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A Novel Method to Minimize Side Effects by Cache Contention on the Inclusive Multi-Core Shared Cache

机译:一种新的方法,可以在包容性多核共享缓存上最小化缓存争用的副作用

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Cache contention is annoying issue of the multi-core processors with private L1 cache and inclusive shared L2 cache. If core P1 runs with small working set which fits in its L1 cache while core P2 runs cache consuming process, loaded blocks in the shared L2 cache by P1 are extinguished by frequent access from P2. Furthermore, it incurs an inevitable invalidate to the L1 cache of the core P1 by the multi-level cache inclusion property. This study focused on this problem, and solves by access grouping with extension of cache status. Simulation results show the proposed method minimizes the side effects by the cache contention on the inclusive shared cache.
机译:缓存争用是私人L1缓存和包含共享L2缓存的多核处理器的令人讨厌的问题。如果Core P1使用小型工作集运行,而核心P2运行缓存消耗过程,则P1中共享L2缓存中的加载块通过频繁访问P2而熄灭。此外,它通过多级缓存包含属性引发了不可避免的无效核心P1的L1高速缓存。本研究专注于此问题,并通过访问分组来解决扩展缓存状态。仿真结果显示,所提出的方法最大限度地减少了包含共享缓存上的缓存争用的副作用。

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