- Define Robustness In Software Engineering
- Robustness Testing In Software Engineering
- Reliability In Software Engineering
Robustness has been defined by the Food and Drug Administration as 'the degree to which a software system or component can function correctly in the presence of invalid inputs or stressful. In computer science, robustness is the ability of a computer system to cope with errors during execution and cope with erroneous input. Sisoftware sandra lite free download. Robustness can encompass many areas of computer science, such as robust programming, robust machine learning, and Robust Security Network.
Robustness testing is any quality assurance methodology focused on testing the robustness of software. Robustness testing has also been used to describe the process of verifying the robustness (i.e. correctness) of test cases in a test process.
ANSI and IEEE have defined robustness as the degree to which a system or component can function correctly in the presence of invalid inputs or stressful environmental conditions.[1]
![Program robustness in software engineering Program robustness in software engineering](/uploads/1/2/4/9/124906164/415582698.jpg)
The term 'robustness testing' was first used by the Ballista project at Carnegie Mellon University. They performed testing of operating systems for dependability based on the data types of POSIX API, producing complete system crashes in some systems. [2] The term was also used by OUSPG and VTT researchers taking part in the PROTOS project in the context of software security testing.[3] Eventually the term Fuzzing (which security people use for mostly non-intelligent and random robustness testing) extended to also cover model-based robustness testing.
Define Robustness In Software Engineering
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References[edit]
Robustness Testing In Software Engineering
- ^'Standard Glossary of Software Engineering Terminology (ANSI)'. The Institute of Electrical and Electronics Engineers Inc. 1991.
- ^Kropp, Koopman, Siewiorek. 1998. Automated Robustness Testing of Off-the_Shelf Software Components. Proceedings of FTCS'98. http://www.ece.cmu.edu/~koopman/ballista/ftcs98/ftcs98.pdf
- ^Kaksonen, Rauli. 2001. A Functional Method for Assessing Protocol Implementation Security (Licentiate thesis). Espoo. Technical Research Centre of Finland, VTT Publications 448. 128 p. + app. 15 p. ISBN951-38-5873-1 (soft back ed.) ISBN951-38-5874-X (on-line ed.). https://www.ee.oulu.fi/research/ouspg/PROTOS_VTT2001-functional
Reliability In Software Engineering
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