In this paper, we present challenges associated with monitoring and maintaining a large telecom system at Ericsson that was developed with high degree of component reuse. The system constitutes of multiple services, composed of both legacy and modern systems that are constantly changing and need to be adapted to changing business needs. The paper is based on firsthand experience from architecting, developing and maintaining such a system, pointing out current challenges and potential avenues for future research that might contribute to address them.
No abstract
Background: Software documentation often struggles to catch up with the pace of software evolution. The lack of correct, complete, and up-to-date documentation results in an increasing number of documentation defects which could introduce delays in integrating software systems. In our previous study on a bug analysis tool called MultiDimEr, we provided evidence that documentation-related defects contribute to a significant number of bug reports. Aims: First, we want to identify documentation defect types contributing to documentation defects and thereby identifying documentation debt. Secondly, we aim to find pragmatic solutions to minimize most common documentation defects to pay off the documentation debt in the long run. Method: We investigated documentation defects related to an industrial software system. First, we looked at the types of different documentation and associated bug reports. We categorized the defects according to an existing documentation defect taxonomy. Results: Based on a sample of 101 defects, we found that a majority of defects are caused by documentation defects falling into the Information Content (What) category (86). Within this category, the documentation defect types Erroneous code examples (23), Missing documentation (35), and Outdated content (19) contributed to most of the documentation defects. We propose to adapt two solutions to mitigate these types of documentation defects. Conclusions: In practice, documentation debt can easily go undetected since a large share of resources and focus is dedicated to deliver high-quality software. This study provides evidence that documentation debt can contribute to increase in maintenance costs due to the number of documentation defects. We suggest to adapt two main solutions to tackle documentation debt by implementing (i) Dynamic Documentation Generation (DDG) and/or (ii) Automated Documentation Testing (ADT), which are both based on defining a single and robust information source for documentation.
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