同步程序的静态数据流分析

J. Brandt, K. Schneider
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引用次数: 9

摘要

同步编程语言非常适合安全关键型实时嵌入式系统的设计。然而,编译器和综合程序受到同步编程范式的挑战,并且必须解决诸如因果关系和精神分裂问题之类的附加问题。解决这些基本编译问题的算法已经较为成熟,但代码优化方面还存在不足。通常,代码优化留给后端工具,如顺序软件的编译器或硬件合成工具。本文开发了一个静态分析程序,将代码优化技术引入同步语言。我们开发了专门的代码优化程序,可以应用于各种同步语言。与用于顺序软件编译的代码优化技术类似,我们的过程也是基于适合同步编程模型的静态数据流分析。
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Static data-flow analysis of synchronous programs
Synchronous programming languages are well-suited for the design of safety-critical real-time embedded systems. However, the compilers and synthesis procedures are challenged by the synchronous programming paradigm and have to solve additional problems like causality and schizophrenia problems. Algorithms to solve these basic compilation problems have already become mature, but code optimization still lacks behind. Often, code optimization is left to the back-end tools like compilers for sequential software or hardware synthesis tools. In this paper, we develop a static analysis procedure to introduce code optimization techniques to synchronous languages. We develop specialized code optimization procedures that can be applied to all kinds of synchronous languages. Similar to the code optimization techniques used for the compilation of sequential software, our procedures are also based on a static data-flow analysis that is adapted to the synchronous programing model.
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