) documentation.
|
||||
See the [Build from Source](https://github.com/spring-projects/spring-framework/wiki/Build-from-Source) Wiki page and the [CONTRIBUTING.md](CONTRIBUTING.md) file.
|
||||
|
||||
## Stay in Touch
|
||||
|
||||
Follow [@SpringCentral](https://twitter.com/springcentral), [@SpringFramework](https://twitter.com/springframework), and its [team members](https://twitter.com/springframework/lists/team/members) on 𝕏. In-depth articles can be found at [The Spring Blog](https://spring.io/blog/), and releases are announced via our [releases feed](https://spring.io/blog/category/releases).
|
||||
Follow [@SpringCentral](https://twitter.com/springcentral), [@SpringFramework](https://twitter.com/springframework), and its [team members](https://twitter.com/springframework/lists/team/members) on Twitter. In-depth articles can be found at [The Spring Blog](https://spring.io/blog/), and releases are announced via our [news feed](https://spring.io/blog/category/news).
|
||||
|
||||
## License
|
||||
|
||||
|
||||
+1
-6
@@ -1,10 +1,5 @@
|
||||
# Security Policy
|
||||
|
||||
## JAR signing
|
||||
|
||||
Spring Framework JARs released on Maven Central are signed.
|
||||
You'll find more information about the key here: https://spring.io/GPG-KEY-spring.txt
|
||||
|
||||
## Supported Versions
|
||||
|
||||
Please see the
|
||||
@@ -13,4 +8,4 @@ wiki page.
|
||||
|
||||
## Reporting a Vulnerability
|
||||
|
||||
Please see https://spring.io/security-policy.
|
||||
Please see https://pivotal.io/security.
|
||||
|
||||
+384
-77
@@ -1,40 +1,296 @@
|
||||
plugins {
|
||||
id 'io.freefair.aspectj' version '8.4' apply false
|
||||
// kotlinVersion is managed in gradle.properties
|
||||
id 'org.jetbrains.kotlin.plugin.serialization' version "${kotlinVersion}" apply false
|
||||
id 'org.jetbrains.dokka' version '1.8.20'
|
||||
id 'org.unbroken-dome.xjc' version '2.0.0' apply false
|
||||
id 'com.github.ben-manes.versions' version '0.51.0'
|
||||
id 'com.github.johnrengelman.shadow' version '8.1.1' apply false
|
||||
id 'de.undercouch.download' version '5.4.0'
|
||||
id 'me.champeau.jmh' version '0.7.2' apply false
|
||||
id 'me.champeau.mrjar' version '0.1.1'
|
||||
id 'io.spring.dependency-management' version '1.0.9.RELEASE' apply false
|
||||
id 'io.spring.nohttp' version '0.0.5.RELEASE'
|
||||
id 'org.jetbrains.kotlin.jvm' version '1.4.21' apply false
|
||||
id 'org.jetbrains.dokka' version '0.10.1' apply false
|
||||
id 'org.asciidoctor.jvm.convert' version '3.1.0'
|
||||
id 'org.asciidoctor.jvm.pdf' version '3.1.0'
|
||||
id 'de.undercouch.download' version '4.1.1'
|
||||
id "io.freefair.aspectj" version '5.1.1' apply false
|
||||
id "com.github.ben-manes.versions" version '0.28.0'
|
||||
id "me.champeau.gradle.jmh" version "0.5.0" apply false
|
||||
id "org.jetbrains.kotlin.plugin.serialization" version "1.4.21" apply false
|
||||
}
|
||||
|
||||
ext {
|
||||
moduleProjects = subprojects.findAll { it.name.startsWith("spring-") }
|
||||
javaProjects = subprojects.findAll { !it.name.startsWith("framework-") }
|
||||
javaProjects = subprojects - project(":framework-bom")
|
||||
withoutJclOverSlf4j = {
|
||||
exclude group: "org.slf4j", name: "jcl-over-slf4j"
|
||||
}
|
||||
}
|
||||
|
||||
description = "Spring Framework"
|
||||
|
||||
configure(allprojects) { project ->
|
||||
apply plugin: "org.springframework.build.localdev"
|
||||
group = "org.springframework"
|
||||
repositories {
|
||||
mavenCentral()
|
||||
maven {
|
||||
url "https://repo.spring.io/milestone"
|
||||
content {
|
||||
// Netty 5 optional support
|
||||
includeGroup 'io.projectreactor.netty'
|
||||
apply plugin: "io.spring.dependency-management"
|
||||
|
||||
dependencyManagement {
|
||||
imports {
|
||||
mavenBom "com.fasterxml.jackson:jackson-bom:2.12.0"
|
||||
mavenBom "io.netty:netty-bom:4.1.54.Final"
|
||||
mavenBom "io.projectreactor:reactor-bom:2020.0.2"
|
||||
mavenBom "io.r2dbc:r2dbc-bom:Arabba-SR8"
|
||||
mavenBom "io.rsocket:rsocket-bom:1.1.0"
|
||||
mavenBom "org.eclipse.jetty:jetty-bom:9.4.35.v20201120"
|
||||
mavenBom "org.jetbrains.kotlin:kotlin-bom:1.4.21"
|
||||
mavenBom "org.jetbrains.kotlinx:kotlinx-coroutines-bom:1.4.2"
|
||||
mavenBom "org.junit:junit-bom:5.7.0"
|
||||
}
|
||||
dependencies {
|
||||
dependencySet(group: 'org.apache.logging.log4j', version: '2.14.0') {
|
||||
entry 'log4j-api'
|
||||
entry 'log4j-core'
|
||||
entry 'log4j-jul'
|
||||
entry 'log4j-slf4j-impl'
|
||||
}
|
||||
dependency "org.slf4j:slf4j-api:1.7.30"
|
||||
dependency("com.google.code.findbugs:findbugs:3.0.1") {
|
||||
exclude group: "dom4j", name: "dom4j"
|
||||
}
|
||||
dependency "com.google.code.findbugs:jsr305:3.0.2"
|
||||
|
||||
dependencySet(group: 'org.aspectj', version: '1.9.6') {
|
||||
entry 'aspectjrt'
|
||||
entry 'aspectjtools'
|
||||
entry 'aspectjweaver'
|
||||
}
|
||||
dependencySet(group: 'org.codehaus.groovy', version: '3.0.7') {
|
||||
entry 'groovy'
|
||||
entry 'groovy-jsr223'
|
||||
entry 'groovy-templates' // requires findbugs for warning-free compilation
|
||||
entry 'groovy-test'
|
||||
entry 'groovy-xml'
|
||||
}
|
||||
|
||||
dependency "io.reactivex:rxjava:1.3.8"
|
||||
dependency "io.reactivex:rxjava-reactive-streams:1.2.1"
|
||||
dependency "io.reactivex.rxjava2:rxjava:2.2.19"
|
||||
dependency "io.reactivex.rxjava3:rxjava:3.0.8"
|
||||
dependency "io.projectreactor.tools:blockhound:1.0.4.RELEASE"
|
||||
|
||||
dependency "com.caucho:hessian:4.0.63"
|
||||
dependency "com.fasterxml:aalto-xml:1.2.2"
|
||||
dependency("com.fasterxml.woodstox:woodstox-core:6.2.3") {
|
||||
exclude group: "stax", name: "stax-api"
|
||||
}
|
||||
dependency "com.google.code.gson:gson:2.8.6"
|
||||
dependency "com.google.protobuf:protobuf-java-util:3.14.0"
|
||||
dependency "com.googlecode.protobuf-java-format:protobuf-java-format:1.4"
|
||||
dependency("com.thoughtworks.xstream:xstream:1.4.14") {
|
||||
exclude group: "xpp3", name: "xpp3_min"
|
||||
exclude group: "xmlpull", name: "xmlpull"
|
||||
}
|
||||
dependency "org.apache.johnzon:johnzon-jsonb:1.2.8"
|
||||
dependency("org.codehaus.jettison:jettison:1.3.8") {
|
||||
exclude group: "stax", name: "stax-api"
|
||||
}
|
||||
dependencySet(group: 'org.jibx', version: '1.3.3') {
|
||||
entry 'jibx-bind'
|
||||
entry 'jibx-run'
|
||||
}
|
||||
dependency "org.ogce:xpp3:1.1.6"
|
||||
dependency "org.yaml:snakeyaml:1.27"
|
||||
dependencySet(group: 'org.jetbrains.kotlinx', version: '1.0.0') {
|
||||
entry 'kotlinx-serialization-core'
|
||||
entry 'kotlinx-serialization-json'
|
||||
}
|
||||
|
||||
dependency "com.h2database:h2:1.4.200"
|
||||
dependency "com.github.ben-manes.caffeine:caffeine:2.8.6"
|
||||
dependency "com.github.librepdf:openpdf:1.3.23"
|
||||
dependency "com.rometools:rome:1.15.0"
|
||||
dependency "commons-io:commons-io:2.5"
|
||||
dependency "io.vavr:vavr:0.10.3"
|
||||
dependency "net.sf.jopt-simple:jopt-simple:5.0.4"
|
||||
dependencySet(group: 'org.apache.activemq', version: '5.16.0') {
|
||||
entry 'activemq-broker'
|
||||
entry('activemq-kahadb-store') {
|
||||
exclude group: "org.springframework", name: "spring-context"
|
||||
}
|
||||
entry 'activemq-stomp'
|
||||
}
|
||||
dependency "org.apache.bcel:bcel:6.0"
|
||||
dependency "org.apache.commons:commons-pool2:2.9.0"
|
||||
dependencySet(group: 'org.apache.derby', version: '10.14.2.0') {
|
||||
entry 'derby'
|
||||
entry 'derbyclient'
|
||||
}
|
||||
dependency "org.apache.poi:poi-ooxml:4.1.2"
|
||||
dependency "org.apache-extras.beanshell:bsh:2.0b6"
|
||||
dependency "org.freemarker:freemarker:2.3.30"
|
||||
dependency "org.hsqldb:hsqldb:2.5.1"
|
||||
dependency "org.quartz-scheduler:quartz:2.3.2"
|
||||
dependency "org.codehaus.fabric3.api:commonj:1.1.0"
|
||||
dependency "net.sf.ehcache:ehcache:2.10.6"
|
||||
dependency "org.ehcache:jcache:1.0.1"
|
||||
dependency "org.ehcache:ehcache:3.4.0"
|
||||
dependency "org.hibernate:hibernate-core:5.4.25.Final"
|
||||
dependency "org.hibernate:hibernate-validator:6.1.6.Final"
|
||||
dependency "org.webjars:webjars-locator-core:0.46"
|
||||
dependency "org.webjars:underscorejs:1.8.3"
|
||||
|
||||
dependencySet(group: 'org.apache.tomcat', version: '9.0.40') {
|
||||
entry 'tomcat-util'
|
||||
entry('tomcat-websocket') {
|
||||
exclude group: "org.apache.tomcat", name: "tomcat-websocket-api"
|
||||
exclude group: "org.apache.tomcat", name: "tomcat-servlet-api"
|
||||
}
|
||||
}
|
||||
dependencySet(group: 'org.apache.tomcat.embed', version: '9.0.40') {
|
||||
entry 'tomcat-embed-core'
|
||||
entry 'tomcat-embed-websocket'
|
||||
}
|
||||
dependencySet(group: 'io.undertow', version: '2.2.3.Final') {
|
||||
entry 'undertow-core'
|
||||
entry('undertow-websockets-jsr') {
|
||||
exclude group: "org.jboss.spec.javax.websocket", name: "jboss-websocket-api_1.1_spec"
|
||||
}
|
||||
entry('undertow-servlet') {
|
||||
exclude group: "org.jboss.spec.javax.servlet", name: "jboss-servlet-api_3.1_spec"
|
||||
exclude group: "org.jboss.spec.javax.annotation", name: "jboss-annotations-api_1.2_spec"
|
||||
}
|
||||
}
|
||||
|
||||
dependencySet(group: 'com.squareup.okhttp3', version: '3.14.9') {
|
||||
entry 'okhttp'
|
||||
entry 'mockwebserver'
|
||||
}
|
||||
dependency("org.apache.httpcomponents:httpclient:4.5.13") {
|
||||
exclude group: "commons-logging", name: "commons-logging"
|
||||
}
|
||||
dependency("org.apache.httpcomponents:httpasyncclient:4.1.4") {
|
||||
exclude group: "commons-logging", name: "commons-logging"
|
||||
}
|
||||
dependency 'org.apache.httpcomponents.client5:httpclient5:5.0.3'
|
||||
dependency 'org.apache.httpcomponents.core5:httpcore5-reactive:5.0.3'
|
||||
dependency "org.eclipse.jetty:jetty-reactive-httpclient:1.1.4"
|
||||
|
||||
dependency "org.jruby:jruby:9.2.13.0"
|
||||
dependency "org.python:jython-standalone:2.7.1"
|
||||
dependency "org.mozilla:rhino:1.7.11"
|
||||
|
||||
dependency "commons-fileupload:commons-fileupload:1.4"
|
||||
dependency "org.synchronoss.cloud:nio-multipart-parser:1.1.0"
|
||||
|
||||
dependency("org.dom4j:dom4j:2.1.3") {
|
||||
exclude group: "jaxen", name: "jaxen"
|
||||
exclude group: "net.java.dev.msv", name: "xsdlib"
|
||||
exclude group: "pull-parser", name: "pull-parser"
|
||||
exclude group: "xpp3", name: "xpp3"
|
||||
}
|
||||
dependency("jaxen:jaxen:1.2.0") {
|
||||
exclude group: "dom4j", name: "dom4j"
|
||||
}
|
||||
|
||||
dependency("junit:junit:4.13.1") {
|
||||
exclude group: "org.hamcrest", name: "hamcrest-core"
|
||||
}
|
||||
dependency("de.bechte.junit:junit-hierarchicalcontextrunner:4.12.1") {
|
||||
exclude group: "junit", name: "junit"
|
||||
}
|
||||
dependency "org.testng:testng:7.3.0"
|
||||
dependency "org.hamcrest:hamcrest:2.1"
|
||||
dependency "org.awaitility:awaitility:3.1.6"
|
||||
dependency "org.assertj:assertj-core:3.18.1"
|
||||
dependencySet(group: 'org.xmlunit', version: '2.6.2') {
|
||||
entry 'xmlunit-assertj'
|
||||
entry('xmlunit-matchers') {
|
||||
exclude group: "org.hamcrest", name: "hamcrest-core"
|
||||
}
|
||||
}
|
||||
dependencySet(group: 'org.mockito', version: '3.6.28') {
|
||||
entry('mockito-core') {
|
||||
exclude group: "org.hamcrest", name: "hamcrest-core"
|
||||
}
|
||||
entry 'mockito-junit-jupiter'
|
||||
}
|
||||
dependency "io.mockk:mockk:1.10.2"
|
||||
|
||||
dependency("net.sourceforge.htmlunit:htmlunit:2.45.0") {
|
||||
exclude group: "commons-logging", name: "commons-logging"
|
||||
}
|
||||
dependency("org.seleniumhq.selenium:htmlunit-driver:2.45.0") {
|
||||
exclude group: "commons-logging", name: "commons-logging"
|
||||
}
|
||||
dependency("org.seleniumhq.selenium:selenium-java:3.141.59") {
|
||||
exclude group: "commons-logging", name: "commons-logging"
|
||||
exclude group: "io.netty", name: "netty"
|
||||
}
|
||||
dependency "org.skyscreamer:jsonassert:1.5.0"
|
||||
dependency "com.jayway.jsonpath:json-path:2.4.0"
|
||||
dependency "org.bouncycastle:bcpkix-jdk15on:1.66"
|
||||
|
||||
dependencySet(group: 'org.apache.tiles', version: '3.0.8') {
|
||||
entry 'tiles-api'
|
||||
entry('tiles-core', withoutJclOverSlf4j)
|
||||
entry('tiles-servlet', withoutJclOverSlf4j)
|
||||
entry('tiles-jsp', withoutJclOverSlf4j)
|
||||
entry('tiles-el', withoutJclOverSlf4j)
|
||||
entry('tiles-extras') {
|
||||
exclude group: "org.springframework", name: "spring-web"
|
||||
exclude group: "org.slf4j", name: "jcl-over-slf4j"
|
||||
}
|
||||
}
|
||||
dependency("org.apache.taglibs:taglibs-standard-jstlel:1.2.5") {
|
||||
exclude group: "org.apache.taglibs", name: "taglibs-standard-spec"
|
||||
}
|
||||
|
||||
dependency "com.ibm.websphere:uow:6.0.2.17"
|
||||
dependency "com.jamonapi:jamon:2.82"
|
||||
dependency "joda-time:joda-time:2.10.6"
|
||||
dependency "org.eclipse.persistence:org.eclipse.persistence.jpa:2.7.7"
|
||||
dependency "org.javamoney:moneta:1.3"
|
||||
|
||||
dependency "com.sun.activation:javax.activation:1.2.0"
|
||||
dependency "com.sun.mail:javax.mail:1.6.2"
|
||||
dependencySet(group: 'com.sun.xml.bind', version: '2.3.0.1') {
|
||||
entry 'jaxb-core'
|
||||
entry 'jaxb-impl'
|
||||
entry 'jaxb-xjc'
|
||||
}
|
||||
|
||||
dependency "javax.activation:javax.activation-api:1.2.0"
|
||||
dependency "javax.annotation:javax.annotation-api:1.3.2"
|
||||
dependency "javax.cache:cache-api:1.1.0"
|
||||
dependency "javax.ejb:javax.ejb-api:3.2"
|
||||
dependency "javax.el:javax.el-api:3.0.1-b04"
|
||||
dependency "javax.enterprise.concurrent:javax.enterprise.concurrent-api:1.0"
|
||||
dependency "javax.faces:javax.faces-api:2.2"
|
||||
dependency "javax.inject:javax.inject:1"
|
||||
dependency "javax.inject:javax.inject-tck:1"
|
||||
dependency "javax.interceptor:javax.interceptor-api:1.2.2"
|
||||
dependency "javax.jms:javax.jms-api:2.0.1"
|
||||
dependency "javax.json:javax.json-api:1.1.4"
|
||||
dependency "javax.json.bind:javax.json.bind-api:1.0"
|
||||
dependency "javax.mail:javax.mail-api:1.6.2"
|
||||
dependency "javax.money:money-api:1.0.3"
|
||||
dependency "javax.resource:javax.resource-api:1.7.1"
|
||||
dependency "javax.servlet:javax.servlet-api:4.0.1"
|
||||
dependency "javax.servlet.jsp:javax.servlet.jsp-api:2.3.2-b02"
|
||||
dependency "javax.servlet.jsp.jstl:javax.servlet.jsp.jstl-api:1.2.1"
|
||||
dependency "javax.transaction:javax.transaction-api:1.3"
|
||||
dependency "javax.validation:validation-api:2.0.1.Final"
|
||||
dependency "javax.websocket:javax.websocket-api:1.1"
|
||||
dependency "javax.xml.bind:jaxb-api:2.3.1"
|
||||
dependency "javax.xml.ws:jaxws-api:2.3.1"
|
||||
|
||||
dependency "org.eclipse.persistence:javax.persistence:2.2.0"
|
||||
|
||||
// Substitute for "javax.management:jmxremote_optional:1.0.1_04" which
|
||||
// is not available on Maven Central
|
||||
dependency "org.glassfish.external:opendmk_jmxremote_optional_jar:1.0-b01-ea"
|
||||
dependency "org.glassfish:javax.el:3.0.1-b08"
|
||||
dependency "org.glassfish.main:javax.jws:4.0-b33"
|
||||
dependency "org.glassfish.tyrus:tyrus-container-servlet:1.13.1"
|
||||
}
|
||||
if (version.contains('-')) {
|
||||
maven { url "https://repo.spring.io/milestone" }
|
||||
generatedPomCustomization {
|
||||
enabled = false
|
||||
}
|
||||
if (version.endsWith('-SNAPSHOT')) {
|
||||
maven { url "https://repo.spring.io/snapshot" }
|
||||
resolutionStrategy {
|
||||
cacheChangingModulesFor 0, "seconds"
|
||||
}
|
||||
repositories {
|
||||
mavenCentral()
|
||||
maven { url "https://repo.spring.io/libs-spring-framework-build" }
|
||||
}
|
||||
}
|
||||
configurations.all {
|
||||
@@ -45,75 +301,126 @@ configure(allprojects) { project ->
|
||||
}
|
||||
}
|
||||
|
||||
configure(allprojects - project(":framework-platform")) {
|
||||
configurations {
|
||||
dependencyManagement {
|
||||
canBeConsumed = false
|
||||
canBeResolved = false
|
||||
visible = false
|
||||
}
|
||||
matching { it.name.endsWith("Classpath") }.all { it.extendsFrom(dependencyManagement) }
|
||||
}
|
||||
dependencies {
|
||||
dependencyManagement(enforcedPlatform(dependencies.project(path: ":framework-platform")))
|
||||
}
|
||||
}
|
||||
|
||||
configure([rootProject] + javaProjects) { project ->
|
||||
group = "org.springframework"
|
||||
|
||||
apply plugin: "java"
|
||||
apply plugin: "java-test-fixtures"
|
||||
apply plugin: 'org.springframework.build.conventions'
|
||||
apply from: "${rootDir}/gradle/toolchains.gradle"
|
||||
apply plugin: "checkstyle"
|
||||
apply plugin: 'org.springframework.build.compile'
|
||||
apply from: "${rootDir}/gradle/custom-java-home.gradle"
|
||||
apply from: "${rootDir}/gradle/ide.gradle"
|
||||
|
||||
pluginManager.withPlugin("kotlin") {
|
||||
apply plugin: "org.jetbrains.dokka"
|
||||
compileKotlin {
|
||||
kotlinOptions {
|
||||
jvmTarget = "1.8"
|
||||
languageVersion = "1.3"
|
||||
apiVersion = "1.3"
|
||||
freeCompilerArgs = ["-Xjsr305=strict"]
|
||||
allWarningsAsErrors = true
|
||||
}
|
||||
}
|
||||
compileTestKotlin {
|
||||
kotlinOptions {
|
||||
jvmTarget = "1.8"
|
||||
freeCompilerArgs = ["-Xjsr305=strict"]
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
test {
|
||||
useJUnitPlatform()
|
||||
include(["**/*Tests.class", "**/*Test.class"])
|
||||
systemProperty("java.awt.headless", "true")
|
||||
systemProperty("testGroups", project.properties.get("testGroups"))
|
||||
systemProperty("io.netty.leakDetection.level", "paranoid")
|
||||
}
|
||||
|
||||
checkstyle {
|
||||
toolVersion = "8.38"
|
||||
configDirectory.set(rootProject.file("src/checkstyle"))
|
||||
}
|
||||
|
||||
dependencies {
|
||||
testImplementation("org.junit.jupiter:junit-jupiter-api")
|
||||
testImplementation("org.junit.jupiter:junit-jupiter-params")
|
||||
testImplementation("org.junit.platform:junit-platform-suite-api")
|
||||
testImplementation("org.mockito:mockito-core")
|
||||
testImplementation("org.mockito:mockito-junit-jupiter")
|
||||
testImplementation("io.mockk:mockk")
|
||||
testImplementation("org.assertj:assertj-core")
|
||||
testCompile("org.junit.jupiter:junit-jupiter-api")
|
||||
testCompile("org.junit.jupiter:junit-jupiter-params")
|
||||
testCompile("org.mockito:mockito-core")
|
||||
testCompile("org.mockito:mockito-junit-jupiter")
|
||||
testCompile("io.mockk:mockk")
|
||||
testCompile("org.assertj:assertj-core")
|
||||
// Pull in the latest JUnit 5 Launcher API to ensure proper support in IDEs.
|
||||
testRuntimeOnly("org.junit.jupiter:junit-jupiter-engine")
|
||||
testRuntimeOnly("org.junit.platform:junit-platform-launcher")
|
||||
testRuntimeOnly("org.junit.platform:junit-platform-suite-engine")
|
||||
testRuntimeOnly("org.apache.logging.log4j:log4j-core")
|
||||
testRuntimeOnly("org.apache.logging.log4j:log4j-jul")
|
||||
testRuntimeOnly("org.apache.logging.log4j:log4j-slf4j2-impl")
|
||||
testRuntime("org.junit.platform:junit-platform-launcher")
|
||||
testRuntime("org.junit.jupiter:junit-jupiter-engine")
|
||||
testRuntime("org.apache.logging.log4j:log4j-core")
|
||||
testRuntime("org.apache.logging.log4j:log4j-slf4j-impl")
|
||||
testRuntime("org.apache.logging.log4j:log4j-jul")
|
||||
// JSR-305 only used for non-required meta-annotations
|
||||
compileOnly("com.google.code.findbugs:jsr305")
|
||||
testCompileOnly("com.google.code.findbugs:jsr305")
|
||||
checkstyle("io.spring.javaformat:spring-javaformat-checkstyle:0.0.15")
|
||||
}
|
||||
|
||||
ext.javadocLinks = [
|
||||
"https://docs.oracle.com/en/java/javase/17/docs/api/",
|
||||
"https://jakarta.ee/specifications/platform/9/apidocs/",
|
||||
"https://docs.oracle.com/cd/E13222_01/wls/docs90/javadocs/", // CommonJ and weblogic.* packages
|
||||
"https://docs.jboss.org/jbossas/javadoc/4.0.5/connector/", // org.jboss.resource.*
|
||||
"https://docs.jboss.org/hibernate/orm/5.6/javadocs/",
|
||||
"https://eclipse.dev/aspectj/doc/released/aspectj5rt-api",
|
||||
"https://docs.oracle.com/javase/8/docs/api/",
|
||||
"https://docs.oracle.com/javaee/7/api/",
|
||||
"https://docs.oracle.com/cd/E13222_01/wls/docs90/javadocs/", // CommonJ
|
||||
"https://www.ibm.com/support/knowledgecenter/SS7JFU_8.5.5/com.ibm.websphere.javadoc.doc/web/apidocs/",
|
||||
"https://glassfish.java.net/nonav/docs/v3/api/",
|
||||
"https://docs.jboss.org/jbossas/javadoc/4.0.5/connector/",
|
||||
"https://docs.jboss.org/jbossas/javadoc/7.1.2.Final/",
|
||||
"https://tiles.apache.org/tiles-request/apidocs/",
|
||||
"https://tiles.apache.org/framework/apidocs/",
|
||||
"https://www.eclipse.org/aspectj/doc/released/aspectj5rt-api/",
|
||||
"https://www.ehcache.org/apidocs/2.10.4/",
|
||||
"https://www.quartz-scheduler.org/api/2.3.0/",
|
||||
"https://fasterxml.github.io/jackson-core/javadoc/2.14/",
|
||||
"https://fasterxml.github.io/jackson-databind/javadoc/2.14/",
|
||||
"https://fasterxml.github.io/jackson-dataformat-xml/javadoc/2.14/",
|
||||
"https://hc.apache.org/httpcomponents-client-5.2.x/current/httpclient5/apidocs/",
|
||||
"https://fasterxml.github.io/jackson-core/javadoc/2.10/",
|
||||
"https://fasterxml.github.io/jackson-databind/javadoc/2.10/",
|
||||
"https://fasterxml.github.io/jackson-dataformat-xml/javadoc/2.10/",
|
||||
"https://hc.apache.org/httpcomponents-client-ga/httpclient/apidocs/",
|
||||
"https://projectreactor.io/docs/test/release/api/",
|
||||
"https://junit.org/junit4/javadoc/4.13.2/",
|
||||
// TODO Uncomment link to JUnit 5 docs once we execute Gradle with Java 18+.
|
||||
// See https://github.com/spring-projects/spring-framework/issues/27497
|
||||
//
|
||||
// "https://junit.org/junit5/docs/5.10.2/api/",
|
||||
"https://www.reactive-streams.org/reactive-streams-1.0.3-javadoc/",
|
||||
//"https://javadoc.io/static/io.rsocket/rsocket-core/1.1.1/",
|
||||
"https://r2dbc.io/spec/1.0.0.RELEASE/api/",
|
||||
// Previously there could be a split-package issue between JSR250 and JSR305 javax.annotation packages,
|
||||
// but since 6.0 JSR 250 annotations such as @Resource and @PostConstruct have been replaced by their
|
||||
// JakartaEE equivalents in the jakarta.annotation package.
|
||||
//"https://www.javadoc.io/doc/com.google.code.findbugs/jsr305/3.0.2/"
|
||||
"https://junit.org/junit4/javadoc/4.13.1/",
|
||||
"https://junit.org/junit5/docs/5.7.0/api/"
|
||||
] as String[]
|
||||
}
|
||||
|
||||
configure(moduleProjects) { project ->
|
||||
apply from: "${rootDir}/gradle/spring-module.gradle"
|
||||
}
|
||||
|
||||
configure(rootProject) {
|
||||
description = "Spring Framework"
|
||||
|
||||
apply plugin: "groovy"
|
||||
apply plugin: "kotlin"
|
||||
apply plugin: "io.spring.nohttp"
|
||||
apply plugin: 'org.springframework.build.api-diff'
|
||||
apply from: "${rootDir}/gradle/publications.gradle"
|
||||
apply from: "${rootDir}/gradle/docs.gradle"
|
||||
|
||||
nohttp {
|
||||
source.exclude "**/test-output/**"
|
||||
allowlistFile = project.file("src/nohttp/allowlist.lines")
|
||||
def rootPath = file(rootDir).toPath()
|
||||
def projectDirs = allprojects.collect { it.projectDir } + "${rootDir}/buildSrc"
|
||||
projectDirs.forEach { dir ->
|
||||
[ 'bin', 'build', 'out', '.settings' ]
|
||||
.collect { rootPath.relativize(new File(dir, it).toPath()) }
|
||||
.forEach { source.exclude "$it/**" }
|
||||
[ '.classpath', '.project' ]
|
||||
.collect { rootPath.relativize(new File(dir, it).toPath()) }
|
||||
.forEach { source.exclude "$it" }
|
||||
}
|
||||
}
|
||||
|
||||
publishing {
|
||||
publications {
|
||||
mavenJava(MavenPublication) {
|
||||
artifact docsZip
|
||||
artifact schemaZip
|
||||
artifact distZip
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
+18
-37
@@ -5,16 +5,19 @@ They are declared in the `build.gradle` file in this folder.
|
||||
|
||||
## Build Conventions
|
||||
|
||||
The `org.springframework.build.conventions` plugin applies all conventions to the Framework build:
|
||||
### Compiler conventions
|
||||
|
||||
* Configuring the Java compiler, see `JavaConventions`
|
||||
* Configuring the Kotlin compiler, see `KotlinConventions`
|
||||
* Configuring testing in the build with `TestConventions`
|
||||
The `org.springframework.build.compile` plugin applies the Java compiler conventions to the build.
|
||||
By default, the build compiles sources with Java `1.8` source and target compatibility.
|
||||
You can test a different source compatibility version on the CLI with a project property like:
|
||||
|
||||
```
|
||||
./gradlew test -PjavaSourceVersion=11
|
||||
```
|
||||
|
||||
## Build Plugins
|
||||
|
||||
### Optional dependencies
|
||||
## Optional dependencies
|
||||
|
||||
The `org.springframework.build.optional-dependencies` plugin creates a new `optional`
|
||||
Gradle configuration - it adds the dependencies to the project's compile and runtime classpath
|
||||
@@ -22,39 +25,17 @@ but doesn't affect the classpath of dependent projects.
|
||||
This plugin does not provide a `provided` configuration, as the native `compileOnly` and `testCompileOnly`
|
||||
configurations are preferred.
|
||||
|
||||
## API Diff
|
||||
|
||||
### RuntimeHints Java Agent
|
||||
This plugin uses the [Gradle JApiCmp](https://github.com/melix/japicmp-gradle-plugin) plugin
|
||||
to generate API Diff reports for each Spring Framework module. This plugin is applied once on the root
|
||||
project and creates tasks in each framework module. Unlike previous versions of this part of the build,
|
||||
there is no need for checking out a specific tag. The plugin will fetch the JARs we want to compare the
|
||||
current working version with. You can generate the reports for all modules or a single module:
|
||||
|
||||
The `spring-core-test` project module contributes the `RuntimeHintsAgent` Java agent.
|
||||
|
||||
The `RuntimeHintsAgentPlugin` Gradle plugin creates a dedicated `"runtimeHintsTest"` test task for each project.
|
||||
This task will detect and execute [tests tagged](https://junit.org/junit5/docs/current/user-guide/#running-tests-build-gradle)
|
||||
with the `"RuntimeHintsTests"` [JUnit tag](https://junit.org/junit5/docs/current/user-guide/#running-tests-tags).
|
||||
In the Spring Framework test suite, those are usually annotated with the `@EnabledIfRuntimeHintsAgent` annotation.
|
||||
|
||||
By default, the agent will instrument all classes located in the `"org.springframework"` package, as they are loaded.
|
||||
The `RuntimeHintsAgentExtension` allows to customize this using a DSL:
|
||||
|
||||
```groovy
|
||||
// this applies the `RuntimeHintsAgentPlugin` to the project
|
||||
plugins {
|
||||
id 'org.springframework.build.runtimehints-agent'
|
||||
}
|
||||
|
||||
// You can configure the agent to include and exclude packages from the instrumentation process.
|
||||
runtimeHintsAgent {
|
||||
includedPackages = ["org.springframework", "io.spring"]
|
||||
excludedPackages = ["org.example"]
|
||||
}
|
||||
|
||||
dependencies {
|
||||
// to use the test infrastructure, the project should also depend on the "spring-core-test" module
|
||||
testImplementation(project(":spring-core-test"))
|
||||
}
|
||||
```
|
||||
./gradlew apiDiff -PbaselineVersion=5.1.0.RELEASE
|
||||
./gradlew :spring-core:apiDiff -PbaselineVersion=5.1.0.RELEASE
|
||||
```
|
||||
|
||||
With this configuration, `./gradlew runtimeHintsTest` will run all tests instrumented by this java agent.
|
||||
The global `./gradlew check` task depends on `runtimeHintsTest`.
|
||||
|
||||
NOTE: the "spring-core-test" module doesn't shade "spring-core" by design, so the agent should never instrument
|
||||
code that doesn't have "spring-core" on its classpath.
|
||||
The reports are located under `build/reports/api-diff/$OLDVERSION_to_$NEWVERSION/`.
|
||||
|
||||
+8
-26
@@ -1,6 +1,5 @@
|
||||
plugins {
|
||||
id 'java-gradle-plugin'
|
||||
id 'checkstyle'
|
||||
}
|
||||
|
||||
repositories {
|
||||
@@ -8,41 +7,24 @@ repositories {
|
||||
gradlePluginPortal()
|
||||
}
|
||||
|
||||
ext {
|
||||
def propertiesFile = new File(new File("$projectDir").parentFile, "gradle.properties")
|
||||
propertiesFile.withInputStream {
|
||||
def properties = new Properties()
|
||||
properties.load(it)
|
||||
set("kotlinVersion", properties["kotlinVersion"])
|
||||
}
|
||||
}
|
||||
|
||||
dependencies {
|
||||
checkstyle "io.spring.javaformat:spring-javaformat-checkstyle:${javaFormatVersion}"
|
||||
implementation "org.jetbrains.kotlin:kotlin-gradle-plugin:${kotlinVersion}"
|
||||
implementation "org.jetbrains.kotlin:kotlin-compiler-embeddable:${kotlinVersion}"
|
||||
implementation "org.gradle:test-retry-gradle-plugin:1.5.6"
|
||||
implementation "io.spring.javaformat:spring-javaformat-gradle-plugin:${javaFormatVersion}"
|
||||
implementation "io.spring.nohttp:nohttp-gradle:0.0.11"
|
||||
implementation "me.champeau.gradle:japicmp-gradle-plugin:0.2.8"
|
||||
implementation "com.google.guava:guava:28.2-jre" // required by japicmp-gradle-plugin
|
||||
}
|
||||
|
||||
gradlePlugin {
|
||||
plugins {
|
||||
conventionsPlugin {
|
||||
id = "org.springframework.build.conventions"
|
||||
implementationClass = "org.springframework.build.ConventionsPlugin"
|
||||
apiDiffPlugin {
|
||||
id = "org.springframework.build.api-diff"
|
||||
implementationClass = "org.springframework.build.api.ApiDiffPlugin"
|
||||
}
|
||||
localDevPlugin {
|
||||
id = "org.springframework.build.localdev"
|
||||
implementationClass = "org.springframework.build.dev.LocalDevelopmentPlugin"
|
||||
compileConventionsPlugin {
|
||||
id = "org.springframework.build.compile"
|
||||
implementationClass = "org.springframework.build.compile.CompilerConventionsPlugin"
|
||||
}
|
||||
optionalDependenciesPlugin {
|
||||
id = "org.springframework.build.optional-dependencies"
|
||||
implementationClass = "org.springframework.build.optional.OptionalDependenciesPlugin"
|
||||
}
|
||||
runtimeHintsAgentPlugin {
|
||||
id = "org.springframework.build.runtimehints-agent"
|
||||
implementationClass = "org.springframework.build.hint.RuntimeHintsAgentPlugin"
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1,27 +0,0 @@
|
||||
<?xml version="1.0"?>
|
||||
<!DOCTYPE module PUBLIC "-//Checkstyle//DTD Checkstyle Configuration 1.3//EN" "https://checkstyle.org/dtds/configuration_1_3.dtd">
|
||||
<module name="com.puppycrawl.tools.checkstyle.Checker">
|
||||
|
||||
<!-- Root Checks -->
|
||||
<module name="io.spring.javaformat.checkstyle.check.SpringHeaderCheck">
|
||||
<property name="fileExtensions" value="java"/>
|
||||
<property name="headerType" value="apache2"/>
|
||||
<property name="headerCopyrightPattern" value="20\d\d-20\d\d"/>
|
||||
<property name="packageInfoHeaderType" value="none"/>
|
||||
</module>
|
||||
<module name="com.puppycrawl.tools.checkstyle.checks.NewlineAtEndOfFileCheck"/>
|
||||
|
||||
<!-- TreeWalker Checks -->
|
||||
<module name="com.puppycrawl.tools.checkstyle.TreeWalker">
|
||||
|
||||
<!-- Imports -->
|
||||
<module name="com.puppycrawl.tools.checkstyle.checks.imports.UnusedImportsCheck">
|
||||
<property name="processJavadoc" value="true"/>
|
||||
</module>
|
||||
|
||||
<!-- Modifiers -->
|
||||
<module name="com.puppycrawl.tools.checkstyle.checks.modifier.ModifierOrderCheck"/>
|
||||
|
||||
</module>
|
||||
|
||||
</module>
|
||||
@@ -1,2 +1 @@
|
||||
org.gradle.caching=true
|
||||
javaFormatVersion=0.0.41
|
||||
|
||||
@@ -1,79 +0,0 @@
|
||||
/*
|
||||
* Copyright 2002-2024 the original author or authors.
|
||||
*
|
||||
* 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
|
||||
*
|
||||
* https://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.
|
||||
*/
|
||||
|
||||
package org.springframework.build;
|
||||
|
||||
import java.io.File;
|
||||
import java.nio.file.Path;
|
||||
import java.util.List;
|
||||
|
||||
import io.spring.javaformat.gradle.SpringJavaFormatPlugin;
|
||||
import io.spring.nohttp.gradle.NoHttpExtension;
|
||||
import io.spring.nohttp.gradle.NoHttpPlugin;
|
||||
import org.gradle.api.Plugin;
|
||||
import org.gradle.api.Project;
|
||||
import org.gradle.api.artifacts.DependencySet;
|
||||
import org.gradle.api.plugins.JavaBasePlugin;
|
||||
import org.gradle.api.plugins.quality.Checkstyle;
|
||||
import org.gradle.api.plugins.quality.CheckstyleExtension;
|
||||
import org.gradle.api.plugins.quality.CheckstylePlugin;
|
||||
|
||||
/**
|
||||
* {@link Plugin} that applies conventions for checkstyle.
|
||||
*
|
||||
* @author Brian Clozel
|
||||
*/
|
||||
public class CheckstyleConventions {
|
||||
|
||||
/**
|
||||
* Applies the Spring Java Format and Checkstyle plugins with the project conventions.
|
||||
* @param project the current project
|
||||
*/
|
||||
public void apply(Project project) {
|
||||
project.getPlugins().withType(JavaBasePlugin.class, (java) -> {
|
||||
if (project.getRootProject() == project) {
|
||||
configureNoHttpPlugin(project);
|
||||
}
|
||||
project.getPlugins().apply(CheckstylePlugin.class);
|
||||
project.getTasks().withType(Checkstyle.class).forEach(checkstyle -> checkstyle.getMaxHeapSize().set("1g"));
|
||||
CheckstyleExtension checkstyle = project.getExtensions().getByType(CheckstyleExtension.class);
|
||||
checkstyle.setToolVersion("10.15.0");
|
||||
checkstyle.getConfigDirectory().set(project.getRootProject().file("src/checkstyle"));
|
||||
String version = SpringJavaFormatPlugin.class.getPackage().getImplementationVersion();
|
||||
DependencySet checkstyleDependencies = project.getConfigurations().getByName("checkstyle").getDependencies();
|
||||
checkstyleDependencies.add(
|
||||
project.getDependencies().create("io.spring.javaformat:spring-javaformat-checkstyle:" + version));
|
||||
});
|
||||
}
|
||||
|
||||
private static void configureNoHttpPlugin(Project project) {
|
||||
project.getPlugins().apply(NoHttpPlugin.class);
|
||||
NoHttpExtension noHttp = project.getExtensions().getByType(NoHttpExtension.class);
|
||||
noHttp.setAllowlistFile(project.file("src/nohttp/allowlist.lines"));
|
||||
noHttp.getSource().exclude("**/test-output/**", "**/.settings/**",
|
||||
"**/.classpath", "**/.project", "**/.gradle/**");
|
||||
List<String> buildFolders = List.of("bin", "build", "out");
|
||||
project.allprojects(subproject -> {
|
||||
Path rootPath = project.getRootDir().toPath();
|
||||
Path projectPath = rootPath.relativize(subproject.getProjectDir().toPath());
|
||||
for (String buildFolder : buildFolders) {
|
||||
Path innerBuildDir = projectPath.resolve(buildFolder);
|
||||
noHttp.getSource().exclude(innerBuildDir + File.separator + "**");
|
||||
}
|
||||
});
|
||||
}
|
||||
|
||||
}
|
||||
@@ -1,45 +0,0 @@
|
||||
/*
|
||||
* Copyright 2002-2023 the original author or authors.
|
||||
*
|
||||
* 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
|
||||
*
|
||||
* https://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.
|
||||
*/
|
||||
|
||||
package org.springframework.build;
|
||||
|
||||
import org.gradle.api.Plugin;
|
||||
import org.gradle.api.Project;
|
||||
import org.gradle.api.plugins.JavaBasePlugin;
|
||||
import org.jetbrains.kotlin.gradle.plugin.KotlinBasePlugin;
|
||||
|
||||
/**
|
||||
* Plugin to apply conventions to projects that are part of Spring Framework's build.
|
||||
* Conventions are applied in response to various plugins being applied.
|
||||
*
|
||||
* <p>When the {@link JavaBasePlugin} is applied, the conventions in {@link CheckstyleConventions},
|
||||
* {@link TestConventions} and {@link JavaConventions} are applied.
|
||||
* When the {@link KotlinBasePlugin} is applied, the conventions in {@link KotlinConventions}
|
||||
* are applied.
|
||||
*
|
||||
* @author Brian Clozel
|
||||
*/
|
||||
public class ConventionsPlugin implements Plugin<Project> {
|
||||
|
||||
@Override
|
||||
public void apply(Project project) {
|
||||
new CheckstyleConventions().apply(project);
|
||||
new JavaConventions().apply(project);
|
||||
new KotlinConventions().apply(project);
|
||||
new TestConventions().apply(project);
|
||||
}
|
||||
|
||||
}
|
||||
@@ -1,48 +0,0 @@
|
||||
/*
|
||||
* Copyright 2002-2022 the original author or authors.
|
||||
*
|
||||
* 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
|
||||
*
|
||||
* https://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.
|
||||
*/
|
||||
|
||||
package org.springframework.build;
|
||||
|
||||
import java.util.ArrayList;
|
||||
import java.util.List;
|
||||
|
||||
import org.gradle.api.Project;
|
||||
import org.jetbrains.kotlin.gradle.dsl.KotlinJvmOptions;
|
||||
import org.jetbrains.kotlin.gradle.tasks.KotlinCompile;
|
||||
|
||||
/**
|
||||
* @author Brian Clozel
|
||||
*/
|
||||
public class KotlinConventions {
|
||||
|
||||
void apply(Project project) {
|
||||
project.getPlugins().withId("org.jetbrains.kotlin.jvm",
|
||||
(plugin) -> project.getTasks().withType(KotlinCompile.class, this::configure));
|
||||
}
|
||||
|
||||
private void configure(KotlinCompile compile) {
|
||||
KotlinJvmOptions kotlinOptions = compile.getKotlinOptions();
|
||||
kotlinOptions.setApiVersion("1.7");
|
||||
kotlinOptions.setLanguageVersion("1.7");
|
||||
kotlinOptions.setJvmTarget("17");
|
||||
kotlinOptions.setJavaParameters(true);
|
||||
kotlinOptions.setAllWarningsAsErrors(true);
|
||||
List<String> freeCompilerArgs = new ArrayList<>(compile.getKotlinOptions().getFreeCompilerArgs());
|
||||
freeCompilerArgs.addAll(List.of("-Xsuppress-version-warnings", "-Xjsr305=strict", "-opt-in=kotlin.RequiresOptIn"));
|
||||
compile.getKotlinOptions().setFreeCompilerArgs(freeCompilerArgs);
|
||||
}
|
||||
|
||||
}
|
||||
@@ -1,82 +0,0 @@
|
||||
/*
|
||||
* Copyright 2002-2023 the original author or authors.
|
||||
*
|
||||
* 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
|
||||
*
|
||||
* https://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.
|
||||
*/
|
||||
|
||||
package org.springframework.build;
|
||||
|
||||
import java.util.Map;
|
||||
|
||||
import org.gradle.api.Project;
|
||||
import org.gradle.api.plugins.JavaBasePlugin;
|
||||
import org.gradle.api.tasks.testing.Test;
|
||||
import org.gradle.testretry.TestRetryPlugin;
|
||||
import org.gradle.testretry.TestRetryTaskExtension;
|
||||
|
||||
/**
|
||||
* Conventions that are applied in the presence of the {@link JavaBasePlugin}. When the
|
||||
* plugin is applied:
|
||||
* <ul>
|
||||
* <li>The {@link TestRetryPlugin Test Retry} plugin is applied so that flaky tests
|
||||
* are retried 3 times when running on the CI server.
|
||||
* </ul>
|
||||
*
|
||||
* @author Brian Clozel
|
||||
* @author Andy Wilkinson
|
||||
*/
|
||||
class TestConventions {
|
||||
|
||||
void apply(Project project) {
|
||||
project.getPlugins().withType(JavaBasePlugin.class, (java) -> configureTestConventions(project));
|
||||
}
|
||||
|
||||
private void configureTestConventions(Project project) {
|
||||
project.getTasks().withType(Test.class,
|
||||
test -> {
|
||||
configureTests(project, test);
|
||||
configureTestRetryPlugin(project, test);
|
||||
});
|
||||
}
|
||||
|
||||
private void configureTests(Project project, Test test) {
|
||||
test.useJUnitPlatform();
|
||||
test.include("**/*Tests.class", "**/*Test.class");
|
||||
test.setSystemProperties(Map.of(
|
||||
"java.awt.headless", "true",
|
||||
"io.netty.leakDetection.level", "paranoid",
|
||||
"io.netty5.leakDetectionLevel", "paranoid",
|
||||
"io.netty5.leakDetection.targetRecords", "32",
|
||||
"io.netty5.buffer.lifecycleTracingEnabled", "true"
|
||||
));
|
||||
if (project.hasProperty("testGroups")) {
|
||||
test.systemProperty("testGroups", project.getProperties().get("testGroups"));
|
||||
}
|
||||
test.jvmArgs("--add-opens=java.base/java.lang=ALL-UNNAMED",
|
||||
"--add-opens=java.base/java.util=ALL-UNNAMED",
|
||||
"-Djava.locale.providers=COMPAT");
|
||||
}
|
||||
|
||||
private void configureTestRetryPlugin(Project project, Test test) {
|
||||
project.getPlugins().withType(TestRetryPlugin.class, testRetryPlugin -> {
|
||||
TestRetryTaskExtension testRetry = test.getExtensions().getByType(TestRetryTaskExtension.class);
|
||||
testRetry.getFailOnPassedAfterRetry().set(true);
|
||||
testRetry.getMaxRetries().set(isCi() ? 3 : 0);
|
||||
});
|
||||
}
|
||||
|
||||
private boolean isCi() {
|
||||
return Boolean.parseBoolean(System.getenv("CI"));
|
||||
}
|
||||
|
||||
}
|
||||
@@ -0,0 +1,115 @@
|
||||
/*
|
||||
* Copyright 2002-2019 the original author or authors.
|
||||
*
|
||||
* 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
|
||||
*
|
||||
* https://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.
|
||||
*/
|
||||
package org.springframework.build.api;
|
||||
|
||||
import java.io.File;
|
||||
import java.nio.file.Path;
|
||||
import java.nio.file.Paths;
|
||||
import java.util.Collections;
|
||||
import java.util.List;
|
||||
|
||||
import me.champeau.gradle.japicmp.JapicmpPlugin;
|
||||
import me.champeau.gradle.japicmp.JapicmpTask;
|
||||
import org.gradle.api.Plugin;
|
||||
import org.gradle.api.Project;
|
||||
import org.gradle.api.artifacts.Configuration;
|
||||
import org.gradle.api.artifacts.Dependency;
|
||||
import org.gradle.api.plugins.JavaBasePlugin;
|
||||
import org.gradle.api.plugins.JavaPlugin;
|
||||
import org.gradle.api.publish.maven.plugins.MavenPublishPlugin;
|
||||
import org.gradle.api.tasks.TaskProvider;
|
||||
import org.gradle.jvm.tasks.Jar;
|
||||
|
||||
/**
|
||||
* {@link Plugin} that applies the {@code "japicmp-gradle-plugin"}
|
||||
* and create tasks for all subprojects, diffing the public API one by one
|
||||
* and creating the reports in {@code "build/reports/api-diff/$OLDVERSION_to_$NEWVERSION/"}.
|
||||
* <p>{@code "./gradlew apiDiff -PbaselineVersion=5.1.0.RELEASE"} will output the
|
||||
* reports for the API diff between the baseline version and the current one for all modules.
|
||||
* You can limit the report to a single module with
|
||||
* {@code "./gradlew :spring-core:apiDiff -PbaselineVersion=5.1.0.RELEASE"}.
|
||||
*
|
||||
* @author Brian Clozel
|
||||
*/
|
||||
public class ApiDiffPlugin implements Plugin<Project> {
|
||||
|
||||
public static final String TASK_NAME = "apiDiff";
|
||||
|
||||
private static final String BASELINE_VERSION_PROPERTY = "baselineVersion";
|
||||
|
||||
private static final List<String> PACKAGE_INCLUDES = Collections.singletonList("org.springframework.*");
|
||||
|
||||
@Override
|
||||
public void apply(Project project) {
|
||||
if (project.hasProperty(BASELINE_VERSION_PROPERTY) && project.equals(project.getRootProject())) {
|
||||
project.getPluginManager().apply(JapicmpPlugin.class);
|
||||
project.getPlugins().withType(JapicmpPlugin.class,
|
||||
plugin -> applyApiDiffConventions(project));
|
||||
}
|
||||
}
|
||||
|
||||
private void applyApiDiffConventions(Project project) {
|
||||
String baselineVersion = project.property(BASELINE_VERSION_PROPERTY).toString();
|
||||
project.subprojects(subProject -> createApiDiffTask(baselineVersion, subProject));
|
||||
}
|
||||
|
||||
private void createApiDiffTask(String baselineVersion, Project project) {
|
||||
if (isProjectEligible(project)) {
|
||||
JapicmpTask apiDiff = project.getTasks().create(TASK_NAME, JapicmpTask.class);
|
||||
apiDiff.setDescription("Generates an API diff report with japicmp");
|
||||
apiDiff.setGroup(JavaBasePlugin.DOCUMENTATION_GROUP);
|
||||
|
||||
apiDiff.setOldClasspath(project.files(createBaselineConfiguration(baselineVersion, project)));
|
||||
TaskProvider<Jar> jar = project.getTasks().withType(Jar.class).named("jar");
|
||||
apiDiff.setNewArchives(project.getLayout().files(jar.get().getArchiveFile().get().getAsFile()));
|
||||
apiDiff.setNewClasspath(getRuntimeClassPath(project));
|
||||
apiDiff.setPackageIncludes(PACKAGE_INCLUDES);
|
||||
apiDiff.setOnlyModified(true);
|
||||
apiDiff.setIgnoreMissingClasses(true);
|
||||
// Ignore Kotlin metadata annotations since they contain
|
||||
// illegal HTML characters and fail the report generation
|
||||
apiDiff.setAnnotationExcludes(Collections.singletonList("@kotlin.Metadata"));
|
||||
|
||||
apiDiff.setHtmlOutputFile(getOutputFile(baselineVersion, project));
|
||||
|
||||
apiDiff.dependsOn(project.getTasks().getByName("jar"));
|
||||
}
|
||||
}
|
||||
|
||||
private boolean isProjectEligible(Project project) {
|
||||
return project.getPlugins().hasPlugin(JavaPlugin.class)
|
||||
&& project.getPlugins().hasPlugin(MavenPublishPlugin.class);
|
||||
}
|
||||
|
||||
private Configuration createBaselineConfiguration(String baselineVersion, Project project) {
|
||||
String baseline = String.join(":",
|
||||
project.getGroup().toString(), project.getName(), baselineVersion);
|
||||
Dependency baselineDependency = project.getDependencies().create(baseline + "@jar");
|
||||
return project.getRootProject().getConfigurations().detachedConfiguration(baselineDependency);
|
||||
}
|
||||
|
||||
private Configuration getRuntimeClassPath(Project project) {
|
||||
return project.getConfigurations().getByName(JavaPlugin.RUNTIME_CLASSPATH_CONFIGURATION_NAME);
|
||||
}
|
||||
|
||||
private File getOutputFile(String baseLineVersion, Project project) {
|
||||
Path outDir = Paths.get(project.getRootProject().getBuildDir().getAbsolutePath(),
|
||||
"reports", "api-diff",
|
||||
baseLineVersion + "_to_" + project.getRootProject().getVersion());
|
||||
return project.file(outDir.resolve(project.getName() + ".html").toString());
|
||||
}
|
||||
|
||||
}
|
||||
+29
-16
@@ -1,5 +1,5 @@
|
||||
/*
|
||||
* Copyright 2002-2023 the original author or authors.
|
||||
* Copyright 2002-2020 the original author or authors.
|
||||
*
|
||||
* Licensed under the Apache License, Version 2.0 (the "License");
|
||||
* you may not use this file except in compliance with the License.
|
||||
@@ -14,29 +14,36 @@
|
||||
* limitations under the License.
|
||||
*/
|
||||
|
||||
package org.springframework.build;
|
||||
package org.springframework.build.compile;
|
||||
|
||||
import java.util.ArrayList;
|
||||
import java.util.Arrays;
|
||||
import java.util.List;
|
||||
|
||||
import org.gradle.api.JavaVersion;
|
||||
import org.gradle.api.Plugin;
|
||||
import org.gradle.api.Project;
|
||||
import org.gradle.api.plugins.JavaBasePlugin;
|
||||
import org.gradle.api.plugins.JavaPlugin;
|
||||
import org.gradle.api.plugins.JavaPluginExtension;
|
||||
import org.gradle.api.plugins.JavaPluginConvention;
|
||||
import org.gradle.api.tasks.compile.JavaCompile;
|
||||
import org.gradle.jvm.toolchain.JavaLanguageVersion;
|
||||
import org.gradle.jvm.toolchain.JvmVendorSpec;
|
||||
|
||||
/**
|
||||
* {@link Plugin} that applies conventions for compiling Java sources in Spring Framework.
|
||||
* <p>One can override the default Java source compatibility version
|
||||
* with a dedicated property on the CLI: {@code "./gradlew test -PjavaSourceVersion=11"}.
|
||||
*
|
||||
* @author Brian Clozel
|
||||
* @author Sam Brannen
|
||||
* @author Sebastien Deleuze
|
||||
*/
|
||||
public class JavaConventions {
|
||||
public class CompilerConventionsPlugin implements Plugin<Project> {
|
||||
|
||||
/**
|
||||
* The project property that can be used to switch the Java source
|
||||
* compatibility version for building source and test classes.
