Finding root causes of floating point error

Author:

Sanchez-Stern Alex1,Panchekha Pavel2,Lerner Sorin1,Tatlock Zachary2

Affiliation:

1. University of California at San Diego, USA

2. University of Washington, USA

Abstract

Floating-point arithmetic plays a central role in science, engineering, and finance by enabling developers to approximate real arithmetic. To address numerical issues in large floating-point applications, developers must identify root causes, which is difficult because floating-point errors are generally non-local, non-compositional, and non-uniform. This paper presents Herbgrind, a tool to help developers identify and address root causes in numerical code written in low-level languages like C/C++ and Fortran. Herbgrind dynamically tracks dependencies between operations and program outputs to avoid false positives and abstracts erroneous computations to simplified program fragments whose improvement can reduce output error. We perform several case studies applying Herbgrind to large, expert-crafted numerical programs and show that it scales to applications spanning hundreds of thousands of lines, correctly handling the low-level details of modern floating point hardware and mathematical libraries and tracking error across function boundaries and through the heap.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design,Software

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1. Implementation and Synthesis of Math Library Functions;Proceedings of the ACM on Programming Languages;2024-01-05

2. Stress Testing Control Loops in Cyber-physical Systems;ACM Transactions on Software Engineering and Methodology;2023-12-21

3. A dynamic program analysis-based method for floating-point program precision loss detection;International Conference on Computer Network Security and Software Engineering (CNSSE 2023);2023-06-26

4. Numerical Robustness Evaluation of Floating-Point Closed-Loop Control Based on Interval Analysis;Electronics;2023-01-12

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