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zoomvideosdk-core from group us.zoom.videosdk (version 1.11.2)
The Video SDKs are app development kits provided to enrich apps with video collaboration features to connect customers and communities. Use these SDKs to build apps with highly customized user interfaces along with access to raw video and audio data.
Video SDKs are designed to be:
* Easy to use: Import libraries, call required functions, and all video conferencing will be handled for you.
* Lightweight: Video SDKs are streamlined toolkits with an enormous reduction in size compared to Meeting SDKs with all the power of Zoom's video and audio solutions.
* Highly customizable: Raw video and audio data is available to you, allowing your chosen renderer to customize the video experience.
Video sessions created by the Video SDKs are launched instantly, bringing a delightful video communication experience to your users with high-quality video and audio.
Direct access to raw video and audio data allows improved interaction between users and the app video stream. Imagine a gaming video streaming app with direct interaction between the player and viewers based on in-game events or prompts from the community. Or, imagine an AR streaming platform with direct viewer access to the on-screen video.
As with our Meeting SDKs, Video SDKs allow screen-sharing from devices, in-session chat messages, and high-quality video and audio streams similar to Zoom's core capabilities.
The Video SDKs enable the following functionality in your app:
* Launch a video communication session instantly
* Share screen directly from your device
* Send instant chat messages during the session
* Capture and review raw data locally
* Test different rendering schema and enjoy high-quality video and audio streams
* Broadcast the video session to third-party live streaming providers
To know more, see: https://developers.zoom.us/docs/video-sdk/
Group: us.zoom.videosdk Artifact: zoomvideosdk-core
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Artifact zoomvideosdk-core
Group us.zoom.videosdk
Version 1.11.2
Last update 23. April 2024
Organization not specified
URL https://developers.zoom.us/docs/video-sdk/
License Zoom Video SDK Terms of Service
Dependencies amount 3
Dependencies security-crypto, tink-android, appcompat,
There are maybe transitive dependencies!
Group us.zoom.videosdk
Version 1.11.2
Last update 23. April 2024
Organization not specified
URL https://developers.zoom.us/docs/video-sdk/
License Zoom Video SDK Terms of Service
Dependencies amount 3
Dependencies security-crypto, tink-android, appcompat,
There are maybe transitive dependencies!
ZoomVideoSDK from group us.zoom.videosdk (version 1.9.0)
We have deprecated ZoomVideoSDK maven repository. Since Video SDK features have been modularized, we are deprecating this repository and publishing new releases into the following repositories. See the feature libraries documentation for details.
ZoomVideoSDK Core — core Video SDK features: https://mvnrepository.com/artifact/us.zoom.videosdk/zoomvideosdk-core
ZoomVideoSDK Annotation — Screen share annotation feature: https://mvnrepository.com/artifact/us.zoom.videosdk/zoomvideosdk-annotation
ZoomVideoSDK Videoeffects — Virtual background feature: https://mvnrepository.com/artifact/us.zoom.videosdk/zoomvideosdk-videoeffects
The Video SDKs are app development kits provided to enrich apps with video collaboration features to connect customers and communities. Use these SDKs to build apps with highly customized user interfaces along with access to raw video and audio data.
Video SDKs are designed to be:
* Easy to use: Import libraries, call required functions, and all video conferencing will be handled for you.
* Lightweight: Video SDKs are streamlined toolkits with an enormous reduction in size compared to Meeting SDKs with all the power of Zoom's video and audio solutions.
* Highly customizable: Raw video and audio data is available to you, allowing your chosen renderer to customize the video experience.
Video sessions created by the Video SDKs are launched instantly, bringing a delightful video communication experience to your users with high-quality video and audio.
Direct access to raw video and audio data allows improved interaction between users and the app video stream. Imagine a gaming video streaming app with direct interaction between the player and viewers based on in-game events or prompts from the community. Or, imagine an AR streaming platform with direct viewer access to the on-screen video.
As with our Meeting SDKs, Video SDKs allow screen-sharing from devices, in-session chat messages, and high-quality video and audio streams similar to Zoom's core capabilities.
The Video SDKs enable the following functionality in your app:
* Launch a video communication session instantly
* Share screen directly from your device
* Send instant chat messages during the session
* Capture and review raw data locally
* Test different rendering schema and enjoy high-quality video and audio streams
* Broadcast the video session to third-party live streaming providers
To know more, see: https://developers.zoom.us/docs/video-sdk/
Group: us.zoom.videosdk Artifact: ZoomVideoSDK
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Artifact ZoomVideoSDK
Group us.zoom.videosdk
Version 1.9.0
Last update 20. September 2023
Organization not specified
URL https://developers.zoom.us/docs/video-sdk/
License Zoom Video SDK Terms of Service
Dependencies amount 3
Dependencies security-crypto, tink-android, appcompat,
There are maybe transitive dependencies!
Group us.zoom.videosdk
Version 1.9.0
Last update 20. September 2023
Organization not specified
URL https://developers.zoom.us/docs/video-sdk/
License Zoom Video SDK Terms of Service
Dependencies amount 3
Dependencies security-crypto, tink-android, appcompat,
There are maybe transitive dependencies!
commons-crypto from group org.apache.commons (version 1.2.0)
Apache Commons Crypto is a cryptographic library optimized with AES-NI (Advanced Encryption
Standard New Instructions). It provides Java API for both cipher level and Java stream level.
Developers can use it to implement high performance AES encryption/decryption with the minimum
code and effort. Please note that Crypto doesn't implement the cryptographic algorithm such as
AES directly. It wraps to OpenSSL or JCE which implement the algorithms.
Features
--------
1. Cipher API for low level cryptographic operations.
2. Java stream API (CryptoInputStream/CryptoOutputStream) for high level stream encryption/decryption.
3. Both optimized with high performance AES encryption/decryption. (1400 MB/s - 1700 MB/s throughput in modern Xeon processors).
4. JNI-based implementation to achieve comparable performance to the native C/C++ version based on OpenSsl.
5. Portable across various operating systems (currently only Linux/MacOSX/Windows);
Apache Commons Crypto loads the library according to your machine environment (it checks system properties, `os.name` and `os.arch`).
6. Simple usage. Add the commons-crypto-(version).jar file to your classpath.
Export restrictions
-------------------
This distribution includes cryptographic software.
The country in which you currently reside may have restrictions
on the import, possession, use, and/or re-export to another country,
of encryption software. BEFORE using any encryption software,
please check your country's laws, regulations and policies
concerning the import, possession, or use, and re-export of
encryption software, to see if this is permitted.
See <http://www.wassenaar.org/> for more information.
The U.S. Government Department of Commerce, Bureau of Industry and Security (BIS),
has classified this software as Export Commodity Control Number (ECCN) 5D002.C.1,
which includes information security software using or performing
cryptographic functions with asymmetric algorithms.
The form and manner of this Apache Software Foundation distribution makes
it eligible for export under the License Exception
ENC Technology Software Unrestricted (TSU) exception
(see the BIS Export Administration Regulations, Section 740.13)
for both object code and source code.
The following provides more details on the included cryptographic software:
* Commons Crypto use [Java Cryptography Extension](http://docs.oracle.com/javase/8/docs/technotes/guides/security/crypto/CryptoSpec.html) provided by Java
* Commons Crypto link to and use [OpenSSL](https://www.openssl.org/) ciphers
74 downloads
Artifact commons-crypto
Group org.apache.commons
Version 1.2.0
Last update 14. January 2023
Organization not specified
URL https://commons.apache.org/proper/commons-crypto/
License Apache License, Version 2.0
Dependencies amount 1
Dependencies jna,
There are maybe transitive dependencies!
Group org.apache.commons
Version 1.2.0
Last update 14. January 2023
Organization not specified
URL https://commons.apache.org/proper/commons-crypto/
License Apache License, Version 2.0
Dependencies amount 1
Dependencies jna,
There are maybe transitive dependencies!
jsgen from group com.github.jochenw (version 1.2)
Jsgen is a Java Source Generation Framework: That means, it should be a valuable tool, if you intend to write a custom generator for Java
sources.
As such, it is the successor of a previous framework, called JaxMeJS (http://jaxme.sourceforge.net/JaxMeJS/docs/index.html).
The predecessor came into being as a standalone project. It was incorporated into the bigger JaxMe project, when the latter
was adopted by the Apache Webservices project. And it was buried as part of the bigger project, when the latter was moved to the
Apache Attic (http://svn.apache.org/repos/asf/webservices/archive/jaxme/).
That was fine for quite some time, because the latest released version (JaxMeJS 0.5.2) did its job quite well.
Over the years, however, the Java language has evolved, and the lack of support for features like Generics, or
Annotations, became a burden. Hence the Successor: Jsgen picks up, where JaxMeJS ended. It is, however, a complete
rewrite with several additional features, that the author considers to be important for modern Java applications:
1. It supports Generics.
2. It supports Annotations.
3. The builder pattern has been adopted. Almost all important classes are implemented as builders.
This should make writing the actual source generators much more concise, and maintainable, than
it used to be before.
4. The code style is configurable. Code styles allow you to concentrate on the actual work.
The resulting Jave source will look nicely formatted, anyways. As of this writing, you
can select between two builtin code styles:
- The default code style is basically the authors personal free style, roughly comparable to the default
code style of the Eclipse Java IDE.
- As an alternative, there is also a Maven code style, which is widely used in the Open Source communities.
Compared to the default style, it is less concise, if not even a bit verbose. On the other hand, it is
widely adopted by projects in the vicinity of {{{https://maven.apache.org}Apache Maven}}.
5. Import lists are created, and sorted, automatically.
Artifact jsgen
Group com.github.jochenw
Version 1.2
Last update 10. November 2019
Organization not specified
URL https://jochenw.github.io/jsgen
License Apache License, Version 2.0
Dependencies amount 1
Dependencies jsr305,
There are maybe transitive dependencies!
