2007•Unpublished venueOpen access

Architectural Test Coverage for Component-Based Integration Testing

Nor Laily Hashim, Sita Ramakrishnan, Heinz W. Schmidt

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Abstract

This paper introduces a component-based integration testing method with an architectural test coverage criteria. This method is suitable for systems that lack system documentation and is applicable during regression testing and deployment phase. This paper also presents the initial results of an empirical study that validates the proposed test coverage criteria against an existing method in terms of the test coverage using a test suite precision parameter. We also describe the test models used that are based on probabilistic deterministic finite automata which are used to represent gate usage profiles at run-time and test execution. These models facilitate the representation and validation of the gate protocol, test coverage measurement and monitoring of the test suite coverage of each gate.

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What this paper is about

This paper introduces a component-based integration testing method with an architectural test coverage criteria. This method is suitable for systems that lack system documentation and is applicable during regression testing and deployment phase. This paper also presents the initial results of an empirical study that validates the proposed test coverage criteria against an existing method in terms of the test coverage using a test suite precision parameter. We also describe the test models used that are based on probabilistic deterministic finite automata which are used to represent gate usage profiles at run-time and test execution. These models facilitate the representation and validation of the gate protocol, test coverage measurement and monitoring of the test suite coverage of each gate.

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Available abstract

This paper introduces a component-based integration testing method with an architectural test coverage criteria. This method is suitable for systems that lack system documentation and is applicable during regression testing and deployment phase. This paper also presents the initial results of an empirical study that validates the proposed test coverage criteria against an existing method in terms of the test coverage using a test suite precision parameter. We also describe the test models used that are based on probabilistic deterministic finite automata which are used to represent gate usage profiles at run-time and test execution. These models facilitate the representation and validation of the gate protocol, test coverage measurement and monitoring of the test suite coverage of each gate.

Key concepts: Test suite, Computer science, Model-based testing, Regression testing, Code coverage, Integration testing, Test Management Approach, Component (thermodynamics)

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