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Single-level integrity and confidentiality protection for distributed shared memory multiprocessors.

, , , , and . HPCA, page 161-172. IEEE Computer Society, (2008)

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An Analysis of Secure Processor Architectures., , , and . Trans. Comput. Sci., (2010)Security analysis of confidential-compute instruction set architecture for virtualized workloads., , , , , , , and . SEED, page 121-131. IEEE, (2021)Green Secure Processors: Towards Power-Efficient Secure Processor Design., and . Trans. Comput. Sci., (2010)Compact Leakage-Free Support for Integrity and Reliability., , , , , , and . ISCA, page 735-748. IEEE, (2020)SecureME: a hardware-software approach to full system security., , , and . ICS, page 108-119. ACM, (2011)Single-level integrity and confidentiality protection for distributed shared memory multiprocessors., , , , and . HPCA, page 161-172. IEEE Computer Society, (2008)Making secure processors OS- and performance-friendly., , , and . ACM Trans. Archit. Code Optim., 5 (4): 16:1-16:35 (2009)SHIELDSTRAP: Making secure processors truly secure., , and . ICCD, page 289-296. IEEE Computer Society, (2009)Using Address Independent Seed Encryption and Bonsai Merkle Trees to Make Secure Processors OS- and Performance-Friendly., , , and . MICRO, page 183-196. IEEE Computer Society, (2007)i-NVMM: a secure non-volatile main memory system with incremental encryption., and . ISCA, page 177-188. ACM, (2011)