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Slot-Based Transmission Protocol for Real-Time NoCs - SBT-NoC

机译:实时NoC的基于时隙的传输协议-SBT-NoC

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Network on Chip (NoC) interconnects are some of the most challenging-to-analyse components of multiprocessor platforms. This is primarily due to the following two reasons: (i) NoCs contain numerous shared resources (e.g. routers, links), and (ii) the network traffic often concurrently traverses multiple of those resources. Consequently, complex contention scenarios among traffic flows might occur, some of the important implications being significant performance limitations, and difficulties when performing the real-time analysis. In this work, we propose a slot-based transmission protocol for NoCs (called SBT-NoC), and an accompanying analysis method for deriving worst-case traffic latencies. The cornerstone of SBT-NoC is a contention-less slot-based transmission, arbitrated via a protocol running on a dedicated network medium. The main advantage of SBT-NoC is that, while not requiring any sophisticated hardware support (e.g. virtual channels, a flit-level arbitration), it makes NoCs amenable to real-time analysis and guarantees bounded low latencies of high-priority time-critical flows, which is a sine qua non for the inclusion of NoCs, and multiprocessors in general, in the real-time domain. The experimental evaluation, including both synthetic workloads and a use-case of an autonomous driving vehicle application, reveals that SBT-NoC offers a plethora of configuration opportunities, which makes it applicable to a wide range of diverse traffic workloads.
机译:片上网络(NoC)互连是多处理器平台中最具挑战性的分析组件。这主要是由于以下两个原因:(i)NoC包含大量共享资源(例如,路由器,链接),并且(ii)网络流量通常同时穿越这些资源中的多个。因此,可能会在流量之间发生复杂的争用情况,其中一些重要的含义是明显的性能限制以及执行实时分析时的困难。在这项工作中,我们提出了一种用于NoC的基于时隙的传输协议(称为SBT-NoC),以及一种用于得出最坏情况的通信延迟的附带分析方法。 SBT-NoC的基石是无争用的基于时隙的传输,通过在专用网络介质上运行的协议进行仲裁。 SBT-NoC的主要优点是,尽管不需要任何复杂的硬件支持(例如虚拟通道,现场级仲裁),但它使NoC可以进行实时分析并保证了高优先级时间紧迫性的有限低延迟。流,这是在实时域中包含NoC和一般情况下的多处理器的必要条件。实验评估包括合成工作负载和自动驾驶汽车应用的用例,表明SBT-NoC提供了众多的配置机会,使其适用于多种多样的交通工作负载。

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