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Tool Integration with Triple Graph Grammars - A Survey
Author(s) -
Alexander Königs,
Andy Schürr
Publication year - 2006
Publication title -
electronic notes in theoretical computer science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.242
H-Index - 60
ISSN - 1571-0661
DOI - 10.1016/j.entcs.2005.12.015
Subject(s) - computer science , graph rewriting , traceability , software engineering , programming language , rule based machine translation , graph , data integration , theoretical computer science , database , artificial intelligence
Nowadays, typical software and system engineering projects in various industrial sectors (automotive, telecommunication, etc.) involve hundreds of developers using quite a number of different tools. Thus, the data of a project as a whole is distributed over these tools. Therefore, it is necessary to make the relationships of different tool data repositories visible and keep them consistent with each other. This still is a nightmare due to the lack of domain-specific adaptable tool and data integration solutions which support maintenance of traceability links, semi-automatic consistency checking as well as update propagation. Currently used solutions are usually hand-coded one-way transformations between pairs of tools. In this article we present a rule-based approach that allows for the declarative specification of data integration rules. It is based on the formalism of triple graph grammars and uses directed graphs to represent MOF-compliant (meta) models. As a result we give an answer to OMG's request for proposals for a MOF-compliant “queries, views, and transformation” (QVT) approach from the “model driven application development” (MDA) field

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