Securing the Software Package Supply Chain for Critical Systems

Fuente: arXiv
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Hauptverfasser: Murali, Ritwik, Ravi, Akash
Format: Preprint
Veröffentlicht: 2025
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author Murali, Ritwik
Ravi, Akash
author_facet Murali, Ritwik
Ravi, Akash
contents Software systems have grown as an indispensable commodity used across various industries, and almost all essential services depend on them for effective operation. The software is no longer an independent or stand-alone piece of code written by a developer but rather a collection of packages designed by multiple developers across the globe. Ensuring the reliability and resilience of these systems is crucial since emerging threats target software supply chains, as demonstrated by the widespread SolarWinds hack in late 2020. These supply chains extend beyond patches and updates, involving distribution networks throughout the software lifecycle. Industries like smart grids, manufacturing, healthcare, and finance rely on interconnected software systems and their dependencies for effective functioning. To secure software modules and add-ons, robust distribution architectures are essential. The proposed chapter enhances the existing delivery frameworks by including a permissioned ledger with Proof of Authority consensus and multi-party signatures. The proposed system aims to prevent attacks while permitting every stakeholder to verify the same. Critical systems can interface with the secure pipeline without disrupting existing functionalities, thus preventing the cascading effect of an attack at any point in the supply chain.
format Preprint
id arxiv_https___arxiv_org_abs_2505_22023
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Securing the Software Package Supply Chain for Critical Systems
Murali, Ritwik
Ravi, Akash
Software Engineering
Cryptography and Security
Software systems have grown as an indispensable commodity used across various industries, and almost all essential services depend on them for effective operation. The software is no longer an independent or stand-alone piece of code written by a developer but rather a collection of packages designed by multiple developers across the globe. Ensuring the reliability and resilience of these systems is crucial since emerging threats target software supply chains, as demonstrated by the widespread SolarWinds hack in late 2020. These supply chains extend beyond patches and updates, involving distribution networks throughout the software lifecycle. Industries like smart grids, manufacturing, healthcare, and finance rely on interconnected software systems and their dependencies for effective functioning. To secure software modules and add-ons, robust distribution architectures are essential. The proposed chapter enhances the existing delivery frameworks by including a permissioned ledger with Proof of Authority consensus and multi-party signatures. The proposed system aims to prevent attacks while permitting every stakeholder to verify the same. Critical systems can interface with the secure pipeline without disrupting existing functionalities, thus preventing the cascading effect of an attack at any point in the supply chain.
title Securing the Software Package Supply Chain for Critical Systems
topic Software Engineering
Cryptography and Security
url https://arxiv.org/abs/2505.22023