Experimental Evaluation of Three Concurrent Error Detection Mechanisms

A. Vahdatpour, M. Fazeli, S. Miremadi
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引用次数: 3

Abstract

This paper presents an experimental evaluation of the effectiveness of three hardware-based control flow checking mechanisms, using software-implemented fault injection (SWIFI) method. The fault detection technique uses reconfigurable of the shelf FPGAs to concurrently check the execution flow of the target program. The technique assigns signatures to the target program in the compile time and verifies the signatures using a FPGA as a watchdog processor to detect possible violation caused by the transient faults. A total of 3000 faults were injected in the experimental embedded system, which is based on an 8051 microcontroller, to measure the error detection coverage. The experimental results show that these mechanisms detect about 90% of transient errors, injected by software implemented method.
三种并发错误检测机制的实验评价
本文利用软件实现的故障注入(SWIFI)方法,对三种基于硬件的控制流检测机制的有效性进行了实验评估。故障检测技术利用fpga的可重构性并发检测目标程序的执行流程。该技术在编译时为目标程序分配签名,并使用FPGA作为看门狗处理器对签名进行验证,以检测由瞬态故障引起的可能的违规。在基于8051单片机的实验嵌入式系统中,共注入了3000个故障,以测量错误检测覆盖率。实验结果表明,通过软件实现的方法,这些机制可以检测到约90%的瞬态误差。
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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