|
||||
*/
|
||||
public static final String JAVA_SOURCE_VERSION_PROPERTY = "javaSourceVersion";
|
||||
|
||||
public static final JavaVersion DEFAULT_COMPILER_VERSION = JavaVersion.VERSION_1_8;
|
||||
|
||||
private static final List<String> COMPILER_ARGS;
|
||||
|
||||
@@ -46,8 +53,7 @@ public class JavaConventions {
|
||||
List<String> commonCompilerArgs = Arrays.asList(
|
||||
"-Xlint:serial", "-Xlint:cast", "-Xlint:classfile", "-Xlint:dep-ann",
|
||||
"-Xlint:divzero", "-Xlint:empty", "-Xlint:finally", "-Xlint:overrides",
|
||||
"-Xlint:path", "-Xlint:processing", "-Xlint:static", "-Xlint:try", "-Xlint:-options",
|
||||
"-parameters"
|
||||
"-Xlint:path", "-Xlint:processing", "-Xlint:static", "-Xlint:try", "-Xlint:-options"
|
||||
);
|
||||
COMPILER_ARGS = new ArrayList<>();
|
||||
COMPILER_ARGS.addAll(commonCompilerArgs);
|
||||
@@ -58,11 +64,12 @@ public class JavaConventions {
|
||||
TEST_COMPILER_ARGS = new ArrayList<>();
|
||||
TEST_COMPILER_ARGS.addAll(commonCompilerArgs);
|
||||
TEST_COMPILER_ARGS.addAll(Arrays.asList("-Xlint:-varargs", "-Xlint:-fallthrough", "-Xlint:-rawtypes",
|
||||
"-Xlint:-deprecation", "-Xlint:-unchecked"));
|
||||
"-Xlint:-deprecation", "-Xlint:-unchecked", "-parameters"));
|
||||
}
|
||||
|
||||
@Override
|
||||
public void apply(Project project) {
|
||||
project.getPlugins().withType(JavaBasePlugin.class, javaPlugin -> applyJavaCompileConventions(project));
|
||||
project.getPlugins().withType(JavaPlugin.class, javaPlugin -> applyJavaCompileConventions(project));
|
||||
}
|
||||
|
||||
/**
|
||||
@@ -71,10 +78,16 @@ public class JavaConventions {
|
||||
* @param project the current project
|
||||
*/
|
||||
private void applyJavaCompileConventions(Project project) {
|
||||
project.getExtensions().getByType(JavaPluginExtension.class).toolchain(toolchain -> {
|
||||
toolchain.getVendor().set(JvmVendorSpec.BELLSOFT);
|
||||
toolchain.getLanguageVersion().set(JavaLanguageVersion.of(17));
|
||||
});
|
||||
JavaPluginConvention java = project.getConvention().getPlugin(JavaPluginConvention.class);
|
||||
if (project.hasProperty(JAVA_SOURCE_VERSION_PROPERTY)) {
|
||||
JavaVersion javaSourceVersion = JavaVersion.toVersion(project.property(JAVA_SOURCE_VERSION_PROPERTY));
|
||||
java.setSourceCompatibility(javaSourceVersion);
|
||||
}
|
||||
else {
|
||||
java.setSourceCompatibility(DEFAULT_COMPILER_VERSION);
|
||||
}
|
||||
java.setTargetCompatibility(DEFAULT_COMPILER_VERSION);
|
||||
|
||||
project.getTasks().withType(JavaCompile.class)
|
||||
.matching(compileTask -> compileTask.getName().equals(JavaPlugin.COMPILE_JAVA_TASK_NAME))
|
||||
.forEach(compileTask -> {
|
||||
@@ -1,49 +0,0 @@
|
||||
/*
|
||||
* Copyright 2002-2023 the original author or authors.
|
||||
*
|
||||
* 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
|
||||
*
|
||||
* https://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.
|
||||
*/
|
||||
|
||||
package org.springframework.build.dev;
|
||||
|
||||
import org.gradle.api.Plugin;
|
||||
import org.gradle.api.Project;
|
||||
import org.gradle.api.plugins.JavaBasePlugin;
|
||||
|
||||
/**
|
||||
* {@link Plugin} that skips documentation tasks when the {@code "-PskipDocs"} property is defined.
|
||||
*
|
||||
* @author Brian Clozel
|
||||
*/
|
||||
public class LocalDevelopmentPlugin implements Plugin<Project> {
|
||||
|
||||
private static final String SKIP_DOCS_PROPERTY = "skipDocs";
|
||||
|
||||
@Override
|
||||
public void apply(Project target) {
|
||||
if (target.hasProperty(SKIP_DOCS_PROPERTY)) {
|
||||
skipDocumentationTasks(target);
|
||||
target.subprojects(this::skipDocumentationTasks);
|
||||
}
|
||||
}
|
||||
|
||||
private void skipDocumentationTasks(Project project) {
|
||||
project.afterEvaluate(p -> {
|
||||
p.getTasks().matching(task -> {
|
||||
return JavaBasePlugin.DOCUMENTATION_GROUP.equals(task.getGroup())
|
||||
|| "distribution".equals(task.getGroup());
|
||||
})
|
||||
.forEach(task -> task.setEnabled(false));
|
||||
});
|
||||
}
|
||||
}
|
||||
-48
@@ -1,48 +0,0 @@
|
||||
/*
|
||||
* Copyright 2002-2023 the original author or authors.
|
||||
*
|
||||
* 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
|
||||
*
|
||||
* https://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.
|
||||
*/
|
||||
|
||||
package org.springframework.build.hint;
|
||||
|
||||
import java.util.Collections;
|
||||
|
||||
import org.gradle.api.file.ConfigurableFileCollection;
|
||||
import org.gradle.api.provider.SetProperty;
|
||||
import org.gradle.api.tasks.Classpath;
|
||||
import org.gradle.api.tasks.Input;
|
||||
import org.gradle.process.CommandLineArgumentProvider;
|
||||
|
||||
/**
|
||||
* Argument provider for registering the runtime hints agent with a Java process.
|
||||
*/
|
||||
public interface RuntimeHintsAgentArgumentProvider extends CommandLineArgumentProvider {
|
||||
|
||||
@Classpath
|
||||
ConfigurableFileCollection getAgentJar();
|
||||
|
||||
@Input
|
||||
SetProperty<String> getIncludedPackages();
|
||||
|
||||
@Input
|
||||
SetProperty<String> getExcludedPackages();
|
||||
|
||||
@Override
|
||||
default Iterable<String> asArguments() {
|
||||
StringBuilder packages = new StringBuilder();
|
||||
getIncludedPackages().get().forEach(packageName -> packages.append('+').append(packageName).append(','));
|
||||
getExcludedPackages().get().forEach(packageName -> packages.append('-').append(packageName).append(','));
|
||||
return Collections.singleton("-javaagent:" + getAgentJar().getSingleFile() + "=" + packages);
|
||||
}
|
||||
}
|
||||
@@ -1,30 +0,0 @@
|
||||
/*
|
||||
* Copyright 2002-2023 the original author or authors.
|
||||
*
|
||||
* 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
|
||||
*
|
||||
* https://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.
|
||||
*/
|
||||
|
||||
package org.springframework.build.hint;
|
||||
|
||||
import org.gradle.api.provider.SetProperty;
|
||||
|
||||
/**
|
||||
* Entry point to the DSL extension for the {@link RuntimeHintsAgentPlugin} Gradle plugin.
|
||||
* @author Brian Clozel
|
||||
*/
|
||||
public interface RuntimeHintsAgentExtension {
|
||||
|
||||
SetProperty<String> getIncludedPackages();
|
||||
|
||||
SetProperty<String> getExcludedPackages();
|
||||
}
|
||||
@@ -1,94 +0,0 @@
|
||||
/*
|
||||
* Copyright 2002-2023 the original author or authors.
|
||||
*
|
||||
* 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
|
||||
*
|
||||
* https://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.
|
||||
*/
|
||||
|
||||
package org.springframework.build.hint;
|
||||
|
||||
import org.gradle.api.JavaVersion;
|
||||
import org.gradle.api.Plugin;
|
||||
import org.gradle.api.Project;
|
||||
import org.gradle.api.artifacts.Configuration;
|
||||
import org.gradle.api.attributes.Bundling;
|
||||
import org.gradle.api.attributes.Category;
|
||||
import org.gradle.api.attributes.LibraryElements;
|
||||
import org.gradle.api.attributes.Usage;
|
||||
import org.gradle.api.attributes.java.TargetJvmVersion;
|
||||
import org.gradle.api.plugins.JavaPlugin;
|
||||
import org.gradle.api.tasks.testing.Test;
|
||||
|
||||
import java.util.Collections;
|
||||
|
||||
/**
|
||||
* {@link Plugin} that configures the {@code RuntimeHints} Java agent to test tasks.
|
||||
*
|
||||
* @author Brian Clozel
|
||||
* @author Sebastien Deleuze
|
||||
*/
|
||||
public class RuntimeHintsAgentPlugin implements Plugin<Project> {
|
||||
|
||||
public static final String RUNTIMEHINTS_TEST_TASK = "runtimeHintsTest";
|
||||
private static final String EXTENSION_NAME = "runtimeHintsAgent";
|
||||
private static final String CONFIGURATION_NAME = "testRuntimeHintsAgentJar";
|
||||
|
||||
|
||||
@Override
|
||||
public void apply(Project project) {
|
||||
|
||||
project.getPlugins().withType(JavaPlugin.class, javaPlugin -> {
|
||||
RuntimeHintsAgentExtension agentExtension = createRuntimeHintsAgentExtension(project);
|
||||
Test agentTest = project.getTasks().create(RUNTIMEHINTS_TEST_TASK, Test.class, test -> {
|
||||
test.useJUnitPlatform(options -> {
|
||||
options.includeTags("RuntimeHintsTests");
|
||||
});
|
||||
test.include("**/*Tests.class", "**/*Test.class");
|
||||
test.systemProperty("java.awt.headless", "true");
|
||||
test.systemProperty("org.graalvm.nativeimage.imagecode", "runtime");
|
||||
test.getJvmArgumentProviders().add(createRuntimeHintsAgentArgumentProvider(project, agentExtension));
|
||||
});
|
||||
project.getTasks().getByName("check", task -> task.dependsOn(agentTest));
|
||||
project.getDependencies().add(CONFIGURATION_NAME, project.project(":spring-core-test"));
|
||||
});
|
||||
}
|
||||
|
||||
private static RuntimeHintsAgentExtension createRuntimeHintsAgentExtension(Project project) {
|
||||
RuntimeHintsAgentExtension agentExtension = project.getExtensions().create(EXTENSION_NAME, RuntimeHintsAgentExtension.class);
|
||||
agentExtension.getIncludedPackages().convention(Collections.singleton("org.springframework"));
|
||||
agentExtension.getExcludedPackages().convention(Collections.emptySet());
|
||||
return agentExtension;
|
||||
}
|
||||
|
||||
private static RuntimeHintsAgentArgumentProvider createRuntimeHintsAgentArgumentProvider(
|
||||
Project project, RuntimeHintsAgentExtension agentExtension) {
|
||||
RuntimeHintsAgentArgumentProvider agentArgumentProvider = project.getObjects().newInstance(RuntimeHintsAgentArgumentProvider.class);
|
||||
agentArgumentProvider.getAgentJar().from(createRuntimeHintsAgentConfiguration(project));
|
||||
agentArgumentProvider.getIncludedPackages().set(agentExtension.getIncludedPackages());
|
||||
agentArgumentProvider.getExcludedPackages().set(agentExtension.getExcludedPackages());
|
||||
return agentArgumentProvider;
|
||||
}
|
||||
|
||||
private static Configuration createRuntimeHintsAgentConfiguration(Project project) {
|
||||
return project.getConfigurations().create(CONFIGURATION_NAME, configuration -> {
|
||||
configuration.setCanBeConsumed(false);
|
||||
configuration.setTransitive(false); // Only the built artifact is required
|
||||
configuration.attributes(attributes -> {
|
||||
attributes.attribute(Bundling.BUNDLING_ATTRIBUTE, project.getObjects().named(Bundling.class, Bundling.EXTERNAL));
|
||||
attributes.attribute(Category.CATEGORY_ATTRIBUTE, project.getObjects().named(Category.class, Category.LIBRARY));
|
||||
attributes.attribute(LibraryElements.LIBRARY_ELEMENTS_ATTRIBUTE, project.getObjects().named(LibraryElements.class, LibraryElements.JAR));
|
||||
attributes.attribute(TargetJvmVersion.TARGET_JVM_VERSION_ATTRIBUTE, Integer.valueOf(JavaVersion.current().getMajorVersion()));
|
||||
attributes.attribute(Usage.USAGE_ATTRIBUTE, project.getObjects().named(Usage.class, Usage.JAVA_RUNTIME));
|
||||
});
|
||||
});
|
||||
}
|
||||
}
|
||||
+21
-13
@@ -1,5 +1,5 @@
|
||||
/*
|
||||
* Copyright 2002-2023 the original author or authors.
|
||||
* Copyright 2002-2019 the original author or authors.
|
||||
*
|
||||
* Licensed under the Apache License, Version 2.0 (the "License");
|
||||
* you may not use this file except in compliance with the License.
|
||||
@@ -19,14 +19,16 @@ package org.springframework.build.optional;
|
||||
import org.gradle.api.Plugin;
|
||||
import org.gradle.api.Project;
|
||||
import org.gradle.api.artifacts.Configuration;
|
||||
import org.gradle.api.plugins.JavaBasePlugin;
|
||||
import org.gradle.api.plugins.JavaPluginExtension;
|
||||
import org.gradle.api.plugins.JavaPlugin;
|
||||
import org.gradle.api.plugins.JavaPluginConvention;
|
||||
import org.gradle.api.tasks.SourceSetContainer;
|
||||
import org.gradle.plugins.ide.eclipse.EclipsePlugin;
|
||||
import org.gradle.plugins.ide.eclipse.model.EclipseModel;
|
||||
|
||||
/**
|
||||
* A {@code Plugin} that adds support for Maven-style optional dependencies. Creates a new
|
||||
* {@code optional} configuration. The {@code optional} configuration is part of the
|
||||
* project's compile and runtime classpaths but does not affect the classpath of
|
||||
* project's compile and runtime classpath's but does not affect the classpath of
|
||||
* dependent projects.
|
||||
*
|
||||
* @author Andy Wilkinson
|
||||
@@ -40,17 +42,23 @@ public class OptionalDependenciesPlugin implements Plugin<Project> {
|
||||
|
||||
@Override
|
||||
public void apply(Project project) {
|
||||
Configuration optional = project.getConfigurations().create(OPTIONAL_CONFIGURATION_NAME);
|
||||
optional.setCanBeConsumed(false);
|
||||
optional.setCanBeResolved(false);
|
||||
project.getPlugins().withType(JavaBasePlugin.class, (javaBasePlugin) -> {
|
||||
SourceSetContainer sourceSets = project.getExtensions().getByType(JavaPluginExtension.class)
|
||||
.getSourceSets();
|
||||
Configuration optional = project.getConfigurations().create("optional");
|
||||
project.getPlugins().withType(JavaPlugin.class, (javaPlugin) -> {
|
||||
SourceSetContainer sourceSets = project.getConvention()
|
||||
.getPlugin(JavaPluginConvention.class).getSourceSets();
|
||||
sourceSets.all((sourceSet) -> {
|
||||
project.getConfigurations().getByName(sourceSet.getCompileClasspathConfigurationName()).extendsFrom(optional);
|
||||
project.getConfigurations().getByName(sourceSet.getRuntimeClasspathConfigurationName()).extendsFrom(optional);
|
||||
sourceSet.setCompileClasspath(
|
||||
sourceSet.getCompileClasspath().plus(optional));
|
||||
sourceSet.setRuntimeClasspath(
|
||||
sourceSet.getRuntimeClasspath().plus(optional));
|
||||
});
|
||||
});
|
||||
project.getPlugins().withType(EclipsePlugin.class, (eclipePlugin) -> {
|
||||
project.getExtensions().getByType(EclipseModel.class)
|
||||
.classpath((classpath) -> {
|
||||
classpath.getPlusConfigurations().add(optional);
|
||||
});
|
||||
});
|
||||
}
|
||||
|
||||
}
|
||||
}
|
||||
@@ -1,191 +0,0 @@
|
||||
/*
|
||||
* Copyright 2002-2023 the original author or authors.
|
||||
*
|
||||
* 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
|
||||
*
|
||||
* https://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.
|
||||
*/
|
||||
|
||||
package org.springframework.build.shadow;
|
||||
|
||||
import java.io.File;
|
||||
import java.util.ArrayList;
|
||||
import java.util.Collections;
|
||||
import java.util.List;
|
||||
import java.util.Set;
|
||||
|
||||
import org.gradle.api.DefaultTask;
|
||||
import org.gradle.api.artifacts.Configuration;
|
||||
import org.gradle.api.artifacts.component.ModuleComponentSelector;
|
||||
import org.gradle.api.artifacts.query.ArtifactResolutionQuery;
|
||||
import org.gradle.api.artifacts.result.ArtifactResolutionResult;
|
||||
import org.gradle.api.artifacts.result.ComponentArtifactsResult;
|
||||
import org.gradle.api.artifacts.result.DependencyResult;
|
||||
import org.gradle.api.artifacts.result.ResolutionResult;
|
||||
import org.gradle.api.artifacts.result.ResolvedArtifactResult;
|
||||
import org.gradle.api.file.DirectoryProperty;
|
||||
import org.gradle.api.file.FileCopyDetails;
|
||||
import org.gradle.api.file.FileTree;
|
||||
import org.gradle.api.tasks.Classpath;
|
||||
import org.gradle.api.tasks.Input;
|
||||
import org.gradle.api.tasks.Nested;
|
||||
import org.gradle.api.tasks.Optional;
|
||||
import org.gradle.api.tasks.OutputDirectory;
|
||||
import org.gradle.api.tasks.TaskAction;
|
||||
import org.gradle.jvm.JvmLibrary;
|
||||
import org.gradle.language.base.artifact.SourcesArtifact;
|
||||
|
||||
/**
|
||||
* Gradle task to add source from shadowed jars into our own source jars.
|
||||
*
|
||||
* @author Phillip Webb
|
||||
* @author Andy Wilkinson
|
||||
*/
|
||||
public class ShadowSource extends DefaultTask {
|
||||
|
||||
private final DirectoryProperty outputDirectory = getProject().getObjects().directoryProperty();
|
||||
|
||||
private List<Configuration> configurations = new ArrayList<>();
|
||||
|
||||
private final List<Relocation> relocations = new ArrayList<>();
|
||||
|
||||
|
||||
@Classpath
|
||||
@Optional
|
||||
public List<Configuration> getConfigurations() {
|
||||
return this.configurations;
|
||||
}
|
||||
|
||||
public void setConfigurations(List<Configuration> configurations) {
|
||||
this.configurations = configurations;
|
||||
}
|
||||
|
||||
@Nested
|
||||
public List<Relocation> getRelocations() {
|
||||
return this.relocations;
|
||||
}
|
||||
|
||||
public void relocate(String pattern, String destination) {
|
||||
this.relocations.add(new Relocation(pattern, destination));
|
||||
}
|
||||
|
||||
@OutputDirectory
|
||||
DirectoryProperty getOutputDirectory() {
|
||||
return this.outputDirectory;
|
||||
}
|
||||
|
||||
@TaskAction
|
||||
void syncSourceJarFiles() {
|
||||
sync(getSourceJarFiles());
|
||||
}
|
||||
|
||||
private List<File> getSourceJarFiles() {
|
||||
List<File> sourceJarFiles = new ArrayList<>();
|
||||
for (Configuration configuration : this.configurations) {
|
||||
ResolutionResult resolutionResult = configuration.getIncoming().getResolutionResult();
|
||||
resolutionResult.getRootComponent().get().getDependencies().forEach(dependency -> {
|
||||
Set<ComponentArtifactsResult> artifactsResults = resolveSourceArtifacts(dependency);
|
||||
for (ComponentArtifactsResult artifactResult : artifactsResults) {
|
||||
artifactResult.getArtifacts(SourcesArtifact.class).forEach(sourceArtifact -> {
|
||||
sourceJarFiles.add(((ResolvedArtifactResult) sourceArtifact).getFile());
|
||||
});
|
||||
}
|
||||
});
|
||||
}
|
||||
return Collections.unmodifiableList(sourceJarFiles);
|
||||
}
|
||||
|
||||
private Set<ComponentArtifactsResult> resolveSourceArtifacts(DependencyResult dependency) {
|
||||
ModuleComponentSelector componentSelector = (ModuleComponentSelector) dependency.getRequested();
|
||||
ArtifactResolutionQuery query = getProject().getDependencies().createArtifactResolutionQuery()
|
||||
.forModule(componentSelector.getGroup(), componentSelector.getModule(), componentSelector.getVersion());
|
||||
return executeQuery(query).getResolvedComponents();
|
||||
}
|
||||
|
||||
@SuppressWarnings("unchecked")
|
||||
private ArtifactResolutionResult executeQuery(ArtifactResolutionQuery query) {
|
||||
return query.withArtifacts(JvmLibrary.class, SourcesArtifact.class).execute();
|
||||
}
|
||||
|
||||
private void sync(List<File> sourceJarFiles) {
|
||||
getProject().sync(spec -> {
|
||||
spec.into(this.outputDirectory);
|
||||
spec.eachFile(this::relocateFile);
|
||||
spec.filter(this::transformContent);
|
||||
spec.exclude("META-INF/**");
|
||||
spec.setIncludeEmptyDirs(false);
|
||||
sourceJarFiles.forEach(sourceJar -> spec.from(zipTree(sourceJar)));
|
||||
});
|
||||
}
|
||||
|
||||
private void relocateFile(FileCopyDetails details) {
|
||||
String path = details.getPath();
|
||||
for (Relocation relocation : this.relocations) {
|
||||
path = relocation.relocatePath(path);
|
||||
}
|
||||
details.setPath(path);
|
||||
}
|
||||
|
||||
private String transformContent(String content) {
|
||||
for (Relocation relocation : this.relocations) {
|
||||
content = relocation.transformContent(content);
|
||||
}
|
||||
return content;
|
||||
}
|
||||
|
||||
private FileTree zipTree(File sourceJar) {
|
||||
return getProject().zipTree(sourceJar);
|
||||
}
|
||||
|
||||
|
||||
/**
|
||||
* A single relocation.
|
||||
*/
|
||||
static class Relocation {
|
||||
|
||||
private final String pattern;
|
||||
|
||||
private final String pathPattern;
|
||||
|
||||
private final String destination;
|
||||
|
||||
private final String pathDestination;
|
||||
|
||||
|
||||
Relocation(String pattern, String destination) {
|
||||
this.pattern = pattern;
|
||||
this.pathPattern = pattern.replace('.', '/');
|
||||
this.destination = destination;
|
||||
this.pathDestination = destination.replace('.', '/');
|
||||
}
|
||||
|
||||
|
||||
@Input
|
||||
public String getPattern() {
|
||||
return this.pattern;
|
||||
}
|
||||
|
||||
@Input
|
||||
public String getDestination() {
|
||||
return this.destination;
|
||||
}
|
||||
|
||||
String relocatePath(String path) {
|
||||
return path.replace(this.pathPattern, this.pathDestination);
|
||||
}
|
||||
|
||||
public String transformContent(String content) {
|
||||
return content.replaceAll("\\b" + this.pattern, this.destination);
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
}
|
||||
+4
-12
@@ -1,10 +1,7 @@
|
||||
== Spring Framework Concourse pipeline
|
||||
|
||||
NOTE: CI is being migrated to GitHub Actions.
|
||||
|
||||
The Spring Framework uses https://concourse-ci.org/[Concourse] for its CI build and other automated tasks.
|
||||
The Spring team has a dedicated Concourse instance available at https://ci.spring.io with a build pipeline
|
||||
for https://ci.spring.io/teams/spring-framework/pipelines/spring-framework-6.1.x[Spring Framework 6.1.x].
|
||||
The Spring Framework is using https://concourse-ci.org/[Concourse] for its CI build and other automated tasks.
|
||||
The Spring team has a dedicated Concourse instance available at https://ci.spring.io.
|
||||
|
||||
=== Setting up your development environment
|
||||
|
||||
@@ -28,17 +25,13 @@ spring https://ci.spring.io spring-framework Wed, 25 Mar 20
|
||||
----
|
||||
|
||||
=== Pipeline configuration and structure
|
||||
|
||||
The build pipelines are described in `pipeline.yml` file.
|
||||
|
||||
This file is listing Concourse resources, i.e. build inputs and outputs such as container images, artifact repositories, source repositories, notification services, etc.
|
||||
|
||||
It also describes jobs (a job is a sequence of inputs, tasks and outputs); jobs are organized by groups.
|
||||
|
||||
The `pipeline.yml` definition contains `((parameters))` which are loaded from the `parameters.yml` file or from our https://docs.cloudfoundry.org/credhub/[credhub instance].
|
||||
|
||||
You'll find in this folder the following resources:
|
||||
|
||||
* `pipeline.yml` the build pipeline
|
||||
* `parameters.yml` the build parameters used for the pipeline
|
||||
* `images/` holds the container images definitions used in this pipeline
|
||||
@@ -48,12 +41,11 @@ You'll find in this folder the following resources:
|
||||
=== Updating the build pipeline
|
||||
|
||||
Updating files on the repository is not enough to update the build pipeline, as changes need to be applied.
|
||||
|
||||
The pipeline can be deployed using the following command:
|
||||
|
||||
[source]
|
||||
----
|
||||
$ fly -t spring set-pipeline -p spring-framework-6.1.x -c ci/pipeline.yml -l ci/parameters.yml
|
||||
$ fly -t spring set-pipeline -p spring-framework-5.3.x -c ci/pipeline.yml -l ci/parameters.yml
|
||||
----
|
||||
|
||||
NOTE: This assumes that you have credhub integration configured with the appropriate secrets.
|
||||
NOTE: This assumes that you have credhub integration configured with the appropriate secrets.
|
||||
@@ -4,7 +4,7 @@ changelog:
|
||||
- title: ":star: New Features"
|
||||
labels:
|
||||
- "type: enhancement"
|
||||
- title: ":lady_beetle: Bug Fixes"
|
||||
- title: ":beetle: Bug Fixes"
|
||||
labels:
|
||||
- "type: bug"
|
||||
- "type: regression"
|
||||
@@ -15,6 +15,3 @@ changelog:
|
||||
sort: "title"
|
||||
labels:
|
||||
- "type: dependency-upgrade"
|
||||
contributors:
|
||||
exclude:
|
||||
names: ["bclozel", "jhoeller", "poutsma", "rstoyanchev", "sbrannen", "sdeleuze", "snicoll", "simonbasle"]
|
||||
|
||||
@@ -1,10 +1,9 @@
|
||||
logging:
|
||||
level:
|
||||
io.spring.concourse: DEBUG
|
||||
distribute:
|
||||
optional-deployments:
|
||||
- '.*\\.zip'
|
||||
spring:
|
||||
main:
|
||||
banner-mode: off
|
||||
sonatype:
|
||||
exclude:
|
||||
- 'build-info\.json'
|
||||
- '.*\.zip'
|
||||
banner-mode: off
|
||||
@@ -1,12 +0,0 @@
|
||||
FROM ubuntu:jammy-20240125
|
||||
|
||||
ADD setup.sh /setup.sh
|
||||
ADD get-jdk-url.sh /get-jdk-url.sh
|
||||
RUN ./setup.sh
|
||||
|
||||
ENV JAVA_HOME /opt/openjdk/java17
|
||||
ENV JDK17 /opt/openjdk/java17
|
||||
ENV JDK21 /opt/openjdk/java21
|
||||
ENV JDK23 /opt/openjdk/java23
|
||||
|
||||
ENV PATH $JAVA_HOME/bin:$PATH
|
||||
@@ -2,16 +2,19 @@
|
||||
set -e
|
||||
|
||||
case "$1" in
|
||||
java17)
|
||||
echo "https://github.com/bell-sw/Liberica/releases/download/17.0.10%2B13/bellsoft-jdk17.0.10+13-linux-amd64.tar.gz"
|
||||
java8)
|
||||
echo "https://github.com/AdoptOpenJDK/openjdk8-binaries/releases/download/jdk8u265-b01/OpenJDK8U-jdk_x64_linux_hotspot_8u265b01.tar.gz"
|
||||
;;
|
||||
java21)
|
||||
echo "https://github.com/bell-sw/Liberica/releases/download/21.0.2%2B14/bellsoft-jdk21.0.2+14-linux-amd64.tar.gz"
|
||||
java11)
|
||||
echo "https://github.com/AdoptOpenJDK/openjdk11-binaries/releases/download/jdk-11.0.8%2B10/OpenJDK11U-jdk_x64_linux_hotspot_11.0.8_10.tar.gz"
|
||||
;;
|
||||
java23)
|
||||
echo "https://download.java.net/java/early_access/jdk23/10/GPL/openjdk-23-ea+10_linux-x64_bin.tar.gz"
|
||||
java14)
|
||||
echo "https://github.com/AdoptOpenJDK/openjdk14-binaries/releases/download/jdk-14.0.2%2B12/OpenJDK14U-jdk_x64_linux_hotspot_14.0.2_12.tar.gz"
|
||||
;;
|
||||
*)
|
||||
java15)
|
||||
echo "https://github.com/AdoptOpenJDK/openjdk15-binaries/releases/download/jdk-15%2B36/OpenJDK15U-jdk_x64_linux_hotspot_15_36.tar.gz"
|
||||
;;
|
||||
*)
|
||||
echo $"Unknown java version"
|
||||
exit 1
|
||||
esac
|
||||
|
||||
+9
-17
@@ -5,32 +5,24 @@ set -ex
|
||||
# UTILS
|
||||
###########################################################
|
||||
|
||||
export DEBIAN_FRONTEND=noninteractive
|
||||
apt-get update
|
||||
apt-get install --no-install-recommends -y tzdata ca-certificates net-tools libxml2-utils git curl libudev1 libxml2-utils iptables iproute2 jq fontconfig
|
||||
ln -fs /usr/share/zoneinfo/UTC /etc/localtime
|
||||
dpkg-reconfigure --frontend noninteractive tzdata
|
||||
apt-get install --no-install-recommends -y ca-certificates net-tools libxml2-utils git curl libudev1 libxml2-utils iptables iproute2 jq fontconfig
|
||||
rm -rf /var/lib/apt/lists/*
|
||||
|
||||
curl https://raw.githubusercontent.com/spring-io/concourse-java-scripts/v0.0.4/concourse-java.sh > /opt/concourse-java.sh
|
||||
curl https://raw.githubusercontent.com/spring-io/concourse-java-scripts/v0.0.3/concourse-java.sh > /opt/concourse-java.sh
|
||||
|
||||
curl --output /opt/concourse-release-scripts.jar https://repo.spring.io/release/io/spring/concourse/releasescripts/concourse-release-scripts/0.2.1/concourse-release-scripts-0.2.1.jar
|
||||
|
||||
###########################################################
|
||||
# JAVA
|
||||
###########################################################
|
||||
JDK_URL=$( ./get-jdk-url.sh $1 )
|
||||
|
||||
mkdir -p /opt/openjdk
|
||||
pushd /opt/openjdk > /dev/null
|
||||
for jdk in java17 java21 java22
|
||||
do
|
||||
JDK_URL=$( /get-jdk-url.sh $jdk )
|
||||
mkdir $jdk
|
||||
pushd $jdk > /dev/null
|
||||
curl -L ${JDK_URL} | tar zx --strip-components=1
|
||||
test -f bin/java
|
||||
test -f bin/javac
|
||||
popd > /dev/null
|
||||
done
|
||||
popd
|
||||
cd /opt/openjdk
|
||||
curl -L ${JDK_URL} | tar zx --strip-components=1
|
||||
test -f /opt/openjdk/bin/java
|
||||
test -f /opt/openjdk/bin/javac
|
||||
|
||||
###########################################################
|
||||
# GRADLE ENTERPRISE
|
||||
|
||||
@@ -0,0 +1,8 @@
|
||||
FROM ubuntu:bionic-20200713
|
||||
|
||||
ADD setup.sh /setup.sh
|
||||
ADD get-jdk-url.sh /get-jdk-url.sh
|
||||
RUN ./setup.sh java8
|
||||
|
||||
ENV JAVA_HOME /opt/openjdk
|
||||
ENV PATH $JAVA_HOME/bin:$PATH
|
||||
@@ -0,0 +1,8 @@
|
||||
FROM ubuntu:bionic-20200713
|
||||
|
||||
ADD setup.sh /setup.sh
|
||||
ADD get-jdk-url.sh /get-jdk-url.sh
|
||||
RUN ./setup.sh java11
|
||||
|
||||
ENV JAVA_HOME /opt/openjdk
|
||||
ENV PATH $JAVA_HOME/bin:$PATH
|
||||
@@ -0,0 +1,8 @@
|
||||
FROM ubuntu:bionic-20200713
|
||||
|
||||
ADD setup.sh /setup.sh
|
||||
ADD get-jdk-url.sh /get-jdk-url.sh
|
||||
RUN ./setup.sh java14
|
||||
|
||||
ENV JAVA_HOME /opt/openjdk
|
||||
ENV PATH $JAVA_HOME/bin:$PATH
|
||||
@@ -0,0 +1,8 @@
|
||||
FROM ubuntu:bionic-20200713
|
||||
|
||||
ADD setup.sh /setup.sh
|
||||
ADD get-jdk-url.sh /get-jdk-url.sh
|
||||
RUN ./setup.sh java15
|
||||
|
||||
ENV JAVA_HOME /opt/openjdk
|
||||
ENV PATH $JAVA_HOME/bin:$PATH
|
||||
+7
-3
@@ -1,10 +1,14 @@
|
||||
email-server: "smtp.svc.pivotal.io"
|
||||
email-from: "ci@spring.io"
|
||||
email-to: ["spring-framework-dev@pivotal.io"]
|
||||
github-repo: "https://github.com/spring-projects/spring-framework.git"
|
||||
github-repo-name: "spring-projects/spring-framework"
|
||||
sonatype-staging-profile: "org.springframework"
|
||||
docker-hub-organization: "springci"
|
||||
artifactory-server: "https://repo.spring.io"
|
||||
branch: "6.1.x"
|
||||
milestone: "6.1.x"
|
||||
branch: "master"
|
||||
build-name: "spring-framework"
|
||||
pipeline-name: "spring-framework"
|
||||
concourse-url: "https://ci.spring.io"
|
||||
bintray-subject: "spring"
|
||||
bintray-repo: "jars"
|
||||
task-timeout: 1h00m
|
||||
+287
-95
@@ -1,28 +1,32 @@
|
||||
anchors:
|
||||
git-repo-resource-source: &git-repo-resource-source
|
||||
uri: ((github-repo))
|
||||
username: ((github-username))
|
||||
password: ((github-ci-release-token))
|
||||
branch: ((branch))
|
||||
gradle-enterprise-task-params: &gradle-enterprise-task-params
|
||||
GRADLE_ENTERPRISE_ACCESS_KEY: ((gradle_enterprise_secret_access_key))
|
||||
GRADLE_ENTERPRISE_CACHE_USERNAME: ((gradle_enterprise_cache_user.username))
|
||||
GRADLE_ENTERPRISE_CACHE_PASSWORD: ((gradle_enterprise_cache_user.password))
|
||||
sonatype-task-params: &sonatype-task-params
|
||||
SONATYPE_USERNAME: ((sonatype-username))
|
||||
SONATYPE_PASSWORD: ((sonatype-password))
|
||||
SONATYPE_URL: ((sonatype-url))
|
||||
SONATYPE_STAGING_PROFILE: ((sonatype-staging-profile))
|
||||
artifactory-task-params: &artifactory-task-params
|
||||
ARTIFACTORY_SERVER: ((artifactory-server))
|
||||
ARTIFACTORY_USERNAME: ((artifactory-username))
|
||||
ARTIFACTORY_PASSWORD: ((artifactory-password))
|
||||
build-project-task-params: &build-project-task-params
|
||||
BRANCH: ((branch))
|
||||
<<: *gradle-enterprise-task-params
|
||||
bintray-task-params: &bintray-task-params
|
||||
BINTRAY_SUBJECT: ((bintray-subject))
|
||||
BINTRAY_REPO: ((bintray-repo))
|
||||
BINTRAY_USERNAME: ((bintray-username))
|
||||
BINTRAY_API_KEY: ((bintray-api-key))
|
||||
docker-resource-source: &docker-resource-source
|
||||
username: ((docker-hub-username))
|
||||
password: ((docker-hub-password))
|
||||
tag: 5.3.x
|
||||
gradle-enterprise-task-params: &gradle-enterprise-task-params
|
||||
GRADLE_ENTERPRISE_ACCESS_KEY: ((gradle_enterprise_secret_access_key))
|
||||
GRADLE_ENTERPRISE_CACHE_USERNAME: ((gradle_enterprise_cache_user.username))
|
||||
GRADLE_ENTERPRISE_CACHE_PASSWORD: ((gradle_enterprise_cache_user.password))
|
||||
slack-fail-params: &slack-fail-params
|
||||
text: >
|
||||
:concourse-failed: <https://ci.spring.io/teams/${BUILD_TEAM_NAME}/pipelines/${BUILD_PIPELINE_NAME}/jobs/${BUILD_JOB_NAME}/builds/${BUILD_NAME}|${BUILD_PIPELINE_NAME} ${BUILD_JOB_NAME} failed!>
|
||||
[$TEXT_FILE_CONTENT]
|
||||
text_file: git-repo/build/build-scan-uri.txt
|
||||
silent: true
|
||||
icon_emoji: ":concourse:"
|
||||
username: concourse-ci
|
||||
sonatype-task-params: &sonatype-task-params
|
||||
SONATYPE_USER_TOKEN: ((sonatype-user-token))
|
||||
SONATYPE_PASSWORD_TOKEN: ((sonatype-user-token-password))
|
||||
changelog-task-params: &changelog-task-params
|
||||
name: generated-changelog/tag
|
||||
tag: generated-changelog/tag
|
||||
@@ -32,36 +36,38 @@ anchors:
|
||||
GITHUB_TOKEN: ((github-ci-release-token))
|
||||
|
||||
resource_types:
|
||||
- name: registry-image
|
||||
type: registry-image
|
||||
source:
|
||||
<<: *docker-resource-source
|
||||
repository: concourse/registry-image-resource
|
||||
tag: 1.8.0
|
||||
- name: artifactory-resource
|
||||
type: registry-image
|
||||
source:
|
||||
<<: *docker-resource-source
|
||||
repository: springio/artifactory-resource
|
||||
tag: 0.0.18
|
||||
- name: github-release
|
||||
type: registry-image
|
||||
source:
|
||||
<<: *docker-resource-source
|
||||
repository: concourse/github-release-resource
|
||||
tag: 1.8.0
|
||||
tag: 0.0.12
|
||||
- name: github-status-resource
|
||||
type: registry-image
|
||||
source:
|
||||
<<: *docker-resource-source
|
||||
repository: dpb587/github-status-resource
|
||||
tag: master
|
||||
- name: slack-notification
|
||||
type: registry-image
|
||||
source:
|
||||
repository: cfcommunity/slack-notification-resource
|
||||
tag: latest
|
||||
|
||||
resources:
|
||||
- name: git-repo
|
||||
type: git
|
||||
icon: github
|
||||
source:
|
||||
<<: *git-repo-resource-source
|
||||
uri: ((github-repo))
|
||||
username: ((github-username))
|
||||
password: ((github-password))
|
||||
branch: ((branch))
|
||||
- name: every-morning
|
||||
type: time
|
||||
icon: alarm
|
||||
source:
|
||||
start: 8:00 AM
|
||||
stop: 9:00 AM
|
||||
location: Europe/Vienna
|
||||
- name: ci-images-git-repo
|
||||
type: git
|
||||
icon: github
|
||||
@@ -69,13 +75,30 @@ resources:
|
||||
uri: ((github-repo))
|
||||
branch: ((branch))
|
||||
paths: ["ci/images/*"]
|
||||
- name: ci-image
|
||||
type: registry-image
|
||||
- name: spring-framework-ci-image
|
||||
type: docker-image
|
||||
icon: docker
|
||||
source:
|
||||
<<: *docker-resource-source
|
||||
repository: ((docker-hub-organization))/spring-framework-ci
|
||||
tag: ((milestone))
|
||||
repository: ((docker-hub-organization))/spring-framework-ci-image
|
||||
- name: spring-framework-jdk11-ci-image
|
||||
type: docker-image
|
||||
icon: docker
|
||||
source:
|
||||
<<: *docker-resource-source
|
||||
repository: ((docker-hub-organization))/spring-framework-jdk11-ci-image
|
||||
- name: spring-framework-jdk14-ci-image
|
||||
type: docker-image
|
||||
icon: docker
|
||||
source:
|
||||
<<: *docker-resource-source
|
||||
repository: ((docker-hub-organization))/spring-framework-jdk14-ci-image
|
||||
- name: spring-framework-jdk15-ci-image
|
||||
type: docker-image
|
||||
icon: docker
|
||||
source:
|
||||
<<: *docker-resource-source
|
||||
repository: ((docker-hub-organization))/spring-framework-jdk15-ci-image
|
||||
- name: artifactory-repo
|
||||
type: artifactory-resource
|
||||
icon: package-variant
|
||||
@@ -84,6 +107,43 @@ resources:
|
||||
username: ((artifactory-username))
|
||||
password: ((artifactory-password))
|
||||
build_name: ((build-name))
|
||||
- name: repo-status-build
|
||||
type: github-status-resource
|
||||
icon: eye-check-outline
|
||||
source:
|
||||
repository: ((github-repo-name))
|
||||
access_token: ((github-ci-status-token))
|
||||
branch: ((branch))
|
||||
context: build
|
||||
- name: repo-status-jdk11-build
|
||||
type: github-status-resource
|
||||
icon: eye-check-outline
|
||||
source:
|
||||
repository: ((github-repo-name))
|
||||
access_token: ((github-ci-status-token))
|
||||
branch: ((branch))
|
||||
context: jdk11-build
|
||||
- name: repo-status-jdk14-build
|
||||
type: github-status-resource
|
||||
icon: eye-check-outline
|
||||
source:
|
||||
repository: ((github-repo-name))
|
||||
access_token: ((github-ci-status-token))
|
||||
branch: ((branch))
|
||||
context: jdk14-build
|
||||
- name: repo-status-jdk15-build
|
||||
type: github-status-resource
|
||||
icon: eye-check-outline
|
||||
source:
|
||||
repository: ((github-repo-name))
|
||||
access_token: ((github-ci-status-token))
|
||||
branch: ((branch))
|
||||
context: jdk15-build
|
||||
- name: slack-alert
|
||||
type: slack-notification
|
||||
icon: slack
|
||||
source:
|
||||
url: ((slack-webhook-url))
|
||||
- name: github-pre-release
|
||||
type: github-release
|
||||
icon: briefcase-download-outline
|
||||
@@ -101,69 +161,192 @@ resources:
|
||||
repository: spring-framework
|
||||
access_token: ((github-ci-release-token))
|
||||
pre_release: false
|
||||
|
||||
jobs:
|
||||
- name: build-ci-images
|
||||
- name: build-spring-framework-ci-images
|
||||
plan:
|
||||
- get: git-repo
|
||||
- get: ci-images-git-repo
|
||||
trigger: true
|
||||
- task: build-ci-image
|
||||
privileged: true
|
||||
file: git-repo/ci/tasks/build-ci-image.yml
|
||||
output_mapping:
|
||||
image: ci-image
|
||||
vars:
|
||||
ci-image-name: ci-image
|
||||
<<: *docker-resource-source
|
||||
- put: ci-image
|
||||
- get: ci-images-git-repo
|
||||
trigger: true
|
||||
- in_parallel:
|
||||
- put: spring-framework-ci-image
|
||||
params:
|
||||
image: ci-image/image.tar
|
||||
build: ci-images-git-repo/ci/images
|
||||
dockerfile: ci-images-git-repo/ci/images/spring-framework-ci-image/Dockerfile
|
||||
- put: spring-framework-jdk11-ci-image
|
||||
params:
|
||||
build: ci-images-git-repo/ci/images
|
||||
dockerfile: ci-images-git-repo/ci/images/spring-framework-jdk11-ci-image/Dockerfile
|
||||
- put: spring-framework-jdk14-ci-image
|
||||
params:
|
||||
build: ci-images-git-repo/ci/images
|
||||
dockerfile: ci-images-git-repo/ci/images/spring-framework-jdk14-ci-image/Dockerfile
|
||||
- put: spring-framework-jdk15-ci-image
|
||||
params:
|
||||
build: ci-images-git-repo/ci/images
|
||||
dockerfile: ci-images-git-repo/ci/images/spring-framework-jdk15-ci-image/Dockerfile
|
||||
- name: build
|
||||
serial: true
|
||||
public: true
|
||||
plan:
|
||||
- get: spring-framework-ci-image
|
||||
- get: git-repo
|
||||
trigger: true
|
||||
- put: repo-status-build
|
||||
params: { state: "pending", commit: "git-repo" }
|
||||
- do:
|
||||
- task: build-project
|
||||
privileged: true
|
||||
timeout: ((task-timeout))
|
||||
image: spring-framework-ci-image
|
||||
file: git-repo/ci/tasks/build-project.yml
|
||||
params:
|
||||
BRANCH: ((branch))
|
||||
<<: *gradle-enterprise-task-params
|
||||
on_failure:
|
||||
do:
|
||||
- put: repo-status-build
|
||||
params: { state: "failure", commit: "git-repo" }
|
||||
- put: slack-alert
|
||||
params:
|
||||
<<: *slack-fail-params
|
||||
- put: repo-status-build
|
||||
params: { state: "success", commit: "git-repo" }
|
||||
- put: artifactory-repo
|
||||
params: &artifactory-params
|
||||
repo: libs-snapshot-local
|
||||
folder: distribution-repository
|
||||
build_uri: "https://ci.spring.io/teams/${BUILD_TEAM_NAME}/pipelines/${BUILD_PIPELINE_NAME}/jobs/${BUILD_JOB_NAME}/builds/${BUILD_NAME}"
|
||||
build_number: "${BUILD_PIPELINE_NAME}-${BUILD_JOB_NAME}-${BUILD_NAME}"
|
||||
disable_checksum_uploads: true
|
||||
threads: 8
|
||||
artifact_set:
|
||||
- include:
|
||||
- "/**/spring-*.zip"
|
||||
properties:
|
||||
"zip.name": "spring-framework"
|
||||
"zip.displayname": "Spring Framework"
|
||||
"zip.deployed": "false"
|
||||
- include:
|
||||
- "/**/spring-*-docs.zip"
|
||||
properties:
|
||||
"zip.type": "docs"
|
||||
- include:
|
||||
- "/**/spring-*-dist.zip"
|
||||
properties:
|
||||
"zip.type": "dist"
|
||||
- include:
|
||||
- "/**/spring-*-schema.zip"
|
||||
properties:
|
||||
"zip.type": "schema"
|
||||
get_params:
|
||||
threads: 8
|
||||
- name: jdk11-build
|
||||
serial: true
|
||||
public: true
|
||||
plan:
|
||||
- get: spring-framework-jdk11-ci-image
|
||||
- get: git-repo
|
||||
- get: every-morning
|
||||
trigger: true
|
||||
- put: repo-status-jdk11-build
|
||||
params: { state: "pending", commit: "git-repo" }
|
||||
- do:
|
||||
- task: check-project
|
||||
privileged: true
|
||||
timeout: ((task-timeout))
|
||||
image: spring-framework-jdk11-ci-image
|
||||
file: git-repo/ci/tasks/check-project.yml
|
||||
params:
|
||||
BRANCH: ((branch))
|
||||
<<: *gradle-enterprise-task-params
|
||||
on_failure:
|
||||
do:
|
||||
- put: repo-status-jdk11-build
|
||||
params: { state: "failure", commit: "git-repo" }
|
||||
- put: slack-alert
|
||||
params:
|
||||
<<: *slack-fail-params
|
||||
- put: repo-status-jdk11-build
|
||||
params: { state: "success", commit: "git-repo" }
|
||||
- name: jdk14-build
|
||||
serial: true
|
||||
public: true
|
||||
plan:
|
||||
- get: spring-framework-jdk14-ci-image
|
||||
- get: git-repo
|
||||
- get: every-morning
|
||||
trigger: true
|
||||
- put: repo-status-jdk14-build
|
||||
params: { state: "pending", commit: "git-repo" }
|
||||
- do:
|
||||
- task: check-project
|
||||
privileged: true
|
||||
timeout: ((task-timeout))
|
||||
image: spring-framework-jdk14-ci-image
|
||||
file: git-repo/ci/tasks/check-project.yml
|
||||
params:
|
||||
BRANCH: ((branch))
|
||||
<<: *gradle-enterprise-task-params
|
||||
on_failure:
|
||||
do:
|
||||
- put: repo-status-jdk14-build
|
||||
params: { state: "failure", commit: "git-repo" }
|
||||
- put: slack-alert
|
||||
params:
|
||||
<<: *slack-fail-params
|
||||
- put: repo-status-jdk14-build
|
||||
params: { state: "success", commit: "git-repo" }
|
||||
- name: jdk15-build
|
||||
serial: true
|
||||
public: true
|
||||
plan:
|
||||
- get: spring-framework-jdk15-ci-image
|
||||
- get: git-repo
|
||||
- get: every-morning
|
||||
trigger: true
|
||||
- put: repo-status-jdk15-build
|
||||
params: { state: "pending", commit: "git-repo" }
|
||||
- do:
|
||||
- task: check-project
|
||||
privileged: true
|
||||
timeout: ((task-timeout))
|
||||
image: spring-framework-jdk15-ci-image
|
||||
file: git-repo/ci/tasks/check-project.yml
|
||||
params:
|
||||
BRANCH: ((branch))
|
||||
<<: *gradle-enterprise-task-params
|
||||
on_failure:
|
||||
do:
|
||||
- put: repo-status-jdk15-build
|
||||
params: { state: "failure", commit: "git-repo" }
|
||||
- put: slack-alert
|
||||
params:
|
||||
<<: *slack-fail-params
|
||||
- put: repo-status-jdk15-build
|
||||
params: { state: "success", commit: "git-repo" }
|
||||
- name: stage-milestone
|
||||
serial: true
|
||||
plan:
|
||||
- get: ci-image
|
||||
- get: spring-framework-ci-image
|
||||
- get: git-repo
|
||||
trigger: false
|
||||
- task: stage
|
||||
image: ci-image
|
||||
image: spring-framework-ci-image
|
||||
file: git-repo/ci/tasks/stage-version.yml
|
||||
params:
|
||||
RELEASE_TYPE: M
|
||||
<<: *gradle-enterprise-task-params
|
||||
- put: artifactory-repo
|
||||
params: &artifactory-params
|
||||
signing_key: ((signing-key))
|
||||
signing_passphrase: ((signing-passphrase))
|
||||
params:
|
||||
<<: *artifactory-params
|
||||
repo: libs-staging-local
|
||||
folder: distribution-repository
|
||||
build_uri: "https://ci.spring.io/teams/${BUILD_TEAM_NAME}/pipelines/${BUILD_PIPELINE_NAME}/jobs/${BUILD_JOB_NAME}/builds/${BUILD_NAME}"
|
||||
build_number: "${BUILD_PIPELINE_NAME}-${BUILD_JOB_NAME}-${BUILD_NAME}"
|
||||
disable_checksum_uploads: true
|
||||
threads: 8
|
||||
artifact_set:
|
||||
- include:
|
||||
- "/**/framework-api-*.zip"
|
||||
properties:
|
||||
"zip.name": "spring-framework"
|
||||
"zip.displayname": "Spring Framework"
|
||||
"zip.deployed": "false"
|
||||
- include:
|
||||
- "/**/framework-api-*-docs.zip"
|
||||
properties:
|
||||
"zip.type": "docs"
|
||||
- include:
|
||||
- "/**/framework-api-*-schema.zip"
|
||||
properties:
|
||||
"zip.type": "schema"
|
||||
get_params:
|
||||
threads: 8
|
||||
- put: git-repo
|
||||
params:
|
||||
repository: stage-git-repo
|
||||
- name: promote-milestone
|
||||
serial: true
|
||||
plan:
|
||||
- get: ci-image
|
||||
- get: spring-framework-ci-image
|
||||
- get: git-repo
|
||||
trigger: false
|
||||
- get: artifactory-repo
|
||||
@@ -173,6 +356,7 @@ jobs:
|
||||
download_artifacts: false
|
||||
save_build_info: true
|
||||
- task: promote
|
||||
image: spring-framework-ci-image
|
||||
file: git-repo/ci/tasks/promote-version.yml
|
||||
params:
|
||||
RELEASE_TYPE: M
|
||||
@@ -182,18 +366,17 @@ jobs:
|
||||
params:
|
||||
RELEASE_TYPE: M
|
||||
<<: *github-task-params
|
||||
<<: *docker-resource-source
|
||||
- put: github-pre-release
|
||||
params:
|
||||
<<: *changelog-task-params
|
||||
- name: stage-rc
|
||||
serial: true
|
||||
plan:
|
||||
- get: ci-image
|
||||
- get: spring-framework-ci-image
|
||||
- get: git-repo
|
||||
trigger: false
|
||||
- task: stage
|
||||
image: ci-image
|
||||
image: spring-framework-ci-image
|
||||
file: git-repo/ci/tasks/stage-version.yml
|
||||
params:
|
||||
RELEASE_TYPE: RC
|
||||
@@ -201,13 +384,14 @@ jobs:
|
||||
- put: artifactory-repo
|
||||
params:
|
||||
<<: *artifactory-params
|
||||
repo: libs-staging-local
|
||||
- put: git-repo
|
||||
params:
|
||||
repository: stage-git-repo
|
||||
- name: promote-rc
|
||||
serial: true
|
||||
plan:
|
||||
- get: ci-image
|
||||
- get: spring-framework-ci-image
|
||||
- get: git-repo
|
||||
trigger: false
|
||||
- get: artifactory-repo
|
||||
@@ -217,10 +401,10 @@ jobs:
|
||||
download_artifacts: false
|
||||
save_build_info: true
|
||||
- task: promote
|
||||
image: spring-framework-ci-image
|
||||
file: git-repo/ci/tasks/promote-version.yml
|
||||
params:
|
||||
RELEASE_TYPE: RC
|
||||
<<: *docker-resource-source
|
||||
<<: *artifactory-task-params
|
||||
- task: generate-changelog
|
||||
file: git-repo/ci/tasks/generate-changelog.yml
|
||||
@@ -233,11 +417,11 @@ jobs:
|
||||
- name: stage-release
|
||||
serial: true
|
||||
plan:
|
||||
- get: ci-image
|
||||
- get: spring-framework-ci-image
|
||||
- get: git-repo
|
||||
trigger: false
|
||||
- task: stage
|
||||
image: ci-image
|
||||
image: spring-framework-ci-image
|
||||
file: git-repo/ci/tasks/stage-version.yml
|
||||
params:
|
||||
RELEASE_TYPE: RELEASE
|
||||
@@ -245,32 +429,33 @@ jobs:
|
||||
- put: artifactory-repo
|
||||
params:
|
||||
<<: *artifactory-params
|
||||
repo: libs-staging-local
|
||||
- put: git-repo
|
||||
params:
|
||||
repository: stage-git-repo
|
||||
- name: promote-release
|
||||
serial: true
|
||||
plan:
|
||||
- get: ci-image
|
||||
- get: spring-framework-ci-image
|
||||
- get: git-repo
|
||||
trigger: false
|
||||
- get: artifactory-repo
|
||||
trigger: false
|
||||
passed: [stage-release]
|
||||
params:
|
||||
download_artifacts: true
|
||||
download_artifacts: false
|
||||
save_build_info: true
|
||||
- task: promote
|
||||
image: spring-framework-ci-image
|
||||
file: git-repo/ci/tasks/promote-version.yml
|
||||
params:
|
||||
RELEASE_TYPE: RELEASE
|
||||
<<: *docker-resource-source
|
||||
<<: *artifactory-task-params
|
||||
<<: *sonatype-task-params
|
||||
- name: create-github-release
|
||||
<<: *bintray-task-params
|
||||
- name: sync-to-maven-central
|
||||
serial: true
|
||||
plan:
|
||||
- get: ci-image
|
||||
- get: spring-framework-ci-image
|
||||
- get: git-repo
|
||||
- get: artifactory-repo
|
||||
trigger: true
|
||||
@@ -278,18 +463,25 @@ jobs:
|
||||
params:
|
||||
download_artifacts: false
|
||||
save_build_info: true
|
||||
- task: sync-to-maven-central
|
||||
image: spring-framework-ci-image
|
||||
file: git-repo/ci/tasks/sync-to-maven-central.yml
|
||||
params:
|
||||
<<: *bintray-task-params
|
||||
<<: *sonatype-task-params
|
||||
- task: generate-changelog
|
||||
file: git-repo/ci/tasks/generate-changelog.yml
|
||||
params:
|
||||
RELEASE_TYPE: RELEASE
|
||||
<<: *docker-resource-source
|
||||
<<: *github-task-params
|
||||
- put: github-release
|
||||
params:
|
||||
<<: *changelog-task-params
|
||||
|
||||
groups:
|
||||
- name: "builds"
|
||||
jobs: ["build", "jdk11-build", "jdk14-build", "jdk15-build"]
|
||||
- name: "releases"
|
||||
jobs: ["stage-milestone", "stage-rc", "stage-release", "promote-milestone", "promote-rc", "promote-release", "create-github-release"]
|
||||
jobs: ["stage-milestone", "stage-rc", "stage-release", "promote-milestone","promote-rc", "promote-release", "sync-to-maven-central"]
|
||||
- name: "ci-images"
|
||||
jobs: ["build-ci-images"]
|
||||
jobs: ["build-spring-framework-ci-images"]
|
||||
|
||||
Executable
+9
@@ -0,0 +1,9 @@
|
||||
#!/bin/bash
|
||||
set -e
|
||||
|
||||
source $(dirname $0)/common.sh
|
||||
repository=$(pwd)/distribution-repository
|
||||
|
||||
pushd git-repo > /dev/null
|
||||
./gradlew -Dorg.gradle.internal.launcher.welcomeMessageEnabled=false --no-daemon --max-workers=4 -PdeploymentRepository=${repository} build publishAllPublicationsToDeploymentRepository
|
||||
popd > /dev/null
|
||||
Executable
+8
@@ -0,0 +1,8 @@
|
||||
#!/bin/bash
|
||||
set -e
|
||||
|
||||
source $(dirname $0)/common.sh
|
||||
|
||||
pushd git-repo > /dev/null
|
||||
./gradlew -Dorg.gradle.internal.launcher.welcomeMessageEnabled=false --no-daemon --max-workers=4 check
|
||||
popd > /dev/null
|
||||
@@ -2,7 +2,7 @@
|
||||
set -e
|
||||
|
||||
CONFIG_DIR=git-repo/ci/config
|
||||
version=$( cat artifactory-repo/build-info.json | jq -r '.buildInfo.modules[0].id' | sed 's/.*:.*:\(.*\)/\1/' )
|
||||
version=$( cat version/version )
|
||||
|
||||
java -jar /github-changelog-generator.jar \
|
||||
--spring.config.location=${CONFIG_DIR}/changelog-generator.yml \
|
||||
|
||||
@@ -1,17 +1,16 @@
|
||||
#!/bin/bash
|
||||
|
||||
source $(dirname $0)/common.sh
|
||||
CONFIG_DIR=git-repo/ci/config
|
||||
|
||||
version=$( cat artifactory-repo/build-info.json | jq -r '.buildInfo.modules[0].id' | sed 's/.*:.*:\(.*\)/\1/' )
|
||||
export BUILD_INFO_LOCATION=$(pwd)/artifactory-repo/build-info.json
|
||||
|
||||
java -jar /concourse-release-scripts.jar \
|
||||
--spring.config.location=${CONFIG_DIR}/release-scripts.yml \
|
||||
publishToCentral $RELEASE_TYPE $BUILD_INFO_LOCATION artifactory-repo || { exit 1; }
|
||||
java -jar /opt/concourse-release-scripts.jar promote $RELEASE_TYPE $BUILD_INFO_LOCATION || { exit 1; }
|
||||
|
||||
java -jar /concourse-release-scripts.jar \
|
||||
java -jar /opt/concourse-release-scripts.jar \
|
||||
--spring.config.location=${CONFIG_DIR}/release-scripts.yml \
|
||||
promote $RELEASE_TYPE $BUILD_INFO_LOCATION || { exit 1; }
|
||||
distribute $RELEASE_TYPE $BUILD_INFO_LOCATION || { exit 1; }
|
||||
|
||||
echo "Promotion complete"
|
||||
echo $version > version/version
|
||||
|
||||
@@ -29,14 +29,13 @@ fi
|
||||
echo "Staging $stageVersion (next version will be $nextVersion)"
|
||||
sed -i "s/version=$snapshotVersion/version=$stageVersion/" gradle.properties
|
||||
|
||||
git config user.name "Spring Builds" > /dev/null
|
||||
git config user.email "spring-builds@users.noreply.github.com" > /dev/null
|
||||
git config user.name "Spring Buildmaster" > /dev/null
|
||||
git config user.email "buildmaster@springframework.org" > /dev/null
|
||||
git add gradle.properties > /dev/null
|
||||
git commit -m"Release v$stageVersion" > /dev/null
|
||||
git tag -a "v$stageVersion" -m"Release v$stageVersion" > /dev/null
|
||||
|
||||
./gradlew --no-daemon --max-workers=4 -PdeploymentRepository=${repository} -Porg.gradle.java.installations.fromEnv=JDK17,JDK21 \
|
||||
build publishAllPublicationsToDeploymentRepository
|
||||
./gradlew --no-daemon --max-workers=4 -PdeploymentRepository=${repository} build publishAllPublicationsToDeploymentRepository
|
||||
|
||||
git reset --hard HEAD^ > /dev/null
|
||||
if [[ $nextVersion != $snapshotVersion ]]; then
|
||||
|
||||
Executable
+8
@@ -0,0 +1,8 @@
|
||||
#!/bin/bash
|
||||
|
||||
export BUILD_INFO_LOCATION=$(pwd)/artifactory-repo/build-info.json
|
||||
version=$( cat artifactory-repo/build-info.json | jq -r '.buildInfo.modules[0].id' | sed 's/.*:.*:\(.*\)/\1/' )
|
||||
java -jar /opt/concourse-release-scripts.jar syncToCentral "RELEASE" $BUILD_INFO_LOCATION || { exit 1; }
|
||||
|
||||
echo "Sync complete"
|
||||
echo $version > version/version
|
||||
@@ -1,30 +0,0 @@
|
||||
---
|
||||
platform: linux
|
||||
image_resource:
|
||||
type: registry-image
|
||||
source:
|
||||
repository: concourse/oci-build-task
|
||||
tag: 0.10.0
|
||||
username: ((docker-hub-username))
|
||||
password: ((docker-hub-password))
|
||||
inputs:
|
||||
- name: ci-images-git-repo
|
||||
outputs:
|
||||
- name: image
|
||||
caches:
|
||||
- path: ci-image-cache
|
||||
params:
|
||||
CONTEXT: ci-images-git-repo/ci/images
|
||||
DOCKERFILE: ci-images-git-repo/ci/images/ci-image/Dockerfile
|
||||
DOCKER_HUB_AUTH: ((docker-hub-auth))
|
||||
run:
|
||||
path: /bin/sh
|
||||
args:
|
||||
- "-c"
|
||||
- |
|
||||
mkdir -p /root/.docker
|
||||
cat > /root/.docker/config.json <<EOF
|
||||
{ "auths": { "https://index.docker.io/v1/": { "auth": "$DOCKER_HUB_AUTH" }}}
|
||||
EOF
|
||||
build
|
||||
|
||||
@@ -0,0 +1,22 @@
|
||||
---
|
||||
platform: linux
|
||||
inputs:
|
||||
- name: git-repo
|
||||
outputs:
|
||||
- name: distribution-repository
|
||||
- name: git-repo
|
||||
caches:
|
||||
- path: gradle
|
||||
params:
|
||||
BRANCH:
|
||||
CI: true
|
||||
GRADLE_ENTERPRISE_ACCESS_KEY:
|
||||
GRADLE_ENTERPRISE_CACHE_USERNAME:
|
||||
GRADLE_ENTERPRISE_CACHE_PASSWORD:
|
||||
GRADLE_ENTERPRISE_URL: https://ge.spring.io
|
||||
run:
|
||||
path: bash
|
||||
args:
|
||||
- -ec
|
||||
- |
|
||||
${PWD}/git-repo/ci/scripts/build-project.sh
|
||||
@@ -0,0 +1,22 @@
|
||||
---
|
||||
platform: linux
|
||||
inputs:
|
||||
- name: git-repo
|
||||
outputs:
|
||||
- name: distribution-repository
|
||||
- name: git-repo
|
||||
caches:
|
||||
- path: gradle
|
||||
params:
|
||||
BRANCH:
|
||||
CI: true
|
||||
GRADLE_ENTERPRISE_ACCESS_KEY:
|
||||
GRADLE_ENTERPRISE_CACHE_USERNAME:
|
||||
GRADLE_ENTERPRISE_CACHE_PASSWORD:
|
||||
GRADLE_ENTERPRISE_URL: https://ge.spring.io
|
||||
run:
|
||||
path: bash
|
||||
args:
|
||||
- -ec
|
||||
- |
|
||||
${PWD}/git-repo/ci/scripts/check-project.sh
|
||||
@@ -1,15 +1,13 @@
|
||||
---
|
||||
platform: linux
|
||||
image_resource:
|
||||
type: registry-image
|
||||
type: docker-image
|
||||
source:
|
||||
repository: springio/github-changelog-generator
|
||||
tag: '0.0.8'
|
||||
username: ((docker-hub-username))
|
||||
password: ((docker-hub-password))
|
||||
tag: '0.0.4'
|
||||
inputs:
|
||||
- name: git-repo
|
||||
- name: artifactory-repo
|
||||
- name: version
|
||||
outputs:
|
||||
- name: generated-changelog
|
||||
params:
|
||||
|
||||
@@ -1,12 +1,5 @@
|
||||
---
|
||||
platform: linux
|
||||
image_resource:
|
||||
type: registry-image
|
||||
source:
|
||||
repository: springio/concourse-release-scripts
|
||||
tag: '0.4.0'
|
||||
username: ((docker-hub-username))
|
||||
password: ((docker-hub-password))
|
||||
inputs:
|
||||
- name: git-repo
|
||||
- name: artifactory-repo
|
||||
@@ -17,9 +10,9 @@ params:
|
||||
ARTIFACTORY_SERVER:
|
||||
ARTIFACTORY_USERNAME:
|
||||
ARTIFACTORY_PASSWORD:
|
||||
SONATYPE_USER:
|
||||
SONATYPE_PASSWORD:
|
||||
SONATYPE_URL:
|
||||
SONATYPE_STAGING_PROFILE:
|
||||
BINTRAY_SUBJECT:
|
||||
BINTRAY_REPO:
|
||||
BINTRAY_USERNAME:
|
||||
BINTRAY_API_KEY:
|
||||
run:
|
||||
path: git-repo/ci/scripts/promote-version.sh
|
||||
|
||||
@@ -0,0 +1,16 @@
|
||||
---
|
||||
platform: linux
|
||||
inputs:
|
||||
- name: git-repo
|
||||
- name: artifactory-repo
|
||||
outputs:
|
||||
- name: version
|
||||
params:
|
||||
BINTRAY_REPO:
|
||||
BINTRAY_SUBJECT:
|
||||
BINTRAY_USERNAME:
|
||||
BINTRAY_API_KEY:
|
||||
SONATYPE_USER_TOKEN:
|
||||
SONATYPE_PASSWORD_TOKEN:
|
||||
run:
|
||||
path: git-repo/ci/scripts/sync-to-maven-central.sh
|
||||
@@ -1,119 +0,0 @@
|
||||
plugins {
|
||||
id 'java-platform'
|
||||
id 'io.freefair.aggregate-javadoc' version '8.3'
|
||||
}
|
||||
|
||||
description = "Spring Framework API Docs"
|
||||
|
||||
apply from: "${rootDir}/gradle/publications.gradle"
|
||||
|
||||
repositories {
|
||||
maven {
|
||||
url "https://repo.spring.io/release"
|
||||
}
|
||||
}
|
||||
|
||||
dependencies {
|
||||
moduleProjects.each { moduleProject ->
|
||||
javadoc moduleProject
|
||||
}
|
||||
}
|
||||
|
||||
javadoc {
|
||||
title = "${rootProject.description} ${version} API"
|
||||
options {
|
||||
encoding = "UTF-8"
|
||||
memberLevel = JavadocMemberLevel.PROTECTED
|
||||
author = true
|
||||
header = rootProject.description
|
||||
use = true
|
||||
overview = project.relativePath("$rootProject.rootDir/framework-docs/src/docs/api/overview.html")
|
||||
destinationDir = file("$project.docsDir/javadoc-api")
|
||||
splitIndex = true
|
||||
links(rootProject.ext.javadocLinks)
|
||||
addBooleanOption('Xdoclint:syntax,reference', true) // only check syntax and reference with doclint
|
||||
addBooleanOption('Werror', true) // fail build on Javadoc warnings
|
||||
}
|
||||
maxMemory = "1024m"
|
||||
doFirst {
|
||||
classpath += files(
|
||||
// ensure the javadoc process can resolve types compiled from .aj sources
|
||||
project(":spring-aspects").sourceSets.main.output
|
||||
)
|
||||
classpath += files(moduleProjects.collect { it.sourceSets.main.compileClasspath })
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Produce KDoc for all Spring Framework modules in "build/docs/kdoc"
|
||||
*/
|
||||
rootProject.tasks.dokkaHtmlMultiModule.configure {
|
||||
dependsOn {
|
||||
tasks.named("javadoc")
|
||||
}
|
||||
moduleName.set("spring-framework")
|
||||
outputDirectory.set(file("$docsDir/kdoc-api"))
|
||||
includes.from("$rootProject.rootDir/framework-docs/src/docs/api/dokka-overview.md")
|
||||
}
|
||||
|
||||
/**
|
||||
* Zip all Java docs (javadoc & kdoc) into a single archive
|
||||
*/
|
||||
tasks.register('docsZip', Zip) {
|
||||
dependsOn = ['javadoc', rootProject.tasks.dokkaHtmlMultiModule]
|
||||
group = "distribution"
|
||||
description = "Builds -${archiveClassifier} archive containing api and reference " +
|
||||
"for deployment at https://docs.spring.io/spring-framework/docs/."
