How to build from source. Download the latest release or clone the repository. Unzip and open the folder on a command-line terminal; Build with Maven mvn clean package.
Data Integration . Internationalization efforts are coordinated within these forums, among the community members that are most experienced with each language. Contributing code. We rely on time and code contributions from our community to keep our commitment of delivering a quality Business Intelligence platform in the open source scenario. Submitting code. Both bug fixes, new features and improvements are types inputs in our JIRA system, allowing you to choose the type appropriated to your case.
Contributing documentation. If you'd like to contribute documentation improvements, or submit a technical article, you can do so in the Pentaho Documentation Wiki. Solutions. Solutions should be submitted through the new feature type case in our JIRA system.
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- Here’s an example to show you how to connect to MySQL database via a JDBC driver. First, get a MySQL JDBC driver from here –MySQL JDBC Driver Download Here.
- Making connection SQL server Database. Using the sqljdbc.jar class library, applications must first register the driver as follows: Class.forName(“com.microsoft.
Complete the case, as described for other code contributions, then attach your solution as an additional file to the case. Submitting test results. The Pentaho team is building an automated platform test suite and submission protocol because, well, frankly, it's a damn good idea. Until that suite is completed, if you're willing to contribute with time and resources for quality assurance testing, please contact us.
We will send you a matrix spreadsheet where you'll identify the environment, test variables in play and submit your results back to us.
RDBMS with JDBC interface, client-server version, query tool, grid, tree, performance test class, servlet, and self-test program. Also supports pure in memory.
They are designed to store, organize and explore digital records that not only support but also document day- to- day business operations. Very often, these records are irreplaceable or prohibitively expensive to reacquire by other means rendering the preservation of databases a serious concern. This page focus on workflows, tools and standards to allow information managers to extract, archive and preserve records of information currently managed by relational databases. The most relevant initiatives in this context are the Database Preservation Toolkit, the Database Visualization Toolkit and the SIARD 2. The following screencast aims to illustrate how all these tools fit together in a full- cycle archiving and preservation workflow for relational databases. More detailed information about these tools and standards can be found on the following sections.
RODA – A digital repository made for preservation. RODA is a complete digital repository solution that delivers functionality for all the main functional units of the OAIS reference model. RODA is capable of ingesting, managing and providing access to the various types of digital content produced by large corporations or public bodies. RODA is based on open- source technologies and is supported by existing standards such as the Open Archival Information System (OAIS), Metadata Encoding and Transmission Standard (METS), Encoded Archival Description (EAD), Dublin Core (DC) and PREMIS (Preservation Metadata). For more information please visit https: //github.
RODA- in is a tool specially designed for producers and archivists to create Submission Information Packages (SIP) ready to be submitted to an Open Archival Information System (OAIS). The tool creates SIPs from files and folders available on the local file system. In version 2 we revolutionized the way SIPs are created to satisfy the need for mass processing of data. In this version you can create thousands of valid SIPs with just a few clicks, complete with data and metadata. The tool includes features such as: Create, load and edit classification schemas.
Automatic association of files/folders to SIPAutomatic association of metadata to SIPDefinition of metadata templates. Support for various metadata formats (EAD, DC, etc.)Creation of SIP of unlimited size. Creation of SIP in various formats: Bag. It and E- ARKFor more information please visit https: //github. The Database Preservation Toolkit allows conversion between Database formats, including connection to live systems, for purposes of digitally preserving databases. The toolkit allows conversion of live or backed- up databases into preservation formats such as SIARD, a XML- based format created for the purpose of database preservation.
The toolkit also allows conversion of the preservation formats back into live systems to allow the full functionality of databases. This toolkit was part of the RODA project and now has been released as a project by its own due to the increasing interest on this particular feature. It is now being further developed in the EARK project together with a new version of the SIARD preservation format. The toolkit is created as a platform that uses input and output modules. Each module supports read and/or write to a particular database format or live system. New modules can easily be added by implementation of a new interface and adding of new drivers. EARK and SIARD 2.
A new version of the this tool, together with a new version of the SIARD preservation format, is currently being designed and developed on the EARK project. Meanwhile, if you’d like to know more and even send us use cases and requirements, contact us. The Database Visualization Toolkit is a lightweight web viewer for relational databases, specially if preserved in SIARD 2, that uses SOLR as a backend, and allows browsing, search, and export.
It uses the Database Preservation Toolkit to process new relational databases that are in the SIARD2 format or on the original live DBMS. For more information please visit http: //visualization. Requirements. To use the program, Java JRE 7 or higher needs to be installed. Instructions on how to do this are available at http: //docs.
How to use. To use the program, open a command- line and try out the following command (replace x. The steps to run. Database Preservation Toolkit this way are as follows: Obtain the JDBC driver for the database you want to use (this is typically a file with jar extension). For Oracle. 12. C this file can be downloaded from http: //www. Identify the driver class. For Oracle 1. 2C this would be something like oracle.
Oracle. Driver; Prepare the connection string. For Oracle 1. 2C this could be something like jdbc: oracle: thin: username/password@server.
Name: port/database; Run Database Preservation Toolkit by providing files to add to the classpath and the main entry point. Please be aware that using this method the conversion quality cannot be assured, as it depends on the used driver. This user must be accessible by IP connection on localhost.
The access can be tested with psql - U username - h 1. W. To run My. SQL tests, a local My.
SQL (or Maria. DB) database is required and . This user must be accessible by IP connection on localhost. The access can be tested with mysql - -user=. To do this, run mvn clean install - Pdbptk- bindings from project root folder.
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