Build automation

Software development process
Core activities
Paradigms and models
Methodologies and frameworks
Supporting disciplines
Tools
Standards and BOKs

Build automation is the process of automating the creation of a software build and the associated processes including: compiling computer source code into binary code, packaging binary code, and running automated tests.

Overview

Historically, build automation was accomplished through makefiles. Today, there are two general categories of tools:[1]

Build automation utility (like Make, Rake, MS build, Ant, Gradle etc.)
Whose primary purpose is to generate build artifacts through activities like compiling and linking source code.
Build automation servers
These are general web based tools that execute build automation utilities on a scheduled or triggered basis; a continuous integration server is a type of build automation server.

Build automation utilities

Build automation utilities allow the automation of simple, repeatable tasks. When using the tool, it will calculate how to reach the goal by executing tasks in the correct, specific order and running each task. The two ways build tools differ are task orient vs. product-oriented. Task oriented tools describe the dependency of networks in terms of a specific set task and product-oriented tools describe things in terms of the products they generate.[2]

Build automation servers

Although build servers existed long before continuous integration servers, they are general synonymous with continuous integration servers, however a build server may also be incorporated into an ARA tool or ALM tool.

Server types

Distributed build automation

Automation is achieved through the use of a compile farm for either Distributed compilation or the execution of the utility step.[3] The distributed build process must have machine intelligence to understand the source code dependencies to execute the distributed build.

Relationship to Continuous Delivery and Continuous Integration

Build automation is considered the first step in moving toward implementing a culture of Continuous Delivery and DevOps. Build automation combined with Continuous Integration, deployment, application release automation, and many other processes help move an organization forward in establishing software delivery best practices.[4]

Advantages

The advantages of build automation to software development projects include

See also

References

  1. Ceruzzi, Paul E. (2003). A history of Modern computing. The MIT Press. ISBN 978-0262532037.
  2. Clark, Mike (2004). Pragmatic Project Automation: How to Build, Deploy, and Monitor Java Apps. The Pragmatic Programmers. ISBN 978-0974514031.
  3. Enos, Joe (2013). "Automated Builds: The Key to Consistency". InfoQ (C4Media Inc.). Retrieved September 16, 2015.
  4. Bashan, Shmuel; Bellagio, David E. (2011). Work Item Management with IBM Rational ClearQuest and Jazz: A customization Guide. IBM Press. ISBN 978-0137001798.
  5. http://www.denverjug.org/meetings/files/200410_automation.pdf
Notes
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