Group com.github.jochenw
Version 1.2
Last update 10. November 2019
Organization not specified
URL https://jochenw.github.io/jsgen
License Apache License, Version 2.0
Dependencies amount 1
Dependencies jsr305,
There are maybe transitive dependencies!
pact-jvm-provider-junit5_2.11 from group au.com.dius (version 3.5.24)
# Pact Junit 5 Extension
## Overview
For writing Pact verification tests with JUnit 5, there is an JUnit 5 Invocation Context Provider that you can use with
the `@TestTemplate` annotation. This will generate a test for each interaction found for the pact files for the provider.
To use it, add the `@Provider` and one of the pact source annotations to your test class (as per a JUnit 4 test), then
add a method annotated with `@TestTemplate` and `@ExtendWith(PactVerificationInvocationContextProvider.class)` that
takes a `PactVerificationContext` parameter. You will need to call `verifyInteraction()` on the context parameter in
your test template method.
For example:
```java
@Provider("myAwesomeService")
@PactFolder("pacts")
public class ContractVerificationTest {
@TestTemplate
@ExtendWith(PactVerificationInvocationContextProvider.class)
void pactVerificationTestTemplate(PactVerificationContext context) {
context.verifyInteraction();
}
}
```
For details on the provider and pact source annotations, refer to the [Pact junit runner](../pact-jvm-provider-junit/README.md) docs.
## Test target
You can set the test target (the object that defines the target of the test, which should point to your provider) on the
`PactVerificationContext`, but you need to do this in a before test method (annotated with `@BeforeEach`). There are three
different test targets you can use: `HttpTestTarget`, `HttpsTestTarget` and `AmpqTestTarget`.
For example:
```java
@BeforeEach
void before(PactVerificationContext context) {
context.setTarget(HttpTestTarget.fromUrl(new URL(myProviderUrl)));
// or something like
// context.setTarget(new HttpTestTarget("localhost", myProviderPort, "/"));
}
```
## Provider State Methods
Provider State Methods work in the same way as with JUnit 4 tests, refer to the [Pact junit runner](../pact-jvm-provider-junit/README.md) docs.
## Modifying the requests before they are sent
**Important Note:** You should only use this feature for things that can not be persisted in the pact file. By modifying the request, you are potentially modifying the contract from the consumer tests!
Sometimes you may need to add things to the requests that can't be persisted in a pact file. Examples of these would be authentication tokens, which have a small life span. The Http and Https test targets support injecting the request that will executed into the test template method.
You can then add things to the request before calling the `verifyInteraction()` method.
For example to add a header:
```java
@TestTemplate
@ExtendWith(PactVerificationInvocationContextProvider.class)
void testTemplate(PactVerificationContext context, HttpRequest request) {
// This will add a header to the request
request.addHeader("X-Auth-Token", "1234");
context.verifyInteraction();
}
```
## Objects that can be injected into the test methods
You can inject the following objects into your test methods (just like the `PactVerificationContext`). They will be null if injected before the
supported phase.
| Object | Can be injected from phase | Description |
| ------ | --------------- | ----------- |
| PactVerificationContext | @BeforeEach | The context to use to execute the interaction test |
| Pact | any | The Pact model for the test |
| Interaction | any | The Interaction model for the test |
| HttpRequest | @TestTemplate | The request that is going to be executed (only for HTTP and HTTPS targets) |
| ProviderVerifier | @TestTemplate | The verifier instance that is used to verify the interaction |
Group: au.com.dius Artifact: pact-jvm-provider-junit5_2.11
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Artifact pact-jvm-provider-junit5_2.11
Group au.com.dius
Version 3.5.24
Last update 04. November 2018
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 9
Dependencies kotlin-stdlib-jdk8, kotlin-reflect, slf4j-api, groovy-all, kotlin-logging, scala-library, scala-logging_2.11, pact-jvm-provider-junit_2.11, junit-jupiter-api,
There are maybe transitive dependencies!
Group au.com.dius
Version 3.5.24
Last update 04. November 2018
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 9
Dependencies kotlin-stdlib-jdk8, kotlin-reflect, slf4j-api, groovy-all, kotlin-logging, scala-library, scala-logging_2.11, pact-jvm-provider-junit_2.11, junit-jupiter-api,
There are maybe transitive dependencies!
pact-jvm-provider-junit5_2.12 from group au.com.dius (version 3.6.15)
# Pact Junit 5 Extension
## Overview
For writing Pact verification tests with JUnit 5, there is an JUnit 5 Invocation Context Provider that you can use with
the `@TestTemplate` annotation. This will generate a test for each interaction found for the pact files for the provider.
To use it, add the `@Provider` and one of the pact source annotations to your test class (as per a JUnit 4 test), then
add a method annotated with `@TestTemplate` and `@ExtendWith(PactVerificationInvocationContextProvider.class)` that
takes a `PactVerificationContext` parameter. You will need to call `verifyInteraction()` on the context parameter in
your test template method.
For example:
```java
@Provider("myAwesomeService")
@PactFolder("pacts")
public class ContractVerificationTest {
@TestTemplate
@ExtendWith(PactVerificationInvocationContextProvider.class)
void pactVerificationTestTemplate(PactVerificationContext context) {
context.verifyInteraction();
}
}
```
For details on the provider and pact source annotations, refer to the [Pact junit runner](../pact-jvm-provider-junit/README.md) docs.
## Test target
You can set the test target (the object that defines the target of the test, which should point to your provider) on the
`PactVerificationContext`, but you need to do this in a before test method (annotated with `@BeforeEach`). There are three
different test targets you can use: `HttpTestTarget`, `HttpsTestTarget` and `AmpqTestTarget`.
For example:
```java
@BeforeEach
void before(PactVerificationContext context) {
context.setTarget(HttpTestTarget.fromUrl(new URL(myProviderUrl)));
// or something like
// context.setTarget(new HttpTestTarget("localhost", myProviderPort, "/"));
}
```
**Note for Maven users:** If you use Maven to run your tests, you will have to make sure that the Maven Surefire plugin is at least
version 2.22.1 uses an isolated classpath.
For example, configure it by adding the following to your POM:
```xml
<plugin>
<groupId>org.apache.maven.plugins</groupId>
<artifactId>maven-surefire-plugin</artifactId>
<version>2.22.1</version>
<configuration>
<useSystemClassLoader>false</useSystemClassLoader>
</configuration>
</plugin>
```
## Provider State Methods
Provider State Methods work in the same way as with JUnit 4 tests, refer to the [Pact junit runner](../pact-jvm-provider-junit/README.md) docs.
### Using multiple classes for the state change methods
If you have a large number of state change methods, you can split things up by moving them to other classes. You will
need to specify the additional classes on the test context in a `Before` method. Do this with the `withStateHandler`
or `setStateHandlers` methods. See [StateAnnotationsOnAdditionalClassTest](pact-jvm-provider-junit5/src/test/java/au/com/dius/pact/provider/junit5/StateAnnotationsOnAdditionalClassTest.java) for an example.
## Modifying the requests before they are sent
**Important Note:** You should only use this feature for things that can not be persisted in the pact file. By modifying the request, you are potentially modifying the contract from the consumer tests!
Sometimes you may need to add things to the requests that can't be persisted in a pact file. Examples of these would be authentication tokens, which have a small life span. The Http and Https test targets support injecting the request that will executed into the test template method.
You can then add things to the request before calling the `verifyInteraction()` method.
For example to add a header:
```java
@TestTemplate
@ExtendWith(PactVerificationInvocationContextProvider.class)
void testTemplate(PactVerificationContext context, HttpRequest request) {
// This will add a header to the request
request.addHeader("X-Auth-Token", "1234");
context.verifyInteraction();
}
```
## Objects that can be injected into the test methods
You can inject the following objects into your test methods (just like the `PactVerificationContext`). They will be null if injected before the
supported phase.
| Object | Can be injected from phase | Description |
| ------ | --------------- | ----------- |
| PactVerificationContext | @BeforeEach | The context to use to execute the interaction test |
| Pact | any | The Pact model for the test |
| Interaction | any | The Interaction model for the test |
| HttpRequest | @TestTemplate | The request that is going to be executed (only for HTTP and HTTPS targets) |
| ProviderVerifier | @TestTemplate | The verifier instance that is used to verify the interaction |
Group: au.com.dius Artifact: pact-jvm-provider-junit5_2.12
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4 downloads
Artifact pact-jvm-provider-junit5_2.12
Group au.com.dius
Version 3.6.15
Last update 29. April 2020
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 3
Dependencies pact-jvm-support, pact-jvm-provider_2.12, junit-jupiter-api,
There are maybe transitive dependencies!
Group au.com.dius
Version 3.6.15
Last update 29. April 2020
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 3
Dependencies pact-jvm-support, pact-jvm-provider_2.12, junit-jupiter-api,
There are maybe transitive dependencies!
pact-jvm-provider-junit5 from group au.com.dius (version 4.0.10)
# Pact Junit 5 Extension
## Overview
For writing Pact verification tests with JUnit 5, there is an JUnit 5 Invocation Context Provider that you can use with
the `@TestTemplate` annotation. This will generate a test for each interaction found for the pact files for the provider.
To use it, add the `@Provider` and one of the pact source annotations to your test class (as per a JUnit 4 test), then
add a method annotated with `@TestTemplate` and `@ExtendWith(PactVerificationInvocationContextProvider.class)` that
takes a `PactVerificationContext` parameter. You will need to call `verifyInteraction()` on the context parameter in
your test template method.
For example:
```java
@Provider("myAwesomeService")
@PactFolder("pacts")
public class ContractVerificationTest {
@TestTemplate
@ExtendWith(PactVerificationInvocationContextProvider.class)
void pactVerificationTestTemplate(PactVerificationContext context) {
context.verifyInteraction();
}
}
```
For details on the provider and pact source annotations, refer to the [Pact junit runner](../pact-jvm-provider-junit/README.md) docs.
## Test target
You can set the test target (the object that defines the target of the test, which should point to your provider) on the
`PactVerificationContext`, but you need to do this in a before test method (annotated with `@BeforeEach`). There are three
different test targets you can use: `HttpTestTarget`, `HttpsTestTarget` and `AmpqTestTarget`.
