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A priority-driven flow control mechanism for real-time traffic in multiprocessor networks

机译:一种优先级驱动的流控制机制,用于多处理器网络中的实时流量

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Real-time applications when mapped to distributed memory multiprocessors produce periodic messages with an associated deadline and priority. Real-time messages may be hard or soft deadline. Real-time extensions to wormhole routing (WR) with multiple virtual channels (VCs) and priority-based physical link arbitration and VC allocation have been proposed in the literature. With a fixed number of VCs/link, a message can face an unbounded priority inversion, rendering the global priority ineffective. In this paper, we propose a new flow control mechanism called Preemptive Pipelined Circuit Switching for Real-Time messages (PPCS-RT) to reduce the priority inversion problem. For the proposed model, with some architectural support, we present an off-line approach to compute delivery guarantees of hard deadline real-time messages. We also perform a comparison of real-time WR and PPCS-RT in terms of performance with soft deadline traffic. The overall miss ratio percentage is over 30 percent higher for WR than PPCS-RT with one VC/link at high traffic loads. Finally, we compare the architectural complexity of a PPCS-RT router and other real-time routers.
机译:实时应用程序映射到分布式内存多处理器时,会生成具有关联的截止日期和优先级的定期消息。实时消息可能是硬性规定也可能是软性规定。在文献中已经提出了具有多个虚拟通道(VC)的虫洞路由(WR)的实时扩展以及基于优先级的物理链路仲裁和VC分配。使用固定数量的VC /链接,消息可能会面临无限的优先级倒置,从而使全局优先级无效。在本文中,我们提出了一种新的流控制机制,称为实时消息抢占式流水线电路交换(PPCS-RT),以减少优先级倒置问题。对于建议的模型,在一些体系结构支持下,我们提出了一种离线方法来计算硬期限实时消息的传递保证。我们还比较了实时WR和PPCS-RT在性能和截止期限流量方面的性能。在高流量负载下,WR的总体未命中率百分比比具有一个VC /链接的PPCS-RT高出30%以上。最后,我们比较了PPCS-RT路由器和其他实时路由器的体系结构复杂性。

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