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Meshtastic firmware versions prior to 2.7.23.b246bcd contain an input validation vulnerability where a malformed User.long_name with improper character encoding can cause BLE management failures on iOS devices. This malformed name can occur naturally due to buffer truncation and leads the iOS app to fail parsing the node database, causing BLE sync loops and loss of device control. The issue propagates through the mesh network, potentially affecting many users. Firmware version 2.7.23.b246bcd and later include input sanitization and regression tests to address this problem, and app updates improve handling of malformed encodings. Join the discussion | CVE Database V5 | 07/19/2026, 23:16:04 UTC Added: 07/19/2026, 23:42:23 UTC |
0 Meshtastic is an open source mesh networking solution. Prior to version 2.7.21.1370b23, the Meshtastic GitHub repository's main_matrix.yml workflow is triggered by pull_request_target and multiple jobs check out the attacker's fork code and execute it with access to repository secrets and elevated GITHUB_TOKEN permissions. No approval gate exists. Pull requests from external users with author_association: "NONE" triggered the CI workflow automatically. The workflow directly executes attacker-controlled files from the fork checkout. This issue could have resulted in supply chain compromise, self-hosted runner compromise, and/or repository takeover for the repo. This issue is separate from GHSA-6mwm-v2vv-pp96, which addressed a command injection via github.head_ref in the setup job of the same workflow. That fix correctly moved to environment variables. However, the more critical fork checkout vulnerability across the check, build, and build-debian-src jobs was not addressed. Version 2.7.21.1370b23 contains a patch for thie issue. Join the discussion | CVE Database V5 | 07/19/2026, 23:06:32 UTC Added: 07/19/2026, 23:27:17 UTC |
Meshtastic is an open source mesh networking solution. In the current Meshtastic architecture, a Node is identified by their NodeID, generated from the MAC address, rather than their public key. This aspect downgrades the security, specifically by abusing the HAM mode which doesn't use encryption. An attacker can, as such, forge a NodeInfo on behalf of a victim node advertising that the HAM mode is enabled. This, in turn, will allow the other nodes on the mesh to accept the new information and overwriting the NodeDB. The other nodes will then only be able to send direct messages to the victim by using the shared channel key instead of the PKC. Additionally, because HAM mode by design doesn't provide any confidentiality or authentication of information, the attacker could potentially also be able to change the Node details, like the full name, short code, etc. To keep the attack persistent, it is enough to regularly resend the forged NodeInfo, in particular right after the victim sends their own. A patch is available in version 2.7.6.834c3c5. Join the discussion | CVE Database V5 | 01/27/2026, 23:28:28 UTC Added: 01/28/2026, 15:20:59 UTC |
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