For example:
```java
@BeforeEach
void before(PactVerificationContext context) {
context.setTarget(HttpTestTarget.fromUrl(new URL(myProviderUrl)));
// or something like
// context.setTarget(new HttpTestTarget("localhost", myProviderPort, "/"));
}
```
**Note for Maven users:** If you use Maven to run your tests, you will have to make sure that the Maven Surefire plugin is at least
version 2.22.1 uses an isolated classpath.
For example, configure it by adding the following to your POM:
```xml
<plugin>
<groupId>org.apache.maven.plugins</groupId>
<artifactId>maven-surefire-plugin</artifactId>
<version>2.22.1</version>
<configuration>
<useSystemClassLoader>false</useSystemClassLoader>
</configuration>
</plugin>
```
## Provider State Methods
Provider State Methods work in the same way as with JUnit 4 tests, refer to the [Pact junit runner](../pact-jvm-provider-junit/README.md) docs.
### Using multiple classes for the state change methods
If you have a large number of state change methods, you can split things up by moving them to other classes. You will
need to specify the additional classes on the test context in a `Before` method. Do this with the `withStateHandler`
or `setStateHandlers` methods. See [StateAnnotationsOnAdditionalClassTest](src/test/java/au/com/dius/pact/provider/junit5/StateAnnotationsOnAdditionalClassTest.java) for an example.
## Modifying the requests before they are sent
**Important Note:** You should only use this feature for things that can not be persisted in the pact file. By modifying
the request, you are potentially modifying the contract from the consumer tests!
Sometimes you may need to add things to the requests that can't be persisted in a pact file. Examples of these would be
authentication tokens, which have a small life span. The Http and Https test targets support injecting the request that
will executed into the test template method.
You can then add things to the request before calling the `verifyInteraction()` method.
For example to add a header:
```java
@TestTemplate
@ExtendWith(PactVerificationInvocationContextProvider.class)
void testTemplate(PactVerificationContext context, HttpRequest request) {
// This will add a header to the request
request.addHeader("X-Auth-Token", "1234");
context.verifyInteraction();
}
```
## Objects that can be injected into the test methods
You can inject the following objects into your test methods (just like the `PactVerificationContext`). They will be null if injected before the
supported phase.
| Object | Can be injected from phase | Description |
| ------ | --------------- | ----------- |
| PactVerificationContext | @BeforeEach | The context to use to execute the interaction test |
| Pact | any | The Pact model for the test |
| Interaction | any | The Interaction model for the test |
| HttpRequest | @TestTemplate | The request that is going to be executed (only for HTTP and HTTPS targets) |
| ProviderVerifier | @TestTemplate | The verifier instance that is used to verify the interaction |
## Allowing the test to pass when no pacts are found to verify (version 4.0.7+)
By default, the test will fail with an exception if no pacts were found to verify. This can be overridden by adding the
`@IgnoreNoPactsToVerify` annotation to the test class. For this to work, you test class will need to be able to receive
null values for any of the injected parameters.
Group: au.com.dius Artifact: pact-jvm-provider-junit5
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Artifact pact-jvm-provider-junit5
Group au.com.dius
Version 4.0.10
Last update 18. April 2020
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 3
Dependencies junit-jupiter-api, pact-jvm-core-support, pact-jvm-provider,
There are maybe transitive dependencies!
Group au.com.dius
Version 4.0.10
Last update 18. April 2020
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 3
Dependencies junit-jupiter-api, pact-jvm-core-support, pact-jvm-provider,
There are maybe transitive dependencies!
pact-jvm-provider-gradle_2.12 from group au.com.dius (version 3.6.15)
pact-jvm-provider-gradle
========================
Gradle plugin for verifying pacts against a provider.
The Gradle plugin creates a task `pactVerify` to your build which will verify all configured pacts against your provider.
## To Use It
### For Gradle versions prior to 2.1
#### 1.1. Add the pact-jvm-provider-gradle jar file to your build script class path:
```groovy
buildscript {
repositories {
mavenCentral()
}
dependencies {
classpath 'au.com.dius:pact-jvm-provider-gradle_2.10:3.2.11'
}
}
```
#### 1.2. Apply the pact plugin
```groovy
apply plugin: 'au.com.dius.pact'
```
### For Gradle versions 2.1+
```groovy
plugins {
id "au.com.dius.pact" version "3.2.11"
}
```
### 2. Define the pacts between your consumers and providers
```groovy
pact {
serviceProviders {
// You can define as many as you need, but each must have a unique name
provider1 {
// All the provider properties are optional, and have sensible defaults (shown below)
protocol = 'http'
host = 'localhost'
port = 8080
path = '/'
// Again, you can define as many consumers for each provider as you need, but each must have a unique name
hasPactWith('consumer1') {
// currently supports a file path using file() or a URL using url()
pactSource = file('path/to/provider1-consumer1-pact.json')
}
// Or if you have many pact files in a directory
hasPactsWith('manyConsumers') {
// Will define a consumer for each pact file in the directory.
// Consumer name is read from contents of pact file
pactFileLocation = file('path/to/pacts')
}
}
}
}
```
### 3. Execute `gradle pactVerify`
## Specifying the provider hostname at runtime
If you need to calculate the provider hostname at runtime, you can give a Closure as the provider `host`.
```groovy
pact {
serviceProviders {
provider1 {
host = { lookupHostName() }
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
_Since version 3.3.2+/2.4.17+_ you can also give a Closure as the provider `port`.
## Specifying the pact file or URL at runtime [versions 3.2.7/2.4.9+]
If you need to calculate the pact file or URL at runtime, you can give a Closure as the provider `pactFile`.
```groovy
pact {
serviceProviders {
provider1 {
host = 'localhost'
hasPactWith('consumer1') {
pactFile = { lookupPactFile() }
}
}
}
}
```
## Starting and shutting down your provider
If you need to start-up or shutdown your provider, define Gradle tasks for each action and set
`startProviderTask` and `terminateProviderTask` properties of each provider.
You could use the jetty tasks here if you provider is built as a WAR file.
```groovy
// This will be called before the provider task
task('startTheApp') {
doLast {
// start up your provider here
}
}
// This will be called after the provider task
task('killTheApp') {
doLast {
// kill your provider here
}
}
pact {
serviceProviders {
provider1 {
startProviderTask = startTheApp
terminateProviderTask = killTheApp
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
Following typical Gradle behaviour, you can set the provider task properties to the actual tasks, or to the task names
as a string (for the case when they haven't been defined yet).
## Preventing the chaining of provider verify task to `pactVerify` [version 3.4.1+]
Normally a gradle task named `pactVerify_${provider.name}` is created and added as a task dependency for `pactVerify`. You
can disable this dependency on a provider by setting `isDependencyForPactVerify` to `false` (defaults to `true`).
```groovy
pact {
serviceProviders {
provider1 {
isDependencyForPactVerify = false
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
To run this task, you would then have to explicitly name it as in ```gradle pactVerify_provider1```, a normal ```gradle pactVerify```
would skip it. This can be useful when you want to define two providers, one with `startProviderTask`/`terminateProviderTask`
and as second without, so you can manually start your provider (to debug it from your IDE, for example) but still want a `pactVerify`
to run normally from your CI build.
## Enabling insecure SSL [version 2.2.8+]
For providers that are running on SSL with self-signed certificates, you need to enable insecure SSL mode by setting
`insecure = true` on the provider.
```groovy
pact {
serviceProviders {
provider1 {
insecure = true // allow SSL with a self-signed cert
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
## Specifying a custom trust store [version 2.2.8+]
For environments that are running their own certificate chains:
```groovy
pact {
serviceProviders {
provider1 {
trustStore = new File('relative/path/to/trustStore.jks')
trustStorePassword = 'changeit'
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
`trustStore` is either relative to the current working (build) directory. `trustStorePassword` defaults to `changeit`.
NOTE: The hostname will still be verified against the certificate.
## Modifying the HTTP Client Used [version 2.2.4+]
The default HTTP client is used for all requests to providers (created with a call to `HttpClients.createDefault()`).
This can be changed by specifying a closure assigned to createClient on the provider that returns a CloseableHttpClient. For example:
```groovy
pact {
serviceProviders {
provider1 {
createClient = { provider ->
// This will enable the client to accept self-signed certificates
HttpClients.custom().setSSLHostnameVerifier(new NoopHostnameVerifier())
.setSslcontext(new SSLContextBuilder().loadTrustMaterial(null, { x509Certificates, s -> true })
.build())
.build()
}
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
## Modifying the requests before they are sent
**NOTE on breaking change: Version 2.1.8+ uses Apache HttpClient instead of HttpBuilder so the closure will receive a
HttpRequest object instead of a request Map.**
Sometimes you may need to add things to the requests that can't be persisted in a pact file. Examples of these would
be authentication tokens, which have a small life span. The Pact Gradle plugin provides a request filter that can be
set to a closure on the provider that will be called before the request is made. This closure will receive the HttpRequest
prior to it being executed.
```groovy
pact {
serviceProviders {
provider1 {
requestFilter = { req ->
// Add an authorization header to each request
req.addHeader('Authorization', 'OAUTH eyJhbGciOiJSUzI1NiIsImN0eSI6ImFw...')
}
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
__*Important Note:*__ You should only use this feature for things that can not be persisted in the pact file. By modifying
the request, you are potentially modifying the contract from the consumer tests!
## Turning off URL decoding of the paths in the pact file [version 3.3.3+]
By default the paths loaded from the pact file will be decoded before the request is sent to the provider. To turn this
behaviour off, set the system property `pact.verifier.disableUrlPathDecoding` to `true`.
__*Important Note:*__ If you turn off the url path decoding, you need to ensure that the paths in the pact files are
correctly encoded. The verifier will not be able to make a request with an invalid encoded path.
