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MN-MATE: Elastic Resource Management of Manycores and a Hybrid Memory Hierarchy for a Cloud Node

机译:MN-MATE:Manycores的弹性资源管理和云节点的混合内存层次结构

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摘要

Recent advent of manycore system increases needs for larger but faster memory hierarchy. Emerging next generation memories such as on-chip DRAM and nonvolatile memory (NVRAM) are promising candidates for replacement of DRAM-only main memory. Combined with the manycore trends, it gives an opportunity to rethink conventional resource management system with a memory hierarchy for a single cloud node. In an attempt to mitigate the energy and memory problems, we propose MN-MATE, an elastic resource management architecture for a single cloud node with manycores, on-chip DRAM, and large size of off-chip DRAM and NVRAM. In MN-MATE, the hypervisor places consolidated VMs and balances memory among them. Based on the monitored information about the allocated memory, a guest OS co-schedules tasks accessing different types of memory with complementary access intensity. Polymorphic management of DRAM hierarchy accelerates average memory access speed inside each guest OS. A guest OS reduces energy consumption with small performance loss based on the NVRAM-aware data placement policy and the hybrid page cache. A new lightweight kernel is developed to reduce the overhead from the guest OS for scientific applications. Experiment results show that our techniques in MN-MATE platform improve system performance and reduce energy consumption.
机译:Manycore系统的最新出现增加了对更大但更快的内存层次结构的需求。片上DRAM和非易失性存储器(NVRAM)等新兴的下一代存储器有望替代纯DRAM主存储器。结合多核趋势,它提供了一个机会来重新考虑具有单个云节点存储层次的传统资源管理系统。为了缓解能源和内存问题,我们提出了MN-MATE,这是一种用于具有多个核,片上DRAM以及大尺寸片外DRAM和NVRAM的单个云节点的弹性资源管理体系结构。在MN-MATE中,系统管理程序放置合并的VM,并在其中平衡内存。根据所监视的有关已分配内存的信息,来宾OS会以互补的访问强度共同计划访问不同类型内存的任务。 DRAM层次结构的多态管理加快了每个来宾OS内部平均内存访问速度。来宾操作系统基于支持NVRAM的数据放置策略和混合页面缓存,以较低的性能损失降低了能耗。开发了一种新的轻量级内核,以减少用于科学应用程序的来宾操作系统的开销。实验结果表明,我们在MN-MATE平台上的技术可以提高系统性能并降低能耗。

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