[Forgot Password]
Login  Register Subscribe

30479

 
 

423868

 
 

250770

 
 

909

 
 

196157

 
 

282

Paid content will be excluded from the download.


Download | Alert*
CVE
view JSON

CVE-2022-40735Date: (C)2022-11-16   (M)2024-05-09


The Diffie-Hellman Key Agreement Protocol allows use of long exponents that arguably make certain calculations unnecessarily expensive, because the 1996 van Oorschot and Wiener paper found that "(appropriately) short exponents" can be used when there are adequate subgroup constraints, and these short exponents can lead to less expensive calculations than for long exponents. This issue is different from CVE-2002-20001 because it is based on an observation about exponent size, rather than an observation about numbers that are not public keys. The specific situations in which calculation expense would constitute a server-side vulnerability depend on the protocol (e.g., TLS, SSH, or IKE) and the DHE implementation details. In general, there might be an availability concern because of server-side resource consumption from DHE modular-exponentiation calculations. Finally, it is possible for an attacker to exploit this vulnerability and CVE-2002-20001 together.

CVSS Score and Metrics +CVSS Score and Metrics -

CVSS V3 Severity:CVSS V2 Severity:
CVSS Score : 7.5CVSS Score :
Exploit Score: 3.9Exploit Score:
Impact Score: 3.6Impact Score:
 
CVSS V3 Metrics:CVSS V2 Metrics:
Attack Vector: NETWORKAccess Vector:
Attack Complexity: LOWAccess Complexity:
Privileges Required: NONEAuthentication:
User Interaction: NONEConfidentiality:
Scope: UNCHANGEDIntegrity:
Confidentiality: NONEAvailability:
Integrity: NONE 
Availability: HIGH 
  
Reference:
https://dheatattack.gitlab.io/
https://gist.github.com/c0r0n3r/9455ddcab985c50fd1912eabf26e058b
https://github.com/mozilla/ssl-config-generator/issues/162
https://ieeexplore.ieee.org/document/10374117
https://link.springer.com/content/pdf/10.1007/3-540-68339-9_29.pdf
https://nvlpubs.nist.gov/nistpubs/SpecialPublications/NIST.SP.800-57pt1r5.pdf
https://raw.githubusercontent.com/CVEProject/cvelist/9d7fbbcabd3f44cfedc9e8807757d31ece85a2c6/2022/40xxx/CVE-2022-40735.json
https://www.researchgate.net/profile/Anton-Stiglic-2/publication/2401745_Security_Issues_in_the_Diffie-Hellman_Key_Agreement_Protocol/links/546c144f0cf20dedafd53e7e/Security-Issues-in-the-Diffie-Hellman-Key-Agreement-Protocol.pdf
https://www.rfc-editor.org/rfc/rfc3526
https://www.rfc-editor.org/rfc/rfc4419
https://www.rfc-editor.org/rfc/rfc5114#section-4
https://www.rfc-editor.org/rfc/rfc7919#section-5.2

CWE    1
CWE-400
OVAL    1
oval:org.secpod.oval:def:89048942

© SecPod Technologies