CVE-2026-15741: Security vulnerability
CVE-2026-15741 affects the affected technology before PostgreSQL 18.6, 17.11, 16.15, 15.19, and 14.24. The available advisory information identifies before PostgreSQL 18.6, 17.11, 16.15, 15.19, and 14.24 as affected versions.
What happened
SQL injection in PostgreSQL EXTRACT() deparse allows an object owner to execute arbitrary SQL as a superuser via a hostile object definition. CVE-2026-15741 affects the affected technology before PostgreSQL 18 6, 17 11, 16 15, 15 19, and 14 24. CVE-2026-15741 currently carries a HIGH 8 8 severity signal in the retained vulnerability data.
A security weakness in the affected technology is being tracked as CVE-2026-15741. The available advisory information identifies before PostgreSQL 18 6, 17 11, 16 15, 15 19, and 14 24 as affected versions. Attacks affect expression deparse consumers broadly, including pg_dump, psql commands like \sf, and any similar usage in non-core tools.
The flaw is described as a SQL injection vulnerability. SQL injection occurs when untrusted input changes the meaning of a database query.
Editorial note: this News Brief follows the available evidence and adds length only when additional facts or useful context are available. Where public reporting does not establish a specific victim sequence, CyberDeltaForce does not present one as fact.
What the reporting and advisory establish
SQL injection in PostgreSQL EXTRACT() deparse allows an object owner to execute arbitrary SQL as a superuser via a hostile object definition.
Attacks affect expression deparse consumers broadly, including pg_dump, psql commands like \sf, and any similar usage in non-core tools.
CVE-2026-15741 currently carries a HIGH 8.8 severity signal in the retained vulnerability data.
A security weakness in the affected technology is being tracked as CVE-2026-15741. The available advisory information identifies before PostgreSQL 18.6, 17.11, 16.15, 15.19, and 14.24 as affected versions. The flaw is described as a SQL injection vulnerability. SQL injection occurs when untrusted input changes the meaning of a database query. Successful exploitation can expose, alter or delete data and can sometimes become a wider application compromise. Attacks affect expression deparse consumers broadly, including pg_dump, psql commands like \sf, and any similar usage in non-core tools.
What this means for your environment
Move from the published facts to the technical path, exposure conditions and defensive decisions that matter in a real environment.
Attack & Exploitation Path
The sequence below shows how the vulnerability can be reached and what successful exploitation can produce. Each stage is labeled by evidence status.
the affected technology before PostgreSQL 18.6, 17.11, 16.15, 15.19, and 14.24 is present and the vulnerable function or code path is reachable in normal application use.
attacker-controlled input or the relevant workflow reaches the SQL injection condition described in the advisory.
the SQL injection condition is triggered inside the affected technology, creating the security boundary failure described by the advisory.
successful exploitation reaches the confidentiality, integrity or availability impact described in the vendor or vulnerability record.
Why this matters to you
CVE-2026-15741 matters because the practical risk is not the score alone — it is whether the affected technology or service before PostgreSQL 18 exists in your environment and whether the reported trigger or exposure path can reach it. The current severity is HIGH 8.8. No exploitation flag is currently present in the CDF data, but that does not remove the need to validate affected systems.
Does this deserve attention in my environment?
Check the conditions below against your use of the affected technology or service before PostgreSQL 18.
Select the conditions that are true in your environment. Leaving a condition unselected does not mean you are safe — it only means you have not marked it as applicable.
- Search endpoint, software and asset inventory for the affected technology or service before PostgreSQL 18.
- Confirm the vendor-recommended fixed version or mitigation and verify deployment, not just assignment, across affected assets.
- Review relevant endpoint, application, network or identity telemetry for activity associated with exploitation of the affected component.
- Track vendor and government guidance for any change in exploitation status while remediation is underway.
What remains unconfirmed
- Available reporting does not currently indicate exploitation, but that can change as vendor, government or threat-intelligence reporting develops.
Sources & References
Original reporting and technical references are kept here for readers who want to verify the facts. Publisher names stay out of the reading flow above.