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A novel architecture for a secure update of cryptographic engines on trusted platform module

机译:一种新的架构,用于安全更新受信任平台模块的加密引擎

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Trusted computing is gaining an increasing acceptance in the industry and finding its way to cloud computing. With this penetration, the question arises whether the concept of hard-wired security modules will cope with the increasing sophistication and security requirements of future IT systems and the ever expanding threats and violations. So far, embedding cryptographic hardware engines into the Trusted Platform Module (TPM) has been regarded as a security feature. However, new developments in cryptanalysis, side-channel analysis, and the emergence of novel powerful computing systems, such as quantum computers, can render this approach useless. Given that, the question arises: Do we have to throw away all TPMs and loose the data protected by them, if someday a cryptographic engine on the TPM becomes insecure? To address this question, we present a novel architecture called Sustainable Trusted Platform Module (STPM), which guarantees a secure update of the TPM cryptographic engines without compromising the system's trustworthiness. The STPM architecture has been implemented as a proof-of-concept on top of a Xilinx Virtex-5 FPGA platform, demonstrating a test case with an update of the fundamental hash engine of the TPM.
机译:值得信赖的计算在行业中获得了越来越多的接受,并找到了云计算的方式。通过这种渗透,问题出现了硬度有线安全模块的概念将应对未来IT系统的复杂性和安全要求的增加以及不断扩大的威胁和违规行为。到目前为止,将密码硬件引擎嵌入到可信平台模块(TPM)中被视为安全功能。然而,Cryptanalysis,侧通道分析和新型强大计算系统的出现(如量子计算机)的新发展可以使这种方法无用。鉴于这一点,出现了问题:如果有一天在TPM上的加密发动机变得不安全,我们必须丢弃所有TPM并松动受其保护的数据吗?为了解决这个问题,我们提出了一种名为可持续值得信赖的平台模块(STPM)的新型架构,保证了在不影响系统可信度的情况下安全更新TPM加密引擎。 STPM架构已在Xilinx Virtex-5 FPGA平台顶部实现为概念验证,展示了TPM的基本散列发动机的测试用例。

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