程序间程序转换提高数值精度

Nasrine Damouche, M. Martel, Alexandre Chapoutot
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引用次数: 6

摘要

在数值模拟、嵌入式软件等广泛的领域中,浮点数被用来近似精确的实数。然而,浮点数是实数的有限近似值。在实践中,这种近似可能会引入舍入误差,从而导致灾难性的结果。为了解决这个问题,我们开发了一种工具,它可以部分地纠正这些舍入误差,从而通过以源到源的方式自动转换程序来提高计算的数值精度。我们的转换依赖于抽象解释的静态分析,并对带有赋值、条件和循环的代码片段进行操作。在以前的工作中,我们专注于程序的过程内转换,在本文中,我们介绍了过程间转换以提高准确性。
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Numerical Accuracy Improvement by Interprocedural Program Transformation
Floating-point numbers are used to approximate the exact real numbers in a wide range of domains like numerical simulations, embedded software, etc. However, floating-point numbers are a finite approximation of real numbers. In practice, this approximation may introduce round-off errors and this can lead to catastrophic results. To cope with this issue, we have developed a tool which corrects partly these round-off errors and which consequently improves the numerical accuracy of computations by automatically transforming programs in a source to source manner. Our transformation, relies on static analysis by abstract interpretation and operates on pieces of code with assignments, conditionals and loops. In former work, we have focused on the intraprocedural transformation of programs and, in this article, we introduce the interprocedural transformation to improve accuracy.
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