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A Synergistic Framework for Hardware IP Privacy and Integrity Protection

  • Добавил: literator
  • Дата: 11-04-2020, 17:05
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Название: A Synergistic Framework for Hardware IP Privacy and Integrity Protection
Автор: Meng Li, David Z. Pan
Издательство: Springer
Год: 2020
Страниц: 147
Язык: английский
Формат: pdf (true), epub
Размер: 20.0 MB

This book proposes a synergistic framework to help IP vendors to protect hardware IP privacy and integrity from design, optimization, and evaluation perspectives. The proposed framework consists of five interacting components that directly target at the primary IP violations. All the five algorithms are developed based on rigorous mathematical modeling for primary IP violations and focus on different stages of IC design, which can be combined to provide a formal security guarantee.

While hardware IP protection strategies are highly demanded, the researches were just initiated lately and still remain preliminary. Firstly, the lack of the mathematical abstractions for these IP violations makes it difficult to formally evaluate and guarantee the effectiveness of the protections. Secondly, the poor scalability and cost-effectiveness of the state-of-the-art protection strategies make them impractical for real-world applications. Moreover, the absence of a holistic IP protection further diminishes the chance to address these highly correlated IP violations which exploit physical clues throughout the whole IC design flow.

To protect hardware IP privacy and integrity, the book proposes a synergistic framework with a focus on security-aware design, optimization, and evaluation. The proposed framework consists of five interacting components that directly target at the primary IP violations. First, to prevent the insertion of the hardware Trojan, a split manufacturing strategy is proposed that achieves formal security guarantee while minimizing the introduced overhead. Then, to hinder reverse engineering, a fast security evaluation algorithm and a provably secure IC camouflaging strategy are proposed. Meanwhile, to impede the fault attacks, a new security primitive, named as public physical unclonable function (PPUF), is designed as an alternative to the existing cryptographic modules. A novel cross-level fault attack evaluation procedure also is proposed to help designers identify security-critical components to protect general purpose processors and compare different security enhancement strategies against the fault attack.

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