## Project Properties
The following project properties can be specified with `-Pproperty=value` on the command line:
|Property|Description|
|--------|-----------|
|pact.showStacktrace|This turns on stacktrace printing for each request. It can help with diagnosing network errors|
|pact.showFullDiff|This turns on displaying the full diff of the expected versus actual bodies [version 3.3.6+]|
|pact.filter.consumers|Comma seperated list of consumer names to verify|
|pact.filter.description|Only verify interactions whose description match the provided regular expression|
|pact.filter.providerState|Only verify interactions whose provider state match the provided regular expression. An empty string matches interactions that have no state|
|pact.verifier.publishResults|Publishing of verification results will be skipped unless this property is set to 'true'|
|pact.matching.wildcard|Enables matching of map values ignoring the keys when this property is set to 'true'|
|pact.verifier.disableUrlPathDecoding|Disables decoding of request paths|
|pact.pactbroker.httpclient.usePreemptiveAuthentication|Enables preemptive authentication with the pact broker when set to `true`|
## Provider States
For a description of what provider states are, see the pact documentations: http://docs.pact.io/documentation/provider_states.html
### Using a state change URL
For each provider you can specify a state change URL to use to switch the state of the provider. This URL will
receive the providerState description and all the parameters from the pact file before each interaction via a POST.
As for normal requests, a request filter (`stateChangeRequestFilter`) can also be set to manipulate the request before it is sent.
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
stateChangeUrl = url('http://localhost:8001/tasks/pactStateChange')
stateChangeUsesBody = false // defaults to true
stateChangeRequestFilter = { req ->
// Add an authorization header to each request
req.addHeader('Authorization', 'OAUTH eyJhbGciOiJSUzI1NiIsImN0eSI6ImFw...')
}
}
// or
hasPactsWith('consumers') {
pactFileLocation = file('path/to/pacts')
stateChangeUrl = url('http://localhost:8001/tasks/pactStateChange')
stateChangeUsesBody = false // defaults to true
}
}
}
}
```
If the `stateChangeUsesBody` is not specified, or is set to true, then the provider state description and parameters
will be sent as JSON in the body of the request :
```json
{ "state" : "a provider state description", "params": { "a": "1", "b": "2" } }
```
If it is set to false, they will be passed as query parameters.
#### Teardown calls for state changes [version 3.2.5/2.4.7+]
You can enable teardown state change calls by setting the property `stateChangeTeardown = true` on the provider. This
will add an `action` parameter to the state change call. The setup call before the test will receive `action=setup`, and
then a teardown call will be made afterwards to the state change URL with `action=teardown`.
### Using a Closure [version 2.2.2+]
You can set a closure to be called before each verification with a defined provider state. The closure will be
called with the state description and parameters from the pact file.
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
// Load a fixture file based on the provider state and then setup some database
// data. Does not require a state change request so returns false
stateChange = { providerState ->
// providerState is an instance of ProviderState
def fixture = loadFixtuerForProviderState(providerState)
setupDatabase(fixture)
}
}
}
}
}
```
#### Teardown calls for state changes [version 3.2.5/2.4.7+]
You can enable teardown state change calls by setting the property `stateChangeTeardown = true` on the provider. This
will add an `action` parameter to the state change closure call. The setup call before the test will receive `setup`,
as the second parameter, and then a teardown call will be made afterwards with `teardown` as the second parameter.
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
// Load a fixture file based on the provider state and then setup some database
// data. Does not require a state change request so returns false
stateChange = { providerState, action ->
if (action == 'setup') {
def fixture = loadFixtuerForProviderState(providerState)
setupDatabase(fixture)
} else {
cleanupDatabase()
}
false
}
}
}
}
}
```
#### Returning values that can be injected (3.6.11+)
You can have values from the provider state callbacks be injected into most places (paths, query parameters, headers,
bodies, etc.). This works by using the V3 spec generators with provider state callbacks that return values. One example
of where this would be useful is API calls that require an ID which would be auto-generated by the database on the
provider side, so there is no way to know what the ID would be beforehand.
There are methods on the consumer DSLs that can provider an expression that contains variables (like '/api/user/${id}'
for the path). The provider state callback can then return a map for values, and the `id` attribute from the map will
be expanded in the expression. For URL callbacks, the values need to be returned as JSON in the response body.
## Filtering the interactions that are verified
You can filter the interactions that are run using three project properties: `pact.filter.consumers`, `pact.filter.description` and `pact.filter.providerState`.
Adding `-Ppact.filter.consumers=consumer1,consumer2` to the command line will only run the pact files for those
consumers (consumer1 and consumer2). Adding `-Ppact.filter.description=a request for payment.*` will only run those interactions
whose descriptions start with 'a request for payment'. `-Ppact.filter.providerState=.*payment` will match any interaction that
has a provider state that ends with payment, and `-Ppact.filter.providerState=` will match any interaction that does not have a
provider state.
## Verifying pact files from a pact broker [version 3.1.1+/2.3.1+]
You can setup your build to validate against the pacts stored in a pact broker. The pact gradle plugin will query
the pact broker for all consumers that have a pact with the provider based on its name.
For example:
```groovy
pact {
serviceProviders {
provider1 {
// You can get the latest pacts from the broker
hasPactsFromPactBroker('http://pact-broker:5000/')
// And/or you can get the latest pact with a specific tag
hasPactsFromPactBrokerWithTag('http://pact-broker:5000/',"tagname")
}
}
}
```
This will verify all pacts found in the pact broker where the provider name is 'provider1'. If you need to set any
values on the consumers from the pact broker, you can add a Closure to configure them.
```groovy
pact {
serviceProviders {
provider1 {
hasPactsFromPactBroker('http://pact-broker:5000/') { consumer ->
stateChange = { providerState -> /* state change code here */ true }
}
}
}
}
```
**NOTE: Currently the pacts are fetched from the broker during the configuration phase of the build. This means that
if the broker is not available, you will not be able to run any Gradle tasks.** This should be fixed in a forth coming
release.
In the mean time, to only load the pacts when running the validate task, you can do something like:
```groovy
pact {
serviceProviders {
provider1 {
// Only load the pacts from the broker if the start tasks from the command line include pactVerify
if ('pactVerify' in gradle.startParameter.taskNames) {
hasPactsFromPactBroker('http://pact-broker:5000/') { consumer ->
stateChange = { providerState -> /* state change code here */ true }
}
}
}
}
}
```
### Using an authenticated Pact Broker
You can add the authentication details for the Pact Broker like so:
```groovy
pact {
serviceProviders {
provider1 {
hasPactsFromPactBroker('http://pact-broker:5000/', authentication: ['Basic', pactBrokerUser, pactBrokerPassword])
}
}
}
```
`pactBrokerUser` and `pactBrokerPassword` can be defined in the gradle properties.
Or with a bearer token:
```groovy
pact {
serviceProviders {
provider1 {
hasPactsFromPactBroker('http://pact-broker:5000/', authentication: ['Bearer', pactBrokerToken])
}
}
}
```
Preemptive Authentication can be enabled by setting the `pact.pactbroker.httpclient.usePreemptiveAuthentication` Java
system property to `true`.
## Verifying pact files from a S3 bucket [version 3.3.2+/2.4.17+]
Pact files stored in an S3 bucket can be verified by using an S3 URL to the pact file. I.e.,
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = 's3://bucketname/path/to/provider1-consumer1-pact.json'
}
}
}
}
```
**NOTE:** you can't use the `url` function with S3 URLs, as the URL and URI classes from the Java SDK
don't support URLs with the s3 scheme.
# Publishing pact files to a pact broker [version 2.2.7+]
The pact gradle plugin provides a `pactPublish` task that can publish all pact files in a directory
to a pact broker. To use it, you need to add a publish configuration to the pact configuration that defines the
directory where the pact files are and the URL to the pact broker.
For example:
```groovy
pact {
publish {
pactDirectory = '/pact/dir' // defaults to $buildDir/pacts
pactBrokerUrl = 'http://pactbroker:1234'
}
}
```
You can set any tags that the pacts should be published with by setting the `tags` property. A common use of this
is setting the tag to the current source control branch. This supports using pact with feature branches.
```groovy
pact {
publish {
pactDirectory = '/pact/dir' // defaults to $buildDir/pacts
pactBrokerUrl = 'http://pactbroker:1234'
tags = [project.pactBrokerTag]
}
}
```
_NOTE:_ The pact broker requires a version for all published pacts. The `pactPublish` task will use the version of the
gradle project by default. Make sure you have set one otherwise the broker will reject the pact files.
_Version 3.2.2/2.4.3+_ you can override the version in the publish block.
## Publishing to an authenticated pact broker
To publish to a broker protected by basic auth, include the username/password in the `pactBrokerUrl`.
For example:
```groovy
pact {
publish {
pactBrokerUrl = 'https://username:[email protected]'
}
}
```
### [version 3.3.9+]
You can add the username and password as properties since version 3.3.9+
```groovy
pact {
publish {
pactBrokerUrl = 'https://mypactbroker.com'
pactBrokerUsername = 'username'
pactBrokerPassword = 'password'
}
}
```
or with a bearer token
```groovy
pact {
publish {
pactBrokerUrl = 'https://mypactbroker.com'
pactBrokerToken = 'token'
}
}
```
## Excluding pacts from being published [version 3.5.19+]
You can exclude some of the pact files from being published by providing a list of regular expressions that match
against the base names of the pact files.
For example:
```groovy
pact {
publish {
pactBrokerUrl = 'https://mypactbroker.com'
excludes = [ '.*\\-\\d+$' ] // exclude all pact files that end with a dash followed by a number in the name
}
}
```
# Verifying a message provider [version 2.2.12+]
The Gradle plugin has been updated to allow invoking test methods that can return the message contents from a message
producer. To use it, set the way to invoke the verification to `ANNOTATED_METHOD`. This will allow the pact verification
task to scan for test methods that return the message contents.
Add something like the following to your gradle build file:
```groovy
pact {
serviceProviders {
messageProvider {
verificationType = 'ANNOTATED_METHOD'
packagesToScan = ['au.com.example.messageprovider.*'] // This is optional, but leaving it out will result in the entire
// test classpath being scanned
hasPactWith('messageConsumer') {
pactFile = url('url/to/messagepact.json')
}
}
}
}
```
Now when the `pactVerify` task is run, will look for methods annotated with `@PactVerifyProvider` in the test classpath
that have a matching description to what is in the pact file.
