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This is a Java implementation of the JSON-LD specification and the JSON-LD-API specification.
<dependency>
<groupId>com.github.jsonld-java</groupId>
<artifactId>jsonld-java</artifactId>
<version>0.7.0</version>
</dependency>
// Open a valid json(-ld) input file
InputStream inputStream = new FileInputStream("input.json");
// Read the file into an Object (The type of this object will be a List, Map, String, Boolean,
// Number or null depending on the root object in the file).
Object jsonObject = JsonUtils.fromInputStream(inputStream);
// Create a context JSON map containing prefixes and definitions
Map context = new HashMap();
// Customise context...
// Create an instance of JsonLdOptions with the standard JSON-LD options
JsonLdOptions options = new JsonLdOptions();
// Customise options...
// Call whichever JSONLD function you want! (e.g. compact)
Object compact = JsonLdProcessor.compact(jsonObject, context, options);
// Print out the result (or don't, it's your call!)
System.out.println(JsonUtils.toPrettyString(compact));The Options specified by the JSON-LD API Specification are accessible via the com.github.jsonldjava.core.JsonLdOptions class, and each JsonLdProcessor.* function has an optional input to take an instance of this class.
Parsing JSON-LD will normally follow any external @context declarations. Loading these contexts from the network may in some cases not be desirable, or might require additional proxy configuration or authentication.
JSONLD-Java uses the Apache HTTPComponents Client for these network connections, based on the SystemDefaultHttpClient which reads standard Java properties like http.proxyHost.
The default HTTP Client is wrapped with a CachingHttpClient to provide a small memory-based cache (1000 objects, max 128 kB each) of regularly accessed contexts.
Your application might be parsing JSONLD documents which always use the same external @context IRIs. Although the default HTTP cache (see above) will avoid repeated downloading of the same contexts, your application would still initially be vulnerable to network connectivity.
To bypass this issue, and even facilitate parsing of such documents in an offline state, it is possible to provide a 'warmed' cache populated from the classpath, e.g. loaded from a JAR.
In your application, simply add a resource jarcache.json to the root of your classpath together with the JSON-LD contexts to embed. (Note that you might have to recursively embed any nested contexts).
The syntax of jarcache.json is best explained by example:
[
{
"Content-Location": "http://www.example.com/context",
"X-Classpath": "contexts/example.jsonld",
"Content-Type": "application/ld+json"
},
{
"Content-Location": "http://data.example.net/other",
"X-Classpath": "contexts/other.jsonld",
"Content-Type": "application/ld+json"
}
](See also core/src/test/resources/jarcache.json).
This will mean that any JSON-LD document trying to import the @context http://www.example.com/context will instead be given contexts/example.jsonld loaded as a classpath resource.
The X-Classpath location is an IRI reference resolved relative to the location of the jarcache.json - so if you have multiple JARs with a jarcache.json each, then the X-Classpath will be resolved within the corresponding JAR (minimizing any conflicts).
Additional HTTP headers (such as Content-Type above) can be included, although these are generally ignored by JSONLD-Java.
Unless overridden in jarcache.json, this Cache-Control header is automatically injected together with the current Date, meaning that the resource loaded from the JAR will effectively never expire (the real HTTP server will never be consulted by the Apache HTTP client):
Date: Wed, 19 Mar 2014 13:25:08 GMT Cache-Control: max-age=2147483647
The mechanism for loading jarcache.json relies on Thread.currentThread().getContextClassLoader() to locate resources from the classpath - if you are running on a command line, within a framework (e.g. OSGi) or Servlet container (e.g. Tomcat) this should normally be set correctly. If not, try:
ClassLoader oldContextCL = Thread.currentThread().getContextClassLoader();
try {
Thread.currentThread().setContextClassLoader(getClass().getClassLoader());
JsonLdProcessor.expand(input); // or any other JsonLd operation
} finally {
// Restore, in case the current thread was doing something else
// with the context classloader before calling our method
Thread.currentThread().setContextClassLoader(oldContextCL);
}
To customize the HTTP behaviour (e.g. to disable the cache or provide authentication credentials), you may want to create and configure your own HttpClient instance, which can be passed to a DocumentLoader instance using setHttpClient(). This document loader can then be inserted into JsonLdOptions using setDocumentLoader() and passed as an argument to JsonLdProcessor arguments.
Example of inserting a credential provider (e.g. to load a @context protected by HTTP Basic Auth):
Object input = JsonUtils.fromInputStream(..);
DocumentLoader documentLoader = new DocumentLoader();
CredentialsProvider credsProvider = new BasicCredentialsProvider();
credsProvider.setCredentials(
new AuthScope("localhost", 443),
new UsernamePasswordCredentials("username", "password"));
DefaultHttpClient httpClient = new SystemDefaultHttpClient();
httpClient.setCredentialsProvider(credsProvider);
documentLoader.setHttpClient(httpClient);
JsonLdOptions options = new JsonLdOptions();
options.setDocumentLoader(documentLoader);
// .. and any other options
Object rdf = JsonLdProcessor.toRDF(input, options);
Note that if you override the DocumentLoader HTTP Client, this would also disable the JAR Cache (see above), unless reinitiated:
JarCacheStorage jarCache = new JarCacheStorage();
httpClient = new CachingHttpClient(httpClient, jarCache, jarCache.getCacheConfig());
documentLoader.setHttpClient(httpClient);
All code specific to various RDF implementations are stored in the integration modules. Readmes for how to use these modules should be present in their respective folders.