|
||||
|
||||
archiveBaseName.set("spring-framework")
|
||||
archiveClassifier.set("docs")
|
||||
from("src/dist") {
|
||||
include "changelog.txt"
|
||||
}
|
||||
from(javadoc) {
|
||||
into "javadoc-api"
|
||||
}
|
||||
from(rootProject.tasks.dokkaHtmlMultiModule.outputDirectory) {
|
||||
into "kdoc-api"
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Zip all Spring Framework schemas into a single archive
|
||||
*/
|
||||
tasks.register('schemaZip', Zip) {
|
||||
group = "distribution"
|
||||
archiveBaseName.set("spring-framework")
|
||||
archiveClassifier.set("schema")
|
||||
description = "Builds -${archiveClassifier} archive containing all " +
|
||||
"XSDs for deployment at https://springframework.org/schema."
|
||||
duplicatesStrategy DuplicatesStrategy.EXCLUDE
|
||||
moduleProjects.each { module ->
|
||||
def Properties schemas = new Properties();
|
||||
|
||||
module.sourceSets.main.resources.find {
|
||||
(it.path.endsWith("META-INF/spring.schemas") || it.path.endsWith("META-INF\\spring.schemas"))
|
||||
}?.withInputStream { schemas.load(it) }
|
||||
|
||||
for (def key : schemas.keySet()) {
|
||||
def shortName = key.replaceAll(/http.*schema.(.*).spring-.*/, '$1')
|
||||
assert shortName != key
|
||||
File xsdFile = module.sourceSets.main.resources.find {
|
||||
(it.path.endsWith(schemas.get(key)) || it.path.endsWith(schemas.get(key).replaceAll('\\/', '\\\\')))
|
||||
}
|
||||
assert xsdFile != null
|
||||
into(shortName) {
|
||||
from xsdFile.path
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
publishing {
|
||||
publications {
|
||||
mavenJava(MavenPublication) {
|
||||
artifact docsZip
|
||||
artifact schemaZip
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1,90 +0,0 @@
|
||||
name: framework
|
||||
version: true
|
||||
title: Spring Framework
|
||||
nav:
|
||||
- modules/ROOT/nav.adoc
|
||||
ext:
|
||||
collector:
|
||||
run:
|
||||
command: gradlew -q -PbuildSrc.skipTests=true "-Dorg.gradle.jvmargs=-Xmx3g -XX:+HeapDumpOnOutOfMemoryError" :framework-docs:generateAntoraResources
|
||||
local: true
|
||||
scan:
|
||||
dir: ./build/generated-antora-resources
|
||||
|
||||
asciidoc:
|
||||
attributes:
|
||||
attribute-missing: 'warn'
|
||||
# FIXME: the copyright is not removed
|
||||
# FIXME: The package is not renamed
|
||||
chomp: 'all'
|
||||
fold: 'all'
|
||||
table-stripes: 'odd'
|
||||
include-java: 'example$docs-src/main/java/org/springframework/docs'
|
||||
spring-site: 'https://spring.io'
|
||||
spring-site-blog: '{spring-site}/blog'
|
||||
spring-site-cve: "{spring-site}/security"
|
||||
spring-site-guides: '{spring-site}/guides'
|
||||
spring-site-projects: '{spring-site}/projects'
|
||||
spring-site-tools: "{spring-site}/tools"
|
||||
spring-org: 'spring-projects'
|
||||
spring-github-org: "https://github.com/{spring-org}"
|
||||
spring-framework-github: "https://github.com/{spring-org}/spring-framework"
|
||||
spring-framework-code: '{spring-framework-github}/tree/main'
|
||||
spring-framework-issues: '{spring-framework-github}/issues'
|
||||
spring-framework-wiki: '{spring-framework-github}/wiki'
|
||||
# Docs
|
||||
docs-site: 'https://docs.spring.io'
|
||||
spring-framework-docs-root: '{docs-site}/spring-framework/docs'
|
||||
spring-framework-api: '{spring-framework-docs-root}/{spring-version}/javadoc-api/org/springframework'
|
||||
spring-framework-api-kdoc: '{spring-framework-docs-root}/{spring-version}/kdoc-api'
|
||||
spring-framework-reference: '{spring-framework-docs-root}/{spring-version}/reference'
|
||||
#
|
||||
# Other Spring portfolio projects
|
||||
spring-boot-docs: '{docs-site}/spring-boot/docs/current/reference/html'
|
||||
spring-boot-issues: '{spring-github-org}/spring-boot/issues'
|
||||
# TODO add more projects / links or just build up on {docs-site}?
|
||||
# TODO rename the below using new conventions
|
||||
docs-spring-gemfire: '{docs-site}/spring-gemfire/docs/current/reference'
|
||||
docs-spring-security: '{docs-site}/spring-security/reference'
|
||||
docs-spring-session: '{docs-site}/spring-session/reference'
|
||||
#
|
||||
# External projects URLs and related attributes
|
||||
aspectj-site: 'https://www.eclipse.org/aspectj'
|
||||
aspectj-docs: "{aspectj-site}/doc/released"
|
||||
aspectj-api: "{aspectj-docs}/runtime-api"
|
||||
aspectj-docs-devguide: "{aspectj-docs}/devguide"
|
||||
aspectj-docs-progguide: "{aspectj-docs}/progguide"
|
||||
assertj-docs: 'https://assertj.github.io/doc'
|
||||
baeldung-blog: 'https://www.baeldung.com'
|
||||
bean-validation-site: 'https://beanvalidation.org'
|
||||
graalvm-docs: 'https://www.graalvm.org/22.3/reference-manual'
|
||||
hibernate-validator-site: 'https://hibernate.org/validator/'
|
||||
jackson-docs: 'https://fasterxml.github.io'
|
||||
jackson-github-org: 'https://github.com/FasterXML'
|
||||
java-api: 'https://docs.oracle.com/en/java/javase/17/docs/api'
|
||||
java-tutorial: 'https://docs.oracle.com/javase/tutorial'
|
||||
JSR: 'https://www.jcp.org/en/jsr/detail?id='
|
||||
kotlin-site: 'https://kotlinlang.org'
|
||||
kotlin-docs: '{kotlin-site}/docs'
|
||||
kotlin-api: '{kotlin-site}/api/latest'
|
||||
kotlin-coroutines-api: '{kotlin-site}/api/kotlinx.coroutines'
|
||||
kotlin-github-org: 'https://github.com/Kotlin'
|
||||
kotlin-issues: 'https://youtrack.jetbrains.com/issue'
|
||||
reactive-streams-site: 'https://www.reactive-streams.org'
|
||||
reactive-streams-spec: 'https://github.com/reactive-streams/reactive-streams-jvm/blob/master/README.md#specification'
|
||||
reactor-github-org: 'https://github.com/reactor'
|
||||
reactor-site: 'https://projectreactor.io'
|
||||
rsocket-github-org: 'https://github.com/rsocket'
|
||||
rsocket-java: '{rsocket-github-org}/rsocket-java'
|
||||
rsocket-java-code: '{rsocket-java}/tree/master/'
|
||||
rsocket-protocol-extensions: '{rsocket-github-org}/rsocket/tree/master/Extensions'
|
||||
rsocket-site: 'https://rsocket.io'
|
||||
rfc-site: 'https://datatracker.ietf.org/doc/html'
|
||||
sockjs-client: 'https://github.com/sockjs/sockjs-client'
|
||||
sockjs-protocol: 'https://github.com/sockjs/sockjs-protocol'
|
||||
sockjs-protocol-site: "https://sockjs.github.io/sockjs-protocol"
|
||||
stackoverflow-site: 'https://stackoverflow.com'
|
||||
stackoverflow-questions: '{stackoverflow-site}/questions'
|
||||
stackoverflow-spring-tag: "{stackoverflow-questions}/tagged/spring"
|
||||
stackoverflow-spring-kotlin-tags: "{stackoverflow-spring-tag}+kotlin"
|
||||
testcontainers-site: 'https://www.testcontainers.org'
|
||||
@@ -1,70 +0,0 @@
|
||||
plugins {
|
||||
id 'kotlin'
|
||||
id 'io.spring.antora.generate-antora-yml' version '0.0.1'
|
||||
id 'org.antora' version '1.0.0'
|
||||
}
|
||||
|
||||
description = "Spring Framework Docs"
|
||||
|
||||
apply from: "${rootDir}/gradle/ide.gradle"
|
||||
apply from: "${rootDir}/gradle/publications.gradle"
|
||||
|
||||
antora {
|
||||
version = '3.2.0-alpha.2'
|
||||
playbook = 'cached-antora-playbook.yml'
|
||||
playbookProvider {
|
||||
repository = 'spring-projects/spring-framework'
|
||||
branch = 'docs-build'
|
||||
path = 'lib/antora/templates/per-branch-antora-playbook.yml'
|
||||
checkLocalBranch = true
|
||||
}
|
||||
options = ['--clean', '--stacktrace']
|
||||
environment = [
|
||||
'ALGOLIA_API_KEY': '82c7ead946afbac3cf98c32446154691',
|
||||
'ALGOLIA_APP_ID': '244V8V9FGG',
|
||||
'ALGOLIA_INDEX_NAME': 'framework-docs'
|
||||
]
|
||||
dependencies = [
|
||||
'@antora/atlas-extension': '1.0.0-alpha.1',
|
||||
'@antora/collector-extension': '1.0.0-alpha.3',
|
||||
'@asciidoctor/tabs': '1.0.0-beta.3',
|
||||
'@opendevise/antora-release-line-extension': '1.0.0',
|
||||
'@springio/antora-extensions': '1.8.2',
|
||||
'@springio/asciidoctor-extensions': '1.0.0-alpha.9'
|
||||
]
|
||||
}
|
||||
|
||||
tasks.named("generateAntoraYml") {
|
||||
asciidocAttributes = project.provider( {
|
||||
return ["spring-version": project.version ]
|
||||
} )
|
||||
}
|
||||
|
||||
tasks.register("generateAntoraResources") {
|
||||
dependsOn 'generateAntoraYml'
|
||||
}
|
||||
|
||||
jar {
|
||||
enabled = false
|
||||
}
|
||||
|
||||
javadoc {
|
||||
enabled = false
|
||||
}
|
||||
|
||||
repositories {
|
||||
maven {
|
||||
url "https://repo.spring.io/release"
|
||||
}
|
||||
}
|
||||
|
||||
dependencies {
|
||||
api(project(":spring-context"))
|
||||
api(project(":spring-jms"))
|
||||
api(project(":spring-web"))
|
||||
api("jakarta.jms:jakarta.jms-api")
|
||||
api("jakarta.servlet:jakarta.servlet-api")
|
||||
|
||||
implementation(project(":spring-core-test"))
|
||||
implementation("org.assertj:assertj-core")
|
||||
}
|
||||
@@ -1 +0,0 @@
|
||||
../../../src
|
||||
@@ -1,443 +0,0 @@
|
||||
* xref:overview.adoc[Overview]
|
||||
* xref:core.adoc[]
|
||||
** xref:core/beans.adoc[]
|
||||
*** xref:core/beans/introduction.adoc[]
|
||||
*** xref:core/beans/basics.adoc[]
|
||||
*** xref:core/beans/definition.adoc[]
|
||||
*** xref:core/beans/dependencies.adoc[]
|
||||
**** xref:core/beans/dependencies/factory-collaborators.adoc[]
|
||||
**** xref:core/beans/dependencies/factory-properties-detailed.adoc[]
|
||||
**** xref:core/beans/dependencies/factory-dependson.adoc[]
|
||||
**** xref:core/beans/dependencies/factory-lazy-init.adoc[]
|
||||
**** xref:core/beans/dependencies/factory-autowire.adoc[]
|
||||
**** xref:core/beans/dependencies/factory-method-injection.adoc[]
|
||||
*** xref:core/beans/factory-scopes.adoc[]
|
||||
*** xref:core/beans/factory-nature.adoc[]
|
||||
*** xref:core/beans/child-bean-definitions.adoc[]
|
||||
*** xref:core/beans/factory-extension.adoc[]
|
||||
*** xref:core/beans/annotation-config.adoc[]
|
||||
**** xref:core/beans/annotation-config/autowired.adoc[]
|
||||
**** xref:core/beans/annotation-config/autowired-primary.adoc[]
|
||||
**** xref:core/beans/annotation-config/autowired-qualifiers.adoc[]
|
||||
**** xref:core/beans/annotation-config/generics-as-qualifiers.adoc[]
|
||||
**** xref:core/beans/annotation-config/custom-autowire-configurer.adoc[]
|
||||
**** xref:core/beans/annotation-config/resource.adoc[]
|
||||
**** xref:core/beans/annotation-config/value-annotations.adoc[]
|
||||
**** xref:core/beans/annotation-config/postconstruct-and-predestroy-annotations.adoc[]
|
||||
*** xref:core/beans/classpath-scanning.adoc[]
|
||||
*** xref:core/beans/standard-annotations.adoc[]
|
||||
*** xref:core/beans/java.adoc[]
|
||||
**** xref:core/beans/java/basic-concepts.adoc[]
|
||||
**** xref:core/beans/java/instantiating-container.adoc[]
|
||||
**** xref:core/beans/java/bean-annotation.adoc[]
|
||||
**** xref:core/beans/java/configuration-annotation.adoc[]
|
||||
**** xref:core/beans/java/composing-configuration-classes.adoc[]
|
||||
*** xref:core/beans/environment.adoc[]
|
||||
*** xref:core/beans/context-load-time-weaver.adoc[]
|
||||
*** xref:core/beans/context-introduction.adoc[]
|
||||
*** xref:core/beans/beanfactory.adoc[]
|
||||
** xref:core/resources.adoc[]
|
||||
** xref:core/validation.adoc[]
|
||||
*** xref:core/validation/validator.adoc[]
|
||||
*** xref:core/validation/beans-beans.adoc[]
|
||||
*** xref:core/validation/conversion.adoc[]
|
||||
*** xref:core/validation/convert.adoc[]
|
||||
*** xref:core/validation/format.adoc[]
|
||||
*** xref:core/validation/format-configuring-formatting-globaldatetimeformat.adoc[]
|
||||
*** xref:core/validation/beanvalidation.adoc[]
|
||||
** xref:core/expressions.adoc[]
|
||||
*** xref:core/expressions/evaluation.adoc[]
|
||||
*** xref:core/expressions/beandef.adoc[]
|
||||
*** xref:core/expressions/language-ref.adoc[]
|
||||
**** xref:core/expressions/language-ref/literal.adoc[]
|
||||
**** xref:core/expressions/language-ref/properties-arrays.adoc[]
|
||||
**** xref:core/expressions/language-ref/inline-lists.adoc[]
|
||||
**** xref:core/expressions/language-ref/inline-maps.adoc[]
|
||||
**** xref:core/expressions/language-ref/array-construction.adoc[]
|
||||
**** xref:core/expressions/language-ref/methods.adoc[]
|
||||
**** xref:core/expressions/language-ref/operators.adoc[]
|
||||
**** xref:core/expressions/language-ref/types.adoc[]
|
||||
**** xref:core/expressions/language-ref/constructors.adoc[]
|
||||
**** xref:core/expressions/language-ref/variables.adoc[]
|
||||
**** xref:core/expressions/language-ref/functions.adoc[]
|
||||
**** xref:core/expressions/language-ref/bean-references.adoc[]
|
||||
**** xref:core/expressions/language-ref/operator-ternary.adoc[]
|
||||
**** xref:core/expressions/language-ref/operator-elvis.adoc[]
|
||||
**** xref:core/expressions/language-ref/operator-safe-navigation.adoc[]
|
||||
**** xref:core/expressions/language-ref/collection-selection.adoc[]
|
||||
**** xref:core/expressions/language-ref/collection-projection.adoc[]
|
||||
**** xref:core/expressions/language-ref/templating.adoc[]
|
||||
*** xref:core/expressions/example-classes.adoc[]
|
||||
** xref:core/aop.adoc[]
|
||||
*** xref:core/aop/introduction-defn.adoc[]
|
||||
*** xref:core/aop/introduction-spring-defn.adoc[]
|
||||
*** xref:core/aop/introduction-proxies.adoc[]
|
||||
*** xref:core/aop/ataspectj.adoc[]
|
||||
**** xref:core/aop/ataspectj/aspectj-support.adoc[]
|
||||
**** xref:core/aop/ataspectj/at-aspectj.adoc[]
|
||||
**** xref:core/aop/ataspectj/pointcuts.adoc[]
|
||||
**** xref:core/aop/ataspectj/advice.adoc[]
|
||||
**** xref:core/aop/ataspectj/introductions.adoc[]
|
||||
**** xref:core/aop/ataspectj/instantiation-models.adoc[]
|
||||
**** xref:core/aop/ataspectj/example.adoc[]
|
||||
*** xref:core/aop/schema.adoc[]
|
||||
*** xref:core/aop/choosing.adoc[]
|
||||
*** xref:core/aop/mixing-styles.adoc[]
|
||||
*** xref:core/aop/proxying.adoc[]
|
||||
*** xref:core/aop/aspectj-programmatic.adoc[]
|
||||
*** xref:core/aop/using-aspectj.adoc[]
|
||||
*** xref:core/aop/resources.adoc[]
|
||||
** xref:core/aop-api.adoc[]
|
||||
*** xref:core/aop-api/pointcuts.adoc[]
|
||||
*** xref:core/aop-api/advice.adoc[]
|
||||
*** xref:core/aop-api/advisor.adoc[]
|
||||
*** xref:core/aop-api/pfb.adoc[]
|
||||
*** xref:core/aop-api/concise-proxy.adoc[]
|
||||
*** xref:core/aop-api/prog.adoc[]
|
||||
*** xref:core/aop-api/advised.adoc[]
|
||||
*** xref:core/aop-api/autoproxy.adoc[]
|
||||
*** xref:core/aop-api/targetsource.adoc[]
|
||||
*** xref:core/aop-api/extensibility.adoc[]
|
||||
** xref:core/null-safety.adoc[]
|
||||
** xref:core/databuffer-codec.adoc[]
|
||||
** xref:core/spring-jcl.adoc[]
|
||||
** xref:core/aot.adoc[]
|
||||
** xref:core/appendix.adoc[]
|
||||
*** xref:core/appendix/xsd-schemas.adoc[]
|
||||
*** xref:core/appendix/xml-custom.adoc[]
|
||||
*** xref:core/appendix/application-startup-steps.adoc[]
|
||||
* xref:testing.adoc[]
|
||||
** xref:testing/introduction.adoc[]
|
||||
** xref:testing/unit.adoc[]
|
||||
** xref:testing/integration.adoc[]
|
||||
** xref:testing/support-jdbc.adoc[]
|
||||
** xref:testing/testcontext-framework.adoc[]
|
||||
*** xref:testing/testcontext-framework/key-abstractions.adoc[]
|
||||
*** xref:testing/testcontext-framework/bootstrapping.adoc[]
|
||||
*** xref:testing/testcontext-framework/tel-config.adoc[]
|
||||
*** xref:testing/testcontext-framework/application-events.adoc[]
|
||||
*** xref:testing/testcontext-framework/test-execution-events.adoc[]
|
||||
*** xref:testing/testcontext-framework/ctx-management.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/xml.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/groovy.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/javaconfig.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/mixed-config.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/context-customizers.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/initializers.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/inheritance.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/env-profiles.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/property-sources.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/dynamic-property-sources.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/web.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/web-mocks.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/caching.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/failure-threshold.adoc[]
|
||||
**** xref:testing/testcontext-framework/ctx-management/hierarchies.adoc[]
|
||||
*** xref:testing/testcontext-framework/fixture-di.adoc[]
|
||||
*** xref:testing/testcontext-framework/web-scoped-beans.adoc[]
|
||||
*** xref:testing/testcontext-framework/tx.adoc[]
|
||||
*** xref:testing/testcontext-framework/executing-sql.adoc[]
|
||||
*** xref:testing/testcontext-framework/parallel-test-execution.adoc[]
|
||||
*** xref:testing/testcontext-framework/support-classes.adoc[]
|
||||
*** xref:testing/testcontext-framework/aot.adoc[]
|
||||
** xref:testing/webtestclient.adoc[]
|
||||
** xref:testing/spring-mvc-test-framework.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/server.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/server-static-imports.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/server-setup-options.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/server-setup-steps.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/server-performing-requests.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/server-defining-expectations.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/async-requests.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/vs-streaming-response.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/server-filters.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/vs-end-to-end-integration-tests.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/server-resources.adoc[]
|
||||
*** xref:testing/spring-mvc-test-framework/server-htmlunit.adoc[]
|
||||
**** xref:testing/spring-mvc-test-framework/server-htmlunit/why.adoc[]
|
||||
**** xref:testing/spring-mvc-test-framework/server-htmlunit/mah.adoc[]
|
||||
**** xref:testing/spring-mvc-test-framework/server-htmlunit/webdriver.adoc[]
|
||||
**** xref:testing/spring-mvc-test-framework/server-htmlunit/geb.adoc[]
|
||||
** xref:testing/spring-mvc-test-client.adoc[]
|
||||
** xref:testing/appendix.adoc[]
|
||||
*** xref:testing/annotations.adoc[]
|
||||
**** xref:testing/annotations/integration-standard.adoc[]
|
||||
**** xref:testing/annotations/integration-spring.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-bootstrapwith.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-contextconfiguration.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-webappconfiguration.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-contexthierarchy.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-contextcustomizerfactories.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-activeprofiles.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-testpropertysource.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-dynamicpropertysource.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-dirtiescontext.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-testexecutionlisteners.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-recordapplicationevents.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-commit.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-rollback.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-beforetransaction.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-aftertransaction.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-sql.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-sqlconfig.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-sqlmergemode.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-sqlgroup.adoc[]
|
||||
***** xref:testing/annotations/integration-spring/annotation-disabledinaotmode.adoc[]
|
||||
**** xref:testing/annotations/integration-junit4.adoc[]
|
||||
**** xref:testing/annotations/integration-junit-jupiter.adoc[]
|
||||
**** xref:testing/annotations/integration-meta.adoc[]
|
||||
*** xref:testing/resources.adoc[]
|
||||
* xref:data-access.adoc[]
|
||||
** xref:data-access/transaction.adoc[]
|
||||
*** xref:data-access/transaction/motivation.adoc[]
|
||||
*** xref:data-access/transaction/strategies.adoc[]
|
||||
*** xref:data-access/transaction/tx-resource-synchronization.adoc[]
|
||||
*** xref:data-access/transaction/declarative.adoc[]
|
||||
**** xref:data-access/transaction/declarative/tx-decl-explained.adoc[]
|
||||
**** xref:data-access/transaction/declarative/first-example.adoc[]
|
||||
**** xref:data-access/transaction/declarative/rolling-back.adoc[]
|
||||
**** xref:data-access/transaction/declarative/diff-tx.adoc[]
|
||||
**** xref:data-access/transaction/declarative/txadvice-settings.adoc[]
|
||||
**** xref:data-access/transaction/declarative/annotations.adoc[]
|
||||
**** xref:data-access/transaction/declarative/tx-propagation.adoc[]
|
||||
**** xref:data-access/transaction/declarative/applying-more-than-just-tx-advice.adoc[]
|
||||
**** xref:data-access/transaction/declarative/aspectj.adoc[]
|
||||
*** xref:data-access/transaction/programmatic.adoc[]
|
||||
*** xref:data-access/transaction/tx-decl-vs-prog.adoc[]
|
||||
*** xref:data-access/transaction/event.adoc[]
|
||||
*** xref:data-access/transaction/application-server-integration.adoc[]
|
||||
*** xref:data-access/transaction/solutions-to-common-problems.adoc[]
|
||||
*** xref:data-access/transaction/resources.adoc[]
|
||||
** xref:data-access/dao.adoc[]
|
||||
** xref:data-access/jdbc.adoc[]
|
||||
*** xref:data-access/jdbc/choose-style.adoc[]
|
||||
*** xref:data-access/jdbc/packages.adoc[]
|
||||
*** xref:data-access/jdbc/core.adoc[]
|
||||
*** xref:data-access/jdbc/connections.adoc[]
|
||||
*** xref:data-access/jdbc/advanced.adoc[]
|
||||
*** xref:data-access/jdbc/simple.adoc[]
|
||||
*** xref:data-access/jdbc/object.adoc[]
|
||||
*** xref:data-access/jdbc/parameter-handling.adoc[]
|
||||
*** xref:data-access/jdbc/embedded-database-support.adoc[]
|
||||
*** xref:data-access/jdbc/initializing-datasource.adoc[]
|
||||
** xref:data-access/r2dbc.adoc[]
|
||||
** xref:data-access/orm.adoc[]
|
||||
*** xref:data-access/orm/introduction.adoc[]
|
||||
*** xref:data-access/orm/general.adoc[]
|
||||
*** xref:data-access/orm/hibernate.adoc[]
|
||||
*** xref:data-access/orm/jpa.adoc[]
|
||||
** xref:data-access/oxm.adoc[]
|
||||
** xref:data-access/appendix.adoc[]
|
||||
* xref:web.adoc[]
|
||||
** xref:web/webmvc.adoc[]
|
||||
*** xref:web/webmvc/mvc-servlet.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/context-hierarchy.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/special-bean-types.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/config.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/container-config.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/sequence.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/handlermapping-path.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/handlermapping-interceptor.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/exceptionhandlers.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/viewresolver.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/localeresolver.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/themeresolver.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/multipart.adoc[]
|
||||
**** xref:web/webmvc/mvc-servlet/logging.adoc[]
|
||||
*** xref:web/webmvc/filters.adoc[]
|
||||
*** xref:web/webmvc/mvc-controller.adoc[]
|
||||
**** xref:web/webmvc/mvc-controller/ann.adoc[]
|
||||
**** xref:web/webmvc/mvc-controller/ann-requestmapping.adoc[]
|
||||
**** xref:web/webmvc/mvc-controller/ann-methods.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/arguments.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/return-types.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/typeconversion.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/matrix-variables.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/requestparam.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/requestheader.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/cookievalue.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/modelattrib-method-args.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/sessionattributes.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/sessionattribute.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/requestattrib.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/redirecting-passing-data.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/flash-attributes.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/multipart-forms.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/requestbody.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/httpentity.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/responsebody.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/responseentity.adoc[]
|
||||
***** xref:web/webmvc/mvc-controller/ann-methods/jackson.adoc[]
|
||||
**** xref:web/webmvc/mvc-controller/ann-modelattrib-methods.adoc[]
|
||||
**** xref:web/webmvc/mvc-controller/ann-initbinder.adoc[]
|
||||
**** xref:web/webmvc/mvc-controller/ann-validation.adoc[]
|
||||
**** xref:web/webmvc/mvc-controller/ann-exceptionhandler.adoc[]
|
||||
**** xref:web/webmvc/mvc-controller/ann-advice.adoc[]
|
||||
*** xref:web/webmvc-functional.adoc[]
|
||||
*** xref:web/webmvc/mvc-uri-building.adoc[]
|
||||
*** xref:web/webmvc/mvc-ann-async.adoc[]
|
||||
*** xref:web/webmvc-cors.adoc[]
|
||||
*** xref:web/webmvc/mvc-ann-rest-exceptions.adoc[]
|
||||
*** xref:web/webmvc/mvc-security.adoc[]
|
||||
*** xref:web/webmvc/mvc-caching.adoc[]
|
||||
*** xref:web/webmvc-view.adoc[]
|
||||
**** xref:web/webmvc-view/mvc-thymeleaf.adoc[]
|
||||
**** xref:web/webmvc-view/mvc-freemarker.adoc[]
|
||||
**** xref:web/webmvc-view/mvc-groovymarkup.adoc[]
|
||||
**** xref:web/webmvc-view/mvc-script.adoc[]
|
||||
**** xref:web/webmvc-view/mvc-jsp.adoc[]
|
||||
**** xref:web/webmvc-view/mvc-feeds.adoc[]
|
||||
**** xref:web/webmvc-view/mvc-document.adoc[]
|
||||
**** xref:web/webmvc-view/mvc-jackson.adoc[]
|
||||
**** xref:web/webmvc-view/mvc-xml-marshalling.adoc[]
|
||||
**** xref:web/webmvc-view/mvc-xslt.adoc[]
|
||||
*** xref:web/webmvc/mvc-config.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/enable.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/customize.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/conversion.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/validation.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/interceptors.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/content-negotiation.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/message-converters.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/view-controller.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/view-resolvers.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/static-resources.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/default-servlet-handler.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/path-matching.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/advanced-java.adoc[]
|
||||
**** xref:web/webmvc/mvc-config/advanced-xml.adoc[]
|
||||
*** xref:web/webmvc/mvc-http2.adoc[]
|
||||
** xref:web/webmvc-client.adoc[]
|
||||
** xref:web/webmvc-test.adoc[]
|
||||
** xref:web/websocket.adoc[]
|
||||
*** xref:web/websocket/server.adoc[]
|
||||
*** xref:web/websocket/fallback.adoc[]
|
||||
*** xref:web/websocket/stomp.adoc[]
|
||||
**** xref:web/websocket/stomp/overview.adoc[]
|
||||
**** xref:web/websocket/stomp/benefits.adoc[]
|
||||
**** xref:web/websocket/stomp/enable.adoc[]
|
||||
**** xref:web/websocket/stomp/server-config.adoc[]
|
||||
**** xref:web/websocket/stomp/message-flow.adoc[]
|
||||
**** xref:web/websocket/stomp/handle-annotations.adoc[]
|
||||
**** xref:web/websocket/stomp/handle-send.adoc[]
|
||||
**** xref:web/websocket/stomp/handle-simple-broker.adoc[]
|
||||
**** xref:web/websocket/stomp/handle-broker-relay.adoc[]
|
||||
**** xref:web/websocket/stomp/handle-broker-relay-configure.adoc[]
|
||||
**** xref:web/websocket/stomp/destination-separator.adoc[]
|
||||
**** xref:web/websocket/stomp/authentication.adoc[]
|
||||
**** xref:web/websocket/stomp/authentication-token-based.adoc[]
|
||||
**** xref:web/websocket/stomp/authorization.adoc[]
|
||||
**** xref:web/websocket/stomp/user-destination.adoc[]
|
||||
**** xref:web/websocket/stomp/ordered-messages.adoc[]
|
||||
**** xref:web/websocket/stomp/application-context-events.adoc[]
|
||||
**** xref:web/websocket/stomp/interceptors.adoc[]
|
||||
**** xref:web/websocket/stomp/client.adoc[]
|
||||
**** xref:web/websocket/stomp/scope.adoc[]
|
||||
**** xref:web/websocket/stomp/configuration-performance.adoc[]
|
||||
**** xref:web/websocket/stomp/stats.adoc[]
|
||||
**** xref:web/websocket/stomp/testing.adoc[]
|
||||
** xref:web/integration.adoc[]
|
||||
* xref:web-reactive.adoc[]
|
||||
** xref:web/webflux.adoc[]
|
||||
*** xref:web/webflux/new-framework.adoc[]
|
||||
*** xref:web/webflux/reactive-spring.adoc[]
|
||||
*** xref:web/webflux/dispatcher-handler.adoc[]
|
||||
*** xref:web/webflux/controller.adoc[]
|
||||
**** xref:web/webflux/controller/ann.adoc[]
|
||||
**** xref:web/webflux/controller/ann-requestmapping.adoc[]
|
||||
**** xref:web/webflux/controller/ann-methods.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/arguments.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/return-types.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/typeconversion.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/matrix-variables.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/requestparam.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/requestheader.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/cookievalue.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/modelattrib-method-args.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/sessionattributes.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/sessionattribute.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/requestattrib.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/multipart-forms.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/requestbody.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/httpentity.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/responsebody.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/responseentity.adoc[]
|
||||
***** xref:web/webflux/controller/ann-methods/jackson.adoc[]
|
||||
**** xref:web/webflux/controller/ann-modelattrib-methods.adoc[]
|
||||
**** xref:web/webflux/controller/ann-initbinder.adoc[]
|
||||
**** xref:web/webflux/controller/ann-validation.adoc[]
|
||||
**** xref:web/webflux/controller/ann-exceptions.adoc[]
|
||||
**** xref:web/webflux/controller/ann-advice.adoc[]
|
||||
*** xref:web/webflux-functional.adoc[]
|
||||
*** xref:web/webflux/uri-building.adoc[]
|
||||
*** xref:web/webflux-cors.adoc[]
|
||||
*** xref:web/webflux/ann-rest-exceptions.adoc[]
|
||||
*** xref:web/webflux/security.adoc[]
|
||||
*** xref:web/webflux/caching.adoc[]
|
||||
*** xref:web/webflux-view.adoc[]
|
||||
*** xref:web/webflux/config.adoc[]
|
||||
*** xref:web/webflux/http2.adoc[]
|
||||
** xref:web/webflux-webclient.adoc[]
|
||||
*** xref:web/webflux-webclient/client-builder.adoc[]
|
||||
*** xref:web/webflux-webclient/client-retrieve.adoc[]
|
||||
*** xref:web/webflux-webclient/client-exchange.adoc[]
|
||||
*** xref:web/webflux-webclient/client-body.adoc[]
|
||||
*** xref:web/webflux-webclient/client-filter.adoc[]
|
||||
*** xref:web/webflux-webclient/client-attributes.adoc[]
|
||||
*** xref:web/webflux-webclient/client-context.adoc[]
|
||||
*** xref:web/webflux-webclient/client-synchronous.adoc[]
|
||||
*** xref:web/webflux-webclient/client-testing.adoc[]
|
||||
** xref:web/webflux-http-interface-client.adoc[]
|
||||
** xref:web/webflux-websocket.adoc[]
|
||||
** xref:web/webflux-test.adoc[]
|
||||
** xref:rsocket.adoc[]
|
||||
** xref:web/webflux-reactive-libraries.adoc[]
|
||||
* xref:integration.adoc[]
|
||||
** xref:integration/rest-clients.adoc[]
|
||||
** xref:integration/jms.adoc[]
|
||||
*** xref:integration/jms/using.adoc[]
|
||||
*** xref:integration/jms/sending.adoc[]
|
||||
*** xref:integration/jms/receiving.adoc[]
|
||||
*** xref:integration/jms/jca-message-endpoint-manager.adoc[]
|
||||
*** xref:integration/jms/annotated.adoc[]
|
||||
*** xref:integration/jms/namespace.adoc[]
|
||||
** xref:integration/jmx.adoc[]
|
||||
*** xref:integration/jmx/exporting.adoc[]
|
||||
*** xref:integration/jmx/interface.adoc[]
|
||||
*** xref:integration/jmx/naming.adoc[]
|
||||
*** xref:integration/jmx/jsr160.adoc[]
|
||||
*** xref:integration/jmx/proxy.adoc[]
|
||||
*** xref:integration/jmx/notifications.adoc[]
|
||||
*** xref:integration/jmx/resources.adoc[]
|
||||
** xref:integration/email.adoc[]
|
||||
** xref:integration/scheduling.adoc[]
|
||||
** xref:integration/cache.adoc[]
|
||||
*** xref:integration/cache/strategies.adoc[]
|
||||
*** xref:integration/cache/annotations.adoc[]
|
||||
*** xref:integration/cache/jsr-107.adoc[]
|
||||
*** xref:integration/cache/declarative-xml.adoc[]
|
||||
*** xref:integration/cache/store-configuration.adoc[]
|
||||
*** xref:integration/cache/plug.adoc[]
|
||||
*** xref:integration/cache/specific-config.adoc[]
|
||||
** xref:integration/observability.adoc[]
|
||||
** xref:integration/checkpoint-restore.adoc[]
|
||||
** xref:integration/cds.adoc[]
|
||||
** xref:integration/appendix.adoc[]
|
||||
* xref:languages.adoc[]
|
||||
** xref:languages/kotlin.adoc[]
|
||||
*** xref:languages/kotlin/requirements.adoc[]
|
||||
*** xref:languages/kotlin/extensions.adoc[]
|
||||
*** xref:languages/kotlin/null-safety.adoc[]
|
||||
*** xref:languages/kotlin/classes-interfaces.adoc[]
|
||||
*** xref:languages/kotlin/annotations.adoc[]
|
||||
*** xref:languages/kotlin/bean-definition-dsl.adoc[]
|
||||
*** xref:languages/kotlin/web.adoc[]
|
||||
*** xref:languages/kotlin/coroutines.adoc[]
|
||||
*** xref:languages/kotlin/spring-projects-in.adoc[]
|
||||
*** xref:languages/kotlin/getting-started.adoc[]
|
||||
*** xref:languages/kotlin/resources.adoc[]
|
||||
** xref:languages/groovy.adoc[]
|
||||
** xref:languages/dynamic.adoc[]
|
||||
* xref:appendix.adoc[]
|
||||
* {spring-framework-wiki}[Wiki]
|
||||
|
||||
@@ -1,119 +0,0 @@
|
||||
[[appendix]]
|
||||
= Appendix
|
||||
|
||||
This part of the reference documentation covers topics that apply to multiple modules
|
||||
within the core Spring Framework.
|
||||
|
||||
|
||||
[[appendix-spring-properties]]
|
||||
== Spring Properties
|
||||
|
||||
{spring-framework-api}/core/SpringProperties.html[`SpringProperties`] is a static holder
|
||||
for properties that control certain low-level aspects of the Spring Framework. Users can
|
||||
configure these properties via JVM system properties or programmatically via the
|
||||
`SpringProperties.setProperty(String key, String value)` method. The latter may be
|
||||
necessary if the deployment environment disallows custom JVM system properties. As an
|
||||
alternative, these properties may be configured in a `spring.properties` file in the root
|
||||
of the classpath -- for example, deployed within the application's JAR file.
|
||||
|
||||
The following table lists all currently supported Spring properties.
|
||||
|
||||
.Supported Spring Properties
|
||||
[cols="1,1"]
|
||||
|===
|
||||
| Name | Description
|
||||
|
||||
| `spring.aot.enabled`
|
||||
| Indicates the application should run with AOT generated artifacts. See
|
||||
xref:core/aot.adoc[Ahead of Time Optimizations] and
|
||||
{spring-framework-api}++/aot/AotDetector.html#AOT_ENABLED++[`AotDetector`]
|
||||
for details.
|
||||
|
||||
| `spring.beaninfo.ignore`
|
||||
| Instructs Spring to use the `Introspector.IGNORE_ALL_BEANINFO` mode when calling the
|
||||
JavaBeans `Introspector`. See
|
||||
{spring-framework-api}++/beans/StandardBeanInfoFactory.html#IGNORE_BEANINFO_PROPERTY_NAME++[`CachedIntrospectionResults`]
|
||||
for details.
|
||||
|
||||
| `spring.cache.reactivestreams.ignore`
|
||||
| Instructs Spring's caching infrastructure to ignore the presence of Reactive Streams,
|
||||
in particular Reactor's `Mono`/`Flux` in `@Cacheable` method return type declarations. See
|
||||
{spring-framework-api}++/cache/interceptor/CacheAspectSupport.html#IGNORE_REACTIVESTREAMS_PROPERTY_NAME++[`CacheAspectSupport`]
|
||||
for details.
|
||||
|
||||
| `spring.classformat.ignore`
|
||||
| Instructs Spring to ignore class format exceptions during classpath scanning, in
|
||||
particular for unsupported class file versions. See
|
||||
{spring-framework-api}++/context/annotation/ClassPathScanningCandidateComponentProvider.html#IGNORE_CLASSFORMAT_PROPERTY_NAME++[`ClassPathScanningCandidateComponentProvider`]
|
||||
for details.
|
||||
|
||||
| `spring.context.checkpoint`
|
||||
| Property that specifies a common context checkpoint. See
|
||||
xref:integration/checkpoint-restore.adoc#_automatic_checkpointrestore_at_startup[Automatic
|
||||
checkpoint/restore at startup] and
|
||||
{spring-framework-api}++/context/support/DefaultLifecycleProcessor.html#CHECKPOINT_PROPERTY_NAME++[`DefaultLifecycleProcessor`]
|
||||
for details.
|
||||
|
||||
| `spring.context.exit`
|
||||
| Property for terminating the JVM when the context reaches a specific phase. See
|
||||
xref:integration/checkpoint-restore.adoc#_automatic_checkpointrestore_at_startup[Automatic
|
||||
checkpoint/restore at startup] and
|
||||
{spring-framework-api}++/context/support/DefaultLifecycleProcessor.html#EXIT_PROPERTY_NAME++[`DefaultLifecycleProcessor`]
|
||||
for details.
|
||||
|
||||
| `spring.context.expression.maxLength`
|
||||
| The maximum length for
|
||||
xref:core/expressions/evaluation.adoc#expressions-parser-configuration[Spring Expression Language]
|
||||
expressions used in XML bean definitions, `@Value`, etc.
|
||||
|
||||
| `spring.expression.compiler.mode`
|
||||
| The mode to use when compiling expressions for the
|
||||
xref:core/expressions/evaluation.adoc#expressions-compiler-configuration[Spring Expression Language].
|
||||
|
||||
| `spring.getenv.ignore`
|
||||
| Instructs Spring to ignore operating system environment variables if a Spring
|
||||
`Environment` property -- for example, a placeholder in a configuration String -- isn't
|
||||
resolvable otherwise. See
|
||||
{spring-framework-api}++/core/env/AbstractEnvironment.html#IGNORE_GETENV_PROPERTY_NAME++[`AbstractEnvironment`]
|
||||
for details.
|
||||
|
||||
| `spring.jdbc.getParameterType.ignore`
|
||||
| Instructs Spring to ignore `java.sql.ParameterMetaData.getParameterType` completely.
|
||||
See the note in xref:data-access/jdbc/advanced.adoc#jdbc-batch-list[Batch Operations with a List of Objects].
|
||||
|
||||
| `spring.jndi.ignore`
|
||||
| Instructs Spring to ignore a default JNDI environment, as an optimization for scenarios
|
||||
where nothing is ever to be found for such JNDI fallback searches to begin with, avoiding
|
||||
the repeated JNDI lookup overhead. See
|
||||
{spring-framework-api}++/jndi/JndiLocatorDelegate.html#IGNORE_JNDI_PROPERTY_NAME++[`JndiLocatorDelegate`]
|
||||
for details.
|
||||
|
||||
| `spring.objenesis.ignore`
|
||||
| Instructs Spring to ignore Objenesis, not even attempting to use it. See
|
||||
{spring-framework-api}++/objenesis/SpringObjenesis.html#IGNORE_OBJENESIS_PROPERTY_NAME++[`SpringObjenesis`]
|
||||
for details.
|
||||
|
||||
| `spring.test.aot.processing.failOnError`
|
||||
| A boolean flag that controls whether errors encountered during AOT processing in the
|
||||
_Spring TestContext Framework_ should result in an exception that fails the overall process.
|
||||
See xref:testing/testcontext-framework/aot.adoc[Ahead of Time Support for Tests].
|
||||
|
||||
| `spring.test.constructor.autowire.mode`
|
||||
| The default _test constructor autowire mode_ to use if `@TestConstructor` is not present
|
||||
on a test class. See xref:testing/annotations/integration-junit-jupiter.adoc#integration-testing-annotations-testconstructor[Changing the default test constructor autowire mode].
|
||||
|
||||
| `spring.test.context.cache.maxSize`
|
||||
| The maximum size of the context cache in the _Spring TestContext Framework_. See
|
||||
xref:testing/testcontext-framework/ctx-management/caching.adoc[Context Caching].
|
||||
|
||||
| `spring.test.context.failure.threshold`
|
||||
| The failure threshold for errors encountered while attempting to load an `ApplicationContext`
|
||||
in the _Spring TestContext Framework_. See
|
||||
xref:testing/testcontext-framework/ctx-management/failure-threshold.adoc[Context Failure Threshold].
|
||||
|
||||
| `spring.test.enclosing.configuration`
|
||||
| The default _enclosing configuration inheritance mode_ to use if
|
||||
`@NestedTestConfiguration` is not present on a test class. See
|
||||
xref:testing/annotations/integration-junit-jupiter.adoc#integration-testing-annotations-nestedtestconfiguration[Changing the default enclosing configuration inheritance mode].
|
||||
|
||||
|===
|
||||
@@ -1,12 +0,0 @@
|
||||
[[aop-api]]
|
||||
= Spring AOP APIs
|
||||
:page-section-summary-toc: 1
|
||||
|
||||
The previous chapter described the Spring's support for AOP with @AspectJ and schema-based
|
||||
aspect definitions. In this chapter, we discuss the lower-level Spring AOP APIs. For common
|
||||
applications, we recommend the use of Spring AOP with AspectJ pointcuts as described in the
|
||||
previous chapter.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,592 +0,0 @@
|
||||
[[aop-api-advice]]
|
||||
= Advice API in Spring
|
||||
|
||||
Now we can examine how Spring AOP handles advice.
|
||||
|
||||
|
||||
|
||||
[[aop-api-advice-lifecycle]]
|
||||
== Advice Lifecycles
|
||||
|
||||
Each advice is a Spring bean. An advice instance can be shared across all advised
|
||||
objects or be unique to each advised object. This corresponds to per-class or
|
||||
per-instance advice.
|
||||
|
||||
Per-class advice is used most often. It is appropriate for generic advice, such as
|
||||
transaction advisors. These do not depend on the state of the proxied object or add new
|
||||
state. They merely act on the method and arguments.
|
||||
|
||||
Per-instance advice is appropriate for introductions, to support mixins. In this case,
|
||||
the advice adds state to the proxied object.
|
||||
|
||||
You can use a mix of shared and per-instance advice in the same AOP proxy.
|
||||
|
||||
|
||||
|
||||
[[aop-api-advice-types]]
|
||||
== Advice Types in Spring
|
||||
|
||||
Spring provides several advice types and is extensible to support
|
||||
arbitrary advice types. This section describes the basic concepts and standard advice types.
|
||||
|
||||
|
||||
[[aop-api-advice-around]]
|
||||
=== Interception Around Advice
|
||||
|
||||
The most fundamental advice type in Spring is interception around advice.
|
||||
|
||||
Spring is compliant with the AOP `Alliance` interface for around advice that uses method
|
||||
interception. Classes that implement `MethodInterceptor` and that implement around advice should also implement the
|
||||
following interface:
|
||||
|
||||
[source,java,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
public interface MethodInterceptor extends Interceptor {
|
||||
|
||||
Object invoke(MethodInvocation invocation) throws Throwable;
|
||||
}
|
||||
----
|
||||
|
||||
The `MethodInvocation` argument to the `invoke()` method exposes the method being
|
||||
invoked, the target join point, the AOP proxy, and the arguments to the method. The
|
||||
`invoke()` method should return the invocation's result: the return value of the join
|
||||
point.
|
||||
|
||||
The following example shows a simple `MethodInterceptor` implementation:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class DebugInterceptor implements MethodInterceptor {
|
||||
|
||||
public Object invoke(MethodInvocation invocation) throws Throwable {
|
||||
System.out.println("Before: invocation=[" + invocation + "]");
|
||||
Object rval = invocation.proceed();
|
||||
System.out.println("Invocation returned");
|
||||
return rval;
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class DebugInterceptor : MethodInterceptor {
|
||||
|
||||
override fun invoke(invocation: MethodInvocation): Any {
|
||||
println("Before: invocation=[$invocation]")
|
||||
val rval = invocation.proceed()
|
||||
println("Invocation returned")
|
||||
return rval
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
Note the call to the `proceed()` method of `MethodInvocation`. This proceeds down the
|
||||
interceptor chain towards the join point. Most interceptors invoke this method and
|
||||
return its return value. However, a `MethodInterceptor`, like any around advice, can
|
||||
return a different value or throw an exception rather than invoke the proceed method.
