Probabilistic Shared Cache Management (PriSM)

R. Manikantan, K. Rajan, Ramaswamy Govindarajan
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引用次数: 94

Abstract

Effective sharing of the last level cache has a significant influence on the overall performance of a multicore system. We observe that existing solutions control cache occupancy at a coarser granularity, do not scale well to large core counts and in some cases lack the flexibility to support a variety of performance goals. In this paper, we propose Probabilistic Shared Cache Management (PriSM), a framework to manage the cache occupancy of different cores at cache block granularity by controlling their eviction probabilities. The proposed framework requires only simple hardware changes to implement, can scale to larger core count and is flexible enough to support a variety of performance goals. We demonstrate the flexibility of PriSM, by computing the eviction probabilities needed to achieve goals like hit-maximization, fairness and QOS. PriSM-HitMax improves performance by 18.7% over LRU and 11.8% over previously proposed schemes in a sixteen core machine. PriSM-Fairness improves fairness over existing solutions by 23.3% along with a performance improvement of 19.0%. PriSM-QOS successfully achieves the desired QOS targets.
概率共享缓存管理(PriSM)
最后一级缓存的有效共享对多核系统的整体性能有重大影响。我们观察到,现有的解决方案以较粗的粒度控制缓存占用,不能很好地扩展到大型核心数量,并且在某些情况下缺乏支持各种性能目标的灵活性。在本文中,我们提出了概率共享缓存管理(PriSM)框架,该框架通过控制不同内核的驱逐概率来管理缓存块粒度上不同内核的缓存占用。所建议的框架只需要简单的硬件更改来实现,可以扩展到更大的核心数量,并且足够灵活以支持各种性能目标。通过计算实现命中最大化、公平性和QOS等目标所需的驱逐概率,我们展示了PriSM的灵活性。PriSM-HitMax在16核机器上的性能比LRU提高了18.7%,比以前提出的方案提高了11.8%。PriSM-Fairness在现有解决方案的基础上提高了23.3%的公平性,性能提高了19.0%。PriSM-QOS成功达到预期的QOS目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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