Severity by source
AV:A/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:N
Adjacent vector confirmed by wireless registration protocol context; no privileges or interaction required; high C and I reflect authentication bypass enabling data access and state manipulation; no availability impact per description.
Primary rating from Vendor (qualcomm).
CVSS VectorVendor: qualcomm
Lifecycle Timeline
2DescriptionCVE.org
Cryptographic Issue while processing registration requests with malformed or missing authentication parameters.
AnalysisAI
Authentication bypass in Qualcomm Snapdragon SoCs allows adjacent network attackers to exploit a cryptographic flaw during registration request processing, yielding high confidentiality and integrity compromise without requiring any privileges or user interaction. The flaw, rooted in CWE-306 (Missing Authentication for Critical Function), occurs when registration requests carry malformed or absent authentication parameters, causing the cryptographic subsystem to proceed without validating caller identity. No public exploit has been identified at time of analysis and Qualcomm has not confirmed active exploitation, but the CVSS 8.1 score and zero-privilege adjacent-network profile represent meaningful risk for devices on shared wireless segments.
Technical ContextAI
The affected product is the Qualcomm Snapdragon SoC family (CPE: cpe:2.3:a:qualcomm,_inc.:snapdragon:*:*:*:*:*:*:*:*), which powers a broad range of Android smartphones, IoT endpoints, automotive systems, and connected devices. The root cause is CWE-306 (Missing Authentication for Critical Function): the cryptographic processing path responsible for handling registration requests does not enforce authentication verification when input parameters are malformed or entirely absent, allowing the function to execute without confirming caller identity. The CVSS adjacent-network attack vector (AV:A) indicates the vulnerable registration protocol operates over a local wireless or network segment - consistent with Snapdragon's modem, Wi-Fi, or Bluetooth firmware stacks - rather than the open internet. The high confidentiality and integrity impacts (C:H/I:H) with no availability impact (A:N) suggest the bypass enables unauthorized read and write access to protected data or state, but does not disrupt service operation.
RemediationAI
The primary remediation is to apply the firmware update issued by Qualcomm in the August 2026 Security Bulletin, available at https://docs.qualcomm.com/product/publicresources/securitybulletin/august-2026-bulletin.html. Device OEMs (smartphone manufacturers, IoT vendors, automotive integrators) typically receive Qualcomm patches and redistribute them as device-specific firmware updates; end-users should apply any available OTA or firmware update from their device vendor that incorporates the August 2026 Qualcomm security fixes. An exact patched firmware version is not independently confirmable from the available data and must be verified against the Qualcomm bulletin and the relevant OEM advisory. As a compensating control pending patching, restricting devices to trusted wireless networks and avoiding shared or public Wi-Fi segments reduces adjacency-based exposure, since the AV:A vector requires local network segment access. Disabling non-essential wireless interfaces (e.g., Wi-Fi, Bluetooth) when not in use also reduces the attack surface, though this carries operational trade-offs for device usability.
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Same technique Authentication Bypass
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External POC / Exploit Code
Leaving vuln.today
EUVD-2026-52732
GHSA-fqrr-5g6m-c8hx