|
||||
However, you do not want to do this without good reason.
|
||||
|
||||
NOTE: `MethodInterceptor` implementations offer interoperability with other AOP Alliance-compliant AOP
|
||||
implementations. The other advice types discussed in the remainder of this section
|
||||
implement common AOP concepts but in a Spring-specific way. While there is an advantage
|
||||
in using the most specific advice type, stick with `MethodInterceptor` around advice if
|
||||
you are likely to want to run the aspect in another AOP framework. Note that pointcuts
|
||||
are not currently interoperable between frameworks, and the AOP Alliance does not
|
||||
currently define pointcut interfaces.
|
||||
|
||||
|
||||
[[aop-api-advice-before]]
|
||||
=== Before Advice
|
||||
|
||||
A simpler advice type is a before advice. This does not need a `MethodInvocation`
|
||||
object, since it is called only before entering the method.
|
||||
|
||||
The main advantage of a before advice is that there is no need to invoke the `proceed()`
|
||||
method and, therefore, no possibility of inadvertently failing to proceed down the
|
||||
interceptor chain.
|
||||
|
||||
The following listing shows the `MethodBeforeAdvice` interface:
|
||||
|
||||
[source,java,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
public interface MethodBeforeAdvice extends BeforeAdvice {
|
||||
|
||||
void before(Method m, Object[] args, Object target) throws Throwable;
|
||||
}
|
||||
----
|
||||
|
||||
(Spring's API design would allow for
|
||||
field before advice, although the usual objects apply to field interception and it is
|
||||
unlikely for Spring to ever implement it.)
|
||||
|
||||
Note that the return type is `void`. Before advice can insert custom behavior before the join
|
||||
point runs but cannot change the return value. If a before advice throws an
|
||||
exception, it stops further execution of the interceptor chain. The exception
|
||||
propagates back up the interceptor chain. If it is unchecked or on the signature of
|
||||
the invoked method, it is passed directly to the client. Otherwise, it is
|
||||
wrapped in an unchecked exception by the AOP proxy.
|
||||
|
||||
The following example shows a before advice in Spring, which counts all method invocations:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class CountingBeforeAdvice implements MethodBeforeAdvice {
|
||||
|
||||
private int count;
|
||||
|
||||
public void before(Method m, Object[] args, Object target) throws Throwable {
|
||||
++count;
|
||||
}
|
||||
|
||||
public int getCount() {
|
||||
return count;
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class CountingBeforeAdvice : MethodBeforeAdvice {
|
||||
|
||||
var count: Int = 0
|
||||
|
||||
override fun before(m: Method, args: Array<Any>, target: Any?) {
|
||||
++count
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
TIP: Before advice can be used with any pointcut.
|
||||
|
||||
|
||||
[[aop-api-advice-throws]]
|
||||
=== Throws Advice
|
||||
|
||||
Throws advice is invoked after the return of the join point if the join point threw
|
||||
an exception. Spring offers typed throws advice. Note that this means that the
|
||||
`org.springframework.aop.ThrowsAdvice` interface does not contain any methods. It is a
|
||||
tag interface identifying that the given object implements one or more typed throws
|
||||
advice methods. These should be in the following form:
|
||||
|
||||
[source,java,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
afterThrowing([Method, args, target], subclassOfThrowable)
|
||||
----
|
||||
|
||||
Only the last argument is required. The method signatures may have either one or four
|
||||
arguments, depending on whether the advice method is interested in the method and
|
||||
arguments. The next two listing show classes that are examples of throws advice.
|
||||
|
||||
The following advice is invoked if a `RemoteException` is thrown (including from subclasses):
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class RemoteThrowsAdvice implements ThrowsAdvice {
|
||||
|
||||
public void afterThrowing(RemoteException ex) throws Throwable {
|
||||
// Do something with remote exception
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class RemoteThrowsAdvice : ThrowsAdvice {
|
||||
|
||||
fun afterThrowing(ex: RemoteException) {
|
||||
// Do something with remote exception
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
Unlike the preceding
|
||||
advice, the next example declares four arguments, so that it has access to the invoked method, method
|
||||
arguments, and target object. The following advice is invoked if a `ServletException` is thrown:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class ServletThrowsAdviceWithArguments implements ThrowsAdvice {
|
||||
|
||||
public void afterThrowing(Method m, Object[] args, Object target, ServletException ex) {
|
||||
// Do something with all arguments
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class ServletThrowsAdviceWithArguments : ThrowsAdvice {
|
||||
|
||||
fun afterThrowing(m: Method, args: Array<Any>, target: Any, ex: ServletException) {
|
||||
// Do something with all arguments
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
The final example illustrates how these two methods could be used in a single class
|
||||
that handles both `RemoteException` and `ServletException`. Any number of throws advice
|
||||
methods can be combined in a single class. The following listing shows the final example:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public static class CombinedThrowsAdvice implements ThrowsAdvice {
|
||||
|
||||
public void afterThrowing(RemoteException ex) throws Throwable {
|
||||
// Do something with remote exception
|
||||
}
|
||||
|
||||
public void afterThrowing(Method m, Object[] args, Object target, ServletException ex) {
|
||||
// Do something with all arguments
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class CombinedThrowsAdvice : ThrowsAdvice {
|
||||
|
||||
fun afterThrowing(ex: RemoteException) {
|
||||
// Do something with remote exception
|
||||
}
|
||||
|
||||
fun afterThrowing(m: Method, args: Array<Any>, target: Any, ex: ServletException) {
|
||||
// Do something with all arguments
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
NOTE: If a throws-advice method throws an exception itself, it overrides the
|
||||
original exception (that is, it changes the exception thrown to the user). The overriding
|
||||
exception is typically a RuntimeException, which is compatible with any method
|
||||
signature. However, if a throws-advice method throws a checked exception, it must
|
||||
match the declared exceptions of the target method and is, hence, to some degree
|
||||
coupled to specific target method signatures. _Do not throw an undeclared checked
|
||||
exception that is incompatible with the target method's signature!_
|
||||
|
||||
TIP: Throws advice can be used with any pointcut.
|
||||
|
||||
|
||||
[[aop-api-advice-after-returning]]
|
||||
=== After Returning Advice
|
||||
|
||||
An after returning advice in Spring must implement the
|
||||
`org.springframework.aop.AfterReturningAdvice` interface, which the following listing shows:
|
||||
|
||||
[source,java,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
public interface AfterReturningAdvice extends Advice {
|
||||
|
||||
void afterReturning(Object returnValue, Method m, Object[] args, Object target)
|
||||
throws Throwable;
|
||||
}
|
||||
----
|
||||
|
||||
An after returning advice has access to the return value (which it cannot modify),
|
||||
the invoked method, the method's arguments, and the target.
|
||||
|
||||
The following after returning advice counts all successful method invocations that have
|
||||
not thrown exceptions:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class CountingAfterReturningAdvice implements AfterReturningAdvice {
|
||||
|
||||
private int count;
|
||||
|
||||
public void afterReturning(Object returnValue, Method m, Object[] args, Object target)
|
||||
throws Throwable {
|
||||
++count;
|
||||
}
|
||||
|
||||
public int getCount() {
|
||||
return count;
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class CountingAfterReturningAdvice : AfterReturningAdvice {
|
||||
|
||||
var count: Int = 0
|
||||
private set
|
||||
|
||||
override fun afterReturning(returnValue: Any?, m: Method, args: Array<Any>, target: Any?) {
|
||||
++count
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
This advice does not change the execution path. If it throws an exception, it is
|
||||
thrown up the interceptor chain instead of the return value.
|
||||
|
||||
TIP: After returning advice can be used with any pointcut.
|
||||
|
||||
|
||||
[[aop-api-advice-introduction]]
|
||||
=== Introduction Advice
|
||||
|
||||
Spring treats introduction advice as a special kind of interception advice.
|
||||
|
||||
Introduction requires an `IntroductionAdvisor` and an `IntroductionInterceptor` that
|
||||
implement the following interface:
|
||||
|
||||
[source,java,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
public interface IntroductionInterceptor extends MethodInterceptor {
|
||||
|
||||
boolean implementsInterface(Class intf);
|
||||
}
|
||||
----
|
||||
|
||||
The `invoke()` method inherited from the AOP Alliance `MethodInterceptor` interface must
|
||||
implement the introduction. That is, if the invoked method is on an introduced
|
||||
interface, the introduction interceptor is responsible for handling the method call -- it
|
||||
cannot invoke `proceed()`.
|
||||
|
||||
Introduction advice cannot be used with any pointcut, as it applies only at the class,
|
||||
rather than the method, level. You can only use introduction advice with the
|
||||
`IntroductionAdvisor`, which has the following methods:
|
||||
|
||||
[source,java,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
public interface IntroductionAdvisor extends Advisor, IntroductionInfo {
|
||||
|
||||
ClassFilter getClassFilter();
|
||||
|
||||
void validateInterfaces() throws IllegalArgumentException;
|
||||
}
|
||||
|
||||
public interface IntroductionInfo {
|
||||
|
||||
Class<?>[] getInterfaces();
|
||||
}
|
||||
----
|
||||
|
||||
There is no `MethodMatcher` and, hence, no `Pointcut` associated with introduction
|
||||
advice. Only class filtering is logical.
|
||||
|
||||
The `getInterfaces()` method returns the interfaces introduced by this advisor.
|
||||
|
||||
The `validateInterfaces()` method is used internally to see whether or not the
|
||||
introduced interfaces can be implemented by the configured `IntroductionInterceptor`.
|
||||
|
||||
Consider an example from the Spring test suite and suppose we want to
|
||||
introduce the following interface to one or more objects:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public interface Lockable {
|
||||
void lock();
|
||||
void unlock();
|
||||
boolean locked();
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
interface Lockable {
|
||||
fun lock()
|
||||
fun unlock()
|
||||
fun locked(): Boolean
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
This illustrates a mixin. We want to be able to cast advised objects to `Lockable`,
|
||||
whatever their type and call lock and unlock methods. If we call the `lock()` method, we
|
||||
want all setter methods to throw a `LockedException`. Thus, we can add an aspect that
|
||||
provides the ability to make objects immutable without them having any knowledge of it:
|
||||
a good example of AOP.
|
||||
|
||||
First, we need an `IntroductionInterceptor` that does the heavy lifting. In this
|
||||
case, we extend the `org.springframework.aop.support.DelegatingIntroductionInterceptor`
|
||||
convenience class. We could implement `IntroductionInterceptor` directly, but using
|
||||
`DelegatingIntroductionInterceptor` is best for most cases.
|
||||
|
||||
The `DelegatingIntroductionInterceptor` is designed to delegate an introduction to an
|
||||
actual implementation of the introduced interfaces, concealing the use of interception
|
||||
to do so. You can set the delegate to any object using a constructor argument. The
|
||||
default delegate (when the no-argument constructor is used) is `this`. Thus, in the next example,
|
||||
the delegate is the `LockMixin` subclass of `DelegatingIntroductionInterceptor`.
|
||||
Given a delegate (by default, itself), a `DelegatingIntroductionInterceptor` instance
|
||||
looks for all interfaces implemented by the delegate (other than
|
||||
`IntroductionInterceptor`) and supports introductions against any of them.
|
||||
Subclasses such as `LockMixin` can call the `suppressInterface(Class intf)`
|
||||
method to suppress interfaces that should not be exposed. However, no matter how many
|
||||
interfaces an `IntroductionInterceptor` is prepared to support, the
|
||||
`IntroductionAdvisor` used controls which interfaces are actually exposed. An
|
||||
introduced interface conceals any implementation of the same interface by the target.
|
||||
|
||||
Thus, `LockMixin` extends `DelegatingIntroductionInterceptor` and implements `Lockable`
|
||||
itself. The superclass automatically picks up that `Lockable` can be supported for
|
||||
introduction, so we do not need to specify that. We could introduce any number of
|
||||
interfaces in this way.
|
||||
|
||||
Note the use of the `locked` instance variable. This effectively adds additional state
|
||||
to that held in the target object.
|
||||
|
||||
The following example shows the example `LockMixin` class:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class LockMixin extends DelegatingIntroductionInterceptor implements Lockable {
|
||||
|
||||
private boolean locked;
|
||||
|
||||
public void lock() {
|
||||
this.locked = true;
|
||||
}
|
||||
|
||||
public void unlock() {
|
||||
this.locked = false;
|
||||
}
|
||||
|
||||
public boolean locked() {
|
||||
return this.locked;
|
||||
}
|
||||
|
||||
public Object invoke(MethodInvocation invocation) throws Throwable {
|
||||
if (locked() && invocation.getMethod().getName().indexOf("set") == 0) {
|
||||
throw new LockedException();
|
||||
}
|
||||
return super.invoke(invocation);
|
||||
}
|
||||
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class LockMixin : DelegatingIntroductionInterceptor(), Lockable {
|
||||
|
||||
private var locked: Boolean = false
|
||||
|
||||
fun lock() {
|
||||
this.locked = true
|
||||
}
|
||||
|
||||
fun unlock() {
|
||||
this.locked = false
|
||||
}
|
||||
|
||||
fun locked(): Boolean {
|
||||
return this.locked
|
||||
}
|
||||
|
||||
override fun invoke(invocation: MethodInvocation): Any? {
|
||||
if (locked() && invocation.method.name.indexOf("set") == 0) {
|
||||
throw LockedException()
|
||||
}
|
||||
return super.invoke(invocation)
|
||||
}
|
||||
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
Often, you need not override the `invoke()` method. The
|
||||
`DelegatingIntroductionInterceptor` implementation (which calls the `delegate` method if
|
||||
the method is introduced, otherwise proceeds towards the join point) usually
|
||||
suffices. In the present case, we need to add a check: no setter method can be invoked
|
||||
if in locked mode.
|
||||
|
||||
The required introduction only needs to hold a distinct
|
||||
`LockMixin` instance and specify the introduced interfaces (in this case, only
|
||||
`Lockable`). A more complex example might take a reference to the introduction
|
||||
interceptor (which would be defined as a prototype). In this case, there is no
|
||||
configuration relevant for a `LockMixin`, so we create it by using `new`.
|
||||
The following example shows our `LockMixinAdvisor` class:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class LockMixinAdvisor extends DefaultIntroductionAdvisor {
|
||||
|
||||
public LockMixinAdvisor() {
|
||||
super(new LockMixin(), Lockable.class);
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class LockMixinAdvisor : DefaultIntroductionAdvisor(LockMixin(), Lockable::class.java)
|
||||
----
|
||||
======
|
||||
|
||||
We can apply this advisor very simply, because it requires no configuration. (However, it
|
||||
is impossible to use an `IntroductionInterceptor` without an
|
||||
`IntroductionAdvisor`.) As usual with introductions, the advisor must be per-instance,
|
||||
as it is stateful. We need a different instance of `LockMixinAdvisor`, and hence
|
||||
`LockMixin`, for each advised object. The advisor comprises part of the advised object's
|
||||
state.
|
||||
|
||||
We can apply this advisor programmatically by using the `Advised.addAdvisor()` method or
|
||||
(the recommended way) in XML configuration, as any other advisor. All proxy creation
|
||||
choices discussed below, including "`auto proxy creators,`" correctly handle introductions
|
||||
and stateful mixins.
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,148 +0,0 @@
|
||||
[[aop-api-advised]]
|
||||
= Manipulating Advised Objects
|
||||
|
||||
However you create AOP proxies, you can manipulate them BY using the
|
||||
`org.springframework.aop.framework.Advised` interface. Any AOP proxy can be cast to this
|
||||
interface, no matter which other interfaces it implements. This interface includes the
|
||||
following methods:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
Advisor[] getAdvisors();
|
||||
|
||||
void addAdvice(Advice advice) throws AopConfigException;
|
||||
|
||||
void addAdvice(int pos, Advice advice) throws AopConfigException;
|
||||
|
||||
void addAdvisor(Advisor advisor) throws AopConfigException;
|
||||
|
||||
void addAdvisor(int pos, Advisor advisor) throws AopConfigException;
|
||||
|
||||
int indexOf(Advisor advisor);
|
||||
|
||||
boolean removeAdvisor(Advisor advisor) throws AopConfigException;
|
||||
|
||||
void removeAdvisor(int index) throws AopConfigException;
|
||||
|
||||
boolean replaceAdvisor(Advisor a, Advisor b) throws AopConfigException;
|
||||
|
||||
boolean isFrozen();
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
fun getAdvisors(): Array<Advisor>
|
||||
|
||||
@Throws(AopConfigException::class)
|
||||
fun addAdvice(advice: Advice)
|
||||
|
||||
@Throws(AopConfigException::class)
|
||||
fun addAdvice(pos: Int, advice: Advice)
|
||||
|
||||
@Throws(AopConfigException::class)
|
||||
fun addAdvisor(advisor: Advisor)
|
||||
|
||||
@Throws(AopConfigException::class)
|
||||
fun addAdvisor(pos: Int, advisor: Advisor)
|
||||
|
||||
fun indexOf(advisor: Advisor): Int
|
||||
|
||||
@Throws(AopConfigException::class)
|
||||
fun removeAdvisor(advisor: Advisor): Boolean
|
||||
|
||||
@Throws(AopConfigException::class)
|
||||
fun removeAdvisor(index: Int)
|
||||
|
||||
@Throws(AopConfigException::class)
|
||||
fun replaceAdvisor(a: Advisor, b: Advisor): Boolean
|
||||
|
||||
fun isFrozen(): Boolean
|
||||
----
|
||||
======
|
||||
|
||||
The `getAdvisors()` method returns an `Advisor` for every advisor, interceptor, or
|
||||
other advice type that has been added to the factory. If you added an `Advisor`, the
|
||||
returned advisor at this index is the object that you added. If you added an
|
||||
interceptor or other advice type, Spring wrapped this in an advisor with a
|
||||
pointcut that always returns `true`. Thus, if you added a `MethodInterceptor`, the advisor
|
||||
returned for this index is a `DefaultPointcutAdvisor` that returns your
|
||||
`MethodInterceptor` and a pointcut that matches all classes and methods.
|
||||
|
||||
The `addAdvisor()` methods can be used to add any `Advisor`. Usually, the advisor holding
|
||||
pointcut and advice is the generic `DefaultPointcutAdvisor`, which you can use with
|
||||
any advice or pointcut (but not for introductions).
|
||||
|
||||
By default, it is possible to add or remove advisors or interceptors even once a proxy
|
||||
has been created. The only restriction is that it is impossible to add or remove an
|
||||
introduction advisor, as existing proxies from the factory do not show the interface
|
||||
change. (You can obtain a new proxy from the factory to avoid this problem.)
|
||||
|
||||
The following example shows casting an AOP proxy to the `Advised` interface and examining and
|
||||
manipulating its advice:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
Advised advised = (Advised) myObject;
|
||||
Advisor[] advisors = advised.getAdvisors();
|
||||
int oldAdvisorCount = advisors.length;
|
||||
System.out.println(oldAdvisorCount + " advisors");
|
||||
|
||||
// Add an advice like an interceptor without a pointcut
|
||||
// Will match all proxied methods
|
||||
// Can use for interceptors, before, after returning or throws advice
|
||||
advised.addAdvice(new DebugInterceptor());
|
||||
|
||||
// Add selective advice using a pointcut
|
||||
advised.addAdvisor(new DefaultPointcutAdvisor(mySpecialPointcut, myAdvice));
|
||||
|
||||
assertEquals("Added two advisors", oldAdvisorCount + 2, advised.getAdvisors().length);
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
val advised = myObject as Advised
|
||||
val advisors = advised.advisors
|
||||
val oldAdvisorCount = advisors.size
|
||||
println("$oldAdvisorCount advisors")
|
||||
|
||||
// Add an advice like an interceptor without a pointcut
|
||||
// Will match all proxied methods
|
||||
// Can use for interceptors, before, after returning or throws advice
|
||||
advised.addAdvice(DebugInterceptor())
|
||||
|
||||
// Add selective advice using a pointcut
|
||||
advised.addAdvisor(DefaultPointcutAdvisor(mySpecialPointcut, myAdvice))
|
||||
|
||||
assertEquals("Added two advisors", oldAdvisorCount + 2, advised.advisors.size)
|
||||
----
|
||||
======
|
||||
|
||||
NOTE: It is questionable whether it is advisable (no pun intended) to modify advice on a
|
||||
business object in production, although there are, no doubt, legitimate usage cases.
|
||||
However, it can be very useful in development (for example, in tests). We have sometimes
|
||||
found it very useful to be able to add test code in the form of an interceptor or other
|
||||
advice, getting inside a method invocation that we want to test. (For example, the advice can
|
||||
get inside a transaction created for that method, perhaps to run SQL to check that
|
||||
a database was correctly updated, before marking the transaction for roll back.)
|
||||
|
||||
Depending on how you created the proxy, you can usually set a `frozen` flag. In that
|
||||
case, the `Advised` `isFrozen()` method returns `true`, and any attempts to modify
|
||||
advice through addition or removal results in an `AopConfigException`. The ability
|
||||
to freeze the state of an advised object is useful in some cases (for example, to
|
||||
prevent calling code removing a security interceptor).
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,20 +0,0 @@
|
||||
[[aop-api-advisor]]
|
||||
= The Advisor API in Spring
|
||||
:page-section-summary-toc: 1
|
||||
|
||||
In Spring, an Advisor is an aspect that contains only a single advice object associated
|
||||
with a pointcut expression.
|
||||
|
||||
Apart from the special case of introductions, any advisor can be used with any advice.
|
||||
`org.springframework.aop.support.DefaultPointcutAdvisor` is the most commonly used
|
||||
advisor class. It can be used with a `MethodInterceptor`, `BeforeAdvice`, or
|
||||
`ThrowsAdvice`.
|
||||
|
||||
It is possible to mix advisor and advice types in Spring in the same AOP proxy. For
|
||||
example, you could use an interception around advice, throws advice, and before advice in
|
||||
one proxy configuration. Spring automatically creates the necessary interceptor
|
||||
chain.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,131 +0,0 @@
|
||||
[[aop-autoproxy]]
|
||||
= Using the "auto-proxy" facility
|
||||
|
||||
So far, we have considered explicit creation of AOP proxies by using a `ProxyFactoryBean` or
|
||||
similar factory bean.
|
||||
|
||||
Spring also lets us use "`auto-proxy`" bean definitions, which can automatically
|
||||
proxy selected bean definitions. This is built on Spring's "`bean post processor`"
|
||||
infrastructure, which enables modification of any bean definition as the container loads.
|
||||
|
||||
In this model, you set up some special bean definitions in your XML bean definition file
|
||||
to configure the auto-proxy infrastructure. This lets you declare the targets
|
||||
eligible for auto-proxying. You need not use `ProxyFactoryBean`.
|
||||
|
||||
There are two ways to do this:
|
||||
|
||||
* By using an auto-proxy creator that refers to specific beans in the current context.
|
||||
* A special case of auto-proxy creation that deserves to be considered separately:
|
||||
auto-proxy creation driven by source-level metadata attributes.
|
||||
|
||||
|
||||
|
||||
[[aop-autoproxy-choices]]
|
||||
== Auto-proxy Bean Definitions
|
||||
|
||||
This section covers the auto-proxy creators provided by the
|
||||
`org.springframework.aop.framework.autoproxy` package.
|
||||
|
||||
|
||||
[[aop-api-autoproxy]]
|
||||
=== `BeanNameAutoProxyCreator`
|
||||
|
||||
The `BeanNameAutoProxyCreator` class is a `BeanPostProcessor` that automatically creates
|
||||
AOP proxies for beans with names that match literal values or wildcards. The following
|
||||
example shows how to create a `BeanNameAutoProxyCreator` bean:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean class="org.springframework.aop.framework.autoproxy.BeanNameAutoProxyCreator">
|
||||
<property name="beanNames" value="jdk*,onlyJdk"/>
|
||||
<property name="interceptorNames">
|
||||
<list>
|
||||
<value>myInterceptor</value>
|
||||
</list>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
As with `ProxyFactoryBean`, there is an `interceptorNames` property rather than a list
|
||||
of interceptors, to allow correct behavior for prototype advisors. Named "`interceptors`"
|
||||
can be advisors or any advice type.
|
||||
|
||||
As with auto-proxying in general, the main point of using `BeanNameAutoProxyCreator` is
|
||||
to apply the same configuration consistently to multiple objects, with minimal volume of
|
||||
configuration. It is a popular choice for applying declarative transactions to multiple
|
||||
objects.
|
||||
|
||||
Bean definitions whose names match, such as `jdkMyBean` and `onlyJdk` in the preceding
|
||||
example, are plain old bean definitions with the target class. An AOP proxy is
|
||||
automatically created by the `BeanNameAutoProxyCreator`. The same advice is applied
|
||||
to all matching beans. Note that, if advisors are used (rather than the interceptor in
|
||||
the preceding example), the pointcuts may apply differently to different beans.
|
||||
|
||||
|
||||
[[aop-api-autoproxy-default]]
|
||||
=== `DefaultAdvisorAutoProxyCreator`
|
||||
|
||||
A more general and extremely powerful auto-proxy creator is
|
||||
`DefaultAdvisorAutoProxyCreator`. This automagically applies eligible advisors in the
|
||||
current context, without the need to include specific bean names in the auto-proxy
|
||||
advisor's bean definition. It offers the same merit of consistent configuration and
|
||||
avoidance of duplication as `BeanNameAutoProxyCreator`.
|
||||
|
||||
Using this mechanism involves:
|
||||
|
||||
* Specifying a `DefaultAdvisorAutoProxyCreator` bean definition.
|
||||
* Specifying any number of advisors in the same or related contexts. Note that these
|
||||
must be advisors, not interceptors or other advice. This is necessary,
|
||||
because there must be a pointcut to evaluate, to check the eligibility of each advice
|
||||
to candidate bean definitions.
|
||||
|
||||
The `DefaultAdvisorAutoProxyCreator` automatically evaluates the pointcut contained
|
||||
in each advisor, to see what (if any) advice it should apply to each business object
|
||||
(such as `businessObject1` and `businessObject2` in the example).
|
||||
|
||||
This means that any number of advisors can be applied automatically to each business
|
||||
object. If no pointcut in any of the advisors matches any method in a business object,
|
||||
the object is not proxied. As bean definitions are added for new business objects,
|
||||
they are automatically proxied if necessary.
|
||||
|
||||
Auto-proxying in general has the advantage of making it impossible for callers or
|
||||
dependencies to obtain an un-advised object. Calling `getBean("businessObject1")` on this
|
||||
`ApplicationContext` returns an AOP proxy, not the target business object. (The "`inner
|
||||
bean`" idiom shown earlier also offers this benefit.)
|
||||
|
||||
The following example creates a `DefaultAdvisorAutoProxyCreator` bean and the other
|
||||
elements discussed in this section:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean class="org.springframework.aop.framework.autoproxy.DefaultAdvisorAutoProxyCreator"/>
|
||||
|
||||
<bean class="org.springframework.transaction.interceptor.TransactionAttributeSourceAdvisor">
|
||||
<property name="transactionInterceptor" ref="transactionInterceptor"/>
|
||||
</bean>
|
||||
|
||||
<bean id="customAdvisor" class="com.mycompany.MyAdvisor"/>
|
||||
|
||||
<bean id="businessObject1" class="com.mycompany.BusinessObject1">
|
||||
<!-- Properties omitted -->
|
||||
</bean>
|
||||
|
||||
<bean id="businessObject2" class="com.mycompany.BusinessObject2"/>
|
||||
----
|
||||
|
||||
The `DefaultAdvisorAutoProxyCreator` is very useful if you want to apply the same advice
|
||||
consistently to many business objects. Once the infrastructure definitions are in place,
|
||||
you can add new business objects without including specific proxy configuration.
|
||||
You can also easily drop in additional aspects (for example, tracing or
|
||||
performance monitoring aspects) with minimal change to configuration.
|
||||
|
||||
The `DefaultAdvisorAutoProxyCreator` offers support for filtering (by using a naming
|
||||
convention so that only certain advisors are evaluated, which allows the use of multiple,
|
||||
differently configured, AdvisorAutoProxyCreators in the same factory) and ordering.
|
||||
Advisors can implement the `org.springframework.core.Ordered` interface to ensure
|
||||
correct ordering if this is an issue. The `TransactionAttributeSourceAdvisor` used in the
|
||||
preceding example has a configurable order value. The default setting is unordered.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,71 +0,0 @@
|
||||
[[aop-concise-proxy]]
|
||||
= Concise Proxy Definitions
|
||||
|
||||
Especially when defining transactional proxies, you may end up with many similar proxy
|
||||
definitions. The use of parent and child bean definitions, along with inner bean
|
||||
definitions, can result in much cleaner and more concise proxy definitions.
|
||||
|
||||
First, we create a parent, template, bean definition for the proxy, as follows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="txProxyTemplate" abstract="true"
|
||||
class="org.springframework.transaction.interceptor.TransactionProxyFactoryBean">
|
||||
<property name="transactionManager" ref="transactionManager"/>
|
||||
<property name="transactionAttributes">
|
||||
<props>
|
||||
<prop key="*">PROPAGATION_REQUIRED</prop>
|
||||
</props>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
This is never instantiated itself, so it can actually be incomplete. Then, each proxy
|
||||
that needs to be created is a child bean definition, which wraps the target of the
|
||||
proxy as an inner bean definition, since the target is never used on its own anyway.
|
||||
The following example shows such a child bean:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="myService" parent="txProxyTemplate">
|
||||
<property name="target">
|
||||
<bean class="org.springframework.samples.MyServiceImpl">
|
||||
</bean>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
You can override properties from the parent template. In the following example,
|
||||
we override the transaction propagation settings:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="mySpecialService" parent="txProxyTemplate">
|
||||
<property name="target">
|
||||
<bean class="org.springframework.samples.MySpecialServiceImpl">
|
||||
</bean>
|
||||
</property>
|
||||
<property name="transactionAttributes">
|
||||
<props>
|
||||
<prop key="get*">PROPAGATION_REQUIRED,readOnly</prop>
|
||||
<prop key="find*">PROPAGATION_REQUIRED,readOnly</prop>
|
||||
<prop key="load*">PROPAGATION_REQUIRED,readOnly</prop>
|
||||
<prop key="store*">PROPAGATION_REQUIRED</prop>
|
||||
</props>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
Note that in the parent bean example, we explicitly marked the parent bean definition as
|
||||
being abstract by setting the `abstract` attribute to `true`, as described
|
||||
xref:core/beans/child-bean-definitions.adoc[previously], so that it may not actually ever be
|
||||
instantiated. Application contexts (but not simple bean factories), by default,
|
||||
pre-instantiate all singletons. Therefore, it is important (at least for singleton beans)
|
||||
that, if you have a (parent) bean definition that you intend to use only as a template,
|
||||
and this definition specifies a class, you must make sure to set the `abstract`
|
||||
attribute to `true`. Otherwise, the application context actually tries to
|
||||
pre-instantiate it.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,16 +0,0 @@
|
||||
[[aop-extensibility]]
|
||||
= Defining New Advice Types
|
||||
:page-section-summary-toc: 1
|
||||
|
||||
Spring AOP is designed to be extensible. While the interception implementation strategy
|
||||
is presently used internally, it is possible to support arbitrary advice types in
|
||||
addition to the interception around advice, before, throws advice, and
|
||||
after returning advice.
|
||||
|
||||
The `org.springframework.aop.framework.adapter` package is an SPI package that lets
|
||||
support for new custom advice types be added without changing the core framework.
|
||||
The only constraint on a custom `Advice` type is that it must implement the
|
||||
`org.aopalliance.aop.Advice` marker interface.
|
||||
|
||||
See the {spring-framework-api}/aop/framework/adapter/package-summary.html[`org.springframework.aop.framework.adapter`]
|
||||
javadoc for further information.
|
||||
@@ -1,331 +0,0 @@
|
||||
[[aop-pfb]]
|
||||
= Using the `ProxyFactoryBean` to Create AOP Proxies
|
||||
|
||||
If you use the Spring IoC container (an `ApplicationContext` or `BeanFactory`) for your
|
||||
business objects (and you should be!), you want to use one of Spring's AOP
|
||||
`FactoryBean` implementations. (Remember that a factory bean introduces a layer of indirection, letting
|
||||
it create objects of a different type.)
|
||||
|
||||
NOTE: The Spring AOP support also uses factory beans under the covers.
|
||||
|
||||
The basic way to create an AOP proxy in Spring is to use the
|
||||
`org.springframework.aop.framework.ProxyFactoryBean`. This gives complete control over
|
||||
the pointcuts, any advice that applies, and their ordering. However, there are simpler
|
||||
options that are preferable if you do not need such control.
|
||||
|
||||
|
||||
|
||||
[[aop-pfb-1]]
|
||||
== Basics
|
||||
|
||||
The `ProxyFactoryBean`, like other Spring `FactoryBean` implementations, introduces a
|
||||
level of indirection. If you define a `ProxyFactoryBean` named `foo`, objects that
|
||||
reference `foo` do not see the `ProxyFactoryBean` instance itself but an object
|
||||
created by the implementation of the `getObject()` method in the `ProxyFactoryBean` . This
|
||||
method creates an AOP proxy that wraps a target object.
|
||||
|
||||
One of the most important benefits of using a `ProxyFactoryBean` or another IoC-aware
|
||||
class to create AOP proxies is that advice and pointcuts can also be
|
||||
managed by IoC. This is a powerful feature, enabling certain approaches that are hard to
|
||||
achieve with other AOP frameworks. For example, an advice may itself reference
|
||||
application objects (besides the target, which should be available in any AOP
|
||||
framework), benefiting from all the pluggability provided by Dependency Injection.
|
||||
|
||||
|
||||
|
||||
[[aop-pfb-2]]
|
||||
== JavaBean Properties
|
||||
|
||||
In common with most `FactoryBean` implementations provided with Spring, the
|
||||
`ProxyFactoryBean` class is itself a JavaBean. Its properties are used to:
|
||||
|
||||
* Specify the target you want to proxy.
|
||||
* Specify whether to use CGLIB (described later and see also xref:core/aop-api/pfb.adoc#aop-pfb-proxy-types[JDK- and CGLIB-based proxies]).
|
||||
|
||||
Some key properties are inherited from `org.springframework.aop.framework.ProxyConfig`
|
||||
(the superclass for all AOP proxy factories in Spring). These key properties include
|
||||
the following:
|
||||
|
||||
* `proxyTargetClass`: `true` if the target class is to be proxied, rather than the
|
||||
target class's interfaces. If this property value is set to `true`, then CGLIB proxies
|
||||
are created (but see also xref:core/aop-api/pfb.adoc#aop-pfb-proxy-types[JDK- and CGLIB-based proxies]).
|
||||
* `optimize`: Controls whether or not aggressive optimizations are applied to proxies
|
||||
created through CGLIB. You should not blithely use this setting unless you fully
|
||||
understand how the relevant AOP proxy handles optimization. This is currently used
|
||||
only for CGLIB proxies. It has no effect with JDK dynamic proxies.
|
||||
* `frozen`: If a proxy configuration is `frozen`, changes to the configuration are
|
||||
no longer allowed. This is useful both as a slight optimization and for those cases
|
||||
when you do not want callers to be able to manipulate the proxy (through the `Advised`
|
||||
interface) after the proxy has been created. The default value of this property is
|
||||
`false`, so changes (such as adding additional advice) are allowed.
|
||||
* `exposeProxy`: Determines whether or not the current proxy should be exposed in a
|
||||
`ThreadLocal` so that it can be accessed by the target. If a target needs to obtain
|
||||
the proxy and the `exposeProxy` property is set to `true`, the target can use the
|
||||
`AopContext.currentProxy()` method.
|
||||
|
||||
Other properties specific to `ProxyFactoryBean` include the following:
|
||||
|
||||
* `proxyInterfaces`: An array of `String` interface names. If this is not supplied, a CGLIB
|
||||
proxy for the target class is used (but see also xref:core/aop-api/pfb.adoc#aop-pfb-proxy-types[JDK- and CGLIB-based proxies]).
|
||||
* `interceptorNames`: A `String` array of `Advisor`, interceptor, or other advice names to
|
||||
apply. Ordering is significant, on a first come-first served basis. That is to say
|
||||
that the first interceptor in the list is the first to be able to intercept the
|
||||
invocation.
|
||||
+
|
||||
The names are bean names in the current factory, including bean names from ancestor
|
||||
factories. You cannot mention bean references here, since doing so results in the
|
||||
`ProxyFactoryBean` ignoring the singleton setting of the advice.
|
||||
+
|
||||
You can append an interceptor name with an asterisk (`*`). Doing so results in the
|
||||
application of all advisor beans with names that start with the part before the asterisk
|
||||
to be applied. You can find an example of using this feature in xref:core/aop-api/pfb.adoc#aop-global-advisors[Using "`Global`" Advisors].
|
||||
|
||||
* singleton: Whether or not the factory should return a single object, no matter how
|
||||
often the `getObject()` method is called. Several `FactoryBean` implementations offer
|
||||
such a method. The default value is `true`. If you want to use stateful advice - for
|
||||
example, for stateful mixins - use prototype advice along with a singleton value of
|
||||
`false`.
|
||||
|
||||
|
||||
|
||||
[[aop-pfb-proxy-types]]
|
||||
== JDK- and CGLIB-based proxies
|
||||
|
||||
This section serves as the definitive documentation on how the `ProxyFactoryBean`
|
||||
chooses to create either a JDK-based proxy or a CGLIB-based proxy for a particular target
|
||||
object (which is to be proxied).
|
||||
|
||||
NOTE: The behavior of the `ProxyFactoryBean` with regard to creating JDK- or CGLIB-based
|
||||
proxies changed between versions 1.2.x and 2.0 of Spring. The `ProxyFactoryBean` now
|
||||
exhibits similar semantics with regard to auto-detecting interfaces as those of the
|
||||
`TransactionProxyFactoryBean` class.
|
||||
|
||||
If the class of a target object that is to be proxied (hereafter simply referred to as
|
||||
the target class) does not implement any interfaces, a CGLIB-based proxy is
|
||||
created. This is the easiest scenario, because JDK proxies are interface-based, and no
|
||||
interfaces means JDK proxying is not even possible. You can plug in the target bean
|
||||
and specify the list of interceptors by setting the `interceptorNames` property. Note that a
|
||||
CGLIB-based proxy is created even if the `proxyTargetClass` property of the
|
||||
`ProxyFactoryBean` has been set to `false`. (Doing so makes no sense and is best
|
||||
removed from the bean definition, because it is, at best, redundant, and, at worst
|
||||
confusing.)
|
||||
|
||||
If the target class implements one (or more) interfaces, the type of proxy that is
|
||||
created depends on the configuration of the `ProxyFactoryBean`.
|
||||
|
||||
If the `proxyTargetClass` property of the `ProxyFactoryBean` has been set to `true`,
|
||||
a CGLIB-based proxy is created. This makes sense and is in keeping with the
|
||||
principle of least surprise. Even if the `proxyInterfaces` property of the
|
||||
`ProxyFactoryBean` has been set to one or more fully qualified interface names, the fact
|
||||
that the `proxyTargetClass` property is set to `true` causes CGLIB-based
|
||||
proxying to be in effect.
|
||||
|
||||
If the `proxyInterfaces` property of the `ProxyFactoryBean` has been set to one or more
|
||||
fully qualified interface names, a JDK-based proxy is created. The created
|
||||
proxy implements all of the interfaces that were specified in the `proxyInterfaces`
|
||||
property. If the target class happens to implement a whole lot more interfaces than
|
||||
those specified in the `proxyInterfaces` property, that is all well and good, but those
|
||||
additional interfaces are not implemented by the returned proxy.
|
||||
|
||||
If the `proxyInterfaces` property of the `ProxyFactoryBean` has not been set, but
|
||||
the target class does implement one (or more) interfaces, the
|
||||
`ProxyFactoryBean` auto-detects the fact that the target class does actually
|
||||
implement at least one interface, and a JDK-based proxy is created. The interfaces
|
||||
that are actually proxied are all of the interfaces that the target class
|
||||
implements. In effect, this is the same as supplying a list of each and every
|
||||
interface that the target class implements to the `proxyInterfaces` property. However,
|
||||
it is significantly less work and less prone to typographical errors.
|
||||
|
||||
|
||||
|
||||
[[aop-api-proxying-intf]]
|
||||
== Proxying Interfaces
|
||||
|
||||
Consider a simple example of `ProxyFactoryBean` in action. This example involves:
|
||||
|
||||
* A target bean that is proxied. This is the `personTarget` bean definition in
|
||||
the example.
|
||||
* An `Advisor` and an `Interceptor` used to provide advice.
|
||||
* An AOP proxy bean definition to specify the target object (the `personTarget` bean),
|
||||
the interfaces to proxy, and the advice to apply.
|
||||
|
||||
The following listing shows the example:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="personTarget" class="com.mycompany.PersonImpl">
|
||||
<property name="name" value="Tony"/>
|
||||
<property name="age" value="51"/>
|
||||
</bean>
|
||||
|
||||
<bean id="myAdvisor" class="com.mycompany.MyAdvisor">
|
||||
<property name="someProperty" value="Custom string property value"/>
|
||||
</bean>
|
||||
|
||||
<bean id="debugInterceptor" class="org.springframework.aop.interceptor.DebugInterceptor">
|
||||
</bean>
|
||||
|
||||
<bean id="person"
|
||||
class="org.springframework.aop.framework.ProxyFactoryBean">
|
||||
<property name="proxyInterfaces" value="com.mycompany.Person"/>
|
||||
|
||||
<property name="target" ref="personTarget"/>
|
||||
<property name="interceptorNames">
|
||||
<list>
|
||||
<value>myAdvisor</value>
|
||||
<value>debugInterceptor</value>
|
||||
</list>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
Note that the `interceptorNames` property takes a list of `String`, which holds the bean names of the
|
||||
interceptors or advisors in the current factory. You can use advisors, interceptors, before, after
|
||||
returning, and throws advice objects. The ordering of advisors is significant.
|
||||
|
||||
NOTE: You might be wondering why the list does not hold bean references. The reason for this is
|
||||
that, if the singleton property of the `ProxyFactoryBean` is set to `false`, it must be able to
|
||||
return independent proxy instances. If any of the advisors is itself a prototype, an
|
||||
independent instance would need to be returned, so it is necessary to be able to obtain
|
||||
an instance of the prototype from the factory. Holding a reference is not sufficient.
|
||||
|
||||
The `person` bean definition shown earlier can be used in place of a `Person` implementation, as
|
||||
follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
Person person = (Person) factory.getBean("person");
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
val person = factory.getBean("person") as Person;
|
||||
----
|
||||
======
|
||||
|
||||
Other beans in the same IoC context can express a strongly typed dependency on it, as
|
||||
with an ordinary Java object. The following example shows how to do so:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="personUser" class="com.mycompany.PersonUser">
|
||||
<property name="person"><ref bean="person"/></property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
The `PersonUser` class in this example exposes a property of type `Person`. As far as
|
||||
it is concerned, the AOP proxy can be used transparently in place of a "`real`" person
|
||||
implementation. However, its class would be a dynamic proxy class. It would be possible
|
||||
to cast it to the `Advised` interface (discussed later).
|
||||
|
||||
You can conceal the distinction between target and proxy by using an anonymous
|
||||
inner bean. Only the `ProxyFactoryBean` definition is different. The
|
||||
advice is included only for completeness. The following example shows how to use an
|
||||
anonymous inner bean:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="myAdvisor" class="com.mycompany.MyAdvisor">
|
||||
<property name="someProperty" value="Custom string property value"/>
|
||||
</bean>
|
||||
|
||||
<bean id="debugInterceptor" class="org.springframework.aop.interceptor.DebugInterceptor"/>
|
||||
|
||||
<bean id="person" class="org.springframework.aop.framework.ProxyFactoryBean">
|
||||
<property name="proxyInterfaces" value="com.mycompany.Person"/>
|
||||
<!-- Use inner bean, not local reference to target -->
|
||||
<property name="target">
|
||||
<bean class="com.mycompany.PersonImpl">
|
||||
<property name="name" value="Tony"/>
|
||||
<property name="age" value="51"/>
|
||||
</bean>
|
||||
</property>
|
||||
<property name="interceptorNames">
|
||||
<list>
|
||||
<value>myAdvisor</value>
|
||||
<value>debugInterceptor</value>
|
||||
</list>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
Using an anonymous inner bean has the advantage that there is only one object of type `Person`. This is useful if we want
|
||||
to prevent users of the application context from obtaining a reference to the un-advised
|
||||
object or need to avoid any ambiguity with Spring IoC autowiring. There is also,
|
||||
arguably, an advantage in that the `ProxyFactoryBean` definition is self-contained.
|
||||
However, there are times when being able to obtain the un-advised target from the
|
||||
factory might actually be an advantage (for example, in certain test scenarios).
|
||||
|
||||
|
||||
|
||||
[[aop-api-proxying-class]]
|
||||
== Proxying Classes
|
||||
|
||||
What if you need to proxy a class, rather than one or more interfaces?
|
||||
|
||||
Imagine that in our earlier example, there was no `Person` interface. We needed to advise
|
||||
a class called `Person` that did not implement any business interface. In this case, you
|
||||
can configure Spring to use CGLIB proxying rather than dynamic proxies. To do so, set the
|
||||
`proxyTargetClass` property on the `ProxyFactoryBean` shown earlier to `true`. While it is best to
|
||||
program to interfaces rather than classes, the ability to advise classes that do not
|
||||
implement interfaces can be useful when working with legacy code. (In general, Spring
|
||||
is not prescriptive. While it makes it easy to apply good practices, it avoids forcing a
|
||||
particular approach.)
|
||||
|
||||
If you want to, you can force the use of CGLIB in any case, even if you do have
|
||||
interfaces.
|
||||
|
||||
CGLIB proxying works by generating a subclass of the target class at runtime. Spring
|
||||
configures this generated subclass to delegate method calls to the original target. The
|
||||
subclass is used to implement the Decorator pattern, weaving in the advice.
|
||||
|
||||
CGLIB proxying should generally be transparent to users. However, there are some issues
|
||||
to consider:
|
||||
|
||||
* `final` classes cannot be proxied, because they cannot be extended.
|
||||
* `final` methods cannot be advised, because they cannot be overridden.
|
||||
* `private` methods cannot be advised, because they cannot be overridden.
|
||||
* Methods that are not visible, typically package private methods in a parent class
|
||||
from a different package, cannot be advised because they are effectively private.
|
||||
|
||||
NOTE: There is no need to add CGLIB to your classpath. CGLIB is repackaged and included
|
||||
in the `spring-core` JAR. In other words, CGLIB-based AOP works "out of the box", as do
|
||||
JDK dynamic proxies.
|
||||
|
||||
There is little performance difference between CGLIB proxies and dynamic proxies.
|
||||
Performance should not be a decisive consideration in this case.
|
||||
|
||||
|
||||
|
||||
[[aop-global-advisors]]
|
||||
== Using "`Global`" Advisors
|
||||
|
||||
By appending an asterisk to an interceptor name, all advisors with bean names that match
|
||||
the part before the asterisk are added to the advisor chain. This can come in handy
|
||||
if you need to add a standard set of "`global`" advisors. The following example defines
|
||||
two global advisors:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="proxy" class="org.springframework.aop.framework.ProxyFactoryBean">
|
||||
<property name="target" ref="service"/>
|
||||
<property name="interceptorNames">
|
||||
<list>
|
||||
<value>global*</value>
|
||||
</list>
|
||||
</property>
|
||||
</bean>
|
||||
|
||||
<bean id="global_debug" class="org.springframework.aop.interceptor.DebugInterceptor"/>
|
||||
<bean id="global_performance" class="org.springframework.aop.interceptor.PerformanceMonitorInterceptor"/>
|
||||
----
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,256 +0,0 @@
|
||||
[[aop-api-pointcuts]]
|
||||
= Pointcut API in Spring
|
||||
|
||||
This section describes how Spring handles the crucial pointcut concept.
|
||||
|
||||
|
||||
|
||||
[[aop-api-concepts]]
|
||||
== Concepts
|
||||
|
||||
Spring's pointcut model enables pointcut reuse independent of advice types. You can
|
||||
target different advice with the same pointcut.
|
||||
|
||||
The `org.springframework.aop.Pointcut` interface is the central interface, used to
|
||||
target advice to particular classes and methods. The complete interface follows:
|
||||
|
||||
[source,java,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
public interface Pointcut {
|
||||
|
||||
ClassFilter getClassFilter();
|
||||
|
||||
MethodMatcher getMethodMatcher();
|
||||
}
|
||||
----
|
||||
|
||||
Splitting the `Pointcut` interface into two parts allows reuse of class and method
|
||||
matching parts and fine-grained composition operations (such as performing a "`union`"
|
||||
with another method matcher).
|
||||
|
||||
The `ClassFilter` interface is used to restrict the pointcut to a given set of target
|
||||
classes. If the `matches()` method always returns true, all target classes are
|
||||
matched. The following listing shows the `ClassFilter` interface definition:
|
||||
|
||||
[source,java,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
public interface ClassFilter {
|
||||
|
||||
boolean matches(Class clazz);
|
||||
}
|
||||
----
|
||||
|
||||
The `MethodMatcher` interface is normally more important. The complete interface follows:
|
||||
|
||||
[source,java,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
public interface MethodMatcher {
|
||||
|
||||
boolean matches(Method m, Class<?> targetClass);
|
||||
|
||||
boolean isRuntime();
|
||||
|
||||
boolean matches(Method m, Class<?> targetClass, Object... args);
|
||||
}
|
||||
----
|
||||
|
||||
The `matches(Method, Class)` method is used to test whether this pointcut ever
|
||||
matches a given method on a target class. This evaluation can be performed when an AOP
|
||||
proxy is created to avoid the need for a test on every method invocation. If the
|
||||
two-argument `matches` method returns `true` for a given method, and the `isRuntime()`
|
||||
method for the MethodMatcher returns `true`, the three-argument matches method is
|
||||
invoked on every method invocation. This lets a pointcut look at the arguments passed
|
||||
to the method invocation immediately before the target advice starts.
|
||||
|
||||
Most `MethodMatcher` implementations are static, meaning that their `isRuntime()` method
|
||||
returns `false`. In this case, the three-argument `matches` method is never invoked.
|
||||
|
||||
TIP: If possible, try to make pointcuts static, allowing the AOP framework to cache the
|
||||
results of pointcut evaluation when an AOP proxy is created.
|
||||
|
||||
|
||||
|
||||
[[aop-api-pointcut-ops]]
|
||||
== Operations on Pointcuts
|
||||
|
||||
Spring supports operations (notably, union and intersection) on pointcuts.
|
||||
|
||||
Union means the methods that either pointcut matches.
|
||||
Intersection means the methods that both pointcuts match.
|
||||
Union is usually more useful.
|
||||
You can compose pointcuts by using the static methods in the
|
||||
`org.springframework.aop.support.Pointcuts` class or by using the
|
||||
`ComposablePointcut` class in the same package. However, using AspectJ pointcut
|
||||
expressions is usually a simpler approach.
|
||||
|
||||
|
||||
|
||||
[[aop-api-pointcuts-aspectj]]
|
||||
== AspectJ Expression Pointcuts
|
||||
|
||||
Since 2.0, the most important type of pointcut used by Spring is
|
||||
`org.springframework.aop.aspectj.AspectJExpressionPointcut`. This is a pointcut that
|
||||
uses an AspectJ-supplied library to parse an AspectJ pointcut expression string.
|
||||
|
||||
See the xref:core/aop.adoc[previous chapter] for a discussion of supported AspectJ pointcut primitives.
|
||||
|
||||
|
||||
|
||||
[[aop-api-pointcuts-impls]]
|
||||
== Convenience Pointcut Implementations
|
||||
|
||||
Spring provides several convenient pointcut implementations. You can use some of them
|
||||
directly; others are intended to be subclassed in application-specific pointcuts.
|
||||
|
||||
|
||||
[[aop-api-pointcuts-static]]
|
||||
=== Static Pointcuts
|
||||
|
||||
Static pointcuts are based on the method and the target class and cannot take into account
|
||||
the method's arguments. Static pointcuts suffice -- and are best -- for most usages.
|
||||
Spring can evaluate a static pointcut only once, when a method is first invoked.
|
||||
After that, there is no need to evaluate the pointcut again with each method invocation.
|
||||
|
||||
The rest of this section describes some of the static pointcut implementations that are
|
||||
included with Spring.
|
||||
|
||||
[[aop-api-pointcuts-regex]]
|
||||
==== Regular Expression Pointcuts
|
||||
|
||||
One obvious way to specify static pointcuts is regular expressions. Several AOP
|
||||
frameworks besides Spring make this possible.
|
||||
`org.springframework.aop.support.JdkRegexpMethodPointcut` is a generic regular
|
||||
expression pointcut that uses the regular expression support in the JDK.
|
||||
|
||||
With the `JdkRegexpMethodPointcut` class, you can provide a list of pattern strings.
|
||||
If any of these is a match, the pointcut evaluates to `true`. (As a consequence,
|
||||
the resulting pointcut is effectively the union of the specified patterns.)
|
||||
|
||||
The following example shows how to use `JdkRegexpMethodPointcut`:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<bean id="settersAndAbsquatulatePointcut"
|
||||
class="org.springframework.aop.support.JdkRegexpMethodPointcut">
|
||||
<property name="patterns">
|
||||
<list>
|
||||
<value>.*set.*</value>
|
||||
<value>.*absquatulate</value>
|
||||
</list>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
Spring provides a convenience class named `RegexpMethodPointcutAdvisor`, which lets us
|
||||
also reference an `Advice` (remember that an `Advice` can be an interceptor, before advice,
|
||||
throws advice, and others). Behind the scenes, Spring uses a `JdkRegexpMethodPointcut`.
|
||||
Using `RegexpMethodPointcutAdvisor` simplifies wiring, as the one bean encapsulates both
|
||||
pointcut and advice, as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<bean id="settersAndAbsquatulateAdvisor"
|
||||
class="org.springframework.aop.support.RegexpMethodPointcutAdvisor">
|
||||
<property name="advice">
|
||||
<ref bean="beanNameOfAopAllianceInterceptor"/>
|
||||
</property>
|
||||
<property name="patterns">
|
||||
<list>
|
||||
<value>.*set.*</value>
|
||||
<value>.*absquatulate</value>
|
||||
</list>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
You can use `RegexpMethodPointcutAdvisor` with any `Advice` type.
|
||||
|
||||
[[aop-api-pointcuts-attribute-driven]]
|
||||
==== Attribute-driven Pointcuts
|
||||
|
||||
An important type of static pointcut is a metadata-driven pointcut. This uses the
|
||||
values of metadata attributes (typically, source-level metadata).
|
||||
|
||||
|
||||
[[aop-api-pointcuts-dynamic]]
|
||||
=== Dynamic pointcuts
|
||||
|
||||
Dynamic pointcuts are costlier to evaluate than static pointcuts. They take into account
|
||||
method arguments as well as static information. This means that they must be
|
||||
evaluated with every method invocation and that the result cannot be cached, as arguments will
|
||||
vary.
|
||||
|
||||
The main example is the `control flow` pointcut.
|
||||
|
||||
[[aop-api-pointcuts-cflow]]
|
||||
==== Control Flow Pointcuts
|
||||
|
||||
Spring control flow pointcuts are conceptually similar to AspectJ `cflow` pointcuts,
|
||||
although less powerful. (There is currently no way to specify that a pointcut runs
|
||||
below a join point matched by another pointcut.) A control flow pointcut matches the
|
||||
current call stack. For example, it might fire if the join point was invoked by a method
|
||||
in the `com.mycompany.web` package or by the `SomeCaller` class. Control flow pointcuts
|
||||
are specified by using the `org.springframework.aop.support.ControlFlowPointcut` class.
|
||||
|
||||
NOTE: Control flow pointcuts are significantly more expensive to evaluate at runtime than even
|
||||
other dynamic pointcuts. In Java 1.4, the cost is about five times that of other dynamic
|
||||
pointcuts.
|
||||
|
||||
|
||||
|
||||
[[aop-api-pointcuts-superclasses]]
|
||||
== Pointcut Superclasses
|
||||
|
||||
Spring provides useful pointcut superclasses to help you to implement your own pointcuts.
|
||||
|
||||
Because static pointcuts are most useful, you should probably subclass
|
||||
`StaticMethodMatcherPointcut`. This requires implementing only one
|
||||
abstract method (although you can override other methods to customize behavior). The
|
||||
following example shows how to subclass `StaticMethodMatcherPointcut`:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
class TestStaticPointcut extends StaticMethodMatcherPointcut {
|
||||
|
||||
public boolean matches(Method m, Class targetClass) {
|
||||
// return true if custom criteria match
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class TestStaticPointcut : StaticMethodMatcherPointcut() {
|
||||
|
||||
override fun matches(method: Method, targetClass: Class<*>): Boolean {
|
||||
// return true if custom criteria match
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
There are also superclasses for dynamic pointcuts.
|
||||
You can use custom pointcuts with any advice type.
|
||||
|
||||
|
||||
|
||||
[[aop-api-pointcuts-custom]]
|
||||
== Custom Pointcuts
|
||||
|
||||
Because pointcuts in Spring AOP are Java classes rather than language features (as in
|
||||
AspectJ), you can declare custom pointcuts, whether static or dynamic. Custom
|
||||
pointcuts in Spring can be arbitrarily complex. However, we recommend using the AspectJ pointcut
|
||||
expression language, if you can.
|
||||
|
||||
NOTE: Later versions of Spring may offer support for "`semantic pointcuts`" as offered by JAC --
|
||||
for example, "`all methods that change instance variables in the target object.`"
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,54 +0,0 @@
|
||||
[[aop-prog]]
|
||||
= Creating AOP Proxies Programmatically with the `ProxyFactory`
|
||||
|
||||
It is easy to create AOP proxies programmatically with Spring. This lets you use
|
||||
Spring AOP without dependency on Spring IoC.
