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EECache: A Comprehensive Study on the Architectural Design for Energy-Efficient Last-Level Caches in Chip Multiprocessors

机译:EECache:芯片多处理器中节能最后一级缓存的体系结构设计的综合研究

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Power management for large last-level caches (LLCs) is important in chip multiprocessors (CMPs), as the leakage power of LLCs accounts for a significant fraction of the limited on-chip power budget. Since not all workloads running on CMPs need the entire cache, portions of a large, shared LLC can be disabled to save energy. In this article, we explore different design choices, from circuit-level cache organization to microarchitectural management policies, to propose a low-overhead runtime mechanism for energy reduction in the large, shared LLC. We first introduce a slice-based cache organization that can shut down parts of the shared LLC with minimal circuit overhead. Based on this slice-based organization, part of the shared LLC can be turned off according to the spatial and temporal cache access behavior captured by low-overhead sampling-based hardware. In order to eliminate the performance penalties caused by flushing data before powering off a cache slice, we propose data migration policies to prevent the loss of useful data in the LLC. Results show that our energy-efficient cache design (EECache) provides 14.1% energy savings at only 1.2% performance degradation and consumes negligible hardware overhead compared to prior work.
机译:大型最后一级高速缓存(LLC)的电源管理在芯片多处理器(CMP)中非常重要,因为LLC的泄漏功率占有限的片上功率预算的很大一部分。由于并非所有在CMP上运行的工作负载都需要整个缓存,因此可以禁用大型共享LLC的一部分以节省能量。在本文中,我们探索了从电路级缓存组织到微体系结构管理策略的不同设计选择,以提出一种低开销的运行时机制来减少大型共享LLC的能耗。我们首先介绍一个基于切片的缓存组织,该组织可以以最小的电路开销关闭共享LLC的部分。基于此基于切片的组织,可以根据低开销的基于采样的硬件捕获的空间和时间缓存访问行为,关闭共享LLC的一部分。为了消除关闭高速缓存片电源之前刷新数据所导致的性能损失,我们提出了数据迁移策略,以防止LLC中有用数据的丢失。结果表明,与以前的工作相比,我们的节能高速缓存设计(EECache)节省了14.1%的能耗,而性能却下降了1.2%,并且硬件开销可忽略不计。

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