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A Fast and Scalable Fault Injection Framework to Evaluate Multi/Many-core Soft Error Reliability

机译:快速,可扩展的故障注入框架,用于评估多/多核软错误可靠性

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摘要

Increasing chip power densities allied to the continuous technology shrink is making emerging multiprocessor embedded systems more vulnerable to soft errors. Due the high cost and design time inherent to board-based fault injection approaches, more appropriate and efficient simulation-based fault injection frameworks become crucial to guarantee the adequate design exploration support at early design phase. In this scenario, this paper proposes a fast and flexible fault injector framework, called OVPSim-FIM, which supports parallel simulation to boost up the fault injection process. Aiming at validating OVPSim-FIM, several fault injection campaigns were performed in ARM processors, considering a market leading RTOS and benchmarks with up to 10 billions of object code instructions. Results have shown that OVPSim-FIM enables to inject faults at speed of up to 10,000 MIPS, depending on the processor and the benchmark profile, enabling to identify erros and exceptions according to different criteria and classifications.
机译:伴随着不断的技术缩减,不断增加的芯片功率密度使新兴的多处理器嵌入式系统更容易受到软错误的影响。由于基于板的故障注入方法固有的高成本和设计时间,因此,更合适,更高效的基于仿真的故障注入框架对于确保在早期设计阶段提供足够的设计探索支持至关重要。在这种情况下,本文提出了一种快速灵活的故障注入器框架,称为OVPSim-FIM,它支持并行仿真以加快故障注入过程。为了验证OVPSim-FIM,考虑到市场领先的RTOS和基准以及多达100亿个目标代码指令,在ARM处理器中进行了几次故障注入活动。结果表明,OVPSim-FIM能够以高达10,000 MIPS的速度注入故障,具体取决于处理器和基准配置文件,从而能够根据不同的标准和分类识别错误和异常。

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