包调度的形式化抽象

IF 2.2 Q2 COMPUTER SCIENCE, SOFTWARE ENGINEERING
Anshuman Mohan, Yunhe Liu, Nate Foster, Tobias Kappé, Dexter Kozen
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引用次数: 0

摘要

软件定义网络(SDN)的早期编程模型侧重于控制全网转发路径的基本功能,但最近的工作考虑了影响性能的更丰富的功能,如数据包调度和排队。特别是由Sivaraman等人提出的PIFO树,为可编程分组调度提供了灵活高效的原语。先前的研究表明,PIFO树可以表达广泛的实用算法,包括严格优先级,加权公平排队和分层方案。然而,PIFO树的语义特性还没有被很好地理解。本文从编程语言的角度研究PIFO树。我们在一个操作模型中形式化了PIFO树的语法和语义,该模型将运行在树上的调度策略与树的拓扑解耦。在此形式化的基础上,我们开发了编译算法,允许使用具有不同拓扑的树来实现针对一种拓扑编写的PIFO树的行为。这样的编译器可用于优化PIFO树的实现,或者在具有固定拓扑结构的目标上实现逻辑PIFO树。为了支持实验,我们开发了一个PIFO树的软件模拟器,并给出了案例研究,说明了它在标准和自定义算法上的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formal Abstractions for Packet Scheduling
Early programming models for software-defined networking (SDN) focused on basic features for controlling network-wide forwarding paths, but more recent work has considered richer features, such as packet scheduling and queueing, that affect performance. In particular, PIFO trees , proposed by Sivaraman et al., offer a flexible and efficient primitive for programmable packet scheduling. Prior work has shown that PIFO trees can express a wide range of practical algorithms including strict priority, weighted fair queueing, and hierarchical schemes. However, the semantic properties of PIFO trees are not well understood. This paper studies PIFO trees from a programming language perspective. We formalize the syntax and semantics of PIFO trees in an operational model that decouples the scheduling policy running on a tree from the topology of the tree. Building on this formalization, we develop compilation algorithms that allow the behavior of a PIFO tree written against one topology to be realized using a tree with a different topology. Such a compiler could be used to optimize an implementation of PIFO trees, or realize a logical PIFO tree on a target with a fixed topology baked into the hardware. To support experimentation, we develop a software simulator for PIFO trees, and we present case studies illustrating its behavior on standard and custom algorithms.
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来源期刊
Proceedings of the ACM on Programming Languages
Proceedings of the ACM on Programming Languages Engineering-Safety, Risk, Reliability and Quality
CiteScore
5.20
自引率
22.20%
发文量
192
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