Logsum Using Garbled Circuits
Author(s) -
José Portêlo,
Bhiksha Raj,
Isabel Trancoso
Publication year - 2015
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0122236
Subject(s) - homomorphic encryption , computer science , functional encryption , theoretical computer science , key (lock) , encryption , computation , electronic circuit , cryptosystem , security parameter , set (abstract data type) , function (biology) , cryptography , oblivious transfer , computer engineering , algorithm , ciphertext , computer security , evolutionary biology , electrical engineering , biology , programming language , engineering
Secure multiparty computation allows for a set of users to evaluate a particular function over their inputs without revealing the information they possess to each other. Theoretically, this can be achieved using fully homomorphic encryption systems, but so far they remain in the realm of computational impracticability. An alternative is to consider secure function evaluation using homomorphic public-key cryptosystems or Garbled Circuits, the latter being a popular trend in recent times due to important breakthroughs. We propose a technique for computing the logsum operation using Garbled Circuits. This technique relies on replacing the logsum operation with an equivalent piecewise linear approximation, taking advantage of recent advances in efficient methods for both designing and implementing Garbled Circuits. We elaborate on how all the required blocks should be assembled in order to obtain small errors regarding the original logsum operation and very fast execution times.
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