Security-driven exploration of cryptography in DSP cores

C. Gebotys
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引用次数: 2

Abstract

With the popularity of wireless communication devices a new important dimension of embedded systems design has arisen, that of security. This paper presents for the first time design exploration for secure implementation of cryptographic applications on a complex DSP processor core. A new metric for security, the implementation security index, is introduced for measuring resistance to power attacks. Elliptic curve cryptographic algorithms are used to demonstrate and quantize security, energy, performance and code size tradeoffs. Modification of power traces is performed to maximize security against power attacks which has significant savings in energy dissipation compared to an existing mathematical approach. This research is important for industry since efficient yet secure cryptography is crucial for wireless communication embedded system devices.
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安全驱动的DSP核心密码学探索
随着无线通信设备的普及,嵌入式系统设计中出现了一个新的重要维度,即安全性。本文首次提出了在复杂DSP处理器核心上安全实现加密应用的设计探索。引入了一种新的安全度量,即实现安全指数,用于测量对功率攻击的抵抗力。椭圆曲线密码算法用于演示和量化安全性,能源,性能和代码大小的权衡。修改电源走线是为了最大限度地提高安全性,防止电源攻击,这与现有的数学方法相比,在能量消耗方面有显着节省。该研究对工业具有重要意义,因为高效且安全的加密对于无线通信嵌入式系统设备至关重要。
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A case study of hardware and software synthesis in ForSyDe Low-power data memory communication for application-specific embedded processors A Trimaran based framework for exploring the design space of VLIW ASIPs with coarse grain functional units Security-driven exploration of cryptography in DSP cores Formal verification in a component-based reuse methodology
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