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A Bidirectional NoC (BiNoC) Architecture With Dynamic Self-Reconfigurable Channel

机译:具有动态自可重新配置通道的双向NoC(BiNoC)架构

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A bidirectional channel network-on-chip (BiNoC) architecture is proposed to enhance the performance of on-chip communication. In a BiNoC, each communication channel allows to be dynamically self-reconfigured to transmit flits in either direction. This added flexibility promises better bandwidth utilization, lower packet delivery latency, and higher packet consumption rate. Novel on-chip router architecture is developed to support dynamic self-reconfiguration of the bidirectional traffic flow. This area-efficient BiNoC router delivers better performance and requires smaller buffer size than that of a conventional network-on-chip (NoC). The flow direction at each channel is controlled by a channel direction control (CDC) algorithm. Implemented with a pair of finite state machines, this CDC algorithm is shown to be high performance, free of deadlock, and free of starvation. Extensive cycle-accurate simulations using synthetic and real-world traffic patterns have been conducted to evaluate the performance of the BiNoC. These results exhibit consistent and significant performance advantage over conventional NoC equipped with hard-wired unidirectional channels.
机译:提出了一种双向通道片上网络(BiNoC)架构,以增强片上通信的性能。在BiNoC中,每个通信通道都可以动态地自我重新配置,以在任一方向上传输碎片。这种增加的灵活性保证了更好的带宽利用率,更低的数据包传递延迟和更高的数据包消耗率。开发了新颖的片上路由器体系结构以支持双向流量的动态自重配置。与传统的片上网络(NoC)相比,这种面积高效的BiNoC路由器可提供更好的性能,并需要较小的缓冲区大小。每个通道的流向由通道方向控制(CDC)算法控制。通过一对有限状态机实施,该CDC算法显示出高性能,无死锁和无饥饿状态。已经进行了使用合成和实际流量模式的广泛周期精确仿真,以评估BiNoC的性能。与配备硬连线单向通道的常规NoC相比,这些结果显示出一致且显着的性能优势。

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