ExplorerCryptographyCybersecurity
Research PaperResearchia:202601.29105

Incremental Fingerprinting in an Open World

Loes Kruger

Abstract

Network protocol fingerprinting is used to identify a protocol implementation by analyzing its input-output behavior. Traditionally, fingerprinting operates under a closed-world assumption, where models of all implementations are assumed to be available. However, this assumption is unrealistic in practice. When this assumption does not hold, fingerprinting results in numerous misclassifications without indicating that a model for an implementation is missing. Therefore, we introduce an open-worl...

Submitted: January 29, 2026Subjects: Cybersecurity; Cryptography

Description / Details

Network protocol fingerprinting is used to identify a protocol implementation by analyzing its input-output behavior. Traditionally, fingerprinting operates under a closed-world assumption, where models of all implementations are assumed to be available. However, this assumption is unrealistic in practice. When this assumption does not hold, fingerprinting results in numerous misclassifications without indicating that a model for an implementation is missing. Therefore, we introduce an open-world variant of the fingerprinting problem, where not all models are known in advance. We propose an incremental fingerprinting approach to solve the problem by combining active automata learning with closed-world fingerprinting. Our approach quickly determines whether the implementation under consideration matches an available model using fingerprinting and conformance checking. If no match is found, it learns a new model by exploiting the structure of available models. We prove the correctness of our approach and improvements in asymptotic complexity compared to naive baselines. Moreover, experimental results on a variety of protocols demonstrate a significant reduction in misclassifications and interactions with these black-boxes.


Source: arXiv:2601.21680v1 - http://arxiv.org/abs/2601.21680v1 PDF: https://arxiv.org/pdf/2601.21680v1 Original Link: http://arxiv.org/abs/2601.21680v1

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Submission Info
Date:
Jan 29, 2026
Topic:
Cryptography
Area:
Cybersecurity
Comments:
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