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Logic Encryption to Prevent Trojan Insertion with Dual-Function Gates

机译:防止双功能门木马插入的逻辑加密

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The outsourcing of integrated circuits (IC) makes some of the vulnerabilities and enable the adversary to reverse engineering attack, IP piracy, overproduction, counterfeiting or hardware Trojan (HT) insertion throughout the supply chain of the IC. The attacker by inserting the hardware Trojan can destroy normal operation in IC, or steal sensitive information from the design. Nowadays the prevention of IP piracy and HT insertion is an important issue in hardware security. Logic encryption as part of Design for Hardware Trust (DFHT) techniques, applies key-gates in order to encrypt the logic of the chip. Therefore if the key inputs are correct the chip has normal function otherwise function is wrong, this work prevention of IP piracy. Furthermore, in some cases of logic encryption techniques, the rare signals that are a good place for insert an HT can be reduced. Therefore, if the HT is inserted in the chip by functional tests can be detected. In this article, a new key-gate that has a double-function is designed to prevent HT insertion as well as preventing from IP piracy. In this paper, by reducing the rare signals and reducing the signals with low observability, prevent HT insertion also, this type of key-gates is resistant to reverse engineering more than the previously designed key-gates. This key-gates has overhead less than insertion based method with XOR and XNOR key-gates.
机译:集成电路(IC)的外包带来了一些漏洞,并使攻击者能够在整个IC的供应链中逆转工程攻击,IP盗版,生产过剩,伪造或硬件特洛伊木马(HT)。攻击者通过插入硬件木马可以破坏IC的正常运行,或从设计中窃取敏感信息。如今,防止IP盗版和HT插入是硬件安全中的重要问题。逻辑加密是硬件信任设计(DFHT)技术的一部分,它应用密钥门来对芯片的逻辑进行加密。因此,如果按键输入正确,则芯片具有正常功能,否则功能有误,可以防止IP盗版。此外,在逻辑加密技术的某些情况下,可以减少插入HT的好地方的稀有信号。因此,如果通过功能测试将HT插入芯片中,则可以检测到。在本文中,设计了一种具有双重功能的新按键门,以防止HT插入以及防止IP盗版。在本文中,通过减少稀有信号并降低可观察性较低的信号,还可以防止HT插入,这种类型的按键门比以前设计的按键门更能抵抗逆向工程。与使用XOR和XNOR键门的基于插入的方法相比,此键门的开销要少。

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