Concurrency Control in Distributed System Using Mutual Exclusion

Nonfiction, Science & Nature, Technology, Telecommunications, Computers, Programming
Cover of the book Concurrency Control in Distributed System Using Mutual Exclusion by Sukhendu Kanrar, Nabendu Chaki, Samiran Chattopadhyay, Springer Singapore
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Author: Sukhendu Kanrar, Nabendu Chaki, Samiran Chattopadhyay ISBN: 9789811055591
Publisher: Springer Singapore Publication: August 4, 2017
Imprint: Springer Language: English
Author: Sukhendu Kanrar, Nabendu Chaki, Samiran Chattopadhyay
ISBN: 9789811055591
Publisher: Springer Singapore
Publication: August 4, 2017
Imprint: Springer
Language: English

The book presents various state-of-the-art approaches for process synchronization in a distributed environment. The range of algorithms discussed in the book starts from token based mutual exclusion algorithms that work on tree based topology. Then there are interesting solutions for more flexible logical topology like a directed graph, with or without cycle. In a completely different approach, one of the chapters presents two recent voting-based DME algorithms. All DME algorithms presented in the book aim to ensure fairness in terms of first come first serve (FCFS) order among equal priority processes. At the same time, the solutions consider the priority of the requesting processes and allocate resource for the earliest request when no such request from a higher priority process is pending.

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The book presents various state-of-the-art approaches for process synchronization in a distributed environment. The range of algorithms discussed in the book starts from token based mutual exclusion algorithms that work on tree based topology. Then there are interesting solutions for more flexible logical topology like a directed graph, with or without cycle. In a completely different approach, one of the chapters presents two recent voting-based DME algorithms. All DME algorithms presented in the book aim to ensure fairness in terms of first come first serve (FCFS) order among equal priority processes. At the same time, the solutions consider the priority of the requesting processes and allocate resource for the earliest request when no such request from a higher priority process is pending.

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