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Nested Interrupt Analysis of Low Cost and High Performance Embedded Systems Using GSPN Framework

机译:使用GSPN框架的低成本高性能嵌入式系统的嵌套中断分析

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Interrupt service routines are a key technology for embedded systems. In this paper, we introduce the standard approach for using Generalized Stochastic Petri Nets (GSPNs) as a high-level model for generating CTMC Continuous-Time Markov Chains (CTMCs) and then use Markov Reward Models (MRMs) to compute the performance for embedded systems. This framework is employed to analyze two embedded controllers with low cost and high performance, ARM7 and Cortex-M3. Cortex-M3 is designed with a tail-chaining mechanism to improve the performance of ARM7 when a nested interrupt occurs on an embedded controller. The Platform Independent Petri net Editor 2 (PIPE2) tool is used to model and evaluate the controllers in terms of power consumption and interrupt overhead performance. Using numerical results, in spite of the power consumption or interrupt overhead, Cortex-M3 performs better than ARM7.
机译:中断服务例程是嵌入式系统的一项关键技术。在本文中,我们介绍了使用通用随机Petri网(GSPN)作为生成CTMC连续时间马尔可夫链(CTMC)的高级模型的标准方法,然后使用马尔可夫奖励模型(MRM)来计算嵌入式系统的性能。系统。该框架用于分析两个低成本,高性能的嵌入式控制器ARM7和Cortex-M3。 Cortex-M3设计有尾链机制,以在嵌入式控制器上发生嵌套中断时提高ARM7的性能。独立于平台的Petri net Editor 2(PIPE2)工具用于在功耗和中断开销性能方面对控制器进行建模和评估。使用数值结果,尽管功耗或中断开销很大,Cortex-M3的性能仍优于ARM7。

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