跨层协作提高云网络中的多路径TCP性能

Matthieu Coudron, Stefano Secci, G. Pujolle, Patrick Raad, Pascal Gallard
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引用次数: 37

摘要

云网络在虚拟机、管理程序和用户之间的连接弹性和吞吐量方面提出了新的要求。一个很有前途的方向是利用多路径通信,但是现有协议的范围非常有限,因此通常无法实现性能改进。通常,多路径增加了信令开销,并且在某些情况下实际上可能由于数据包到达混乱而降低吞吐量。在传输层,最有前途的协议是多路径TCP (MPTCP),这是一种向后兼容的TCP扩展,允许在几个TCP子流上平衡负载,理想情况下遵循不同的物理路径,以最大限度地提高连接吞吐量。当前的实现在主机ip之间创建了一个完整的网格,这可能不是最优的。对于至少一个端点网络是多宿主的情况,我们建议增强其子流创建机制,以便MPTCP创建足够数量的子流,考虑到IP-in-IP映射协议,位置/标识符分离协议(LISP)提供的底层路径多样性。我们定义并实现了MPTCP和LISP之间的跨层合作模块,从而形成了MPTCP的改进版本,我们称之为增强型MPTCP (a -MPTCP)。我们针对一个实际的云访问用例场景评估了a- mptcp,该场景涉及一个多主数据中心。大规模测试平台的结果表明,通过简单地添加一个额外的支持lis的MPTCP子流,a- MPTCP可以将传输时间减半,因此在多宿主用户和多宿主数据中心之间的云通信中显示出有希望的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cross-layer cooperation to boost multipath TCP performance in cloud networks
Cloud networking imposes new requirements in terms of connection resiliency and throughput among virtual machines, hypervisors and users. A promising direction is to exploit multipath communications, yet existing protocols have a so limited scope that performance improvements are often unreachable. Generally, multipathing adds signaling overhead and in certain conditions may in fact decrease throughput due to packet arrival disorder. At the transport layer, the most promising protocol is Multipath TCP (MPTCP), a backward compatible TCP extension allowing to balance the load on several TCP subflows, ideally following different physical paths, to maximize connection throughput. Current implementations create a full mesh between hosts IPs, which can be suboptimal. For situation when at least one end-point network is multihomed, we propose to enhance its subflow creation mechanism so that MPTCP creates an adequate number of subflows considering the underlying path diversity offered by an IP-in-IP mapping protocol, the Location/Identifier Separation Protocol (LISP). We defined and implemented a cross-layer cooperation module between MPTCP and LISP, leading to an improved version of MPTCP we name Augmented MPTCP (A-MPTCP). We evaluated A-MPTCP for a realistic Cloud access use-case scenario involving one multi-homed data-center. Results from a large-scale test bed show us that A-MPTCP can halve the transfer times with the simple addition of one additional LIS-Penabled MPTCP subflow, hence showing promising performance for Cloud communications between multi-homed users and multihomed data-centers.
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