DocumentCode
2079703
Title
Flow-Limited Authorization
Author
Arden, Owen ; Liu, Jed ; Myers, Andrew C.
fYear
2015
fDate
13-17 July 2015
Firstpage
569
Lastpage
583
Abstract
Because information flow control mechanisms often rely on an underlying authorization mechanism, their security guarantees can be subverted by weaknesses in authorization. Conversely, the security of authorization can be subverted by information flows that leak information or that influence how authority is delegated between principals. We argue that interactions between information flow and authorization create security vulnerabilities that have not been fully identified or addressed in prior work. We explore how the security of decentralized information flow control (DIFC) is affected by three aspects of its underlying authorization mechanism: first, delegation of authority between principals, second, revocation of previously delegated authority, third, information flows created by the authorization mechanisms themselves. It is no surprise that revocation poses challenges, but we show that even delegation is problematic because it enables unauthorized downgrading. Our solution is a new security model, the Flow-Limited Authorization Model (FLAM), which offers a new, integrated approach to authorization and information flow control. FLAM ensures robust authorization, a novel security condition for authorization queries that ensures attackers cannot influence authorization decisions or learn confidential trust relationships. We discuss our prototype implementation and its algorithm for proof search.
Keywords
Authorization; Buildings; Cognition; Fabrics; Lattices; Robustness; access control; authorization logic; distributed systems; dynamic policies; information flow control; language-based security; security; trust management;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Security Foundations Symposium (CSF), 2015 IEEE 28th
Conference_Location
Verona, Italy
Type
conf
DOI
10.1109/CSF.2015.42
Filename
7243755
Link To Document