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Breaking Abstractions and Unstructuring Data Structures.

, , and . ICCL, page 28-38. IEEE Computer Society, (1998)

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Predicting the Resilience of Obfuscated Code Against Symbolic Execution Attacks via Machine Learning., , and . USENIX Security Symposium, page 661-678. USENIX Association, (2017)Detecting Software Theft via Whole Program Path Birthmarks., and . ISC, volume 3225 of Lecture Notes in Computer Science, page 404-415. Springer, (2004)Problem identification using program checking., and . Discret. Appl. Math., 144 (3): 270-280 (2004)A System for Graph-Based Visualization of the Evolution of Software., , , , and . SOFTVIS, page 77-86. ACM, (2003)Surreptitious Software - Obfuscation, Watermarking, and Tamperproofing for Software Protection., and . Addison-Wesley Software Security Series Addison-Wesley, (2010)K-gram based software birthmarks., and . SAC, page 314-318. ACM, (2005)Graph-Based Approaches to Software Watermarking., , , and . WG, volume 2880 of Lecture Notes in Computer Science, page 156-167. Springer, (2003)Code Obfuscation: Why is This Still a Thing?. CODASPY, page 173-174. ACM, (2018)Software Watermarking Through Register Allocation: Implementation, Analysis, and Attacks., and . ICISC, volume 2971 of Lecture Notes in Computer Science, page 274-293. Springer, (2003)The Obfuscation Executive., and . ISC, volume 3225 of Lecture Notes in Computer Science, page 428-440. Springer, (2004)