DocumentCode
717135
Title
Efficiently bypassing SNI-based HTTPS filtering
Author
Shbair, Wazen M. ; Cholez, Thibault ; Goichot, Antoine ; Chrisment, Isabelle
Author_Institution
LORIA, Univ. of Lorraine, Vandoeuvre-les-Nancy, France
fYear
2015
fDate
11-15 May 2015
Firstpage
990
Lastpage
995
Abstract
Encrypted Internet traffic is an essential element to enable security and privacy in the Internet. Surveys show that websites are more and more being served over HTTPS. They highlight an increase of 48% of sites using TLS over the past year, justifying the tendency that the Web is going to be encrypted. This motivates the development of new tools and methods to monitor and filter HTTPS traffic. This paper handles the latest technique for HTTPS traffic filtering that is based on the Server Name Indication (SNI) field of TLS and which has been recently implemented in many firewall solutions. Our main contribution is an evaluation of the reliability of this SNI extension for properly identifying and filtering HTTPS traffic. We show that SNI has two weaknesses, regarding (1) backward compatibility and (2) multiple services using a single certificate. We demonstrate thanks to a web browser plug-in called “Escape” that we designed and implemented, how these weaknesses can be practically used to bypass firewalls and monitoring systems relying on SNI. The results show positive evaluation (firewall´s rules successfully bypassed) for all tested websites.
Keywords
Internet; Web sites; cryptography; data privacy; firewalls; hypermedia; information filtering; network servers; online front-ends; telecommunication traffic; transport protocols; Escape; HTTPS filtering; Internet privacy; Internet security; Internet traffic encryption; SNI; Web browser plug-in; Web site; firewall rule; server name indication; Browsers; Cryptography; Filtering; IP networks; Internet; Protocols; Servers;
fLanguage
English
Publisher
ieee
Conference_Titel
Integrated Network Management (IM), 2015 IFIP/IEEE International Symposium on
Conference_Location
Ottawa, ON
Type
conf
DOI
10.1109/INM.2015.7140423
Filename
7140423
Link To Document