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highMemory Corruption

CVE-2026-9637

CVE-2026-9637 — CompactLogix® 5380 / ControlLogix® 5580 - Multiple Vulnerabilities

A denial-of-service security issue exists in the affected Logix platforms listed in the table above. The security issue stems from improper validation of input length during CIP message processing. This can result in a major nonrecoverable fault (MNRF), requiring a power cycle to recover

Published Updated Sources: NVD, Rockwell Automation (CNA), SOCRadar CTI

Triage

Is it exploited, how likely is exploitation, what does it touch, and how severe do the scoring sources call it.

Exploitation

Unreported

no source claims exploitation

EPSS

0%

ahead of 0% of scored CVEs

Affects

Rockwell Automation

CompactLogix® 5380 / ControlLogix® 5580

CVSS base

8.7

high

Remediation

The vendor's own words where we have them.

Upgrade CompactLogix® 5380 / ControlLogix® 5580 to a fixed release. Apply vendor patches per advisory and restrict external exposure of the affected component until patched.

First 24 hours

Ordered from the record's own fields — exposure first, because you cannot patch what you have not found.

  • Identify exposed assets running affected vendor/product/version combinations.
  • Prioritize based on EPSS, PoC availability, and external exposure.
  • Search available logs for exploit probes, errors, authentication anomalies, or suspicious child processes matching the vulnerability class.

Affected scope

Vendor, product and version as the advisories word them.

VendorProductVersionsStatus
Rockwell AutomationCompactLogix® 5380 / ControlLogix® 5580V33 and prior, V34.011-V34.014, V35.011-V35.013, V36.011-V36.012Vulnerable

Attack characteristics

The CVSS vector, decoded. It describes the attack, not your exposure to it.

Attack Complexity

Low

Attack Vector

Network

Privileges Req

None

User Interaction

None

Every base score collected

Sources score independently and disagree; each row says who scored it and under which version.

ScoreVersionSeverityExpl.ImpactSource
8.7CVSS 4.0highRockwell Automation (CNA)

CVSS:4.0/AV:N/AC:L/AT:N/PR:N/UI:N/VC:N/VI:N/VA:H/SC:N/SI:N/SA:N

What this weakness leads to

MITRE's own consequences and mitigations for the weakness class — the authority's wording, not guidance derived from the CVSS vector.

MITRE

CWE-119 · Improper Restriction of Operations within the Bounds of a Memory Buffer

  • Execute Unauthorized Code or Commands
  • Modify Memory
  • Read Memory
  • DoS: Crash, Exit, or Restart

Mitigation: Use a language that does not allow this weakness to occur or provides constructs that make this weakness easier to avoid. For example, many languages that perform their own memory management, such as Java and Perl, are not subject to buffer overflows. Other languages, such as Ada and C#, typically provide overflow protection, but the protection can be disabled by the programmer. Be wary that a language's interface to native code may still be subject to overflows, even if the language itself is theoretically safe.

Weakness & attack patterns

  • CWE-119Improper Restriction of Operations within a Memory Buffer

Attack patterns reported against this CVE. The ATT&CK techniques below are inferred from its weakness class.

CAPEC-10 · Buffer Overflow via Environment VariablesCAPEC-100 · Overflow BuffersCAPEC-123 · Buffer ManipulationCAPEC-14 · Client-side Injection-induced Buffer OverflowCAPEC-24 · Filter Failure through Buffer OverflowCAPEC-42 · MIME ConversionCAPEC-44 · Overflow Binary Resource FileCAPEC-45 · Buffer Overflow via Symbolic LinksCAPEC-46 · Overflow Variables and TagsCAPEC-47 · Buffer Overflow via Parameter ExpansionCAPEC-8 · Buffer Overflow in an API CallCAPEC-9 · Buffer Overflow in Local Command-Line Utilities

Detection

Read off the CVSS vector and the weakness class. Starting points, not rules we have tested.

  • Prioritize edge telemetry for network-reachable CompactLogix® 5380 / ControlLogix® 5580.
web/proxy/WAF logsapplication logsnetwork IDS/IPS

Timeline

What happened to this CVE, newest first — with the readings a source repeats on a schedule counted underneath rather than listed.

  1. 2026
  2. Added · CVSS 3.1 8.7 (AV:N)

    Sep 1, 2026 · NVD

  3. Initial · CVE published

    Sep 1, 2026 · NVD

  4. CVE published by MITRE.

    Sep 1, 2026 · SOCRadar CTI

References

1 on the record

Elsewhere on this site

Not in any source we poll

Listed rather than left blank: an empty field and an unmeasured one look identical on screen, and only one is a reason to look elsewhere.

  • No confirmed IOCs, IP addresses, domains, file hashes, or malware artifacts supplied.
  • No organization-specific asset inventory, compensating-control status, or patch deployment evidence supplied.
  • No exploit packet captures, log samples, or incident case IDs supplied.
Answered from this record1

What should defenders know first?

CVE-2026-9637 is CompactLogix® 5380 / ControlLogix® 5580 - Multiple Vulnerabilities, a high vulnerability affecting CompactLogix® 5380 / ControlLogix® 5580 from Rockwell Automation. The current evidence does not list it in CISA KEV, and the exploit status is: Active exploitation is not confirmed from current sources for CVE-2026-9637. Public exploit evidence is: A public PoC is not confirmed from current sources for CVE-2026-9637. The affected-version evidence is listed in the key facts and affected products tables. Defenders should first verify whether exposed or business-critical assets run those versions, then apply vendor patches or mitigations, restrict reachable attack surface, and preserve logs for detection review. CVSS 8.7 describes technical severity, while EPSS 0% helps estimate near-term exploit likelihood; neither replaces asset context. Unknown fields should remain explicit in tickets, and threat actor, IOC, victimology, or payload claims should not be added unless a cited source supports them. Monitor CISA KEV, vendor advisories, NVD changes, public PoC repositories, and internal telemetry for update triggers.