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Online Estimation Of Architectural Vulnerability Factor For Soft Errors

机译:在线评估软错误的体系结构脆弱性因子

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As CMOS technology scales and more transistors are packed on to the same chip, soft error reliability has become an increasingly important design issue for processors. Prior research has shown that there is significant architecture-level masking, and many soft error solutions take advantage of this effect. Prior work has also shown that the degree of such masking can vary significantly across workloads and between individual workload phases, motivating dynamic adaptation of reliability solutions for optimal cost and benefit. For such adaptation, it is important to be able to accurately estimate the amount of masking or the architecture vulnerability factor (AVF) online, while the program is running. Unfortunately, existing solutions for estimating AVF are often based on offline simulators and hard to implement in real processors. This paper proposes a novel way of estimating AVF online, using simple modifications to the processor. The estimation method applies to both logic and storage structures on the processor. Compared to previous methods for estimating AVF, our method does not require any offline simulation or calibration for different workloads. We tested our method with a widely used simulator from industry, for four processor structures and for 100 to 200 intervals of each of eleven SPEC benchmarks. The results show that our method provides acceptably accurate AVF estimates at runtime. The absolute error rarely exceeds 0.08 across all application intervals for all structures, and the mean absolute error for a given application and structure combination is always within 0.05.
机译:随着CMOS技术的发展和将更多晶体管封装在同一芯片上,软错误可靠性已成为处理器越来越重要的设计问题。先前的研究表明,存在显着的体系结构级屏蔽,许多软错误解决方案都利用了这种效果。先前的工作还表明,这种掩蔽的程度在不同的工作负载之间以及各个工作负载阶段之间可能会发生很大的变化,从而促使对可靠性解决方案进行动态调整以实现最佳成本和收益。对于这样的适应,在程序运行时,能够在线准确地估计屏蔽量或体系结构脆弱性因素(AVF)非常重要。不幸的是,现有的估计AVF的解决方案通常基于脱机模拟器,并且很难在实际处理器中实现。本文提出了一种新颖的在线估计AVF的方法,它对处理器进行了简单的修改。该估计方法适用于处理器上的逻辑和存储结构。与以前的AVF估算方法相比,我们的方法不需要针对不同的工作负载进行任何离线模拟或校准。我们使用了业界广泛使用的模拟器对四种处理器结构以及11种SPEC基准中的每100至200个间隔进行了测试。结果表明,我们的方法在运行时提供了可接受的准确AVF估计。在所有结构的所有应用间隔中,绝对误差很少超过0.08,并且给定应用和结构组合的平均绝对误差始终在0.05以内。

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