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An Improved Design on Performance and Cache Miss Rate for Set-Associative I-cache

机译:SET-ASSOCATIVE I-CACHA的性能和高速缓存未命中率的改进设计

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Access with prediction has been an effective approach to reduce the power consumption of set-associative I-cache. However it decreases the performance meanwhile. This paper improved LAW (Last Accessed Way) based I-cache design, which takes both the replacement and predicting access policy into account. By replacing and accessing along the last accessed way, the CMR (Cache Miss Rate) and PMR (Predict Miss Rate) are significantly improved. We extend the scope of application of LAW based policy by subdividing those uncertain occasions with MRU (Most Recently Used) way prediction. Simulations show that compared with the original LAW approach, such a 16KB, 4-way and 32B-line-size I-cache can improve 0.833% performance on average, with the energy consumption increased by 1.498% only. Compared with the conventional set associative I-cache, the proposed design, which is called eLAW, reduces almost 17.93% CMR and 43%-59% energy consumption on average.
机译:使用预测的访问是一种有效的方法,可以减少集合关联I-Cache的功耗。然而,它同时降低了性能。本文改进了基于I-Cache设计的法律(上次访问方式),其考虑了替换和预测访问策略。通过替换和访问上次访问的方式,CMR(缓存未命中率)和PMR(预测错过率)显着提高。通过细分与MRU(最近使用的)方式预测的那些不确定的场合来扩大基于法律的政策的适用范围。模拟表明,与原始法律方法相比,这种16KB,4路和32B线大小的I高速缓存可以平均提高0.833%的性能,仅限能耗增加1.498%。与传统集合关联I-Cache相比,所提出的设计称为ELAW,平均降低了近17.93%的CMR和43%-59%的能耗。

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