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Mastering Go

Mastering Go

By : Mihalis Tsoukalos
4.8 (27)
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Mastering Go

Mastering Go

4.8 (27)
By: Mihalis Tsoukalos

Overview of this book

Mastering Go, now in its fourth edition, remains the go-to resource for real-world Go development. This comprehensive guide delves into advanced Go concepts, including RESTful servers, and Go memory management. This edition brings new chapters on Go Generics and fuzzy Testing, and an enriched exploration of efficiency and performance. As you work your way through the chapters, you will gain confidence and a deep understanding of advanced Go topics, including concurrency and the operation of the Garbage Collector, using Go with Docker, writing powerful command-line utilities, working with JavaScript Object Notation (JSON) data, and interacting with databases. You will be engaged in real-world exercises, build network servers, and develop robust command-line utilities. With in-depth chapters on RESTful services, the WebSocket protocol, and Go internals, you are going to master Go's nuances, optimization, and observability. You will also elevate your skills in efficiency, performance, and advanced testing. With the help of Mastering Go, you will become an expert Go programmer by building Go systems and implementing advanced Go techniques in your projects.
Table of Contents (19 chapters)
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16
Other Books You May Enjoy
17
Index

Handling UNIX signals

UNIX signals offer a very handy way of interacting asynchronously with applications and server processes. UNIX signal handling in Go requires the use of channels that are used exclusively for this task. The presented program handles SIGINT (which is called syscall.SIGINT in Go) and SIGINFO separately and uses a default case in a switch block for handling the remaining signals. The implementation of that switch block allows you to differentiate between the various signals according to your needs.

There exists a dedicated channel that receives all signals, as defined by the signal.Notify() function. Go channels can have a capacity—the capacity of this particular channel is 1 in order to be able to receive and keep one signal at a time. This makes perfect sense as a signal can terminate a program and there is no need to try to handle another signal at the same time. There is usually an anonymous function that is executed as a goroutine and performs the...

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