User identification via point-at-infinity verification failure
Published Jun 2, 2020 · Updated Aug 4, 2024
Improper ECDSA signature verification in fastecdsa before 2.1.2 allows attackers to infer user identities via extreme-value P-256 signatures. The point addition and doubling code in src/curveMath.c does not recognize the identity element, so extreme k and inverse-s values make valid signatures fail verification. Applications must use P-256 and expose distinguishable verification outcomes; the bounded consequence is context-dependent user identification.
Summary
What happened
Improper ECDSA signature verification in fastecdsa before 2.1.2 allows attackers to infer user identities via extreme-value P-256 signatures. The point addition and doubling code in src/curveMath.c does not recognize the identity element, so extreme k and inverse-s values make valid signatures fail verification. Applications must use P-256 and expose distinguishable verification outcomes; the bounded consequence is context-dependent user identification.
The record
- CVE
- CVE-2020-12607
- Published
- Jun 2, 2020
- Updated
- Aug 4, 2024
- Vendor
- Unknown vendor
- Product
- Unknown product
- Classifications
- CWE-347
- Attack vector
- network
- Privileges
- unauthenticated
Timeline
How it unfolded
- Jun 2, 2020CVE publishedPublication date reported by the CVE source.
- Aug 4, 2024Record updatedLatest update available in the CVE record.
Exploitability
Present is not the same as exploitable
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What conditions does exploitation require?
What is affected?
Affected products and versions are unavailable in this record.
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.
Weakness, pattern, technique
Public exploit references
- ECDSA verification fails for extreme value in k and s^-1proof of concept · demonstrated
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Technologies
Your stack
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Your stack
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