Perils of Parallelism: Transaction Fee Mechanisms under Execution Uncertainty

Fuente: arXiv
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Main Authors: Wadhwa, Sarisht, Yaish, Aviv, Zhang, Fan, Nayak, Kartik
Format: Preprint
Published: 2026
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author Wadhwa, Sarisht
Yaish, Aviv
Zhang, Fan
Nayak, Kartik
author_facet Wadhwa, Sarisht
Yaish, Aviv
Zhang, Fan
Nayak, Kartik
contents Modern blockchains increasingly rely on parallel execution to improve throughput. We show several industry and academic transaction fee mechanisms (TFMs) struggle to simultaneously account for execution parallelism while remaining performant and fair. First, if parallelism affects fees, adversarial protocol manipulations that offset possible benefits to throughput by introducing fake transactions become rational: users can insert functionally useless parallel transactions solely to reduce fees, and schedulers can create useless sequential transactions to increase revenue. Execution contingency, a core feature of expressive programming languages, both exacerbates the aforementioned threats and introduces new ones: (1) users may overpay for unused resources, and (2) scheduler revenue is harmed when reserved scheduling slots go unused due to contingency. We introduce a framework for this challenging setting, and prove an impossibility, highlighting an inherent tension: both parallelism and contingency involve a trade-off between minimizing risks for users and schedulers, as favoring one comes at the expense of the other. To complete the picture, we introduce a fee mechanisms and prove that they achieve the boundaries of this trade-off. Our results provide rigorous foundations for evaluating designs advanced by notable blockchains, such as Sui and Monad.
format Preprint
id arxiv_https___arxiv_org_abs_2604_04193
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Perils of Parallelism: Transaction Fee Mechanisms under Execution Uncertainty
Wadhwa, Sarisht
Yaish, Aviv
Zhang, Fan
Nayak, Kartik
Cryptography and Security
Computer Science and Game Theory
Modern blockchains increasingly rely on parallel execution to improve throughput. We show several industry and academic transaction fee mechanisms (TFMs) struggle to simultaneously account for execution parallelism while remaining performant and fair. First, if parallelism affects fees, adversarial protocol manipulations that offset possible benefits to throughput by introducing fake transactions become rational: users can insert functionally useless parallel transactions solely to reduce fees, and schedulers can create useless sequential transactions to increase revenue. Execution contingency, a core feature of expressive programming languages, both exacerbates the aforementioned threats and introduces new ones: (1) users may overpay for unused resources, and (2) scheduler revenue is harmed when reserved scheduling slots go unused due to contingency. We introduce a framework for this challenging setting, and prove an impossibility, highlighting an inherent tension: both parallelism and contingency involve a trade-off between minimizing risks for users and schedulers, as favoring one comes at the expense of the other. To complete the picture, we introduce a fee mechanisms and prove that they achieve the boundaries of this trade-off. Our results provide rigorous foundations for evaluating designs advanced by notable blockchains, such as Sui and Monad.
title Perils of Parallelism: Transaction Fee Mechanisms under Execution Uncertainty
topic Cryptography and Security
Computer Science and Game Theory
url https://arxiv.org/abs/2604.04193