Comparative experimental analysis of Docker container networking drivers

Lucas Litter Mentz, W. J. Loch, G. Koslovski
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引用次数: 3

Abstract

Virtualization allows for more efficient hardware usage by allowing several instances of Operating Systems (OSs) or Virtual Machines (VMs) to run on a physical server. Containers are a subset of lightweight virtualization and reduce the overhead of virtualizing an entire OS by sharing the server's OS with the virtualized instances. Moreover, containers work closer to hardware than VMs and are similar to Linux processes, however, this limits connectivity freedom since processes do not have access to network addressing. To resemble container's communication to that of conventional networks we use network drivers. Studies show that in processing- or memory-bound scenarios, containers perform better than VMs, but in network-bound scenarios they achieve less performance. This work analyzes performance of networking implementations for Docker in different container allocations and workload scenarios.
Docker容器联网驱动程序的对比实验分析
虚拟化允许在物理服务器上运行多个操作系统(os)或虚拟机(vm)实例,从而实现更高效的硬件使用。容器是轻量级虚拟化的一个子集,通过与虚拟化实例共享服务器的操作系统,可以减少虚拟化整个操作系统的开销。此外,容器比vm更接近硬件,并且类似于Linux进程,然而,这限制了连接自由,因为进程不能访问网络寻址。为了使容器的通信与传统网络的通信相似,我们使用了网络驱动程序。研究表明,在处理或内存受限的场景下,容器的性能优于虚拟机,但在网络受限的场景下,容器的性能不如虚拟机。这项工作分析了Docker在不同容器分配和工作负载场景下的网络实现性能。
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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