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Old Docker authorization bypass pops up despite previous patch

Researchers warn about a new vulnerability that allows attackers to bypass authorization plug-ins in Docker Engine and gain root-level access to host systems.…

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Researchers warn about a new vulnerability that allows attackers to bypass authorization plug-ins in Docker Engine and gain root-level access to host systems. The flaw has the same root cause as another authorization bypass vulnerability patched in 2024, but the underlying problem has been known since 2016.





Tracked as CVE-2026-34040, the new vulnerability is rated 8.8 (high) on the CVSS scale and was fixed in Docker Engine 29.3.1 and Docker Desktop 4.66.1. If updates cannot be deployed immediately, malicious requests may possibly be filtered out by limiting request size to 512KB.





“The Docker API is accessed over the network (TCP/TLS) in most enterprise deployments, CI/CD systems, and management platforms,” researchers from security firm Cyera said in a report. “This is a single HTTP request with no race conditions or timing dependencies. If an attacker (or AI agent) has Docker API access restricted by an AuthZ plugin, they can bypass it.”





The 10-year-old AuthZ gap





The Docker Engine doesn’t have role-based authorization by default, which means that any user who can access the Docker API can execute all Docker commands. To enforce more granular controls, enterprises rely on various third-party and custom Docker AuthZ plug-ins, a feature that has existed in Docker Engine since 2016.





In 2018, researchers realized attackers could bypass all restrictions enforced by AuthZ plug-ins by sending requests with Content-Length set to 0 to the Docker daemon, which would then forward them to the AuthZ plugins by stripping the request bodies. The plug-ins would automatically approve such requests thinking there was no command in it, but the Docker Engine would then execute the commands in the request body that was stripped.





The issue was fixed in Docker Engine v18.09.1 released in January 2019, but the fix was not included in later Docker Engine versions starting with 19.03, causing a regression and a new vulnerability tracked as CVE-2024-41110. The flaw was eventually patched in July 2024 in versions 23.0.14, 26.1.4, and 27.1.0.





No one checked oversized requests





While the previous authorization bypass was triggered when request Content-Length was set to 0, no one checked at the time what would happen in the same function if the request exceeded a certain size.





“When an API request body exceeds 1MB, Docker’s middleware silently drops the body before your authorization plugin sees it,” the Cyera researchers found. “The plugin, seeing nothing to inspect, approves the request. The Docker daemon then processes the full body and creates the requested container, potentially granting full host filesystem access.”





This is essentially the same bug class with the same root cause, but using 1MB request padding instead of zero length. Because the AuthZ plug-in doesn’t get to inspect and block the request, this means attackers would have access to all Docker Engine commands, including the ability to create privileged containers with root access.





Usually the most serious Docker vulnerabilities are those that allow attackers to escape from inside containers, but this flaw happens before the container is even created so any in-container monitoring tools would not catch the exploit attempt. Administrators can, however, route API requests through a reverse proxy that blocks all requests over 512KB for example, as a temporary mitigation.





Exposed Docker API interfaces are constantly targeted by botnets and attackers to hijack cloud instances and servers especially since Docker is used in over 90% of enterprise environments worldwide.





The Cyera researchers recommend searching daemon logs for signs of potential exploitation by using journalctl -u docker | grep “Request body is larger than”. They also advise reviewing which automated systems have Docker API access and prioritizing hosts with access to production credentials or regulated data for immediate patching.


Cyber Threat Intelligence & Forensik

ATT&CK-Navigator · IoC-Radar · Exploit-Belege
IoC Intelligence
2 Indikatoren · Defanged · STIX 2.1
CVE-2026-34040CVE-2024-41110
CTI Threat Relationship Graph
Akteure · Techniken · Beziehungen
2 Knoten · 1 Relationen
CVE / Incident Threat Actor Software MITRE ATT&CK CWE Weakness IoC
Exploit & Remediation Lifecycle
PoC · Ausnutzung · Patch-Stufen
CVE-2024-41110
Entdeckung & Meldung
Schwachstelle identifiziert & registriert
Sicherheits-Advisory
Offizielle Warnung & CVE-Zuweisung
Exploit / PoC
Öffentlicher Nachweis/Code verfügbar (Exploit-DB/EUVD)
In-the-Wild Ausnutzung
Keine Massenausnutzung gemeldet
Patch & Schutzmaßnahmen
Upstream-Patch-Referenz vorhanden (Commit-/Advisory-Link)
Exploit Weaponization & PoC Radar
Nur belegte Faktoren · kein Score-Theater
HIGH EXPLOITABLE · Index 50/100
Exploit-DB
Kein EDB-Eintrag
Interaktion
0-Click
Authentifizierung
Erforderlich

Compliance, SLA & Vendor Adherence

Advisory-Prüfung · Score-Einordnung · Fristen
CVSS 9.9CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:C/C:H/I:H/A:H
Impact: 6.05 | Exploitability: 3.11
AVN
Netzwerk (Remote)
Aus der Ferne über das Internet ohne Vorbedingungen exploitbar.
ACL
Niedrig (Low)
Wiederholbar und deterministisch ohne spezielle Race Conditions ausnutzbar.
PRL
Niedrig (Standard-Benutzer)
Erfordert Anmeldedaten eines regulären Benutzers.
UIN
Keine (Zero-Click)
Autonom ohne menschliches Zutun ausführbar (Zero-Click Exploitation).
SC
Verändert (Scope Changed)
Kann auf übergeordnete Systeme oder Hypervisor/Cloud-Ebene übergreifen (Sandbox Escape).
CH
Hoch (Totaler Abfluss)
Vollständiger Zugriff auf alle sensiblen Datenbank- und Speicherinhalte.
IH
Hoch (Volle Manipulation)
Vollständige Modifikation von Dateien, Parametern oder Ausführung von Code.
AH
Hoch (Totaler Ausfall / DoS)
Dienst oder Server wird komplett unbrauchbar (Denial of Service).
BSI-Warnung (Deutschland)CVE-2026-34040
docker: Mehrere Schwachstellen hoch25.03.2026
CISA-SSVC-Triage (vulnrichment)CVE-2026-34040
Exploitation: none (Keine bekannte Ausnutzung)Automatable: no (Nicht automatisierbar)Technical Impact: total (Vollständig)
Quelle: CISA-ADP vulnrichment · Stand 2026-03-31T15:34:44.687422Z · CISA Coordinator
Advisory Radar

Hersteller-Sicherheitsmeldungen & Patch-Status

In herstellerseitiger Prüfung
Handlungsempfehlung für Administratoren

Hersteller-Advisory noch nicht formal hinterlegt. Regelmäßiges Re-Scanning der CTI-Quellen anberaumt.

Referenzen aus der Primärquelle („Verifiziert" nur bei Hersteller-Domäne):
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