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Modeling Obfuscation Stealth Through Code Complexity.

, , , , , , and . ESORICS Workshops (2), volume 14399 of Lecture Notes in Computer Science, page 392-408. Springer, (2023)

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Modeling Obfuscation Stealth Through Code Complexity., , , , , , and . ESORICS Workshops (2), volume 14399 of Lecture Notes in Computer Science, page 392-408. Springer, (2023)Anomaly Detection Support Using Process Classification., , and . ICSSA, page 27-40. IEEE, (2019)Detecting Cryptography through IR Visualization., and . ICSSA, page 25-29. IEEE, (2018)An Open Source Code Analyzer and Reviewer (OSCAR) Framework., , , and . ARES, page 511-515. IEEE Computer Society, (2015)Compiling and Analyzing Open Source Malware for Research Purposes., , , and . ICSSA, page 32-37. IEEE, (2020)Meta-framework for Automating Static Malware Analysis., , and . ERCIM News, 2022 (129): 0 (2022)Anomaly Detection Support Using Process Classification., , and . CoRR, (2021)Large Language Models for Code Obfuscation Evaluation of the Obfuscation Capabilities of OpenAI's GPT-3.5 on C Source Code., , , , and . SECRYPT, page 7-19. SCITEPRESS, (2023)SoK: Automatic Deobfuscation of Virtualization-protected Applications., , , , and . ARES, page 6:1-6:15. ACM, (2021)Evaluation Methodologies in Software Protection Research., , , and . CoRR, (2023)