Toward the interfacing of systemC-AMS models with hardware-emulated platforms

H. Tawfik, M. Safar, Mohamed Abdel Salam, M. El-Kharashi, A. Salem
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Abstract

Systems on chip (SoC) nowadays, have become heterogeneous in nature. They can be composed of a mix of analog and digital components. In some verification environments, SystemC models the digital components and SystemC-AMS extensions can be used to model the analog part. In an emulation environment, the digital components would be probably running on the emulator while the SystemC-AMS components would be running on the associated emulator host machine. In this paper, we propose an approach to interface those digital and analog components. This is challenging because SytemC-AMS is a timed environment with a time wheel completely decoupled from emulation time. We also propose a transaction packing technique that will minimize the communication overhead introduced due to frequent exchange of data between the components running on the emulator and the components running on the host machine. Finally, we describe a case study that illustrates the feasibility of the proposed interfacing approach.
systemC-AMS模型与硬件仿真平台的接口研究
如今的片上系统(SoC)在本质上已经变得异构化。它们可以由模拟和数字元件混合组成。在某些验证环境中,可以使用SystemC对数字组件进行建模,并使用SystemC- ams扩展对模拟部分进行建模。在仿真环境中,数字组件可能在仿真器上运行,而SystemC-AMS组件将在相关的仿真器主机上运行。在本文中,我们提出了一种连接这些数字和模拟组件的方法。这是一个挑战,因为systemc - ams是一个定时环境,时间轮与仿真时间完全解耦。我们还提出了一种事务打包技术,该技术将最小化由于在模拟器上运行的组件和在主机上运行的组件之间频繁交换数据而引入的通信开销。最后,我们描述了一个案例研究,说明了所提出的接口方法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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