PACT: Priority-Aware Phase-Based Cache Tuning for Embedded Systems

Sam Gianelli, Tosiron Adegbija
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引用次数: 2

Abstract

Due to the cache's significant impact on an embedded system, much research has focused on cache optimizations, such as reduced energy consumption or improved performance. However, throughout an embedded system's lifetime, the system may have different optimization priorities, due to variable operating conditions and requirements. Variable optimization priorities, embedded systems' stringent design constraints, and the fact that applications typically have execution phases with varying runtime resource requirements, necessitate new robust optimization techniques that can dynamically adapt to different optimization goals. In this paper, we present priority-aware phase-based cache tuning (PACT), which tunes an embedded system's cache at runtime in order to dynamically adhere the cache configurations to varying optimization goals (specifically EDP, energy, and execution time), application execution phases, and operating conditions, while accruing minimal runtime overheads.
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基于优先级感知的基于阶段的嵌入式系统缓存调优
由于缓存对嵌入式系统的重大影响,许多研究都集中在缓存优化上,例如降低能耗或提高性能。然而,在嵌入式系统的整个生命周期中,由于不同的操作条件和要求,系统可能具有不同的优化优先级。可变的优化优先级、嵌入式系统严格的设计约束以及应用程序通常具有不同运行时资源需求的执行阶段这一事实,需要能够动态适应不同优化目标的新的健壮优化技术。在本文中,我们介绍了基于优先级感知阶段的缓存调优(PACT),它在运行时调优嵌入式系统的缓存,以便动态地将缓存配置坚持到不同的优化目标(特别是EDP,能源和执行时间),应用程序执行阶段和操作条件,同时积累最小的运行时开销。
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