```groovy
class ConfirmationKafkaMessageBuilderTest {
@PactVerifyProvider('an order confirmation message')
String verifyMessageForOrder() {
Order order = new Order()
order.setId(10000004)
order.setExchange('ASX')
order.setSecurityCode('CBA')
order.setPrice(BigDecimal.TEN)
order.setUnits(15)
order.setGst(new BigDecimal('15.0'))
order.setFees(BigDecimal.TEN)
def message = new ConfirmationKafkaMessageBuilder()
.withOrder(order)
.build()
JsonOutput.toJson(message)
}
}
```
It will then validate that the returned contents matches the contents for the message in the pact file.
## Publishing to the Gradle Community Portal
To publish the plugin to the community portal:
$ ./gradlew :pact-jvm-provider-gradle_2.11:publishPlugins
# Verification Reports [versions 3.2.7/2.4.9+]
The default behaviour is to display the verification being done to the console, and pass or fail the build via the normal
Gradle mechanism. From versions 3.2.7/2.4.9+, additional reports can be generated from the verification.
## Enabling additional reports
The verification reports can be controlled by adding a reports section to the pact configuration in the gradle build file.
For example:
```groovy
pact {
reports {
defaultReports() // adds the standard console output
markdown // report in markdown format
json // report in json format
}
}
```
Any report files will be written to "build/reports/pact".
## Additional Reports
The following report types are available in addition to console output (which is enabled by default):
`markdown`, `json`.
# Publishing verification results to a Pact Broker [version 3.5.4+]
For pacts that are loaded from a Pact Broker, the results of running the verification can be published back to the
broker against the URL for the pact. You will be able to see the result on the Pact Broker home screen.
To turn on the verification publishing, set the project property `pact.verifier.publishResults` to `true` [version 3.5.18+].
Group: au.com.dius Artifact: pact-jvm-provider-gradle_2.12
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Artifact pact-jvm-provider-gradle_2.12
Group au.com.dius
Version 3.6.15
Last update 29. April 2020
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 2
Dependencies pact-jvm-provider_2.12, jansi,
There are maybe transitive dependencies!
Group au.com.dius
Version 3.6.15
Last update 29. April 2020
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 2
Dependencies pact-jvm-provider_2.12, jansi,
There are maybe transitive dependencies!
pact-jvm-provider-gradle from group au.com.dius (version 4.0.10)
pact-jvm-provider-gradle
========================
Gradle plugin for verifying pacts against a provider.
The Gradle plugin creates a task `pactVerify` to your build which will verify all configured pacts against your provider.
__*Important Note: Any properties that need to be set when using the Gradle plugin need to be provided with `-P` and
not `-D` as with the other Pact-JVM modules!*__
## To Use It
### For Gradle versions prior to 2.1
#### 1.1. Add the pact-jvm-provider-gradle jar file to your build script class path:
```groovy
buildscript {
repositories {
mavenCentral()
}
dependencies {
classpath 'au.com.dius:pact-jvm-provider-gradle:4.0.0'
}
}
```
#### 1.2. Apply the pact plugin
```groovy
apply plugin: 'au.com.dius.pact'
```
### For Gradle versions 2.1+
```groovy
plugins {
id "au.com.dius.pact" version "4.0.0"
}
```
### 2. Define the pacts between your consumers and providers
```groovy
pact {
serviceProviders {
// You can define as many as you need, but each must have a unique name
provider1 {
// All the provider properties are optional, and have sensible defaults (shown below)
protocol = 'http'
host = 'localhost'
port = 8080
path = '/'
// Again, you can define as many consumers for each provider as you need, but each must have a unique name
hasPactWith('consumer1') {
// currently supports a file path using file() or a URL using url()
pactSource = file('path/to/provider1-consumer1-pact.json')
}
// Or if you have many pact files in a directory
hasPactsWith('manyConsumers') {
// Will define a consumer for each pact file in the directory.
// Consumer name is read from contents of pact file
pactFileLocation = file('path/to/pacts')
}
}
}
}
```
### 3. Execute `gradle pactVerify`
## Specifying the provider hostname at runtime
If you need to calculate the provider hostname at runtime, you can give a Closure as the provider `host`.
```groovy
pact {
serviceProviders {
provider1 {
host = { lookupHostName() }
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
You can also give a Closure as the provider `port`.
## Specifying the pact file or URL at runtime
If you need to calculate the pact file or URL at runtime, you can give a Closure as the provider `pactFile`.
```groovy
pact {
serviceProviders {
provider1 {
host = 'localhost'
hasPactWith('consumer1') {
pactFile = { lookupPactFile() }
}
}
}
}
```
## Starting and shutting down your provider
If you need to start-up or shutdown your provider, define Gradle tasks for each action and set
`startProviderTask` and `terminateProviderTask` properties of each provider.
You could use the jetty tasks here if you provider is built as a WAR file.
```groovy
// This will be called before the provider task
task('startTheApp') {
doLast {
// start up your provider here
}
}
// This will be called after the provider task
task('killTheApp') {
doLast {
// kill your provider here
}
}
pact {
serviceProviders {
provider1 {
startProviderTask = startTheApp
terminateProviderTask = killTheApp
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
Following typical Gradle behaviour, you can set the provider task properties to the actual tasks, or to the task names
as a string (for the case when they haven't been defined yet).
## Preventing the chaining of provider verify task to `pactVerify`
Normally a gradle task named `pactVerify_${provider.name}` is created and added as a task dependency for `pactVerify`. You
can disable this dependency on a provider by setting `isDependencyForPactVerify` to `false` (defaults to `true`).
```groovy
pact {
serviceProviders {
provider1 {
isDependencyForPactVerify = false
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
To run this task, you would then have to explicitly name it as in ```gradle pactVerify_provider1```, a normal ```gradle pactVerify```
would skip it. This can be useful when you want to define two providers, one with `startProviderTask`/`terminateProviderTask`
and as second without, so you can manually start your provider (to debug it from your IDE, for example) but still want a `pactVerify`
to run normally from your CI build.
## Enabling insecure SSL
For providers that are running on SSL with self-signed certificates, you need to enable insecure SSL mode by setting
`insecure = true` on the provider.
```groovy
pact {
serviceProviders {
provider1 {
insecure = true // allow SSL with a self-signed cert
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
## Specifying a custom trust store
For environments that are running their own certificate chains:
```groovy
pact {
serviceProviders {
provider1 {
trustStore = new File('relative/path/to/trustStore.jks')
trustStorePassword = 'changeit'
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
`trustStore` is either relative to the current working (build) directory. `trustStorePassword` defaults to `changeit`.
NOTE: The hostname will still be verified against the certificate.
## Modifying the HTTP Client Used
The default HTTP client is used for all requests to providers (created with a call to `HttpClients.createDefault()`).
This can be changed by specifying a closure assigned to createClient on the provider that returns a CloseableHttpClient. For example:
```groovy
pact {
serviceProviders {
provider1 {
createClient = { provider ->
// This will enable the client to accept self-signed certificates
HttpClients.custom().setSSLHostnameVerifier(new NoopHostnameVerifier())
.setSslcontext(new SSLContextBuilder().loadTrustMaterial(null, { x509Certificates, s -> true })
.build())
.build()
}
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
## Modifying the requests before they are sent
Sometimes you may need to add things to the requests that can't be persisted in a pact file. Examples of these would
be authentication tokens, which have a small life span. The Pact Gradle plugin provides a request filter that can be
set to a closure on the provider that will be called before the request is made. This closure will receive the HttpRequest
prior to it being executed.
```groovy
pact {
serviceProviders {
provider1 {
requestFilter = { req ->
// Add an authorization header to each request
req.addHeader('Authorization', 'OAUTH eyJhbGciOiJSUzI1NiIsImN0eSI6ImFw...')
}
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
__*Important Note:*__ You should only use this feature for things that can not be persisted in the pact file. By modifying
the request, you are potentially modifying the contract from the consumer tests!
## Turning off URL decoding of the paths in the pact file
By default the paths loaded from the pact file will be decoded before the request is sent to the provider. To turn this
behaviour off, set the property `pact.verifier.disableUrlPathDecoding` to `true`.
__*Important Note:*__ If you turn off the url path decoding, you need to ensure that the paths in the pact files are
correctly encoded. The verifier will not be able to make a request with an invalid encoded path.
## Project Properties
The following project properties can be specified with `-Pproperty=value` on the command line:
|Property|Description|
|--------|-----------|
|`pact.showStacktrace`|This turns on stacktrace printing for each request. It can help with diagnosing network errors|
|`pact.showFullDiff`|This turns on displaying the full diff of the expected versus actual bodies|
|`pact.filter.consumers`|Comma seperated list of consumer names to verify|
|`pact.filter.description`|Only verify interactions whose description match the provided regular expression|
|`pact.filter.providerState`|Only verify interactions whose provider state match the provided regular expression. An empty string matches interactions that have no state|
|`pact.filter.pacturl`|This filter allows just the just the changed pact specified in a webhook to be run. It should be used in conjunction with `pact.filter.consumers` |
|`pact.verifier.publishResults`|Publishing of verification results will be skipped unless this property is set to 'true'|
|`pact.matching.wildcard`|Enables matching of map values ignoring the keys when this property is set to 'true'|
|`pact.verifier.disableUrlPathDecoding`|Disables decoding of request paths|
|`pact.pactbroker.httpclient.usePreemptiveAuthentication`|Enables preemptive authentication with the pact broker when set to `true`|
|`pact.provider.tag`|Sets the provider tag to push before publishing verification results|
## Provider States
For a description of what provider states are, see the pact documentations: http://docs.pact.io/documentation/provider_states.html
### Using a state change URL
For each provider you can specify a state change URL to use to switch the state of the provider. This URL will
receive the providerState description and all the parameters from the pact file before each interaction via a POST.
As for normal requests, a request filter (`stateChangeRequestFilter`) can also be set to manipulate the request before it is sent.
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
stateChangeUrl = url('http://localhost:8001/tasks/pactStateChange')
stateChangeUsesBody = false // defaults to true
stateChangeRequestFilter = { req ->
// Add an authorization header to each request
req.addHeader('Authorization', 'OAUTH eyJhbGciOiJSUzI1NiIsImN0eSI6ImFw...')
