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Asymmetric hardware and software integration design based on multi-core processor

机译:基于多核处理器的非对称硬件和软件集成设计

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摘要

For the scene of high real-time requirement in power system, a multi-core asymmetric software and hardware architecture is designed. In the hardware, the CCI architecture is removed to ensure a high degree of decoupling between asymmetric architectures. At the same time, a dedicated RIPC is used to interlock the shared resources between CPU. The CPU software can complete the shared resources application, idle query, interrupt notification and other operations by simply reading and writing RIPC. In the software, Linux and baremetal run at the same time to meet the requirements of real-time and non real-time collaborative processing ability of application scenarios. A multi-core management framework supporting remoteproc API is customized and developed, and the communication between Linux and baremetal is realized through rpmsg protocol.
机译:对于电力系统的高实时要求的场景,设计了一种多核不对称软件和硬件架构。 在硬件中,CCI架构被删除以确保不对称架构之间的高耦合。 同时,专用RIPC用于互连CPU之间的共享资源。 通过简单地阅读和编写RIPC,CPU软件可以完成共享资源应用程序,空闲查询,中断通知和其他操作。 在软件中,Linux和aremetal同时运行,以满足实时和非实时协同处理的应用程序方案的要求。 支持RemoteProc API的多核管理框架是自定义和开发的,并且通过RPMSG协议实现了Linux和Baremetal之间的通信。

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