Energy-aware fetch mechanism: trace cache and BTB customization

D. Chaver, Miguel A. Rojas, L. Piñuel, M. Prieto, F. Tirado, Michael C. Huang
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引用次数: 11

Abstract

A highly-efficient fetch unit is essential not only to obtain good performance but also to achieve energy efficiency. However, existing designs are inflexible and depending on program behavior, can be either insufficient or an overkill. We introduce a phase-based adaptive fetch mechanism that can be dynamically adjusted based on feedback information of the program behavior. This design adds very little hardware complexity and relegates complex tasks to the software components. It is also very effective: saving 26.8% and 34.1% fetch energy on average compared with a conventional and a trace cache-based fetch unit, respectively. At the same time, performance is improved by 5.7% and 0.6%, respectively.
能量感知获取机制:跟踪缓存和BTB定制
高效的取水装置不仅是获得良好性能的必要条件,也是实现能源效率的必要条件。然而,现有的设计是不灵活的,并且依赖于程序的行为,可能是不够的,也可能是过度的。我们引入了一种基于阶段的自适应获取机制,该机制可以根据程序行为的反馈信息进行动态调整。这种设计增加了很少的硬件复杂性,并将复杂的任务交给了软件组件。它也非常有效:与传统和基于跟踪缓存的获取单元相比,平均分别节省26.8%和34.1%的获取能量。同时,性能分别提高了5.7%和0.6%。
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