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Security enhancement of cloud servers with a redundancy-based fault-tolerant cache structure

机译:利用基于冗余的容错缓存结构增强云服务器的安全性

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The modern chip multiprocessors are vulnerable to transient faults caused by either on-purpose attacks or system mistakes, especially for those with large and multi-level caches in cloud servers. In this paper, we propose a modified/shared replication cache to keep a redundancy for the latest accessed and modified/shared L2 cache lines. According to the experiments based on Multi2Sim, this cache with proper size can provide considerable data reliability. In addition, the cache can reduce the average latency of memory hierarchy for error correction, with only about 20.2% of L2 cache energy cost and 2% of L2 cache silicon overhead.
机译:现代芯片多处理器容易受到因故意攻击或系统错误而导致的瞬态故障的影响,尤其是对于那些在云服务器中具有大型和多层缓存的用户而言。在本文中,我们提出了一种修改/共享复制缓存,以为最新访问和修改/共享的L2缓存行保留冗余。根据基于Multi2Sim的实验,这种大小合适的缓存可以提供可观的数据可靠性。此外,高速缓存可以减少用于纠错的存储器层次结构的平均等待时间,仅占L2缓存能量成本的20.2%和L2高速缓存硅开销的2%。

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