1366 matches found
OpenJDK: insufficient Diffie-Hellman public key checks (JSSE, 7192392)
Unspecified vulnerability in the Java Runtime Environment JRE component in Oracle Java SE 7 through Update 11, 6 through Update 38, 5.0 through Update 38, and 1.4.240 and earlier, and OpenJDK 6 and 7, allows remote attackers to affect confidentiality and integrity via vectors related to JSSE. NOT...
Design/Logic Flaw
Unspecified vulnerability in the Java Runtime Environment JRE component in Oracle Java SE 7 through Update 11, 6 through Update 38, 5.0 through Update 38, and 1.4.240 and earlier, and OpenJDK 6 and 7, allows remote attackers to affect confidentiality and integrity via vectors related to JSSE. NOT...
CVE-2013-0443
Unspecified vulnerability in the Java Runtime Environment JRE component in Oracle Java SE 7 through Update 11, 6 through Update 38, 5.0 through Update 38, and 1.4.240 and earlier, and OpenJDK 6 and 7, allows remote attackers to affect confidentiality and integrity via vectors related to JSSE. NOT...
SuSE 11.1 Security Update : libopenssl (SAT Patch Number 6521)
This update adds libopenssl098-hmac packages, that, when installed, will enforce FIPS 140-2 self-test being run upon first use of the library. If FIPS mode is enforced, these new packages are required in order to enable FIPS mode successfully. The update also imposes limits on the parameters of a...
CVE-2011-5095
The Diffie-Hellman key-exchange implementation in OpenSSL 0.9.8, when FIPS mode is enabled, does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-1923...
CVE-2011-1923
The Diffie-Hellman key-exchange implementation in dhm.c in PolarSSL before 0.14.2 does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-5095...
CVE-2011-5095
The Diffie-Hellman key-exchange implementation in OpenSSL 0.9.8, when FIPS mode is enabled, does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-1923...
DEBIAN-CVE-2011-5095
The Diffie-Hellman key-exchange implementation in OpenSSL 0.9.8, when FIPS mode is enabled, does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-1923...
CVE-2011-5095
The Diffie-Hellman key-exchange implementation in OpenSSL 0.9.8, when FIPS mode is enabled, does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-1923...
CVE-2011-5095
The Diffie-Hellman key-exchange implementation in OpenSSL 0.9.8, when FIPS mode is enabled, does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-1923...
Design/Logic Flaw
The Diffie-Hellman key-exchange implementation in dhm.c in PolarSSL before 0.14.2 does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-5095...
Design/Logic Flaw
The Diffie-Hellman key-exchange implementation in OpenSSL 0.9.8, when FIPS mode is enabled, does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-1923...
CVE-2011-1923
Technical details about CVE-2011-1923 (PolarSSL DH parameter validation flaw) are not present in the provided connected documents. Please monitor for updates; current sources reference related CVE-2011-5095 but do not disclose product/impact specifics here.
CVE-2011-5095
The Diffie-Hellman key-exchange implementation in OpenSSL 0.9.8, when FIPS mode is enabled, does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-1923...
CVE-2011-1923
The Diffie-Hellman key-exchange implementation in dhm.c in PolarSSL before 0.14.2 does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-5095...
CVE-2011-5095
The Diffie-Hellman key-exchange implementation in OpenSSL 0.9.8, when FIPS mode is enabled, does not properly validate a public parameter, which makes it easier for man-in-the-middle attackers to obtain the shared secret key by modifying network traffic, a related issue to CVE-2011-1923...
DEBIAN-CVE-2011-4354
crypto/bn/bnnist.c in OpenSSL before 0.9.8h on 32-bit platforms, as used in stunnel and other products, in certain circumstances involving ECDH or ECDHE cipher suites, uses an incorrect modular reduction algorithm in its implementation of the P-256 and P-384 NIST elliptic curves, which allows...
SSL Perfect Forward Secrecy Cipher Suites Supported
The remote host supports the use of SSL ciphers that offer Perfect Forward Secrecy PFS encryption. These cipher suites ensure that recorded SSL traffic cannot be broken at a future date if the server's private key is compromised. C Tenable Network Security, Inc. include"compat.inc"; if descriptio...
OpenSSL < 0.9.8h Multiple Vulnerabilities
Binary data 801061.prm...
SSL Server Accepts Weak Diffie-Hellman Keys
The remote SSL/TLS server accepts a weak Diffie-Hellman DH public key value. This flaw may aid an attacker in conducting a man-in-the-middle MiTM attack against the remote server since it could enable a forced calculation of a fully predictable Diffie-Hellman secret. By itself, this flaw is not...