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Tailoring the network to the problem: topology configuration in hybrid electronic packet switched/optical circuit switched interconnects

机译:为网络量身定制问题:混合电子分组交换/光电路交换互连中的拓扑配置

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We consider a hybrid electronic packet switched and optical circuit switched interconnection network for future high performance computing and datacenter systems. Given the logical task-to-task communication graph of an application, our objective is to cluster the logical parallel tasks to compute resources and configure the (reconfigurable) optical part of the hybrid interconnect to efficiently serve application communication requirements. We formulate the clustering and topology configuration problem in such a network, prove that it is NP-complete, and provide an optimal algorithm to solve it based on an integer linear programming formulation. The integer linear programming algorithm is used to optimally solve small-scale instances of the problem for the purpose of obtaining performance bounds. Aiming at large-scale, we also present a heuristic based on simulated annealing that trades-off performance for responsiveness. We measure the performance of a hybrid interconnect employing the proposed algorithm using real workloads, as well as extrapolated traffic, and compare it against application mapping on conventional fixed, electronic-only interconnects based on toroidal topologies.
机译:我们考虑将混合的电子分组交换和光电路交换互连网络用于未来的高性能计算和数据中心系统。给定应用程序的逻辑任务对任务通信图,我们的目标是对逻辑并行任务进行聚类以计算资源,并配置混合互连的(可重新配置)光学部分以有效满足应用程序通信需求。我们在这种网络中制定了聚类和拓扑配置问题,证明它是NP完全的,并基于整数线性规划公式提供了求解该问题的最佳算法。整数线性规划算法用于以最佳方式解决问题的小规模实例,以获取性能范围。针对大规模,我们还提出了一种基于模拟退火的启发式方法,该方法权衡了性能与响应能力。我们使用实际工作负载以及推断的流量来测量采用所提出算法的混合互连的性能,并将其与基于环形拓扑的常规固定,仅电子互连上的应用程序映射进行比较。

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