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Selective Cache Line Replication Scheme in Shared Last Level Cache

机译:共享末级缓存中的选择性缓存行复制方案

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In current multi-core systems with the shared last level cache (LLC) physically distributed across all the cores, both initial data placement and subsequent placement of data close to the requesting core can contribute to reducing memory access latency and power consumption. This paper extends a replication scheme that balances between access latency and cache capacity in shared NUCA designs by selectively replicating frequently used cache lines close to the requesting cores. Our scheme reduces completion time by 15% and improves energy consumption by 27% when compared to the Static-NUCA (S-NUCA) management scheme, when simulated on an eight core system.
机译:在当前的共享多级缓存(LLC)物理分布在所有内核上的当前多核系统中,初始数据放置和紧接着请求内核的数据后续放置都可以有助于减少内存访问延迟和功耗。本文通过有选择地复制靠近请求核心的常用缓存行,扩展了一种在共享NUCA设计中在访问延迟和缓存容量之间取得平衡的复制方案。与在八核系统上进行仿真的Static-NUCA(S-NUCA)管理方案相比,我们的方案将完成时间减少了15%,能耗降低了27%。

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