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Implementing Hybrid Operating Systems with Two-Level Hardware Interrupts

机译:实现具有两级硬件中断的混合操作系统

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In this paper, we propose to implement hybrid operating systems based on two-level hardware interrupts. To separate real-time and non-real-time hardware interrupts by hardware, we show that it is easier to build up hybrid systems with better performance. We analyze and discuss the key issues for implementing a hybrid system based on this and implement a hybrid system called RTLinux-THIN (Real-Time LINUX with Two-level Hardware INterrupts) on the ARM architecture by combining ARM Linux kernel 2.6.9 and μC/OS-II. We conduct experiments on a set of real application programs including mplayer [20], Bonnie [4] and iperf [13] and compare the interrupt latency distributions for RTLinux-THIN (with and without cache locking), RTAI and Linux on a hardware platform based on Intel PXA270 processor [12]. The experimental results show that RTLinux-THIN improves real-time interrupt latencies and provides better predictability.
机译:在本文中,我们建议基于两级硬件中断实施混合操作系统。要通过硬件分离实时和非实时硬件中断,我们表明它更容易建立具有更好性能的混合系统。我们通过组合ARM Linux内核2.6.9和μC,分析并讨论实现混合系统的关键问题,并在ARM架构上实现一个名为RTLINUX-SHING(实时LINUX的实时LINUX)的混合系统/ OS-II。我们对一组真实应用程序进行实验,包括Mplayer [20],Bonnie [4]和IPerf [13],并比较硬件平台上的RTLInux-Shent(带缓存锁定),RTAI和Linux的中断延迟分布基于Intel PXA270处理器[12]。实验结果表明,RTLINUX-SHIN改善了实时中断延迟并提供了更好的可预测性。

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