计算机科学
加密
计算机网络
网络数据包
云计算
瓶颈
深包检验
带宽(计算)
操作系统
嵌入式系统
作者
Shangqi Lai,Xingliang Yuan,Shi-Feng Sun,Joseph K. Liu,Ron Steinfeld,Amin Sakzad,Dongxi Liu
标识
DOI:10.1109/tdsc.2021.3065652
摘要
Network Function Virtualisation (NFV) advances the adoption of composable software middleboxes. Accordingly, cloud data centres become major NFV vendors for enterprise traffic processing. Due to the privacy concern of traffic redirection to the cloud, secure middlebox systems (e.g., BlindBox) draw much attention; they can process encrypted packets against encrypted rules directly. However, most of the existing systems supporting pattern matching based network functions require the enterprise gateway to tokenise packet payloads via sliding windows. Such tokenisation induces a considerable communication overhead, which can be over 100× to the packet size. To overcome this bottleneck, in this article, we propose the first bandwidth-efficient encrypted pattern matching protocol for secure middleboxes. We resort to a primitive called symmetric hidden vector encryption (SHVE), and propose a variant of it, aka SHVE+, to achieve constant and moderate communication cost. To speed up, we devise encrypted filters to reduce the number of accesses to SHVE+ during matching highly. We formalise the security of our proposed protocol and conduct comprehensive evaluations over real-world rulesets and traffic dumps. The results show that our design can inspect a packet over 20 k rules within 100 $\mu$ s. Compared to prior work, it brings a saving of 94 percent in bandwidth consumption.
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