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Attacker Value
Unknown
CVE-2006-2940
Disclosure Date: September 28, 2006 (last updated October 04, 2023)
OpenSSL 0.9.7 before 0.9.7l, 0.9.8 before 0.9.8d, and earlier versions allows attackers to cause a denial of service (CPU consumption) via parasitic public keys with large (1) "public exponent" or (2) "public modulus" values in X.509 certificates that require extra time to process when using RSA signature verification.
0
Attacker Value
Unknown
CVE-2006-4339
Disclosure Date: September 05, 2006 (last updated October 04, 2023)
OpenSSL before 0.9.7, 0.9.7 before 0.9.7k, and 0.9.8 before 0.9.8c, when using an RSA key with exponent 3, removes PKCS-1 padding before generating a hash, which allows remote attackers to forge a PKCS #1 v1.5 signature that is signed by that RSA key and prevents OpenSSL from correctly verifying X.509 and other certificates that use PKCS #1.
0
Attacker Value
Unknown
CVE-2005-1797
Disclosure Date: May 26, 2005 (last updated February 22, 2025)
The design of Advanced Encryption Standard (AES), aka Rijndael, allows remote attackers to recover AES keys via timing attacks on S-box lookups, which are difficult to perform in constant time in AES implementations.
0
Attacker Value
Unknown
CVE-2004-0975
Disclosure Date: February 09, 2005 (last updated February 22, 2025)
The der_chop script in the openssl package in Trustix Secure Linux 1.5 through 2.1 and other operating systems allows local users to overwrite files via a symlink attack on temporary files.
0
Attacker Value
Unknown
CVE-2004-0112
Disclosure Date: November 23, 2004 (last updated February 22, 2025)
The SSL/TLS handshaking code in OpenSSL 0.9.7a, 0.9.7b, and 0.9.7c, when using Kerberos ciphersuites, does not properly check the length of Kerberos tickets during a handshake, which allows remote attackers to cause a denial of service (crash) via a crafted SSL/TLS handshake that causes an out-of-bounds read.
0
Attacker Value
Unknown
CVE-2004-0079
Disclosure Date: November 23, 2004 (last updated February 22, 2025)
The do_change_cipher_spec function in OpenSSL 0.9.6c to 0.9.6k, and 0.9.7a to 0.9.7c, allows remote attackers to cause a denial of service (crash) via a crafted SSL/TLS handshake that triggers a null dereference.
0
Attacker Value
Unknown
CVE-2004-0081
Disclosure Date: November 23, 2004 (last updated February 22, 2025)
OpenSSL 0.9.6 before 0.9.6d does not properly handle unknown message types, which allows remote attackers to cause a denial of service (infinite loop), as demonstrated using the Codenomicon TLS Test Tool.
0
Attacker Value
Unknown
CVE-2003-0851
Disclosure Date: December 01, 2003 (last updated February 22, 2025)
OpenSSL 0.9.6k allows remote attackers to cause a denial of service (crash via large recursion) via malformed ASN.1 sequences.
0
Attacker Value
Unknown
CVE-2002-1568
Disclosure Date: November 17, 2003 (last updated February 22, 2025)
OpenSSL 0.9.6e uses assertions when detecting buffer overflow attacks instead of less severe mechanisms, which allows remote attackers to cause a denial of service (crash) via certain messages that cause OpenSSL to abort from a failed assertion, as demonstrated using SSLv2 CLIENT_MASTER_KEY messages, which are not properly handled in s2_srvr.c.
0
Attacker Value
Unknown
CVE-2003-0147
Disclosure Date: March 31, 2003 (last updated February 22, 2025)
OpenSSL does not use RSA blinding by default, which allows local and remote attackers to obtain the server's private key by determining factors using timing differences on (1) the number of extra reductions during Montgomery reduction, and (2) the use of different integer multiplication algorithms ("Karatsuba" and normal).
0