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A Case Study - Cost of Preemption for Urgent Computing on SuperMUC

机译:案例研究-SuperMUC上紧急计算的抢占成本

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Urgent computing requires computations to commence in short order and complete within a stipulated deadline so as to support mitigation activities in preparation, response and recovery from an event that requires immediate attention. As such, acquiring computation resources swiftly is crucial. Preemptive scheduling, terminating an existing job(s) to make way for an urgent job, is one of the most common approach considered. However, public resource providers are typically faced with policy restrictions that forbid them from allowing preemption. The interruption of existing jobs is believed to have a significant consequence, i.e. cost, to the users and resource providers. This case study on a public HPC resource, SuperMUC, hosted at Leibniz Supercomputing Centre aims to study the cost of preemption. Two cost models, least cost and least disruptive, will be used. With this, we want to demonstrate that the cost of preemption is in fact much lower in comparison to the loss mitigation that can be achieved by allowing an urgent computation. The ultimate aim is to provide evidence to convince policy makers on the feasibility and benefits of supporting urgent computing on public resources.
机译:紧急计算​​要求计算在短时间内开始并在规定的期限内完成,以支持缓解活动的准备,响应和从需要立即引起关注的事件中恢复。因此,迅速获取计算资源至关重要。抢先式调度(终止工作以代替紧急任务)是最常用的方法之一。但是,公共资源提供者通常面临禁止其允许抢占的策略限制。据信,现有工作的中断对用户和资源提供者产生了严重的后果,即成本。这项由莱布尼兹超级计算中心托管的公共HPC资源SuperMUC的案例研究旨在研究抢占的成本。将使用两种成本模型,即成本最低和破坏性最小。这样,我们想证明抢占的成本实际上比允许紧急计算可以减少损失的成本低得多。最终目的是提供证据,以说服政策制定者支持公共资源紧急计算的可行性和益处。

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