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The Joy of Cryptography. An Undergraduate Course in Provable Security
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- Nombre de pages702
- FormatePub
- ISBN978-0-262-38458-2
- EAN9780262384582
- Date de parution06/01/2026
- Protection num.Adobe DRM
- Taille40 Mo
- Infos supplémentairesepub
- ÉditeurThe MIT Press
Résumé
A comprehensive introduction to the fundamentals of provable security for advanced undergraduates. This accessible textbook provides a comprehensive introduction to the algorithms that keep our digital lives safe-how they work, what makes them different, and why they are secure. Mike Rosulek focuses on provable security-the process of defining what it means to be secure and mathematically proving security properties-to demystify the study of cryptography.
Writing with clarity and humor, Rosulek covers basic building blocks before moving to symmetric-key encryption and authentication, public-key cryptography, and advanced topics. Employing a novel pseudocode-based approach to learning provable security and security proofs, The Joy of Cryptography empowers anyone with a small amount of programming experience to reason formally about security properties.
Uses pseudocode-based reasoning to make provable security accessible to undergraduates Focuses on proven methods used in practice today Offers rigorous treatment of symmetric-key and public-key encryption and authentication Includes advanced material on encrypted messaging, post-quantum cryptography, and zero-knowledge proofs Features ancillary resources
Writing with clarity and humor, Rosulek covers basic building blocks before moving to symmetric-key encryption and authentication, public-key cryptography, and advanced topics. Employing a novel pseudocode-based approach to learning provable security and security proofs, The Joy of Cryptography empowers anyone with a small amount of programming experience to reason formally about security properties.
Uses pseudocode-based reasoning to make provable security accessible to undergraduates Focuses on proven methods used in practice today Offers rigorous treatment of symmetric-key and public-key encryption and authentication Includes advanced material on encrypted messaging, post-quantum cryptography, and zero-knowledge proofs Features ancillary resources



