Service crash via unchecked allocation
Published Mar 19, 2020 · Updated Aug 5, 2024
Null pointer dereference in Newlib before 3.3.0 allows remote authenticated users to interrupt service via crafted numeric processing. The __mdiff function allocates big integers with Balloc but dereferences _wds and _sign without checking for allocation failure, so a deliberately induced memory-exhaustion condition can crash the consuming process. The vulnerable path requires access to a caller that reaches __mdiff and sufficient control to trigger allocation failure; the documented impact is service interruption without confidentiality or integrity loss.
Summary
What happened
Null pointer dereference in Newlib before 3.3.0 allows remote authenticated users to interrupt service via crafted numeric processing. The __mdiff function allocates big integers with Balloc but dereferences _wds and _sign without checking for allocation failure, so a deliberately induced memory-exhaustion condition can crash the consuming process. The vulnerable path requires access to a caller that reaches __mdiff and sufficient control to trigger allocation failure; the documented impact is service interruption without confidentiality or integrity loss.
The record
- CVE
- CVE-2019-14877
- Published
- Mar 19, 2020
- Updated
- Aug 5, 2024
- Vendor
- Newlib Project
- Product
- Newlib
- Classifications
- CWE-476, T1489
- Attack vector
- network
- Privileges
- authenticated
Timeline
How it unfolded
- Mar 19, 2020CVE publishedPublication date reported by the CVE source.
- Aug 5, 2024Record updatedLatest update available in the CVE record.
Exploitability
Present is not the same as exploitable
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Is a vulnerable build present?
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- Affected versionversion=all newlib versions prior to 3.3.0
What conditions does exploitation require?
What is affected?
Attacks
What attackers are doing with it
Daily unique IPs observed by Shadowserver honeypots for known exploited vulnerabilities (KEVs). Missing observations do not establish an absence of attacks.
Public exploit references
No public exploit references are available in this record.
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Technologies
Your stack
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Your stack
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