Delayed locking technique for improving real-time performance of embedded Linux by prediction of timer interrupt

Jupyung Lee, K. Park
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引用次数: 15

Abstract

In this paper, we propose a new technique, called a delayed locking technique, to improve the real-time performance of embedded Linux. The proposed technique employs the rule that entering a critical section is allowed only if the operation does not disturb the future execution of the real-time application. To execute this rule, we introduce the concepts of timer interrupt prediction and lock hold time acquisition. In addition, we designed and implemented a new high-resolution timer that is simple, yet efficient. We implemented the prototype on Linux 2.4.18. Experimental results show that the worst-case OS latency of real-time process is reduced to 23% of the original one, at the expense of slowdown of the nonreal-time process by 20%. Though we focus only on embedded Linux, our technique is useful for all kinds of real-time operating systems in which the critical section is significantly long.
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通过预测定时器中断来提高嵌入式Linux实时性能的延迟锁定技术
在本文中,我们提出了一种新的技术,称为延迟锁定技术,以提高嵌入式Linux的实时性能。所提出的技术采用的规则是,只有当操作不干扰实时应用程序的未来执行时,才允许进入临界区。为了执行这一规则,我们引入了定时器中断预测和锁保持时间获取的概念。此外,我们设计并实现了一种新的高分辨率计时器,它简单而高效。我们在Linux 2.4.18上实现了原型。实验结果表明,实时进程的最坏情况操作系统延迟降低到原来的23%,而非实时进程的延迟降低了20%。虽然我们只关注嵌入式Linux,但我们的技术对所有类型的实时操作系统都很有用,因为这些系统的临界区非常长。
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