|
||||
|
||||
The interfaces implemented by the target object are
|
||||
automatically proxied. The following listing shows creation of a proxy for a target object, with one
|
||||
interceptor and one advisor:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
ProxyFactory factory = new ProxyFactory(myBusinessInterfaceImpl);
|
||||
factory.addAdvice(myMethodInterceptor);
|
||||
factory.addAdvisor(myAdvisor);
|
||||
MyBusinessInterface tb = (MyBusinessInterface) factory.getProxy();
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
val factory = ProxyFactory(myBusinessInterfaceImpl)
|
||||
factory.addAdvice(myMethodInterceptor)
|
||||
factory.addAdvisor(myAdvisor)
|
||||
val tb = factory.proxy as MyBusinessInterface
|
||||
----
|
||||
======
|
||||
|
||||
The first step is to construct an object of type
|
||||
`org.springframework.aop.framework.ProxyFactory`. You can create this with a target
|
||||
object, as in the preceding example, or specify the interfaces to be proxied in an alternate
|
||||
constructor.
|
||||
|
||||
You can add advice (with interceptors as a specialized kind of advice), advisors, or both
|
||||
and manipulate them for the life of the `ProxyFactory`. If you add an
|
||||
`IntroductionInterceptionAroundAdvisor`, you can cause the proxy to implement additional
|
||||
interfaces.
|
||||
|
||||
There are also convenience methods on `ProxyFactory` (inherited from `AdvisedSupport`)
|
||||
that let you add other advice types, such as before and throws advice.
|
||||
`AdvisedSupport` is the superclass of both `ProxyFactory` and `ProxyFactoryBean`.
|
||||
|
||||
TIP: Integrating AOP proxy creation with the IoC framework is best practice in most
|
||||
applications. We recommend that you externalize configuration from Java code with AOP,
|
||||
as you should in general.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,232 +0,0 @@
|
||||
[[aop-targetsource]]
|
||||
= Using `TargetSource` Implementations
|
||||
|
||||
Spring offers the concept of a `TargetSource`, expressed in the
|
||||
`org.springframework.aop.TargetSource` interface. This interface is responsible for
|
||||
returning the "`target object`" that implements the join point. The `TargetSource`
|
||||
implementation is asked for a target instance each time the AOP proxy handles a method
|
||||
invocation.
|
||||
|
||||
Developers who use Spring AOP do not normally need to work directly with `TargetSource` implementations, but
|
||||
this provides a powerful means of supporting pooling, hot swappable, and other
|
||||
sophisticated targets. For example, a pooling `TargetSource` can return a different target
|
||||
instance for each invocation, by using a pool to manage instances.
|
||||
|
||||
If you do not specify a `TargetSource`, a default implementation is used to wrap a
|
||||
local object. The same target is returned for each invocation (as you would expect).
|
||||
|
||||
The rest of this section describes the standard target sources provided with Spring and how you can use them.
|
||||
|
||||
TIP: When using a custom target source, your target will usually need to be a prototype
|
||||
rather than a singleton bean definition. This allows Spring to create a new target
|
||||
instance when required.
|
||||
|
||||
|
||||
|
||||
[[aop-ts-swap]]
|
||||
== Hot-swappable Target Sources
|
||||
|
||||
The `org.springframework.aop.target.HotSwappableTargetSource` exists to let the target
|
||||
of an AOP proxy be switched while letting callers keep their references to it.
|
||||
|
||||
Changing the target source's target takes effect immediately. The
|
||||
`HotSwappableTargetSource` is thread-safe.
|
||||
|
||||
You can change the target by using the `swap()` method on HotSwappableTargetSource, as the follow example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
HotSwappableTargetSource swapper = (HotSwappableTargetSource) beanFactory.getBean("swapper");
|
||||
Object oldTarget = swapper.swap(newTarget);
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
val swapper = beanFactory.getBean("swapper") as HotSwappableTargetSource
|
||||
val oldTarget = swapper.swap(newTarget)
|
||||
----
|
||||
======
|
||||
|
||||
The following example shows the required XML definitions:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="initialTarget" class="mycompany.OldTarget"/>
|
||||
|
||||
<bean id="swapper" class="org.springframework.aop.target.HotSwappableTargetSource">
|
||||
<constructor-arg ref="initialTarget"/>
|
||||
</bean>
|
||||
|
||||
<bean id="swappable" class="org.springframework.aop.framework.ProxyFactoryBean">
|
||||
<property name="targetSource" ref="swapper"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
The preceding `swap()` call changes the target of the swappable bean. Clients that hold a
|
||||
reference to that bean are unaware of the change but immediately start hitting
|
||||
the new target.
|
||||
|
||||
Although this example does not add any advice (it is not necessary to add advice to
|
||||
use a `TargetSource`), any `TargetSource` can be used in conjunction with
|
||||
arbitrary advice.
|
||||
|
||||
|
||||
|
||||
[[aop-ts-pool]]
|
||||
== Pooling Target Sources
|
||||
|
||||
Using a pooling target source provides a similar programming model to stateless session
|
||||
EJBs, in which a pool of identical instances is maintained, with method invocations
|
||||
going to free objects in the pool.
|
||||
|
||||
A crucial difference between Spring pooling and SLSB pooling is that Spring pooling can
|
||||
be applied to any POJO. As with Spring in general, this service can be applied in a
|
||||
non-invasive way.
|
||||
|
||||
Spring provides support for Commons Pool 2.2, which provides a
|
||||
fairly efficient pooling implementation. You need the `commons-pool` Jar on your
|
||||
application's classpath to use this feature. You can also subclass
|
||||
`org.springframework.aop.target.AbstractPoolingTargetSource` to support any other
|
||||
pooling API.
|
||||
|
||||
NOTE: Commons Pool 1.5+ is also supported but is deprecated as of Spring Framework 4.2.
|
||||
|
||||
The following listing shows an example configuration:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="businessObjectTarget" class="com.mycompany.MyBusinessObject"
|
||||
scope="prototype">
|
||||
... properties omitted
|
||||
</bean>
|
||||
|
||||
<bean id="poolTargetSource" class="org.springframework.aop.target.CommonsPool2TargetSource">
|
||||
<property name="targetBeanName" value="businessObjectTarget"/>
|
||||
<property name="maxSize" value="25"/>
|
||||
</bean>
|
||||
|
||||
<bean id="businessObject" class="org.springframework.aop.framework.ProxyFactoryBean">
|
||||
<property name="targetSource" ref="poolTargetSource"/>
|
||||
<property name="interceptorNames" value="myInterceptor"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
Note that the target object (`businessObjectTarget` in the preceding example) must be a
|
||||
prototype. This lets the `PoolingTargetSource` implementation create new instances
|
||||
of the target to grow the pool as necessary. See the {spring-framework-api}/aop/target/AbstractPoolingTargetSource.html[javadoc of
|
||||
`AbstractPoolingTargetSource`] and the concrete subclass you wish to use for information
|
||||
about its properties. `maxSize` is the most basic and is always guaranteed to be present.
|
||||
|
||||
In this case, `myInterceptor` is the name of an interceptor that would need to be
|
||||
defined in the same IoC context. However, you need not specify interceptors to
|
||||
use pooling. If you want only pooling and no other advice, do not set the
|
||||
`interceptorNames` property at all.
|
||||
|
||||
You can configure Spring to be able to cast any pooled object to the
|
||||
`org.springframework.aop.target.PoolingConfig` interface, which exposes information
|
||||
about the configuration and current size of the pool through an introduction. You
|
||||
need to define an advisor similar to the following:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="poolConfigAdvisor" class="org.springframework.beans.factory.config.MethodInvokingFactoryBean">
|
||||
<property name="targetObject" ref="poolTargetSource"/>
|
||||
<property name="targetMethod" value="getPoolingConfigMixin"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
This advisor is obtained by calling a convenience method on the
|
||||
`AbstractPoolingTargetSource` class, hence the use of `MethodInvokingFactoryBean`. This
|
||||
advisor's name (`poolConfigAdvisor`, here) must be in the list of interceptors names in
|
||||
the `ProxyFactoryBean` that exposes the pooled object.
|
||||
|
||||
The cast is defined as follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
PoolingConfig conf = (PoolingConfig) beanFactory.getBean("businessObject");
|
||||
System.out.println("Max pool size is " + conf.getMaxSize());
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
val conf = beanFactory.getBean("businessObject") as PoolingConfig
|
||||
println("Max pool size is " + conf.maxSize)
|
||||
----
|
||||
======
|
||||
|
||||
NOTE: Pooling stateless service objects is not usually necessary. We do not believe it should
|
||||
be the default choice, as most stateless objects are naturally thread-safe, and instance
|
||||
pooling is problematic if resources are cached.
|
||||
|
||||
Simpler pooling is available by using auto-proxying. You can set the `TargetSource` implementations
|
||||
used by any auto-proxy creator.
|
||||
|
||||
|
||||
|
||||
[[aop-ts-prototype]]
|
||||
== Prototype Target Sources
|
||||
|
||||
Setting up a "`prototype`" target source is similar to setting up a pooling `TargetSource`. In this
|
||||
case, a new instance of the target is created on every method invocation. Although
|
||||
the cost of creating a new object is not high in a modern JVM, the cost of wiring up the
|
||||
new object (satisfying its IoC dependencies) may be more expensive. Thus, you should not
|
||||
use this approach without very good reason.
|
||||
|
||||
To do this, you could modify the `poolTargetSource` definition shown earlier as follows
|
||||
(we also changed the name, for clarity):
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="prototypeTargetSource" class="org.springframework.aop.target.PrototypeTargetSource">
|
||||
<property name="targetBeanName" ref="businessObjectTarget"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
The only property is the name of the target bean. Inheritance is used in the
|
||||
`TargetSource` implementations to ensure consistent naming. As with the pooling target
|
||||
source, the target bean must be a prototype bean definition.
|
||||
|
||||
|
||||
|
||||
[[aop-ts-threadlocal]]
|
||||
== `ThreadLocal` Target Sources
|
||||
|
||||
`ThreadLocal` target sources are useful if you need an object to be created for each
|
||||
incoming request (per thread that is). The concept of a `ThreadLocal` provides a JDK-wide
|
||||
facility to transparently store a resource alongside a thread. Setting up a
|
||||
`ThreadLocalTargetSource` is pretty much the same as was explained for the other types
|
||||
of target source, as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="threadlocalTargetSource" class="org.springframework.aop.target.ThreadLocalTargetSource">
|
||||
<property name="targetBeanName" value="businessObjectTarget"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
NOTE: `ThreadLocal` instances come with serious issues (potentially resulting in memory leaks) when
|
||||
incorrectly using them in multi-threaded and multi-classloader environments. You
|
||||
should always consider wrapping a `ThreadLocal` in some other class and never directly use
|
||||
the `ThreadLocal` itself (except in the wrapper class). Also, you should
|
||||
always remember to correctly set and unset (where the latter simply involves a call to
|
||||
`ThreadLocal.set(null)`) the resource local to the thread. Unsetting should be done in
|
||||
any case, since not unsetting it might result in problematic behavior. Spring's
|
||||
`ThreadLocal` support does this for you and should always be considered in favor of using
|
||||
`ThreadLocal` instances without other proper handling code.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,38 +0,0 @@
|
||||
[[aop]]
|
||||
= Aspect Oriented Programming with Spring
|
||||
|
||||
Aspect-oriented Programming (AOP) complements Object-oriented Programming (OOP) by
|
||||
providing another way of thinking about program structure. The key unit of modularity
|
||||
in OOP is the class, whereas in AOP the unit of modularity is the aspect. Aspects
|
||||
enable the modularization of concerns (such as transaction management) that cut across
|
||||
multiple types and objects. (Such concerns are often termed "crosscutting" concerns
|
||||
in AOP literature.)
|
||||
|
||||
One of the key components of Spring is the AOP framework. While the Spring IoC
|
||||
container does not depend on AOP (meaning you do not need to use AOP if you don't want
|
||||
to), AOP complements Spring IoC to provide a very capable middleware solution.
|
||||
|
||||
.Spring AOP with AspectJ pointcuts
|
||||
****
|
||||
Spring provides simple and powerful ways of writing custom aspects by using either a
|
||||
xref:core/aop/schema.adoc[schema-based approach] or the xref:core/aop/ataspectj.adoc[@AspectJ annotation style].
|
||||
Both of these styles offer fully typed advice and use of the AspectJ pointcut language
|
||||
while still using Spring AOP for weaving.
|
||||
|
||||
This chapter discusses the schema- and @AspectJ-based AOP support.
|
||||
The lower-level AOP support is discussed in xref:core/aop-api.adoc[the following chapter].
|
||||
****
|
||||
|
||||
AOP is used in the Spring Framework to:
|
||||
|
||||
* Provide declarative enterprise services. The most important such service is
|
||||
xref:data-access/transaction/declarative.adoc[declarative transaction management].
|
||||
* Let users implement custom aspects, complementing their use of OOP with AOP.
|
||||
|
||||
NOTE: If you are interested only in generic declarative services or other pre-packaged
|
||||
declarative middleware services such as pooling, you do not need to work directly with
|
||||
Spring AOP, and can skip most of this chapter.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,59 +0,0 @@
|
||||
[[aop-aspectj-programmatic]]
|
||||
= Programmatic Creation of @AspectJ Proxies
|
||||
|
||||
In addition to declaring aspects in your configuration by using either `<aop:config>`
|
||||
or `<aop:aspectj-autoproxy>`, it is also possible to programmatically create proxies
|
||||
that advise target objects. For the full details of Spring's AOP API, see the
|
||||
xref:core/aop-api.adoc[next chapter]. Here, we want to focus on the ability to automatically
|
||||
create proxies by using @AspectJ aspects.
|
||||
|
||||
You can use the `org.springframework.aop.aspectj.annotation.AspectJProxyFactory` class
|
||||
to create a proxy for a target object that is advised by one or more @AspectJ aspects.
|
||||
The basic usage for this class is very simple, as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
// create a factory that can generate a proxy for the given target object
|
||||
AspectJProxyFactory factory = new AspectJProxyFactory(targetObject);
|
||||
|
||||
// add an aspect, the class must be an @AspectJ aspect
|
||||
// you can call this as many times as you need with different aspects
|
||||
factory.addAspect(SecurityManager.class);
|
||||
|
||||
// you can also add existing aspect instances, the type of the object supplied
|
||||
// must be an @AspectJ aspect
|
||||
factory.addAspect(usageTracker);
|
||||
|
||||
// now get the proxy object...
|
||||
MyInterfaceType proxy = factory.getProxy();
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
// create a factory that can generate a proxy for the given target object
|
||||
val factory = AspectJProxyFactory(targetObject)
|
||||
|
||||
// add an aspect, the class must be an @AspectJ aspect
|
||||
// you can call this as many times as you need with different aspects
|
||||
factory.addAspect(SecurityManager::class.java)
|
||||
|
||||
// you can also add existing aspect instances, the type of the object supplied
|
||||
// must be an @AspectJ aspect
|
||||
factory.addAspect(usageTracker)
|
||||
|
||||
// now get the proxy object...
|
||||
val proxy = factory.getProxy<Any>()
|
||||
----
|
||||
======
|
||||
|
||||
See the {spring-framework-api}/aop/aspectj/annotation/AspectJProxyFactory.html[javadoc] for more information.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,16 +0,0 @@
|
||||
[[aop-ataspectj]]
|
||||
= @AspectJ support
|
||||
:page-section-summary-toc: 1
|
||||
|
||||
@AspectJ refers to a style of declaring aspects as regular Java classes annotated with
|
||||
annotations. The @AspectJ style was introduced by the
|
||||
{aspectj-site}[AspectJ project] as part of the AspectJ 5 release. Spring
|
||||
interprets the same annotations as AspectJ 5, using a library supplied by AspectJ
|
||||
for pointcut parsing and matching. The AOP runtime is still pure Spring AOP, though, and
|
||||
there is no dependency on the AspectJ compiler or weaver.
|
||||
|
||||
NOTE: Using the AspectJ compiler and weaver enables use of the full AspectJ language and
|
||||
is discussed in xref:core/aop/using-aspectj.adoc[Using AspectJ with Spring Applications].
|
||||
|
||||
|
||||
|
||||
@@ -1,941 +0,0 @@
|
||||
[[aop-advice]]
|
||||
= Declaring Advice
|
||||
|
||||
Advice is associated with a pointcut expression and runs before, after, or around method
|
||||
executions matched by the pointcut. The pointcut expression may be either an _inline
|
||||
pointcut_ or a reference to a xref:core/aop/ataspectj/pointcuts.adoc#aop-common-pointcuts[_named pointcut_].
|
||||
|
||||
|
||||
[[aop-advice-before]]
|
||||
== Before Advice
|
||||
|
||||
You can declare before advice in an aspect by using the `@Before` annotation.
|
||||
|
||||
The following example uses an inline pointcut expression.
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect;
|
||||
import org.aspectj.lang.annotation.Before;
|
||||
|
||||
@Aspect
|
||||
public class BeforeExample {
|
||||
|
||||
@Before("execution(* com.xyz.dao.*.*(..))")
|
||||
public void doAccessCheck() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect
|
||||
import org.aspectj.lang.annotation.Before
|
||||
|
||||
@Aspect
|
||||
class BeforeExample {
|
||||
|
||||
@Before("execution(* com.xyz.dao.*.*(..))")
|
||||
fun doAccessCheck() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
If we use a xref:core/aop/ataspectj/pointcuts.adoc#aop-common-pointcuts[named pointcut], we can rewrite the preceding example
|
||||
as follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect;
|
||||
import org.aspectj.lang.annotation.Before;
|
||||
|
||||
@Aspect
|
||||
public class BeforeExample {
|
||||
|
||||
@Before("com.xyz.CommonPointcuts.dataAccessOperation()")
|
||||
public void doAccessCheck() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect
|
||||
import org.aspectj.lang.annotation.Before
|
||||
|
||||
@Aspect
|
||||
class BeforeExample {
|
||||
|
||||
@Before("com.xyz.CommonPointcuts.dataAccessOperation()")
|
||||
fun doAccessCheck() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
|
||||
[[aop-advice-after-returning]]
|
||||
== After Returning Advice
|
||||
|
||||
After returning advice runs when a matched method execution returns normally.
|
||||
You can declare it by using the `@AfterReturning` annotation.
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect;
|
||||
import org.aspectj.lang.annotation.AfterReturning;
|
||||
|
||||
@Aspect
|
||||
public class AfterReturningExample {
|
||||
|
||||
@AfterReturning("execution(* com.xyz.dao.*.*(..))")
|
||||
public void doAccessCheck() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect
|
||||
import org.aspectj.lang.annotation.AfterReturning
|
||||
|
||||
@Aspect
|
||||
class AfterReturningExample {
|
||||
|
||||
@AfterReturning("execution(* com.xyz.dao.*.*(..))")
|
||||
fun doAccessCheck() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
NOTE: You can have multiple advice declarations (and other members as well),
|
||||
all inside the same aspect. We show only a single advice declaration in these
|
||||
examples to focus the effect of each one.
|
||||
|
||||
Sometimes, you need access in the advice body to the actual value that was returned.
|
||||
You can use the form of `@AfterReturning` that binds the return value to get that
|
||||
access, as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect;
|
||||
import org.aspectj.lang.annotation.AfterReturning;
|
||||
|
||||
@Aspect
|
||||
public class AfterReturningExample {
|
||||
|
||||
@AfterReturning(
|
||||
pointcut="execution(* com.xyz.dao.*.*(..))",
|
||||
returning="retVal")
|
||||
public void doAccessCheck(Object retVal) {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect
|
||||
import org.aspectj.lang.annotation.AfterReturning
|
||||
|
||||
@Aspect
|
||||
class AfterReturningExample {
|
||||
|
||||
@AfterReturning(
|
||||
pointcut = "execution(* com.xyz.dao.*.*(..))",
|
||||
returning = "retVal")
|
||||
fun doAccessCheck(retVal: Any?) {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
The name used in the `returning` attribute must correspond to the name of a parameter
|
||||
in the advice method. When a method execution returns, the return value is passed to
|
||||
the advice method as the corresponding argument value. A `returning` clause also
|
||||
restricts matching to only those method executions that return a value of the
|
||||
specified type (in this case, `Object`, which matches any return value).
|
||||
|
||||
Please note that it is not possible to return a totally different reference when
|
||||
using after returning advice.
|
||||
|
||||
|
||||
[[aop-advice-after-throwing]]
|
||||
== After Throwing Advice
|
||||
|
||||
After throwing advice runs when a matched method execution exits by throwing an
|
||||
exception. You can declare it by using the `@AfterThrowing` annotation, as the
|
||||
following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect;
|
||||
import org.aspectj.lang.annotation.AfterThrowing;
|
||||
|
||||
@Aspect
|
||||
public class AfterThrowingExample {
|
||||
|
||||
@AfterThrowing("execution(* com.xyz.dao.*.*(..))")
|
||||
public void doRecoveryActions() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect
|
||||
import org.aspectj.lang.annotation.AfterThrowing
|
||||
|
||||
@Aspect
|
||||
class AfterThrowingExample {
|
||||
|
||||
@AfterThrowing("execution(* com.xyz.dao.*.*(..))")
|
||||
fun doRecoveryActions() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
Often, you want the advice to run only when exceptions of a given type are thrown,
|
||||
and you also often need access to the thrown exception in the advice body. You can
|
||||
use the `throwing` attribute to both restrict matching (if desired -- use `Throwable`
|
||||
as the exception type otherwise) and bind the thrown exception to an advice parameter.
|
||||
The following example shows how to do so:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect;
|
||||
import org.aspectj.lang.annotation.AfterThrowing;
|
||||
|
||||
@Aspect
|
||||
public class AfterThrowingExample {
|
||||
|
||||
@AfterThrowing(
|
||||
pointcut="execution(* com.xyz.dao.*.*(..))",
|
||||
throwing="ex")
|
||||
public void doRecoveryActions(DataAccessException ex) {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect
|
||||
import org.aspectj.lang.annotation.AfterThrowing
|
||||
|
||||
@Aspect
|
||||
class AfterThrowingExample {
|
||||
|
||||
@AfterThrowing(
|
||||
pointcut = "execution(* com.xyz.dao.*.*(..))",
|
||||
throwing = "ex")
|
||||
fun doRecoveryActions(ex: DataAccessException) {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
The name used in the `throwing` attribute must correspond to the name of a parameter in
|
||||
the advice method. When a method execution exits by throwing an exception, the exception
|
||||
is passed to the advice method as the corresponding argument value. A `throwing` clause
|
||||
also restricts matching to only those method executions that throw an exception of the
|
||||
specified type (`DataAccessException`, in this case).
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
Note that `@AfterThrowing` does not indicate a general exception handling callback.
|
||||
Specifically, an `@AfterThrowing` advice method is only supposed to receive exceptions
|
||||
from the join point (user-declared target method) itself but not from an accompanying
|
||||
`@After`/`@AfterReturning` method.
|
||||
====
|
||||
|
||||
|
||||
[[aop-advice-after-finally]]
|
||||
== After (Finally) Advice
|
||||
|
||||
After (finally) advice runs when a matched method execution exits. It is declared by
|
||||
using the `@After` annotation. After advice must be prepared to handle both normal and
|
||||
exception return conditions. It is typically used for releasing resources and similar
|
||||
purposes. The following example shows how to use after finally advice:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect;
|
||||
import org.aspectj.lang.annotation.After;
|
||||
|
||||
@Aspect
|
||||
public class AfterFinallyExample {
|
||||
|
||||
@After("execution(* com.xyz.dao.*.*(..))")
|
||||
public void doReleaseLock() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect
|
||||
import org.aspectj.lang.annotation.After
|
||||
|
||||
@Aspect
|
||||
class AfterFinallyExample {
|
||||
|
||||
@After("execution(* com.xyz.dao.*.*(..))")
|
||||
fun doReleaseLock() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
Note that `@After` advice in AspectJ is defined as "after finally advice", analogous
|
||||
to a finally block in a try-catch statement. It will be invoked for any outcome,
|
||||
normal return or exception thrown from the join point (user-declared target method),
|
||||
in contrast to `@AfterReturning` which only applies to successful normal returns.
|
||||
====
|
||||
|
||||
|
||||
[[aop-ataspectj-around-advice]]
|
||||
== Around Advice
|
||||
|
||||
The last kind of advice is _around_ advice. Around advice runs "around" a matched
|
||||
method's execution. It has the opportunity to do work both before and after the method
|
||||
runs and to determine when, how, and even if the method actually gets to run at all.
|
||||
Around advice is often used if you need to share state before and after a method
|
||||
execution in a thread-safe manner – for example, starting and stopping a timer.
|
||||
|
||||
[TIP]
|
||||
====
|
||||
Always use the least powerful form of advice that meets your requirements.
|
||||
|
||||
For example, do not use _around_ advice if _before_ advice is sufficient for your needs.
|
||||
====
|
||||
|
||||
Around advice is declared by annotating a method with the `@Around` annotation. The
|
||||
method should declare `Object` as its return type, and the first parameter of the method
|
||||
must be of type `ProceedingJoinPoint`. Within the body of the advice method, you must
|
||||
invoke `proceed()` on the `ProceedingJoinPoint` in order for the underlying method to
|
||||
run. Invoking `proceed()` without arguments will result in the caller's original
|
||||
arguments being supplied to the underlying method when it is invoked. For advanced use
|
||||
cases, there is an overloaded variant of the `proceed()` method which accepts an array of
|
||||
arguments (`Object[]`). The values in the array will be used as the arguments to the
|
||||
underlying method when it is invoked.
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
The behavior of `proceed` when called with an `Object[]` is a little different than the
|
||||
behavior of `proceed` for around advice compiled by the AspectJ compiler. For around
|
||||
advice written using the traditional AspectJ language, the number of arguments passed to
|
||||
`proceed` must match the number of arguments passed to the around advice (not the number
|
||||
of arguments taken by the underlying join point), and the value passed to proceed in a
|
||||
given argument position supplants the original value at the join point for the entity the
|
||||
value was bound to (do not worry if this does not make sense right now).
|
||||
|
||||
The approach taken by Spring is simpler and a better match to its proxy-based,
|
||||
execution-only semantics. You only need to be aware of this difference if you compile
|
||||
`@AspectJ` aspects written for Spring and use `proceed` with arguments with the AspectJ
|
||||
compiler and weaver. There is a way to write such aspects that is 100% compatible across
|
||||
both Spring AOP and AspectJ, and this is discussed in the
|
||||
xref:core/aop/ataspectj/advice.adoc#aop-ataspectj-advice-proceeding-with-the-call[following section on advice parameters].
|
||||
====
|
||||
|
||||
The value returned by the around advice is the return value seen by the caller of the
|
||||
method. For example, a simple caching aspect could return a value from a cache if it has
|
||||
one or invoke `proceed()` (and return that value) if it does not. Note that `proceed`
|
||||
may be invoked once, many times, or not at all within the body of the around advice. All
|
||||
of these are legal.
|
||||
|
||||
WARNING: If you declare the return type of your around advice method as `void`, `null`
|
||||
will always be returned to the caller, effectively ignoring the result of any invocation
|
||||
of `proceed()`. It is therefore recommended that an around advice method declare a return
|
||||
type of `Object`. The advice method should typically return the value returned from an
|
||||
invocation of `proceed()`, even if the underlying method has a `void` return type.
|
||||
However, the advice may optionally return a cached value, a wrapped value, or some other
|
||||
value depending on the use case.
|
||||
|
||||
The following example shows how to use around advice:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect;
|
||||
import org.aspectj.lang.annotation.Around;
|
||||
import org.aspectj.lang.ProceedingJoinPoint;
|
||||
|
||||
@Aspect
|
||||
public class AroundExample {
|
||||
|
||||
@Around("execution(* com.xyz..service.*.*(..))")
|
||||
public Object doBasicProfiling(ProceedingJoinPoint pjp) throws Throwable {
|
||||
// start stopwatch
|
||||
Object retVal = pjp.proceed();
|
||||
// stop stopwatch
|
||||
return retVal;
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
import org.aspectj.lang.annotation.Aspect
|
||||
import org.aspectj.lang.annotation.Around
|
||||
import org.aspectj.lang.ProceedingJoinPoint
|
||||
|
||||
@Aspect
|
||||
class AroundExample {
|
||||
|
||||
@Around("execution(* com.xyz..service.*.*(..))")
|
||||
fun doBasicProfiling(pjp: ProceedingJoinPoint): Any? {
|
||||
// start stopwatch
|
||||
val retVal = pjp.proceed()
|
||||
// stop stopwatch
|
||||
return retVal
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
[[aop-ataspectj-advice-params]]
|
||||
== Advice Parameters
|
||||
|
||||
Spring offers fully typed advice, meaning that you declare the parameters you need in the
|
||||
advice signature (as we saw earlier for the returning and throwing examples) rather than
|
||||
work with `Object[]` arrays all the time. We see how to make argument and other contextual
|
||||
values available to the advice body later in this section. First, we take a look at how to
|
||||
write generic advice that can find out about the method the advice is currently advising.
|
||||
|
||||
[[aop-ataspectj-advice-params-the-joinpoint]]
|
||||
=== Access to the Current `JoinPoint`
|
||||
|
||||
Any advice method may declare, as its first parameter, a parameter of type
|
||||
`org.aspectj.lang.JoinPoint`. Note that around advice is required to declare a first
|
||||
parameter of type `ProceedingJoinPoint`, which is a subclass of `JoinPoint`.
|
||||
|
||||
The `JoinPoint` interface provides a number of useful methods:
|
||||
|
||||
* `getArgs()`: Returns the method arguments.
|
||||
* `getThis()`: Returns the proxy object.
|
||||
* `getTarget()`: Returns the target object.
|
||||
* `getSignature()`: Returns a description of the method that is being advised.
|
||||
* `toString()`: Prints a useful description of the method being advised.
|
||||
|
||||
See the {aspectj-api}/org/aspectj/lang/JoinPoint.html[javadoc] for more detail.
|
||||
|
||||
[[aop-ataspectj-advice-params-passing]]
|
||||
=== Passing Parameters to Advice
|
||||
|
||||
We have already seen how to bind the returned value or exception value (using after
|
||||
returning and after throwing advice). To make argument values available to the advice
|
||||
body, you can use the binding form of `args`. If you use a parameter name in place of a
|
||||
type name in an `args` expression, the value of the corresponding argument is passed as
|
||||
the parameter value when the advice is invoked. An example should make this clearer.
|
||||
Suppose you want to advise the execution of DAO operations that take an `Account`
|
||||
object as the first parameter, and you need access to the account in the advice body.
|
||||
You could write the following:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Before("execution(* com.xyz.dao.*.*(..)) && args(account,..)")
|
||||
public void validateAccount(Account account) {
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Before("execution(* com.xyz.dao.*.*(..)) && args(account,..)")
|
||||
fun validateAccount(account: Account) {
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
The `args(account,..)` part of the pointcut expression serves two purposes. First, it
|
||||
restricts matching to only those method executions where the method takes at least one
|
||||
parameter, and the argument passed to that parameter is an instance of `Account`.
|
||||
Second, it makes the actual `Account` object available to the advice through the `account`
|
||||
parameter.
|
||||
|
||||
Another way of writing this is to declare a pointcut that "provides" the `Account`
|
||||
object value when it matches a join point, and then refer to the named pointcut
|
||||
from the advice. This would look as follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Pointcut("execution(* com.xyz.dao.*.*(..)) && args(account,..)")
|
||||
private void accountDataAccessOperation(Account account) {}
|
||||
|
||||
@Before("accountDataAccessOperation(account)")
|
||||
public void validateAccount(Account account) {
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Pointcut("execution(* com.xyz.dao.*.*(..)) && args(account,..)")
|
||||
private fun accountDataAccessOperation(account: Account) {
|
||||
}
|
||||
|
||||
@Before("accountDataAccessOperation(account)")
|
||||
fun validateAccount(account: Account) {
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
See the AspectJ programming guide for more details.
|
||||
|
||||
The proxy object (`this`), target object (`target`), and annotations (`@within`,
|
||||
`@target`, `@annotation`, and `@args`) can all be bound in a similar fashion. The next
|
||||
set of examples shows how to match the execution of methods annotated with an
|
||||
`@Auditable` annotation and extract the audit code:
|
||||
|
||||
The following shows the definition of the `@Auditable` annotation:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Retention(RetentionPolicy.RUNTIME)
|
||||
@Target(ElementType.METHOD)
|
||||
public @interface Auditable {
|
||||
AuditCode value();
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Retention(AnnotationRetention.RUNTIME)
|
||||
@Target(AnnotationTarget.FUNCTION)
|
||||
annotation class Auditable(val value: AuditCode)
|
||||
----
|
||||
======
|
||||
|
||||
The following shows the advice that matches the execution of `@Auditable` methods:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Before("com.xyz.Pointcuts.publicMethod() && @annotation(auditable)") // <1>
|
||||
public void audit(Auditable auditable) {
|
||||
AuditCode code = auditable.value();
|
||||
// ...
|
||||
}
|
||||
----
|
||||
<1> References the `publicMethod` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-pointcuts-combining[Combining Pointcut Expressions].
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Before("com.xyz.Pointcuts.publicMethod() && @annotation(auditable)") // <1>
|
||||
fun audit(auditable: Auditable) {
|
||||
val code = auditable.value()
|
||||
// ...
|
||||
}
|
||||
----
|
||||
<1> References the `publicMethod` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-pointcuts-combining[Combining Pointcut Expressions].
|
||||
======
|
||||
|
||||
[[aop-ataspectj-advice-params-generics]]
|
||||
=== Advice Parameters and Generics
|
||||
|
||||
Spring AOP can handle generics used in class declarations and method parameters. Suppose
|
||||
you have a generic type like the following:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public interface Sample<T> {
|
||||
void sampleGenericMethod(T param);
|
||||
void sampleGenericCollectionMethod(Collection<T> param);
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
interface Sample<T> {
|
||||
fun sampleGenericMethod(param: T)
|
||||
fun sampleGenericCollectionMethod(param: Collection<T>)
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
You can restrict interception of method types to certain parameter types by
|
||||
tying the advice parameter to the parameter type for which you want to intercept the method:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Before("execution(* ..Sample+.sampleGenericMethod(*)) && args(param)")
|
||||
public void beforeSampleMethod(MyType param) {
|
||||
// Advice implementation
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Before("execution(* ..Sample+.sampleGenericMethod(*)) && args(param)")
|
||||
fun beforeSampleMethod(param: MyType) {
|
||||
// Advice implementation
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
This approach does not work for generic collections. So you cannot define a
|
||||
pointcut as follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Before("execution(* ..Sample+.sampleGenericCollectionMethod(*)) && args(param)")
|
||||
public void beforeSampleMethod(Collection<MyType> param) {
|
||||
// Advice implementation
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Before("execution(* ..Sample+.sampleGenericCollectionMethod(*)) && args(param)")
|
||||
fun beforeSampleMethod(param: Collection<MyType>) {
|
||||
// Advice implementation
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
To make this work, we would have to inspect every element of the collection, which is not
|
||||
reasonable, as we also cannot decide how to treat `null` values in general. To achieve
|
||||
something similar to this, you have to type the parameter to `Collection<?>` and manually
|
||||
check the type of the elements.
|
||||
|
||||
[[aop-ataspectj-advice-params-names]]
|
||||
=== Determining Argument Names
|
||||
|
||||
Parameter binding in advice invocations relies on matching the names used in pointcut
|
||||
expressions to the parameter names declared in advice and pointcut method signatures.
|
||||
|
||||
NOTE: This section uses the terms _argument_ and _parameter_ interchangeably, since
|
||||
AspectJ APIs refer to parameter names as argument names.
|
||||
|
||||
Spring AOP uses the following `ParameterNameDiscoverer` implementations to determine
|
||||
parameter names. Each discoverer will be given a chance to discover parameter names, and
|
||||
the first successful discoverer wins. If none of the registered discoverers is capable
|
||||
of determining parameter names, an exception will be thrown.
|
||||
|
||||
`AspectJAnnotationParameterNameDiscoverer` :: Uses parameter names that have been explicitly
|
||||
specified by the user via the `argNames` attribute in the corresponding advice or
|
||||
pointcut annotation. See xref:core/aop/ataspectj/advice.adoc#aop-ataspectj-advice-params-names-explicit[Explicit Argument Names] for details.
|
||||
`KotlinReflectionParameterNameDiscoverer` :: Uses Kotlin reflection APIs to determine
|
||||
parameter names. This discoverer is only used if such APIs are present on the classpath.
|
||||
`StandardReflectionParameterNameDiscoverer` :: Uses the standard `java.lang.reflect.Parameter`
|
||||
API to determine parameter names. Requires that code be compiled with the `-parameters`
|
||||
flag for `javac`. Recommended approach on Java 8+.
|
||||
`AspectJAdviceParameterNameDiscoverer` :: Deduces parameter names from the pointcut
|
||||
expression, `returning`, and `throwing` clauses. See the
|
||||
{spring-framework-api}/aop/aspectj/AspectJAdviceParameterNameDiscoverer.html[javadoc]
|
||||
for details on the algorithm used.
|
||||
|
||||
[[aop-ataspectj-advice-params-names-explicit]]
|
||||
=== Explicit Argument Names
|
||||
|
||||
@AspectJ advice and pointcut annotations have an optional `argNames` attribute that you
|
||||
can use to specify the argument names of the annotated method.
|
||||
|
||||
[TIP]
|
||||
====
|
||||
If an @AspectJ aspect has been compiled by the AspectJ compiler (`ajc`) even without
|
||||
debug information, you do not need to add the `argNames` attribute, since the compiler
|
||||
retains the needed information.
|
||||
|
||||
Similarly, if an @AspectJ aspect has been compiled with `javac` using the `-parameters`
|
||||
flag, you do not need to add the `argNames` attribute, since the compiler retains the
|
||||
needed information.
|
||||
====
|
||||
|
||||
The following example shows how to use the `argNames` attribute:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Before(
|
||||
value = "com.xyz.Pointcuts.publicMethod() && target(bean) && @annotation(auditable)", // <1>
|
||||
argNames = "bean,auditable") // <2>
|
||||
public void audit(Object bean, Auditable auditable) {
|
||||
AuditCode code = auditable.value();
|
||||
// ... use code and bean
|
||||
}
|
||||
----
|
||||
<1> References the `publicMethod` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-pointcuts-combining[Combining Pointcut Expressions].
|
||||
<2> Declares `bean` and `auditable` as the argument names.
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Before(
|
||||
value = "com.xyz.Pointcuts.publicMethod() && target(bean) && @annotation(auditable)", // <1>
|
||||
argNames = "bean,auditable") // <2>
|
||||
fun audit(bean: Any, auditable: Auditable) {
|
||||
val code = auditable.value()
|
||||
// ... use code and bean
|
||||
}
|
||||
----
|
||||
<1> References the `publicMethod` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-pointcuts-combining[Combining Pointcut Expressions].
|
||||
<2> Declares `bean` and `auditable` as the argument names.
|
||||
======
|
||||
|
||||
If the first parameter is of type `JoinPoint`, `ProceedingJoinPoint`, or
|
||||
`JoinPoint.StaticPart`, you can omit the name of the parameter from the value of the
|
||||
`argNames` attribute. For example, if you modify the preceding advice to receive the join
|
||||
point object, the `argNames` attribute does not need to include it:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Before(
|
||||
value = "com.xyz.Pointcuts.publicMethod() && target(bean) && @annotation(auditable)", // <1>
|
||||
argNames = "bean,auditable") // <2>
|
||||
public void audit(JoinPoint jp, Object bean, Auditable auditable) {
|
||||
AuditCode code = auditable.value();
|
||||
// ... use code, bean, and jp
|
||||
}
|
||||
----
|
||||
<1> References the `publicMethod` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-pointcuts-combining[Combining Pointcut Expressions].
|
||||
<2> Declares `bean` and `auditable` as the argument names.
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Before(
|
||||
value = "com.xyz.Pointcuts.publicMethod() && target(bean) && @annotation(auditable)", // <1>
|
||||
argNames = "bean,auditable") // <2>
|
||||
fun audit(jp: JoinPoint, bean: Any, auditable: Auditable) {
|
||||
val code = auditable.value()
|
||||
// ... use code, bean, and jp
|
||||
}
|
||||
----
|
||||
<1> References the `publicMethod` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-pointcuts-combining[Combining Pointcut Expressions].
|
||||
<2> Declares `bean` and `auditable` as the argument names.
|
||||
======
|
||||
|
||||
The special treatment given to the first parameter of type `JoinPoint`,
|
||||
`ProceedingJoinPoint`, or `JoinPoint.StaticPart` is particularly convenient for advice
|
||||
methods that do not collect any other join point context. In such situations, you may
|
||||
omit the `argNames` attribute. For example, the following advice does not need to declare
|
||||
the `argNames` attribute:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Before("com.xyz.Pointcuts.publicMethod()") // <1>
|
||||
public void audit(JoinPoint jp) {
|
||||
// ... use jp
|
||||
}
|
||||
----
|
||||
<1> References the `publicMethod` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-pointcuts-combining[Combining Pointcut Expressions].
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Before("com.xyz.Pointcuts.publicMethod()") // <1>
|
||||
fun audit(jp: JoinPoint) {
|
||||
// ... use jp
|
||||
}
|
||||
----
|
||||
<1> References the `publicMethod` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-pointcuts-combining[Combining Pointcut Expressions].
|
||||
======
|
||||
|
||||
|
||||
[[aop-ataspectj-advice-proceeding-with-the-call]]
|
||||
=== Proceeding with Arguments
|
||||
|
||||
We remarked earlier that we would describe how to write a `proceed` call with
|
||||
arguments that works consistently across Spring AOP and AspectJ. The solution is
|
||||
to ensure that the advice signature binds each of the method parameters in order.
|
||||
The following example shows how to do so:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Around("execution(List<Account> find*(..)) && " +
|
||||
"com.xyz.CommonPointcuts.inDataAccessLayer() && " +
|
||||
"args(accountHolderNamePattern)") // <1>
|
||||
public Object preProcessQueryPattern(ProceedingJoinPoint pjp,
|
||||
String accountHolderNamePattern) throws Throwable {
|
||||
String newPattern = preProcess(accountHolderNamePattern);
|
||||
return pjp.proceed(new Object[] {newPattern});
|
||||
}
|
||||
----
|
||||
<1> References the `inDataAccessLayer` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-common-pointcuts[Sharing Named Pointcut Definitions].
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Around("execution(List<Account> find*(..)) && " +
|
||||
"com.xyz.CommonPointcuts.inDataAccessLayer() && " +
|
||||
"args(accountHolderNamePattern)") // <1>
|
||||
fun preProcessQueryPattern(pjp: ProceedingJoinPoint,
|
||||
accountHolderNamePattern: String): Any? {
|
||||
val newPattern = preProcess(accountHolderNamePattern)
|
||||
return pjp.proceed(arrayOf<Any>(newPattern))
|
||||
}
|
||||
----
|
||||
<1> References the `inDataAccessLayer` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-common-pointcuts[Sharing Named Pointcut Definitions].
|
||||
======
|
||||
|
||||
In many cases, you do this binding anyway (as in the preceding example).
|
||||
|
||||
|
||||
[[aop-ataspectj-advice-ordering]]
|
||||
== Advice Ordering
|
||||
|
||||
What happens when multiple pieces of advice all want to run at the same join point?
|
||||
Spring AOP follows the same precedence rules as AspectJ to determine the order of advice
|
||||
execution. The highest precedence advice runs first "on the way in" (so, given two pieces
|
||||
of before advice, the one with highest precedence runs first). "On the way out" from a
|
||||
join point, the highest precedence advice runs last (so, given two pieces of after
|
||||
advice, the one with the highest precedence will run second).
|
||||
|
||||
When two pieces of advice defined in different aspects both need to run at the same
|
||||
join point, unless you specify otherwise, the order of execution is undefined. You can
|
||||
control the order of execution by specifying precedence. This is done in the normal
|
||||
Spring way by either implementing the `org.springframework.core.Ordered` interface in
|
||||
the aspect class or annotating it with the `@Order` annotation. Given two aspects, the
|
||||
aspect returning the lower value from `Ordered.getOrder()` (or the annotation value) has
|
||||
the higher precedence.
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
Each of the distinct advice types of a particular aspect is conceptually meant to apply
|
||||
to the join point directly. As a consequence, an `@AfterThrowing` advice method is not
|
||||
supposed to receive an exception from an accompanying `@After`/`@AfterReturning` method.
|
||||
|
||||
As of Spring Framework 5.2.7, advice methods defined in the same `@Aspect` class that
|
||||
need to run at the same join point are assigned precedence based on their advice type in
|
||||
the following order, from highest to lowest precedence: `@Around`, `@Before`, `@After`,
|
||||
`@AfterReturning`, `@AfterThrowing`. Note, however, that an `@After` advice method will
|
||||
effectively be invoked after any `@AfterReturning` or `@AfterThrowing` advice methods
|
||||
in the same aspect, following AspectJ's "after finally advice" semantics for `@After`.
|
||||
|
||||
When two pieces of the same type of advice (for example, two `@After` advice methods)
|
||||
defined in the same `@Aspect` class both need to run at the same join point, the ordering
|
||||
is undefined (since there is no way to retrieve the source code declaration order through
|
||||
reflection for javac-compiled classes). Consider collapsing such advice methods into one
|
||||
advice method per join point in each `@Aspect` class or refactor the pieces of advice into
|
||||
separate `@Aspect` classes that you can order at the aspect level via `Ordered` or `@Order`.
|
||||
====
|
||||
|
||||
|
||||
@@ -1,61 +0,0 @@
|
||||
[[aop-aspectj-support]]
|
||||
= Enabling @AspectJ Support
|
||||
|
||||
To use @AspectJ aspects in a Spring configuration, you need to enable Spring support for
|
||||
configuring Spring AOP based on @AspectJ aspects and auto-proxying beans based on
|
||||
whether or not they are advised by those aspects. By auto-proxying, we mean that, if Spring
|
||||
determines that a bean is advised by one or more aspects, it automatically generates
|
||||
a proxy for that bean to intercept method invocations and ensures that advice is run
|
||||
as needed.
|
||||
|
||||
The @AspectJ support can be enabled with XML- or Java-style configuration. In either
|
||||
case, you also need to ensure that AspectJ's `aspectjweaver.jar` library is on the
|
||||
classpath of your application (version 1.9 or later). This library is available in the
|
||||
`lib` directory of an AspectJ distribution or from the Maven Central repository.
|
||||
|
||||
|
||||
[[aop-enable-aspectj-java]]
|
||||
== Enabling @AspectJ Support with Java Configuration
|
||||
|
||||
To enable @AspectJ support with Java `@Configuration`, add the `@EnableAspectJAutoProxy`
|
||||
annotation, as the following example shows:
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Configuration
|
||||
@EnableAspectJAutoProxy
|
||||
public class AppConfig {
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Configuration
|
||||
@EnableAspectJAutoProxy
|
||||
class AppConfig
|
||||
----
|
||||
======
|
||||
|
||||
[[aop-enable-aspectj-xml]]
|
||||
== Enabling @AspectJ Support with XML Configuration
|
||||
|
||||
To enable @AspectJ support with XML-based configuration, use the `aop:aspectj-autoproxy`
|
||||
element, as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspectj-autoproxy/>
|
||||
----
|
||||
|
||||
This assumes that you use schema support as described in
|
||||
xref:core/appendix/xsd-schemas.adoc[XML Schema-based configuration].
|
||||
See xref:core/appendix/xsd-schemas.adoc#aop[the AOP schema] for how to
|
||||
import the tags in the `aop` namespace.
|
||||
|
||||
|
||||
|
||||
@@ -1,68 +0,0 @@
|
||||
[[aop-at-aspectj]]
|
||||
= Declaring an Aspect
|
||||
|
||||
With @AspectJ support enabled, any bean defined in your application context with a
|
||||
class that is an @AspectJ aspect (has the `@Aspect` annotation) is automatically
|
||||
detected by Spring and used to configure Spring AOP. The next two examples show the
|
||||
minimal steps required for a not-very-useful aspect.
|
||||
|
||||
The first of the two examples shows a regular bean definition in the application context
|
||||
that points to a bean class that is annotated with `@Aspect`:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<bean id="myAspect" class="com.xyz.NotVeryUsefulAspect">
|
||||
<!-- configure properties of the aspect here -->
|
||||
</bean>
|
||||
----
|
||||
|
||||
The second of the two examples shows the `NotVeryUsefulAspect` class definition, which is
|
||||
annotated with `@Aspect`:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary",chomp="-packages",fold="none"]
|
||||
----
|
||||
package com.xyz;
|
||||
|
||||
import org.aspectj.lang.annotation.Aspect;
|
||||
|
||||
@Aspect
|
||||
public class NotVeryUsefulAspect {
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary",chomp="-packages",fold="none"]
|
||||
----
|
||||
package com.xyz
|
||||
|
||||
import org.aspectj.lang.annotation.Aspect
|
||||
|
||||
@Aspect
|
||||
class NotVeryUsefulAspect
|
||||
----
|
||||
======
|
||||
|
||||
Aspects (classes annotated with `@Aspect`) can have methods and fields, the same as any
|
||||
other class. They can also contain pointcut, advice, and introduction (inter-type)
|
||||
declarations.
|
||||
|
||||
.Autodetecting aspects through component scanning
|
||||
NOTE: You can register aspect classes as regular beans in your Spring XML configuration,
|
||||
via `@Bean` methods in `@Configuration` classes, or have Spring autodetect them through
|
||||
classpath scanning -- the same as any other Spring-managed bean. However, note that the
|
||||
`@Aspect` annotation is not sufficient for autodetection in the classpath. For that
|
||||
purpose, you need to add a separate `@Component` annotation (or, alternatively, a custom
|
||||
stereotype annotation that qualifies, as per the rules of Spring's component scanner).
|
||||
|
||||
.Advising aspects with other aspects?
|
||||
NOTE: In Spring AOP, aspects themselves cannot be the targets of advice from other
|
||||
aspects. The `@Aspect` annotation on a class marks it as an aspect and, hence, excludes
|
||||
it from auto-proxying.
|
||||
|
||||
|
||||
|
||||
@@ -1,183 +0,0 @@
|
||||
[[aop-ataspectj-example]]
|
||||
= An AOP Example
|
||||
|
||||
Now that you have seen how all the constituent parts work, we can put them together to do
|
||||
something useful.
|
||||
|
||||
The execution of business services can sometimes fail due to concurrency issues (for
|
||||
example, a deadlock loser). If the operation is retried, it is likely to succeed
|
||||
on the next try. For business services where it is appropriate to retry in such
|
||||
conditions (idempotent operations that do not need to go back to the user for conflict
|
||||
resolution), we want to transparently retry the operation to avoid the client seeing a
|
||||
`PessimisticLockingFailureException`. This is a requirement that clearly cuts across
|
||||
multiple services in the service layer and, hence, is ideal for implementing through an
|
||||
aspect.
|
||||
|
||||
Because we want to retry the operation, we need to use around advice so that we can
|
||||
call `proceed` multiple times. The following listing shows the basic aspect implementation:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Aspect
|
||||
public class ConcurrentOperationExecutor implements Ordered {
|
||||
|
||||
private static final int DEFAULT_MAX_RETRIES = 2;
|
||||
|
||||
private int maxRetries = DEFAULT_MAX_RETRIES;
|
||||
private int order = 1;
|
||||
|
||||
public void setMaxRetries(int maxRetries) {
|
||||
this.maxRetries = maxRetries;
|
||||
}
|
||||
|
||||
public int getOrder() {
|
||||
return this.order;
|
||||
}
|
||||
|
||||
public void setOrder(int order) {
|
||||
this.order = order;
|
||||
}
|
||||
|
||||
@Around("com.xyz.CommonPointcuts.businessService()") // <1>
|
||||
public Object doConcurrentOperation(ProceedingJoinPoint pjp) throws Throwable {
|
||||
int numAttempts = 0;
|
||||
PessimisticLockingFailureException lockFailureException;
|
||||
do {
|
||||
numAttempts++;
|
||||
try {
|
||||
return pjp.proceed();
|
||||
}
|
||||
catch(PessimisticLockingFailureException ex) {
|
||||
lockFailureException = ex;
|
||||
}
|
||||
} while(numAttempts <= this.maxRetries);
|
||||
throw lockFailureException;
|
||||
}
|
||||
}
|
||||
----
|
||||
<1> References the `businessService` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-common-pointcuts[Sharing Named Pointcut Definitions].
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Aspect
|
||||
class ConcurrentOperationExecutor : Ordered {
|
||||
|
||||
private val DEFAULT_MAX_RETRIES = 2
|
||||
private var maxRetries = DEFAULT_MAX_RETRIES
|
||||
private var order = 1
|
||||
|
||||
fun setMaxRetries(maxRetries: Int) {
|
||||
this.maxRetries = maxRetries
|
||||
}
|
||||
|
||||
override fun getOrder(): Int {
|
||||
return this.order
|
||||
}
|
||||
|
||||
fun setOrder(order: Int) {
|
||||
this.order = order
|
||||
}
|
||||
|
||||
@Around("com.xyz.CommonPointcuts.businessService()") // <1>
|
||||
fun doConcurrentOperation(pjp: ProceedingJoinPoint): Any? {
|
||||
var numAttempts = 0
|
||||
var lockFailureException: PessimisticLockingFailureException
|
||||
do {
|
||||
numAttempts++
|
||||
try {
|
||||
return pjp.proceed()
|
||||
} catch (ex: PessimisticLockingFailureException) {
|
||||
lockFailureException = ex
|
||||
}
|
||||
|
||||
} while (numAttempts <= this.maxRetries)
|
||||
throw lockFailureException
|
||||
}
|
||||
}
|
||||
----
|
||||
<1> References the `businessService` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-common-pointcuts[Sharing Named Pointcut Definitions].
|
||||
======
|
||||
|
||||
Note that the aspect implements the `Ordered` interface so that we can set the precedence of
|
||||
the aspect higher than the transaction advice (we want a fresh transaction each time we
|
||||
retry). The `maxRetries` and `order` properties are both configured by Spring. The
|
||||
main action happens in the `doConcurrentOperation` around advice. Notice that, for the
|
||||
moment, we apply the retry logic to each `businessService`. We try to proceed,
|
||||
and if we fail with a `PessimisticLockingFailureException`, we try again, unless
|
||||
we have exhausted all of our retry attempts.
|
||||
|
||||
The corresponding Spring configuration follows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspectj-autoproxy/>
|
||||
|
||||
<bean id="concurrentOperationExecutor"
|
||||
class="com.xyz.service.impl.ConcurrentOperationExecutor">
|
||||
<property name="maxRetries" value="3"/>
|
||||
<property name="order" value="100"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
To refine the aspect so that it retries only idempotent operations, we might define the following
|
||||
`Idempotent` annotation:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Retention(RetentionPolicy.RUNTIME)
|
||||
// marker annotation
|
||||
public @interface Idempotent {
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Retention(AnnotationRetention.RUNTIME)
|
||||
// marker annotation
|
||||
annotation class Idempotent
|
||||
----
|
||||
======
|
||||
|
||||
We can then use the annotation to annotate the implementation of service operations. The change
|
||||
to the aspect to retry only idempotent operations involves refining the pointcut
|
||||
expression so that only `@Idempotent` operations match, as follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Around("execution(* com.xyz..service.*.*(..)) && " +
|
||||
"@annotation(com.xyz.service.Idempotent)")
|
||||
public Object doConcurrentOperation(ProceedingJoinPoint pjp) throws Throwable {
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Around("execution(* com.xyz..service.*.*(..)) && " +
|
||||
"@annotation(com.xyz.service.Idempotent)")
|
||||
fun doConcurrentOperation(pjp: ProceedingJoinPoint): Any? {
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
|
||||
|
||||
@@ -1,65 +0,0 @@
|
||||
[[aop-instantiation-models]]
|
||||
= Aspect Instantiation Models
|
||||
|
||||
NOTE: This is an advanced topic. If you are just starting out with AOP, you can safely skip
|
||||
it until later.
|
||||
|
||||
By default, there is a single instance of each aspect within the application
|
||||
context. AspectJ calls this the singleton instantiation model. It is possible to define
|
||||
aspects with alternate lifecycles. Spring supports AspectJ's `perthis`, `pertarget`, and
|
||||
`pertypewithin` instantiation models; `percflow` and `percflowbelow` are not currently
|
||||
supported.
|
||||
|
||||
You can declare a `perthis` aspect by specifying a `perthis` clause in the `@Aspect`
|
||||
annotation. Consider the following example:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Aspect("perthis(execution(* com.xyz..service.*.*(..)))")
|
||||
public class MyAspect {
|
||||
|
||||
private int someState;
|
||||
|
||||
@Before("execution(* com.xyz..service.*.*(..))")
|
||||
public void recordServiceUsage() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Aspect("perthis(execution(* com.xyz..service.*.*(..)))")
|
||||
class MyAspect {
|
||||
|
||||
private val someState: Int = 0
|
||||
|
||||
@Before("execution(* com.xyz..service.*.*(..))")
|
||||
fun recordServiceUsage() {
|
||||
// ...
