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Threat Modeling Gameplay with EoP

Threat Modeling Gameplay with EoP

By : Brett Crawley
4.9 (7)
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Threat Modeling Gameplay with EoP

Threat Modeling Gameplay with EoP

4.9 (7)
By: Brett Crawley

Overview of this book

Are you looking to navigate security risks, but want to make your learning experience fun? Here's a comprehensive guide that introduces the concept of play to protect, helping you discover the threats that could affect your software design via gameplay. Each chapter in this book covers a suit in the Elevation of Privilege (EoP) card deck (a threat category), providing example threats, references, and suggested mitigations for each card. You’ll explore the methodology for threat modeling—Spoofing, Tampering, Repudiation, Information Disclosure, and Elevation of Privilege (S.T.R.I.D.E.) with Privacy deck and the T.R.I.M. extension pack. T.R.I.M. is a framework for privacy that stands for Transfer, Retention/Removal, Inference, and Minimization. Throughout the book, you’ll learn the meanings of these terms and how they should be applied. From spotting vulnerabilities to implementing practical solutions, the chapters provide actionable strategies for fortifying the security of software systems. By the end of this book, you will be able to recognize threats, understand privacy regulations, access references for further exploration, and get familiarized with techniques to protect against these threats and minimize risks.
Table of Contents (18 chapters)
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13
Glossary
14
Further Reading
15
Licenses for third party content

5. of Elevation of Privilege II

An attacker can force data through different validation paths, which give different results.

Threat

image

Your site is multilingual and implementations for each language may differ slightly. An attacker can change the default language in their browser, causing a change in flow so that they can take advantage of some missing validation.

CAPEC

CAPEC-554 – Functionality bypass

CAPEC-140 – Bypassing of intermediate forms in multiple-form sets

CAPEC-29 – Leveraging time-of-check and time-of-use (TOCTOU) race conditions

ASVS

1.11.2 – Verify thread safety

1.11.3 – Check for TOCTOU issues

11.1.1 – Verify application flow is enforced

CWE

...

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