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10.1109/ICST.2009.29guideproceedingsArticle/Chapter ViewAbstractPublication PagesConference Proceedingsacm-pubtype
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Generating Feasible Transition Paths for Testing from an Extended Finite State Machine (EFSM)

Published: 01 April 2009 Publication History

Abstract

The problem of testing from an extended finite state machine (EFSM) can be expressed in terms of finding suitable paths through the EFSM and then deriving test data to follow the paths. A chosen path may be infeasible and so it is desirable to have methods that can direct the search for appropriate paths through the EFSM towards those that are likely to be feasible. However, generating feasible transition paths (FTPs) for model based testing is a challenging task and is an open research problem. This paper introduces a novel fitness metric that analyzes data flow dependence among the actions and conditions of the transitions of a path in order to estimate its feasibility. The proposed fitness metric is evaluated by being used in a genetic algorithm to guide the search for FTPs.

Cited By

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  • (2021)Generating Feasible Paths under C-ZOT Coverage from EFSMInternational Conference on Frontiers of Electronics, Information and Computation Technologies10.1145/3474198.3478214(1-8)Online publication date: 21-May-2021
  • (2020)Test Generation Tool for Modified Condition/Decision CoverageProceedings of the 13th International Conference on Intelligent Systems: Theories and Applications10.1145/3419604.3419628(1-6)Online publication date: 23-Sep-2020
  • (2019)Testing extended finite state machines using NSGA-IIIProceedings of the 10th ACM SIGSOFT International Workshop on Automating TEST Case Design, Selection, and Evaluation10.1145/3340433.3342820(1-7)Online publication date: 26-Aug-2019
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Information

Published In

cover image Guide Proceedings
ICST '09: Proceedings of the 2009 International Conference on Software Testing Verification and Validation
April 2009
457 pages
ISBN:9780769536019

Publisher

IEEE Computer Society

United States

Publication History

Published: 01 April 2009

Author Tags

  1. Automatic Test Sequence Generation
  2. Extended Finite State Machine (EFSM)
  3. Feasible transition Paths (FTPs) Generation
  4. Genetic Algorithms (GAs)

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Cited By

View all
  • (2021)Generating Feasible Paths under C-ZOT Coverage from EFSMInternational Conference on Frontiers of Electronics, Information and Computation Technologies10.1145/3474198.3478214(1-8)Online publication date: 21-May-2021
  • (2020)Test Generation Tool for Modified Condition/Decision CoverageProceedings of the 13th International Conference on Intelligent Systems: Theories and Applications10.1145/3419604.3419628(1-6)Online publication date: 23-Sep-2020
  • (2019)Testing extended finite state machines using NSGA-IIIProceedings of the 10th ACM SIGSOFT International Workshop on Automating TEST Case Design, Selection, and Evaluation10.1145/3340433.3342820(1-7)Online publication date: 26-Aug-2019
  • (2019)Learning and statistical model checking of system response timesSoftware Quality Journal10.1007/s11219-018-9432-827:2(757-795)Online publication date: 1-Jun-2019
  • (2019)Property-based testing of web services by deriving properties from business-rule modelsSoftware and Systems Modeling (SoSyM)10.1007/s10270-017-0647-018:2(889-911)Online publication date: 1-Apr-2019
  • (2019)Toward testing from finite state machines with symbolic inputs and outputsSoftware and Systems Modeling (SoSyM)10.1007/s10270-017-0613-x18:2(825-835)Online publication date: 1-Apr-2019
  • (2019)Experimental evaluation of a novel equivalence class partition testing strategySoftware and Systems Modeling (SoSyM)10.1007/s10270-017-0595-818:1(423-443)Online publication date: 1-Feb-2019
  • (2018)WESSBASSoftware and Systems Modeling (SoSyM)10.1007/s10270-016-0566-517:2(443-477)Online publication date: 1-May-2018
  • (2017)Complete model-based equivalence class testing for nondeterministic systemsFormal Aspects of Computing10.1007/s00165-016-0402-229:2(335-364)Online publication date: 1-Mar-2017
  • (2016)Towards integrating statistical model checking into property-based testingProceedings of the 14th ACM-IEEE International Conference on Formal Methods and Models for System Design10.5555/3343414.3343424(71-76)Online publication date: 18-Nov-2016
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