Spring Cloud Vault Config now supports property-based SSL configuration using spring.cloud.vault.ssl.* properties to enable server certificate validation. Introducing a Vault-specific configuration requires to configure HTTP clients individually and so this change adds configuration support for Apache HTTP Components, Netty and the OkHttp client. Clients are picked configured if they exist on the class path. Fixes gh-7
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306 lines
12 KiB
Plaintext
// Do not edit this file (e.g. go instead to docs/src/main/asciidoc)
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Spring Cloud Vault Config provides client-side support for externalized configuration in a distributed system. With https://www.vaultproject.io[Hashicorp's Vault] you have a central place to manage external secret properties for applications across all environments. Vault can manage static and dynamic secrets such as username/password for remote applications/resources and provide credentials for external services such as MySQL, PostgreSQL, Apache Cassandra, Consul, AWS and more.
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== Features
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=== Spring Cloud Vault Config Client
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Specifically for Spring applications:
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* Bind to the Config Server and initialize Spring `Environment` with remote property sources
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* Obtain secrets secured with SSL
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* https://www.vaultproject.io/docs/auth/token.html[Token] and https://www.vaultproject.io/docs/auth/app-id.html[AppId] authentication
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* Bootstrap application context: a parent context for the main application that can be trained to do anything
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== Quick Start
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Install Vault:
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----
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$ src/test/bash/install_vault.sh
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----
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Start the Vault server:
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----
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$ src/test/bash/local_run_vault.sh
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----
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Vault is started listening on `0.0.0.0:8200` using the `inmem` storage.
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Vault is sealed and not initialized when starting up
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so you need to initialize it first.
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----
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$ export VAULT_ADDR="http://localhost:8200"
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$ export VAULT_TLS_SKIP=true
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$ vault init
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----
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You should see something like:
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----
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Key 1: 7149c6a2e16b8833f6eb1e76df03e47f6113a3288b3093faf5033d44f0e70fe701
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Key 2: 901c534c7988c18c20435a85213c683bdcf0efcd82e38e2893779f152978c18c02
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Key 3: 03ff3948575b1165a20c20ee7c3e6edf04f4cdbe0e82dbff5be49c63f98bc03a03
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Key 4: 216ae5cc3ddaf93ceb8e1d15bb9fc3176653f5b738f5f3d1ee00cd7dccbe926e04
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Key 5: b2898fc8130929d569c1677ee69dc5f3be57d7c4b494a6062693ce0b1c4d93d805
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Initial Root Token: 19aefa97-cccc-bbbb-aaaa-225940e63d76
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Vault initialized with 5 keys and a key threshold of 3. Please
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securely distribute the above keys. When the Vault is re-sealed,
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restarted, or stopped, you must provide at least 3 of these keys
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to unseal it again.
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Vault does not store the master key. Without at least 3 keys,
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your Vault will remain permanently sealed.
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----
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Vault will initialize and return a set of unsealing keys and the root token.
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Pick 3 keys and unseal Vault. Store the Vault token in the `VAULT_TOKEN`
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environment variable.
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----
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$ vault unseal (Key 1)
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$ vault unseal (Key 2)
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$ vault unseal (Key 3)
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$ export VAULT_TOKEN=(Root token)
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----
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Spring Cloud Vault accesses different resources. By default, the secret
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backend is enabled which accesses secret config settings via JSON endpoints.
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The HTTP service has resources in the form:
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----
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/secret/{application}
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/secret/{application},{profile}
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/secret/{defaultContext}
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/secret/{defaultContext},{profile}
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----
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where the "application" is injected as the `spring.application.name` in the
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`SpringApplication` (i.e. what is normally "application" in a regular
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Spring Boot app), "profile" is an active profile (or comma-separated
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list of properties). Properties retrieved from Vault will be used "as-is"
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without further prefixing of the property names.
