Mangrove: A Scalable Framework for Folding-Based SNARKs
Wilson D. Nguyen, Trisha Datta, Binyi Chen, Nirvan Tyagi, Dan Boneh
Abstract
We present a framework for building efficient folding-based SNARKs. First we develop a new "uniformizing" compiler for NP statements that converts any poly-time computation to a sequence of identical simple steps. The resulting uniform computation is especially well-suited to be processed by a folding-based IVC scheme. Second, we develop two optimizations to folding-based IVC. The first reduces the recursive overhead of the IVC by restructuring the relation to which folding is applied. The second employs a "commit-and-fold'' strategy to further simplify the relation. Together, these optimizations result in a folding based SNARK that has a number of attractive features. First, the scheme uses a constant-size transparent common reference string (CRS). Second, the prover has (i) low memory footprint, (ii) makes only two passes over the data, (iii) is highly parallelizable, and (iv) is concretely efficient. Microbenchmarks indicate that proving time is competitive with leading monolithic SNARKs, and significantly faster than other streaming SNARKs. For () gates, the Mangrove prover is estimated to take minutes ( hours) with peak memory usage approximately MB ( MB) on a laptop.
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