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Eliciting Unitary Constraints from Timed Sequence Diagram with Symbolic Techniques: Application to Testing.

, , and . APSEC, page 219-226. IEEE Computer Society, (2011)

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Test Purpose Concretization through Symbolic Action Refinement., , , and . TestCom/FATES, volume 5047 of Lecture Notes in Computer Science, page 184-199. Springer, (2008)Editorial., , and . Softw. Qual. J., 30 (1): 1-2 (2022)Report on the 2nd Workshop on Model Development and Validation - MoDeVa., , and . MoDELS (Satellite Events), volume 3844 of Lecture Notes in Computer Science, page 32-38. Springer, (2005)Observability and Controllability Issues in Conformance Testing of Web Service Compositions., , , and . TestCom/FATES, volume 5826 of Lecture Notes in Computer Science, page 217-222. Springer, (2009)Testing Web Service Orchestrators in Context: A Symbolic Approach., , , and . SEFM, page 257-267. IEEE Computer Society, (2010)Feature Logics and Refinement., , and . APSEC, page 385-. IEEE Computer Society, (2002)Incremental Symbolic Conformance Testing from UML MARTE Sequence Diagrams: Railway Use Case., , , and . HASE, page 9-16. IEEE Computer Society, (2012)An Implementation Relation and Test Framework for Timed Distributed Systems., , and . ICTSS, volume 8254 of Lecture Notes in Computer Science, page 82-97. Springer, (2013)A small-step approach to multi-trace checking against interactions., , , , and . CoRR, (2020)Dealing with observability in interaction-based Offline Runtime Verification of Distributed Systems., , , , and . CoRR, (2022)