Print Email Facebook Twitter Speeding-Up Mutation Testing via Data Compression and State Infection Title Speeding-Up Mutation Testing via Data Compression and State Infection Author Zhu, Q. (TU Delft Software Engineering) Panichella, A. (University of Luxembourg) Zaidman, A.E. (TU Delft Software Engineering) Date 2017-04-13 Abstract 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 infection information. In addition to filtering out uninfected test executions, we further select a subset of mutants and a subset of test cases to run leveraging data-compression techniques. In particular, we adopt Formal Concept Analysis (FCA) to group similar mutants together and then select test cases to cover these mutants. To evaluate our method, we conducted an experimental study on six open source Java projects. We used EvoSuite to automatically generate test cases and to collect mutation data. The initial results show that our method can reduce the execution time by 83.93% with only 0.257% loss in precision. Subject Cost reductionData compressionMutation testingState infection To reference this document use: http://resolver.tudelft.nl/uuid:8eef29ee-41b9-4e1b-b247-5d765abfc1fc DOI https://doi.org/10.1109/ICSTW.2017.25 Publisher Institute of Electrical and Electronics Engineers (IEEE) ISBN 9781509066766 Source Proceedings - 10th IEEE International Conference on Software Testing, Verification and Validation Workshops, ICSTW 2017 Event 10th IEEE International Conference on Software Testing, Verification and Validation Workshops, ICSTW 2017, 2017-03-13 → 2017-03-17, Tokyo, Japan Part of collection Institutional Repository Document type conference paper Rights © 2017 Q. Zhu, A. Panichella, A.E. Zaidman Files PDF main.pdf 657.97 KB Close viewer /islandora/object/uuid:8eef29ee-41b9-4e1b-b247-5d765abfc1fc/datastream/OBJ/view