The implementation specific integration classes for both Sesame and Jena have been moved into their respective codebases.
The jsonld-java-tools repository contains a simple application which provides command line access to JSON-LD functions
git clone git@github.com:jsonld-java/jsonld-java-tools.git chmod +x ./jsonldplayground
run the following to get usage details:
./jsonldplayground --help
jsonld-java uses maven to compile. From the base jsonld-java module run mvn clean install to install the jar into your local maven repository.
mvn test
or
mvn test -pl core
to run only core package tests
The JSONLD-Java project uses custom Eclipse formatting and cleanup style guides to ensure that Pull Requests are fairly simple to merge.
These guides can be found in the /conf directory and can be installed in Eclipse using "Properties>Java Code Style>Formatter", followed by "Properties>Java Code Style>Clean Up" for each of the modules making up the JSONLD-Java project.
If you don't use Eclipse, then don't worry, your pull requests can be cleaned up by a repository maintainer prior to merging, but it makes the initial check easier if the modified code uses the conventions.
Once you have made a change to fix a bug or add a new feature, you should commit and push the change to your fork.
Then, you can open a pull request to merge your change into the master branch of the main repository.
The Implementation Reports documenting the conformance of JSONLD-Java with JSONLD-1.0 are available at:
https://github.com/jsonld-java/jsonld-java/tree/master/core/reports
Implementation Reports conforming to the JSON-LD Implementation Report document can be regenerated using the following command:
mvn test -pl core -Dtest=JsonLdProcessorTest -Dreport.format=<format>
Current possible values for <format> include JSON-LD (application/ld+json or jsonld), NQuads (text/plain, nquads, ntriples, nq or nt) and Turtle (text/turtle, turtle or ttl). * can be used to generate reports in all available formats.
This is the base package for JSONLD-Java. Integration with other Java packages are done in separate repositories.
Create a GitHub repository for your module under your user account, or have a JSONLD-Java maintainer create one in the jsonld-java organisation.
Here is the basic outline for what your module's pom.xml should look like
<project xmlns="http://maven.apache.org/POM/4.0.0" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
xsi:schemaLocation="http://maven.apache.org/POM/4.0.0 http://maven.apache.org/maven-v4_0_0.xsd">
<parent>
<artifactId>jsonld-java-integration</artifactId>
<groupId>com.github.jsonld-java-parent</groupId>
<version>0.1-SNAPSHOT</version>
</parent>
<modelVersion>4.0.0</modelVersion>
<artifactId>jsonld-java-{your module}</artifactId>
<name>JSONLD Java :: {your module name}</name>
<description>JSON-LD Java integration module for {RDF Library your module integrates}</description>
<packaging>jar</packaging>
<developers>
<developer>
<name>{YOU}</name>
</developer>
</developers>
<dependencies>
<dependency>
<groupId>${project.groupId}</groupId>
<artifactId>jsonld-java</artifactId>
<version>${project.version}</version>
<type>jar</type>
<scope>compile</scope>
</dependency>
<dependency>
<groupId>${project.groupId}</groupId>
<artifactId>jsonld-java</artifactId>
<version>${project.version}</version>
<type>test-jar</type>
<scope>test</scope>
</dependency>
<dependency>
<groupId>junit</groupId>
<artifactId>junit</artifactId>
<scope>test</scope>
</dependency>
<dependency>
<groupId>org.slf4j</groupId>
<artifactId>slf4j-jdk14</artifactId>
<scope>test</scope>
</dependency>
</dependencies>
</project>
Make sure you edit the following:
For Example: Follow the first few steps in the section above to import the whole jsonld-java project or only your new module into eclipse.
The interface com.github.jsonldjava.core.RDFParser is used to parse RDF from the library into the JSONLD-Java internal RDF format. See the documentation in RDFParser.java for details on how to implement this interface.
The interface com.github.jsonldjava.core.JSONLDTripleCallback is used to generate a representation of the JSON-LD input in the RDF library. See the documentation in JSONLDTripleCallback.java for details on how to implement this interface.
A JSONLD RDF parser is a class that can parse your frameworks' RDF model and generate JSON-LD.
There are two ways to use your RDFParser implementation.
Register your parser with the JSONLD class and set options.format when you call fromRDF
JSONLD.registerRDFParser("format/identifier", new YourRDFParser());
Object jsonld = JSONLD.fromRDF(yourInput, new Options("") {{ format = "format/identifier" }});
or pass an instance of your RDFParser into the fromRDF function
Object jsonld = JSONLD.fromRDF(yourInput, new YourRDFParser());
A JSONLD triple callback is a class that can populate your framework's RDF model from JSON-LD - being called for each triple (technically quad).
Pass an instance of your TripleCallback to JSONLD.toRDF
Object yourOutput = JSONLD.toRDF(jsonld, new YourTripleCallback());
Your framework might have its own system of readers and writers, where you should register JSON-LD as a supported format. Remember that here the "parse" direction is opposite of above, a 'reader' in e.g. Jena will be a class that can parse JSON-LD and populate a Jena model.
It's helpful to have a test or two for your implementations to make sure they work and continue to work with future versions.
Write a README.md file with instrutions on how to use your module.
Once you've committed your code, and pushed it into your github fork you can issue a Pull Request so that we can add a reference to your module in this README file.
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