Lyte Quorum: Off-Chain Ready Smart Contract Hosted with Choice

Fuente: arXiv
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Autori principali: Hao, Hao, Malkhi, Dahlia, Yin, Maofan, Zhou, Lizan
Natura: Preprint
Pubblicazione: 2025
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author Hao, Hao
Malkhi, Dahlia
Yin, Maofan
Zhou, Lizan
author_facet Hao, Hao
Malkhi, Dahlia
Yin, Maofan
Zhou, Lizan
contents This paper introduces Lyquor, a decentralized platform that reimagines blockchain infrastructure through a service-centric model where nodes selectively host smart contracts (called Lyquids) while preserving global composability. We present three key innovations: (1) Fate-Constrained Ordering (FCO), which decouples consensus from execution to enable selective hosting without sacrificing Layer-1 grade composability; (2) Direct Memory Architecture (DMA), which eliminates state access bottlenecks by providing each contract with persistent, byte-addressable virtual memory; and (3) Universal Procedure Call (UPC), which enables fault-tolerant, programmable coordination across distributed off-chain computation. Together, these components are powered by a Rust-macroed unified programming model where on-chain and off-chain logic coexist seamlessly, supporting both traditional smart contract patterns and novel distributed applications. Lyquor addresses critical limitations in existing systems while maintaining compatibility with Ethereum APIs, offering a path toward truly scalable decentralized computation.
format Preprint
id arxiv_https___arxiv_org_abs_2509_23448
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Lyte Quorum: Off-Chain Ready Smart Contract Hosted with Choice
Hao, Hao
Malkhi, Dahlia
Yin, Maofan
Zhou, Lizan
Distributed, Parallel, and Cluster Computing
This paper introduces Lyquor, a decentralized platform that reimagines blockchain infrastructure through a service-centric model where nodes selectively host smart contracts (called Lyquids) while preserving global composability. We present three key innovations: (1) Fate-Constrained Ordering (FCO), which decouples consensus from execution to enable selective hosting without sacrificing Layer-1 grade composability; (2) Direct Memory Architecture (DMA), which eliminates state access bottlenecks by providing each contract with persistent, byte-addressable virtual memory; and (3) Universal Procedure Call (UPC), which enables fault-tolerant, programmable coordination across distributed off-chain computation. Together, these components are powered by a Rust-macroed unified programming model where on-chain and off-chain logic coexist seamlessly, supporting both traditional smart contract patterns and novel distributed applications. Lyquor addresses critical limitations in existing systems while maintaining compatibility with Ethereum APIs, offering a path toward truly scalable decentralized computation.
title Lyte Quorum: Off-Chain Ready Smart Contract Hosted with Choice
topic Distributed, Parallel, and Cluster Computing
url https://arxiv.org/abs/2509.23448