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In this paper, we propose MAGE, a framework enabling a group of enclaves to mutually attest each other without trusted third parties. Particularly, we introduce ...
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Secure interaction among mutually distrusting parties: when data needs to be exchanged between TEE-enhanced blockchain applications, each enclave should be able ...
Aug 21, 2020 · a group of enclaves to mutually attest one another without trusted third parties. These enclaves could be developed by the same developer or ...
In this paper, we propose MAGE, a framework enabling a group of enclaves to mutually attest each other without trusted third parties. Particularly, we introduce ...
Aug 21, 2020 · This paper proposes MAGE, a framework enabling a group of enclaves to mutually attest each other without trusted third parties, ...
MAGE is an extension of Intel SGX SDK (v2.6) to support mutual attestation for a group of enclaves without trusted third parties. The extension includes: ...
Apr 10, 2023 · USENIX Security '22 -Guoxing Chen, Yinqian Zhang – MAGE: Mutual Attestation for a Group of Enclaves without Trusted Third Parties. by Marc ...
Apr 10, 2023 · Infosecurity.US · USENIX Security '22 -Guoxing Chen, Yinqian Zhang - MAGE: Mutual Attestation for a Group of Enclaves without Trusted Third ...
MAGE is a framework that supports mutual attestation for a group of enclaves without trusted third parties. OPERA-MAGE is extended from an prototype ...
Aug 21, 2020 · Intel Software Guard Extensions (SGX) local and remote attestation mechanisms enable an enclave to attest its identity (i.e., the enclave ...