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Selective SWIFT-R: A Flexible Software-Based Technique for Soft Error Mitigation in Low-Cost Embedded Systems

机译:选择性SWIFT-R:一种基于软件的灵活技术,可减轻低成本嵌入式系统中的软错误

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摘要

Commercial off-the-shelf microprocessors are the core of low-cost embedded systems due to their programmability and cost-effectiveness. Recent advances in electronic technologies have allowed remarkable improvements in their performance. However, they have also made microprocessors more susceptible to transient faults induced by radiation. These non-destructive events (soft errors), may cause a microprocessor to produce a wrong computation result or lose control of a system with catastrophic consequences. Therefore, soft error mitigation has become a compulsory requirement for an increasing number of applications, which operate from the space to the ground level. In this context, this paper uses the concept of selective hardening, which is aimed to design reduced-overhead and flexible mitigation techniques. Following this concept, a novel flexible version of the software-based fault recovery technique known as SWIFT-R is proposed. Our approach makes possible to select different registers subsets from the microprocessor register file to be protected on software. Thus, design space is enriched with a wide spectrum of new partially protected versions, which offer more flexibility to designers. This permits to find the best trade-offs between performance, code size, and fault coverage. Three case studies have been developed to show the applicability and flexibility of the proposal.
机译:商用现成的微处理器由于具有可编程性和成本效益,因此是低成本嵌入式系统的核心。电子技术的最新进展已使其性能有了显着提高。但是,它们也使微处理器更容易受到辐射引起的瞬态故障的影响。这些非破坏性事件(软错误)可能导致微处理器产生错误的计算结果或失去对系统的控制权,并带来灾难性后果。因此,减轻软错误已成为从空间到地面运行的越来越多应用程序的强制性要求。在这种情况下,本文使用选择性强化的概念,旨在设计减少开销的方法和灵活的缓解技术。遵循这个概念,提出了一种新的灵活版本的基于软件的故障恢复技术,称为SWIFT-R。我们的方法使从微处理器寄存器文件中选择不同的寄存器子集成为可能,从而在软件上进行保护。因此,广泛的新的部分受保护版本丰富了设计空间,为设计人员提供了更大的灵活性。这样可以在性能,代码大小和故障范围之间找到最佳平衡。已经开发了三个案例研究,以显示该提案的适用性和灵活性。

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