3448 matches found
security flaw
The SSL and TLS components for OpenSSL 0.9.6i and earlier, 0.9.7, and 0.9.7a allow remote attackers to perform an unauthorized RSA private key operation via a modified Bleichenbacher attack that uses a large number of SSL or TLS connections using PKCS 1 v1.5 padding that cause OpenSSL to leak...
DEBIAN-CVE-2003-0147
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...
CVE-2003-0147
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...
security flaw
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...
security flaw
The SSL and TLS components for OpenSSL 0.9.6i and earlier, 0.9.7, and 0.9.7a allow remote attackers to perform an unauthorized RSA private key operation via a modified Bleichenbacher attack that uses a large number of SSL or TLS connections using PKCS 1 v1.5 padding that cause OpenSSL to leak...
CVE-2003-0131
The SSL and TLS components for OpenSSL 0.9.6i and earlier, 0.9.7, and 0.9.7a allow remote attackers to perform an unauthorized RSA private key operation via a modified Bleichenbacher attack that uses a large number of SSL or TLS connections using PKCS 1 v1.5 padding that cause OpenSSL to leak...
Klima-Pokorny-Rosa attack on PKCS #1 v1.5 padding
On some conditions it's possible server's private key to be applied to attacker choosen ciphertext...
[OpenSSL Advisory] Klima-Pokorny-Rosa attack on PKCS #1 v1.5 padding
OpenSSL Security Advisory 19 March 2003 Klima-Pokorny-Rosa attack on RSA in SSL/TLS =========================================== Czech cryptologists Vlastimil Klima, Ondrej Pokorny, and Tomas Rosa have come up with an extension of the "Bleichenbacher attack" on RSA with PKCS 1 v1.5 padding as used...
Vulnerability in OpenSSL CVE-2003-0131
The SSL and TLS components allowed remote attackers to perform an unauthorized RSA private key operation via a modified Bleichenbacher attack that uses a large number of SSL or TLS connections using PKCS 1 v1.5 padding that caused OpenSSL to leak information regarding the relationship between...
CVE-2003-0147
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...
CVE-2003-0147
OpenSSL CVE-2003-0147 is documented as a timing-attack vulnerability where RSA private-key material can be inferred because RSA blinding is not used by default. The vulnerability arises from timing differences during Montgomery reductions and differing multiply routes (Karatsuba vs. normal), enab...
CVE-2003-0147
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...
Vulnerability in OpenSSL CVE-2003-0147
RSA blinding was not enabled by default, which could allow local and remote attackers to obtain a 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...
OpenSSL < 0.9.6j / 0.9.7b Multiple Vulnerabilities
According to its banner, the remote host is using a version of OpenSSL older than 0.9.6j or 0.9.7b. This version is vulnerable to a timing-based attack that could allow an attacker to guess the content of fixed data blocks and may eventually be able to guess the value of the private RSA key of th...
kgpg uncrypted private key
Passphrase not used if keys are generated through wizard...
Signed content spoofing in ECDSA
Standard allows to generate private key in a way it will produce same signature for 2 different documents...
GOST 34.10/GOST 34.19 digital signature weakness
There is a weakness leading to ability to create "universal" signature without having a key. Also, it's possible to spoof content in case more than one key is allowed. It's also possible to deliberately create "weak" signature which will lead to private key compromise...
CVE-2001-0381
The OpenPGP PGP standard allows an attacker to determine the private signature key via a cryptanalytic attack in which the attacker alters the encrypted private key file and captures a single message signed with the signature key...
SSH1 may generate weak passphrase when using Secure RPC
Overview The secure-RPC feature of the SSH1 client in Solaris sometimes encrypts the SSH private key file with a weak passphrase, which can be determined by an attacker and used to recover the SSH private keys. Other versions of the SSH client running on non-Solaris platforms are not affected by...
CVE-2001-0259
ssh-keygen in ssh 1.2.27 - 1.2.30 with Secure-RPC can allow local attackers to recover a SUN-DES-1 magic phrase generated by another user, which the attacker can use to decrypt that user's private key file...