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Performance Evaluation of Low Latency Communication Alternatives in a Containerized Cloud Environment

机译:容器化云环境中低延迟通信替代方案的性能评估

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Minimized and stable communication latency opens up the possibility for various new cloud computing domains, ranging from industrial control to stateless network functions. In this paper we evaluate the related performance aspects of two kernel bypassing technologies, RDMA and DPDK, and plain kernel sockets in a containerized environment. We show that RDMA and DPDK can provide similar latency characteristics for short messages, while RDMA outperforms DPDK as the message size grows. We demonstrate that if CPU usage is a concern, plain UDP sockets are considerable alternatives to the bypassing solutions, however, if single digit microsecond latency is a must, a dedicated CPU is necessary even for RDMA. Finally, we show that a software based message reliability can provide the same, or in some cases even better latency characteristics than the hardware based solution of RDMA, and that noisy neighbors in a cloud environment may significantly impact the performance, even with dedicated CPU cores.
机译:最小和稳定的通信延迟为从工业控制到无状态网络功能的各种新型云计算领域打开了可能性。在本文中,我们评估了容器化环境中的两种内核绕过技术(RDMA和DPDK)以及普通内核套接字的相关性能方面。我们显示RDMA和DPDK可以为短消息提供类似的延迟特性,而随着消息大小的增长,RDMA的性能优于DPDK。我们证明,如果需要考虑CPU使用率,那么普通UDP套接字是替代旁路解决方案的重要选择,但是,如果必须具有一位数微秒的延迟,那么即使对于RDMA,也需要专用的CPU。最后,我们证明,基于软件的消息可靠性可以提供与基于RDMA的硬件解决方案相同或在某些情况下甚至更好的延迟特性,并且即使使用专用CPU内核,云环境中嘈杂的邻居也可能显着影响性能。 。

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