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On the Rise and Fall of Simple Stupid Bugs: a Life-Cycle Analysis of SStuBs.

, , , and . MSR, page 495-499. IEEE, (2021)

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Don't DIY: Automatically transform legacy Python code to support structural pattern matching., , and . SCAM, page 164-169. IEEE, (2022)A Data-Mining Based Study of Security Vulnerability Types and Their Mitigation in Different Languages., , , and . ICCSA (4), volume 12252 of Lecture Notes in Computer Science, page 1019-1034. Springer, (2020)PyBugHive: A Comprehensive Database of Manually Validated, Reproducible Python Bugs., , , , , and . IEEE Access, (2024)Challenging machine learning algorithms in predicting vulnerable JavaScript functions., , , , , and . RAISE@ICSE, page 8-14. IEEE / ACM, (2019)On the Rise and Fall of Simple Stupid Bugs: a Life-Cycle Analysis of SStuBs., , , and . MSR, page 495-499. IEEE, (2021)On the Usefulness of Python Structural Pattern Matching: An Empirical Study., , , and . SANER, page 501-511. IEEE, (2024)Assessing GPT-4-Vision's Capabilities in UML-Based Code Generation., , and . CoRR, (2024)Reality Check: Assessing GPT-4 in Fixing Real-World Software Vulnerabilities., , , , , and . EASE, page 252-261. ACM, (2024)Applying Code Analysis and Machine Learning Techniques to Improve Compatibility and Security of Programs. University of Szeged, Hungary, (2022)Development of a Novel Semantic-Based System Integration Framework., , , , and . ECBS-EERC, page 18-24. IEEE Computer Society, (2013)