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Proactive Provenance Policies for Automatic Cryptographic Data Centric Security.

, , , and . IPAW, volume 12839 of Lecture Notes in Computer Science, page 71-87. Springer, (2021)

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Timely Rerandomization for Mitigating Memory Disclosures., , , , and . ACM Conference on Computer and Communications Security, page 268-279. ACM, (2015)On the Challenges of Effective Movement., , , , and . MTD@CCS, page 41-50. ACM, (2014)Identifier Binding Attacks and Defenses in Software-Defined Networks., , , , , and . USENIX Security Symposium, page 415-432. USENIX Association, (2017)Controller-Oblivious Dynamic Access Control in Software-Defined Networks., , , , , , , , , and . DSN, page 447-459. IEEE, (2019)Proactive Provenance Policies for Automatic Cryptographic Data Centric Security., , , and . IPAW, volume 12839 of Lecture Notes in Computer Science, page 71-87. Springer, (2021)Finding Focus in the Blur of Moving-Target Techniques., , , and . IEEE Secur. Priv., 12 (2): 16-26 (2014)QUASAR: Quantitative Attack Space Analysis and Reasoning., , , , and . ACSAC, page 68-78. ACM, (2017)Management of High-Volume Real-Time Streaming Data in Transient Environments.. University of California, Santa Cruz, USA, (2012)base-search.net (ftcdlib:qt6488m8b1).End-to-end performance management for scalable distributed storage., , , , , , , , and . PDSW, page 30-34. ACM Press, (2007)Mahanaxar: Quality of service guarantees in high-bandwidth, real-time streaming data storage., , , and . MSST, page 1-11. IEEE Computer Society, (2010)