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== Client Side Usage
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To use these features in an application, just build it as a Spring
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Boot application that depends on spring-cloud-vault-config (e.g. see
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the test cases). Example Maven configuration:
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[source,xml,indent=0]
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.pom.xml
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----
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<parent>
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<groupId>org.springframework.boot</groupId>
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<artifactId>spring-boot-starter-parent</artifactId>
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<version>1.3.3.RELEASE</version>
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<relativePath /> <!-- lookup parent from repository -->
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</parent>
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<dependencies>
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<dependency>
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<groupId>org.springframework.cloud</groupId>
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<artifactId>spring-cloud-vault-config</artifactId>
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<version>x.y.z</version>
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</dependency>
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<dependency>
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<groupId>org.springframework.boot</groupId>
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<artifactId>spring-boot-starter-test</artifactId>
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<scope>test</scope>
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</dependency>
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</dependencies>
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<build>
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<plugins>
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<plugin>
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<groupId>org.springframework.boot</groupId>
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<artifactId>spring-boot-maven-plugin</artifactId>
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</plugin>
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</plugins>
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</build>
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<!-- repositories also needed for snapshots and milestones -->
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----
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Then you can create a standard Spring Boot application, like this simple HTTP server:
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----
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@SpringBootApplication
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@RestController
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public class Application {
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@RequestMapping("/")
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public String home() {
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return "Hello World!";
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}
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public static void main(String[] args) {
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SpringApplication.run(Application.class, args);
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}
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}
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----
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When it runs it will pick up the external configuration from the
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default local config server on port `8200` if it is running. To modify
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the startup behaviour you can change the location of the Vault server
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using `bootstrap.properties` (like `application.properties` but for
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the bootstrap phase of an application context), e.g.
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[source,yaml]
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----
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spring.cloud.vault:
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enabled: true
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token: vault-token
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----
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== Building
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==== Build requirements for Vault
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Spring Cloud Vault Config requires SSL certificates and a running
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Vault instance listening on `localhost:8200`. Certificates and the Vault
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setup are scripted, the scripts are located in `src/test/bash`.
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:jdkversion: 1.7
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=== Basic Compile and Test
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To build the source you will need to install JDK {jdkversion}.
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Spring Cloud uses Maven for most build-related activities, and you
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should be able to get off the ground quite quickly by cloning the
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project you are interested in and typing
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----
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$ ./mvnw install
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----
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NOTE: You can also install Maven (>=3.3.3) yourself and run the `mvn` command
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in place of `./mvnw` in the examples below. If you do that you also
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might need to add `-P spring` if your local Maven settings do not
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contain repository declarations for spring pre-release artifacts.
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NOTE: Be aware that you might need to increase the amount of memory
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available to Maven by setting a `MAVEN_OPTS` environment variable with
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a value like `-Xmx512m -XX:MaxPermSize=128m`. We try to cover this in
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the `.mvn` configuration, so if you find you have to do it to make a
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build succeed, please raise a ticket to get the settings added to
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source control.
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For hints on how to build the project look in `.travis.yml` if there
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is one. There should be a "script" and maybe "install" command. Also
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look at the "services" section to see if any services need to be
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running locally (e.g. mongo or rabbit). Ignore the git-related bits
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that you might find in "before_install" since they're related to setting git
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credentials and you already have those.
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The projects that require middleware generally include a
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`docker-compose.yml`, so consider using
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http://compose.docker.io/[Docker Compose] to run the middeware servers
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in Docker containers. See the README in the
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https://github.com/spring-cloud-samples/scripts[scripts demo
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repository] for specific instructions about the common cases of mongo,
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rabbit and redis.
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NOTE: If all else fails, build with the command from `.travis.yml` (usually
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`./mvnw install`).
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=== Documentation
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The spring-cloud-build module has a "docs" profile, and if you switch
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that on it will try to build asciidoc sources from
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`src/main/asciidoc`. As part of that process it will look for a
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`README.adoc` and process it by loading all the includes, but not
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parsing or rendering it, just copying it to `${main.basedir}`
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(defaults to `${basedir}`, i.e. the root of the project). If there are
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any changes in the README it will then show up after a Maven build as
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a modified file in the correct place. Just commit it and push the change.
