虚拟NUMA系统中热页感知调度优化方法

Butian Huang, Jianhai Chen, Qinming He, Bei Wang, Zhenguang Liu, Yuxia Cheng
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摘要

在CPU和内存复用的情况下,不可避免地会出现一些NUMA节点过载或热点,成为热节点,从而导致虚拟机应用性能下降。然而,虚拟机监视器(VMM)不能有效地感知NUMA特性和NUMA节点之间的热内存页分布数组。针对vNUMA系统中存在的热节点和负载不平衡问题,提出了一种热页感知调度优化方法(HASO),并实现了一个热页感知调度系统。首先,我们监控NUMA节点的负载状态,找到热节点,在其中选择导致节点热点的热vm。然后,我们预测了热VM未来热内存页面的分布,并评估了在NUMA节点之间迁移热页面的成本。最后,将迁移成本最小的热虚拟机热页迁移到空闲节点,从而消除热节点,提高虚拟机应用性能。与VMM的默认调度机制相比,我们的HASO调度方法不仅可以将内存密集型基准cg提高27.06%,将基准流提高15.63%,而且可以平衡NUMA节点的负载。
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HASO: A hot-page aware scheduling optimization method in virtualized NUMA systems
In the situation of CPU and memory overcommit, it is inevitable that some NUMA nodes will be overloaded or hotspotted and become hot nodes, leading to the VM application performance degradation in virtualized NUMA (vNUMA) systems. However, the virtual machine monitor (VMM) can not be aware of the NUMA feature and the distribution array of hot memory pages amongst NUMA nodes effectively. Aiming at eliminating the hot nodes and load imbalance in a vNUMA system, this paper proposes a hot-page aware scheduling optimization method (HASO) and implements a HASO scheduling system. At first we monitor the NUMA node load state, find the hot nodes in which we choose the hot VMs that cause the node hotspots. Then, we predict the distribution of future hot memory pages of the hot VM, and evaluate the cost of migrating the hot pages between NUMA nodes. At last, the hot pages of hot VM with minimized migration cost are migrated to idling nodes, so as to eliminate the hot node and improve the VM application performance. In contrast to the default scheduling mechanism of VMM, our HASO scheduling method can not only improve the memory intensive benchmark cg by up to 27.06% and the benchmark stream by up to 15.63%, but also balance the load of NUMA nodes.
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