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Revisiting software-based soft error mitigation techniques via accurate error generation and propagation models

机译:通过准确的错误生成和传播模型重新审视基于软件的软错误缓解技术

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Radiation-induced soft errors are growing reliability concerns, especially in mission- and safety-critical systems. A variety of software-based fault tolerant techniques have widely been proposed and used to mitigate soft errors at the application-level. Such techniques are typically evaluated using statistical fault injection at software-visible variables of the system as fault injection at higher levels of abstraction is much faster than logic-level or Register Transfer Level (RTL). Recent studies revealed that software-based fault injection techniques are not accurate for analyzing soft errors originating in flip-flops. However, the effectiveness of such techniques for evaluation of the entire processor including register-files and cache arrays are not studied yet. In this paper, we comprehensively study the soft error rate of several workloads and their protected version using software-based fault tolerance by performing detailed error generation and propagation analysis at hardware-level. Our detailed experimental analysis shows that there is no significant correlation between the results of hardware- and software-based fault injection for the effectiveness of software-based fault tolerance. Furthermore, software-based fault injection cannot accurately model the relative improvement provided by fault tolerant software implementation, and hence, its results could be misleading.
机译:辐射诱导的软误差正在增加可靠性问题,特别是在任务和安全关键系统中。广泛提出了各种基于软件的容错技术,并用于缓解应用程序级别的软错误。通常使用系统的软件可见变量的统计故障注射评估这些技术,因为更高水平的抽象中的故障注射比逻辑电平或寄存器传输级别(RTL)更快。最近的研究表明,基于软件的故障注射技术不准确地分析源自触发器的软误差。然而,尚未研究这种技术用于评估包括寄存器文件和高速缓存阵列的整个处理器的技术的有效性。在本文中,我们通过在硬件级执行详细的错误生成和传播分析来全面研究多个工作负载及其受保护版本的软错误率。我们详细的实验分析表明,基于软件的故障注射的结果与基于软件的容错有效性之间没有显着相关性。此外,基于软件的故障注入不能准确地模拟容错软件实现提供的相对改进,因此,其结果可能是误导性的。

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