2009•Unpublished venueRequires access

Blueprint: Robust Prevention of Cross-site Scripting Attacks for Existing Browsers

Mike Ter Louw, Venkat N. Venkatakrishnan

Open publisher page 205 citations

Abstract

As social networking sites proliferate across the World Wide Web, complex user-created HTML content is rapidly becoming the norm rather than the exception. User-created web content is a notorious vector for cross-site scripting (XSS) attacks that target websites and confidential user data. In this threat climate, mechanisms that render web applications immune to XSS attacks have been of recent research interest.A challenge for these security mechanisms is enabling web applications to accept complex HTML input from users, while disallowing malicious script content. This challenge is made difficult by anomalous web browser behaviors, which are often used as vectors for successful XSS attacks.Motivated by this problem, we present a new XSS defense strategy designed to be effective in widely deployed existing web browsers, despite anomalous browser behavior. Our approach seeks to minimize trust placed on browsers for interpreting untrusted content. We implemented this approach in a tool called Blueprint that was integrated with several popular web applications. We evaluated Blueprint against a barrage of stress tests that demonstrate strong resistance to attacks, excellent compatibility with web browsers and reasonable performance overheads.

About this research paper

What this paper is about

As social networking sites proliferate across the World Wide Web, complex user-created HTML content is rapidly becoming the norm rather than the exception. User-created web content is a notorious vector for cross-site scripting (XSS) attacks that target websites and confidential user data. In this threat climate, mechanisms that render web applications immune to XSS attacks have been of recent research interest.A challenge for these security mechanisms is enabling web applications to accept complex HTML input from users, while disallowing malicious script content. This challenge is made difficult by anomalous web browser behaviors, which are often used as vectors for successful XSS attacks.Motivated by this problem, we present a new XSS defense strategy designed to be effective in widely deployed existing web browsers, despite anomalous browser behavior. Our approach seeks to minimize trust placed on browsers for interpreting untrusted content. We implemented this approach in a tool called Blueprint that was integrated with several popular web applications. We evaluated Blueprint against a barrage of stress tests that demonstrate strong resistance to attacks, excellent compatibility with web browsers and reasonable performance overheads.

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OpenAlex reports 205 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

As social networking sites proliferate across the World Wide Web, complex user-created HTML content is rapidly becoming the norm rather than the exception. User-created web content is a notorious vector for cross-site scripting (XSS) attacks that target websites and confidential user data. In this threat climate, mechanisms that render web applications immune to XSS attacks have been of recent research interest.A challenge for these security mechanisms is enabling web applications to accept complex HTML input from users, while disallowing malicious script content. This challenge is made difficult by anomalous web browser behaviors, which are often used as vectors for successful XSS attacks.Motivated by this problem, we present a new XSS defense strategy designed to be effective in widely deployed existing web browsers, despite anomalous browser behavior. Our approach seeks to minimize trust placed on browsers for interpreting untrusted content. We implemented this approach in a tool called Blueprint that was integrated with several popular web applications. We evaluated Blueprint against a barrage of stress tests that demonstrate strong resistance to attacks, excellent compatibility with web browsers and reasonable performance overheads.

Key concepts: Cross-site scripting, Computer science, World Wide Web, Scripting language, Blueprint, Web application, Web application security, Client-side scripting

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