1599 matches found
Froxlor Password Reset Vulnerability
Froxlor is a web-based version of the server backend control panel developed by the Froxlor team, which supports a wide range of servers such as Apache, Lighttpd and Nginx. A security vulnerability exists in versions of Froxlor prior to 0.9.35 that stems from the program's use of the 'PHP rand'...
Design/Logic Flaw
Froxlor before 0.9.35 uses the PHP rand function for random number generation, which makes it easier for remote attackers to guess the password reset token by predicting a value...
CVE-2016-5100
Summary: CVE-2016-5100 affects Froxlor prior to 0.9.35, where the code uses PHP’s rand() for random number generation, enabling a remote attacker to predict password reset tokens. The issue is documented across multiple advisories and security entries (openSUSE/OpenSUSE-SU-2021:0415/0450, GHSA-GH...
[BSA-114] Security update for wordpress
Craig Small [email protected] uploaded new packages for wordpress which fixed the following security problems: CVE-2016-10066, CVE-2016-10045 Potential Remote Command Execution RCE in PHPMailer CVE-2017-5488 Authenticated Cross-Site scripting XSS in update-core.php CVE-2017-5490 Stored Cross-Site...
NTP.org 'ntpd' Predictable Random Number Generator Weakness Brute Force Attack Vulnerability
NTP.org SPDX-FileCopyrightText: 2017 Greenbone AG 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-only CPE = "cpe:/a:ntp:ntp"; ifdescription scriptoid"1.3.6.1.4.1.25623.1.0.809780";...
Insecure Random Number Generator
net-http-digestauth is vulnerable to insecure random number generation. The library uses Kernelrand which is a repeatable sequence of numbers, allowing a malicious user to guess the number under certain circumstances...
Insecure Random Number Generator
invenio is vulnerable to brute force attacks. It uses an insecure random number generator rather than secure OS-driven entropy source /dev/urandom on linux for secret key generation...
CVE-2016-9154
Siemens Desigo PX Web modules PXA40-W0, PXA40-W1, PXA40-W2 for Desigo PX automation controllers PXC00-E.D, PXC50-E.D, PXC100-E.D, PXC200-E.D All firmware versions V6.00.046 and Desigo PX Web modules PXA30-W0, PXA30-W1, PXA30-W2 for Desigo PX automation controllers PXC00-U, PXC64-U, PXC128-U All...
Design/Logic Flaw
Siemens Desigo PX Web modules PXA40-W0, PXA40-W1, PXA40-W2 for Desigo PX automation controllers PXC00-E.D, PXC50-E.D, PXC100-E.D, PXC200-E.D All firmware versions V6.00.046 and Desigo PX Web modules PXA30-W0, PXA30-W1, PXA30-W2 for Desigo PX automation controllers PXC00-U, PXC64-U, PXC128-U All...
CVE-2016-9154
Siemens Desigo PX Web modules (PXA40-W0/W1/W2; PXA30-W0/W1/W2 for PXC00-E.D, PXC50-E.D, PXC100-E.D, PXC200-E.D, PXC00-U, PXC64-U, PXC128-U) are affected by CVE-2016-9154. The root cause is a pseudo-random number generator with insufficient entropy used to generate HTTPS certificates, enabling a r...
Siemens Patches Insufficient Entropy Vulnerability in ICS Systems
German industrial giant Siemens has provided a firmware update addressing vulnerabilities that are found in a popular line of its Desigo PX industrial control hardware used in controlling primarily HVAC systems in commercial buildings . On Wednesday, Siemens, in coordination with ICS-CERT, issued...
Insecure Random Number Generator
django-simple-sso is vulnerable to brute force attacks due to it's insecure random number generator. The random number generator generates pseudo-random numbers rather than a cryptographically secure random number...
CVE-2016-6313
The mixing functions in the random number generator in Libgcrypt before 1.5.6, 1.6.x before 1.6.6, and 1.7.x before 1.7.3 and GnuPG before 1.4.21 make it easier for attackers to obtain the values of 160 bits by leveraging knowledge of the previous 4640 bits...
CVE-2016-6313
The mixing functions in the random number generator in Libgcrypt before 1.5.6, 1.6.x before 1.6.6, and 1.7.x before 1.7.3 and GnuPG before 1.4.21 make it easier for attackers to obtain the values of 160 bits by leveraging knowledge of the previous 4640 bits...
DEBIAN-CVE-2016-6313
The mixing functions in the random number generator in Libgcrypt before 1.5.6, 1.6.x before 1.6.6, and 1.7.x before 1.7.3 and GnuPG before 1.4.21 make it easier for attackers to obtain the values of 160 bits by leveraging knowledge of the previous 4640 bits...
Design/Logic Flaw
The mixing functions in the random number generator in Libgcrypt before 1.5.6, 1.6.x before 1.6.6, and 1.7.x before 1.7.3 and GnuPG before 1.4.21 make it easier for attackers to obtain the values of 160 bits by leveraging knowledge of the previous 4640 bits...
CVE-2016-6313
The mixing functions in the random number generator in Libgcrypt before 1.5.6, 1.6.x before 1.6.6, and 1.7.x before 1.7.3 and GnuPG before 1.4.21 make it easier for attackers to obtain the values of 160 bits by leveraging knowledge of the previous 4640 bits...
CVE-2016-6313
The mixing functions in the random number generator in Libgcrypt before 1.5.6, 1.6.x before 1.6.6, and 1.7.x before 1.7.3 and GnuPG before 1.4.21 make it easier for attackers to obtain the values of 160 bits by leveraging knowledge of the previous 4640 bits...
CVE-2016-6313
CVE-2016-6313 documents a design flaw in Libgcrypt’s random-number generator mixing functions (affecting Libgcrypt <1.5.6, <1.6.6 in 1.6.x, <1.7.3 in 1.7.x, and GnuPG
CVE-2016-6313
The mixing functions in the random number generator in Libgcrypt before 1.5.6, 1.6.x before 1.6.6, and 1.7.x before 1.7.3 and GnuPG before 1.4.21 make it easier for attackers to obtain the values of 160 bits by leveraging knowledge of the previous 4640 bits...