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Rate-based QoS techniques for cache/memory in CMP platforms

机译:基于速率的QoS技术,用于CMP平台中的缓存/内存

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As we embrace the era of chip multi-processors (CMP), we are faced with two major architectural challenges: (i) QoS or performance management of disparate applications running on CPU cores contending for shared cache/memory resources and (ii) global/local power management techniques to stay within the overall platform constraints. The problem is exacerbated as the number of cores sharing the resources in a chip increase. In the past, researchers have proposed independent solutions for these two problems. In this paper, we show that rate-based techniques that are employed to address power management can be adapted to address cache/memory QoS issues. The basic approach is to throttle down the processing rate of a core if it is running a low-priority task and its execution is interfering with the performance of a high priority task due to platform resource contention (i.e. cache or memory contention). We evaluate two rate throttling mechanisms (clock modulation, and frequency scaling) for effectively managing the interference between applications running in a CMP platform and delivering QoS/performance management. We show that clock modulation is much more applicable to cache/memory QoS than frequency scaling and that resource monitoring along with rate control provides effective power-performance management in CMP platforms.
机译:随着我们拥抱芯片多处理器(CMP)的时代,我们面临的两个主要架构挑战:(i)在CPU核心上运行的不同应用程序的QoS或绩效管理,争夺共享缓存/内存资源和(ii)全局/留在整体平台约束范围内的本地电源管理技术。由于在芯片增加中共享资源的核心数量,问题会加剧。在过去,研究人员提出了这两个问题的独立解决方案。在本文中,我们表明,被用来地址电源管理,基于速率的技术可适应地址缓存/内存QoS问题。基本方法是在运行低优先级任务时缩小核心的处理速率,并且其执行是由于平台资源争用而导致的高优先级任务的性能(即高速缓存或内存争用)。我们评估了两个速率节流机制(时钟调制和频率缩放),以便有效地管理CMP平台中运行的应用之间的干扰并提供QoS /性能管理。我们表明时钟调制比频率缩放更适用于缓存/内存QoS,并且资源监控以及速率控制提供了CMP平台的有效功率性能管理。

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