Communication Architecture Design and Case Study of Embedded Partition Real-Time Operating System

Penghui Ren
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Abstract

Abstract With the continuous development of integrated modular avionics system, a large number of applications have higher and higher requirements for the operating system. However, the kernel and application process of traditional embedded real-time operating system often run at the same privilege level. A wrong operation may cause the normal operation of the whole kernel or other processes, resulting in system crash, Embedded real-time partition operating system is widely used because of its good protection ability of time partition and space partition. Because partitions are isolated, in order to carry out data communication between partitions, it is necessary to adopt the way of inter partition communication for information transmission. This paper introduces the architecture of partitioned embedded operating system, discusses the communication principle and design process between partitioned modules, and focuses on the communication mechanism of sampling port and queue port. In addition, a communication mechanism based on virtual port is used to solve the problem that the port bound by the application process in a partition cannot communicate with the communication equipment between the partition module and other partition application processes. Finally, the design process of socket communication in partitioned operating system and the sending and receiving process of data under partitioned operating system are proposed.
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嵌入式分区实时操作系统的通信体系结构设计与实例研究
随着集成模块化航空电子系统的不断发展,大量的应用对操作系统提出了越来越高的要求。然而,传统嵌入式实时操作系统的内核进程和应用进程往往在同一权限级别上运行。一个错误的操作可能会导致整个内核或其他进程的正常运行,导致系统崩溃,嵌入式实时分区操作系统因其良好的时间分区和空间分区保护能力而被广泛应用。由于分区是隔离的,为了在分区之间进行数据通信,需要采用分区间通信的方式进行信息传输。介绍了分区嵌入式操作系统的体系结构,讨论了分区模块之间的通信原理和设计过程,重点讨论了采样端口和队列端口的通信机制。此外,还采用了基于虚拟端口的通信机制,解决了分区内应用进程绑定的端口无法与分区模块与其他分区应用进程之间的通信设备通信的问题。最后,给出了分区操作系统下套接字通信的设计过程和分区操作系统下数据的收发过程。
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