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An adaptive bloom filter cache partitioning scheme for multicore architectures

机译:用于多核架构的自适应布隆过滤器缓存分区方案

摘要

This paper investigates the problem of partitioning the last-level shared cache of multicore architectures. Contention for such a shared resource has been shown to severely degrade performance when running multiple applications. As architectures incorporate more cores, multiple application workloads become increasingly attractive, further exacerbating contention at the last-level cache. Today, cache replacement policies, extensively studied for uniprocessor systems, are being employed within new multicore architectures with little, if any, adaptation. However the parameters in these new systems are likely to be different. The least recently used (LRU) policy, for example, which is widely accepted as the best replacement policy in uniprocessor caches, often results in poor resource sharing in a multicore system, signalling the importance of reevaluating the effectiveness of these policies in the new architectures. This paper proposes Adaptive Bloom Filter Cache Partitioning (ABFCP), a low-cost, dynamic cache partitioning mechanism capable of better resource sharing at the last-level cache than LRU, improving the performance of an eight-core system on average by 5.92% over the LRU policy. Moreover, the proposed scheme provides the equivalent performance bene ts that could be gained from almost a 50% increase in the last-level cache and shows increasing bene t as the number of cores rises. ©2008 IEEE.
机译:本文研究了对多核体系结构的最后一级共享缓存进行分区的问题。已经显示,在运行多个应用程序时,此类共享资源的争用会严重降低性能。随着体系结构包含更多核心,多个应用程序工作负载变得越来越有吸引力,从而进一步加剧了最后一级缓存的争用。如今,在单核系统中已广泛研究的缓存替换策略已在新的多核体系结构中采用,几乎没有任何适应性。但是,这些新系统中的参数可能会有所不同。例如,最近最少使用(LRU)策略在单处理器高速缓存中被公认为是最佳替换策略,通常会导致多核系统中的资源共享不佳,这表明在新架构中重新评估这些策略的有效性的重要性。 。本文提出了一种自适应布隆过滤器高速缓存分区(ABFCP),这是一种低成本的动态高速缓存分区机制,与LRU相比,它能够在末级高速缓存中更好地共享资源,从而使八核系统的性能平均提高了5.92%, LRU政策。此外,所提出的方案提供了等效的性能优势,可以从最后一级缓存中将近50%的增长中获得,并且显示出随着内核数量的增加而带来的优势。 ©2008 IEEE。

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