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Policy-based Chameleon Hash for Blockchain Rewriting with Black-box Accountability
Conference proceeding

Policy-based Chameleon Hash for Blockchain Rewriting with Black-box Accountability

Yangguang Tian, Nan Li, Yingjiu Li, Pawel Szalachowski, Jianying Zhou and ASSOC COMP MACHINERY
Proceedings of the 36th Annual Computer Security Applications Conference, pp.813-828
ACM Other Conferences
ACSAC '20: Annual Computer Security Applications Conference
07/12/2020

Abstract

Security and privacy Security and privacy -- Security services Social and professional topics Social and professional topics -- Computing -- technology policy
Policy-based chameleon hash is a useful primitive for blockchain rewriting. It allows a party to create a transaction associated with an access policy, while another party who possesses enough rewriting privileges satisfying the access policy can rewrite the transaction. However, it lacks accountability. The chameleon trapdoor holder may abuse his/her rewriting privilege and maliciously rewrite the hashed object in the transaction without being identified. In this paper, we introduce policy-based chameleon hash with black-box accountability (PCHBA). Black-box accountability allows an attribute authority to link modified transactions to responsible transaction modifiers in case of dispute, in which any public user identifies those transaction modifiers from interacting with an access device/blackbox. We first present a generic framework of PCHBA. Then, we present a practical instantiation, showing its practicality through implementation and evaluation analysis.

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