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Application-Specific Wear Leveling for Extending Lifetime of Phase Change Memory in Embedded Systems

机译:延长嵌入式系统相变存储器寿命的专用磨损均衡

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摘要

Phase change memory (PCM) has been proposed to replace NOR flash and DRAM in embedded systems because of its attractive features. However, the endurance of PCM greatly limits its adoption in embedded systems. As most embedded systems are application-oriented, we can tackle the endurance problem of PCM by exploring application-specific features such as fixed access patterns and update frequencies. In this paper, we propose an application-specific wear leveling technique, called Curling-PCM, to evenly distribute write activities across the whole PCM chip to improve the endurance of PCM in embedded systems. The basic idea is to exploit application-specific features in embedded systems and periodically move the hot region across the whole PCM chip. To reduce the overhead of moving the hot region and improve the performance of PCM-based embedded systems, a fine-grained partial wear leveling policy is proposed for Curling-PCM, by which only part of the hot region is moved during each request handling period. Experimental results show that Curling-PCM can effectively evenly distribute write traffic for a prime application of PCM in embedded systems. We expect this paper can serve as a first step toward the full exploration of application-specific features in PCM-based embedded systems.
机译:由于相变存储器(PCM)具有吸引人的功能,已经提出了它来代替NOR闪存和DRAM。但是,PCM的耐用性极大地限制了其在嵌入式系统中的采用。由于大多数嵌入式系统都是面向应用程序的,因此我们可以通过探索特定于应用程序的功能(例如固定访问模式和更新频率)来解决PCM的耐用性问题。在本文中,我们提出了一种专用的磨损均衡技术,称为Curling-PCM,以在整个PCM芯片上平均分配写入活动,以提高嵌入式系统中PCM的耐久性。基本思想是利用嵌入式系统中的特定于应用程序的功能,并在整个PCM芯片上定期移动热点区域。为了减少移动热点区域的开销并提高基于PCM的嵌入式系统的性能,针对Curling-PCM提出了一种细粒度的局部损耗均衡策略,通过该策略,在每个请求处理期间仅移动一部分热点区域。实验结果表明,Curling-PCM可以有效地平均分配写入流量,从而在嵌入式系统中实现PCM的主要应用。我们希望本文可以作为全面探索基于PCM的嵌入式系统中特定于应用程序的功能的第一步。

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