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AAP AND AAPM: IMPROVED PREFETCHING STRUCTURES OF THE L2 CACHE

机译:AAP和AAPM:改进了L2缓存的预取结构

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The push technique is an effective method of tolerating the Load-to-use latency. However, not every memory level can gain a sound performance improvement when the push technique is adopted. In this paper, we devise a quantitative approach to analyze workload on the bus. For balancing workload, we propose a novel architecture, which compounds the push and prefetching technique to serve different storage levels. Between the L1 and the L2 cache, we use the push technique. Between the L2 cache and memory, we utilize the prefetching technique. Focusing on the L2 cache prefetching, we propose AAP and AAPM, both of which meet the requirement of timeliness and bandwidth adaptability and can increase the IPC by 2% compared with SRP.
机译:推送技术是耐受载荷延迟的有效方法。但是,当采用推送技术时,并非每个内存级别都可以获得声音性能改进。在本文中,我们设计了定量方法来分析总线上的工作量。对于平衡工作量,我们提出了一种新颖的架构,该架构化了推送和预取技术来服务不同的存储水平。在L1和L2缓存之间,我们使用推送技术。在L2缓存和内存之间,我们利用预取技术。专注于L2高速缓存预取,我们提出了AAP和AAPM,这两者都符合及时性和带宽适应性的要求,与SRP相比,可以将IPC增加2%。

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