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Functional Obfuscation of DSP Cores Using Robust Logic Locking and Encryption

机译:使用强大的逻辑锁定和加密功能对DSP内核进行功能混淆

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Obfuscation plays a key role in thwarting attacks launched through reverse engineering process. This work presents a new obfuscation process for DSP cores using improved logic locking and encryption that incurs minimum design overhead and achieves reduced design cost compared to state of the art approaches. The proposed approach integrates particle swarm optimization driven design space exploration system (PSO-DSE) for obtaining reduced design cost of obfuscated DSP designs. Enhanced security of locking is provided through locking blocks that are capable of locking each output data bit of functional resources with 8 key bits. The presented approach includes countermeasures against key sensitization attacks, SAT attacks and removal attacks. Results indicate that the proposed approach has been capable of achieving enhanced obfuscation security by at least 4.29 e+9 times and a design cost reduction ~ 6.5 % compared to a recent approach.
机译:模糊处理在阻止通过逆向工程过程发起的攻击中起着关键作用。这项工作提出了一种使用改进的逻辑锁定和加密技术对DSP内核进行新的模糊处理的方法,与最新技术方法相比,该方法招致的设计开销最少,并降低了设计成本。所提出的方法集成了粒子群优化驱动的设计空间探索系统(PSO-DSE),以降低混淆的DSP设计的设计成本。通过锁定块提供了增强的锁定安全性,这些锁定块能够使用8个密钥位锁定功能资源的每个输出数据位。提出的方法包括针对密钥敏感攻击,SAT攻击和删除攻击的对策。结果表明,与最近的方法相比,所提出的方法至少能够实现增强的混淆安全性4.29 e + 9倍,并且设计成本降低了6.5%。

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