Improving PCM Endurance with Randomized Address Remapping in Hybrid Memory System

Gang Wu, Jian Gao, Huxing Zhang, Yaozu Dong
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引用次数: 8

Abstract

Phase-Change-Memory (PCM) has emerged as a promising alternative of DRAM main memory. A new hybrid memory architecture, where DRAM serves as cache of PCM main memory, has been proposed to leverage PCM's high scalability and DRAM's fast access time. One biggest issue of PCM is the limited number of writes to storage cells. We argue that good cache mechanism will decrease PCM writes dramatically in hybrid memory system. In this paper, we demonstrate that traditional set associative cache is susceptible to malicious attacks, which lead certain PCM cells to wear-out by constant cache flushes. A novel approach called Randomized Address Remapping (RAR) is proposed to hide the mapping details between DRAM and PCM. With this approach, the attacks based on set associative cache do not work, while the efficiency of caching still remains. We present Static Randomized Address Remapping (SRAR) and Dynamic Randomized Address Remapping (DRAR) in this paper. SRAR invalidates set associative cache based attacks by distributing their address accesses to different sets. DRAR uses a region-based approach to change the mapping dynamically, in case that the static mapping relationship is discovered by attacker compromising operating system. Experimental results show that RAR approaches can prevent malicious attacks and improve PCM endurance greatly.
利用随机地址重映射提高混合存储系统的PCM持久性
相变存储器(PCM)已成为DRAM主存储器的一个很有前途的替代品。为了利用PCM的高可扩展性和DRAM的快速访问时间,提出了一种新的混合存储器架构,其中DRAM作为PCM主存储器的缓存。PCM的一个最大问题是写入存储单元的数量有限。我们认为在混合存储系统中,良好的缓存机制可以显著减少PCM写入。在本文中,我们证明了传统的集合关联缓存容易受到恶意攻击,这导致某些PCM单元通过不断的缓存刷新而耗尽。提出了一种新的方法,称为随机地址重映射(RAR)来隐藏DRAM和PCM之间的映射细节。使用这种方法,基于集合关联缓存的攻击不起作用,而缓存的效率仍然存在。本文提出了静态随机地址重映射(SRAR)和动态随机地址重映射(DRAR)。SRAR通过将其地址访问分配到不同的集合来使基于集合关联缓存的攻击无效。DRAR使用一种基于区域的方法来动态地改变映射关系,以防静态映射关系被攻击者发现危及操作系统。实验结果表明,RAR方法可以有效地防止恶意攻击,提高PCM的持久度。
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