Techreport: Evaluating Tor-based Location Privacy for Ethereum Validators

Fuente: arXiv
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Main Authors: Janjua, Muhammad Umar, Mani, Akshaya, Şen, Uğur, Kaiser, Daniel
Format: Preprint
Published: 2026
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_version_ 1866911726112342016
author Janjua, Muhammad Umar
Mani, Akshaya
Şen, Uğur
Kaiser, Daniel
author_facet Janjua, Muhammad Umar
Mani, Akshaya
Şen, Uğur
Kaiser, Daniel
contents Privacy and anonymity of validators, especially regarding IP address linkability, are essential to protect the Ethereum network from various attacks. Network-level attacks, such as DoS, can interrupt validators and affect the overall security of the Ethereum network. Correlating the IP addresses of validators with their identities, along with knowledge about their action slots can be exploited by attackers to cause network delays, MEV exploitation, and finality risks. Therefore, ensuring the unlinkability of a validator's IP and identity is crucial for maintaining the network's trust and resilience. In this techreport, we first provide a review of the existing network and consensus layer techniques that have been proposed for maintaining validator privacy in the Ethereum blockchain. Secondly, we evaluate a Tor-based protocol named Tor push that helps unlink validator identities (IDs) from their nodes' IP addresses, thereby making it difficult to determine any end-to-end correlation between validator IDs and IP addresses of validators' beacon nodes. To evaluate the effectiveness of Tor push, we present a working, deployed proof-of-concept (PoC) implementation in the Nimbus Ethereum client. Our PoC deployment pushes attestations, aggregations, and block proposals over Tor to the Goerli testnet. Furthermore, we also analyse the security and latency of Tor push. Our experimental results suggest that Tor can be incorporated into the existing Ethereum network with a tolerable latency overhead of 613.82 ms on average and without compromising the overall network performance while enhancing the location privacy of validators in the Ethereum network.
format Preprint
id arxiv_https___arxiv_org_abs_2605_29131
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Techreport: Evaluating Tor-based Location Privacy for Ethereum Validators
Janjua, Muhammad Umar
Mani, Akshaya
Şen, Uğur
Kaiser, Daniel
Cryptography and Security
C.2.0; C.2.4; K.6.5
Privacy and anonymity of validators, especially regarding IP address linkability, are essential to protect the Ethereum network from various attacks. Network-level attacks, such as DoS, can interrupt validators and affect the overall security of the Ethereum network. Correlating the IP addresses of validators with their identities, along with knowledge about their action slots can be exploited by attackers to cause network delays, MEV exploitation, and finality risks. Therefore, ensuring the unlinkability of a validator's IP and identity is crucial for maintaining the network's trust and resilience. In this techreport, we first provide a review of the existing network and consensus layer techniques that have been proposed for maintaining validator privacy in the Ethereum blockchain. Secondly, we evaluate a Tor-based protocol named Tor push that helps unlink validator identities (IDs) from their nodes' IP addresses, thereby making it difficult to determine any end-to-end correlation between validator IDs and IP addresses of validators' beacon nodes. To evaluate the effectiveness of Tor push, we present a working, deployed proof-of-concept (PoC) implementation in the Nimbus Ethereum client. Our PoC deployment pushes attestations, aggregations, and block proposals over Tor to the Goerli testnet. Furthermore, we also analyse the security and latency of Tor push. Our experimental results suggest that Tor can be incorporated into the existing Ethereum network with a tolerable latency overhead of 613.82 ms on average and without compromising the overall network performance while enhancing the location privacy of validators in the Ethereum network.
title Techreport: Evaluating Tor-based Location Privacy for Ethereum Validators
topic Cryptography and Security
C.2.0; C.2.4; K.6.5
url https://arxiv.org/abs/2605.29131