DocumentCode
1567362
Title
A revisit of adaptive random testing by restriction
Author
Chan, Kwok Ping ; Chen, Tsong Yueh ; Kuo, Fei-Ching ; Towey, Dave
Author_Institution
Dept. of Comput. Sci. & Inf. Syst., Hong Kong Univ.
fYear
2004
Firstpage
78
Abstract
Adaptive random testing is a black box testing method based on the intuition that random testing failure-finding efficiency can be improved upon, in certain situations, by ensuring a more widespread and evenly distributed spread of test cases in the input domain. One way of achieving this distribution is through the use of exclusion zones and restriction, resulting in a method called restricted random testing (RRT). Recent investigations into the RRT method have revealed several interesting and significant insights. A method of reducing the computational overheads of testing methods by partitioning an input domain, and applying the method to only one of the subdomains, mapping the test cases to other subdomains, has recently been introduced. This method, called mirroring, in addition to alleviating computational costs, has some properties which fit nicely with the insights into RRT, offering solutions to some possible shortcomings of RRT. In this paper we discuss the RRT method and additional insights; we explain mirroring; and we detail applications of mirroring to RRT. The mirror RRT method proves to be a very attractive variation of RRT
Keywords
program testing; random processes; adaptive random testing; black box testing method; computational costs; exclusion zones; failure-finding efficiency; mirroring; restricted random testing; restriction; software; Application software; Computational efficiency; Computer science; Information systems; Information technology; Mirrors; Software quality; Software testing; Subspace constraints; System testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Software and Applications Conference, 2004. COMPSAC 2004. Proceedings of the 28th Annual International
Conference_Location
Hong Kong
ISSN
0730-3157
Print_ISBN
0-7695-2209-2
Type
conf
DOI
10.1109/CMPSAC.2004.1342809
Filename
1342809
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