CVE-2006-0121
Overview
CVE-2006-0121 is a known-severity vulnerability affecting ibm lotus_domino. It was published on January 9, 2006.
Technical Description
Multiple memory leaks in IBM Lotus Notes and Domino Server before 6.5.5 allow attackers to cause a denial of service (memory consumption and crash) via unknown vectors related to (1) unspecified vectors during the SSL handshake (SPR# MKIN67MQVW), (2) the stash file during the SSL handshake (SPR# MKIN693QUT), and possibly other vectors. NOTE: due to insufficient information in the original vendor advisory, it is not clear whether there is an attacker role in other memory leaks that are specified in the advisory.
Remediation
Check the references section for vendor advisories and patches from ibm. Update lotus_domino to the latest patched version. If immediate patching is not possible, review the CVSS vector to understand the attack surface and apply compensating controls such as network segmentation or access restrictions.
Affected Products
| Vendor | Product | Versions | Status |
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References
Frequently Asked Questions
What is CVE-2006-0121?
CVE-2006-0121 is a known-severity vulnerability affecting ibm lotus_domino. It was published on January 9, 2006.
How severe is CVE-2006-0121?
CVSS score information is not yet available for this vulnerability. Check back as the CVE record is updated by NVD analysts.
How do I fix or remediate CVE-2006-0121?
Check the references section for vendor advisories and patches from ibm. Update lotus_domino to the latest patched version. If immediate patching is not possible, review the CVSS vector to understand the attack surface and apply compensating controls such as network segmentation or access restrictions.
How can CyberStrike help with CVE-2006-0121?
CyberStrike's AI-powered security agents can automatically detect CVE-2006-0121 across your infrastructure using autonomous pentesting, DAST scanning, and HackBrowser. The platform continuously monitors for known vulnerabilities and provides actionable remediation guidance prioritized by real-world exploitability.
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