Exact finite-state machine identification from scenarios and temporal properties
Author:
Publisher
Springer Science and Business Media LLC
Subject
Information Systems,Software
Link
http://link.springer.com/article/10.1007/s10009-016-0442-1/fulltext.html
Reference39 articles.
1. Alur, R., Martin, M., Raghothaman, M., Stergiou, C., Tripakis, S., Udupa, A.: Synthesizing finite-state protocols from scenarios and requirements. In: Hardware and Software: Verification and Testing, pp. 75–91. Springer (2014)
2. Amla, N., Du, X., Kuehlmann, A., Kurshan, R.P., McMillan, K.L.: An analysis of SAT-based model checking techniques in an industrial environment. In: Correct Hardware Design and Verification Methods, pp. 254–268. Springer (2005)
3. Beschastnikh, I., Brun, Y., Schneider, S., Sloan, M., Ernst, M.D.: Leveraging existing instrumentation to automatically infer invariant-constrained models. In: Proceedings of the 19th ACM SIGSOFT Symposium and the 13th European Conference on Foundations of Software Engineering, pp. 267–277. ACM (2011)
4. Biere, A., Cimatti, A., Clarke, E.M., Strichman, O., Zhu, Y.: Bounded model checking. Adv. Comput. 58, 117–148 (2003)
5. Bodik, R., Jobstmann, B.: Algorithmic program synthesis: introduction. Int. J. Software Tools Technol. Trans. 15(5–6), 397–411 (2013)
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