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Feature - NoC emulation: a tool and design flow for MPSoC

机译:功能-NoC仿真:MPSoC的工具和设计流程

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Current systems-on-chip (SoC) execute applications that demand extensive parallel processing; thus, the amount of processors, memories and application-specific signal processing cores is rapidly increasing. In these new multi-processor SoCs, (MPSoCs) one of the most critical elements regarding overall efficiency is on-chip interconnections. Network-on-chip (NoC) provides a structured way of realizing interconnections on silicon, and obviate the limitations of bus-based solutions. NoCs can have regular or ad hoc topologies and can be tuned by a large set of parameters. Simulation and functional validation are essential to assess the correctness and performance of MPSoC architectures. We present a flexible hardware-software emulation framework implemented on a FPGA that is specially designed to suitably explore, evaluate and compare a wide range of NoC solutions with a very limited effort. Our experimental results show a speed-up of four orders of magnitude with respect to cycle-accurate HDL simulation, while retaining cycle accuracy and flexibility of software simulators. Finally, we propose a validation flow for MPSoCs based on our flexible NoC emulation framework, which allows designers to explore and optimize a range of solutions, as well as quickly characterize performance figures and identify possible limitations in their on-chip interconnection architectures.
机译:当前的片上系统(SoC)执行需要大量并行处理的应用。因此,处理器,存储器和专用信号处理内核的数量正在迅速增加。在这些新的多处理器SoC(MPSoC)中,关于整体效率的最关键要素之一是片上互连。片上网络(NoC)提供了一种在硅上实现互连的结构化方法,并且消除了基于总线的解决方案的局限性。 NoC可以具有常规或临时拓扑,可以通过大量参数进行调整。仿真和功能验证对于评估MPSoC架构的正确性和性能至关重要。我们提供了一种在FPGA上实现的灵活的硬件-软件仿真框架,该框架经过专门设计,以非常有限的努力就可以适当地探索,评估和比较各种NoC解决方案。我们的实验结果表明,相对于周期精确的HDL仿真,速度提高了四个数量级,同时保持了周期精度和软件模拟器的灵活性。最后,我们基于灵活的NoC仿真框架提出了针对MPSoC的验证流程,该流程使设计人员能够探索和优化各种解决方案,并快速确定性能指标并确定其片上互连架构中可能存在的局限性。

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