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
In the preceding example, the effect of the `perthis` clause is that one aspect instance
|
||||
is created for each unique service object that performs a business service (each unique
|
||||
object bound to `this` at join points matched by the pointcut expression). The aspect
|
||||
instance is created the first time that a method is invoked on the service object. The
|
||||
aspect goes out of scope when the service object goes out of scope. Before the aspect
|
||||
instance is created, none of the advice within it runs. As soon as the aspect instance
|
||||
has been created, the advice declared within it runs at matched join points, but only
|
||||
when the service object is the one with which this aspect is associated. See the AspectJ
|
||||
Programming Guide for more information on `per` clauses.
|
||||
|
||||
The `pertarget` instantiation model works in exactly the same way as `perthis`, but it
|
||||
creates one aspect instance for each unique target object at matched join points.
|
||||
|
||||
|
||||
|
||||
@@ -1,79 +0,0 @@
|
||||
[[aop-introductions]]
|
||||
= Introductions
|
||||
|
||||
Introductions (known as inter-type declarations in AspectJ) enable an aspect to declare
|
||||
that advised objects implement a given interface, and to provide an implementation of
|
||||
that interface on behalf of those objects.
|
||||
|
||||
You can make an introduction by using the `@DeclareParents` annotation. This annotation
|
||||
is used to declare that matching types have a new parent (hence the name). For example,
|
||||
given an interface named `UsageTracked` and an implementation of that interface named
|
||||
`DefaultUsageTracked`, the following aspect declares that all implementors of service
|
||||
interfaces also implement the `UsageTracked` interface (e.g. for statistics via JMX):
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Aspect
|
||||
public class UsageTracking {
|
||||
|
||||
@DeclareParents(value="com.xyz.service.*+", defaultImpl=DefaultUsageTracked.class)
|
||||
public static UsageTracked mixin;
|
||||
|
||||
@Before("execution(* com.xyz..service.*.*(..)) && this(usageTracked)")
|
||||
public void recordUsage(UsageTracked usageTracked) {
|
||||
usageTracked.incrementUseCount();
|
||||
}
|
||||
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Aspect
|
||||
class UsageTracking {
|
||||
|
||||
companion object {
|
||||
@DeclareParents(value = "com.xyz.service.*+",
|
||||
defaultImpl = DefaultUsageTracked::class)
|
||||
lateinit var mixin: UsageTracked
|
||||
}
|
||||
|
||||
@Before("execution(* com.xyz..service.*.*(..)) && this(usageTracked)")
|
||||
fun recordUsage(usageTracked: UsageTracked) {
|
||||
usageTracked.incrementUseCount()
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
The interface to be implemented is determined by the type of the annotated field. The
|
||||
`value` attribute of the `@DeclareParents` annotation is an AspectJ type pattern. Any
|
||||
bean of a matching type implements the `UsageTracked` interface. Note that, in the
|
||||
before advice of the preceding example, service beans can be directly used as
|
||||
implementations of the `UsageTracked` interface. If accessing a bean programmatically,
|
||||
you would write the following:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
UsageTracked usageTracked = context.getBean("myService", UsageTracked.class);
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
val usageTracked = context.getBean("myService", UsageTracked.class)
|
||||
----
|
||||
======
|
||||
|
||||
|
||||
@@ -1,586 +0,0 @@
|
||||
[[aop-pointcuts]]
|
||||
= Declaring a Pointcut
|
||||
|
||||
Pointcuts determine join points of interest and thus enable us to control
|
||||
when advice runs. Spring AOP only supports method execution join points for Spring
|
||||
beans, so you can think of a pointcut as matching the execution of methods on Spring
|
||||
beans. A pointcut declaration has two parts: a signature comprising a name and any
|
||||
parameters and a pointcut expression that determines exactly which method
|
||||
executions we are interested in. In the @AspectJ annotation-style of AOP, a pointcut
|
||||
signature is provided by a regular method definition, and the pointcut expression is
|
||||
indicated by using the `@Pointcut` annotation (the method serving as the pointcut signature
|
||||
must have a `void` return type).
|
||||
|
||||
An example may help make this distinction between a pointcut signature and a pointcut
|
||||
expression clear. The following example defines a pointcut named `anyOldTransfer` that
|
||||
matches the execution of any method named `transfer`:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Pointcut("execution(* transfer(..))") // the pointcut expression
|
||||
private void anyOldTransfer() {} // the pointcut signature
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Pointcut("execution(* transfer(..))") // the pointcut expression
|
||||
private fun anyOldTransfer() {} // the pointcut signature
|
||||
----
|
||||
======
|
||||
|
||||
The pointcut expression that forms the value of the `@Pointcut` annotation is a regular
|
||||
AspectJ pointcut expression. For a full discussion of AspectJ's pointcut language, see
|
||||
the {aspectj-docs-progguide}/index.html[AspectJ
|
||||
Programming Guide] (and, for extensions, the
|
||||
{aspectj-docs}/adk15notebook/index.html[AspectJ 5
|
||||
Developer's Notebook]) or one of the books on AspectJ (such as _Eclipse AspectJ_, by Colyer
|
||||
et al., or _AspectJ in Action_, by Ramnivas Laddad).
|
||||
|
||||
|
||||
[[aop-pointcuts-designators]]
|
||||
== Supported Pointcut Designators
|
||||
|
||||
Spring AOP supports the following AspectJ pointcut designators (PCD) for use in pointcut
|
||||
expressions:
|
||||
|
||||
* `execution`: For matching method execution join points. This is the primary
|
||||
pointcut designator to use when working with Spring AOP.
|
||||
* `within`: Limits matching to join points within certain types (the execution
|
||||
of a method declared within a matching type when using Spring AOP).
|
||||
* `this`: Limits matching to join points (the execution of methods when using Spring
|
||||
AOP) where the bean reference (Spring AOP proxy) is an instance of the given type.
|
||||
* `target`: Limits matching to join points (the execution of methods when using
|
||||
Spring AOP) where the target object (application object being proxied) is an instance
|
||||
of the given type.
|
||||
* `args`: Limits matching to join points (the execution of methods when using Spring
|
||||
AOP) where the arguments are instances of the given types.
|
||||
* `@target`: Limits matching to join points (the execution of methods when using
|
||||
Spring AOP) where the class of the executing object has an annotation of the given type.
|
||||
* `@args`: Limits matching to join points (the execution of methods when using Spring
|
||||
AOP) where the runtime type of the actual arguments passed have annotations of the
|
||||
given types.
|
||||
* `@within`: Limits matching to join points within types that have the given
|
||||
annotation (the execution of methods declared in types with the given annotation when
|
||||
using Spring AOP).
|
||||
* `@annotation`: Limits matching to join points where the subject of the join point
|
||||
(the method being run in Spring AOP) has the given annotation.
|
||||
|
||||
.Other pointcut types
|
||||
****
|
||||
The full AspectJ pointcut language supports additional pointcut designators that are not
|
||||
supported in Spring: `call`, `get`, `set`, `preinitialization`,
|
||||
`staticinitialization`, `initialization`, `handler`, `adviceexecution`, `withincode`, `cflow`,
|
||||
`cflowbelow`, `if`, `@this`, and `@withincode`. Use of these pointcut designators in pointcut
|
||||
expressions interpreted by Spring AOP results in an `IllegalArgumentException` being
|
||||
thrown.
|
||||
|
||||
The set of pointcut designators supported by Spring AOP may be extended in future
|
||||
releases to support more of the AspectJ pointcut designators.
|
||||
****
|
||||
|
||||
Because Spring AOP limits matching to only method execution join points, the preceding discussion
|
||||
of the pointcut designators gives a narrower definition than you can find in the
|
||||
AspectJ programming guide. In addition, AspectJ itself has type-based semantics and, at
|
||||
an execution join point, both `this` and `target` refer to the same object: the
|
||||
object executing the method. Spring AOP is a proxy-based system and differentiates
|
||||
between the proxy object itself (which is bound to `this`) and the target object behind the
|
||||
proxy (which is bound to `target`).
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
Due to the proxy-based nature of Spring's AOP framework, calls within the target object
|
||||
are, by definition, not intercepted. For JDK proxies, only public interface method
|
||||
calls on the proxy can be intercepted. With CGLIB, public and protected method calls on
|
||||
the proxy are intercepted (and even package-visible methods, if necessary). However,
|
||||
common interactions through proxies should always be designed through public signatures.
|
||||
|
||||
Note that pointcut definitions are generally matched against any intercepted method.
|
||||
If a pointcut is strictly meant to be public-only, even in a CGLIB proxy scenario with
|
||||
potential non-public interactions through proxies, it needs to be defined accordingly.
|
||||
|
||||
If your interception needs include method calls or even constructors within the target
|
||||
class, consider the use of Spring-driven xref:core/aop/using-aspectj.adoc#aop-aj-ltw[native AspectJ weaving] instead
|
||||
of Spring's proxy-based AOP framework. This constitutes a different mode of AOP usage
|
||||
with different characteristics, so be sure to make yourself familiar with weaving
|
||||
before making a decision.
|
||||
====
|
||||
|
||||
Spring AOP also supports an additional PCD named `bean`. This PCD lets you limit
|
||||
the matching of join points to a particular named Spring bean or to a set of named
|
||||
Spring beans (when using wildcards). The `bean` PCD has the following form:
|
||||
|
||||
[source,indent=0,subs="verbatim"]
|
||||
----
|
||||
bean(idOrNameOfBean)
|
||||
----
|
||||
|
||||
The `idOrNameOfBean` token can be the name of any Spring bean. Limited wildcard
|
||||
support that uses the `*` character is provided, so, if you establish some naming
|
||||
conventions for your Spring beans, you can write a `bean` PCD expression
|
||||
to select them. As is the case with other pointcut designators, the `bean` PCD can
|
||||
be used with the `&&` (and), `||` (or), and `!` (negation) operators, too.
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
The `bean` PCD is supported only in Spring AOP and not in
|
||||
native AspectJ weaving. It is a Spring-specific extension to the standard PCDs that
|
||||
AspectJ defines and is, therefore, not available for aspects declared in the `@Aspect` model.
|
||||
|
||||
The `bean` PCD operates at the instance level (building on the Spring bean name
|
||||
concept) rather than at the type level only (to which weaving-based AOP is limited).
|
||||
Instance-based pointcut designators are a special capability of Spring's
|
||||
proxy-based AOP framework and its close integration with the Spring bean factory, where
|
||||
it is natural and straightforward to identify specific beans by name.
|
||||
====
|
||||
|
||||
|
||||
[[aop-pointcuts-combining]]
|
||||
== Combining Pointcut Expressions
|
||||
|
||||
You can combine pointcut expressions by using `&&,` `||` and `!`. You can also refer to
|
||||
pointcut expressions by name. The following example shows three pointcut expressions:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary",chomp="-packages"]
|
||||
----
|
||||
package com.xyz;
|
||||
|
||||
public class Pointcuts {
|
||||
|
||||
@Pointcut("execution(public * *(..))")
|
||||
public void publicMethod() {} // <1>
|
||||
|
||||
@Pointcut("within(com.xyz.trading..*)")
|
||||
public void inTrading() {} // <2>
|
||||
|
||||
@Pointcut("publicMethod() && inTrading()")
|
||||
public void tradingOperation() {} // <3>
|
||||
}
|
||||
----
|
||||
<1> `publicMethod` matches if a method execution join point represents the execution
|
||||
of any public method.
|
||||
<2> `inTrading` matches if a method execution is in the trading module.
|
||||
<3> `tradingOperation` matches if a method execution represents any public method in the
|
||||
trading module.
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary",chomp="-packages"]
|
||||
----
|
||||
package com.xyz
|
||||
|
||||
class Pointcuts {
|
||||
|
||||
@Pointcut("execution(public * *(..))")
|
||||
fun publicMethod() {} // <1>
|
||||
|
||||
@Pointcut("within(com.xyz.trading..*)")
|
||||
fun inTrading() {} // <2>
|
||||
|
||||
@Pointcut("publicMethod() && inTrading()")
|
||||
fun tradingOperation() {} // <3>
|
||||
}
|
||||
----
|
||||
<1> `publicMethod` matches if a method execution join point represents the execution
|
||||
of any public method.
|
||||
<2> `inTrading` matches if a method execution is in the trading module.
|
||||
<3> `tradingOperation` matches if a method execution represents any public method in the
|
||||
trading module.
|
||||
======
|
||||
|
||||
It is a best practice to build more complex pointcut expressions out of smaller _named
|
||||
pointcuts_, as shown above. When referring to pointcuts by name, normal Java visibility
|
||||
rules apply (you can see `private` pointcuts in the same type, `protected` pointcuts in
|
||||
the hierarchy, `public` pointcuts anywhere, and so on). Visibility does not affect
|
||||
pointcut matching.
|
||||
|
||||
|
||||
[[aop-common-pointcuts]]
|
||||
== Sharing Named Pointcut Definitions
|
||||
|
||||
When working with enterprise applications, developers often have the need to refer to
|
||||
modules of the application and particular sets of operations from within several aspects.
|
||||
We recommend defining a dedicated class that captures commonly used _named pointcut_
|
||||
expressions for this purpose. Such a class typically resembles the following
|
||||
`CommonPointcuts` example (though what you name the class is up to you):
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary",chomp="-packages",fold="none"]
|
||||
----
|
||||
package com.xyz;
|
||||
|
||||
import org.aspectj.lang.annotation.Pointcut;
|
||||
|
||||
public class CommonPointcuts {
|
||||
|
||||
/**
|
||||
* A join point is in the web layer if the method is defined
|
||||
* in a type in the com.xyz.web package or any sub-package
|
||||
* under that.
|
||||
*/
|
||||
@Pointcut("within(com.xyz.web..*)")
|
||||
public void inWebLayer() {}
|
||||
|
||||
/**
|
||||
* A join point is in the service layer if the method is defined
|
||||
* in a type in the com.xyz.service package or any sub-package
|
||||
* under that.
|
||||
*/
|
||||
@Pointcut("within(com.xyz.service..*)")
|
||||
public void inServiceLayer() {}
|
||||
|
||||
/**
|
||||
* A join point is in the data access layer if the method is defined
|
||||
* in a type in the com.xyz.dao package or any sub-package
|
||||
* under that.
|
||||
*/
|
||||
@Pointcut("within(com.xyz.dao..*)")
|
||||
public void inDataAccessLayer() {}
|
||||
|
||||
/**
|
||||
* A business service is the execution of any method defined on a service
|
||||
* interface. This definition assumes that interfaces are placed in the
|
||||
* "service" package, and that implementation types are in sub-packages.
|
||||
*
|
||||
* If you group service interfaces by functional area (for example,
|
||||
* in packages com.xyz.abc.service and com.xyz.def.service) then
|
||||
* the pointcut expression "execution(* com.xyz..service.*.*(..))"
|
||||
* could be used instead.
|
||||
*
|
||||
* Alternatively, you can write the expression using the 'bean'
|
||||
* PCD, like so "bean(*Service)". (This assumes that you have
|
||||
* named your Spring service beans in a consistent fashion.)
|
||||
*/
|
||||
@Pointcut("execution(* com.xyz..service.*.*(..))")
|
||||
public void businessService() {}
|
||||
|
||||
/**
|
||||
* A data access operation is the execution of any method defined on a
|
||||
* DAO interface. This definition assumes that interfaces are placed in the
|
||||
* "dao" package, and that implementation types are in sub-packages.
|
||||
*/
|
||||
@Pointcut("execution(* com.xyz.dao.*.*(..))")
|
||||
public void dataAccessOperation() {}
|
||||
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary",chomp="-packages",fold="none"]
|
||||
----
|
||||
package com.xyz
|
||||
|
||||
import org.aspectj.lang.annotation.Pointcut
|
||||
|
||||
class CommonPointcuts {
|
||||
|
||||
/**
|
||||
* A join point is in the web layer if the method is defined
|
||||
* in a type in the com.xyz.web package or any sub-package
|
||||
* under that.
|
||||
*/
|
||||
@Pointcut("within(com.xyz.web..*)")
|
||||
fun inWebLayer() {}
|
||||
|
||||
/**
|
||||
* A join point is in the service layer if the method is defined
|
||||
* in a type in the com.xyz.service package or any sub-package
|
||||
* under that.
|
||||
*/
|
||||
@Pointcut("within(com.xyz.service..*)")
|
||||
fun inServiceLayer() {}
|
||||
|
||||
/**
|
||||
* A join point is in the data access layer if the method is defined
|
||||
* in a type in the com.xyz.dao package or any sub-package
|
||||
* under that.
|
||||
*/
|
||||
@Pointcut("within(com.xyz.dao..*)")
|
||||
fun inDataAccessLayer() {}
|
||||
|
||||
/**
|
||||
* A business service is the execution of any method defined on a service
|
||||
* interface. This definition assumes that interfaces are placed in the
|
||||
* "service" package, and that implementation types are in sub-packages.
|
||||
*
|
||||
* If you group service interfaces by functional area (for example,
|
||||
* in packages com.xyz.abc.service and com.xyz.def.service) then
|
||||
* the pointcut expression "execution(* com.xyz..service.*.*(..))"
|
||||
* could be used instead.
|
||||
*
|
||||
* Alternatively, you can write the expression using the 'bean'
|
||||
* PCD, like so "bean(*Service)". (This assumes that you have
|
||||
* named your Spring service beans in a consistent fashion.)
|
||||
*/
|
||||
@Pointcut("execution(* com.xyz..service.*.*(..))")
|
||||
fun businessService() {}
|
||||
|
||||
/**
|
||||
* A data access operation is the execution of any method defined on a
|
||||
* DAO interface. This definition assumes that interfaces are placed in the
|
||||
* "dao" package, and that implementation types are in sub-packages.
|
||||
*/
|
||||
@Pointcut("execution(* com.xyz.dao.*.*(..))")
|
||||
fun dataAccessOperation() {}
|
||||
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
You can refer to the pointcuts defined in such a class anywhere you need a pointcut
|
||||
expression by referencing the fully-qualified name of the class combined with the
|
||||
`@Pointcut` method's name. For example, to make the service layer transactional, you
|
||||
could write the following which references the
|
||||
`com.xyz.CommonPointcuts.businessService()` _named pointcut_:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:config>
|
||||
<aop:advisor
|
||||
pointcut="com.xyz.CommonPointcuts.businessService()"
|
||||
advice-ref="tx-advice"/>
|
||||
</aop:config>
|
||||
|
||||
<tx:advice id="tx-advice">
|
||||
<tx:attributes>
|
||||
<tx:method name="*" propagation="REQUIRED"/>
|
||||
</tx:attributes>
|
||||
</tx:advice>
|
||||
----
|
||||
|
||||
The `<aop:config>` and `<aop:advisor>` elements are discussed in xref:core/aop/schema.adoc[Schema-based AOP Support]. The
|
||||
transaction elements are discussed in xref:data-access/transaction.adoc[Transaction Management].
|
||||
|
||||
|
||||
[[aop-pointcuts-examples]]
|
||||
== Examples
|
||||
|
||||
Spring AOP users are likely to use the `execution` pointcut designator the most often.
|
||||
The format of an execution expression follows:
|
||||
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
execution(modifiers-pattern?
|
||||
ret-type-pattern
|
||||
declaring-type-pattern?name-pattern(param-pattern)
|
||||
throws-pattern?)
|
||||
----
|
||||
|
||||
All parts except the returning type pattern (`ret-type-pattern` in the preceding snippet),
|
||||
the name pattern, and the parameters pattern are optional. The returning type pattern determines
|
||||
what the return type of the method must be in order for a join point to be matched.
|
||||
`{asterisk}` is most frequently used as the returning type pattern. It matches any return
|
||||
type. A fully-qualified type name matches only when the method returns the given
|
||||
type. The name pattern matches the method name. You can use the `{asterisk}` wildcard as all or
|
||||
part of a name pattern. If you specify a declaring type pattern,
|
||||
include a trailing `.` to join it to the name pattern component.
|
||||
The parameters pattern is slightly more complex: `()` matches a
|
||||
method that takes no parameters, whereas `(..)` matches any number (zero or more) of parameters.
|
||||
The `({asterisk})` pattern matches a method that takes one parameter of any type.
|
||||
`(*,String)` matches a method that takes two parameters. The first can be of any type, while the
|
||||
second must be a `String`. Consult the
|
||||
{aspectj-docs-progguide}/semantics-pointcuts.html[Language
|
||||
Semantics] section of the AspectJ Programming Guide for more information.
|
||||
|
||||
The following examples show some common pointcut expressions:
|
||||
|
||||
* The execution of any public method:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
execution(public * *(..))
|
||||
----
|
||||
|
||||
* The execution of any method with a name that begins with `set`:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
execution(* set*(..))
|
||||
----
|
||||
|
||||
* The execution of any method defined by the `AccountService` interface:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
execution(* com.xyz.service.AccountService.*(..))
|
||||
----
|
||||
|
||||
* The execution of any method defined in the `service` package:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
execution(* com.xyz.service.*.*(..))
|
||||
----
|
||||
|
||||
* The execution of any method defined in the service package or one of its sub-packages:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
execution(* com.xyz.service..*.*(..))
|
||||
----
|
||||
|
||||
* Any join point (method execution only in Spring AOP) within the service package:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
within(com.xyz.service.*)
|
||||
----
|
||||
|
||||
* Any join point (method execution only in Spring AOP) within the service package or one of its
|
||||
sub-packages:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
within(com.xyz.service..*)
|
||||
----
|
||||
|
||||
* Any join point (method execution only in Spring AOP) where the proxy implements the
|
||||
`AccountService` interface:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
this(com.xyz.service.AccountService)
|
||||
----
|
||||
+
|
||||
NOTE: `this` is more commonly used in a binding form. See the section on xref:core/aop/ataspectj/advice.adoc[Declaring Advice]
|
||||
for how to make the proxy object available in the advice body.
|
||||
|
||||
* Any join point (method execution only in Spring AOP) where the target object
|
||||
implements the `AccountService` interface:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
target(com.xyz.service.AccountService)
|
||||
----
|
||||
+
|
||||
NOTE: `target` is more commonly used in a binding form. See the xref:core/aop/ataspectj/advice.adoc[Declaring Advice] section
|
||||
for how to make the target object available in the advice body.
|
||||
|
||||
* Any join point (method execution only in Spring AOP) that takes a single parameter
|
||||
and where the argument passed at runtime is `Serializable`:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
args(java.io.Serializable)
|
||||
----
|
||||
+
|
||||
NOTE: `args` is more commonly used in a binding form. See the xref:core/aop/ataspectj/advice.adoc[Declaring Advice] section
|
||||
for how to make the method arguments available in the advice body.
|
||||
+
|
||||
Note that the pointcut given in this example is different from `execution(*
|
||||
*(java.io.Serializable))`. The args version matches if the argument passed at runtime is
|
||||
`Serializable`, and the execution version matches if the method signature declares a single
|
||||
parameter of type `Serializable`.
|
||||
|
||||
* Any join point (method execution only in Spring AOP) where the target object has a
|
||||
`@Transactional` annotation:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
@target(org.springframework.transaction.annotation.Transactional)
|
||||
----
|
||||
+
|
||||
NOTE: You can also use `@target` in a binding form. See the xref:core/aop/ataspectj/advice.adoc[Declaring Advice] section for
|
||||
how to make the annotation object available in the advice body.
|
||||
|
||||
* Any join point (method execution only in Spring AOP) where the declared type of the
|
||||
target object has an `@Transactional` annotation:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
@within(org.springframework.transaction.annotation.Transactional)
|
||||
----
|
||||
+
|
||||
NOTE: You can also use `@within` in a binding form. See the xref:core/aop/ataspectj/advice.adoc[Declaring Advice] section for
|
||||
how to make the annotation object available in the advice body.
|
||||
|
||||
* Any join point (method execution only in Spring AOP) where the executing method has an
|
||||
`@Transactional` annotation:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
@annotation(org.springframework.transaction.annotation.Transactional)
|
||||
----
|
||||
+
|
||||
NOTE: You can also use `@annotation` in a binding form. See the xref:core/aop/ataspectj/advice.adoc[Declaring Advice] section
|
||||
for how to make the annotation object available in the advice body.
|
||||
|
||||
* Any join point (method execution only in Spring AOP) which takes a single parameter,
|
||||
and where the runtime type of the argument passed has the `@Classified` annotation:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
@args(com.xyz.security.Classified)
|
||||
----
|
||||
+
|
||||
NOTE: You can also use `@args` in a binding form. See the xref:core/aop/ataspectj/advice.adoc[Declaring Advice] section
|
||||
how to make the annotation object(s) available in the advice body.
|
||||
|
||||
* Any join point (method execution only in Spring AOP) on a Spring bean named
|
||||
`tradeService`:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
bean(tradeService)
|
||||
----
|
||||
|
||||
* Any join point (method execution only in Spring AOP) on Spring beans having names that
|
||||
match the wildcard expression `*Service`:
|
||||
+
|
||||
[literal,indent=0,subs="verbatim"]
|
||||
----
|
||||
bean(*Service)
|
||||
----
|
||||
|
||||
|
||||
[[writing-good-pointcuts]]
|
||||
== Writing Good Pointcuts
|
||||
|
||||
During compilation, AspectJ processes pointcuts in order to optimize matching
|
||||
performance. Examining code and determining if each join point matches (statically or
|
||||
dynamically) a given pointcut is a costly process. (A dynamic match means the match
|
||||
cannot be fully determined from static analysis and that a test is placed in the code to
|
||||
determine if there is an actual match when the code is running). On first encountering a
|
||||
pointcut declaration, AspectJ rewrites it into an optimal form for the matching
|
||||
process. What does this mean? Basically, pointcuts are rewritten in DNF (Disjunctive
|
||||
Normal Form) and the components of the pointcut are sorted such that those components
|
||||
that are cheaper to evaluate are checked first. This means you do not have to worry
|
||||
about understanding the performance of various pointcut designators and may supply them
|
||||
in any order in a pointcut declaration.
|
||||
|
||||
However, AspectJ can work only with what it is told. For optimal performance of
|
||||
matching, you should think about what you are trying to achieve and narrow the search
|
||||
space for matches as much as possible in the definition. The existing designators
|
||||
naturally fall into one of three groups: kinded, scoping, and contextual:
|
||||
|
||||
* Kinded designators select a particular kind of join point:
|
||||
`execution`, `get`, `set`, `call`, and `handler`.
|
||||
* Scoping designators select a group of join points of interest
|
||||
(probably of many kinds): `within` and `withincode`
|
||||
* Contextual designators match (and optionally bind) based on context:
|
||||
`this`, `target`, and `@annotation`
|
||||
|
||||
A well written pointcut should include at least the first two types (kinded and
|
||||
scoping). You can include the contextual designators to match based on
|
||||
join point context or bind that context for use in the advice. Supplying only a
|
||||
kinded designator or only a contextual designator works but could affect weaving
|
||||
performance (time and memory used), due to extra processing and analysis. Scoping
|
||||
designators are very fast to match, and using them means AspectJ can very quickly
|
||||
dismiss groups of join points that should not be further processed. A good
|
||||
pointcut should always include one if possible.
|
||||
|
||||
|
||||
|
||||
@@ -1,113 +0,0 @@
|
||||
[[aop-choosing]]
|
||||
= Choosing which AOP Declaration Style to Use
|
||||
|
||||
Once you have decided that an aspect is the best approach for implementing a given
|
||||
requirement, how do you decide between using Spring AOP or AspectJ and between the
|
||||
Aspect language (code) style, the @AspectJ annotation style, or the Spring XML style? These
|
||||
decisions are influenced by a number of factors including application requirements,
|
||||
development tools, and team familiarity with AOP.
|
||||
|
||||
|
||||
|
||||
[[aop-spring-or-aspectj]]
|
||||
== Spring AOP or Full AspectJ?
|
||||
|
||||
Use the simplest thing that can work. Spring AOP is simpler than using full AspectJ, as
|
||||
there is no requirement to introduce the AspectJ compiler / weaver into your development
|
||||
and build processes. If you only need to advise the execution of operations on Spring
|
||||
beans, Spring AOP is the right choice. If you need to advise objects not managed by
|
||||
the Spring container (such as domain objects, typically), you need to use
|
||||
AspectJ. You also need to use AspectJ if you wish to advise join points other than
|
||||
simple method executions (for example, field get or set join points and so on).
|
||||
|
||||
When you use AspectJ, you have the choice of the AspectJ language syntax (also known as
|
||||
the "code style") or the @AspectJ annotation style. If aspects play a large
|
||||
role in your design, and you are able to use the https://www.eclipse.org/ajdt/[AspectJ
|
||||
Development Tools (AJDT)] plugin for Eclipse, the AspectJ language syntax is the
|
||||
preferred option. It is cleaner and simpler because the language was purposefully
|
||||
designed for writing aspects. If you do not use Eclipse or have only a few aspects
|
||||
that do not play a major role in your application, you may want to consider using
|
||||
the @AspectJ style, sticking with regular Java compilation in your IDE, and adding
|
||||
an aspect weaving phase to your build script.
|
||||
|
||||
|
||||
|
||||
[[aop-ataspectj-or-xml]]
|
||||
== @AspectJ or XML for Spring AOP?
|
||||
|
||||
If you have chosen to use Spring AOP, you have a choice of @AspectJ or XML style.
|
||||
There are various tradeoffs to consider.
|
||||
|
||||
The XML style may be most familiar to existing Spring users, and it is backed by genuine
|
||||
POJOs. When using AOP as a tool to configure enterprise services, XML can be a good
|
||||
choice (a good test is whether you consider the pointcut expression to be a part of your
|
||||
configuration that you might want to change independently). With the XML style, it is
|
||||
arguably clearer from your configuration which aspects are present in the system.
|
||||
|
||||
The XML style has two disadvantages. First, it does not fully encapsulate the
|
||||
implementation of the requirement it addresses in a single place. The DRY principle says
|
||||
that there should be a single, unambiguous, authoritative representation of any piece of
|
||||
knowledge within a system. When using the XML style, the knowledge of how a requirement
|
||||
is implemented is split across the declaration of the backing bean class and the XML in
|
||||
the configuration file. When you use the @AspectJ style, this information is encapsulated
|
||||
in a single module: the aspect. Secondly, the XML style is slightly more limited in what
|
||||
it can express than the @AspectJ style: Only the "singleton" aspect instantiation model
|
||||
is supported, and it is not possible to combine named pointcuts declared in XML.
|
||||
For example, in the @AspectJ style you can write something like the following:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Pointcut("execution(* get*())")
|
||||
public void propertyAccess() {}
|
||||
|
||||
@Pointcut("execution(com.xyz.Account+ *(..))")
|
||||
public void operationReturningAnAccount() {}
|
||||
|
||||
@Pointcut("propertyAccess() && operationReturningAnAccount()")
|
||||
public void accountPropertyAccess() {}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Pointcut("execution(* get*())")
|
||||
fun propertyAccess() {}
|
||||
|
||||
@Pointcut("execution(com.xyz.Account+ *(..))")
|
||||
fun operationReturningAnAccount() {}
|
||||
|
||||
@Pointcut("propertyAccess() && operationReturningAnAccount()")
|
||||
fun accountPropertyAccess() {}
|
||||
----
|
||||
======
|
||||
|
||||
In the XML style you can declare the first two pointcuts:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:pointcut id="propertyAccess"
|
||||
expression="execution(* get*())"/>
|
||||
|
||||
<aop:pointcut id="operationReturningAnAccount"
|
||||
expression="execution(com.xyz.Account+ *(..))"/>
|
||||
----
|
||||
|
||||
The downside of the XML approach is that you cannot define the
|
||||
`accountPropertyAccess` pointcut by combining these definitions.
|
||||
|
||||
The @AspectJ style supports additional instantiation models and richer pointcut
|
||||
composition. It has the advantage of keeping the aspect as a modular unit. It also has
|
||||
the advantage that the @AspectJ aspects can be understood (and thus consumed) both by
|
||||
Spring AOP and by AspectJ. So, if you later decide you need the capabilities of AspectJ
|
||||
to implement additional requirements, you can easily migrate to a classic AspectJ setup.
|
||||
In general, the Spring team prefers the @AspectJ style for custom aspects beyond simple
|
||||
configuration of enterprise services.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,79 +0,0 @@
|
||||
[[aop-introduction-defn]]
|
||||
= AOP Concepts
|
||||
|
||||
Let us begin by defining some central AOP concepts and terminology. These terms are not
|
||||
Spring-specific. Unfortunately, AOP terminology is not particularly intuitive.
|
||||
However, it would be even more confusing if Spring used its own terminology.
|
||||
|
||||
* Aspect: A modularization of a concern that cuts across multiple classes.
|
||||
Transaction management is a good example of a crosscutting concern in enterprise Java
|
||||
applications. In Spring AOP, aspects are implemented by using regular classes
|
||||
(the xref:core/aop/schema.adoc[schema-based approach]) or regular classes annotated with the
|
||||
`@Aspect` annotation (the xref:core/aop/ataspectj.adoc[@AspectJ style]).
|
||||
* Join point: A point during the execution of a program, such as the execution of a
|
||||
method or the handling of an exception. In Spring AOP, a join point always
|
||||
represents a method execution.
|
||||
* Advice: Action taken by an aspect at a particular join point. Different types of
|
||||
advice include "around", "before", and "after" advice. (Advice types are discussed
|
||||
later.) Many AOP frameworks, including Spring, model an advice as an interceptor and
|
||||
maintain a chain of interceptors around the join point.
|
||||
* Pointcut: A predicate that matches join points. Advice is associated with a
|
||||
pointcut expression and runs at any join point matched by the pointcut (for example,
|
||||
the execution of a method with a certain name). The concept of join points as matched
|
||||
by pointcut expressions is central to AOP, and Spring uses the AspectJ pointcut
|
||||
expression language by default.
|
||||
* Introduction: Declaring additional methods or fields on behalf of a type. Spring
|
||||
AOP lets you introduce new interfaces (and a corresponding implementation) to any
|
||||
advised object. For example, you could use an introduction to make a bean implement an
|
||||
`IsModified` interface, to simplify caching. (An introduction is known as an
|
||||
inter-type declaration in the AspectJ community.)
|
||||
* Target object: An object being advised by one or more aspects. Also referred to as
|
||||
the "advised object". Since Spring AOP is implemented by using runtime proxies, this
|
||||
object is always a proxied object.
|
||||
* AOP proxy: An object created by the AOP framework in order to implement the aspect
|
||||
contracts (advice method executions and so on). In the Spring Framework, an AOP proxy
|
||||
is a JDK dynamic proxy or a CGLIB proxy.
|
||||
* Weaving: linking aspects with other application types or objects to create an
|
||||
advised object. This can be done at compile time (using the AspectJ compiler, for
|
||||
example), load time, or at runtime. Spring AOP, like other pure Java AOP frameworks,
|
||||
performs weaving at runtime.
|
||||
|
||||
Spring AOP includes the following types of advice:
|
||||
|
||||
* Before advice: Advice that runs before a join point but that does not have
|
||||
the ability to prevent execution flow proceeding to the join point (unless it throws
|
||||
an exception).
|
||||
* After returning advice: Advice to be run after a join point completes
|
||||
normally (for example, if a method returns without throwing an exception).
|
||||
* After throwing advice: Advice to be run if a method exits by throwing an
|
||||
exception.
|
||||
* After (finally) advice: Advice to be run regardless of the means by which a
|
||||
join point exits (normal or exceptional return).
|
||||
* Around advice: Advice that surrounds a join point such as a method invocation.
|
||||
This is the most powerful kind of advice. Around advice can perform custom behavior
|
||||
before and after the method invocation. It is also responsible for choosing whether to
|
||||
proceed to the join point or to shortcut the advised method execution by returning its
|
||||
own return value or throwing an exception.
|
||||
|
||||
Around advice is the most general kind of advice. Since Spring AOP, like AspectJ,
|
||||
provides a full range of advice types, we recommend that you use the least powerful
|
||||
advice type that can implement the required behavior. For example, if you need only to
|
||||
update a cache with the return value of a method, you are better off implementing an
|
||||
after returning advice than an around advice, although an around advice can accomplish
|
||||
the same thing. Using the most specific advice type provides a simpler programming model
|
||||
with less potential for errors. For example, you do not need to invoke the `proceed()`
|
||||
method on the `JoinPoint` used for around advice, and, hence, you cannot fail to invoke it.
|
||||
|
||||
All advice parameters are statically typed so that you work with advice parameters of
|
||||
the appropriate type (e.g. the type of the return value from a method execution) rather
|
||||
than `Object` arrays.
|
||||
|
||||
The concept of join points matched by pointcuts is the key to AOP, which distinguishes
|
||||
it from older technologies offering only interception. Pointcuts enable advice to be
|
||||
targeted independently of the object-oriented hierarchy. For example, you can apply an
|
||||
around advice providing declarative transaction management to a set of methods that span
|
||||
multiple objects (such as all business operations in the service layer).
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,22 +0,0 @@
|
||||
[[aop-introduction-proxies]]
|
||||
= AOP Proxies
|
||||
:page-section-summary-toc: 1
|
||||
|
||||
Spring AOP defaults to using standard JDK dynamic proxies for AOP proxies. This
|
||||
enables any interface (or set of interfaces) to be proxied.
|
||||
|
||||
Spring AOP can also use CGLIB proxies. This is necessary to proxy classes rather than
|
||||
interfaces. By default, CGLIB is used if a business object does not implement an
|
||||
interface. As it is good practice to program to interfaces rather than classes, business
|
||||
classes normally implement one or more business interfaces. It is possible to
|
||||
xref:core/aop/proxying.adoc[force the use of CGLIB], in those (hopefully rare) cases where you
|
||||
need to advise a method that is not declared on an interface or where you need to
|
||||
pass a proxied object to a method as a concrete type.
|
||||
|
||||
It is important to grasp the fact that Spring AOP is proxy-based. See
|
||||
xref:core/aop/proxying.adoc#aop-understanding-aop-proxies[Understanding AOP Proxies] for a thorough examination of exactly what this
|
||||
implementation detail actually means.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,61 +0,0 @@
|
||||
[[aop-introduction-spring-defn]]
|
||||
= Spring AOP Capabilities and Goals
|
||||
|
||||
Spring AOP is implemented in pure Java. There is no need for a special compilation
|
||||
process. Spring AOP does not need to control the class loader hierarchy and is thus
|
||||
suitable for use in a servlet container or application server.
|
||||
|
||||
Spring AOP currently supports only method execution join points (advising the execution
|
||||
of methods on Spring beans). Field interception is not implemented, although support for
|
||||
field interception could be added without breaking the core Spring AOP APIs. If you need
|
||||
to advise field access and update join points, consider a language such as AspectJ.
|
||||
|
||||
Spring AOP's approach to AOP differs from that of most other AOP frameworks. The aim is
|
||||
not to provide the most complete AOP implementation (although Spring AOP is quite
|
||||
capable). Rather, the aim is to provide a close integration between AOP implementation and
|
||||
Spring IoC, to help solve common problems in enterprise applications.
|
||||
|
||||
Thus, for example, the Spring Framework's AOP functionality is normally used in
|
||||
conjunction with the Spring IoC container. Aspects are configured by using normal bean
|
||||
definition syntax (although this allows powerful "auto-proxying" capabilities). This is a
|
||||
crucial difference from other AOP implementations. You cannot do some things
|
||||
easily or efficiently with Spring AOP, such as advise very fine-grained objects (typically,
|
||||
domain objects). AspectJ is the best choice in such cases. However, our
|
||||
experience is that Spring AOP provides an excellent solution to most problems in
|
||||
enterprise Java applications that are amenable to AOP.
|
||||
|
||||
Spring AOP never strives to compete with AspectJ to provide a comprehensive AOP
|
||||
solution. We believe that both proxy-based frameworks such as Spring AOP and full-blown
|
||||
frameworks such as AspectJ are valuable and that they are complementary, rather than in
|
||||
competition. Spring seamlessly integrates Spring AOP and IoC with AspectJ, to enable
|
||||
all uses of AOP within a consistent Spring-based application
|
||||
architecture. This integration does not affect the Spring AOP API or the AOP Alliance
|
||||
API. Spring AOP remains backward-compatible. See xref:core/aop-api.adoc[the following chapter]
|
||||
for a discussion of the Spring AOP APIs.
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
One of the central tenets of the Spring Framework is that of non-invasiveness. This
|
||||
is the idea that you should not be forced to introduce framework-specific classes and
|
||||
interfaces into your business or domain model. However, in some places, the Spring Framework
|
||||
does give you the option to introduce Spring Framework-specific dependencies into your
|
||||
codebase. The rationale in giving you such options is because, in certain scenarios, it
|
||||
might be just plain easier to read or code some specific piece of functionality in such
|
||||
a way. However, the Spring Framework (almost) always offers you the choice: You have the
|
||||
freedom to make an informed decision as to which option best suits your particular use
|
||||
case or scenario.
|
||||
|
||||
One such choice that is relevant to this chapter is that of which AOP framework (and
|
||||
which AOP style) to choose. You have the choice of AspectJ, Spring AOP, or both. You
|
||||
also have the choice of either the @AspectJ annotation-style approach or the Spring XML
|
||||
configuration-style approach. The fact that this chapter chooses to introduce the
|
||||
@AspectJ-style approach first should not be taken as an indication that the Spring team
|
||||
favors the @AspectJ annotation-style approach over the Spring XML configuration-style.
|
||||
|
||||
See xref:core/aop/choosing.adoc[Choosing which AOP Declaration Style to Use] for a more complete discussion of the advantages and disadvantages of
|
||||
each style.
|
||||
====
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,12 +0,0 @@
|
||||
[[aop-mixing-styles]]
|
||||
= Mixing Aspect Types
|
||||
:page-section-summary-toc: 1
|
||||
|
||||
It is perfectly possible to mix @AspectJ style aspects by using the auto-proxying support,
|
||||
schema-defined `<aop:aspect>` aspects, `<aop:advisor>` declared advisors, and even proxies
|
||||
and interceptors in other styles in the same configuration. All of these are implemented
|
||||
by using the same underlying support mechanism and can co-exist without any difficulty.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,281 +0,0 @@
|
||||
[[aop-proxying]]
|
||||
= Proxying Mechanisms
|
||||
|
||||
Spring AOP uses either JDK dynamic proxies or CGLIB to create the proxy for a given
|
||||
target object. JDK dynamic proxies are built into the JDK, whereas CGLIB is a common
|
||||
open-source class definition library (repackaged into `spring-core`).
|
||||
|
||||
If the target object to be proxied implements at least one interface, a JDK dynamic
|
||||
proxy is used. All of the interfaces implemented by the target type are proxied.
|
||||
If the target object does not implement any interfaces, a CGLIB proxy is created.
|
||||
|
||||
If you want to force the use of CGLIB proxying (for example, to proxy every method
|
||||
defined for the target object, not only those implemented by its interfaces),
|
||||
you can do so. However, you should consider the following issues:
|
||||
|
||||
* With CGLIB, `final` methods cannot be advised, as they cannot be overridden in
|
||||
runtime-generated subclasses.
|
||||
* As of Spring 4.0, the constructor of your proxied object is NOT called twice anymore,
|
||||
since the CGLIB proxy instance is created through Objenesis. Only if your JVM does
|
||||
not allow for constructor bypassing, you might see double invocations and
|
||||
corresponding debug log entries from Spring's AOP support.
|
||||
|
||||
To force the use of CGLIB proxies, set the value of the `proxy-target-class` attribute
|
||||
of the `<aop:config>` element to true, as follows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:config proxy-target-class="true">
|
||||
<!-- other beans defined here... -->
|
||||
</aop:config>
|
||||
----
|
||||
|
||||
To force CGLIB proxying when you use the @AspectJ auto-proxy support, set the
|
||||
`proxy-target-class` attribute of the `<aop:aspectj-autoproxy>` element to `true`,
|
||||
as follows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspectj-autoproxy proxy-target-class="true"/>
|
||||
----
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
Multiple `<aop:config/>` sections are collapsed into a single unified auto-proxy creator
|
||||
at runtime, which applies the _strongest_ proxy settings that any of the
|
||||
`<aop:config/>` sections (typically from different XML bean definition files) specified.
|
||||
This also applies to the `<tx:annotation-driven/>` and `<aop:aspectj-autoproxy/>`
|
||||
elements.
|
||||
|
||||
To be clear, using `proxy-target-class="true"` on `<tx:annotation-driven/>`,
|
||||
`<aop:aspectj-autoproxy/>`, or `<aop:config/>` elements forces the use of CGLIB
|
||||
proxies _for all three of them_.
|
||||
====
|
||||
|
||||
|
||||
|
||||
[[aop-understanding-aop-proxies]]
|
||||
== Understanding AOP Proxies
|
||||
|
||||
Spring AOP is proxy-based. It is vitally important that you grasp the semantics of
|
||||
what that last statement actually means before you write your own aspects or use any of
|
||||
the Spring AOP-based aspects supplied with the Spring Framework.
|
||||
|
||||
Consider first the scenario where you have a plain-vanilla, un-proxied,
|
||||
nothing-special-about-it, straight object reference, as the following
|
||||
code snippet shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public class SimplePojo implements Pojo {
|
||||
|
||||
public void foo() {
|
||||
// this next method invocation is a direct call on the 'this' reference
|
||||
this.bar();
|
||||
}
|
||||
|
||||
public void bar() {
|
||||
// some logic...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
class SimplePojo : Pojo {
|
||||
|
||||
fun foo() {
|
||||
// this next method invocation is a direct call on the 'this' reference
|
||||
this.bar()
|
||||
}
|
||||
|
||||
fun bar() {
|
||||
// some logic...
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
If you invoke a method on an object reference, the method is invoked directly on
|
||||
that object reference, as the following image and listing show:
|
||||
|
||||
image::aop-proxy-plain-pojo-call.png[]
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public class Main {
|
||||
|
||||
public static void main(String[] args) {
|
||||
Pojo pojo = new SimplePojo();
|
||||
// this is a direct method call on the 'pojo' reference
|
||||
pojo.foo();
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
fun main() {
|
||||
val pojo = SimplePojo()
|
||||
// this is a direct method call on the 'pojo' reference
|
||||
pojo.foo()
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
Things change slightly when the reference that client code has is a proxy. Consider the
|
||||
following diagram and code snippet:
|
||||
|
||||
image::aop-proxy-call.png[]
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public class Main {
|
||||
|
||||
public static void main(String[] args) {
|
||||
ProxyFactory factory = new ProxyFactory(new SimplePojo());
|
||||
factory.addInterface(Pojo.class);
|
||||
factory.addAdvice(new RetryAdvice());
|
||||
|
||||
Pojo pojo = (Pojo) factory.getProxy();
|
||||
// this is a method call on the proxy!
|
||||
pojo.foo();
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
fun main() {
|
||||
val factory = ProxyFactory(SimplePojo())
|
||||
factory.addInterface(Pojo::class.java)
|
||||
factory.addAdvice(RetryAdvice())
|
||||
|
||||
val pojo = factory.proxy as Pojo
|
||||
// this is a method call on the proxy!
|
||||
pojo.foo()
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
The key thing to understand here is that the client code inside the `main(..)` method
|
||||
of the `Main` class has a reference to the proxy. This means that method calls on that
|
||||
object reference are calls on the proxy. As a result, the proxy can delegate to all of
|
||||
the interceptors (advice) that are relevant to that particular method call. However,
|
||||
once the call has finally reached the target object (the `SimplePojo` reference in
|
||||
this case), any method calls that it may make on itself, such as `this.bar()` or
|
||||
`this.foo()`, are going to be invoked against the `this` reference, and not the proxy.
|
||||
This has important implications. It means that self-invocation is not going to result
|
||||
in the advice associated with a method invocation getting a chance to run.
|
||||
|
||||
Okay, so what is to be done about this? The best approach (the term "best" is used
|
||||
loosely here) is to refactor your code such that the self-invocation does not happen.
|
||||
This does entail some work on your part, but it is the best, least-invasive approach.
|
||||
The next approach is absolutely horrendous, and we hesitate to point it out, precisely
|
||||
because it is so horrendous. You can (painful as it is to us) totally tie the logic
|
||||
within your class to Spring AOP, as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public class SimplePojo implements Pojo {
|
||||
|
||||
public void foo() {
|
||||
// this works, but... gah!
|
||||
((Pojo) AopContext.currentProxy()).bar();
|
||||
}
|
||||
|
||||
public void bar() {
|
||||
// some logic...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
class SimplePojo : Pojo {
|
||||
|
||||
fun foo() {
|
||||
// this works, but... gah!
|
||||
(AopContext.currentProxy() as Pojo).bar()
|
||||
}
|
||||
|
||||
fun bar() {
|
||||
// some logic...
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
This totally couples your code to Spring AOP, and it makes the class itself aware of
|
||||
the fact that it is being used in an AOP context, which flies in the face of AOP. It
|
||||
also requires some additional configuration when the proxy is being created, as the
|
||||
following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public class Main {
|
||||
|
||||
public static void main(String[] args) {
|
||||
ProxyFactory factory = new ProxyFactory(new SimplePojo());
|
||||
factory.addInterface(Pojo.class);
|
||||
factory.addAdvice(new RetryAdvice());
|
||||
factory.setExposeProxy(true);
|
||||
|
||||
Pojo pojo = (Pojo) factory.getProxy();
|
||||
// this is a method call on the proxy!
|
||||
pojo.foo();
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
fun main() {
|
||||
val factory = ProxyFactory(SimplePojo())
|
||||
factory.addInterface(Pojo::class.java)
|
||||
factory.addAdvice(RetryAdvice())
|
||||
factory.isExposeProxy = true
|
||||
|
||||
val pojo = factory.proxy as Pojo
|
||||
// this is a method call on the proxy!
|
||||
pojo.foo()
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
Finally, it must be noted that AspectJ does not have this self-invocation issue because
|
||||
it is not a proxy-based AOP framework.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,12 +0,0 @@
|
||||
[[aop-resources]]
|
||||
= Further Resources
|
||||
:page-section-summary-toc: 1
|
||||
|
||||
More information on AspectJ can be found on the {aspectj-site}[AspectJ website].
|
||||
|
||||
_Eclipse AspectJ_ by Adrian Colyer et. al. (Addison-Wesley, 2005) provides a
|
||||
comprehensive introduction and reference for the AspectJ language.
|
||||
|
||||
_AspectJ in Action_, Second Edition by Ramnivas Laddad (Manning, 2009) comes highly
|
||||
recommended. The focus of the book is on AspectJ, but a lot of general AOP themes are
|
||||
explored (in some depth).
|
||||
@@ -1,987 +0,0 @@
|
||||
[[aop-schema]]
|
||||
= Schema-based AOP Support
|
||||
|
||||
If you prefer an XML-based format, Spring also offers support for defining aspects
|
||||
using the `aop` namespace tags. The exact same pointcut expressions and advice kinds
|
||||
as when using the @AspectJ style are supported. Hence, in this section we focus on
|
||||
that syntax and refer the reader to the discussion in the previous section
|
||||
(xref:core/aop/ataspectj.adoc[@AspectJ support]) for an understanding of writing pointcut expressions and the binding
|
||||
of advice parameters.
|
||||
|
||||
To use the aop namespace tags described in this section, you need to import the
|
||||
`spring-aop` schema, as described in xref:core/appendix/xsd-schemas.adoc[XML Schema-based configuration]
|
||||
. See xref:core/appendix/xsd-schemas.adoc#aop[the AOP schema]
|
||||
for how to import the tags in the `aop` namespace.
|
||||
|
||||
Within your Spring configurations, all aspect and advisor elements must be placed within
|
||||
an `<aop:config>` element (you can have more than one `<aop:config>` element in an
|
||||
application context configuration). An `<aop:config>` element can contain pointcut,
|
||||
advisor, and aspect elements (note that these must be declared in that order).
|
||||
|
||||
WARNING: The `<aop:config>` style of configuration makes heavy use of Spring's
|
||||
xref:core/aop-api/autoproxy.adoc[auto-proxying] mechanism. This can cause issues (such as advice
|
||||
not being woven) if you already use explicit auto-proxying through the use of
|
||||
`BeanNameAutoProxyCreator` or something similar. The recommended usage pattern is to
|
||||
use either only the `<aop:config>` style or only the `AutoProxyCreator` style and
|
||||
never mix them.
|
||||
|
||||
|
||||
|
||||
[[aop-schema-declaring-an-aspect]]
|
||||
== Declaring an Aspect
|
||||
|
||||
When you use the schema support, an aspect is a regular Java object defined as a bean in
|
||||
your Spring application context. The state and behavior are captured in the fields and
|
||||
methods of the object, and the pointcut and advice information are captured in the XML.
|
||||
|
||||
You can declare an aspect by using the `<aop:aspect>` element, and reference the backing bean
|
||||
by using the `ref` attribute, as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:config>
|
||||
<aop:aspect id="myAspect" ref="aBean">
|
||||
...
|
||||
</aop:aspect>
|
||||
</aop:config>
|
||||
|
||||
<bean id="aBean" class="...">
|
||||
...
|
||||
</bean>
|
||||
----
|
||||
|
||||
The bean that backs the aspect (`aBean` in this case) can of course be configured and
|
||||
dependency injected just like any other Spring bean.
|
||||
|
||||
|
||||
|
||||
[[aop-schema-pointcuts]]
|
||||
== Declaring a Pointcut
|
||||
|
||||
You can declare a _named pointcut_ inside an `<aop:config>` element, letting the pointcut
|
||||
definition be shared across several aspects and advisors.
|
||||
|
||||
A pointcut that represents the execution of any business service in the service layer can
|
||||
be defined as follows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:config>
|
||||
|
||||
<aop:pointcut id="businessService"
|
||||
expression="execution(* com.xyz.service.*.*(..))" />
|
||||
|
||||
</aop:config>
|
||||
----
|
||||
|
||||
Note that the pointcut expression itself uses the same AspectJ pointcut expression
|
||||
language as described in xref:core/aop/ataspectj.adoc[@AspectJ support]. If you use the schema based declaration
|
||||
style, you can also refer to _named pointcuts_ defined in `@Aspect` types within the
|
||||
pointcut expression. Thus, another way of defining the above pointcut would be as follows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:config>
|
||||
|
||||
<aop:pointcut id="businessService"
|
||||
expression="com.xyz.CommonPointcuts.businessService()" /> <1>
|
||||
|
||||
</aop:config>
|
||||
----
|
||||
<1> References the `businessService` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-common-pointcuts[Sharing Named Pointcut Definitions].
|
||||
|
||||
Declaring a pointcut _inside_ an aspect is very similar to declaring a top-level pointcut,
|
||||
as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:config>
|
||||
|
||||
<aop:aspect id="myAspect" ref="aBean">
|
||||
|
||||
<aop:pointcut id="businessService"
|
||||
expression="execution(* com.xyz.service.*.*(..))"/>
|
||||
|
||||
...
|
||||
</aop:aspect>
|
||||
|
||||
</aop:config>
|
||||
----
|
||||
|
||||
In much the same way as an @AspectJ aspect, pointcuts declared by using the schema based
|
||||
definition style can collect join point context. For example, the following pointcut
|
||||
collects the `this` object as the join point context and passes it to the advice:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:config>
|
||||
|
||||
<aop:aspect id="myAspect" ref="aBean">
|
||||
|
||||
<aop:pointcut id="businessService"
|
||||
expression="execution(* com.xyz.service.*.*(..)) && this(service)"/>
|
||||
|
||||
<aop:before pointcut-ref="businessService" method="monitor"/>
|
||||
|
||||
...
|
||||
</aop:aspect>
|
||||
|
||||
</aop:config>
|
||||
----
|
||||
|
||||
The advice must be declared to receive the collected join point context by including
|
||||
parameters of the matching names, as follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public void monitor(Object service) {
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
fun monitor(service: Any) {
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
When combining pointcut sub-expressions, `+&&+` is awkward within an XML
|
||||
document, so you can use the `and`, `or`, and `not` keywords in place of `+&&+`,
|
||||
`||`, and `!`, respectively. For example, the previous pointcut can be better written as
|
||||
follows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:config>
|
||||
|
||||
<aop:aspect id="myAspect" ref="aBean">
|
||||
|
||||
<aop:pointcut id="businessService"
|
||||
expression="execution(* com.xyz.service.*.*(..)) and this(service)"/>
|
||||
|
||||
<aop:before pointcut-ref="businessService" method="monitor"/>
|
||||
|
||||
...
|
||||
</aop:aspect>
|
||||
|
||||
</aop:config>
|
||||
----
|
||||
|
||||
Note that pointcuts defined in this way are referred to by their XML `id` and cannot be
|
||||
used as named pointcuts to form composite pointcuts. The named pointcut support in the
|
||||
schema-based definition style is thus more limited than that offered by the @AspectJ
|
||||
style.
|
||||
|
||||
|
||||
|
||||
[[aop-schema-advice]]
|
||||
== Declaring Advice
|
||||
|
||||
The schema-based AOP support uses the same five kinds of advice as the @AspectJ style, and they have
|
||||
exactly the same semantics.
|
||||
|
||||
|
||||
[[aop-schema-advice-before]]
|
||||
=== Before Advice
|
||||
|
||||
Before advice runs before a matched method execution. It is declared inside an
|
||||
`<aop:aspect>` by using the `<aop:before>` element, as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspect id="beforeExample" ref="aBean">
|
||||
|
||||
<aop:before
|
||||
pointcut-ref="dataAccessOperation"
|
||||
method="doAccessCheck"/>
|
||||
|
||||
...
|
||||
|
||||
</aop:aspect>
|
||||
----
|
||||
|
||||
In the example above, `dataAccessOperation` is the `id` of a _named pointcut_ defined at
|
||||
the top (`<aop:config>`) level (see xref:core/aop/schema.adoc#aop-schema-pointcuts[Declaring a Pointcut]).
|
||||
|
||||
NOTE: As we noted in the discussion of the @AspectJ style, using _named pointcuts_ can
|
||||
significantly improve the readability of your code. See xref:core/aop/ataspectj/pointcuts.adoc#aop-common-pointcuts[Sharing Named Pointcut Definitions] for
|
||||
details.
|
||||
|
||||
To define the pointcut inline instead, replace the `pointcut-ref` attribute with a
|
||||
`pointcut` attribute, as follows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspect id="beforeExample" ref="aBean">
|
||||
|
||||
<aop:before
|
||||
pointcut="execution(* com.xyz.dao.*.*(..))"
|
||||
method="doAccessCheck"/>
|
||||
|
||||
...
|
||||
|
||||
</aop:aspect>
|
||||
----
|
||||
|
||||
The `method` attribute identifies a method (`doAccessCheck`) that provides the body of
|
||||
the advice. This method must be defined for the bean referenced by the aspect element
|
||||
that contains the advice. Before a data access operation is performed (a method execution
|
||||
join point matched by the pointcut expression), the `doAccessCheck` method on the aspect
|
||||
bean is invoked.
|
||||
|
||||
|
||||
[[aop-schema-advice-after-returning]]
|
||||
=== After Returning Advice
|
||||
|
||||
After returning advice runs when a matched method execution completes normally. It is
|
||||
declared inside an `<aop:aspect>` in the same way as before advice. The following example
|
||||
shows how to declare it:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspect id="afterReturningExample" ref="aBean">
|
||||
|
||||
<aop:after-returning
|
||||
pointcut="execution(* com.xyz.dao.*.*(..))"
|
||||
method="doAccessCheck"/>
|
||||
|
||||
...
|
||||
</aop:aspect>
|
||||
----
|
||||
|
||||
As in the @AspectJ style, you can get the return value within the advice body.
|
||||
To do so, use the `returning` attribute to specify the name of the parameter to which
|
||||
the return value should be passed, as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspect id="afterReturningExample" ref="aBean">
|
||||
|
||||
<aop:after-returning
|
||||
pointcut="execution(* com.xyz.dao.*.*(..))"
|
||||
returning="retVal"
|
||||
method="doAccessCheck"/>
|
||||
|
||||
...
|
||||
</aop:aspect>
|
||||
----
|
||||
|
||||
The `doAccessCheck` method must declare a parameter named `retVal`. The type of this
|
||||
parameter constrains matching in the same way as described for `@AfterReturning`. For
|
||||
example, you can declare the method signature as follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public void doAccessCheck(Object retVal) {...
