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Performance, Energy, and Reliability Tradeoffs in Replicating Hot Cache Lines

机译:复制热缓存行时的性能,能源和可靠性之间的权衡

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摘要

The importance of Ll data caches makes their performance, power consumption, and data integrity characteristics extremely critical in embedded systems design. We examine these issues in the context of a mechanism that tries to enhance data cache reliability by replicating cache lines (blocks) in active use. When replicating data cache lines, it is important to not evict other lines that may be needed or to not incur very high power consumption. We evaluate the tradeoffs between these three goals (reliability, energy, and performance) by modulating two important parameters, namely, the hot-block threshold and the dead-block threshold. We show that having a hot-block threshold in the range of 10-1000 cycles can provide good reliability characteristics, without compromising on performance or power. At the same time, our results indicate that one could use aggressive dead-block thresholds to provide leakage power savings without compromising on the performance and reliability characteristics. The results from this paper can be used to design power, performance, and reliability enhanced cache architectures.
机译:L1数据高速缓存的重要性使其性能,功耗和数据完整性特性在嵌入式系统设计中极为重要。我们在一种机制的背景下研究了这些问题,该机制试图通过在活动使用中复制缓存行(块)来提高数据缓存的可靠性。复制数据高速缓存行时,重要的是不要逐出可能需要的其他行或不会产生很高的功耗。通过调制两个重要参数,即热块阈值和死块阈值,我们评估了这三个目标(可靠性,能量和性能)之间的权衡。我们表明,具有10-1000个周期范围内的热阻阈值可以提供良好的可靠性特征,而不会影响性能或功耗。同时,我们的结果表明,可以使用积极的死区阈值来节省泄漏功率,而不会影响性能和可靠性。本文的结果可用于设计功能,性能和可靠性增强的缓存体系结构。

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