DocumentCode
1635622
Title
Design and Evaluation of a Legal Information Flow (LIF) Scheduler in a Role-based Access Control Model
Author
Enokido, Tomoya ; Takizawa, Makoto
Author_Institution
Rissho Univ., Tokyo
fYear
2007
Firstpage
8
Lastpage
8
Abstract
The role-based access control model is widely used to keep information systems secure. Here, a subject s is allowed to issue a method op to an object o only if an access right (o, op) is included in the roles granted to the subject s. Even if every access request is authorized in the roles, illegal information flow might occur as well known confinement problem. A legal information flow relation (R1 lesI R2) among a pair of role families R1 and R2 shows that no illegal information flow occur if a transaction T1 with a role family R1 is performed prior to another transaction T2 with R2. In addition, a significantly precedent relation R1 less R2 implies that a role family R2 is more significant than R1. We discuss a legal information flow (LIF) scheduler to synchronize transactions so as to prevent illegal information flow and how to serialize conflicting methods from multiple transactions in terms of significancy and information flow relation of roles families. We evaluate the LIF scheduler in terms of how much illegal information flow can be prevented.
Keywords
access control; information systems; confinement problem; illegal information flow; information systems; legal information flow; role-based access control model; Access control; Concurrency control; Data security; Database systems; Information security; Information systems; Law; Legal factors; Permission;
fLanguage
English
Publisher
ieee
Conference_Titel
Parallel Processing Workshops, 2007. ICPPW 2007. International Conference on
Conference_Location
Xian
ISSN
1530-2016
Print_ISBN
0-7695-2934-8
Electronic_ISBN
1530-2016
Type
conf
DOI
10.1109/ICPPW.2007.35
Filename
4346366
Link To Document