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CAR: Securing PCM Main Memory System with Cache Address Remapping

机译:CAR:使用高速缓存地址重新映射保护PCM主存储系统

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摘要

Phase Change Memory (PCM) has emerged as a promising alternative of DRAM to provide energy-efficient and high-capacity memory for high performance servers. A new DRAM + PCM hybrid memory architecture has been proposed to leverage PCM's high density and DRAM's robustness and performance. One of the big challenges of PCM is its limited write endurance (10^7 ~ 10^8 times per cell). By knowing the association between DRAM and PCM, malicious software can easily force DRAM cache to be flushed continuously, which produces writes to certain PCM cells repeatedly (known as selective attack) and wears out PCM. Although existing wear-leveling approaches could evenly distribute writes under selective attack, the overall endurance of PCM is still severely impacted, and therefore it is suboptimal. In this paper, we propose Cache Address Remapping (CAR), that can adaptively remap DRAM cache address, to hide the association between DRAM and PCM. Moreover, CAR can minimize the write-back traffic to PCM under selective attack by uniformly distributing the writes to a single cache set into different cache sets. We propose a practical and low overhead implementation of CAR, called RanCAR. Experimental results show that CAR could reduce DRAM cache miss rate by ~4600x under selective attack, and prolong PCM lifetime from several minutes to 13.8 years on average.
机译:相变存储器(PCM)已经成为DRAM的有前途的替代产品,可以为高性能服务器提供节能高效的大容量存储器。已经提出了一种新的DRAM + PCM混合存储架构,以利用PCM的高密度以及DRAM的鲁棒性和性能。 PCM的最大挑战之一是其有限的写入寿命(每个单元10 ^ 7〜10 ^ 8次)。通过了解DRAM和PCM之间的关联,恶意软件可以轻松地强制连续刷新DRAM缓存,从而重复写入某些PCM单元(称为选择性攻击)并耗尽PCM。尽管现有的损耗均衡方法可以在选择性攻击下平均分配写入数据,但是PCM的整体耐久性仍然受到严重影响,因此它不是最佳的。在本文中,我们提出了缓存地址重映射(CAR),它可以自适应地重映射DRAM缓存地址,以隐藏DRAM和PCM之间的关联。此外,通过将对单个缓存集的写入均匀地分布到不同的缓存集中,CAR可以在选择性攻击下将对PCM的回写流量最小化。我们提出了一种名为RanCAR的CAR的实用且开销较低的实现。实验结果表明,CAR可以在选择性攻击下将DRAM缓存丢失率降低约4600倍,并将PCM寿命从几分钟延长至平均13.8年。

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