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Exploring the use of intel sgx for secure many-party applications

Abstract:
The theoretical construct of a Trusted Third Party (TTP) has the potential to solve many security and privacy challenges. In particular, a TTP is an ideal way to achieve secure multiparty computation-A privacy-enhancing technique in which mutually distrusting participants jointly compute a function over their private inputs without revealing these inputs. Although there exist cryptographic protocols to achieve this, their performance often limits them to the twoparty case, or to a small number of participants. However, many real-world applications involve thousands or tens of thousands of participants. Examples of this type of many-party application include privacy-preserving energy metering, location-based services, and mobile network roaming. Challenging the notion that a trustworthy TTP does not exist, recent research has shown how trusted hardware and remote attestation can be used to establish a sufficient level of assurance in a real system such that it can serve as a trustworthy remote entity (TRE). We explore the use of Intel SGX, the most recent and arguably most promising trusted hardware technology, as the basis for a TRE for many-party applications. Using privacy-preserving energy metering as a case study, we design and implement a prototype TRE using SGX, and compare its performance to a previous system based on the Trusted Platform Module (TPM). Our results show that even without specialized optimizations, SGX provides comparable performance to the optimized TPM system, and therefore has significant potential for large-scale many-party applications.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1145/3007788.3007793

Authors

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Institution:
University of Oxford
Division:
MPLS
Department:
Computer Science
Role:
Author
ORCID:
0000-0001-5484-7096
More by this author
Institution:
University of Oxford
Division:
Societies, Other & Subsidiary Companies
Department:
Kellogg College
Oxford college:
Kellogg College
Role:
Author
More by this author
Institution:
University of Oxford
Division:
Societies, Other & Subsidiary Companies
Department:
Kellogg College
Oxford college:
Kellogg College
Role:
Author


Publisher:
Association for Computing Machinery
Host title:
SysTEX '16: 1st Workshop on System Software for Trusted Execution
Journal:
SysTEX '16: 1st Workshop on System Software for Trusted Execution More from this journal
Publication date:
2016-12-12
Acceptance date:
2016-06-29
DOI:
ISBN:
9781450346702


Keywords:
Pubs id:
pubs:673898
UUID:
uuid:bacb5207-9828-40ea-99b3-f395f565030c
Local pid:
pubs:673898
Deposit date:
2017-06-10
ARK identifier:

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