Performance Analysis of Embedded Software Using Implicit Path Enumeration

Yau-Tsun Steven Li, S. Malik
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引用次数: 33

Abstract

Embedded computer systems are characterized by the presence of a processor running application specific software. A large number of these systems must satisfy real-time constraints. This paper examines the problem of determining the bound on the running time of a given program on a given processor. An important aspect of this problem is determining the extreme case program paths. The state of the art solution here relies on an explicit enumeration of program paths. This runs out of steam rather quickly since the number of feasible program paths is typically exponential in the size of the program. We present a solution for this problem, which considers all paths implicitly by using integer linear programming. This solution is implemented in the program cinderella which currently targets a popular embedded processor - the Intel i960. The preliminary results of using this tool are presented here.
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基于隐式路径枚举的嵌入式软件性能分析
嵌入式计算机系统的特点是存在一个运行特定应用软件的处理器。许多这样的系统必须满足实时约束。本文研究了给定程序在给定处理器上的运行时间界的确定问题。这个问题的一个重要方面是确定极端情况下的程序路径。这里最先进的解决方案依赖于程序路径的显式枚举。这种情况很快就会消失,因为可行的程序路径的数量通常是程序规模的指数。本文利用整数线性规划方法,给出了隐式考虑所有路径的解决方案。这个解决方案是在cinderella程序中实现的,该程序目前针对一种流行的嵌入式处理器- Intel i960。这里给出了使用该工具的初步结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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