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Real-time reconfigurable cache for low-power embedded systems

机译:用于低功耗嵌入式系统的实时可重新配置缓存

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摘要

Modem embedded systems execute a small set of applications or even a single one repeatedly. Specialising cache configurations to a particular application is well-known to have great benefits on performance and power. However, the fact that the behaviour of an application varies from phase to phase has been shown in recent years. Tuning cache configuration to fit a target application in different phases gives a further improvement in power consumption. This work presents a mechanism which determines the optimal configurations in different phases during an execution process. By applying corresponding cache configuration for each time interval of an execution process on LI instruction cache, this work shows that on average 91.6% energy saving is obtained by comparing with average energy consumption of all four-way set-associative caches in search space. On average 5.29% power reduction is achieved by comparing with energy consumption of benchmarks with their respective global optimal cache configurations.
机译:现代嵌入式系统执行一小组应用程序,甚至重复执行一个应用程序。众所周知,将缓存配置专门用于特定的应用程序可在性能和功能上带来巨大的好处。但是,近年来已显示出应用程序的行为随阶段而变化的事实。调整缓存配置以适合不同阶段的目标应用程序可以进一步降低功耗。这项工作提出了一种机制,可以确定执行过程中不同阶段的最佳配置。通过在LI指令高速缓存上为执行过程的每个时间间隔应用相应的高速缓存配置,这项工作表明,通过与搜索空间中所有四路集关联高速缓存的平均能耗进行比较,平均可节省91.6%的能耗。通过将基准测试与各自的全局最佳缓存配置进行比较,可以平均降低5.29%的功耗。

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