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=== Working with the code
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If you don't have an IDE preference we would recommend that you use
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http://www.springsource.com/developer/sts[Spring Tools Suite] or
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http://eclipse.org[Eclipse] when working with the code. We use the
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http://eclipse.org/m2e/[m2eclipe] eclipse plugin for maven support. Other IDEs and tools
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should also work without issue as long as they use Maven 3.3.3 or better.
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==== Importing into eclipse with m2eclipse
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We recommend the http://eclipse.org/m2e/[m2eclipe] eclipse plugin when working with
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eclipse. If you don't already have m2eclipse installed it is available from the "eclipse
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marketplace".
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NOTE: Older versions of m2e do not support Maven 3.3, so once the
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projects are imported into Eclipse you will also need to tell
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m2eclipse to use the right profile for the projects. If you
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see many different errors related to the POMs in the projects, check
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that you have an up to date installation. If you can't upgrade m2e,
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add the "spring" profile to your `settings.xml`. Alternatively you can
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copy the repository settings from the "spring" profile of the parent
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pom into your `settings.xml`.
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==== Importing into eclipse without m2eclipse
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If you prefer not to use m2eclipse you can generate eclipse project metadata using the
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following command:
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[indent=0]
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----
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$ ./mvnw eclipse:eclipse
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----
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The generated eclipse projects can be imported by selecting `import existing projects`
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from the `file` menu.
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== Contributing
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Spring Cloud is released under the non-restrictive Apache 2.0 license,
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and follows a very standard Github development process, using Github
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tracker for issues and merging pull requests into master. If you want
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to contribute even something trivial please do not hesitate, but
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follow the guidelines below.
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=== Sign the Contributor License Agreement
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Before we accept a non-trivial patch or pull request we will need you to sign the
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https://support.springsource.com/spring_committer_signup[contributor's agreement].
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Signing the contributor's agreement does not grant anyone commit rights to the main
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repository, but it does mean that we can accept your contributions, and you will get an
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author credit if we do. Active contributors might be asked to join the core team, and
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given the ability to merge pull requests.
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=== Code of Conduct
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This project adheres to the Contributor Covenant https://github.com/spring-cloud/spring-cloud-build/blob/master/docs/src/main/asciidoc/code-of-conduct.adoc[code of
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conduct]. By participating, you are expected to uphold this code. Please report
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unacceptable behavior to spring-code-of-conduct@pivotal.io.
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=== Code Conventions and Housekeeping
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None of these is essential for a pull request, but they will all help. They can also be
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added after the original pull request but before a merge.
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* Use the Spring Framework code format conventions. If you use Eclipse
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you can import formatter settings using the
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`eclipse-code-formatter.xml` file from the
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https://raw.githubusercontent.com/spring-cloud/spring-cloud-build/master/spring-cloud-dependencies-parent/eclipse-code-formatter.xml[Spring
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Cloud Build] project. If using IntelliJ, you can use the
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http://plugins.jetbrains.com/plugin/6546[Eclipse Code Formatter
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Plugin] to import the same file.
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* Make sure all new `.java` files to have a simple Javadoc class comment with at least an
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`@author` tag identifying you, and preferably at least a paragraph on what the class is
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for.
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* Add the ASF license header comment to all new `.java` files (copy from existing files
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in the project)
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* Add yourself as an `@author` to the .java files that you modify substantially (more
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than cosmetic changes).
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* Add some Javadocs and, if you change the namespace, some XSD doc elements.
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* A few unit tests would help a lot as well -- someone has to do it.
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* If no-one else is using your branch, please rebase it against the current master (or
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other target branch in the main project).
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* When writing a commit message please follow http://tbaggery.com/2008/04/19/a-note-about-git-commit-messages.html[these conventions],
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if you are fixing an existing issue please add `Fixes gh-XXXX` at the end of the commit
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message (where XXXX is the issue number).
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