Testing Multi-Subroutine Quantum Programs: From Unit Testing to Integration Testing

IF 6.6 2区 计算机科学 Q1 COMPUTER SCIENCE, SOFTWARE ENGINEERING ACM Transactions on Software Engineering and Methodology Pub Date : 2024-04-05 DOI:10.1145/3656339
Peixun Long, Jianjun Zhao
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Abstract

Quantum computing has emerged as a promising field with the potential to revolutionize various domains by harnessing the principles of quantum mechanics. As quantum hardware and algorithms continue to advance, developing high-quality quantum software has become crucial. However, testing quantum programs poses unique challenges due to the distinctive characteristics of quantum systems and the complexity of multi-subroutine programs. This paper addresses the specific testing requirements of multi-subroutine quantum programs. We begin by investigating critical properties by surveying existing quantum libraries and providing insights into the challenges of testing these programs. Building upon this understanding, we focus on testing criteria and techniques based on the whole testing process perspective, spanning from unit testing to integration testing. We delve into various aspects, including IO analysis, quantum relation checking, structural testing, behavior testing, integration of subroutine pairs, and test case generation. We also introduce novel testing principles and criteria to guide the testing process. We conduct comprehensive testing on typical quantum subroutines, including diverse mutants and randomized inputs, to evaluate our proposed approach. The analysis of failures provides valuable insights into the effectiveness of our testing methodology. Additionally, we present case studies on representative multi-subroutine quantum programs, demonstrating the practical application and effectiveness of our proposed testing principles and criteria.

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测试多子程序量子程序:从单元测试到集成测试
量子计算已成为一个前景广阔的领域,利用量子力学原理,它有可能给各个领域带来革命性的变化。随着量子硬件和算法的不断进步,开发高质量的量子软件变得至关重要。然而,由于量子系统的独特性和多子程序的复杂性,量子程序的测试面临着独特的挑战。本文探讨了多子程序量子程序的特定测试要求。我们首先通过调查现有的量子程序库来研究其关键特性,并深入探讨测试这些程序所面临的挑战。在此基础上,我们从单元测试到集成测试的整个测试过程角度出发,重点研究了测试标准和技术。我们深入探讨了各个方面,包括 IO 分析、量子关系检查、结构测试、行为测试、子程序对的集成以及测试用例生成。我们还引入了新的测试原则和标准来指导测试过程。我们对典型的量子子程序(包括各种突变体和随机输入)进行了全面测试,以评估我们提出的方法。对失败的分析为了解我们测试方法的有效性提供了宝贵的见解。此外,我们还对具有代表性的多子程序量子程序进行了案例研究,展示了我们提出的测试原则和标准的实际应用和有效性。
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来源期刊
ACM Transactions on Software Engineering and Methodology
ACM Transactions on Software Engineering and Methodology 工程技术-计算机:软件工程
CiteScore
6.30
自引率
4.50%
发文量
164
审稿时长
>12 weeks
期刊介绍: Designing and building a large, complex software system is a tremendous challenge. ACM Transactions on Software Engineering and Methodology (TOSEM) publishes papers on all aspects of that challenge: specification, design, development and maintenance. It covers tools and methodologies, languages, data structures, and algorithms. TOSEM also reports on successful efforts, noting practical lessons that can be scaled and transferred to other projects, and often looks at applications of innovative technologies. The tone is scholarly but readable; the content is worthy of study; the presentation is effective.
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