Instruction precomputation with memoization for fault detection

D. Borodin, B. Juurlink
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引用次数: 9

Abstract

Fault tolerance (FT) has become a major concern in computing systems. Instruction duplication has been proposed to verify application execution at run time. Two techniques, instruction memoization and precomputation, have been shown to improve the performance and fault coverage of duplication. This work shows that the combination of these two techniques is much more powerful than either one in isolation. In addition to performance, it improves the long-lasting transient and permanent fault coverage upon the memoization scheme. Compared to the precomputation scheme, it reduces the long-lasting transient and permanent fault coverage of 10.6% of the instructions, but covers 2.6 times as many instructions against shorter transient faults. On a system with 2 integer ALUs, the combined scheme reduces the performance degradation due to duplication by on average 27.3% and 22.2% compared to the precomputation and memoization-based techniques, respectively, with similar hardware requirements.
指令预计算与记忆的故障检测
容错(FT)已经成为计算系统中的一个主要问题。建议使用指令复制来验证应用程序在运行时的执行情况。指令记忆和预计算两种技术已被证明可以提高复制的性能和故障覆盖率。这项工作表明,这两种技术的结合比单独使用任何一种技术都要强大得多。除了性能之外,它还提高了记忆方案上的长期暂态和永久故障覆盖率。与预计算方案相比,该方案减少了10.6%的持久暂态和永久故障的指令覆盖率,但对较短的暂态故障的指令覆盖率是预计算方案的2.6倍。在具有2个整数alu的系统上,与硬件要求相似的预计算和基于记忆的技术相比,组合方案平均减少了27.3%和22.2%的由重复引起的性能下降。
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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