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Software testing automation = testab...
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Parsa, Saeed.
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Software testing automation = testability evaluation, refactoring, test data generation and fault localization /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Software testing automation/ by Saeed Parsa.
Reminder of title:
testability evaluation, refactoring, test data generation and fault localization /
Author:
Parsa, Saeed.
Published:
Cham :Springer International Publishing : : 2023.,
Description:
xxiv, 580 p. :ill. (chiefly col.), digital ;24 cm.
[NT 15003449]:
Software Testability -- Unit testing and Test-Driven Development -- Acceptance Testing and Behavior Driven Development.
Contained By:
Springer Nature eBook
Subject:
Computer software - Testing -
Online resource:
https://doi.org/10.1007/978-3-031-22057-9
ISBN:
9783031220579
Software testing automation = testability evaluation, refactoring, test data generation and fault localization /
Parsa, Saeed.
Software testing automation
testability evaluation, refactoring, test data generation and fault localization /[electronic resource] :by Saeed Parsa. - Cham :Springer International Publishing :2023. - xxiv, 580 p. :ill. (chiefly col.), digital ;24 cm.
Software Testability -- Unit testing and Test-Driven Development -- Acceptance Testing and Behavior Driven Development.
This book is about the design and development of tools for software testing. It intends to get the reader involved in software testing rather than simply memorizing the concepts. The source codes are downloadable from the book website. The book has three parts: software testability, fault localization, and test data generation. Part I describes unit and acceptance tests and proposes a new method called testability-driven development (TsDD) in support of TDD and BDD. TsDD uses a machine learning model to measure testability before and after refactoring. The reader will learn how to develop the testability prediction model and write software tools for automatic refactoring. Part II focuses on developing tools for automatic fault localization. This part shows the reader how to use a compiler generator to instrument source code, create control flow graphs, identify prime paths, and slice the source code. On top of these tools, a software tool, Diagnoser, is offered to facilitate experimenting with and developing new fault localization algorithms. Diagnoser takes a source code and its test suite as input and reports the coverage provided by the test cases and the suspiciousness score for each statement. Part III proposes using software testing as a prominent part of the cyber-physical system software to uncover and model unknown physical behaviors and the underlying physical rules. The reader will get insights into developing software tools to generate white box test data.
ISBN: 9783031220579
Standard No.: 10.1007/978-3-031-22057-9doiSubjects--Topical Terms:
1581330
Computer software
--Testing
LC Class. No.: QA76.76.T48
Dewey Class. No.: 005.14
Software testing automation = testability evaluation, refactoring, test data generation and fault localization /
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Software Testability -- Unit testing and Test-Driven Development -- Acceptance Testing and Behavior Driven Development.
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This book is about the design and development of tools for software testing. It intends to get the reader involved in software testing rather than simply memorizing the concepts. The source codes are downloadable from the book website. The book has three parts: software testability, fault localization, and test data generation. Part I describes unit and acceptance tests and proposes a new method called testability-driven development (TsDD) in support of TDD and BDD. TsDD uses a machine learning model to measure testability before and after refactoring. The reader will learn how to develop the testability prediction model and write software tools for automatic refactoring. Part II focuses on developing tools for automatic fault localization. This part shows the reader how to use a compiler generator to instrument source code, create control flow graphs, identify prime paths, and slice the source code. On top of these tools, a software tool, Diagnoser, is offered to facilitate experimenting with and developing new fault localization algorithms. Diagnoser takes a source code and its test suite as input and reports the coverage provided by the test cases and the suspiciousness score for each statement. Part III proposes using software testing as a prominent part of the cyber-physical system software to uncover and model unknown physical behaviors and the underlying physical rules. The reader will get insights into developing software tools to generate white box test data.
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EB QA76.76.T48
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