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Automatic Mutation Test Case Generation via Dynamic Symbolic Execution., and . ISSRE, page 121-130. IEEE Computer Society, (2010)Mutation based test case generation via a path selection strategy., and . Information & Software Technology, 54 (9): 915-932 (2012)Assessing Software Product Line Testing Via Model-Based Mutation: An Application to Similarity Testing., , , , and . ICST Workshops, page 188-197. IEEE Computer Society, (2013)Semantic fuzzing with zest., , , , and . ISSTA, page 329-340. ACM, (2019)Threats to the validity of mutation-based test assessment., , , , and . ISSTA, page 354-365. ACM, (2016)A Symbolic Execution Tool Based on the Elimination of Infeasible Paths., and . ICSEA, page 435-440. IEEE Computer Society, (2010)Mutation-Based Generation of Software Product Line Test Configurations., , and . SSBSE, volume 8636 of Lecture Notes in Computer Science, page 92-106. Springer, (2014)Detecting Trivial Mutant Equivalences via Compiler Optimisations., , , , , and . IEEE Trans. Software Eng., 44 (4): 308-333 (2018)Test Data Generation Techniques for Mutation Testing: A Systematic Mapping., , , and . CIbSE, page 419-432. Curran Associates, (2014)Validity fuzzing and parametric generators for effective random testing., , , , and . ICSE (Companion Volume), page 266-267. IEEE / ACM, (2019)