}
}
// or
hasPactsWith('consumers') {
pactFileLocation = file('path/to/pacts')
stateChangeUrl = url('http://localhost:8001/tasks/pactStateChange')
stateChangeUsesBody = false // defaults to true
}
}
}
}
```
If the `stateChangeUsesBody` is not specified, or is set to true, then the provider state description and parameters
will be sent as JSON in the body of the request :
```json
{ "state" : "a provider state description", "params": { "a": "1", "b": "2" } }
```
If it is set to false, they will be passed as query parameters.
#### Teardown calls for state changes
You can enable teardown state change calls by setting the property `stateChangeTeardown = true` on the provider. This
will add an `action` parameter to the state change call. The setup call before the test will receive `action=setup`, and
then a teardown call will be made afterwards to the state change URL with `action=teardown`.
### Using a Closure
You can set a closure to be called before each verification with a defined provider state. The closure will be
called with the state description and parameters from the pact file.
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
// Load a fixture file based on the provider state and then setup some database
// data. Does not require a state change request so returns false
stateChange = { providerState ->
// providerState is an instance of ProviderState
def fixture = loadFixtuerForProviderState(providerState)
setupDatabase(fixture)
}
}
}
}
}
```
#### Teardown calls for state changes
You can enable teardown state change calls by setting the property `stateChangeTeardown = true` on the provider. This
will add an `action` parameter to the state change closure call. The setup call before the test will receive `setup`,
as the second parameter, and then a teardown call will be made afterwards with `teardown` as the second parameter.
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
// Load a fixture file based on the provider state and then setup some database
// data. Does not require a state change request so returns false
stateChange = { providerState, action ->
if (action == 'setup') {
def fixture = loadFixtuerForProviderState(providerState)
setupDatabase(fixture)
} else {
cleanupDatabase()
}
false
}
}
}
}
}
```
#### Returning values that can be injected
You can have values from the provider state callbacks be injected into most places (paths, query parameters, headers,
bodies, etc.). This works by using the V3 spec generators with provider state callbacks that return values. One example
of where this would be useful is API calls that require an ID which would be auto-generated by the database on the
provider side, so there is no way to know what the ID would be beforehand.
There are methods on the consumer DSLs that can provider an expression that contains variables (like '/api/user/${id}'
for the path). The provider state callback can then return a map for values, and the `id` attribute from the map will
be expanded in the expression. For URL callbacks, the values need to be returned as JSON in the response body.
## Filtering the interactions that are verified
You can filter the interactions that are run using three project properties: `pact.filter.consumers`, `pact.filter.description` and `pact.filter.providerState`.
Adding `-Ppact.filter.consumers=consumer1,consumer2` to the command line will only run the pact files for those
consumers (consumer1 and consumer2). Adding `-Ppact.filter.description=a request for payment.*` will only run those interactions
whose descriptions start with 'a request for payment'. `-Ppact.filter.providerState=.*payment` will match any interaction that
has a provider state that ends with payment, and `-Ppact.filter.providerState=` will match any interaction that does not have a
provider state.
## Verifying pact files from a pact broker
You can setup your build to validate against the pacts stored in a pact broker. The pact gradle plugin will query
the pact broker for all consumers that have a pact with the provider based on its name.
For example:
```groovy
pact {
serviceProviders {
provider1 {
// You can get the latest pacts from the broker
hasPactsFromPactBroker('http://pact-broker:5000/')
// And/or you can get the latest pact with a specific tag
hasPactsFromPactBrokerWithTag('http://pact-broker:5000/',"tagname")
}
}
}
```
This will verify all pacts found in the pact broker where the provider name is 'provider1'. If you need to set any
values on the consumers from the pact broker, you can add a Closure to configure them.
```groovy
pact {
serviceProviders {
provider1 {
hasPactsFromPactBroker('http://pact-broker:5000/') { consumer ->
stateChange = { providerState -> /* state change code here */ true }
}
}
}
}
```
**NOTE: Currently the pacts are fetched from the broker during the configuration phase of the build. This means that
if the broker is not available, you will not be able to run any Gradle tasks.** This should be fixed in a forth coming
release.
In the mean time, to only load the pacts when running the validate task, you can do something like:
```groovy
pact {
serviceProviders {
provider1 {
// Only load the pacts from the broker if the start tasks from the command line include pactVerify
if ('pactVerify' in gradle.startParameter.taskNames) {
hasPactsFromPactBroker('http://pact-broker:5000/') { consumer ->
stateChange = { providerState -> /* state change code here */ true }
}
}
}
}
}
```
### Using an authenticated Pact Broker
You can add the authentication details for the Pact Broker like so:
```groovy
pact {
serviceProviders {
provider1 {
hasPactsFromPactBroker('http://pact-broker:5000/', authentication: ['Basic', pactBrokerUser, pactBrokerPassword])
}
}
}
```
`pactBrokerUser` and `pactBrokerPassword` can be defined in the gradle properties.
Or with a bearer token:
```groovy
pact {
serviceProviders {
provider1 {
hasPactsFromPactBroker('http://pact-broker:5000/', authentication: ['Bearer', pactBrokerToken])
}
}
}
```
Preemptive Authentication can be enabled by setting the `pact.pactbroker.httpclient.usePreemptiveAuthentication` property to `true`.
### Allowing just the changed pact specified in a webhook to be verified [4.0.6+]
When a consumer publishes a new version of a pact file, the Pact broker can fire off a webhook with the URL of the changed
pact file. To allow only the changed pact file to be verified, you can override the URL by using the `pact.filter.consumers`
and `pact.filter.pacturl` project properties.
For example, running:
```console
gradle pactVerify -Ppact.filter.consumers='Foo Web Client' -Ppact.filter.pacturl=https://test.pact.dius.com.au/pacts/provider/Activity%20Service/consumer/Foo%20Web%20Client/version/1.0.1
```
will only run the verification for Foo Web Client with the given pact file URL.
## Verifying pact files from a S3 bucket
**NOTE:** You will need to add the Amazon S3 SDK jar file to your project.
Pact files stored in an S3 bucket can be verified by using an S3 URL to the pact file. I.e.,
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = 's3://bucketname/path/to/provider1-consumer1-pact.json'
}
}
}
}
```
**NOTE:** you can't use the `url` function with S3 URLs, as the URL and URI classes from the Java SDK
don't support URLs with the s3 scheme.
# Publishing pact files to a pact broker
The pact gradle plugin provides a `pactPublish` task that can publish all pact files in a directory
to a pact broker. To use it, you need to add a publish configuration to the pact configuration that defines the
directory where the pact files are and the URL to the pact broker.
For example:
```groovy
pact {
publish {
pactDirectory = '/pact/dir' // defaults to $buildDir/pacts
pactBrokerUrl = 'http://pactbroker:1234'
}
}
```
You can set any tags that the pacts should be published with by setting the `tags` property. A common use of this
is setting the tag to the current source control branch. This supports using pact with feature branches.
```groovy
pact {
publish {
pactDirectory = '/pact/dir' // defaults to $buildDir/pacts
pactBrokerUrl = 'http://pactbroker:1234'
tags = [project.pactBrokerTag]
}
}
```
_NOTE:_ The pact broker requires a version for all published pacts. The `pactPublish` task will use the version of the
gradle project by default. You can override this with the `providerVersion` property. Make sure you have set one
otherwise the broker will reject the pact files.
## Publishing to an authenticated pact broker
To publish to a broker protected by basic auth, include the username/password in the `pactBrokerUrl`.
For example:
```groovy
pact {
publish {
pactBrokerUrl = 'https://username:[email protected]'
}
}
```
You can add the username and password as properties.
```groovy
pact {
publish {
pactBrokerUrl = 'https://mypactbroker.com'
pactBrokerUsername = 'username'
pactBrokerPassword = 'password'
}
}
```
or with a bearer token
```groovy
pact {
publish {
pactBrokerUrl = 'https://mypactbroker.com'
pactBrokerToken = 'token'
}
}
```
## Excluding pacts from being published
You can exclude some of the pact files from being published by providing a list of regular expressions that match
against the base names of the pact files.
For example:
```groovy
pact {
publish {
pactBrokerUrl = 'https://mypactbroker.com'
excludes = [ '.*\\-\\d+$' ] // exclude all pact files that end with a dash followed by a number in the name
}
}
```
# Verifying a message provider
The Gradle plugin has been updated to allow invoking test methods that can return the message contents from a message
producer. To use it, set the way to invoke the verification to `ANNOTATED_METHOD`. This will allow the pact verification
task to scan for test methods that return the message contents.
Add something like the following to your gradle build file:
```groovy
pact {
serviceProviders {
messageProvider {
verificationType = 'ANNOTATED_METHOD'
packagesToScan = ['au.com.example.messageprovider.*'] // This is optional, but leaving it out will result in the entire
// test classpath being scanned
hasPactWith('messageConsumer') {
pactFile = url('url/to/messagepact.json')
}
}
}
}
```
Now when the `pactVerify` task is run, will look for methods annotated with `@PactVerifyProvider` in the test classpath
that have a matching description to what is in the pact file.
```groovy
class ConfirmationKafkaMessageBuilderTest {
@PactVerifyProvider('an order confirmation message')
String verifyMessageForOrder() {
Order order = new Order()
order.setId(10000004)
order.setExchange('ASX')
order.setSecurityCode('CBA')
order.setPrice(BigDecimal.TEN)
order.setUnits(15)
order.setGst(new BigDecimal('15.0'))
order.setFees(BigDecimal.TEN)
def message = new ConfirmationKafkaMessageBuilder()
.withOrder(order)
.build()
JsonOutput.toJson(message)
}
}
```
It will then validate that the returned contents matches the contents for the message in the pact file.
## Publishing to the Gradle Community Portal
To publish the plugin to the community portal:
$ ./gradlew :pact-jvm-provider-gradle_2.11:publishPlugins
# Verification Reports
The default behaviour is to display the verification being done to the console, and pass or fail the build via the normal
Gradle mechanism. Additional reports can be generated from the verification.
## Enabling additional reports
The verification reports can be controlled by adding a reports section to the pact configuration in the gradle build file.
