TY - GEN
T1 - Shutter
T2 - 11th IEEE International Conference on Ubiquitous Intelligence and Computing and 11th IEEE International Conference on Autonomic and Trusted Computing and 14th IEEE International Conference on Scalable Computing and Communications and Associated Symposia/Workshops, UIC-ATC-ScalCom 2014
AU - Wu, Tao
AU - Li, Jianxin
AU - Wu, Nannan
AU - Ou, Tao
AU - Yang, Borui
AU - Li, Bo
N1 - Publisher Copyright:
© 2014 IEEE.
PY - 2014
Y1 - 2014
N2 - With the explosion of Online Social Networking (OSN), participation in social networking sites has dramatically increased in organizations like enterprises, campuses, etc. Lots of privacy or security information can be shared by a vast network of people including friends and strangers, which brings potential threats of information leakage. However, existing information protection methods cannot effectively detect the fine-grained user request contexts to OSN sites, resulting in security vulnerability in the organizations. In this paper, we propose Shutter, an information protection system based on domain gateway for social networks. Shutter employs a fine-grained traffic filter to analyze a massive number of HTTP requests and a scalable message parsing scheme for both HTTP and HTTPS traffic, which utilizes the characteristics of OSN requests to accelerate the parsing phrase. Shutter also leverages a rule matcher based on layered tire and multi-pattern matching algorithm to achieve high matching throughput, as well as fast rules inserting and deleting operations. We perform our experiments by collecting real request traffic and using the traffic data as our test input. The results demonstrate that Shutter achieves high throughput and preeminent scalability detecting user requests to OSN sites with insignificant memory overhead.
AB - With the explosion of Online Social Networking (OSN), participation in social networking sites has dramatically increased in organizations like enterprises, campuses, etc. Lots of privacy or security information can be shared by a vast network of people including friends and strangers, which brings potential threats of information leakage. However, existing information protection methods cannot effectively detect the fine-grained user request contexts to OSN sites, resulting in security vulnerability in the organizations. In this paper, we propose Shutter, an information protection system based on domain gateway for social networks. Shutter employs a fine-grained traffic filter to analyze a massive number of HTTP requests and a scalable message parsing scheme for both HTTP and HTTPS traffic, which utilizes the characteristics of OSN requests to accelerate the parsing phrase. Shutter also leverages a rule matcher based on layered tire and multi-pattern matching algorithm to achieve high matching throughput, as well as fast rules inserting and deleting operations. We perform our experiments by collecting real request traffic and using the traffic data as our test input. The results demonstrate that Shutter achieves high throughput and preeminent scalability detecting user requests to OSN sites with insignificant memory overhead.
UR - https://www.scopus.com/pages/publications/84949555349
U2 - 10.1109/UIC-ATC-ScalCom.2014.121
DO - 10.1109/UIC-ATC-ScalCom.2014.121
M3 - 会议稿件
AN - SCOPUS:84949555349
T3 - Proceedings - 2014 IEEE International Conference on Ubiquitous Intelligence and Computing, 2014 IEEE International Conference on Autonomic and Trusted Computing, 2014 IEEE International Conference on Scalable Computing and Communications and Associated Symposia/Workshops, UIC-ATC-ScalCom 2014
SP - 42
EP - 49
BT - Proceedings - 2014 IEEE International Conference on Ubiquitous Intelligence and Computing, 2014 IEEE International Conference on Autonomic and Trusted Computing, 2014 IEEE International Conference on Scalable Computing and Communications and Associated Symposia/Workshops, UIC-ATC-ScalCom 2014
A2 - Zheng, Yu
A2 - Thulasiraman, Parimala
A2 - Apduhan, Bernady O.
A2 - Nakamoto, Yukikazu
A2 - Ning, Huansheng
A2 - Sun, Yuqing
PB - Institute of Electrical and Electronics Engineers Inc.
Y2 - 9 December 2014 through 12 December 2014
ER -