Container Orchestration by Kubernetes for RDMA Networking

Coleman Link, Jesse Sarran, Garegin Grigoryan, Minseok Kwon, M. M. Rafique, Warren R. Carithers
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引用次数: 7

Abstract

With the widespread usage of containerized virtualization in data centers and clouds, it is important to enabling high-throughput and zero-copy data transfer between those containers. Remote Direct Memory Access (RDMA) allows bypassing the kernel for packet processing by offloading it to specific RDMA-enabled NICs. The existing solutions enabling RDMA with containers are either based on custom container orchestrators (e.g., FreeFlow) or lack the ability for the control plane to manage the underlying RDMA traffic (e.g., Kubernetes RDMA plug-in via SR-IOV). The work in this paper builds off of previous work in Kubernetes to make an architecture that allows control over bandwidth requirements of RDMA within a Kubernetes cluster.
用于RDMA网络的Kubernetes容器编排
随着容器化虚拟化在数据中心和云中的广泛使用,在这些容器之间实现高吞吐量和零复制数据传输非常重要。远程直接内存访问(RDMA)允许绕过内核进行数据包处理,将其卸载到特定的支持RDMA的网卡上。现有的使用容器实现RDMA的解决方案要么是基于自定义容器编排器(例如,FreeFlow),要么是缺乏控制平面管理底层RDMA流量的能力(例如,通过SR-IOV的Kubernetes RDMA插件)。本文的工作建立在Kubernetes先前工作的基础上,构建了一个架构,允许在Kubernetes集群中控制RDMA的带宽需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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