Application-aware deadlock-free oblivious routing

M. Kinsy, Myong Hyon Cho, Tina Wen, G. Suh, Marten van Dijk, S. Devadas
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引用次数: 85

Abstract

Conventional oblivious routing algorithms are either not application-aware or assume that each flow has its own private channel to ensure deadlock avoidance. We present a framework for application-aware routing that assures deadlock-freedom under one or more channels by forcing routes to conform to an acyclic channel dependence graph. Arbitrary minimal routes can be made deadlock-free through appropriate static channel allocation when two or more channels are available. Given bandwidth estimates for flows, we present a mixed integer-linear programming (MILP) approach and a heuristic approach for producing deadlock-free routes that minimize maximum channel load. The heuristic algorithm is calibrated using the MILP algorithm and evaluated on a number of benchmarks through detailed network simulation. Our framework can be used to produce application-aware routes that target the minimization of latency, number of flows through a link, bandwidth, or any combination thereof.
应用程序感知的无死锁遗忘路由
传统的无关路由算法要么不能感知应用程序,要么假定每个流都有自己的专用通道以确保避免死锁。我们提出了一个应用感知路由的框架,通过强制路由符合无循环通道依赖图来确保一个或多个通道下的死锁自由。当有两个或多个通道可用时,可以通过适当的静态通道分配使任意最小路由无死锁。给定流量的带宽估计,我们提出了一种混合整数线性规划(MILP)方法和一种启发式方法,用于产生无死锁的路由,使最大通道负载最小化。启发式算法使用MILP算法进行校准,并通过详细的网络模拟在许多基准上进行评估。我们的框架可用于生成应用程序感知路由,目标是最小化延迟、通过链路的流量数量、带宽或它们的任何组合。
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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