Defining Theoretical Foundations to Unified Metamodel For Model Reusability

Author:

Thangaraj Jagadeeswaran1,Ulaganathan Senthilkumaran2

Affiliation:

1. Department of Computer Science, Maynooth University, Maynooth, Ireland

2. School of Information Technology & Engineering, VIT University, Vellore, TamilNadu, India

Abstract

Background: In model-driven development, model transformation transforms one model to another between different phases of software engineering. In model transformation, metamodel plays a vital role which defines the abstract syntax of models and the interrelationship between their elements. A unified metamodel defines an abstract syntax for both source and target models when they share core elements. Theoretical approaches define language and platform independent representation of models in software engineering. This paper investigates the theoretical foundation to this unified meta-modelling for their consistent transformation. Objective: This paper aims to define the formal foundations to the unified metamodel for generating implementation from design specifications and model reusability. Method: In this paper, the study considers transformation from design to implementation and vice versa using theoretical foundations to build a verified software system. Results: The related tools provide a formal representation of the design phase for verification purpose. Our approach provides a set-theoretical foundation to the unified metamodel for model transformation from USE (UML/OCL) to Spec#. In other words, our approach defines the formal foundation to define a model which consists of all the required properties for verification at the design and implementation phase. Conclusion: This paper introduced a new set of the theoretical framework which acts as an interface between the design and implementation to generate verified software systems.

Publisher

Bentham Science Publishers Ltd.

Subject

General Computer Science

Reference19 articles.

1. Shimba H.; Hanada K.; Okano K.; Kusumoto S.; Bidirectional translation between OCL and JML for round-trip engineering 20 Asia-Pacific Software Engineering Conference (APSEC), Bangkok 2013,49-54

2. Thangaraj J.; Ulaganathan S.; "A formal framework to unified metamodel for consistent transformation" In PhD Symposium at iFM’18 on Formal Methods: Algorithms, Tools and Applications (PhD-iFM’18) Research report 483, 2018. ISBN 978-82-7368- 435-6 ISSN 0806-3036

3. Thangaraj J.; Ulaganathan S.; A comparative study on transformation of UML/OCL to other specifications. Rec Pat Comput Sci 2020,13(2),256-264

4. Farrell M.; Event-B in the institutional framework: Defining a semantics, modularisation constructs and interoperability for a specification language PhD Thesis, Department of Computer Science, Maynooth University, Maynooth 2017

5. Sepúlveda S.; Cares C.; Cachero C.; Towards a unified feature metamodel: A systematic comparison of feature languages 7 Iberian Conference on Information Systems and Technologies (CISTI 2012), Madrid 2012,1-7

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