Engineering Secure Devices : A Practical Guide for Embedded System Architects and Developers
Book Details
Format
Paperback / Softback
ISBN-10
1718503482
ISBN-13
9781718503489
Publisher
No Starch Press,US
Imprint
No Starch Press,US
Country of Manufacture
US
Country of Publication
GB
Publication Date
Jul 23rd, 2024
Print length
288 Pages
Weight
558 grams
Dimensions
17.80 x 23.50 x 2.10 cms
Product Classification:
Computer programming / software developmentData encryption
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With the rise of the Internet of Things (IoT) and the increased connectivity of smart devices that rely on an embedded computer system at their core, the need for affordable yet effective security measures is higher than ever. This book takes you on a tour through the jungle of potential risks and protection measures, as well as the reasoning behind them, and practical implementation examples. Based on hands-on experience and recent research insights, the journey starts with the basics for a secure development process and summarizes the cryptographic essentials relevant for practical security engineering. Next you'll explore embedded security building blocks like random number generators, implementations options for cryptographic algorithms, secure data storage, unique device identities, and protected communication channels. Later chapters cover advanced device concepts like secure boot and firmware update processes, access control management, and system monitoring. Several case studies throughout will bridge the gap between theory and real-world practices, demonstrating the advantages - or disadvantages - of different implementations.
With the rise of the Internet of Things (IoT) and the increased connectivity of smart devices that rely on an embedded computer system at their core, the need for affordable yet effective security measures is higher than ever. This book takes you on a tour through the jungle of potential risks and protection measures, as well as the reasoning behind them, and practical implementation examples. Based on hands-on experience and recent research insights, the journey starts with the basics for a secure development process and summarizes the cryptographic essentials relevant for practical security engineering. Next you''ll explore embedded security building blocks like random number generators, implementations options for cryptographic algorithms, secure data storage, unique device identities, and protected communication channels. Later chapters cover advanced device concepts like secure boot and firmware update processes, access control management, and system monitoring. Several case studies throughout will bridge the gap between theory and real-world practices, demonstrating the advantages - or disadvantages - of different implementations.
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