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Simple locality-aware co-allocation in peer-to-peer supercomputing

机译:对等超级计算中的简单的本地感知协同分配

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With current grid middleware, it is difficult to deploy distributed supercomputing applications that run concurrently on multiple resources. As current grid middleware systems have problems with co-allocation (scheduling across multiple grid sites), fault-tolerance and are difficult to set-up and maintain, we consider an alternative: peer-to-peer (P2P) supercomputing. P2P supercomputing middleware systems overcome many limitations of current grid systems. However, the lack of central components makes scheduling on P2P systems inherently difficult. As a possible scheduling solution for P2P supercomputing middleware we introduce flood scheduling. It is locality aware, decentralized, flexible and supports co-allocation. We introduce Zorilla, a prototype P2P supercomputing middleware system. Evaluation of Zorilla on over 600 processors at six sites of the Grid5000 system shows that flood scheduling, when used in a P2P network with suitable properties, is a good alternative to centralized algorithms
机译:使用当前的网格中间件,很难部署在多个资源上同时运行的分布式超级计算应用程序。由于当前的网格中间件系统存在协同分配(跨多个网格站点进行调度),容错的问题,并且难以设置和维护,因此我们考虑了另一种方法:对等(P2P)超级计算。 P2P超级计算中间件系统克服了当前网格系统的许多限制。然而,缺少中央组件使得在P2P系统上的调度固有地困难。作为P2P超级计算中间件的一种可能的调度解决方案,我们介绍了洪水调度。它具有本地意识,分散性,灵活性并支持共同分配。我们介绍Zorilla,一个原型P2P超级计算中间件系统。在Grid5000系统的六个站点的600多个处理器上对Zorilla进行的评估表明,洪水调度在具有适当属性的P2P网络中使用时,可以很好地替代集中式算法

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