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Pro Cryptography and Cryptanalysis

Creating Advanced Algorithms with C# and .NET

Paperback Engels 2020 9781484263662
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Utilize this comprehensive, yet practical, overview of modern cryptography and cryptanalysis to improve performance. Learn by example with source code in C# and .NET, and come away with an understanding of public key encryption systems and challenging cryptography mechanisms such as lattice-based cryptography.Modern cryptography is the lifeboat of a secure infrastructure. From global economies and governments, to meeting everyday consumer needs, cryptography is ubiquitous, and used in search, design, data, artificial intelligence, and other fields of information technology and communications. Its complexity can lead to misconfiguration, misuse, and misconceptions. For developers who are involved in designing and implementing cryptographic operations in their applications, understanding the implications of the algorithms, modes, and other parameters is vital.

Pro Cryptography and Cryptanalysis is for the reader who has a professional need or personal interest in developing cryptography algorithms and security schemes using C# and .NET. You will learn how to implement advanced cryptographic algorithms (such as Elliptic Curve Cryptography Algorithms, Lattice-based Cryptography, Searchable Encryption, Homomorphic Encryption), and come away with a solid understanding of the internal cryptographic mechanisms, and  common ways in which the algorithms are correctly implemented in real practice. With the new era of quantum computing, this book serves as a stepping stone to quantum cryptography, finding useful connections between current cryptographic concepts and quantum related topics.

What You Will Learn

Know when to enlist cryptography, and how it is often misunderstood and misusedExplore modern cryptography algorithms, practices, and propertiesDesign and implement usable, advanced cryptographic methods and mechanismsUnderstand how new features in C# and .NET impact the future of cryptographic algorithmsUse the cryptographic model, services, and System.Security.Cryptography namespace in .NETModernize your cryptanalyst mindset by exploiting the performance of C# and .NET with its weak cryptographic algorithmsPractice the basics of public key cryptography, including ECDSA signaturesDiscover how most algorithms can be broken

Who This Book Is For

Information security experts, cryptologists, software engineers, developers, data scientists, and academia who have experience with C#, .NET, as well as IDEs such as Visual Studio, VS Code, or Mono. Because this book is for an intermediate to advanced audience, readers should also possess an understanding of cryptography (symmetric and asymmetric) concepts.

Specificaties

ISBN13:9781484263662
Taal:Engels
Bindwijze:paperback
Uitgever:Apress

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Inhoudsopgave

<p>Part I – Foundational Topics.-&nbsp;Chapter 1: Cryptography Fundamentals.-&nbsp;Chapter 2: Mathematical Background and Its Applicability.- Chapter 3: Large Integer Arithmetic.- Chapter 4: Floating-Point Arithmetic.- Chapter 5: What's New in C# 8.0.- Chapter 6: Secure Coding Guidelines.- Chapter 7: .NET Cryptography Services.- Chapter 8: Overview of&nbsp;System.Cryptography Namespace.-&nbsp;Chapter 9: Cryptography Libraries in C# and .NET.-&nbsp;Part II: Cryptography.-&nbsp;&nbsp;Chapter 10: Elliptic-Curve Cryptography.- Chapter 11: Lattice-based Cryptography.- Chapter 12: Searchable Encryption.- Chapter 13: Homomorphic Encryption.- Chapter 14: (Ring) Learning with Errors Cryptography.- Chapter 15: Chaos-based Cryptography.- Chapter 16: Big Data Cryptography.- Chapter 17: Cloud Computing Cryptography.-&nbsp;Part III: Pro Cryptanalysis.- Chapter 18: Getting Started with Cryptanalysis.- Chapter 19: Cryptanalysis Attacks and Techniques.- Chapter 20: Linear and Differential Cryptanalysis.- Chapter 21: Integral Cryptanalysis.- Chapter 22: Attacks.- Chapter 23: Text Characterization.-&nbsp;Chapter 24: Implementation and Practical Approach of Cryptanalysis Methods.</p>

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