DocumentCode
2706870
Title
Model-based testing
Author
Pretschner, Alexander
Author_Institution
Inf. Security, ETH Zurich, Switzerland
fYear
2005
fDate
15-21 May 2005
Firstpage
722
Lastpage
723
Abstract
Model-based testing has become increasingly popular in recent years. Major reasons include: (1) the need for quality assurance for increasingly complex systems, (2) the emerging model-centric development paradigm, e.g., UML and MDA, with its seemingly direct connection to testing, and (3) the advent of test-centered development methodologies. Model-based testing relies on execution traces of behavior models. They are used as test cases for an implementation: input and expected output. This complements the ideas of model-driven testing. The latter uses static models to derive test drivers to automate test execution. This assumes the existence of test cases, and is, like the particular intricacies of OO testing, not in the focus of this tutorial. We cover major methodological and technological issues: the business case of model-based testing within model-based development, the need for abstraction and inverse concretization, test selection, and test case generation. We (1) discuss different scenarios of model-based testing, (2) present common abstractions when building models, and their consequences for testing, (3) explain how to use functional, structural, and stochastic test selection criteria, and (4) describe today´s test generation technology. We provide both practical guidance and a discussion of the state-of-the-art. Potentials of model-based testing in practical applications and future research are highlighted.
Keywords
program diagnostics; program testing; behavior model; complex system; functional test selection criteria; inverse concretization; model-based development; model-based testing; model-centric development; model-driven testing; quality assurance; static model; stochastic test selection criteria; structural test selection criteria; test case generation; test-centered development methodology; Automatic control; Automatic testing; Automation; Automotive engineering; Costs; Information security; Permission; Software engineering; Software testing; System testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Software Engineering, 2005. ICSE 2005. Proceedings. 27th International Conference on
Print_ISBN
1-59593-963-2
Type
conf
DOI
10.1109/ICSE.2005.1553582
Filename
1553582
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