2084 matches found
CVE-2019-3739
RSA BSAFE Crypto-J versions prior to 6.2.5 are vulnerable to Information Exposure Through Timing Discrepancy vulnerabilities during ECDSA key generation. A malicious remote attacker could potentially exploit those vulnerabilities to recover ECDSA keys...
CVE-2019-3739
CVE-2019-3739 concerns RSA BSAFE Crypto-J versions prior to 6.2.5, where information exposure can occur via timing discrepancy during ECDSA key generation. The vulnerability could allow a remote attacker to recover ECDSA keys. The provided documents identify the affected component as Dell/Certico...
OpenSSL 1.0.2, 1.1.0, 1.1.1 Multiple Vulnerabilities - Windows
OpenSSL is prone to multiple vulnerabilities. Copyright C 2019 Greenbone Networks GmbH Some text descriptions might be excerpted from a referenced sources, and are Copyright C by the respective right holders. SPDX-License-Identifier: GPL-2.0-or-later This program is free software; you can...
FreeBSD : OpenSSL -- Multiple vulnerabilities (9e0c6f7a-d46d-11e9-a1c7-b499baebfeaf)
The OpenSSL project reports : ECDSA remote timing attack CVE-2019-1547 Low Fork Protection CVE-2019-1549 Low OpenSSL 1.1.1 only C Tenable Network Security, Inc. The descriptive text and package checks in this plugin were extracted from the FreeBSD VuXML database : Copyright 2003-2019 Jacques...
Side-Channel Attack
openssl is vulnerable to side channel attacks. The library falls back to non-side channel resistant code paths when an OpenSSL EC group is constructed without a cofactor present, using explicit parameters instead of a named curve. This can result in the recovery of the full key during an ECDSA...
SUSE SLED15 / SLES15 Security Update : libgcrypt (SUSE-SU-2019:2349-1)
This update for libgcrypt fixes the following issues : Security issues fixed : CVE-2019-13627: Mitigated ECDSA timing attack. bsc1148987 Note that Tenable Network Security has extracted the preceding description block directly from the SUSE security advisory. Tenable has attempted to automaticall...
CVE-2019-1547
Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters instead of using a named curve. In those cases it is possible that such a group does not have...
CVE-2019-1547
Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters instead of using a named curve. In those cases it is possible that such a group does not have...
UBUNTU-CVE-2019-1547
Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters instead of using a named curve. In those cases it is possible that such a group does not have...
Design/Logic Flaw
Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters instead of using a named curve. In those cases it is possible that such a group does not have...
CVE-2019-1547
Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters instead of using a named curve. In those cases it is possible that such a group does not have...
CVE-2019-1547 ECDSA remote timing attack
Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters instead of using a named curve. In those cases it is possible that such a group does not have...
CVE-2019-1547
Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters instead of using a named curve. In those cases it is possible that such a group does not have...
CVE-2019-1547 ECDSA remote timing attack
Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters instead of using a named curve. In those cases it is possible that such a group does not have...
CVE-2019-1547
Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters instead of using a named curve. In those cases it is possible that such a group does not have...
SUSE-SU-2019:2349-1 Security update for libgcrypt
This update for libgcrypt fixes the following issues: Security issues fixed: - CVE-2019-13627: Mitigated ECDSA timing attack. bsc1148987...
OpenSSL -- Multiple vulnerabilities
The OpenSSL project reports: ECDSA remote timing attack CVE-2019-1547 Low Fork Protection CVE-2019-1549 Low OpenSSL 1.1.1 only...
OpenSSL CVE-2019-1547 Information Disclosure Vulnerability
Description OpenSSL is prone to a information-disclosure vulnerability. Successfully exploiting this issue allows local attackers to recover the key during an ECDSA signature operation. Information harvested may aid in further attacks. Technologies Affected OpenSSL Project OpenSSL 1.0.2 OpenSSL...
Vulnerability in OpenSSL - ECDSA remote timing attack
Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters instead of using a named curve. In those cases it is possible that such a group does not have...