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SCHIFI: Scalable and flexible high performance FPGA-based fault injector

机译:Schifi:可扩展灵活的高性能FPGA基故障注射器

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One of the consequence of the scaling down of latest technologies, is that digital circuits are more prone to be affected by faults caused by physical manufacturing defects, environmental perturbations (e.g., radiations, electromagnetic interference), or aging-related phenomena. Understanding the behavior of the whole system in the presence of faults affecting digital circuits is crucial for designing and validating fault tolerance techniques. Fault injection is a well-known and widely used approach for estimating the behavior of a system in the presence of errors. Among the different techniques, FPGA-based fault injection is one of the most popular since it allows a low-cost, rapid and accurate approach compared to simulation- and hardware based fault injectors. In this paper we present a flexible FPGA fault injector able to inject in the memory hierarchy of a given system.
机译:缩小最新技术的结果是,数字电路更容易受到物理制造缺陷,环境扰动(例如,辐射,电磁干扰)或与老化相关现象引起的故障影响的。了解整个系统在影响数字电路的故障存在中的行为对于设计和验证容错技术至关重要。故障注射是一种众所周知的和广泛使用的方法,用于估计系统存在错误的行为。在不同的技术中,基于FPGA的故障注入是最受欢迎的,因为与基于仿真和硬件的故障注射器相比,它允许低成本,快速准确的方法。在本文中,我们介绍了一种能够在给定系统的存储器层次中注入的灵活FPGA故障注射器。

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