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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Efficient Warranty-Aware Wear Leveling for Embedded Systems With PCM Main Memory
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Efficient Warranty-Aware Wear Leveling for Embedded Systems With PCM Main Memory

机译:具有PCM主存储器的嵌入式系统的有效保修意识磨损均衡

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Recently, phase change memory (PCM) has become a promising candidate to replace dynamic RAM as main memory due to its low power consumption, fast I/O performance, and byte addressability. Accompanied with the merits, the adoption of PCM may suffer from its physical characteristic of limited write endurance. Wear leveling is a well-known approach to address this issue. For PCM main memory, the design of wear leveling should stress operation efficiency and overhead reduction. Nevertheless, conventional designs are usually dedicated to prolonging the lifetime of PCM in the best effort. In this paper, we propose a novel perspective that, instead of valuing PCM lifetime exploitation as the first priority, we turn to satisfy the product warranty period. With such a paradigm shift, the management overhead of wear-leveling mechanisms could be reduced so as to achieve further enhancement of operation efficiency. To this end, we propose a warranty-aware page management design that introduces novel criteria used to determine the state of a page by taking both the product warranty period and the write cycles of a page into consideration. Theoretical analysis is also conducted to investigate the properties and performance of the proposed management. To show the effectiveness of the proposed design, we collected real traces by running SPEC2006 benchmarks with different write intensity workloads. The experimental results showed that our design reduced the overhead to one-third that of the state-of-the-art designs while still providing the same level of performance.
机译:最近,相变存储器(PCM)由于其低功耗,快速的I / O性能和字节寻址能力,已成为替代动态RAM作为主存储器的有前途的候选者。伴随着优点,PCM的采用可能会受到其有限的写入耐久性的物理特性的影响。磨损均衡是解决此问题的一种众所周知的方法。对于PCM主存储器,损耗均衡的设计应强调操作效率和减少开销。然而,常规设计通常致力于尽最大努力延长PCM的寿命。在本文中,我们提出了一种新颖的观点,即,我们将满足产品保修期的要求,而不是将PCM的寿命开发视为第一要务。通过这种范式转移,可以减少损耗均衡机制的管理开销,从而进一步提高运营效率。为此,我们提出了一种具有保修意识的页面管理设计,该设计引入了新颖的准则,通过同时考虑产品的保修期限和页面的写入周期来确定页面的状态。还进行了理论分析以调查拟议管理的性质和绩效。为了显示建议的设计的有效性,我们通过运行具有不同写入强度工作负载的SPEC2006基准测试收集了真实的痕迹。实验结果表明,我们的设计将开销降低到了最新设计的三分之一,同时仍提供了相同水平的性能。

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