For example:
```groovy
pact {
reports {
defaultReports() // adds the standard console output
markdown // report in markdown format
json // report in json format
}
}
```
Any report files will be written to "build/reports/pact".
## Additional Reports
The following report types are available in addition to console output (which is enabled by default):
`markdown`, `json`.
# Publishing verification results to a Pact Broker
For pacts that are loaded from a Pact Broker, the results of running the verification can be published back to the
broker against the URL for the pact. You will be able to see the result on the Pact Broker home screen.
To turn on the verification publishing, set the project property `pact.verifier.publishResults` to `true`.
By default, the Gradle project version will be used as the provider version. You can override this by setting the
`providerVersion` property.
```groovy
pact {
serviceProviders {
provider1 {
providerVersion = { branchName() + '-' + abbreviatedId() }
hasPactsFromPactBroker('http://pact-broker:5000/', authentication: ['Basic', pactBrokerUser, pactBrokerPassword])
}
}
}
```
## Tagging the provider before verification results are published [4.0.1+]
You can have a tag pushed against the provider version before the verification results are published. There are two ways
to do this with the Gradle plugin. You can provide a closure in a similar way to the provider version, i.e.
```groovy
pact {
serviceProviders {
provider1 {
providerVersion = { branchName() + '-' + abbreviatedId() }
providerTag = { branchName() }
hasPactsFromPactBroker('http://pact-broker:5000/', authentication: ['Basic', pactBrokerUser, pactBrokerPassword])
}
}
}
```
or you can set the `pact.provider.tag` JVM system property. For example:
```console
$ ./gradlew -d pactverify -Ppact.verifier.publishResults=true -Dpact.provider.tag=Test2
```
Group: au.com.dius Artifact: pact-jvm-provider-gradle
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Artifact pact-jvm-provider-gradle
Group au.com.dius
Version 4.0.10
Last update 18. April 2020
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 2
Dependencies pact-jvm-provider, jansi,
There are maybe transitive dependencies!
Group au.com.dius
Version 4.0.10
Last update 18. April 2020
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 2
Dependencies pact-jvm-provider, jansi,
There are maybe transitive dependencies!
pact-jvm-provider-gradle_2.11 from group au.com.dius (version 3.5.24)
pact-jvm-provider-gradle
========================
Gradle plugin for verifying pacts against a provider.
The Gradle plugin creates a task `pactVerify` to your build which will verify all configured pacts against your provider.
## To Use It
### For Gradle versions prior to 2.1
#### 1.1. Add the pact-jvm-provider-gradle jar file to your build script class path:
```groovy
buildscript {
repositories {
mavenCentral()
}
dependencies {
classpath 'au.com.dius:pact-jvm-provider-gradle_2.10:3.2.11'
}
}
```
#### 1.2. Apply the pact plugin
```groovy
apply plugin: 'au.com.dius.pact'
```
### For Gradle versions 2.1+
```groovy
plugins {
id "au.com.dius.pact" version "3.2.11"
}
```
### 2. Define the pacts between your consumers and providers
```groovy
pact {
serviceProviders {
// You can define as many as you need, but each must have a unique name
provider1 {
// All the provider properties are optional, and have sensible defaults (shown below)
protocol = 'http'
host = 'localhost'
port = 8080
path = '/'
// Again, you can define as many consumers for each provider as you need, but each must have a unique name
hasPactWith('consumer1') {
// currently supports a file path using file() or a URL using url()
pactSource = file('path/to/provider1-consumer1-pact.json')
}
// Or if you have many pact files in a directory
hasPactsWith('manyConsumers') {
// Will define a consumer for each pact file in the directory.
// Consumer name is read from contents of pact file
pactFileLocation = file('path/to/pacts')
}
}
}
}
```
### 3. Execute `gradle pactVerify`
## Specifying the provider hostname at runtime
If you need to calculate the provider hostname at runtime, you can give a Closure as the provider `host`.
```groovy
pact {
serviceProviders {
provider1 {
host = { lookupHostName() }
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
_Since version 3.3.2+/2.4.17+_ you can also give a Closure as the provider `port`.
## Specifying the pact file or URL at runtime [versions 3.2.7/2.4.9+]
If you need to calculate the pact file or URL at runtime, you can give a Closure as the provider `pactFile`.
```groovy
pact {
serviceProviders {
provider1 {
host = 'localhost'
hasPactWith('consumer1') {
pactFile = { lookupPactFile() }
}
}
}
}
```
## Starting and shutting down your provider
If you need to start-up or shutdown your provider, define Gradle tasks for each action and set
`startProviderTask` and `terminateProviderTask` properties of each provider.
You could use the jetty tasks here if you provider is built as a WAR file.
```groovy
// This will be called before the provider task
task('startTheApp') {
doLast {
// start up your provider here
}
}
// This will be called after the provider task
task('killTheApp') {
doLast {
// kill your provider here
}
}
pact {
serviceProviders {
provider1 {
startProviderTask = startTheApp
terminateProviderTask = killTheApp
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
Following typical Gradle behaviour, you can set the provider task properties to the actual tasks, or to the task names
as a string (for the case when they haven't been defined yet).
## Preventing the chaining of provider verify task to `pactVerify` [version 3.4.1+]
Normally a gradle task named `pactVerify_${provider.name}` is created and added as a task dependency for `pactVerify`. You
can disable this dependency on a provider by setting `isDependencyForPactVerify` to `false` (defaults to `true`).
```groovy
pact {
serviceProviders {
provider1 {
isDependencyForPactVerify = false
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
To run this task, you would then have to explicitly name it as in ```gradle pactVerify_provider1```, a normal ```gradle pactVerify```
would skip it. This can be useful when you want to define two providers, one with `startProviderTask`/`terminateProviderTask`
and as second without, so you can manually start your provider (to debug it from your IDE, for example) but still want a `pactVerify`
to run normally from your CI build.
## Enabling insecure SSL [version 2.2.8+]
For providers that are running on SSL with self-signed certificates, you need to enable insecure SSL mode by setting
`insecure = true` on the provider.
```groovy
pact {
serviceProviders {
provider1 {
insecure = true // allow SSL with a self-signed cert
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
## Specifying a custom trust store [version 2.2.8+]
For environments that are running their own certificate chains:
```groovy
pact {
serviceProviders {
provider1 {
trustStore = new File('relative/path/to/trustStore.jks')
trustStorePassword = 'changeit'
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
`trustStore` is either relative to the current working (build) directory. `trustStorePassword` defaults to `changeit`.
NOTE: The hostname will still be verified against the certificate.
## Modifying the HTTP Client Used [version 2.2.4+]
The default HTTP client is used for all requests to providers (created with a call to `HttpClients.createDefault()`).
This can be changed by specifying a closure assigned to createClient on the provider that returns a CloseableHttpClient. For example:
```groovy
pact {
serviceProviders {
provider1 {
createClient = { provider ->
// This will enable the client to accept self-signed certificates
HttpClients.custom().setSSLHostnameVerifier(new NoopHostnameVerifier())
.setSslcontext(new SSLContextBuilder().loadTrustMaterial(null, { x509Certificates, s -> true })
.build())
.build()
}
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
## Modifying the requests before they are sent
**NOTE on breaking change: Version 2.1.8+ uses Apache HttpClient instead of HttpBuilder so the closure will receive a
HttpRequest object instead of a request Map.**
Sometimes you may need to add things to the requests that can't be persisted in a pact file. Examples of these would
be authentication tokens, which have a small life span. The Pact Gradle plugin provides a request filter that can be
set to a closure on the provider that will be called before the request is made. This closure will receive the HttpRequest
prior to it being executed.
```groovy
pact {
serviceProviders {
provider1 {
requestFilter = { req ->
// Add an authorization header to each request
req.addHeader('Authorization', 'OAUTH eyJhbGciOiJSUzI1NiIsImN0eSI6ImFw...')
}
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
}
}
}
}
```
__*Important Note:*__ You should only use this feature for things that can not be persisted in the pact file. By modifying
the request, you are potentially modifying the contract from the consumer tests!
## Turning off URL decoding of the paths in the pact file [version 3.3.3+]
By default the paths loaded from the pact file will be decoded before the request is sent to the provider. To turn this
behaviour off, set the system property `pact.verifier.disableUrlPathDecoding` to `true`.
__*Important Note:*__ If you turn off the url path decoding, you need to ensure that the paths in the pact files are
correctly encoded. The verifier will not be able to make a request with an invalid encoded path.
## Project Properties
The following project properties can be specified with `-Pproperty=value` on the command line:
|Property|Description|
|--------|-----------|
|pact.showStacktrace|This turns on stacktrace printing for each request. It can help with diagnosing network errors|
|pact.showFullDiff|This turns on displaying the full diff of the expected versus actual bodies [version 3.3.6+]|
|pact.filter.consumers|Comma seperated list of consumer names to verify|
|pact.filter.description|Only verify interactions whose description match the provided regular expression|
|pact.filter.providerState|Only verify interactions whose provider state match the provided regular expression. An empty string matches interactions that have no state|
|pact.verifier.publishResults|Publishing of verification results will be skipped unless this property is set to 'true'|
|pact.matching.wildcard|Enables matching of map values ignoring the keys when this property is set to 'true'|
## Provider States
For a description of what provider states are, see the pact documentations: http://docs.pact.io/documentation/provider_states.html
### Using a state change URL
For each provider you can specify a state change URL to use to switch the state of the provider. This URL will
receive the providerState description and all the parameters from the pact file before each interaction via a POST.
As for normal requests, a request filter (`stateChangeRequestFilter`) can also be set to manipulate the request before it is sent.
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
stateChangeUrl = url('http://localhost:8001/tasks/pactStateChange')
stateChangeUsesBody = false // defaults to true
stateChangeRequestFilter = { req ->
// Add an authorization header to each request
req.addHeader('Authorization', 'OAUTH eyJhbGciOiJSUzI1NiIsImN0eSI6ImFw...')
}
}
// or
hasPactsWith('consumers') {
pactFileLocation = file('path/to/pacts')
stateChangeUrl = url('http://localhost:8001/tasks/pactStateChange')
stateChangeUsesBody = false // defaults to true
}
}
}
}
```
If the `stateChangeUsesBody` is not specified, or is set to true, then the provider state description and parameters
will be sent as JSON in the body of the request :
```json
{ "state" : "a provider state description", "params": { "a": "1", "b": "2" } }
```
If it is set to false, they will be passed as query parameters.
