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Classifying False Positive Static Checker Alarms in Continuous Integration Using Convolutional Neural Networks.

, , , , , and . ICST, page 391-401. IEEE, (2019)

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Extending UML for Development of Distributed Control Systems with Heterogeneous Languages., , , , , , , and . SERA, page 339-345. IEEE Computer Society, (2006)Automated unit testing of large industrial embedded software using concolic testing., , , , , and . ASE, page 519-528. IEEE, (2013)Classifying False Positive Static Checker Alarms in Continuous Integration Using Convolutional Neural Networks., , , , , and . ICST, page 391-401. IEEE, (2019)A deep tree-based model for software defect prediction., , , , , , , and . CoRR, (2018)Understanding automated code review process and developer experience in industry., , , , , and . ESEC/SIGSOFT FSE, page 1398-1407. ACM, (2022)Agile Development of Web Application by Supporting Process Execution and Extended UML Model., , , , , , , , and . APSEC, page 193-200. IEEE Computer Society, (2005)Lessons learned from using a deep tree-based model for software defect prediction in practice., , , , , , , and . MSR, page 46-57. IEEE / ACM, (2019)Concolic Testing Framework for Industrial Embedded Software., , , and . APSEC (2), page 7-10. IEEE, (2014)Test Coverage Metric for Two-Staged Language with Abstract Interpretation., , , , , and . APSEC, page 301-308. IEEE Computer Society, (2009)A Unified Code Review Automation for Large-scale Industry with Diverse Development Environments., , , , , , and . ICSE (SEIP), page 23-24. IEEE, (2022)