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Improving the Performance and Endurance of Encrypted Non-Volatile Main Memory through Deduplicating Writes

机译:通过重复写入提高加密非易失性主存储器的性能和耐力

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Non-volatile memory (NVM) technologies are considered as promising candidates of the next-generation main memory. However, the non-volatility of NVMs leads to new security vulnerabilities. For example, it is not difficult to access sensitive data stored on stolen NVMs. Memory encryption can be employed to mitigate the security vulnerabilities, but it increases the number of bits written to NVMs due to the diffusion property and thereby aggravates the NVM wear-out induced by writes. To address these security and endurance challenges, this paper proposes DeWrite, a secure and deduplication-aware scheme to enhance the performance and endurance of encrypted NVMs based on a new in-line deduplication technique and the synergistic integrations of deduplication and memory encryption. Specifically, it performs low-latency in-line deduplication to exploit the abundant cache-line-level duplications leveraging the intrinsic read/write asymmetry of NVMs and light-weight hashing. It also opportunistically parallelizes the operations of deduplication and encryption and allows them to co-locate the metadata for high time and space efficiency. DeWrite was implemented on the gem5 with NVMain and evaluated using 20 applications from SPEC CPU2006 and PARSEC. Extensive experimental results demonstrate that DeWrite reduces on average 54% writes to encrypted NVMs, and speeds up memory writes and reads of encrypted NVMs by 4.2 × and 3.1 ×, respectively. Meanwhile, DeWrite improves the system IPC by 82% and reduces 40% of energy consumption on average.
机译:非易失性存储器(NVM)技术被认为是下一代主存储器的有希望的候选者。然而,NVM的非波动性导致新的安全漏洞。例如,不难访问存储在被盗NVM上的敏感数据。内存加密可以用于减轻安全漏洞,但它由于扩散属性而增加了写入NVM的位数,从而加剧了由写入引起的NVM磨损。为了解决这些安全性和耐力挑战,提出了一种安全和重复数据删除的方案,以提高加密NVMS的性能和耐力,基于新的直线重复数据删除技术和重复数据删除和内存加密的协同集成。具体地,它执行低延迟的在线重复数据删除,以利用利用NVM和轻量级散列的内在读/写不对称的丰富高速缓存线级别重复数据删除。它还机会和重复数据删除和加密的操作并顺式化,并允许它们共同定位元数据以获得高时间和空间效率。制造在GEM5上以NVMAIN实现,并使用SPEM CPU2006和PARSEC使用20个应用程序进行评估。广泛的实验结果表明,改造减少了平均54%的加密NVM的写入,并速度速度速度分别升高了4.2×和3.1×的加密NVM。同时,制备将系统IPC提高了82%,平均降低了40%的能耗。

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