#### Teardown calls for state changes [version 3.2.5/2.4.7+]
You can enable teardown state change calls by setting the property `stateChangeTeardown = true` on the provider. This
will add an `action` parameter to the state change call. The setup call before the test will receive `action=setup`, and
then a teardown call will be made afterwards to the state change URL with `action=teardown`.
### Using a Closure [version 2.2.2+]
You can set a closure to be called before each verification with a defined provider state. The closure will be
called with the state description and parameters from the pact file.
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
// Load a fixture file based on the provider state and then setup some database
// data. Does not require a state change request so returns false
stateChange = { providerState ->
// providerState is an instance of ProviderState
def fixture = loadFixtuerForProviderState(providerState)
setupDatabase(fixture)
}
}
}
}
}
```
#### Teardown calls for state changes [version 3.2.5/2.4.7+]
You can enable teardown state change calls by setting the property `stateChangeTeardown = true` on the provider. This
will add an `action` parameter to the state change closure call. The setup call before the test will receive `setup`,
as the second parameter, and then a teardown call will be made afterwards with `teardown` as the second parameter.
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = file('path/to/provider1-consumer1-pact.json')
// Load a fixture file based on the provider state and then setup some database
// data. Does not require a state change request so returns false
stateChange = { providerState, action ->
if (action == 'setup') {
def fixture = loadFixtuerForProviderState(providerState)
setupDatabase(fixture)
} else {
cleanupDatabase()
}
false
}
}
}
}
}
```
## Filtering the interactions that are verified
You can filter the interactions that are run using three project properties: `pact.filter.consumers`, `pact.filter.description` and `pact.filter.providerState`.
Adding `-Ppact.filter.consumers=consumer1,consumer2` to the command line will only run the pact files for those
consumers (consumer1 and consumer2). Adding `-Ppact.filter.description=a request for payment.*` will only run those interactions
whose descriptions start with 'a request for payment'. `-Ppact.filter.providerState=.*payment` will match any interaction that
has a provider state that ends with payment, and `-Ppact.filter.providerState=` will match any interaction that does not have a
provider state.
## Verifying pact files from a pact broker [version 3.1.1+/2.3.1+]
You can setup your build to validate against the pacts stored in a pact broker. The pact gradle plugin will query
the pact broker for all consumers that have a pact with the provider based on its name.
For example:
```groovy
pact {
serviceProviders {
provider1 {
// You can get the latest pacts from the broker
hasPactsFromPactBroker('http://pact-broker:5000/')
// And/or you can get the latest pact with a specific tag
hasPactsFromPactBrokerWithTag('http://pact-broker:5000/',"tagname")
}
}
}
```
This will verify all pacts found in the pact broker where the provider name is 'provider1'. If you need to set any
values on the consumers from the pact broker, you can add a Closure to configure them.
```groovy
pact {
serviceProviders {
provider1 {
hasPactsFromPactBroker('http://pact-broker:5000/') { consumer ->
stateChange = { providerState -> /* state change code here */ true }
}
}
}
}
```
**NOTE: Currently the pacts are fetched from the broker during the configuration phase of the build. This means that
if the broker is not available, you will not be able to run any Gradle tasks.** This should be fixed in a forth coming
release.
In the mean time, to only load the pacts when running the validate task, you can do something like:
```groovy
pact {
serviceProviders {
provider1 {
// Only load the pacts from the broker if the start tasks from the command line include pactVerify
if ('pactVerify' in gradle.startParameter.taskNames) {
hasPactsFromPactBroker('http://pact-broker:5000/') { consumer ->
stateChange = { providerState -> /* state change code here */ true }
}
}
}
}
}
```
### Using an authenticated Pact Broker
You can add the authentication details for the Pact Broker like so:
```groovy
pact {
serviceProviders {
provider1 {
hasPactsFromPactBroker('http://pact-broker:5000/', authentication: ['Basic', pactBrokerUser, pactBrokerPassword])
}
}
}
```
`pactBrokerUser` and `pactBrokerPassword` can be defined in the gradle properties.
## Verifying pact files from a S3 bucket [version 3.3.2+/2.4.17+]
Pact files stored in an S3 bucket can be verified by using an S3 URL to the pact file. I.e.,
```groovy
pact {
serviceProviders {
provider1 {
hasPactWith('consumer1') {
pactFile = 's3://bucketname/path/to/provider1-consumer1-pact.json'
}
}
}
}
```
**NOTE:** you can't use the `url` function with S3 URLs, as the URL and URI classes from the Java SDK
don't support URLs with the s3 scheme.
# Publishing pact files to a pact broker [version 2.2.7+]
The pact gradle plugin provides a `pactPublish` task that can publish all pact files in a directory
to a pact broker. To use it, you need to add a publish configuration to the pact configuration that defines the
directory where the pact files are and the URL to the pact broker.
For example:
```groovy
pact {
publish {
pactDirectory = '/pact/dir' // defaults to $buildDir/pacts
pactBrokerUrl = 'http://pactbroker:1234'
}
}
```
You can set any tags that the pacts should be published with by setting the `tags` property. A common use of this
is setting the tag to the current source control branch. This supports using pact with feature branches.
```groovy
pact {
publish {
pactDirectory = '/pact/dir' // defaults to $buildDir/pacts
pactBrokerUrl = 'http://pactbroker:1234'
tags = [project.pactBrokerTag]
}
}
```
_NOTE:_ The pact broker requires a version for all published pacts. The `pactPublish` task will use the version of the
gradle project by default. Make sure you have set one otherwise the broker will reject the pact files.
_Version 3.2.2/2.4.3+_ you can override the version in the publish block.
## Publishing to an authenticated pact broker
To publish to a broker protected by basic auth, include the username/password in the `pactBrokerUrl`.
For example:
```groovy
pact {
publish {
pactBrokerUrl = 'https://username:[email protected]'
}
}
```
### [version 3.3.9+]
You can add the username and password as properties since version 3.3.9+
```groovy
pact {
publish {
pactBrokerUrl = 'https://mypactbroker.com'
pactBrokerUsername = 'username'
pactBrokerPassword = 'password'
}
}
```
## Excluding pacts from being published [version 3.5.19+]
You can exclude some of the pact files from being published by providing a list of regular expressions that match
against the base names of the pact files.
For example:
```groovy
pact {
publish {
pactBrokerUrl = 'https://mypactbroker.com'
excludes = [ '.*\\-\\d+$' ] // exclude all pact files that end with a dash followed by a number in the name
}
}
```
# Verifying a message provider [version 2.2.12+]
The Gradle plugin has been updated to allow invoking test methods that can return the message contents from a message
producer. To use it, set the way to invoke the verification to `ANNOTATED_METHOD`. This will allow the pact verification
task to scan for test methods that return the message contents.
Add something like the following to your gradle build file:
```groovy
pact {
serviceProviders {
messageProvider {
verificationType = 'ANNOTATED_METHOD'
packagesToScan = ['au.com.example.messageprovider.*'] // This is optional, but leaving it out will result in the entire
// test classpath being scanned
hasPactWith('messageConsumer') {
pactFile = url('url/to/messagepact.json')
}
}
}
}
```
Now when the `pactVerify` task is run, will look for methods annotated with `@PactVerifyProvider` in the test classpath
that have a matching description to what is in the pact file.
```groovy
class ConfirmationKafkaMessageBuilderTest {
@PactVerifyProvider('an order confirmation message')
String verifyMessageForOrder() {
Order order = new Order()
order.setId(10000004)
order.setExchange('ASX')
order.setSecurityCode('CBA')
order.setPrice(BigDecimal.TEN)
order.setUnits(15)
order.setGst(new BigDecimal('15.0'))
order.setFees(BigDecimal.TEN)
def message = new ConfirmationKafkaMessageBuilder()
.withOrder(order)
.build()
JsonOutput.toJson(message)
}
}
```
It will then validate that the returned contents matches the contents for the message in the pact file.
## Publishing to the Gradle Community Portal
To publish the plugin to the community portal:
$ ./gradlew :pact-jvm-provider-gradle_2.11:publishPlugins
# Verification Reports [versions 3.2.7/2.4.9+]
The default behaviour is to display the verification being done to the console, and pass or fail the build via the normal
Gradle mechanism. From versions 3.2.7/2.4.9+, additional reports can be generated from the verification.
## Enabling additional reports
The verification reports can be controlled by adding a reports section to the pact configuration in the gradle build file.
For example:
```groovy
pact {
reports {
defaultReports() // adds the standard console output
markdown // report in markdown format
json // report in json format
}
}
```
Any report files will be written to "build/reports/pact".
## Additional Reports
The following report types are available in addition to console output (which is enabled by default):
`markdown`, `json`.
# Publishing verification results to a Pact Broker [version 3.5.4+]
For pacts that are loaded from a Pact Broker, the results of running the verification can be published back to the
broker against the URL for the pact. You will be able to see the result on the Pact Broker home screen.
To turn on the verification publishing, set the project property `pact.verifier.publishResults` to `true` [version 3.5.18+].
Group: au.com.dius Artifact: pact-jvm-provider-gradle_2.11
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Artifact pact-jvm-provider-gradle_2.11
Group au.com.dius
Version 3.5.24
Last update 04. November 2018
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 9
Dependencies kotlin-stdlib-jdk8, kotlin-reflect, slf4j-api, groovy-all, kotlin-logging, scala-library, scala-logging_2.11, pact-jvm-provider_2.11, jansi,
There are maybe transitive dependencies!
Group au.com.dius
Version 3.5.24
Last update 04. November 2018
Organization not specified
URL https://github.com/DiUS/pact-jvm
License Apache 2
Dependencies amount 9
Dependencies kotlin-stdlib-jdk8, kotlin-reflect, slf4j-api, groovy-all, kotlin-logging, scala-library, scala-logging_2.11, pact-jvm-provider_2.11, jansi,
There are maybe transitive dependencies!
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