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2015 | OriginalPaper | Buchkapitel

Genetic Algorithm Application for Enhancing State-Sensitivity Partitioning

verfasst von : Ammar Mohammed Sultan, Salmi Baharom, Abdul Azim Abd Ghani, Jamilah Din, Hazura Zulzalil

Erschienen in: Testing Software and Systems

Verlag: Springer International Publishing

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Abstract

Software testing is the most crucial phase in software development life cycle which intends to find faults as much as possible. Test case generation leads the research in software testing. So, many techniques were proposed for the sake of automating the test case generation process. State sensitivity partitioning is a technique that partitions the entire states of a module. The generated test cases are composed of sequences of events. However, there is an infinite set of sequences with no upper bound on the length of a sequence. Thus, a lengthy test sequence might be encountered with redundant data states, which will increase the size of test suite and, consequently, the process of testing will be ineffective. Therefore, there is a need to optimize those test cases generated by SSP. GA has been identified as the most common potential technique among several optimization techniques. Thus, GA is investigated to integrate it with the existing SSP. This paper addresses the issue on deriving the fitness function for optimizing the sequence of events produced by SSP.

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Metadaten
Titel
Genetic Algorithm Application for Enhancing State-Sensitivity Partitioning
verfasst von
Ammar Mohammed Sultan
Salmi Baharom
Abdul Azim Abd Ghani
Jamilah Din
Hazura Zulzalil
Copyright-Jahr
2015
DOI
https://doi.org/10.1007/978-3-319-25945-1_16

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