An exception handling system for service component architectures

Author:

Castor Fernando,Leite Douglas Siqueira,Rubira Cecília Mary F.

Abstract

Abstract The Service Component Architecture (SCA) makes it possible to combine existing and new services based on a variety of technologies with components built using a component-based development approach. However, when asynchronous service compositions are executed, one or more errors can occur, possibly at the same time, affecting the dependability of the composition. To guarantee that the composition succeeds or at least fails in a controlled manner, fault tolerance mechanisms must be employed. In this paper, we propose a novel exception handling model that targets the needs of dependable SCA applications. The model is applicable to service-oriented systems and allows the creation of fault-tolerant asynchronous service compositions. The EH-SCA framework instantiates the proposed model as an extension of the Apache Tuscany SCA infrastructure. Developers can apply this instantiation of the model to both new and existing applications by using a simple and flexible aspect-oriented programming model. Finally, a case study of the EH-SCA framework shows how it can be used to build dependable distributed applications.

Publisher

Springer Science and Business Media LLC

Subject

General Computer Science

Reference27 articles.

1. Anderson T, Lee PA (1990) Fault tolerance: principles and practice, 2nd edn. Springer, Berlin

2. Becker D (2009) Service component architecture (SCA) lets you invoke components from different technologies. http://www.ibm.com/developerworks/opensource/library/os-apache-tuscany-sca/index.html

3. Bender MA, Farach-colton M (2000) The lca problem revisited. In: 4th Latin-American symposium on theoretical informatics, Punta del Este, Uruguay, April 2000, pp 88–94

4. Capozucca A, Guelfi N, Pelliccione P, Romanovsky A, Zorzo AF (2006) CAA-DRIP: a framework for implementing coordinated atomic actions. In: Proc of IEEE international symposium on software reliability engineering, Raleigh, USA, November 2006, pp 385–394

5. Capozucca A, Guelfi N, Pelliccione P, Romanovsky A, Zorzo AF (2009) Frameworks for designing and implementing dependable systems using coordinated atomic actions: a comparative study. J Syst Softw 82(2):207–228

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