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A Linux kernel with fixed interrupt latency for embedded real-time system

机译:具有固定中断延迟的Linux内核,用于嵌入式实时系统

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This paper proposes a Linux 2.6./spl times/ hard real-time system on ARM MMU-less platform, and compares the performance of the new system to the original one. Traditionally, Linux is designed mainly for desktop and server applications, it focuses on the throughput and overall workloads. Therefore, it hardly satisfies the real-time embedded systems' requirements. In order to improve the real-time performance of the Linux system, this paper realizes the priority inheritance protocol in the kernel source, and rewrites the interruption service routings by a new method: kernel thread. The experiments show that this new scheme tremendously decreases the interrupt latency and the time needed to enter the critical sections for applications, which is a quite important feature required by real-time system.
机译:本文提出了一种在无ARM MMU的平台上Linux 2.6./spl times /硬实时系统,并将新系统的性能与原始系统进行了比较。传统上,Linux主要设计用于桌面和服务器应用程序,它专注于吞吐量和整体工作负载。因此,它几乎不能满足实时嵌入式系统的要求。为了提高Linux系统的实时性能,本文在内核源代码中实现了优先级继承协议,并通过一种新的方法:内核线程重写了中断服务的路由。实验表明,这种新方案极大地减少了中断等待时间和进入应用程序关键部分所需的时间,这是实时系统所需的相当重要的功能。

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