2014•IEEE Transactions on Software EngineeringOpen access

Generating Complete Controllable Test Suites for Distributed Testing

Robert M. Hierons

Open full text 16 citations

Abstract

A test suite is m-complete for finite state machine (FSM) M if it distinguishes between M and all faulty FSMs with m states or fewer. While there are several algorithms that generate m-complete test suites, they cannot be directly used in distributed testing since there can be additional controllability and observability problems. Indeed, previous results show that there is no general method for generating an m-complete test suite for distributed testing and so the focus has been on conditions under which this is possible. This paper takes a different approach, which is to generate what we call cm-complete test suites: controllable test suites that distinguish an FSM N with no more than m states from M if this is possible in controllable testing. Thus, under the hypothesis that the system under test has no more than m states, a cm-complete test suite achieves as much as is possible given the restriction that testing should be controllable. We show how the problem of generating a cm-complete test suite can be mapped to the problem of generating an m-complete test suite for a partial FSM. Thus, standard test suite generation methods can be adapted for use in distributed testing.

Open-access reader

About this research paper

What this paper is about

A test suite is m-complete for finite state machine (FSM) M if it distinguishes between M and all faulty FSMs with m states or fewer. While there are several algorithms that generate m-complete test suites, they cannot be directly used in distributed testing since there can be additional controllability and observability problems. Indeed, previous results show that there is no general method for generating an m-complete test suite for distributed testing and so the focus has been on conditions under which this is possible. This paper takes a different approach, which is to generate what we call cm-complete test suites: controllable test suites that distinguish an FSM N with no more than m states from M if this is possible in controllable testing. Thus, under the hypothesis that the system under test has no more than m states, a cm-complete test suite achieves as much as is possible given the restriction that testing should be controllable. We show how the problem of generating a cm-complete test suite can be mapped to the problem of generating an m-complete test suite for a partial FSM. Thus, standard test suite generation methods can be adapted for use in distributed testing.

Why it matters

OpenAlex reports 16 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A test suite is m-complete for finite state machine (FSM) M if it distinguishes between M and all faulty FSMs with m states or fewer. While there are several algorithms that generate m-complete test suites, they cannot be directly used in distributed testing since there can be additional controllability and observability problems. Indeed, previous results show that there is no general method for generating an m-complete test suite for distributed testing and so the focus has been on conditions under which this is possible. This paper takes a different approach, which is to generate what we call cm-complete test suites: controllable test suites that distinguish an FSM N with no more than m states from M if this is possible in controllable testing. Thus, under the hypothesis that the system under test has no more than m states, a cm-complete test suite achieves as much as is possible given the restriction that testing should be controllable. We show how the problem of generating a cm-complete test suite can be mapped to the problem of generating an m-complete test suite for a partial FSM. Thus, standard test suite generation methods can be adapted for use in distributed testing.

Key concepts: Test suite, Computer science, Observability, Conformance testing, Model-based testing, Controllability, Test case, System under test

Related papers

Back to paper searchBrowse research topicsOriginal source
Generating Complete Controllable Test Suites for Distributed Testing — Research Paper | ScholarLens