自动检测秘密的滥用:基础、设计原则和应用

Kevin Milner, C. Cremers, Jiangshan Yu, M. Ryan
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引用次数: 11

摘要

我们开发了安全协议的基础和几个结构,可以自动检测,没有误报,如果一个秘密(如密钥或密码)被滥用。例如,可以使用这样的结构来自动关闭被破坏的服务,或者自动撤销被滥用的秘密,以尽量减少破坏的影响。我们的威胁模型包括恶意代理、(暂时或永久)受损代理和克隆。以前的工作已经研究了这个问题的特定领域的部分解决方案。例如,Google的Certificate Transparency旨在提供基础设施来检测证书颁发机构的签名密钥的滥用,日志已经被用于检测端点的危害,并且已经提出了检测克隆RFID/智能卡的协议。与这些现有的方法相反,这些方法的设计与特定领域的考虑交织在一起,并且通常不支持全自动响应(即,它们需要人工评估),我们的方法显示了自动操作的可能性。我们的结果统一了,提供了设计基础,并对现有领域特定的解决方案提出了改进建议。在此基础上,我们构建了几种检测误用的机制。我们的机制支持自动响应,例如撤销密钥或关闭服务,从而大大限制了妥协的影响。在几个案例研究中,我们展示了如何使用我们的机制来大幅提高各种系统的安全保证,例如web登录、支付系统或电子门锁。例如,我们提出并正式验证了Cloudflare的无密钥SSL协议的改进版本,该协议支持密钥滥用检测。
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Automatically Detecting the Misuse of Secrets: Foundations, Design Principles, and Applications
We develop foundations and several constructions for security protocols that can automatically detect, without false positives, if a secret (such as a key or password) has been misused. Such constructions can be used, e.g., to automatically shut down compromised services, or to automatically revoke misused secrets to minimize the effects of compromise. Our threat model includes malicious agents, (temporarily or permanently) compromised agents, and clones.Previous works have studied domain-specific partial solutions to this problem. For example, Google's Certificate Transparency aims to provide infrastructure to detect the misuse of a certificate authority's signing key, logs have been used for detecting endpoint compromise, and protocols have been proposed to detect cloned RFID/smart cards. Contrary to these existing approaches, for which the designs are interwoven with domain-specific considerations and which usually do not enable fully automatic response (i.e., they need human assessment), our approach shows where automatic action is possible. Our results unify, provide design rationales, and suggest improvements for the existing domain-specific solutions.Based on our analysis, we construct several mechanisms for the detection of misuse. Our mechanisms enable automatic response, such as revoking keys or shutting down services, thereby substantially limiting the impact of a compromise.In several case studies, we show how our mechanisms can be used to substantially increase the security guarantees of a wide range of systems, such as web logins, payment systems, or electronic door locks. For example, we propose and formally verify an improved version of Cloudflare's Keyless SSL protocol that enables key misuse detection.
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