基于pcm的嵌入式系统的保修期页面管理

Sheng-Wei Cheng, Yu-Fen Chang, Yuan-Hao Chang, H. Wei, W. Shih
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引用次数: 12

摘要

移动消费电子产品的蓬勃发展使得嵌入式系统设计中的能效成为一个重要而反复出现的主题。相变存储器(PCM)已经显示出其取代DRAM作为主要存储器选择的潜力,因为它(65%)降低了能量需求。然而,在考虑PCM主存的使用时,其写入耐久性成为一个关键问题,而损耗均衡设计是解决这一问题的常用方法。虽然当前针对PCM主存的磨损均衡设计应注重提高运行效率和降低开销,但现有针对PCM主存的磨损均衡设计策略往往侧重于延长PCM的使用寿命。在本文中,我们提出了一种观点,即不再把PCM的全寿命开发作为第一要务,而是转向满足产品的保修期。为此,可以进一步提高业务效率,减少管理费用。因此,我们提出了一种保修感知页面管理设计,以提高管理PCM中耐久性问题的操作效率。为了证明所提出的设计的有效性,我们收集了失败的真实痕迹。通过运行具有不同写强度工作负载的SPEC2006基准测试。实验结果表明,我们的设计将开销降低到最先进设计的三分之一,同时仍然提供相同的性能水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Warranty-aware page management for PCM-based embedded systems
The thriving growth in mobile consumer electronics makes energy efficiency in the embedded system design an important and recurring theme. Phase Change Memory (PCM) has shown its potential in replacing DRAM as the main memory option due to its (65%) reduced energy requirements. However, when considering the usage of PCM main memory, its write endurance becomes a critical issue, and wear leveling design is a common approach to resolve this issue. Even though the wear leveling design should stress operation efficiency and overhead reduction, existing wear leveling strategies designed for PCM main memory are usually dedicated to prolonging the lifetime of PCM. In this paper, we propose the perspective that, instead of valuing PCM lifetime exploitation as the first priority, we should turn to satisfy the product warranty period. To this end, further enhancement of operation efficiency and reduction of management overhead could be achieved. We thus propose a warranty-aware page management design to enhance the operation efficiency for managing the endurance issue in PCM. To show the effectiveness of the proposed design, we collected real traces on fiasco. OC by running SPEC2006 benchmarks with different write intensity workloads. The experiment results showed that our design reduced the overhead to one third of that of the state-of-the-art designs while still providing the same level of performance.
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