A Phase-Based Self-Tuning Algorithm for Reconfigurable Cache

Manman Peng, Jiaguang Sun, Yuming Wang
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引用次数: 12

Abstract

The performance of a given cache architecture is largely determined by the behavior of the application using the cache. Reconfigurable cache is an effective low-power technique. Using the technique, microprocessor's cache can be configured dynamically to adapt itself to the requirement of running program, and minimize the energy consumption and performance loss. We introduce a phase-based self-tuning algorithm (PBSTA), which can automatically, transparently, and dynamically manage the reconfigurable cache on a per-phase basis. In contrast with previous works, the algorithm seeks not only to lower the cache's energy consumption effectively, but also reduce the performance loss due to unnecessary reconfigurations. By simulating numerous MiBench benchmarks, the results show that the PBSTA, when applied to reconfigurable cache, saves on average 40% of total memory access energy compared with a conventional cache and the associated performance loss is close to 1.8%.
一种基于相位的可重构缓存自调优算法
给定缓存架构的性能在很大程度上取决于使用缓存的应用程序的行为。可重构缓存是一种有效的低功耗技术。利用该技术,微处理器的缓存可以动态配置以适应运行程序的要求,最大限度地降低能耗和性能损失。我们引入了一种基于相位的自调优算法(PBSTA),它可以自动、透明和动态地管理每个阶段的可重构缓存。与以往的工作相比,该算法不仅寻求有效地降低缓存的能量消耗,而且减少由于不必要的重新配置而造成的性能损失。通过模拟大量的MiBench基准测试,结果表明,与传统缓存相比,PBSTA应用于可重构缓存时,平均节省总内存访问能量的40%,相关性能损失接近1.8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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