Algorithm transformation methods to reduce software-only fault tolerance techniques' overhead

J. Azambuja, G. Brown, F. Kastensmidt, L. Carro
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引用次数: 0

Abstract

This paper introduces a framework that tackles the costs in area and energy consumed by methodologies like spatial or temporal redundancy with a different approach: given an algorithm, we find a transformation in which part of the computation involved is transformed into memory accesses. The precomputed data stored in memory can be protected then by applying traditional and well established ECC algorithms to provide fault tolerant hardware designs. At the same time, the transformation increases the performance of the system by reducing its execution time, which is then used by customized software-only fault tolerant techniques to protect the system without any degradation when compared to its original form. Application of this technique to key algorithms in a MP3 player, combined with a fault injection campaign, show that this approach increases fault tolerance up to 92%, without any performance degradation.
本文介绍了一个框架,该框架采用不同的方法处理空间或时间冗余等方法所消耗的面积和能量成本:给定一个算法,我们找到一个转换,其中所涉及的部分计算被转换为内存访问。通过采用传统的和成熟的ECC算法来提供容错硬件设计,可以保护存储在内存中的预计算数据。同时,转换通过减少系统的执行时间来提高系统的性能,然后由定制的纯软件容错技术使用该时间来保护系统,与原始形式相比不会有任何退化。将该技术应用于MP3播放器中的关键算法,结合故障注入活动,表明该方法将容错能力提高了92%,而不会降低性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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