首页> 外文会议>Computer Architecture, 2008. ISCA '08 >A Proactive Wearout Recovery Approach for Exploiting Microarchitectural Redundancy to Extend Cache SRAM Lifetime
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A Proactive Wearout Recovery Approach for Exploiting Microarchitectural Redundancy to Extend Cache SRAM Lifetime

机译:一种主动的损耗恢复方法,可利用微体系结构冗余来延长缓存SRAM的使用寿命

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Microarchitectural redundancy has been proposed as a means of improving chip lifetime reliability. It is typically used in a reactive way, allowing chips to maintain operability in the presence of failures by detecting and isolating, correcting, and/or replacing components on a first-come, first-served basis only after they become faulty. In this paper, we explore an alternative, more preferred method of exploiting microarchitectural redundancy to enhance chip lifetime reliability. In our proposed approach, redundancy is used proactively to allow non-faulty microarchitecture components to be temporarily deactivated, on a rotating basis, to suspend and/or recover from certain wearout effects. This approach improves chip lifetime reliability by warding off the onset of wearout failures as opposed to reacting to them posteriorly. Applied to on-chip cache SRAM for combating NBTI-induced wearout failure, our proactive wearout recovery approach increases lifetime reliability (measured in mean-time-to-failure) of the cache by about a factor of seven relative to no use of microarchitectural redundancy and a factor of five relative to conventional reactive use of redundancy having similar area overhead.
机译:提出了微体系结构冗余作为提高芯片寿命可靠性的一种手段。它通常以反应方式使用,允许芯片通过在出现故障后才检测和隔离,校正和/或更换组件,从而在出现故障时保持可操作性。在本文中,我们探索了一种替代的,更可取的利用微体系结构冗余来提高芯片寿命可靠性的方法。在我们提出的方法中,主动使用冗余,以允许非故障性微体系结构组件在旋转的基础上暂时停用,以暂停和/或从某些磨损影响中恢复。这种方法通过避免磨损失败的发生而不是事后做出反应,从而提高了芯片寿命的可靠性。我们的主动磨损恢复方法适用于片上缓存SRAM,以应对NBTI引起的磨损故障,相对于不使用微体系结构冗余,其主动寿命恢复方法将缓存的寿命可靠性(以平均失效时间衡量)提高了大约七倍。与具有类似面积开销的冗余的常规反应性使用相比,其系数是五分之一。

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