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Improved Way Prediction Policy for Low-Energy Instruction Caches

机译:低能量指令缓存的改进方式预测政策

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In this paper, a multi-way way prediction policy (MWWP) with a two-port Way Predictor (TPWP) is proposed for reducing the dynamic and leakage energy in multi-way set associative drowsy I-Cache without dramatic loss of performance. One port of TPWP is used for predicting the matching way in current set, only the predicted way and not all the ways is accessed to reduce the dynamic energy. The other is used for predicting the matching way in subsequent set, only the cache line in predicted way is pre-woken up from the drowsy mode to reduce the leakage energy. Different with the traditional way prediction policy, the MWWP has the lower performance overhead by selecting multiple ways speculatively for each access to improve way prediction hit ratio (WPHR). The simulation and estimation results show that, in a 4-way set-associative drowsy I-Cache, with 0.98% and 0.4% performance overhead respectively, our proposed 2-way and 3-way way prediction policy with TPWP can reduce 59% and 47% of energy in I-Cache, and save the 6.1% and 5.4% of the whole processor energy. The EDP is improved by 4.5% and 4.1% on average.
机译:在本文中,提出了一种具有双端口方式预测器(TPWP)的多路方式预测策略(MWWP),用于降低多路组关联昏昏欲睡的动态和泄漏能量,而不会急剧丧失性能。 TPWP的一个端口用于预测当前集中的匹配方式,只有预测的方式,并非所有方式都被访问以降低动态能量。另一个用于预测后续集合中的匹配方式,仅从昏昏欲睡模式预先唤起预测方式的高速缓存行以减少泄漏能量。与传统的方式预测策略不同,MWWP通过选择多种方式,对每个访问的多种方式具有较低的性能开销,以提高方式预测命中率(WPHR)。仿真和估计结果表明,在4路集合昏昏欲睡的I高速缓存中,分别具有0.98%和0.4%的性能开销,我们提出的双向和三通方式与TPWP的预测政策可以减少59%和I-Cache中47%的能量,并节省了整个处理器能量的6.1%和5.4%。 EDP​​平均提高了4.5%和4.1%。

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