论文标题

UPR:通过利用信道依赖图兼容性来利用无僵硬的动态网络重新配置

UPR: Deadlock-Free Dynamic Network Reconfiguration by Exploiting Channel Dependency Graph Compatibility

论文作者

Crespo, Juan-José, Sánchez, José L., Alfaro-Cortés, Francisco J., Flich, José, Duato, José

论文摘要

通常从路由算法限制和资源保留的角度研究了无僵硬的动态网络重新配置过程。从一个路由功能到另一个路由功能的过渡过程所产生的动态性质通常是通过以静态预定义的方式限制资源使用来管理的,这通常会限制受支持的路由算法和/或不活动的链接模式,或者需要其他资源(例如虚拟通道)。通过探索其关联的通道依赖图(CDG)来利用路由功能之间的兼容性可以从重新配置过程的动态性质中获得巨大好处。在本文中,我们提出了一个新的动态重构过程,称为上游渐进式重新配置(UPR)。我们的算法逐渐按照频道执行依赖关系/删除,并依靠CDG提供的信息进行重新配置过程。这使我们有机会预见兼容的方案,其中两个路由功能共存,从而减少了资源排水的量以及数据包注入停止。

Deadlock-free dynamic network reconfiguration process is usually studied from the routing algorithm restrictions and resource reservation perspective. The dynamic nature yielded by the transition process from one routing function to another is often managed by restricting resource usage in a static predefined manner, which often limits the supported routing algorithms and/or inactive link patterns, or either requires additional resources such as virtual channels. Exploiting compatibility between routing functions by exploring their associated Channel Dependency Graphs (CDG) can take a great benefit from the dynamic nature of the reconfiguration process. In this paper, we propose a new dynamic reconfiguration process called Upstream Progressive Reconfiguration (UPR). Our algorithm progressively performs dependency addition/removal in a per channel basis relying on the information provided by the CDG while the reconfiguration process takes place. This gives us the opportunity to foresee compatible scenarios where both routing functions coexist, reducing the amount of resource drainage as well as packet injection halting.

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