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Zhu, Q. (author), Panichella, A. (author), Zaidman, A.E. (author)
Mutation testing is widely considered as a high-end test criterion due to the vast number of mutants it generates. Although many efforts have been made to reduce the computational cost of mutation testing, its scalability issue remains in practice. In this paper, we introduce a novel method to speed up mutation testing based on state...
conference paper 2017
document
Zhu, Q. (author), Panichella, Annibale (author), Zaidman, A.E. (author)
Mutation testing is widely considered as a high-end test coverage criterion due to the vast number of mutants it generates. Although many efforts have been made to reduce the computational cost of mutation testing, in practice, the scalability issue remains. In this paper, we explore whether we can use compression techniques to improve the...
conference paper 2018
document
Zhu, Q. (author), Panichella, A. (author), Zaidman, A.E. (author)
Mutation testing has been very actively investigated by researchers since the 1970s, and remarkable advances have been achieved in its concepts, theory, technology, and empirical evidence. While the most influential realisations have been summarised by existing literature reviews, we lack insight into how mutation testing is actually applied....
journal article 2018
document
Zhu, Q. (author), Zaidman, A.E. (author), Panichella, A. (author)
Mutation testing is well-known for its efficacy in assessing test quality, and starting to be applied in the industry. However, what should a developer do when confronted with a low mutation score? Should the test suite be plainly reinforced to increase the mutation score, or should the production code be improved as well, to make the...
journal article 2021
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