共享内存多核/多处理器系统容错技术综述

Hamid Mushtaq, Z. Al-Ars, K. Bertels
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引用次数: 27

摘要

随着现代纳米技术的出现,在一个芯片上实现多个处理核心已经成为可能。然而,晶体管尺寸的缩小使可靠性成为这类系统的一个问题,因为较小的晶体管更容易发生永久和瞬态故障。为了降低此类系统的故障概率,可以采用在线容错技术。这些技术需要高效,因为它们与在此类系统上运行的应用程序并发执行。本文讨论了在线容错所面临的挑战和现有的解决这些挑战的工作。本文将容错分为主动故障管理、错误检测、故障诊断和故障恢复四个步骤,并重点讨论了共享内存多核/多处理器系统的容错技术。我们还强调了在共享内存多核/多处理器系统上并行执行时容忍错误的其他困难。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Survey of fault tolerance techniques for shared memory multicore/multiprocessor systems
With the advent of modern nano-scale technology, it has become possible to implement multiple processing cores on a single die. The shrinking transistor sizes however have made reliability a concern for such systems as smaller transistors are more prone to permanent as well as transient faults. To reduce the probability of failures of such systems, online fault tolerance techniques can be applied. These techniques need to be efficient as they execute concurrently with applications running on such systems. This paper discusses the challenges involved in online fault tolerance and existing work which tackles these challenges. We classify fault tolerance into four different steps which are proactive fault management, error detection, fault diagnosis and recovery and discuss related work for each step, with focus on techniques for shared memory multicore/multiprocessor systems. We also highlight the additional difficulties in tolerating faults for parallel execution on shared memory multicore/multiprocessor systems.
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