uTNT:高效灵活的互联网探测单核

Maxime Letemple, Gaulthier Gain, Sami Ben Mariem, Laurent Mathy, Benoit Donnet
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引用次数: 0

摘要

过去二十年来,网络测量基础设施得到了发展和普及。互联网测量平台已变得十分普遍,并在互联网理解和安全观测方面发挥了重要作用。然而,尽管这些平台很受欢迎,但由于它们通常用于纵向测量,因此缺乏灵活性和反应能力。因此,它们可能无法检测到与安全或互联网有关的事件。在同一时期,操作系统已经发展为虚拟机(VM),作为运行应用程序的独立单元,最近又兴起了单核,即为特定应用程序定制的超轻量级虚拟机,从而消除了对主机操作系统的需求。在本文中,我们主张测量基础架构可以利用单核来提高灵活性和效率。我们提出了 uTNT,它是 TNT 基于单内核的概念验证实现,TNT 是一种可用于揭示 MPLS 隧道的跟踪路由扩展。本文记录了将 TNT 移植到 unikernel 的完整工具链,并评估了 uTNT 相对于传统方法的性能。本文还讨论了 uTNT 的一个使用案例。uTNT 的源代码可在 Gitlab 上公开获取。
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uTNT: Unikernels for Efficient and Flexible Internet Probing
The last twenty years have seen the development and popularity of network measurement infrastructures. Internet measurement platforms have become common and have demonstrated their relevance in Internet understanding and security observation. However, despite their popularity, those platforms lack of flexibility and reactivity, as they are usually used for longitudinal measurements. As a consequence, they may miss detecting events that are security or Internet-related. During the same period, operating systems have evolved to virtual machines (VMs) as self-contained units for running applications, with the recent rise of unikernels, ultra-lightweight VMs tailored for specific applications, eliminating the need for a host OS. In this paper, we advocate that measurement infrastructures could take advantage of unikernels to become more flexible and efficient. We propose uTNT, a proof-of-concept unikernel-based implementation of TNT, a traceroute extension able to reveal MPLS tunnels. This paper documents the full toolchain for porting TNT into a unikernel and evaluates uTNT performance with respect to more traditional approaches. The paper also discusses a use case in which uTNT could find a suitable usage. uTNT source code is publicly available on Gitlab.
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