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Trustworthy reconfigurable access to on-chip infrastructure

机译:可信赖的可重新配置的片上基础架构访问

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The accessibility of on-chip embedded infrastructure for test, reconfiguration, or debug poses a serious security problem. Access mechanisms based on IEEE Std 1149.1 (JTAG), and especially reconfigurable scan networks (RSNs), as allowed by IEEE Std 1500, IEEE Std 1149.1-2013, and IEEE Std 1687 (IJTAG), require special care in the design and development. This work studies the threats to trustworthy data transmission in RSNs posed by untrusted components within the RSN and external interfaces. We propose a novel scan pattern generation method that finds trustworthy access sequences to prevent sniffing and spoofing of transmitted data in the RSN. For insecure RSNs, for which such accesses do not exist, we present an automated transformation that improves the security and trustworthiness while preserving the accessibility to attached instruments. The area overhead is reduced based on results from trustworthy access pattern generation. As a result, sensitive data is not exposed to untrusted components in the RSN, and compromised data cannot be injected during trustworthy accesses.
机译:片上嵌入式基础架构可用于测试,重新配置或调试的可访问性带来了严重的安全问题。在IEEE Std 1500,IEEE Std 1149.1-2013和IEEE Std 1687(IJTAG)的允许下,基于IEEE Std 1149.1(JTAG)的访问机制,尤其是可重配置扫描网络(RSN),在设计和开发中需要特别注意。这项工作研究了RSN和外部接口中不受信任的组件对RSN中可信赖数据传输的威胁。我们提出了一种新颖的扫描模式生成方法,该方法可以找到可信任的访问序列,以防止RSN中发送数据的嗅探和欺骗。对于不存在此类访问权限的不安全的RSN,我们提出了一种自动转换,可以提高安全性和可信度,同时保留对附加工具的访问性。基于值得信赖的访问模式生成的结果,减少了区域开销。结果,敏感数据不会暴露给RSN中不受信任的组件,并且在受信任的访问过程中也不会注入泄露的数据。

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