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A New Low-Complexity Cipher Class for Clone-Resistant Identities

机译:用于耐克隆身份的新型低复杂性密码类

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摘要

A new large cipher class based on new two-variable self-inverse-permutation deploying Golden S-Boxes is presented. The mapping has particular properties, in that it is both self-inverse and uses arithmetic over the ring of integers modulo 2". The key contribution of such cipher structures is in activating the use of passive hard-core multipliers (Math-Blocks) in modern FPGA devices. Such multipliers are often available for free when not utilized in for the system tasks. Standard ciphers do not usually use multiplications due to their high implementation complexity. The proposed cipher class is reactivating such free multipliers to create good quality ciphers at very low cost. The target application of such ciphers is in creating the so-called Secret Unknown Ciphers (SUCs). Such SUCs can serve as highly-resilient clone-resistant digital-identity-modules in future smart self-reconfiguring non-volatile FPGA devices. The security level of the resulting ciphers is relatively high and scalable. The main future application areas of such structures are expected to be for vehicular security applications. A sample implementation prototype demonstrates the complexity of the resulting physical identity and its performance.
机译:提出了一种基于新的双变量自逆置换部署Golden S盒的新型大密度类。映射具有特定的属性,因为它既是自我反向的,并且在整数模数2“的环上使用算术。这种密码结构的关键贡献在激活使用被动硬核乘法器(Math-Block)的使用现代FPGA设备。当未用于系统任务时,这种乘法器通常可免费提供。标准密码通常由于其高实现复杂性而不使用乘法。所提出的密码类重新激活此类自由乘法器,以创造出良好的乘法低成本。此类密码的目标应用正在创建所谓的秘密未知密码(SUC)。这些Sucs可以在未来的智能自我重新配置非易失性FPGA器件中作为高度弹性的克隆数字 - 身份模块。所得密码的安全级别相对较高,可扩展。预计此类结构的主要应用领域将用于车辆安全应用。一个示例实现原型演示了由此产生的物理标识及其性能的复杂性。

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