SOC模块化算术单元的体系结构与实现

M. H. Ahmad, Syed Wasi Alam, Irum Baig
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引用次数: 0

摘要

在二十世纪的最后十年,电子产品大量地渗透到我们的生活中。在这些技术的发展过程中,设备/协议的操作是主要关注的问题,而安全方面被忽视了。但是,由于安全漏洞造成的损失导致了具有安全意识的设计。技术进步的方向也是在更小的区域内实现更多的功能。在这种情况下,安全性通常是最后一个选择。每单位面积的芯片制造也有了更多的进步,这带来了片上系统(SOC)的概念。因此,为了利用单位面积的小制造来增强安全性,我们提出模块化算术单元(MAU)架构作为新SOC的一部分,以便以有效的方式实现加密算法。MAU的设计保持了与SOC上任何处理器接口的便利性。因此,基于模块化算法的密码算法可以用高级语言编写并在SOC的处理器上执行。MAU是在Xilinx Spartan 3上实现的,它显示了灵活性、可扩展性和更小的面积。实现结果表明,面积消耗为1500片。
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Architecture and Implementation of Modular Airthmetic Unit for SOC
In last decade of the twentieth century electronic gadgets penetrated our lives in huge numbers. During the development of such technologies operation of the devices/protocols was the main concern and the security aspect was ignored. But the losses that occur due to security breaches resulted in security conscious designs. The direction of technological advancement is also towards more functionality in less area. In such cases security is usually the last preference. There is also more advancement in chip fabrication per unit area that brings the concept of system on chip (SOC). So to take the advantage of small fabrication per unit area for security enhancement we propose the architecture of modular arithmetic unit (MAU) as part of the new SOC in order to implement cryptographic algorithms in an efficient manner. MAU is designed keeping in view ease of interfacing with any processor on SOC. Thus cryptographic algorithms that are based on modular arithmetic can be written in high level language and executed on processor of SOC. MAU is implemented on Xilinx Spartan 3 which shows flexibility, scalability and less area. The implementation results show area consumption of 1500 slices.
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