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
fun doAccessCheck(retVal: Any) {...
|
||||
----
|
||||
======
|
||||
|
||||
|
||||
[[aop-schema-advice-after-throwing]]
|
||||
=== After Throwing Advice
|
||||
|
||||
After throwing advice runs when a matched method execution exits by throwing an
|
||||
exception. It is declared inside an `<aop:aspect>` by using the `after-throwing` element,
|
||||
as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspect id="afterThrowingExample" ref="aBean">
|
||||
|
||||
<aop:after-throwing
|
||||
pointcut="execution(* com.xyz.dao.*.*(..))"
|
||||
method="doRecoveryActions"/>
|
||||
|
||||
...
|
||||
</aop:aspect>
|
||||
----
|
||||
|
||||
As in the @AspectJ style, you can get the thrown exception within the advice body.
|
||||
To do so, use the `throwing` attribute to specify the name of the parameter to
|
||||
which the exception should be passed as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspect id="afterThrowingExample" ref="aBean">
|
||||
|
||||
<aop:after-throwing
|
||||
pointcut="execution(* com.xyz.dao.*.*(..))"
|
||||
throwing="dataAccessEx"
|
||||
method="doRecoveryActions"/>
|
||||
|
||||
...
|
||||
</aop:aspect>
|
||||
----
|
||||
|
||||
The `doRecoveryActions` method must declare a parameter named `dataAccessEx`.
|
||||
The type of this parameter constrains matching in the same way as described for
|
||||
`@AfterThrowing`. For example, the method signature may be declared as follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public void doRecoveryActions(DataAccessException dataAccessEx) {...
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
fun doRecoveryActions(dataAccessEx: DataAccessException) {...
|
||||
----
|
||||
======
|
||||
|
||||
|
||||
[[aop-schema-advice-after-finally]]
|
||||
=== After (Finally) Advice
|
||||
|
||||
After (finally) advice runs no matter how a matched method execution exits.
|
||||
You can declare it by using the `after` element, as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspect id="afterFinallyExample" ref="aBean">
|
||||
|
||||
<aop:after
|
||||
pointcut="execution(* com.xyz.dao.*.*(..))"
|
||||
method="doReleaseLock"/>
|
||||
|
||||
...
|
||||
</aop:aspect>
|
||||
----
|
||||
|
||||
|
||||
[[aop-schema-advice-around]]
|
||||
=== Around Advice
|
||||
|
||||
The last kind of advice is _around_ advice. Around advice runs "around" a matched
|
||||
method's execution. It has the opportunity to do work both before and after the method
|
||||
runs and to determine when, how, and even if the method actually gets to run at all.
|
||||
Around advice is often used if you need to share state before and after a method
|
||||
execution in a thread-safe manner – for example, starting and stopping a timer.
|
||||
|
||||
[TIP]
|
||||
====
|
||||
Always use the least powerful form of advice that meets your requirements.
|
||||
|
||||
For example, do not use _around_ advice if _before_ advice is sufficient for your needs.
|
||||
====
|
||||
|
||||
You can declare around advice by using the `aop:around` element. The advice method should
|
||||
declare `Object` as its return type, and the first parameter of the method must be of
|
||||
type `ProceedingJoinPoint`. Within the body of the advice method, you must invoke
|
||||
`proceed()` on the `ProceedingJoinPoint` in order for the underlying method to run.
|
||||
Invoking `proceed()` without arguments will result in the caller's original arguments
|
||||
being supplied to the underlying method when it is invoked. For advanced use cases, there
|
||||
is an overloaded variant of the `proceed()` method which accepts an array of arguments
|
||||
(`Object[]`). The values in the array will be used as the arguments to the underlying
|
||||
method when it is invoked. See xref:core/aop/ataspectj/advice.adoc#aop-ataspectj-around-advice[Around Advice] for notes on calling
|
||||
`proceed` with an `Object[]`.
|
||||
|
||||
The following example shows how to declare around advice in XML:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspect id="aroundExample" ref="aBean">
|
||||
|
||||
<aop:around
|
||||
pointcut="execution(* com.xyz.service.*.*(..))"
|
||||
method="doBasicProfiling"/>
|
||||
|
||||
...
|
||||
</aop:aspect>
|
||||
----
|
||||
|
||||
The implementation of the `doBasicProfiling` advice can be exactly the same as in the
|
||||
@AspectJ example (minus the annotation, of course), as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public Object doBasicProfiling(ProceedingJoinPoint pjp) throws Throwable {
|
||||
// start stopwatch
|
||||
Object retVal = pjp.proceed();
|
||||
// stop stopwatch
|
||||
return retVal;
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
fun doBasicProfiling(pjp: ProceedingJoinPoint): Any? {
|
||||
// start stopwatch
|
||||
val retVal = pjp.proceed()
|
||||
// stop stopwatch
|
||||
return pjp.proceed()
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
|
||||
[[aop-schema-params]]
|
||||
=== Advice Parameters
|
||||
|
||||
The schema-based declaration style supports fully typed advice in the same way as
|
||||
described for the @AspectJ support -- by matching pointcut parameters by name against
|
||||
advice method parameters. See xref:core/aop/ataspectj/advice.adoc#aop-ataspectj-advice-params[Advice Parameters] for details. If you wish
|
||||
to explicitly specify argument names for the advice methods (not relying on the
|
||||
detection strategies previously described), you can do so by using the `arg-names`
|
||||
attribute of the advice element, which is treated in the same manner as the `argNames`
|
||||
attribute in an advice annotation (as described in xref:core/aop/ataspectj/advice.adoc#aop-ataspectj-advice-params-names[Determining Argument Names]).
|
||||
The following example shows how to specify an argument name in XML:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:before
|
||||
pointcut="com.xyz.Pointcuts.publicMethod() and @annotation(auditable)" <1>
|
||||
method="audit"
|
||||
arg-names="auditable" />
|
||||
----
|
||||
<1> References the `publicMethod` named pointcut defined in xref:core/aop/ataspectj/pointcuts.adoc#aop-pointcuts-combining[Combining Pointcut Expressions].
|
||||
|
||||
The `arg-names` attribute accepts a comma-delimited list of parameter names.
|
||||
|
||||
The following slightly more involved example of the XSD-based approach shows
|
||||
some around advice used in conjunction with a number of strongly typed parameters:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary",chomp="-packages"]
|
||||
----
|
||||
package com.xyz.service;
|
||||
|
||||
public interface PersonService {
|
||||
|
||||
Person getPerson(String personName, int age);
|
||||
}
|
||||
|
||||
public class DefaultPersonService implements PersonService {
|
||||
|
||||
public Person getPerson(String name, int age) {
|
||||
return new Person(name, age);
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary",chomp="-packages"]
|
||||
----
|
||||
package com.xyz.service
|
||||
|
||||
interface PersonService {
|
||||
|
||||
fun getPerson(personName: String, age: Int): Person
|
||||
}
|
||||
|
||||
class DefaultPersonService : PersonService {
|
||||
|
||||
fun getPerson(name: String, age: Int): Person {
|
||||
return Person(name, age)
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
Next up is the aspect. Notice the fact that the `profile(..)` method accepts a number of
|
||||
strongly-typed parameters, the first of which happens to be the join point used to
|
||||
proceed with the method call. The presence of this parameter is an indication that the
|
||||
`profile(..)` is to be used as `around` advice, as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary",chomp="-packages"]
|
||||
----
|
||||
package com.xyz;
|
||||
|
||||
import org.aspectj.lang.ProceedingJoinPoint;
|
||||
import org.springframework.util.StopWatch;
|
||||
|
||||
public class SimpleProfiler {
|
||||
|
||||
public Object profile(ProceedingJoinPoint call, String name, int age) throws Throwable {
|
||||
StopWatch clock = new StopWatch("Profiling for '" + name + "' and '" + age + "'");
|
||||
try {
|
||||
clock.start(call.toShortString());
|
||||
return call.proceed();
|
||||
} finally {
|
||||
clock.stop();
|
||||
System.out.println(clock.prettyPrint());
|
||||
}
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary",chomp="-packages"]
|
||||
----
|
||||
package com.xyz
|
||||
|
||||
import org.aspectj.lang.ProceedingJoinPoint
|
||||
import org.springframework.util.StopWatch
|
||||
|
||||
class SimpleProfiler {
|
||||
|
||||
fun profile(call: ProceedingJoinPoint, name: String, age: Int): Any? {
|
||||
val clock = StopWatch("Profiling for '$name' and '$age'")
|
||||
try {
|
||||
clock.start(call.toShortString())
|
||||
return call.proceed()
|
||||
} finally {
|
||||
clock.stop()
|
||||
println(clock.prettyPrint())
|
||||
}
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
Finally, the following example XML configuration effects the execution of the
|
||||
preceding advice for a particular join point:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<beans xmlns="http://www.springframework.org/schema/beans"
|
||||
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
|
||||
xmlns:aop="http://www.springframework.org/schema/aop"
|
||||
xsi:schemaLocation="
|
||||
http://www.springframework.org/schema/beans
|
||||
https://www.springframework.org/schema/beans/spring-beans.xsd
|
||||
http://www.springframework.org/schema/aop
|
||||
https://www.springframework.org/schema/aop/spring-aop.xsd">
|
||||
|
||||
<!-- this is the object that will be proxied by Spring's AOP infrastructure -->
|
||||
<bean id="personService" class="com.xyz.service.DefaultPersonService"/>
|
||||
|
||||
<!-- this is the actual advice itself -->
|
||||
<bean id="profiler" class="com.xyz.SimpleProfiler"/>
|
||||
|
||||
<aop:config>
|
||||
<aop:aspect ref="profiler">
|
||||
|
||||
<aop:pointcut id="theExecutionOfSomePersonServiceMethod"
|
||||
expression="execution(* com.xyz.service.PersonService.getPerson(String,int))
|
||||
and args(name, age)"/>
|
||||
|
||||
<aop:around pointcut-ref="theExecutionOfSomePersonServiceMethod"
|
||||
method="profile"/>
|
||||
|
||||
</aop:aspect>
|
||||
</aop:config>
|
||||
|
||||
</beans>
|
||||
----
|
||||
|
||||
Consider the following driver script:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public class Boot {
|
||||
|
||||
public static void main(String[] args) {
|
||||
ApplicationContext ctx = new ClassPathXmlApplicationContext("beans.xml");
|
||||
PersonService person = ctx.getBean(PersonService.class);
|
||||
person.getPerson("Pengo", 12);
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
fun main() {
|
||||
val ctx = ClassPathXmlApplicationContext("beans.xml")
|
||||
val person = ctx.getBean(PersonService.class)
|
||||
person.getPerson("Pengo", 12)
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
With such a `Boot` class, we would get output similar to the following on standard output:
|
||||
|
||||
[literal,subs="verbatim"]
|
||||
----
|
||||
StopWatch 'Profiling for 'Pengo' and '12': running time (millis) = 0
|
||||
-----------------------------------------
|
||||
ms % Task name
|
||||
-----------------------------------------
|
||||
00000 ? execution(getFoo)
|
||||
----
|
||||
|
||||
|
||||
[[aop-ordering]]
|
||||
=== Advice Ordering
|
||||
|
||||
When multiple pieces of advice need to run at the same join point (executing method)
|
||||
the ordering rules are as described in xref:core/aop/ataspectj/advice.adoc#aop-ataspectj-advice-ordering[Advice Ordering]. The precedence
|
||||
between aspects is determined via the `order` attribute in the `<aop:aspect>` element or
|
||||
by either adding the `@Order` annotation to the bean that backs the aspect or by having
|
||||
the bean implement the `Ordered` interface.
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
In contrast to the precedence rules for advice methods defined in the same `@Aspect`
|
||||
class, when two pieces of advice defined in the same `<aop:aspect>` element both need to
|
||||
run at the same join point, the precedence is determined by the order in which the advice
|
||||
elements are declared within the enclosing `<aop:aspect>` element, from highest to lowest
|
||||
precedence.
|
||||
|
||||
For example, given an `around` advice and a `before` advice defined in the same
|
||||
`<aop:aspect>` element that apply to the same join point, to ensure that the `around`
|
||||
advice has higher precedence than the `before` advice, the `<aop:around>` element must be
|
||||
declared before the `<aop:before>` element.
|
||||
|
||||
As a general rule of thumb, if you find that you have multiple pieces of advice defined
|
||||
in the same `<aop:aspect>` element that apply to the same join point, consider collapsing
|
||||
such advice methods into one advice method per join point in each `<aop:aspect>` element
|
||||
or refactor the pieces of advice into separate `<aop:aspect>` elements that you can order
|
||||
at the aspect level.
|
||||
====
|
||||
|
||||
|
||||
|
||||
[[aop-schema-introductions]]
|
||||
== Introductions
|
||||
|
||||
Introductions (known as inter-type declarations in AspectJ) let an aspect declare
|
||||
that advised objects implement a given interface and provide an implementation of
|
||||
that interface on behalf of those objects.
|
||||
|
||||
You can make an introduction by using the `aop:declare-parents` element inside an `aop:aspect`.
|
||||
You can use the `aop:declare-parents` element to declare that matching types have a new parent (hence the name).
|
||||
For example, given an interface named `UsageTracked` and an implementation of that interface named
|
||||
`DefaultUsageTracked`, the following aspect declares that all implementors of service
|
||||
interfaces also implement the `UsageTracked` interface. (In order to expose statistics
|
||||
through JMX for example.)
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:aspect id="usageTrackerAspect" ref="usageTracking">
|
||||
|
||||
<aop:declare-parents
|
||||
types-matching="com.xyz.service.*+"
|
||||
implement-interface="com.xyz.service.tracking.UsageTracked"
|
||||
default-impl="com.xyz.service.tracking.DefaultUsageTracked"/>
|
||||
|
||||
<aop:before
|
||||
pointcut="execution(* com.xyz..service.*.*(..))
|
||||
and this(usageTracked)"
|
||||
method="recordUsage"/>
|
||||
|
||||
</aop:aspect>
|
||||
----
|
||||
|
||||
The class that backs the `usageTracking` bean would then contain the following method:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public void recordUsage(UsageTracked usageTracked) {
|
||||
usageTracked.incrementUseCount();
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
fun recordUsage(usageTracked: UsageTracked) {
|
||||
usageTracked.incrementUseCount()
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
The interface to be implemented is determined by the `implement-interface` attribute. The
|
||||
value of the `types-matching` attribute is an AspectJ type pattern. Any bean of a
|
||||
matching type implements the `UsageTracked` interface. Note that, in the before
|
||||
advice of the preceding example, service beans can be directly used as implementations of
|
||||
the `UsageTracked` interface. To access a bean programmatically, you could write the
|
||||
following:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
UsageTracked usageTracked = context.getBean("myService", UsageTracked.class);
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
val usageTracked = context.getBean("myService", UsageTracked.class)
|
||||
----
|
||||
======
|
||||
|
||||
|
||||
|
||||
[[aop-schema-instantiation-models]]
|
||||
== Aspect Instantiation Models
|
||||
|
||||
The only supported instantiation model for schema-defined aspects is the singleton
|
||||
model. Other instantiation models may be supported in future releases.
|
||||
|
||||
|
||||
|
||||
[[aop-schema-advisors]]
|
||||
== Advisors
|
||||
|
||||
The concept of "advisors" comes from the AOP support defined in Spring
|
||||
and does not have a direct equivalent in AspectJ. An advisor is like a small
|
||||
self-contained aspect that has a single piece of advice. The advice itself is
|
||||
represented by a bean and must implement one of the advice interfaces described in
|
||||
xref:core/aop-api/advice.adoc#aop-api-advice-types[Advice Types in Spring]. Advisors can take advantage of AspectJ pointcut expressions.
|
||||
|
||||
Spring supports the advisor concept with the `<aop:advisor>` element. You most
|
||||
commonly see it used in conjunction with transactional advice, which also has its own
|
||||
namespace support in Spring. The following example shows an advisor:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:config>
|
||||
|
||||
<aop:pointcut id="businessService"
|
||||
expression="execution(* com.xyz.service.*.*(..))"/>
|
||||
|
||||
<aop:advisor
|
||||
pointcut-ref="businessService"
|
||||
advice-ref="tx-advice" />
|
||||
|
||||
</aop:config>
|
||||
|
||||
<tx:advice id="tx-advice">
|
||||
<tx:attributes>
|
||||
<tx:method name="*" propagation="REQUIRED"/>
|
||||
</tx:attributes>
|
||||
</tx:advice>
|
||||
----
|
||||
|
||||
As well as the `pointcut-ref` attribute used in the preceding example, you can also use the
|
||||
`pointcut` attribute to define a pointcut expression inline.
|
||||
|
||||
To define the precedence of an advisor so that the advice can participate in ordering,
|
||||
use the `order` attribute to define the `Ordered` value of the advisor.
|
||||
|
||||
|
||||
|
||||
[[aop-schema-example]]
|
||||
== An AOP Schema Example
|
||||
|
||||
This section shows how the concurrent locking failure retry example from
|
||||
xref:core/aop/ataspectj/example.adoc[An AOP Example] looks when rewritten with the schema support.
|
||||
|
||||
The execution of business services can sometimes fail due to concurrency issues (for
|
||||
example, a deadlock loser). If the operation is retried, it is likely to succeed
|
||||
on the next try. For business services where it is appropriate to retry in such
|
||||
conditions (idempotent operations that do not need to go back to the user for conflict
|
||||
resolution), we want to transparently retry the operation to avoid the client seeing a
|
||||
`PessimisticLockingFailureException`. This is a requirement that clearly cuts across
|
||||
multiple services in the service layer and, hence, is ideal for implementing through an
|
||||
aspect.
|
||||
|
||||
Because we want to retry the operation, we need to use around advice so that we can
|
||||
call `proceed` multiple times. The following listing shows the basic aspect implementation
|
||||
(which is a regular Java class that uses the schema support):
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
public class ConcurrentOperationExecutor implements Ordered {
|
||||
|
||||
private static final int DEFAULT_MAX_RETRIES = 2;
|
||||
|
||||
private int maxRetries = DEFAULT_MAX_RETRIES;
|
||||
private int order = 1;
|
||||
|
||||
public void setMaxRetries(int maxRetries) {
|
||||
this.maxRetries = maxRetries;
|
||||
}
|
||||
|
||||
public int getOrder() {
|
||||
return this.order;
|
||||
}
|
||||
|
||||
public void setOrder(int order) {
|
||||
this.order = order;
|
||||
}
|
||||
|
||||
public Object doConcurrentOperation(ProceedingJoinPoint pjp) throws Throwable {
|
||||
int numAttempts = 0;
|
||||
PessimisticLockingFailureException lockFailureException;
|
||||
do {
|
||||
numAttempts++;
|
||||
try {
|
||||
return pjp.proceed();
|
||||
}
|
||||
catch(PessimisticLockingFailureException ex) {
|
||||
lockFailureException = ex;
|
||||
}
|
||||
} while(numAttempts <= this.maxRetries);
|
||||
throw lockFailureException;
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
class ConcurrentOperationExecutor : Ordered {
|
||||
|
||||
private val DEFAULT_MAX_RETRIES = 2
|
||||
|
||||
private var maxRetries = DEFAULT_MAX_RETRIES
|
||||
private var order = 1
|
||||
|
||||
fun setMaxRetries(maxRetries: Int) {
|
||||
this.maxRetries = maxRetries
|
||||
}
|
||||
|
||||
override fun getOrder(): Int {
|
||||
return this.order
|
||||
}
|
||||
|
||||
fun setOrder(order: Int) {
|
||||
this.order = order
|
||||
}
|
||||
|
||||
fun doConcurrentOperation(pjp: ProceedingJoinPoint): Any? {
|
||||
var numAttempts = 0
|
||||
var lockFailureException: PessimisticLockingFailureException
|
||||
do {
|
||||
numAttempts++
|
||||
try {
|
||||
return pjp.proceed()
|
||||
} catch (ex: PessimisticLockingFailureException) {
|
||||
lockFailureException = ex
|
||||
}
|
||||
|
||||
} while (numAttempts <= this.maxRetries)
|
||||
throw lockFailureException
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
Note that the aspect implements the `Ordered` interface so that we can set the precedence of
|
||||
the aspect higher than the transaction advice (we want a fresh transaction each time we
|
||||
retry). The `maxRetries` and `order` properties are both configured by Spring. The
|
||||
main action happens in the `doConcurrentOperation` around advice method. We try to
|
||||
proceed. If we fail with a `PessimisticLockingFailureException`, we try again,
|
||||
unless we have exhausted all of our retry attempts.
|
||||
|
||||
NOTE: This class is identical to the one used in the @AspectJ example, but with the
|
||||
annotations removed.
|
||||
|
||||
The corresponding Spring configuration is as follows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:config>
|
||||
|
||||
<aop:aspect id="concurrentOperationRetry" ref="concurrentOperationExecutor">
|
||||
|
||||
<aop:pointcut id="idempotentOperation"
|
||||
expression="execution(* com.xyz.service.*.*(..))"/>
|
||||
|
||||
<aop:around
|
||||
pointcut-ref="idempotentOperation"
|
||||
method="doConcurrentOperation"/>
|
||||
|
||||
</aop:aspect>
|
||||
|
||||
</aop:config>
|
||||
|
||||
<bean id="concurrentOperationExecutor"
|
||||
class="com.xyz.service.impl.ConcurrentOperationExecutor">
|
||||
<property name="maxRetries" value="3"/>
|
||||
<property name="order" value="100"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
Notice that, for the time being, we assume that all business services are idempotent. If
|
||||
this is not the case, we can refine the aspect so that it retries only genuinely
|
||||
idempotent operations, by introducing an `Idempotent` annotation and using the annotation
|
||||
to annotate the implementation of service operations, as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim",role="primary"]
|
||||
----
|
||||
@Retention(RetentionPolicy.RUNTIME)
|
||||
// marker annotation
|
||||
public @interface Idempotent {
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim",role="secondary"]
|
||||
----
|
||||
@Retention(AnnotationRetention.RUNTIME)
|
||||
// marker annotation
|
||||
annotation class Idempotent
|
||||
----
|
||||
======
|
||||
|
||||
The
|
||||
change to the aspect to retry only idempotent operations involves refining the
|
||||
pointcut expression so that only `@Idempotent` operations match, as follows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim"]
|
||||
----
|
||||
<aop:pointcut id="idempotentOperation"
|
||||
expression="execution(* com.xyz.service.*.*(..)) and
|
||||
@annotation(com.xyz.service.Idempotent)"/>
|
||||
----
|
||||
|
||||
|
||||
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -1,565 +0,0 @@
|
||||
[[aot]]
|
||||
= Ahead of Time Optimizations
|
||||
|
||||
This chapter covers Spring's Ahead of Time (AOT) optimizations.
|
||||
|
||||
For AOT support specific to integration tests, see xref:testing/testcontext-framework/aot.adoc[Ahead of Time Support for Tests].
|
||||
|
||||
[[aot.introduction]]
|
||||
== Introduction to Ahead of Time Optimizations
|
||||
|
||||
Spring's support for AOT optimizations is meant to inspect an `ApplicationContext` at build time and apply decisions and discovery logic that usually happens at runtime.
|
||||
Doing so allows building an application startup arrangement that is more straightforward and focused on a fixed set of features based mainly on the classpath and the `Environment`.
|
||||
|
||||
Applying such optimizations early implies the following restrictions:
|
||||
|
||||
* The classpath is fixed and fully defined at build time.
|
||||
* The beans defined in your application cannot change at runtime, meaning:
|
||||
** `@Profile`, in particular profile-specific configuration, needs to be chosen at build time and is automatically enabled at runtime when AOT is enabled.
|
||||
** `Environment` properties that impact the presence of a bean (`@Conditional`) are only considered at build time.
|
||||
* Bean definitions with instance suppliers (lambdas or method references) cannot be transformed ahead-of-time.
|
||||
* Beans registered as singletons (using `registerSingleton`, typically from
|
||||
`ConfigurableListableBeanFactory`) cannot be transformed ahead-of-time either.
|
||||
* As we cannot rely on the instance, make sure that the bean type is as precise as
|
||||
possible.
|
||||
|
||||
TIP: See also the xref:core/aot.adoc#aot.bestpractices[] section.
|
||||
|
||||
When these restrictions are in place, it becomes possible to perform ahead-of-time processing at build time and generate additional assets.
|
||||
A Spring AOT processed application typically generates:
|
||||
|
||||
* Java source code
|
||||
* Bytecode (usually for dynamic proxies)
|
||||
* {spring-framework-api}/aot/hint/RuntimeHints.html[`RuntimeHints`] for the use of reflection, resource loading, serialization, and JDK proxies
|
||||
|
||||
NOTE: At the moment, AOT is focused on allowing Spring applications to be deployed as native images using GraalVM.
|
||||
We intend to support more JVM-based use cases in future generations.
|
||||
|
||||
[[aot.basics]]
|
||||
== AOT engine overview
|
||||
|
||||
The entry point of the AOT engine for processing an `ApplicationContext` is `ApplicationContextAotGenerator`. It takes care of the following steps, based on a `GenericApplicationContext` that represents the application to optimize and a {spring-framework-api}/aot/generate/GenerationContext.html[`GenerationContext`]:
|
||||
|
||||
* Refresh an `ApplicationContext` for AOT processing. Contrary to a traditional refresh, this version only creates bean definitions, not bean instances.
|
||||
* Invoke the available `BeanFactoryInitializationAotProcessor` implementations and apply their contributions against the `GenerationContext`.
|
||||
For instance, a core implementation iterates over all candidate bean definitions and generates the necessary code to restore the state of the `BeanFactory`.
|
||||
|
||||
Once this process completes, the `GenerationContext` will have been updated with the generated code, resources, and classes that are necessary for the application to run.
|
||||
The `RuntimeHints` instance can also be used to generate the relevant GraalVM native image configuration files.
|
||||
|
||||
`ApplicationContextAotGenerator#processAheadOfTime` returns the class name of the `ApplicationContextInitializer` entry point that allows the context to be started with AOT optimizations.
|
||||
|
||||
Those steps are covered in greater detail in the sections below.
|
||||
|
||||
[[aot.refresh]]
|
||||
== Refresh for AOT Processing
|
||||
|
||||
Refresh for AOT processing is supported on all `GenericApplicationContext` implementations.
|
||||
An application context is created with any number of entry points, usually in the form of `@Configuration`-annotated classes.
|
||||
|
||||
Let's look at a basic example:
|
||||
|
||||
include-code::./AotProcessingSample[tag=myapplication]
|
||||
|
||||
Starting this application with the regular runtime involves a number of steps including classpath scanning, configuration class parsing, bean instantiation, and lifecycle callback handling.
|
||||
Refresh for AOT processing only applies a subset of what happens with a xref:core/beans/introduction.adoc[regular `refresh`].
|
||||
AOT processing can be triggered as follows:
|
||||
|
||||
include-code::./AotProcessingSample[tag=aotcontext]
|
||||
|
||||
In this mode, xref:core/beans/factory-extension.adoc#beans-factory-extension-factory-postprocessors[`BeanFactoryPostProcessor` implementations] are invoked as usual.
|
||||
This includes configuration class parsing, import selectors, classpath scanning, etc.
|
||||
Such steps make sure that the `BeanRegistry` contains the relevant bean definitions for the application.
|
||||
If bean definitions are guarded by conditions (such as `@Profile`), these are evaluated,
|
||||
and bean definitions that don't match their conditions are discarded at this stage.
|
||||
|
||||
If custom code needs to register extra beans programmatically, make sure that custom
|
||||
registration code uses `BeanDefinitionRegistry` instead of `BeanFactory` as only bean
|
||||
definitions are taken into account. A good pattern is to implement
|
||||
`ImportBeanDefinitionRegistrar` and register it via an `@Import` on one of your
|
||||
configuration classes.
|
||||
|
||||
Because this mode does not actually create bean instances, `BeanPostProcessor` implementations are not invoked, except for specific variants that are relevant for AOT processing.
|
||||
These are:
|
||||
|
||||
* `MergedBeanDefinitionPostProcessor` implementations post-process bean definitions to extract additional settings, such as `init` and `destroy` methods.
|
||||
* `SmartInstantiationAwareBeanPostProcessor` implementations determine a more precise bean type if necessary.
|
||||
This makes sure to create any proxy that will be required at runtime.
|
||||
|
||||
Once this part completes, the `BeanFactory` contains the bean definitions that are necessary for the application to run. It does not trigger bean instantiation but allows the AOT engine to inspect the beans that will be created at runtime.
|
||||
|
||||
[[aot.bean-factory-initialization-contributions]]
|
||||
== Bean Factory Initialization AOT Contributions
|
||||
|
||||
Components that want to participate in this step can implement the {spring-framework-api}/beans/factory/aot/BeanFactoryInitializationAotProcessor.html[`BeanFactoryInitializationAotProcessor`] interface.
|
||||
Each implementation can return an AOT contribution, based on the state of the bean factory.
|
||||
|
||||
An AOT contribution is a component that contributes generated code which reproduces a particular behavior.
|
||||
It can also contribute `RuntimeHints` to indicate the need for reflection, resource loading, serialization, or JDK proxies.
|
||||
|
||||
A `BeanFactoryInitializationAotProcessor` implementation can be registered in `META-INF/spring/aot.factories` with a key equal to the fully-qualified name of the interface.
|
||||
|
||||
The `BeanFactoryInitializationAotProcessor` interface can also be implemented directly by a bean.
|
||||
In this mode, the bean provides an AOT contribution equivalent to the feature it provides with a regular runtime.
|
||||
Consequently, such a bean is automatically excluded from the AOT-optimized context.
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
If a bean implements the `BeanFactoryInitializationAotProcessor` interface, the bean and **all** of its dependencies will be initialized during AOT processing.
|
||||
We generally recommend that this interface is only implemented by infrastructure beans such as `BeanFactoryPostProcessor` which have limited dependencies and are already initialized early in the bean factory lifecycle.
|
||||
If such a bean is registered using an `@Bean` factory method, ensure the method is `static` so that its enclosing `@Configuration` class does not have to be initialized.
|
||||
====
|
||||
|
||||
|
||||
[[aot.bean-registration-contributions]]
|
||||
=== Bean Registration AOT Contributions
|
||||
|
||||
A core `BeanFactoryInitializationAotProcessor` implementation is responsible for collecting the necessary contributions for each candidate `BeanDefinition`.
|
||||
It does so using a dedicated `BeanRegistrationAotProcessor`.
|
||||
|
||||
This interface is used as follows:
|
||||
|
||||
* Implemented by a `BeanPostProcessor` bean, to replace its runtime behavior.
|
||||
For instance xref:core/beans/factory-extension.adoc#beans-factory-extension-bpp-examples-aabpp[`AutowiredAnnotationBeanPostProcessor`] implements this interface to generate code that injects members annotated with `@Autowired`.
|
||||
* Implemented by a type registered in `META-INF/spring/aot.factories` with a key equal to the fully-qualified name of the interface.
|
||||
Typically used when the bean definition needs to be tuned for specific features of the core framework.
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
If a bean implements the `BeanRegistrationAotProcessor` interface, the bean and **all** of its dependencies will be initialized during AOT processing.
|
||||
We generally recommend that this interface is only implemented by infrastructure beans such as `BeanFactoryPostProcessor` which have limited dependencies and are already initialized early in the bean factory lifecycle.
|
||||
If such a bean is registered using an `@Bean` factory method, ensure the method is `static` so that its enclosing `@Configuration` class does not have to be initialized.
|
||||
====
|
||||
|
||||
If no `BeanRegistrationAotProcessor` handles a particular registered bean, a default implementation processes it.
|
||||
This is the default behavior, since tuning the generated code for a bean definition should be restricted to corner cases.
|
||||
|
||||
Taking our previous example, let's assume that `DataSourceConfiguration` is as follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Configuration(proxyBeanMethods = false)
|
||||
public class DataSourceConfiguration {
|
||||
|
||||
@Bean
|
||||
public SimpleDataSource dataSource() {
|
||||
return new SimpleDataSource();
|
||||
}
|
||||
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
@Configuration(proxyBeanMethods = false)
|
||||
class DataSourceConfiguration {
|
||||
|
||||
@Bean
|
||||
fun dataSource() = SimpleDataSource()
|
||||
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
WARNING: Kotlin class names with backticks that use invalid Java identifiers (not starting with a letter, containing spaces, etc.) are not supported.
|
||||
|
||||
Since there isn't any particular condition on this class, `dataSourceConfiguration` and `dataSource` are identified as candidates.
|
||||
The AOT engine will convert the configuration class above to code similar to the following:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,role="primary"]
|
||||
----
|
||||
/**
|
||||
* Bean definitions for {@link DataSourceConfiguration}
|
||||
*/
|
||||
@Generated
|
||||
public class DataSourceConfiguration__BeanDefinitions {
|
||||
/**
|
||||
* Get the bean definition for 'dataSourceConfiguration'
|
||||
*/
|
||||
public static BeanDefinition getDataSourceConfigurationBeanDefinition() {
|
||||
Class<?> beanType = DataSourceConfiguration.class;
|
||||
RootBeanDefinition beanDefinition = new RootBeanDefinition(beanType);
|
||||
beanDefinition.setInstanceSupplier(DataSourceConfiguration::new);
|
||||
return beanDefinition;
|
||||
}
|
||||
|
||||
/**
|
||||
* Get the bean instance supplier for 'dataSource'.
|
||||
*/
|
||||
private static BeanInstanceSupplier<SimpleDataSource> getDataSourceInstanceSupplier() {
|
||||
return BeanInstanceSupplier.<SimpleDataSource>forFactoryMethod(DataSourceConfiguration.class, "dataSource")
|
||||
.withGenerator((registeredBean) -> registeredBean.getBeanFactory().getBean(DataSourceConfiguration.class).dataSource());
|
||||
}
|
||||
|
||||
/**
|
||||
* Get the bean definition for 'dataSource'
|
||||
*/
|
||||
public static BeanDefinition getDataSourceBeanDefinition() {
|
||||
Class<?> beanType = SimpleDataSource.class;
|
||||
RootBeanDefinition beanDefinition = new RootBeanDefinition(beanType);
|
||||
beanDefinition.setInstanceSupplier(getDataSourceInstanceSupplier());
|
||||
return beanDefinition;
|
||||
}
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
NOTE: The exact code generated may differ depending on the exact nature of your bean definitions.
|
||||
|
||||
TIP: Each generated class is annotated with `org.springframework.aot.generate.Generated` to
|
||||
identify them if they need to be excluded, for instance by static analysis tools.
|
||||
|
||||
The generated code above creates bean definitions equivalent to the `@Configuration` class, but in a direct way and without the use of reflection if at all possible.
|
||||
There is a bean definition for `dataSourceConfiguration` and one for `dataSourceBean`.
|
||||
When a `datasource` instance is required, a `BeanInstanceSupplier` is called.
|
||||
This supplier invokes the `dataSource()` method on the `dataSourceConfiguration` bean.
|
||||
|
||||
[[aot.running]]
|
||||
== Running with AOT optimizations
|
||||
|
||||
AOT is a mandatory step to transform a Spring application to a native executable, so it
|
||||
is automatically enabled when running in this mode. It is possible to use those optimizations
|
||||
on the JVM by setting the `spring.aot.enabled` System property to `true`.
|
||||
|
||||
NOTE: When AOT optimizations are included, some decisions that have been taken at build-time
|
||||
are hard-coded in the application setup. For instance, profiles that have been enabled at
|
||||
build-time are automatically enabled at runtime as well.
|
||||
|
||||
[[aot.bestpractices]]
|
||||
== Best Practices
|
||||
|
||||
The AOT engine is designed to handle as many use cases as possible, with no code change in applications.
|
||||
However, keep in mind that some optimizations are made at build time based on a static definition of the beans.
|
||||
|
||||
This section lists the best practices that make sure your application is ready for AOT.
|
||||
|
||||
[[aot.bestpractices.bean-registration]]
|
||||
== Programmatic bean registration
|
||||
|
||||
The AOT engine takes care of the `@Configuration` model and any callback that might be
|
||||
invoked as part of processing your configuration. If you need to register additional
|
||||
beans programmatically, make sure to use a `BeanDefinitionRegistry` to register
|
||||
bean definitions.
|
||||
|
||||
This can typically be done via a `BeanDefinitionRegistryPostProcessor`. Note that, if it
|
||||
is registered itself as a bean, it will be invoked again at runtime unless you make
|
||||
sure to implement `BeanFactoryInitializationAotProcessor` as well. A more idiomatic
|
||||
way is to implement `ImportBeanDefinitionRegistrar` and register it using `@Import` on
|
||||
one of your configuration classes. This invokes your custom code as part of configuration
|
||||
class parsing.
|
||||
|
||||
If you declare additional beans programmatically using a different callback, they are
|
||||
likely not going to be handled by the AOT engine, and therefore no hints are going to be
|
||||
generated for them. Depending on the environment, those beans may not be registered at
|
||||
all. For instance, classpath scanning does not work in a native image as there is no
|
||||
notion of a classpath. For cases like this, it is crucial that the scanning happens at
|
||||
build time.
|
||||
|
||||
[[aot.bestpractices.bean-type]]
|
||||
=== Expose The Most Precise Bean Type
|
||||
|
||||
While your application may interact with an interface that a bean implements, it is still very important to declare the most precise type.
|
||||
The AOT engine performs additional checks on the bean type, such as detecting the presence of `@Autowired` members or lifecycle callback methods.
|
||||
|
||||
For `@Configuration` classes, make sure that the return type of the factory `@Bean` method is as precise as possible.
|
||||
Consider the following example:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Configuration(proxyBeanMethods = false)
|
||||
public class UserConfiguration {
|
||||
|
||||
@Bean
|
||||
public MyInterface myInterface() {
|
||||
return new MyImplementation();
|
||||
}
|
||||
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
In the example above, the declared type for the `myInterface` bean is `MyInterface`.
|
||||
None of the usual post-processing will take `MyImplementation` into account.
|
||||
For instance, if there is an annotated handler method on `MyImplementation` that the context should register, it won’t be detected upfront.
|
||||
|
||||
The example above should be rewritten as follows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Configuration(proxyBeanMethods = false)
|
||||
public class UserConfiguration {
|
||||
|
||||
@Bean
|
||||
public MyImplementation myInterface() {
|
||||
return new MyImplementation();
|
||||
}
|
||||
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
If you are registering bean definitions programmatically, consider using `RootBeanBefinition` as it allows to specify a `ResolvableType` that handles generics.
|
||||
|
||||
[[aot.bestpractices.constructors]]
|
||||
=== Avoid Multiple Constructors
|
||||
|
||||
The container is able to choose the most appropriate constructor to use based on several candidates.
|
||||
However, this is not a best practice and flagging the preferred constructor with `@Autowired` if necessary is preferred.
|
||||
|
||||
In case you are working on a code base that you cannot modify, you can set the {spring-framework-api}/beans/factory/support/AbstractBeanDefinition.html#PREFERRED_CONSTRUCTORS_ATTRIBUTE[`preferredConstructors` attribute] on the related bean definition to indicate which constructor should be used.
|
||||
|
||||
[[aot.bestpractices.factory-bean]]
|
||||
=== FactoryBean
|
||||
|
||||
`FactoryBean` should be used with care as it introduces an intermediate layer in terms of bean type resolution that may not be conceptually necessary.
|
||||
As a rule of thumb, if the `FactoryBean` instance does not hold long-term state and is not needed at a later point in time at runtime, it should be replaced by a regular factory method, possibly with a `FactoryBean` adapter layer on top (for declarative configuration purposes).
|
||||
|
||||
If your `FactoryBean` implementation does not resolve the object type (i.e. `T`), extra care is necessary.
|
||||
Consider the following example:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class ClientFactoryBean<T extends AbstractClient> implements FactoryBean<T> {
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
A concrete client declaration should provide a resolved generic for the client, as shown in the following example:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Configuration(proxyBeanMethods = false)
|
||||
public class UserConfiguration {
|
||||
|
||||
@Bean
|
||||
public ClientFactoryBean<MyClient> myClient() {
|
||||
return new ClientFactoryBean<>(...);
|
||||
}
|
||||
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
If the `FactoryBean` bean definition is registered programmatically, make sure to follow these steps:
|
||||
|
||||
1. Use `RootBeanDefinition`.
|
||||
2. Set the `beanClass` to the `FactoryBean` class so that AOT knows that it is an intermediate layer.
|
||||
3. Set the `ResolvableType` to a resolved generic, which makes sure the most precise type is exposed.
|
||||
|
||||
The following example showcases a basic definition:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
RootBeanDefinition beanDefinition = new RootBeanDefinition(ClientFactoryBean.class);
|
||||
beanDefinition.setTargetType(ResolvableType.forClassWithGenerics(ClientFactoryBean.class, MyClient.class));
|
||||
// ...
|
||||
registry.registerBeanDefinition("myClient", beanDefinition);
|
||||
----
|
||||
======
|
||||
|
||||
[[aot.bestpractices.jpa]]
|
||||
=== JPA
|
||||
|
||||
The JPA persistence unit has to be known upfront for certain optimizations to apply. Consider the following basic example:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Bean
|
||||
LocalContainerEntityManagerFactoryBean customDBEntityManagerFactory(DataSource dataSource) {
|
||||
LocalContainerEntityManagerFactoryBean factoryBean = new LocalContainerEntityManagerFactoryBean();
|
||||
factoryBean.setDataSource(dataSource);
|
||||
factoryBean.setPackagesToScan("com.example.app");
|
||||
return factoryBean;
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
To make sure the scanning occurs ahead of time, a `PersistenceManagedTypes` bean must be declared and used by the
|
||||
factory bean definition, as shown by the following example:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Bean
|
||||
PersistenceManagedTypes persistenceManagedTypes(ResourceLoader resourceLoader) {
|
||||
return new PersistenceManagedTypesScanner(resourceLoader)
|
||||
.scan("com.example.app");
|
||||
}
|
||||
|
||||
@Bean
|
||||
LocalContainerEntityManagerFactoryBean customDBEntityManagerFactory(DataSource dataSource, PersistenceManagedTypes managedTypes) {
|
||||
LocalContainerEntityManagerFactoryBean factoryBean = new LocalContainerEntityManagerFactoryBean();
|
||||
factoryBean.setDataSource(dataSource);
|
||||
factoryBean.setManagedTypes(managedTypes);
|
||||
return factoryBean;
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
[[aot.hints]]
|
||||
== Runtime Hints
|
||||
|
||||
Running an application as a native image requires additional information compared to a regular JVM runtime.
|
||||
For instance, GraalVM needs to know ahead of time if a component uses reflection.
|
||||
Similarly, classpath resources are not included in a native image unless specified explicitly.
|
||||
Consequently, if the application needs to load a resource, it must be referenced from the corresponding GraalVM native image configuration file.
|
||||
|
||||
The {spring-framework-api}/aot/hint/RuntimeHints.html[`RuntimeHints`] API collects the need for reflection, resource loading, serialization, and JDK proxies at runtime.
|
||||
The following example makes sure that `config/app.properties` can be loaded from the classpath at runtime within a native image:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
runtimeHints.resources().registerPattern("config/app.properties");
|
||||
----
|
||||
======
|
||||
|
||||
A number of contracts are handled automatically during AOT processing.
|
||||
For instance, the return type of a `@Controller` method is inspected, and relevant reflection hints are added if Spring detects that the type should be serialized (typically to JSON).
|
||||
|
||||
For cases that the core container cannot infer, you can register such hints programmatically.
|
||||
A number of convenient annotations are also provided for common use cases.
|
||||
|
||||
|
||||
[[aot.hints.import-runtime-hints]]
|
||||
=== `@ImportRuntimeHints`
|
||||
|
||||
`RuntimeHintsRegistrar` implementations allow you to get a callback to the `RuntimeHints` instance managed by the AOT engine.
|
||||
Implementations of this interface can be registered using `@ImportRuntimeHints` on any Spring bean or `@Bean` factory method.
|
||||
`RuntimeHintsRegistrar` implementations are detected and invoked at build time.
|
||||
|
||||
include-code::./SpellCheckService[]
|
||||
|
||||
If at all possible, `@ImportRuntimeHints` should be used as close as possible to the component that requires the hints.
|
||||
This way, if the component is not contributed to the `BeanFactory`, the hints won't be contributed either.
|
||||
|
||||
It is also possible to register an implementation statically by adding an entry in `META-INF/spring/aot.factories` with a key equal to the fully-qualified name of the `RuntimeHintsRegistrar` interface.
|
||||
|
||||
|
||||
[[aot.hints.reflective]]
|
||||
=== `@Reflective`
|
||||
|
||||
{spring-framework-api}/aot/hint/annotation/Reflective.html[`@Reflective`] provides an idiomatic way to flag the need for reflection on an annotated element.
|
||||
For instance, `@EventListener` is meta-annotated with `@Reflective` since the underlying implementation invokes the annotated method using reflection.
|
||||
|
||||
By default, only Spring beans are considered, and an invocation hint is registered for the annotated element.
|
||||
This can be tuned by specifying a custom `ReflectiveProcessor` implementation via the
|
||||
`@Reflective` annotation.
|
||||
|
||||
Library authors can reuse this annotation for their own purposes.
|
||||
If components other than Spring beans need to be processed, a `BeanFactoryInitializationAotProcessor` can detect the relevant types and use `ReflectiveRuntimeHintsRegistrar` to process them.
|
||||
|
||||
|
||||
[[aot.hints.register-reflection-for-binding]]
|
||||
=== `@RegisterReflectionForBinding`
|
||||
|
||||
{spring-framework-api}/aot/hint/annotation/RegisterReflectionForBinding.html[`@RegisterReflectionForBinding`] is a specialization of `@Reflective` that registers the need for serializing arbitrary types.
|
||||
A typical use case is the use of DTOs that the container cannot infer, such as using a web client within a method body.
|
||||
|
||||
`@RegisterReflectionForBinding` can be applied to any Spring bean at the class level, but it can also be applied directly to a method, field, or constructor to better indicate where the hints are actually required.
|
||||
The following example registers `Account` for serialization.
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Component
|
||||
public class OrderService {
|
||||
|
||||
@RegisterReflectionForBinding(Account.class)
|
||||
public void process(Order order) {
|
||||
// ...
|
||||
}
|
||||
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
[[aot.hints.testing]]
|
||||
=== Testing Runtime Hints
|
||||
|
||||
Spring Core also ships `RuntimeHintsPredicates`, a utility for checking that existing hints match a particular use case.
|
||||
This can be used in your own tests to validate that a `RuntimeHintsRegistrar` contains the expected results.
|
||||
We can write a test for our `SpellCheckService` and ensure that we will be able to load a dictionary at runtime:
|
||||
|
||||
include-code::./SpellCheckServiceTests[tag=hintspredicates]
|
||||
|
||||
With `RuntimeHintsPredicates`, we can check for reflection, resource, serialization, or proxy generation hints.
|
||||
This approach works well for unit tests but implies that the runtime behavior of a component is well known.
|
||||
|
||||
You can learn more about the global runtime behavior of an application by running its test suite (or the app itself) with the {graalvm-docs}/native-image/metadata/AutomaticMetadataCollection/[GraalVM tracing agent].
|
||||
This agent will record all relevant calls requiring GraalVM hints at runtime and write them out as JSON configuration files.
|
||||
|
||||
For more targeted discovery and testing, Spring Framework ships a dedicated module with core AOT testing utilities, `"org.springframework:spring-core-test"`.
|
||||
This module contains the RuntimeHints Agent, a Java agent that records all method invocations that are related to runtime hints and helps you to assert that a given `RuntimeHints` instance covers all recorded invocations.
|
||||
Let's consider a piece of infrastructure for which we'd like to test the hints we're contributing during the AOT processing phase.
|
||||
|
||||
include-code::./SampleReflection[]
|
||||
|
||||
We can then write a unit test (no native compilation required) that checks our contributed hints:
|
||||
|
||||
include-code::./SampleReflectionRuntimeHintsTests[]
|
||||
|
||||
If you forgot to contribute a hint, the test will fail and provide some details about the invocation:
|
||||
|
||||
[source,txt,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
org.springframework.docs.core.aot.hints.testing.SampleReflection performReflection
|
||||
INFO: Spring version:6.0.0-SNAPSHOT
|
||||
|
||||
Missing <"ReflectionHints"> for invocation <java.lang.Class#forName>
|
||||
with arguments ["org.springframework.core.SpringVersion",
|
||||
false,
|
||||
jdk.internal.loader.ClassLoaders$AppClassLoader@251a69d7].
|
||||
Stacktrace:
|
||||
<"org.springframework.util.ClassUtils#forName, Line 284
|
||||
io.spring.runtimehintstesting.SampleReflection#performReflection, Line 19
|
||||
io.spring.runtimehintstesting.SampleReflectionRuntimeHintsTests#lambda$shouldRegisterReflectionHints$0, Line 25
|
||||
----
|
||||
|
||||
There are various ways to configure this Java agent in your build, so please refer to the documentation of your build tool and test execution plugin.
|
||||
The agent itself can be configured to instrument specific packages (by default, only `org.springframework` is instrumented).
|
||||
You'll find more details in the {spring-framework-code}/buildSrc/README.md[Spring Framework `buildSrc` README] file.
|
||||
@@ -1,7 +0,0 @@
|
||||
[[appendix]]
|
||||
= Appendix
|
||||
:page-section-summary-toc: 1
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,57 +0,0 @@
|
||||
[[application-startup-steps]]
|
||||
= Application Startup Steps
|
||||
|
||||
This part of the appendix lists the existing `StartupSteps` that the core container is instrumented with.
|
||||
|
||||
WARNING: The name and detailed information about each startup step is not part of the public contract and
|
||||
is subject to change; this is considered as an implementation detail of the core container and will follow
|
||||
its behavior changes.
|
||||
|
||||
.Application startup steps defined in the core container
|
||||
|===
|
||||
| Name| Description| Tags
|
||||
|
||||
| `spring.beans.instantiate`
|
||||
| Instantiation of a bean and its dependencies.
|
||||
| `beanName` the name of the bean, `beanType` the type required at the injection point.
|
||||
|
||||
| `spring.beans.smart-initialize`
|
||||
| Initialization of `SmartInitializingSingleton` beans.
|
||||
| `beanName` the name of the bean.
|
||||
|
||||
| `spring.context.annotated-bean-reader.create`
|
||||
| Creation of the `AnnotatedBeanDefinitionReader`.
|
||||
|
|
||||
|
||||
| `spring.context.base-packages.scan`
|
||||
| Scanning of base packages.
|
||||
| `packages` array of base packages for scanning.
|
||||
|
||||
| `spring.context.beans.post-process`
|
||||
| Beans post-processing phase.
|
||||
|
|
||||
|
||||
| `spring.context.bean-factory.post-process`
|
||||
| Invocation of the `BeanFactoryPostProcessor` beans.
|
||||
| `postProcessor` the current post-processor.
|
||||
|
||||
| `spring.context.beandef-registry.post-process`
|
||||
| Invocation of the `BeanDefinitionRegistryPostProcessor` beans.
|
||||
| `postProcessor` the current post-processor.
|
||||
|
||||
| `spring.context.component-classes.register`
|
||||
| Registration of component classes through `AnnotationConfigApplicationContext#register`.
|
||||
| `classes` array of given classes for registration.
|
||||
|
||||
| `spring.context.config-classes.enhance`
|
||||
| Enhancement of configuration classes with CGLIB proxies.
|
||||
| `classCount` count of enhanced classes.
|
||||
|
||||
| `spring.context.config-classes.parse`
|
||||
| Configuration classes parsing phase with the `ConfigurationClassPostProcessor`.
|
||||
| `classCount` count of processed classes.
|
||||
|
||||
| `spring.context.refresh`
|
||||
| Application context refresh phase.
|
||||
|
|
||||
|===
|
||||
@@ -1,672 +0,0 @@
|
||||
[[xsd-schemas]]
|
||||
= XML Schemas
|
||||
|
||||
This part of the appendix lists XML schemas related to the core container.
|
||||
|
||||
|
||||
|
||||
[[xsd-schemas-util]]
|
||||
== The `util` Schema
|
||||
|
||||
As the name implies, the `util` tags deal with common, utility configuration
|
||||
issues, such as configuring collections, referencing constants, and so forth.
|
||||
To use the tags in the `util` schema, you need to have the following preamble at the top
|
||||
of your Spring XML configuration file (the text in the snippet references the
|
||||
correct schema so that the tags in the `util` namespace are available to you):
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<beans xmlns="http://www.springframework.org/schema/beans"
|
||||
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
|
||||
xmlns:util="http://www.springframework.org/schema/util"
|
||||
xsi:schemaLocation="
|
||||
http://www.springframework.org/schema/beans https://www.springframework.org/schema/beans/spring-beans.xsd
|
||||
http://www.springframework.org/schema/util https://www.springframework.org/schema/util/spring-util.xsd">
|
||||
|
||||
<!-- bean definitions here -->
|
||||
|
||||
</beans>
|
||||
----
|
||||
|
||||
|
||||
[[xsd-schemas-util-constant]]
|
||||
=== Using `<util:constant/>`
|
||||
|
||||
Consider the following bean definition:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="..." class="...">
|
||||
<property name="isolation">
|
||||
<bean id="java.sql.Connection.TRANSACTION_SERIALIZABLE"
|
||||
class="org.springframework.beans.factory.config.FieldRetrievingFactoryBean" />
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
The preceding configuration uses a Spring `FactoryBean` implementation (the
|
||||
`FieldRetrievingFactoryBean`) to set the value of the `isolation` property on a bean
|
||||
to the value of the `java.sql.Connection.TRANSACTION_SERIALIZABLE` constant. This is
|
||||
all well and good, but it is verbose and (unnecessarily) exposes Spring's internal
|
||||
plumbing to the end user.
|
||||
|
||||
The following XML Schema-based version is more concise, clearly expresses the
|
||||
developer's intent ("`inject this constant value`"), and it reads better:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="..." class="...">
|
||||
<property name="isolation">
|
||||
<util:constant static-field="java.sql.Connection.TRANSACTION_SERIALIZABLE"/>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
[[xsd-schemas-util-frfb]]
|
||||
==== Setting a Bean Property or Constructor Argument from a Field Value
|
||||
|
||||
{spring-framework-api}/beans/factory/config/FieldRetrievingFactoryBean.html[`FieldRetrievingFactoryBean`]
|
||||
is a `FactoryBean` that retrieves a `static` or non-static field value. It is typically
|
||||
used for retrieving `public` `static` `final` constants, which may then be used to set a
|
||||
property value or constructor argument for another bean.
|
||||
|
||||
The following example shows how a `static` field is exposed, by using the
|
||||
{spring-framework-api}/beans/factory/config/FieldRetrievingFactoryBean.html#setStaticField(java.lang.String)[`staticField`]
|
||||
property:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="myField"
|
||||
class="org.springframework.beans.factory.config.FieldRetrievingFactoryBean">
|
||||
<property name="staticField" value="java.sql.Connection.TRANSACTION_SERIALIZABLE"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
There is also a convenience usage form where the `static` field is specified as the bean
|
||||
name, as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="java.sql.Connection.TRANSACTION_SERIALIZABLE"
|
||||
class="org.springframework.beans.factory.config.FieldRetrievingFactoryBean"/>
|
||||
----
|
||||
|
||||
This does mean that there is no longer any choice in what the bean `id` is (so any other
|
||||
bean that refers to it also has to use this longer name), but this form is very
|
||||
concise to define and very convenient to use as an inner bean since the `id` does not have
|
||||
to be specified for the bean reference, as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="..." class="...">
|
||||
<property name="isolation">
|
||||
<bean id="java.sql.Connection.TRANSACTION_SERIALIZABLE"
|
||||
class="org.springframework.beans.factory.config.FieldRetrievingFactoryBean" />
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
You can also access a non-static (instance) field of another bean, as
|
||||
described in the API documentation for the
|
||||
{spring-framework-api}/beans/factory/config/FieldRetrievingFactoryBean.html[`FieldRetrievingFactoryBean`]
|
||||
class.
|
||||
|
||||
Injecting enumeration values into beans as either property or constructor arguments is
|
||||
easy to do in Spring. You do not actually have to do anything or know anything about
|
||||
the Spring internals (or even about classes such as the `FieldRetrievingFactoryBean`).
|
||||
The following example enumeration shows how easy injecting an enum value is:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary",chomp="-packages"]
|
||||
----
|
||||
package jakarta.persistence;
|
||||
|
||||
public enum PersistenceContextType {
|
||||
|
||||
TRANSACTION,
|
||||
EXTENDED
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary",chomp="-packages"]
|
||||
----
|
||||
package jakarta.persistence
|
||||
|
||||
enum class PersistenceContextType {
|
||||
|
||||
TRANSACTION,
|
||||
EXTENDED
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
Now consider the following setter of type `PersistenceContextType` and the corresponding bean definition:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary",chomp="-packages"]
|
||||
----
|
||||
package example;
|
||||
|
||||
public class Client {
|
||||
|
||||
private PersistenceContextType persistenceContextType;
|
||||
|
||||
public void setPersistenceContextType(PersistenceContextType type) {
|
||||
this.persistenceContextType = type;
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary",chomp="-packages"]
|
||||
----
|
||||
package example
|
||||
|
||||
class Client {
|
||||
|
||||
lateinit var persistenceContextType: PersistenceContextType
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean class="example.Client">
|
||||
<property name="persistenceContextType" value="TRANSACTION"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
|
||||
[[xsd-schemas-util-property-path]]
|
||||
=== Using `<util:property-path/>`
|
||||
|
||||
Consider the following example:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- target bean to be referenced by name -->
|
||||
<bean id="testBean" class="org.springframework.beans.TestBean" scope="prototype">
|
||||
<property name="age" value="10"/>
|
||||
<property name="spouse">
|
||||
<bean class="org.springframework.beans.TestBean">
|
||||
<property name="age" value="11"/>
|
||||
</bean>
|
||||
</property>
|
||||
</bean>
|
||||
|
||||
<!-- results in 10, which is the value of property 'age' of bean 'testBean' -->
|
||||
<bean id="testBean.age" class="org.springframework.beans.factory.config.PropertyPathFactoryBean"/>
|
||||
----
|
||||
|
||||
The preceding configuration uses a Spring `FactoryBean` implementation (the
|
||||
`PropertyPathFactoryBean`) to create a bean (of type `int`) called `testBean.age` that
|
||||
has a value equal to the `age` property of the `testBean` bean.
