From Indexing to Coding: A New Paradigm for Data Availability Sampling

Fuente: arXiv
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Main Authors: Grundei, Moritz, Vasudevan, Vipindev Adat, Konwar, Kishori, Medard, Muriel
Format: Preprint
Published: 2025
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author Grundei, Moritz
Vasudevan, Vipindev Adat
Konwar, Kishori
Medard, Muriel
author_facet Grundei, Moritz
Vasudevan, Vipindev Adat
Konwar, Kishori
Medard, Muriel
contents The data availability problem is a central challenge in blockchain systems and lies at the core of the accessibility and scalability issues faced by platforms such as Ethereum. Modern solutions employ several approaches, with data availability sampling (DAS) being the most self-sufficient and minimalistic in its security assumptions. Existing DAS methods typically form cryptographic commitments on codewords of fixed-rate erasure codes, which restrict light nodes to sampling from a predetermined set of coded symbols. In this paper, we introduce a new approach to DAS that modularizes the coding and commitment process by committing to the uncoded data while performing sampling through on-the-fly coding. The resulting samples are significantly more expressive, enabling light nodes to obtain, in concrete implementations, up to multiple orders of magnitude stronger assurances of data availability than from sampling pre-committed symbols from a fixed-rate redundancy code as done in established DAS schemes using Reed Solomon or low density parity check codes. We present a concrete protocol that realizes this paradigm using random linear network coding (RLNC).
format Preprint
id arxiv_https___arxiv_org_abs_2509_21586
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle From Indexing to Coding: A New Paradigm for Data Availability Sampling
Grundei, Moritz
Vasudevan, Vipindev Adat
Konwar, Kishori
Medard, Muriel
Cryptography and Security
The data availability problem is a central challenge in blockchain systems and lies at the core of the accessibility and scalability issues faced by platforms such as Ethereum. Modern solutions employ several approaches, with data availability sampling (DAS) being the most self-sufficient and minimalistic in its security assumptions. Existing DAS methods typically form cryptographic commitments on codewords of fixed-rate erasure codes, which restrict light nodes to sampling from a predetermined set of coded symbols. In this paper, we introduce a new approach to DAS that modularizes the coding and commitment process by committing to the uncoded data while performing sampling through on-the-fly coding. The resulting samples are significantly more expressive, enabling light nodes to obtain, in concrete implementations, up to multiple orders of magnitude stronger assurances of data availability than from sampling pre-committed symbols from a fixed-rate redundancy code as done in established DAS schemes using Reed Solomon or low density parity check codes. We present a concrete protocol that realizes this paradigm using random linear network coding (RLNC).
title From Indexing to Coding: A New Paradigm for Data Availability Sampling
topic Cryptography and Security
url https://arxiv.org/abs/2509.21586