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METAlloc: efficient and comprehensive metadata management for software security hardening.

, , , and . EUROSEC, page 5:1-5:6. ACM, (2016)

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Fault-Tolerant Nanosatellite Computing on a Budget., , , , , and . CoRR, (2019)Mitigating Information Leakage Vulnerabilities with Type-based Data Isolation., , and . SP, page 1049-1065. IEEE, (2022)Dynamic Fault Tolerance Through Resource Pooling., , , , and . AHS, page 9-16. IEEE, (2018)Software-Defined Dependable Computing for Spacecraft., , , , , and . PRDC, page 231-232. IEEE, (2018)Enviral: Fuzzing the Environment for Evasive Malware Analysis., , and . EuroSec@EUROSYS, page 8-14. ACM, (2023)CEFI: Command Execution Flow Integrity for Embedded Devices., , , , , and . DIMVA, volume 13959 of Lecture Notes in Computer Science, page 235-255. Springer, (2023)Towards Affordable Fault-Tolerant Nanosatellite Computing with Commodity Hardware., , , , and . ATS, page 127-132. IEEE, (2018)TypeSan: Practical Type Confusion Detection., , , , , , and . ACM Conference on Computer and Communications Security, page 517-528. ACM, (2016)METAlloc: efficient and comprehensive metadata management for software security hardening., , , and . EUROSEC, page 5:1-5:6. ACM, (2016)DangSan: Scalable Use-after-free Detection., , and . EuroSys, page 405-419. ACM, (2017)