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openssl openssl 1.0.1g vulnerabilities and exploits
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383
VMScore
CVE-2014-5139
The ssl_set_client_disabled function in t1_lib.c in OpenSSL 1.0.1 prior to 1.0.1i allows remote SSL servers to cause a denial of service (NULL pointer dereference and client application crash) via a ServerHello message that includes an SRP ciphersuite without the required negotia...
Openssl Openssl 1.0.1
Openssl Openssl 1.0.1h
Openssl Openssl 1.0.1c
Openssl Openssl 1.0.1g
Openssl Openssl 1.0.1a
Openssl Openssl 1.0.1d
Openssl Openssl 1.0.1b
Openssl Openssl 1.0.1e
Openssl Openssl 1.0.1f
357
VMScore
CVE-2010-5298
Race condition in the ssl3_read_bytes function in s3_pkt.c in OpenSSL up to and including 1.0.1g, when SSL_MODE_RELEASE_BUFFERS is enabled, allows remote malicious users to inject data across sessions or cause a denial of service (use-after-free and parsing error) via an SSL conn...
Openssl Openssl
Mariadb Mariadb
Fedoraproject Fedora 20
Fedoraproject Fedora 19
Suse Linux Enterprise Server 12
Suse Linux Enterprise Software Development Kit 12
Suse Linux Enterprise Desktop 12
Suse Linux Enterprise Workstation Extension 12
1 Article
234
VMScore
CVE-2013-0169
The TLS protocol 1.1 and 1.2 and the DTLS protocol 1.0 and 1.2, as used in OpenSSL, OpenJDK, PolarSSL, and other products, do not properly consider timing side-channel attacks on a MAC check requirement during the processing of malformed CBC padding, which allows remote malicious...
Openssl Openssl
Oracle Openjdk 1.7.0
Oracle Openjdk 1.6.0
Polarssl Polarssl 0.14.2
Polarssl Polarssl 0.11.0
Polarssl Polarssl 1.0.0
Polarssl Polarssl 0.13.1
Polarssl Polarssl 1.1.3
Polarssl Polarssl 0.12.1
Polarssl Polarssl 0.99
Polarssl Polarssl 0.11.1
Polarssl Polarssl 1.1.4
Polarssl Polarssl 0.14.0
Polarssl Polarssl 1.1.1
Polarssl Polarssl 1.1.2
Polarssl Polarssl 0.14.3
Polarssl Polarssl 1.1.0
Polarssl Polarssl 0.10.1
Polarssl Polarssl 0.12.0
Polarssl Polarssl 0.10.0
11 Github repositories
169
VMScore
CVE-2016-0702
The MOD_EXP_CTIME_COPY_FROM_PREBUF function in crypto/bn/bn_exp.c in OpenSSL 1.0.1 prior to 1.0.1s and 1.0.2 prior to 1.0.2g does not properly consider cache-bank access times during modular exponentiation, which makes it easier for local users to discover RSA keys by running a c...
Openssl Openssl 1.0.1m
Openssl Openssl 1.0.2a
Openssl Openssl 1.0.1j
Openssl Openssl 1.0.1
Openssl Openssl 1.0.1h
Openssl Openssl 1.0.2e
Openssl Openssl 1.0.1r
Openssl Openssl 1.0.2b
Openssl Openssl 1.0.1c
Openssl Openssl 1.0.1g
Openssl Openssl 1.0.1a
Openssl Openssl 1.0.1d
Openssl Openssl 1.0.2c
Openssl Openssl 1.0.2
Openssl Openssl 1.0.1p
Openssl Openssl 1.0.1k
Openssl Openssl 1.0.1b
Openssl Openssl 1.0.1n
Openssl Openssl 1.0.1q
Openssl Openssl 1.0.1e
Openssl Openssl 1.0.1l
Openssl Openssl 1.0.1f
1 Github repository
169
VMScore
CVE-2014-0076
The Montgomery ladder implementation in OpenSSL up to and including 1.0.0l does not ensure that certain swap operations have a constant-time behavior, which makes it easier for local users to obtain ECDSA nonces via a FLUSH+RELOAD cache side-channel attack.
Openssl Openssl 0.9.7
Openssl Openssl 0.9.5a
Openssl Openssl 0.9.8b
Openssl Openssl 0.9.7l
Openssl Openssl 0.9.6i
Openssl Openssl 0.9.8m
Openssl Openssl 0.9.3
Openssl Openssl 0.9.8c
Openssl Openssl 1.0.0c
Openssl Openssl 1.0.0i
Openssl Openssl 0.9.7c
Openssl Openssl 1.0.0
Openssl Openssl 0.9.5
Openssl Openssl 0.9.8n
Openssl Openssl 0.9.8p
Openssl Openssl 0.9.6d
Openssl Openssl 0.9.1c
Openssl Openssl 0.9.6
Openssl Openssl 0.9.7j
Openssl Openssl 0.9.6a
Openssl Openssl 0.9.8e
Openssl Openssl 0.9.8u
1 Github repository
VMScore
CVSSv2
CVSSv3
VMScore
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