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CEDRO: an in-switch elephant flows rescheduling scheme for data-centers

机译:CEDRO:用于数据中心的交换式大象流重新调度方案

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Data-center topologies interconnect an ever larger number of servers using a high number of alternative paths to provide high bandwidth and a high degree of resiliency. The state-of-the-art routing strategy is based on Equal-cost multipath (ECMP) which employs static hashing mechanism over packet header fields to spread the traffic over multiple paths. Routing the traffic without considering the size of the flows and the utilization of the paths might cause congestion due to the collision of multiple large flows on a same downstream path. We present CEDRO, an in-switch mechanism to detect and reschedule colliding large flows. By exploiting the latest advances in SDN programmable network devices, we offload to the network the detection of both the elephant flows and the path congestion conditions and the rescheduling mechanism. CEDRO is able to promptly cope with path congestion and failures directly from the dataplane, regardless of the availability of the external controller. We implemented CEDRO in an emulated SDN network and tested it against realistic traffic scenarios. Numerical evaluation shows CEDRO is able to improve the average and 95-th percentile of the Flow Completion Time compared to ECMP.
机译:数据中心拓扑使用大量的备用路径来互连越来越多的服务器,以提供高带宽和高弹性。最新的路由策略基于等价多路径(ECMP),它在数据包头字段上采用静态哈希机制,以将流量分布在多条路径上。在不考虑流量大小和路径利用率的情况下路由流量可能会由于同一下游路径上多个大流量的冲突而导致拥塞。我们介绍了CEDRO,这是一种用于检测和重新计划碰撞大流量的交换机制。通过利用SDN可编程网络设备的最新进展,我们将大象流和路径拥塞情况以及重新调度机制的检测卸载到网络上。无论外部控制器是否可用,CEDRO都能直接从数据平面迅速处理路径拥塞和故障。我们在仿真的SDN网络中实施了CEDRO,并针对实际的流量情况对其进行了测试。数值评估表明,与ECMP相比,CEDRO能够提高流量完成时间的平均值和百分之95。

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