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Towards provably-secure performance locking

机译:迈向可证明的安全性能锁定

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摘要

Locking the functionality of an integrated circuit (IC) thwarts attacks such as intellectual property (IP) piracy, hardware Trojans, overbuilding, and counterfeiting. Although functional locking has been extensively investigated, locking the performance of an IC has been little explored. In this paper, we develop provably-secure performance locking, where only on applying the correct key the IC shows superior performance; for an incorrect key, the performance of the IC degrades significantly. This leads to a new business model, where the companies can design a single IC capable of different performances for different users. We develop mathematical definitions of security and theoretically, and experimentally prove the security against the state-of-the-art-attacks. We implemented performance locking on a FabScalar microprocessor, achieving a degradation in instructions per clock cycle (IPC) of up to 77% on applying an incorrect key, with an overhead of 0.6%, 0.2%, and 0% for area, power, and delay, respectively.
机译:锁定集成电路(IC)的功能可以阻止诸如知识产权(IP)盗版,硬件特洛伊木马,过度建筑和伪造等攻击。尽管已经对功能锁定进行了广泛研究,但很少研究锁定IC的性能。在本文中,我们开发了可证明安全的性能锁定,只有在使用正确的密钥时,IC才能显示出优异的性能。对于不正确的密钥,IC的性能将大大降低。这导致了一种新的业务模式,公司可以为单个用户设计具有不同性能的单个IC。我们在理论上开发了安全性的数学定义,并在实验上证明了针对最新攻击的安全性。我们在FabScalar微处理器上实现了性能锁定,由于使用了错误的密钥,每个时钟周期(IPC)的指令降级了多达77%,而面积的开销为0.6%,0.2%和0% ,功率和延迟。

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