|
||||
|
||||
Now consider the following example, which adds a `<util:property-path/>` element:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- target bean to be referenced by name -->
|
||||
<bean id="testBean" class="org.springframework.beans.TestBean" scope="prototype">
|
||||
<property name="age" value="10"/>
|
||||
<property name="spouse">
|
||||
<bean class="org.springframework.beans.TestBean">
|
||||
<property name="age" value="11"/>
|
||||
</bean>
|
||||
</property>
|
||||
</bean>
|
||||
|
||||
<!-- results in 10, which is the value of property 'age' of bean 'testBean' -->
|
||||
<util:property-path id="name" path="testBean.age"/>
|
||||
----
|
||||
|
||||
The value of the `path` attribute of the `<property-path/>` element follows the form of
|
||||
`beanName.beanProperty`. In this case, it picks up the `age` property of the bean named
|
||||
`testBean`. The value of that `age` property is `10`.
|
||||
|
||||
[[xsd-schemas-util-property-path-dependency]]
|
||||
==== Using `<util:property-path/>` to Set a Bean Property or Constructor Argument
|
||||
|
||||
`PropertyPathFactoryBean` is a `FactoryBean` that evaluates a property path on a given
|
||||
target object. The target object can be specified directly or by a bean name. You can then use this
|
||||
value in another bean definition as a property value or constructor
|
||||
argument.
|
||||
|
||||
The following example shows a path being used against another bean, by name:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- target bean to be referenced by name -->
|
||||
<bean id="person" class="org.springframework.beans.TestBean" scope="prototype">
|
||||
<property name="age" value="10"/>
|
||||
<property name="spouse">
|
||||
<bean class="org.springframework.beans.TestBean">
|
||||
<property name="age" value="11"/>
|
||||
</bean>
|
||||
</property>
|
||||
</bean>
|
||||
|
||||
<!-- results in 11, which is the value of property 'spouse.age' of bean 'person' -->
|
||||
<bean id="theAge"
|
||||
class="org.springframework.beans.factory.config.PropertyPathFactoryBean">
|
||||
<property name="targetBeanName" value="person"/>
|
||||
<property name="propertyPath" value="spouse.age"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
In the following example, a path is evaluated against an inner bean:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- results in 12, which is the value of property 'age' of the inner bean -->
|
||||
<bean id="theAge"
|
||||
class="org.springframework.beans.factory.config.PropertyPathFactoryBean">
|
||||
<property name="targetObject">
|
||||
<bean class="org.springframework.beans.TestBean">
|
||||
<property name="age" value="12"/>
|
||||
</bean>
|
||||
</property>
|
||||
<property name="propertyPath" value="age"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
There is also a shortcut form, where the bean name is the property path.
|
||||
The following example shows the shortcut form:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- results in 10, which is the value of property 'age' of bean 'person' -->
|
||||
<bean id="person.age"
|
||||
class="org.springframework.beans.factory.config.PropertyPathFactoryBean"/>
|
||||
----
|
||||
|
||||
This form does mean that there is no choice in the name of the bean. Any reference to it
|
||||
also has to use the same `id`, which is the path. If used as an inner
|
||||
bean, there is no need to refer to it at all, as the following example shows:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="..." class="...">
|
||||
<property name="age">
|
||||
<bean id="person.age"
|
||||
class="org.springframework.beans.factory.config.PropertyPathFactoryBean"/>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
You can specifically set the result type in the actual definition. This is not necessary
|
||||
for most use cases, but it can sometimes be useful. See the javadoc for more info on
|
||||
this feature.
|
||||
|
||||
|
||||
[[xsd-schemas-util-properties]]
|
||||
=== Using `<util:properties/>`
|
||||
|
||||
Consider the following example:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- creates a java.util.Properties instance with values loaded from the supplied location -->
|
||||
<bean id="jdbcConfiguration" class="org.springframework.beans.factory.config.PropertiesFactoryBean">
|
||||
<property name="location" value="classpath:com/foo/jdbc-production.properties"/>
|
||||
</bean>
|
||||
----
|
||||
|
||||
The preceding configuration uses a Spring `FactoryBean` implementation (the
|
||||
`PropertiesFactoryBean`) to instantiate a `java.util.Properties` instance with values
|
||||
loaded from the supplied xref:web/webflux-webclient/client-builder.adoc#webflux-client-builder-reactor-resources[`Resource`] location).
|
||||
|
||||
The following example uses a `util:properties` element to make a more concise representation:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- creates a java.util.Properties instance with values loaded from the supplied location -->
|
||||
<util:properties id="jdbcConfiguration" location="classpath:com/foo/jdbc-production.properties"/>
|
||||
----
|
||||
|
||||
|
||||
[[xsd-schemas-util-list]]
|
||||
=== Using `<util:list/>`
|
||||
|
||||
Consider the following example:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- creates a java.util.List instance with values loaded from the supplied 'sourceList' -->
|
||||
<bean id="emails" class="org.springframework.beans.factory.config.ListFactoryBean">
|
||||
<property name="sourceList">
|
||||
<list>
|
||||
<value>pechorin@hero.org</value>
|
||||
<value>raskolnikov@slums.org</value>
|
||||
<value>stavrogin@gov.org</value>
|
||||
<value>porfiry@gov.org</value>
|
||||
</list>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
The preceding configuration uses a Spring `FactoryBean` implementation (the
|
||||
`ListFactoryBean`) to create a `java.util.List` instance and initialize it with values taken
|
||||
from the supplied `sourceList`.
|
||||
|
||||
The following example uses a `<util:list/>` element to make a more concise representation:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- creates a java.util.List instance with the supplied values -->
|
||||
<util:list id="emails">
|
||||
<value>pechorin@hero.org</value>
|
||||
<value>raskolnikov@slums.org</value>
|
||||
<value>stavrogin@gov.org</value>
|
||||
<value>porfiry@gov.org</value>
|
||||
</util:list>
|
||||
----
|
||||
|
||||
You can also explicitly control the exact type of `List` that is instantiated and
|
||||
populated by using the `list-class` attribute on the `<util:list/>` element. For
|
||||
example, if we really need a `java.util.LinkedList` to be instantiated, we could use the
|
||||
following configuration:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<util:list id="emails" list-class="java.util.LinkedList">
|
||||
<value>jackshaftoe@vagabond.org</value>
|
||||
<value>eliza@thinkingmanscrumpet.org</value>
|
||||
<value>vanhoek@pirate.org</value>
|
||||
<value>d'Arcachon@nemesis.org</value>
|
||||
</util:list>
|
||||
----
|
||||
|
||||
If no `list-class` attribute is supplied, the container chooses a `List` implementation.
|
||||
|
||||
|
||||
[[xsd-schemas-util-map]]
|
||||
=== Using `<util:map/>`
|
||||
|
||||
Consider the following example:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- creates a java.util.Map instance with values loaded from the supplied 'sourceMap' -->
|
||||
<bean id="emails" class="org.springframework.beans.factory.config.MapFactoryBean">
|
||||
<property name="sourceMap">
|
||||
<map>
|
||||
<entry key="pechorin" value="pechorin@hero.org"/>
|
||||
<entry key="raskolnikov" value="raskolnikov@slums.org"/>
|
||||
<entry key="stavrogin" value="stavrogin@gov.org"/>
|
||||
<entry key="porfiry" value="porfiry@gov.org"/>
|
||||
</map>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
The preceding configuration uses a Spring `FactoryBean` implementation (the
|
||||
`MapFactoryBean`) to create a `java.util.Map` instance initialized with key-value pairs
|
||||
taken from the supplied `'sourceMap'`.
|
||||
|
||||
The following example uses a `<util:map/>` element to make a more concise representation:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- creates a java.util.Map instance with the supplied key-value pairs -->
|
||||
<util:map id="emails">
|
||||
<entry key="pechorin" value="pechorin@hero.org"/>
|
||||
<entry key="raskolnikov" value="raskolnikov@slums.org"/>
|
||||
<entry key="stavrogin" value="stavrogin@gov.org"/>
|
||||
<entry key="porfiry" value="porfiry@gov.org"/>
|
||||
</util:map>
|
||||
----
|
||||
|
||||
You can also explicitly control the exact type of `Map` that is instantiated and
|
||||
populated by using the `'map-class'` attribute on the `<util:map/>` element. For
|
||||
example, if we really need a `java.util.TreeMap` to be instantiated, we could use the
|
||||
following configuration:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<util:map id="emails" map-class="java.util.TreeMap">
|
||||
<entry key="pechorin" value="pechorin@hero.org"/>
|
||||
<entry key="raskolnikov" value="raskolnikov@slums.org"/>
|
||||
<entry key="stavrogin" value="stavrogin@gov.org"/>
|
||||
<entry key="porfiry" value="porfiry@gov.org"/>
|
||||
</util:map>
|
||||
----
|
||||
|
||||
If no `'map-class'` attribute is supplied, the container chooses a `Map` implementation.
|
||||
|
||||
|
||||
[[xsd-schemas-util-set]]
|
||||
=== Using `<util:set/>`
|
||||
|
||||
Consider the following example:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- creates a java.util.Set instance with values loaded from the supplied 'sourceSet' -->
|
||||
<bean id="emails" class="org.springframework.beans.factory.config.SetFactoryBean">
|
||||
<property name="sourceSet">
|
||||
<set>
|
||||
<value>pechorin@hero.org</value>
|
||||
<value>raskolnikov@slums.org</value>
|
||||
<value>stavrogin@gov.org</value>
|
||||
<value>porfiry@gov.org</value>
|
||||
</set>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
The preceding configuration uses a Spring `FactoryBean` implementation (the
|
||||
`SetFactoryBean`) to create a `java.util.Set` instance initialized with values taken
|
||||
from the supplied `sourceSet`.
|
||||
|
||||
The following example uses a `<util:set/>` element to make a more concise representation:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<!-- creates a java.util.Set instance with the supplied values -->
|
||||
<util:set id="emails">
|
||||
<value>pechorin@hero.org</value>
|
||||
<value>raskolnikov@slums.org</value>
|
||||
<value>stavrogin@gov.org</value>
|
||||
<value>porfiry@gov.org</value>
|
||||
</util:set>
|
||||
----
|
||||
|
||||
You can also explicitly control the exact type of `Set` that is instantiated and
|
||||
populated by using the `set-class` attribute on the `<util:set/>` element. For
|
||||
example, if we really need a `java.util.TreeSet` to be instantiated, we could use the
|
||||
following configuration:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<util:set id="emails" set-class="java.util.TreeSet">
|
||||
<value>pechorin@hero.org</value>
|
||||
<value>raskolnikov@slums.org</value>
|
||||
<value>stavrogin@gov.org</value>
|
||||
<value>porfiry@gov.org</value>
|
||||
</util:set>
|
||||
----
|
||||
|
||||
If no `set-class` attribute is supplied, the container chooses a `Set` implementation.
|
||||
|
||||
|
||||
|
||||
[[xsd-schemas-aop]]
|
||||
== The `aop` Schema
|
||||
|
||||
The `aop` tags deal with configuring all things AOP in Spring, including Spring's
|
||||
own proxy-based AOP framework and Spring's integration with the AspectJ AOP framework.
|
||||
These tags are comprehensively covered in the chapter entitled xref:core/aop.adoc[Aspect Oriented Programming with Spring]
|
||||
.
|
||||
|
||||
In the interest of completeness, to use the tags in the `aop` schema, you need to have
|
||||
the following preamble at the top of your Spring XML configuration file (the text in the
|
||||
snippet references the correct schema so that the tags in the `aop` namespace
|
||||
are available to you):
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<beans xmlns="http://www.springframework.org/schema/beans"
|
||||
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
|
||||
xmlns:aop="http://www.springframework.org/schema/aop"
|
||||
xsi:schemaLocation="
|
||||
http://www.springframework.org/schema/beans https://www.springframework.org/schema/beans/spring-beans.xsd
|
||||
http://www.springframework.org/schema/aop https://www.springframework.org/schema/aop/spring-aop.xsd">
|
||||
|
||||
<!-- bean definitions here -->
|
||||
|
||||
</beans>
|
||||
----
|
||||
|
||||
|
||||
|
||||
[[xsd-schemas-context]]
|
||||
== The `context` Schema
|
||||
|
||||
The `context` tags deal with `ApplicationContext` configuration that relates to plumbing
|
||||
-- that is, not usually beans that are important to an end-user but rather beans that do
|
||||
a lot of the "`grunt`" work in Spring, such as `BeanfactoryPostProcessors`. The following
|
||||
snippet references the correct schema so that the elements in the `context` namespace are
|
||||
available to you:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<beans xmlns="http://www.springframework.org/schema/beans"
|
||||
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
|
||||
xmlns:context="http://www.springframework.org/schema/context"
|
||||
xsi:schemaLocation="
|
||||
http://www.springframework.org/schema/beans https://www.springframework.org/schema/beans/spring-beans.xsd
|
||||
http://www.springframework.org/schema/context https://www.springframework.org/schema/context/spring-context.xsd">
|
||||
|
||||
<!-- bean definitions here -->
|
||||
|
||||
</beans>
|
||||
----
|
||||
|
||||
|
||||
[[xsd-schemas-context-pphc]]
|
||||
=== Using `<property-placeholder/>`
|
||||
|
||||
This element activates the replacement of `${...}` placeholders, which are resolved against a
|
||||
specified properties file (as a xref:web/webflux-webclient/client-builder.adoc#webflux-client-builder-reactor-resources[Spring resource location]). This element
|
||||
is a convenience mechanism that sets up a xref:core/beans/factory-extension.adoc#beans-factory-placeholderconfigurer[`PropertySourcesPlaceholderConfigurer`]
|
||||
for you. If you need more control over the specific
|
||||
`PropertySourcesPlaceholderConfigurer` setup, you can explicitly define it as a bean yourself.
|
||||
|
||||
[WARNING]
|
||||
=====
|
||||
Only one such element should be defined for a given application with the properties
|
||||
that it needs. Several property placeholders can be configured as long as they have distinct
|
||||
placeholder syntax (`${...}`).
|
||||
|
||||
If you need to modularize the source of properties used for the replacement, you should
|
||||
not create multiple properties placeholders. Rather, each module should contribute a
|
||||
`PropertySource` to the `Environment`. Alternatively, you can create your own
|
||||
`PropertySourcesPlaceholderConfigurer` bean that gathers the properties to use.
|
||||
=====
|
||||
|
||||
[[xsd-schemas-context-ac]]
|
||||
=== Using `<annotation-config/>`
|
||||
|
||||
This element activates the Spring infrastructure to detect annotations in bean classes:
|
||||
|
||||
* Spring's xref:core/beans/basics.adoc#beans-factory-metadata[`@Configuration`] model
|
||||
* xref:core/beans/annotation-config.adoc[`@Autowired`/`@Inject`], `@Value`, and `@Lookup`
|
||||
* JSR-250's `@Resource`, `@PostConstruct`, and `@PreDestroy` (if available)
|
||||
* JAX-WS's `@WebServiceRef` and EJB 3's `@EJB` (if available)
|
||||
* JPA's `@PersistenceContext` and `@PersistenceUnit` (if available)
|
||||
* Spring's xref:core/beans/context-introduction.adoc#context-functionality-events-annotation[`@EventListener`]
|
||||
|
||||
Alternatively, you can choose to explicitly activate the individual `BeanPostProcessors`
|
||||
for those annotations.
|
||||
|
||||
NOTE: This element does not activate processing of Spring's
|
||||
xref:data-access/transaction/declarative/annotations.adoc[`@Transactional`] annotation;
|
||||
you can use the <<data-access.adoc#tx-decl-explained, `<tx:annotation-driven/>`>>
|
||||
element for that purpose. Similarly, Spring's
|
||||
xref:integration/cache/annotations.adoc[caching annotations] need to be explicitly
|
||||
xref:integration/cache/annotations.adoc#cache-annotation-enable[enabled] as well.
|
||||
|
||||
|
||||
[[xsd-schemas-context-component-scan]]
|
||||
=== Using `<component-scan/>`
|
||||
|
||||
This element is detailed in the section on xref:core/beans/annotation-config.adoc[annotation-based container configuration]
|
||||
.
|
||||
|
||||
|
||||
[[xsd-schemas-context-ltw]]
|
||||
=== Using `<load-time-weaver/>`
|
||||
|
||||
This element is detailed in the section on xref:core/aop/using-aspectj.adoc#aop-aj-ltw[load-time weaving with AspectJ in the Spring Framework]
|
||||
.
|
||||
|
||||
|
||||
[[xsd-schemas-context-sc]]
|
||||
=== Using `<spring-configured/>`
|
||||
|
||||
This element is detailed in the section on xref:core/aop/using-aspectj.adoc#aop-atconfigurable[using AspectJ to dependency inject domain objects with Spring]
|
||||
.
|
||||
|
||||
|
||||
[[xsd-schemas-context-mbe]]
|
||||
=== Using `<mbean-export/>`
|
||||
|
||||
This element is detailed in the section on xref:integration/jmx/naming.adoc#jmx-context-mbeanexport[configuring annotation-based MBean export]
|
||||
.
|
||||
|
||||
|
||||
|
||||
[[xsd-schemas-beans]]
|
||||
== The Beans Schema
|
||||
|
||||
Last but not least, we have the elements in the `beans` schema. These elements
|
||||
have been in Spring since the very dawn of the framework. Examples of the various elements
|
||||
in the `beans` schema are not shown here because they are quite comprehensively covered
|
||||
in xref:core/beans/dependencies/factory-properties-detailed.adoc[dependencies and configuration in detail]
|
||||
(and, indeed, in that entire xref:web/webmvc-view/mvc-xslt.adoc#mvc-view-xslt-beandefs[chapter]).
|
||||
|
||||
Note that you can add zero or more key-value pairs to `<bean/>` XML definitions.
|
||||
What, if anything, is done with this extra metadata is totally up to your own custom
|
||||
logic (and so is typically only of use if you write your own custom elements as described
|
||||
in the appendix entitled xref:core/appendix/xml-custom.adoc[XML Schema Authoring]).
|
||||
|
||||
The following example shows the `<meta/>` element in the context of a surrounding `<bean/>`
|
||||
(note that, without any logic to interpret it, the metadata is effectively useless
|
||||
as it stands).
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<beans xmlns="http://www.springframework.org/schema/beans"
|
||||
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
|
||||
xsi:schemaLocation="
|
||||
http://www.springframework.org/schema/beans https://www.springframework.org/schema/beans/spring-beans.xsd">
|
||||
|
||||
<bean id="foo" class="x.y.Foo">
|
||||
<meta key="cacheName" value="foo"/> <1>
|
||||
<property name="name" value="Rick"/>
|
||||
</bean>
|
||||
|
||||
</beans>
|
||||
----
|
||||
<1> This is the example `meta` element
|
||||
|
||||
In the case of the preceding example, you could assume that there is some logic that consumes
|
||||
the bean definition and sets up some caching infrastructure that uses the supplied metadata.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,9 +0,0 @@
|
||||
[[beans]]
|
||||
= The IoC Container
|
||||
:page-section-summary-toc: 1
|
||||
|
||||
This chapter covers Spring's Inversion of Control (IoC) container.
|
||||
|
||||
|
||||
|
||||
|
||||
@@ -1,81 +0,0 @@
|
||||
[[beans-annotation-config]]
|
||||
= Annotation-based Container Configuration
|
||||
|
||||
.Are annotations better than XML for configuring Spring?
|
||||
****
|
||||
The introduction of annotation-based configuration raised the question of whether this
|
||||
approach is "`better`" than XML. The short answer is "`it depends.`" The long answer is
|
||||
that each approach has its pros and cons, and, usually, it is up to the developer to
|
||||
decide which strategy suits them better. Due to the way they are defined, annotations
|
||||
provide a lot of context in their declaration, leading to shorter and more concise
|
||||
configuration. However, XML excels at wiring up components without touching their source
|
||||
code or recompiling them. Some developers prefer having the wiring close to the source
|
||||
while others argue that annotated classes are no longer POJOs and, furthermore, that the
|
||||
configuration becomes decentralized and harder to control.
|
||||
|
||||
No matter the choice, Spring can accommodate both styles and even mix them together.
|
||||
It is worth pointing out that through its xref:core/beans/java.adoc[JavaConfig] option, Spring lets
|
||||
annotations be used in a non-invasive way, without touching the target components'
|
||||
source code and that, in terms of tooling, all configuration styles are supported by
|
||||
{spring-site-tools}[Spring Tools] for Eclipse, Visual Studio Code, and Theia.
|
||||
****
|
||||
|
||||
An alternative to XML setup is provided by annotation-based configuration, which relies
|
||||
on bytecode metadata for wiring up components instead of XML declarations. Instead of
|
||||
using XML to describe a bean wiring, the developer moves the configuration into the
|
||||
component class itself by using annotations on the relevant class, method, or field
|
||||
declaration. As mentioned in xref:core/beans/factory-extension.adoc#beans-factory-extension-bpp-examples-aabpp[Example: The `AutowiredAnnotationBeanPostProcessor`], using a
|
||||
`BeanPostProcessor` in conjunction with annotations is a common means of extending the
|
||||
Spring IoC container. For example, the xref:core/beans/annotation-config/autowired.adoc[`@Autowired`]
|
||||
annotation provides the same capabilities as described in xref:core/beans/dependencies/factory-autowire.adoc[Autowiring Collaborators] but
|
||||
with more fine-grained control and wider applicability. In addition, Spring provides
|
||||
support for JSR-250 annotations, such as `@PostConstruct` and `@PreDestroy`, as well as
|
||||
support for JSR-330 (Dependency Injection for Java) annotations contained in the
|
||||
`jakarta.inject` package such as `@Inject` and `@Named`. Details about those annotations
|
||||
can be found in the xref:core/beans/standard-annotations.adoc[relevant section].
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
Annotation injection is performed before XML injection. Thus, the XML configuration
|
||||
overrides the annotations for properties wired through both approaches.
|
||||
====
|
||||
|
||||
As always, you can register the post-processors as individual bean definitions, but they
|
||||
can also be implicitly registered by including the following tag in an XML-based Spring
|
||||
configuration (notice the inclusion of the `context` namespace):
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<beans xmlns="http://www.springframework.org/schema/beans"
|
||||
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
|
||||
xmlns:context="http://www.springframework.org/schema/context"
|
||||
xsi:schemaLocation="http://www.springframework.org/schema/beans
|
||||
https://www.springframework.org/schema/beans/spring-beans.xsd
|
||||
http://www.springframework.org/schema/context
|
||||
https://www.springframework.org/schema/context/spring-context.xsd">
|
||||
|
||||
<context:annotation-config/>
|
||||
|
||||
</beans>
|
||||
----
|
||||
|
||||
The `<context:annotation-config/>` element implicitly registers the following post-processors:
|
||||
|
||||
* {spring-framework-api}/context/annotation/ConfigurationClassPostProcessor.html[`ConfigurationClassPostProcessor`]
|
||||
* {spring-framework-api}/beans/factory/annotation/AutowiredAnnotationBeanPostProcessor.html[`AutowiredAnnotationBeanPostProcessor`]
|
||||
* {spring-framework-api}/context/annotation/CommonAnnotationBeanPostProcessor.html[`CommonAnnotationBeanPostProcessor`]
|
||||
* {spring-framework-api}/orm/jpa/support/PersistenceAnnotationBeanPostProcessor.html[`PersistenceAnnotationBeanPostProcessor`]
|
||||
* {spring-framework-api}/context/event/EventListenerMethodProcessor.html[`EventListenerMethodProcessor`]
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
`<context:annotation-config/>` only looks for annotations on beans in the same
|
||||
application context in which it is defined. This means that, if you put
|
||||
`<context:annotation-config/>` in a `WebApplicationContext` for a `DispatcherServlet`,
|
||||
it only checks for `@Autowired` beans in your controllers, and not your services. See
|
||||
xref:web/webmvc/mvc-servlet.adoc[The DispatcherServlet] for more information.
|
||||
====
|
||||
|
||||
|
||||
|
||||
-114
@@ -1,114 +0,0 @@
|
||||
[[beans-autowired-annotation-primary]]
|
||||
= Fine-tuning Annotation-based Autowiring with `@Primary`
|
||||
|
||||
Because autowiring by type may lead to multiple candidates, it is often necessary to have
|
||||
more control over the selection process. One way to accomplish this is with Spring's
|
||||
`@Primary` annotation. `@Primary` indicates that a particular bean should be given
|
||||
preference when multiple beans are candidates to be autowired to a single-valued
|
||||
dependency. If exactly one primary bean exists among the candidates, it becomes the
|
||||
autowired value.
|
||||
|
||||
Consider the following configuration that defines `firstMovieCatalog` as the
|
||||
primary `MovieCatalog`:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Configuration
|
||||
public class MovieConfiguration {
|
||||
|
||||
@Bean
|
||||
@Primary
|
||||
public MovieCatalog firstMovieCatalog() { ... }
|
||||
|
||||
@Bean
|
||||
public MovieCatalog secondMovieCatalog() { ... }
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
@Configuration
|
||||
class MovieConfiguration {
|
||||
|
||||
@Bean
|
||||
@Primary
|
||||
fun firstMovieCatalog(): MovieCatalog { ... }
|
||||
|
||||
@Bean
|
||||
fun secondMovieCatalog(): MovieCatalog { ... }
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
With the preceding configuration, the following `MovieRecommender` is autowired with the
|
||||
`firstMovieCatalog`:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
private MovieCatalog movieCatalog;
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
private lateinit var movieCatalog: MovieCatalog
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
The corresponding bean definitions follow:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<beans xmlns="http://www.springframework.org/schema/beans"
|
||||
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
|
||||
xmlns:context="http://www.springframework.org/schema/context"
|
||||
xsi:schemaLocation="http://www.springframework.org/schema/beans
|
||||
https://www.springframework.org/schema/beans/spring-beans.xsd
|
||||
http://www.springframework.org/schema/context
|
||||
https://www.springframework.org/schema/context/spring-context.xsd">
|
||||
|
||||
<context:annotation-config/>
|
||||
|
||||
<bean class="example.SimpleMovieCatalog" primary="true">
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
|
||||
<bean class="example.SimpleMovieCatalog">
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
|
||||
<bean id="movieRecommender" class="example.MovieRecommender"/>
|
||||
|
||||
</beans>
|
||||
----
|
||||
|
||||
|
||||
|
||||
-587
@@ -1,587 +0,0 @@
|
||||
[[beans-autowired-annotation-qualifiers]]
|
||||
= Fine-tuning Annotation-based Autowiring with Qualifiers
|
||||
|
||||
`@Primary` is an effective way to use autowiring by type with several instances when one
|
||||
primary candidate can be determined. When you need more control over the selection process,
|
||||
you can use Spring's `@Qualifier` annotation. You can associate qualifier values
|
||||
with specific arguments, narrowing the set of type matches so that a specific bean is
|
||||
chosen for each argument. In the simplest case, this can be a plain descriptive value, as
|
||||
shown in the following example:
|
||||
|
||||
--
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
@Qualifier("main")
|
||||
private MovieCatalog movieCatalog;
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
@Qualifier("main")
|
||||
private lateinit var movieCatalog: MovieCatalog
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
--
|
||||
|
||||
You can also specify the `@Qualifier` annotation on individual constructor arguments or
|
||||
method parameters, as shown in the following example:
|
||||
|
||||
--
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
private final MovieCatalog movieCatalog;
|
||||
|
||||
private final CustomerPreferenceDao customerPreferenceDao;
|
||||
|
||||
@Autowired
|
||||
public void prepare(@Qualifier("main") MovieCatalog movieCatalog,
|
||||
CustomerPreferenceDao customerPreferenceDao) {
|
||||
this.movieCatalog = movieCatalog;
|
||||
this.customerPreferenceDao = customerPreferenceDao;
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
private lateinit var movieCatalog: MovieCatalog
|
||||
|
||||
private lateinit var customerPreferenceDao: CustomerPreferenceDao
|
||||
|
||||
@Autowired
|
||||
fun prepare(@Qualifier("main") movieCatalog: MovieCatalog,
|
||||
customerPreferenceDao: CustomerPreferenceDao) {
|
||||
this.movieCatalog = movieCatalog
|
||||
this.customerPreferenceDao = customerPreferenceDao
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
--
|
||||
|
||||
The following example shows corresponding bean definitions.
|
||||
|
||||
--
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<beans xmlns="http://www.springframework.org/schema/beans"
|
||||
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
|
||||
xmlns:context="http://www.springframework.org/schema/context"
|
||||
xsi:schemaLocation="http://www.springframework.org/schema/beans
|
||||
https://www.springframework.org/schema/beans/spring-beans.xsd
|
||||
http://www.springframework.org/schema/context
|
||||
https://www.springframework.org/schema/context/spring-context.xsd">
|
||||
|
||||
<context:annotation-config/>
|
||||
|
||||
<bean class="example.SimpleMovieCatalog">
|
||||
<qualifier value="main"/> <1>
|
||||
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
|
||||
<bean class="example.SimpleMovieCatalog">
|
||||
<qualifier value="action"/> <2>
|
||||
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
|
||||
<bean id="movieRecommender" class="example.MovieRecommender"/>
|
||||
|
||||
</beans>
|
||||
----
|
||||
<1> The bean with the `main` qualifier value is wired with the constructor argument that
|
||||
is qualified with the same value.
|
||||
<2> The bean with the `action` qualifier value is wired with the constructor argument that
|
||||
is qualified with the same value.
|
||||
--
|
||||
|
||||
For a fallback match, the bean name is considered a default qualifier value. Thus, you
|
||||
can define the bean with an `id` of `main` instead of the nested qualifier element, leading
|
||||
to the same matching result. However, although you can use this convention to refer to
|
||||
specific beans by name, `@Autowired` is fundamentally about type-driven injection with
|
||||
optional semantic qualifiers. This means that qualifier values, even with the bean name
|
||||
fallback, always have narrowing semantics within the set of type matches. They do not
|
||||
semantically express a reference to a unique bean `id`. Good qualifier values are `main`
|
||||
or `EMEA` or `persistent`, expressing characteristics of a specific component that are
|
||||
independent from the bean `id`, which may be auto-generated in case of an anonymous bean
|
||||
definition such as the one in the preceding example.
|
||||
|
||||
Qualifiers also apply to typed collections, as discussed earlier -- for example, to
|
||||
`Set<MovieCatalog>`. In this case, all matching beans, according to the declared
|
||||
qualifiers, are injected as a collection. This implies that qualifiers do not have to be
|
||||
unique. Rather, they constitute filtering criteria. For example, you can define
|
||||
multiple `MovieCatalog` beans with the same qualifier value "`action`", all of which are
|
||||
injected into a `Set<MovieCatalog>` annotated with `@Qualifier("action")`.
|
||||
|
||||
[TIP]
|
||||
====
|
||||
Letting qualifier values select against target bean names, within the type-matching
|
||||
candidates, does not require a `@Qualifier` annotation at the injection point.
|
||||
If there is no other resolution indicator (such as a qualifier or a primary marker),
|
||||
for a non-unique dependency situation, Spring matches the injection point name
|
||||
(that is, the field name or parameter name) against the target bean names and chooses the
|
||||
same-named candidate, if any.
|
||||
|
||||
Since version 6.1, this requires the `-parameters` Java compiler flag to be present.
|
||||
====
|
||||
|
||||
That said, if you intend to express annotation-driven injection by name, do not
|
||||
primarily use `@Autowired`, even if it is capable of selecting by bean name among
|
||||
type-matching candidates. Instead, use the JSR-250 `@Resource` annotation, which is
|
||||
semantically defined to identify a specific target component by its unique name, with
|
||||
the declared type being irrelevant for the matching process. `@Autowired` has rather
|
||||
different semantics: After selecting candidate beans by type, the specified `String`
|
||||
qualifier value is considered within those type-selected candidates only (for example,
|
||||
matching an `account` qualifier against beans marked with the same qualifier label).
|
||||
|
||||
For beans that are themselves defined as a collection, `Map`, or array type, `@Resource`
|
||||
is a fine solution, referring to the specific collection or array bean by unique name.
|
||||
That said, as of 4.3, you can match collection, `Map`, and array types through Spring's
|
||||
`@Autowired` type matching algorithm as well, as long as the element type information
|
||||
is preserved in `@Bean` return type signatures or collection inheritance hierarchies.
|
||||
In this case, you can use qualifier values to select among same-typed collections,
|
||||
as outlined in the previous paragraph.
|
||||
|
||||
As of 4.3, `@Autowired` also considers self references for injection (that is, references
|
||||
back to the bean that is currently injected). Note that self injection is a fallback.
|
||||
Regular dependencies on other components always have precedence. In that sense, self
|
||||
references do not participate in regular candidate selection and are therefore in
|
||||
particular never primary. On the contrary, they always end up as lowest precedence.
|
||||
In practice, you should use self references as a last resort only (for example, for
|
||||
calling other methods on the same instance through the bean's transactional proxy).
|
||||
Consider factoring out the affected methods to a separate delegate bean in such a scenario.
|
||||
Alternatively, you can use `@Resource`, which may obtain a proxy back to the current bean
|
||||
by its unique name.
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
Trying to inject the results from `@Bean` methods on the same configuration class is
|
||||
effectively a self-reference scenario as well. Either lazily resolve such references
|
||||
in the method signature where it is actually needed (as opposed to an autowired field
|
||||
in the configuration class) or declare the affected `@Bean` methods as `static`,
|
||||
decoupling them from the containing configuration class instance and its lifecycle.
|
||||
Otherwise, such beans are only considered in the fallback phase, with matching beans
|
||||
on other configuration classes selected as primary candidates instead (if available).
|
||||
====
|
||||
|
||||
`@Autowired` applies to fields, constructors, and multi-argument methods, allowing for
|
||||
narrowing through qualifier annotations at the parameter level. In contrast, `@Resource`
|
||||
is supported only for fields and bean property setter methods with a single argument.
|
||||
As a consequence, you should stick with qualifiers if your injection target is a
|
||||
constructor or a multi-argument method.
|
||||
|
||||
You can create your own custom qualifier annotations. To do so, define an annotation and
|
||||
provide the `@Qualifier` annotation within your definition, as the following example shows:
|
||||
|
||||
--
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Target({ElementType.FIELD, ElementType.PARAMETER})
|
||||
@Retention(RetentionPolicy.RUNTIME)
|
||||
@Qualifier
|
||||
public @interface Genre {
|
||||
|
||||
String value();
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
@Target(AnnotationTarget.FIELD, AnnotationTarget.VALUE_PARAMETER)
|
||||
@Retention(AnnotationRetention.RUNTIME)
|
||||
@Qualifier
|
||||
annotation class Genre(val value: String)
|
||||
----
|
||||
======
|
||||
--
|
||||
|
||||
Then you can provide the custom qualifier on autowired fields and parameters, as the
|
||||
following example shows:
|
||||
|
||||
--
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
@Genre("Action")
|
||||
private MovieCatalog actionCatalog;
|
||||
|
||||
private MovieCatalog comedyCatalog;
|
||||
|
||||
@Autowired
|
||||
public void setComedyCatalog(@Genre("Comedy") MovieCatalog comedyCatalog) {
|
||||
this.comedyCatalog = comedyCatalog;
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
@Genre("Action")
|
||||
private lateinit var actionCatalog: MovieCatalog
|
||||
|
||||
private lateinit var comedyCatalog: MovieCatalog
|
||||
|
||||
@Autowired
|
||||
fun setComedyCatalog(@Genre("Comedy") comedyCatalog: MovieCatalog) {
|
||||
this.comedyCatalog = comedyCatalog
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
--
|
||||
|
||||
Next, you can provide the information for the candidate bean definitions. You can add
|
||||
`<qualifier/>` tags as sub-elements of the `<bean/>` tag and then specify the `type` and
|
||||
`value` to match your custom qualifier annotations. The type is matched against the
|
||||
fully-qualified class name of the annotation. Alternately, as a convenience if no risk of
|
||||
conflicting names exists, you can use the short class name. The following example
|
||||
demonstrates both approaches:
|
||||
|
||||
--
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<beans xmlns="http://www.springframework.org/schema/beans"
|
||||
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
|
||||
xmlns:context="http://www.springframework.org/schema/context"
|
||||
xsi:schemaLocation="http://www.springframework.org/schema/beans
|
||||
https://www.springframework.org/schema/beans/spring-beans.xsd
|
||||
http://www.springframework.org/schema/context
|
||||
https://www.springframework.org/schema/context/spring-context.xsd">
|
||||
|
||||
<context:annotation-config/>
|
||||
|
||||
<bean class="example.SimpleMovieCatalog">
|
||||
<qualifier type="Genre" value="Action"/>
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
|
||||
<bean class="example.SimpleMovieCatalog">
|
||||
<qualifier type="example.Genre" value="Comedy"/>
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
|
||||
<bean id="movieRecommender" class="example.MovieRecommender"/>
|
||||
|
||||
</beans>
|
||||
----
|
||||
--
|
||||
|
||||
In xref:core/beans/classpath-scanning.adoc[Classpath Scanning and Managed Components], you can see an annotation-based alternative to
|
||||
providing the qualifier metadata in XML. Specifically, see xref:core/beans/classpath-scanning.adoc#beans-scanning-qualifiers[Providing Qualifier Metadata with Annotations].
|
||||
|
||||
In some cases, using an annotation without a value may suffice. This can be
|
||||
useful when the annotation serves a more generic purpose and can be applied across
|
||||
several different types of dependencies. For example, you may provide an offline
|
||||
catalog that can be searched when no Internet connection is available. First, define
|
||||
the simple annotation, as the following example shows:
|
||||
|
||||
--
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Target({ElementType.FIELD, ElementType.PARAMETER})
|
||||
@Retention(RetentionPolicy.RUNTIME)
|
||||
@Qualifier
|
||||
public @interface Offline {
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
@Target(AnnotationTarget.FIELD, AnnotationTarget.VALUE_PARAMETER)
|
||||
@Retention(AnnotationRetention.RUNTIME)
|
||||
@Qualifier
|
||||
annotation class Offline
|
||||
----
|
||||
======
|
||||
--
|
||||
|
||||
Then add the annotation to the field or property to be autowired, as shown in the
|
||||
following example:
|
||||
|
||||
--
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
@Offline // <1>
|
||||
private MovieCatalog offlineCatalog;
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
<1> This line adds the `@Offline` annotation.
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
@Offline // <1>
|
||||
private lateinit var offlineCatalog: MovieCatalog
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
<1> This line adds the `@Offline` annotation.
|
||||
======
|
||||
--
|
||||
|
||||
Now the bean definition only needs a qualifier `type`, as shown in the following example:
|
||||
|
||||
--
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean class="example.SimpleMovieCatalog">
|
||||
<qualifier type="Offline"/> <1>
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
----
|
||||
<1> This element specifies the qualifier.
|
||||
--
|
||||
|
||||
|
||||
You can also define custom qualifier annotations that accept named attributes in
|
||||
addition to or instead of the simple `value` attribute. If multiple attribute values are
|
||||
then specified on a field or parameter to be autowired, a bean definition must match
|
||||
all such attribute values to be considered an autowire candidate. As an example,
|
||||
consider the following annotation definition:
|
||||
|
||||
--
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
@Target({ElementType.FIELD, ElementType.PARAMETER})
|
||||
@Retention(RetentionPolicy.RUNTIME)
|
||||
@Qualifier
|
||||
public @interface MovieQualifier {
|
||||
|
||||
String genre();
|
||||
|
||||
Format format();
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
@Target(AnnotationTarget.FIELD, AnnotationTarget.VALUE_PARAMETER)
|
||||
@Retention(AnnotationRetention.RUNTIME)
|
||||
@Qualifier
|
||||
annotation class MovieQualifier(val genre: String, val format: Format)
|
||||
----
|
||||
======
|
||||
--
|
||||
|
||||
In this case `Format` is an enum, defined as follows:
|
||||
|
||||
--
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public enum Format {
|
||||
VHS, DVD, BLURAY
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
enum class Format {
|
||||
VHS, DVD, BLURAY
|
||||
}
|
||||
----
|
||||
======
|
||||
--
|
||||
|
||||
The fields to be autowired are annotated with the custom qualifier and include values
|
||||
for both attributes: `genre` and `format`, as the following example shows:
|
||||
|
||||
--
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
@MovieQualifier(format=Format.VHS, genre="Action")
|
||||
private MovieCatalog actionVhsCatalog;
|
||||
|
||||
@Autowired
|
||||
@MovieQualifier(format=Format.VHS, genre="Comedy")
|
||||
private MovieCatalog comedyVhsCatalog;
|
||||
|
||||
@Autowired
|
||||
@MovieQualifier(format=Format.DVD, genre="Action")
|
||||
private MovieCatalog actionDvdCatalog;
|
||||
|
||||
@Autowired
|
||||
@MovieQualifier(format=Format.BLURAY, genre="Comedy")
|
||||
private MovieCatalog comedyBluRayCatalog;
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
@MovieQualifier(format = Format.VHS, genre = "Action")
|
||||
private lateinit var actionVhsCatalog: MovieCatalog
|
||||
|
||||
@Autowired
|
||||
@MovieQualifier(format = Format.VHS, genre = "Comedy")
|
||||
private lateinit var comedyVhsCatalog: MovieCatalog
|
||||
|
||||
@Autowired
|
||||
@MovieQualifier(format = Format.DVD, genre = "Action")
|
||||
private lateinit var actionDvdCatalog: MovieCatalog
|
||||
|
||||
@Autowired
|
||||
@MovieQualifier(format = Format.BLURAY, genre = "Comedy")
|
||||
private lateinit var comedyBluRayCatalog: MovieCatalog
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
--
|
||||
|
||||
Finally, the bean definitions should contain matching qualifier values. This example
|
||||
also demonstrates that you can use bean meta attributes instead of the
|
||||
`<qualifier/>` elements. If available, the `<qualifier/>` element and its attributes take
|
||||
precedence, but the autowiring mechanism falls back on the values provided within the
|
||||
`<meta/>` tags if no such qualifier is present, as in the last two bean definitions in
|
||||
the following example:
|
||||
|
||||
--
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<beans xmlns="http://www.springframework.org/schema/beans"
|
||||
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
|
||||
xmlns:context="http://www.springframework.org/schema/context"
|
||||
xsi:schemaLocation="http://www.springframework.org/schema/beans
|
||||
https://www.springframework.org/schema/beans/spring-beans.xsd
|
||||
http://www.springframework.org/schema/context
|
||||
https://www.springframework.org/schema/context/spring-context.xsd">
|
||||
|
||||
<context:annotation-config/>
|
||||
|
||||
<bean class="example.SimpleMovieCatalog">
|
||||
<qualifier type="MovieQualifier">
|
||||
<attribute key="format" value="VHS"/>
|
||||
<attribute key="genre" value="Action"/>
|
||||
</qualifier>
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
|
||||
<bean class="example.SimpleMovieCatalog">
|
||||
<qualifier type="MovieQualifier">
|
||||
<attribute key="format" value="VHS"/>
|
||||
<attribute key="genre" value="Comedy"/>
|
||||
</qualifier>
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
|
||||
<bean class="example.SimpleMovieCatalog">
|
||||
<meta key="format" value="DVD"/>
|
||||
<meta key="genre" value="Action"/>
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
|
||||
<bean class="example.SimpleMovieCatalog">
|
||||
<meta key="format" value="BLURAY"/>
|
||||
<meta key="genre" value="Comedy"/>
|
||||
<!-- inject any dependencies required by this bean -->
|
||||
</bean>
|
||||
|
||||
</beans>
|
||||
----
|
||||
--
|
||||
|
||||
|
||||
|
||||
@@ -1,490 +0,0 @@
|
||||
[[beans-autowired-annotation]]
|
||||
= Using `@Autowired`
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
JSR 330's `@Inject` annotation can be used in place of Spring's `@Autowired` annotation in the
|
||||
examples included in this section. See xref:core/beans/standard-annotations.adoc[here] for more details.
|
||||
====
|
||||
|
||||
You can apply the `@Autowired` annotation to constructors, as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
private final CustomerPreferenceDao customerPreferenceDao;
|
||||
|
||||
@Autowired
|
||||
public MovieRecommender(CustomerPreferenceDao customerPreferenceDao) {
|
||||
this.customerPreferenceDao = customerPreferenceDao;
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender @Autowired constructor(
|
||||
private val customerPreferenceDao: CustomerPreferenceDao)
|
||||
----
|
||||
======
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
As of Spring Framework 4.3, an `@Autowired` annotation on such a constructor is no longer
|
||||
necessary if the target bean defines only one constructor to begin with. However, if
|
||||
several constructors are available and there is no primary/default constructor, at least
|
||||
one of the constructors must be annotated with `@Autowired` in order to instruct the
|
||||
container which one to use. See the discussion on
|
||||
xref:core/beans/annotation-config/autowired.adoc#beans-autowired-annotation-constructor-resolution[constructor resolution] for details.
|
||||
====
|
||||
|
||||
You can also apply the `@Autowired` annotation to _traditional_ setter methods,
|
||||
as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class SimpleMovieLister {
|
||||
|
||||
private MovieFinder movieFinder;
|
||||
|
||||
@Autowired
|
||||
public void setMovieFinder(MovieFinder movieFinder) {
|
||||
this.movieFinder = movieFinder;
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class SimpleMovieLister {
|
||||
|
||||
@set:Autowired
|
||||
lateinit var movieFinder: MovieFinder
|
||||
|
||||
// ...
|
||||
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
You can also apply the annotation to methods with arbitrary names and multiple
|
||||
arguments, as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
private MovieCatalog movieCatalog;
|
||||
|
||||
private CustomerPreferenceDao customerPreferenceDao;
|
||||
|
||||
@Autowired
|
||||
public void prepare(MovieCatalog movieCatalog,
|
||||
CustomerPreferenceDao customerPreferenceDao) {
|
||||
this.movieCatalog = movieCatalog;
|
||||
this.customerPreferenceDao = customerPreferenceDao;
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
private lateinit var movieCatalog: MovieCatalog
|
||||
|
||||
private lateinit var customerPreferenceDao: CustomerPreferenceDao
|
||||
|
||||
@Autowired
|
||||
fun prepare(movieCatalog: MovieCatalog,
|
||||
customerPreferenceDao: CustomerPreferenceDao) {
|
||||
this.movieCatalog = movieCatalog
|
||||
this.customerPreferenceDao = customerPreferenceDao
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
You can apply `@Autowired` to fields as well and even mix it with constructors, as the
|
||||
following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
private final CustomerPreferenceDao customerPreferenceDao;
|
||||
|
||||
@Autowired
|
||||
private MovieCatalog movieCatalog;
|
||||
|
||||
@Autowired
|
||||
public MovieRecommender(CustomerPreferenceDao customerPreferenceDao) {
|
||||
this.customerPreferenceDao = customerPreferenceDao;
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender @Autowired constructor(
|
||||
private val customerPreferenceDao: CustomerPreferenceDao) {
|
||||
|
||||
@Autowired
|
||||
private lateinit var movieCatalog: MovieCatalog
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
[TIP]
|
||||
====
|
||||
Make sure that your target components (for example, `MovieCatalog` or `CustomerPreferenceDao`)
|
||||
are consistently declared by the type that you use for your `@Autowired`-annotated
|
||||
injection points. Otherwise, injection may fail due to a "no type match found" error at runtime.
|
||||
|
||||
For XML-defined beans or component classes found via classpath scanning, the container
|
||||
usually knows the concrete type up front. However, for `@Bean` factory methods, you need
|
||||
to make sure that the declared return type is sufficiently expressive. For components
|
||||
that implement several interfaces or for components potentially referred to by their
|
||||
implementation type, consider declaring the most specific return type on your factory
|
||||
method (at least as specific as required by the injection points referring to your bean).
|
||||
====
|
||||
|
||||
You can also instruct Spring to provide all beans of a particular type from the
|
||||
`ApplicationContext` by adding the `@Autowired` annotation to a field or method that
|
||||
expects an array of that type, as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
private MovieCatalog[] movieCatalogs;
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
private lateinit var movieCatalogs: Array<MovieCatalog>
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
The same applies for typed collections, as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
private Set<MovieCatalog> movieCatalogs;
|
||||
|
||||
@Autowired
|
||||
public void setMovieCatalogs(Set<MovieCatalog> movieCatalogs) {
|
||||
this.movieCatalogs = movieCatalogs;
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
lateinit var movieCatalogs: Set<MovieCatalog>
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
[[beans-factory-ordered]]
|
||||
[TIP]
|
||||
====
|
||||
Your target beans can implement the `org.springframework.core.Ordered` interface or use
|
||||
the `@Order` or standard `@Priority` annotation if you want items in the array or list
|
||||
to be sorted in a specific order. Otherwise, their order follows the registration
|
||||
order of the corresponding target bean definitions in the container.
|
||||
|
||||
You can declare the `@Order` annotation at the target class level and on `@Bean` methods,
|
||||
potentially for individual bean definitions (in case of multiple definitions that
|
||||
use the same bean class). `@Order` values may influence priorities at injection points,
|
||||
but be aware that they do not influence singleton startup order, which is an
|
||||
orthogonal concern determined by dependency relationships and `@DependsOn` declarations.
|
||||
|
||||
Note that the standard `jakarta.annotation.Priority` annotation is not available at the
|
||||
`@Bean` level, since it cannot be declared on methods. Its semantics can be modeled
|
||||
through `@Order` values in combination with `@Primary` on a single bean for each type.
|
||||
====
|
||||
|
||||
Even typed `Map` instances can be autowired as long as the expected key type is `String`.
|
||||
The map values contain all beans of the expected type, and the keys contain the
|
||||
corresponding bean names, as the following example shows:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
private Map<String, MovieCatalog> movieCatalogs;
|
||||
|
||||
@Autowired
|
||||
public void setMovieCatalogs(Map<String, MovieCatalog> movieCatalogs) {
|
||||
this.movieCatalogs = movieCatalogs;
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
lateinit var movieCatalogs: Map<String, MovieCatalog>
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
By default, autowiring fails when no matching candidate beans are available for a given
|
||||
injection point. In the case of a declared array, collection, or map, at least one
|
||||
matching element is expected.
|
||||
|
||||
The default behavior is to treat annotated methods and fields as indicating required
|
||||
dependencies. You can change this behavior as demonstrated in the following example,
|
||||
enabling the framework to skip a non-satisfiable injection point through marking it as
|
||||
non-required (i.e., by setting the `required` attribute in `@Autowired` to `false`):
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class SimpleMovieLister {
|
||||
|
||||
private MovieFinder movieFinder;
|
||||
|
||||
@Autowired(required = false)
|
||||
public void setMovieFinder(MovieFinder movieFinder) {
|
||||
this.movieFinder = movieFinder;
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class SimpleMovieLister {
|
||||
|
||||
@Autowired(required = false)
|
||||
var movieFinder: MovieFinder? = null
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
A non-required method will not be called at all if its dependency (or one of its
|
||||
dependencies, in case of multiple arguments) is not available. A non-required field will
|
||||
not get populated at all in such cases, leaving its default value in place.
|
||||
|
||||
In other words, setting the `required` attribute to `false` indicates that the
|
||||
corresponding property is _optional_ for autowiring purposes, and the property will be
|
||||
ignored if it cannot be autowired. This allows properties to be assigned default values
|
||||
that can be optionally overridden via dependency injection.
|
||||
====
|
||||
|
||||
[[beans-autowired-annotation-constructor-resolution]]
|
||||
Injected constructor and factory method arguments are a special case since the `required`
|
||||
attribute in `@Autowired` has a somewhat different meaning due to Spring's constructor
|
||||
resolution algorithm that may potentially deal with multiple constructors. Constructor
|
||||
and factory method arguments are effectively required by default but with a few special
|
||||
rules in a single-constructor scenario, such as multi-element injection points (arrays,
|
||||
collections, maps) resolving to empty instances if no matching beans are available. This
|
||||
allows for a common implementation pattern where all dependencies can be declared in a
|
||||
unique multi-argument constructor — for example, declared as a single public constructor
|
||||
without an `@Autowired` annotation.
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
Only one constructor of any given bean class may declare `@Autowired` with the `required`
|
||||
attribute set to `true`, indicating _the_ constructor to autowire when used as a Spring
|
||||
bean. As a consequence, if the `required` attribute is left at its default value `true`,
|
||||
only a single constructor may be annotated with `@Autowired`. If multiple constructors
|
||||
declare the annotation, they will all have to declare `required=false` in order to be
|
||||
considered as candidates for autowiring (analogous to `autowire=constructor` in XML).
|
||||
The constructor with the greatest number of dependencies that can be satisfied by matching
|
||||
beans in the Spring container will be chosen. If none of the candidates can be satisfied,
|
||||
then a primary/default constructor (if present) will be used. Similarly, if a class
|
||||
declares multiple constructors but none of them is annotated with `@Autowired`, then a
|
||||
primary/default constructor (if present) will be used. If a class only declares a single
|
||||
constructor to begin with, it will always be used, even if not annotated. Note that an
|
||||
annotated constructor does not have to be public.
|
||||
====
|
||||
|
||||
Alternatively, you can express the non-required nature of a particular dependency
|
||||
through Java 8's `java.util.Optional`, as the following example shows:
|
||||
|
||||
[source,java,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
public class SimpleMovieLister {
|
||||
|
||||
@Autowired
|
||||
public void setMovieFinder(Optional<MovieFinder> movieFinder) {
|
||||
...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
As of Spring Framework 5.0, you can also use a `@Nullable` annotation (of any kind
|
||||
in any package -- for example, `javax.annotation.Nullable` from JSR-305) or just leverage
|
||||
Kotlin built-in null-safety support:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class SimpleMovieLister {
|
||||
|
||||
@Autowired
|
||||
public void setMovieFinder(@Nullable MovieFinder movieFinder) {
|
||||
...
|
||||
}
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class SimpleMovieLister {
|
||||
|
||||
@Autowired
|
||||
var movieFinder: MovieFinder? = null
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
You can also use `@Autowired` for interfaces that are well-known resolvable
|
||||
dependencies: `BeanFactory`, `ApplicationContext`, `Environment`, `ResourceLoader`,
|
||||
`ApplicationEventPublisher`, and `MessageSource`. These interfaces and their extended
|
||||
interfaces, such as `ConfigurableApplicationContext` or `ResourcePatternResolver`, are
|
||||
automatically resolved, with no special setup necessary. The following example autowires
|
||||
an `ApplicationContext` object:
|
||||
|
||||
[tabs]
|
||||
======
|
||||
Java::
|
||||
+
|
||||
[source,java,indent=0,subs="verbatim,quotes",role="primary"]
|
||||
----
|
||||
public class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
private ApplicationContext context;
|
||||
|
||||
public MovieRecommender() {
|
||||
}
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
|
||||
Kotlin::
|
||||
+
|
||||
[source,kotlin,indent=0,subs="verbatim,quotes",role="secondary"]
|
||||
----
|
||||
class MovieRecommender {
|
||||
|
||||
@Autowired
|
||||
lateinit var context: ApplicationContext
|
||||
|
||||
// ...
|
||||
}
|
||||
----
|
||||
======
|
||||
|
||||
[NOTE]
|
||||
====
|
||||
The `@Autowired`, `@Inject`, `@Value`, and `@Resource` annotations are handled by Spring
|
||||
`BeanPostProcessor` implementations. This means that you cannot apply these annotations
|
||||
within your own `BeanPostProcessor` or `BeanFactoryPostProcessor` types (if any).
|
||||
These types must be 'wired up' explicitly by using XML or a Spring `@Bean` method.
|
||||
====
|
||||
|
||||
|
||||
|
||||
-33
@@ -1,33 +0,0 @@
|
||||
[[beans-custom-autowire-configurer]]
|
||||
= Using `CustomAutowireConfigurer`
|
||||
|
||||
{spring-framework-api}/beans/factory/annotation/CustomAutowireConfigurer.html[`CustomAutowireConfigurer`]
|
||||
is a `BeanFactoryPostProcessor` that lets you register your own custom qualifier
|
||||
annotation types, even if they are not annotated with Spring's `@Qualifier` annotation.
|
||||
The following example shows how to use `CustomAutowireConfigurer`:
|
||||
|
||||
[source,xml,indent=0,subs="verbatim,quotes"]
|
||||
----
|
||||
<bean id="customAutowireConfigurer"
|
||||
class="org.springframework.beans.factory.annotation.CustomAutowireConfigurer">
|
||||
<property name="customQualifierTypes">
|
||||
<set>
|
||||
<value>example.CustomQualifier</value>
|
||||
</set>
|
||||
</property>
|
||||
</bean>
|
||||
----
|
||||
|
||||
The `AutowireCandidateResolver` determines autowire candidates by:
|
||||
|
||||
* The `autowire-candidate` value of each bean definition
|
||||
* Any `default-autowire-candidates` patterns available on the `<beans/>` element
|
||||
* The presence of `@Qualifier` annotations and any custom annotations registered
|
||||
with the `CustomAutowireConfigurer`
|
||||
|
||||
When multiple beans qualify as autowire candidates, the determination of a "`primary`" is
|
||||
as follows: If exactly one bean definition among the candidates has a `primary`
|
||||
attribute set to `true`, it is selected.
|
||||
|
||||
|
||||
|
||||
Some files were not shown because too many files have changed in this diff Show More
Reference in New Issue
Block a user