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Prevention slot flow-control mechanism for low latency torus network-on-chip

机译:低延迟环形片上网络的预防时隙流控制机制

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The challenge for on-chip networks is to provide low latency communication in a very low power budget. To reduce the latency and maintain the simplicity of a mesh topology, torus topology is proposed. As torus topology has an inherent circular dependency, additional effort is needed to prevent deadlock, even if deadlock free routing algorithms are used. The authors propose a novel flow-control mechanism to address cost/performance constraints in torus networks and ensure deadlock freedom. They achieve flow-control by using a prevention mechanism and ensure deadlock freedom while requiring only a single packet buffer per input port. They simplify the router design by having a simple switch allocator that prioritises inflight packets, and a single packet buffer per input port that eliminates the need for virtual channels. They also propose a mechanism to avoid starvation that can arise because of the prioritised arbitration. Experimental validation reveals that the authors design achieves significant improvement in throughput, as compared with the traditional design, while using significantly fewer buffers.
机译:片上网络的挑战在于以非常低的功率预算提供低延迟的通信。为了减少等待时间并保持网格拓扑的简单性,提出了环形拓扑。由于环形拓扑具有固有的循环依赖性,因此即使使用了无死锁路由算法,也需要付出更多的努力来防止死锁。作者提出了一种新颖的流控制机制,以解决环形网络中的成本/性能约束并确保死锁自由。它们通过使用预防机制来实现流控制,并确保死锁自由,同时每个输入端口仅需要单个数据包缓冲区。它们具有一个简单的交换机分配器来优先处理机上数据包,并且每个输入端口只有一个数据包缓冲区,从而消除了对虚拟通道的需求,从而简化了路由器设计。他们还提出了一种避免因优先仲裁而引起的饥饿的机制。实验验证表明,与传统设计相比,作者的设计在吞吐量方面取得了显着改善,同时使用的缓冲区明显减少。

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