Show filters
208 Total Results
Displaying 31-40 of 208
Sort by:
Attacker Value
Unknown
CVE-2022-22766
Disclosure Date: February 12, 2022 (last updated February 23, 2025)
Hardcoded credentials are used in specific BD Pyxis products. If exploited, threat actors may be able to gain access to the underlying file system and could potentially exploit application files for information that could be used to decrypt application credentials or gain access to electronic protected health information (ePHI) or other sensitive information.
0
Attacker Value
Unknown
CVE-2021-44903
Disclosure Date: February 04, 2022 (last updated February 23, 2025)
Micro-Star International (MSI) Center Pro <= 2.0.16.0 is vulnerable to multiple Privilege Escalation (LPE/EoP) vulnerabilities in the atidgllk.sys, atillk64.sys, MODAPI.sys, NTIOLib.sys, NTIOLib_X64.sys, WinRing0.sys, WinRing0x64.sys drivers components. All the vulnerabilities are triggered by sending specific IOCTL requests.
0
Attacker Value
Unknown
CVE-2021-22570
Disclosure Date: January 26, 2022 (last updated February 23, 2025)
Nullptr dereference when a null char is present in a proto symbol. The symbol is parsed incorrectly, leading to an unchecked call into the proto file's name during generation of the resulting error message. Since the symbol is incorrectly parsed, the file is nullptr. We recommend upgrading to version 3.15.0 or greater.
0
Attacker Value
Unknown
CVE-2021-44832
Disclosure Date: December 28, 2021 (last updated February 23, 2025)
Apache Log4j2 versions 2.0-beta7 through 2.17.0 (excluding security fix releases 2.3.2 and 2.12.4) are vulnerable to a remote code execution (RCE) attack when a configuration uses a JDBC Appender with a JNDI LDAP data source URI when an attacker has control of the target LDAP server. This issue is fixed by limiting JNDI data source names to the java protocol in Log4j2 versions 2.17.1, 2.12.4, and 2.3.2.
0
Attacker Value
Unknown
CVE-2021-45105
Disclosure Date: December 18, 2021 (last updated February 23, 2025)
Apache Log4j2 versions 2.0-alpha1 through 2.16.0 (excluding 2.12.3 and 2.3.1) did not protect from uncontrolled recursion from self-referential lookups. This allows an attacker with control over Thread Context Map data to cause a denial of service when a crafted string is interpreted. This issue was fixed in Log4j 2.17.0, 2.12.3, and 2.3.1.
0
Attacker Value
Unknown
CVE-2021-38901
Disclosure Date: December 10, 2021 (last updated February 23, 2025)
IBM Spectrum Protect Operations Center 7.1, under special configurations, could allow a local user to obtain highly sensitive information. IBM X-Force ID: 209610.
0
Attacker Value
Unknown
CVE-2021-43797
Disclosure Date: December 09, 2021 (last updated February 23, 2025)
Netty is an asynchronous event-driven network application framework for rapid development of maintainable high performance protocol servers & clients. Netty prior to version 4.1.71.Final skips control chars when they are present at the beginning / end of the header name. It should instead fail fast as these are not allowed by the spec and could lead to HTTP request smuggling. Failing to do the validation might cause netty to "sanitize" header names before it forward these to another remote system when used as proxy. This remote system can't see the invalid usage anymore, and therefore does not do the validation itself. Users should upgrade to version 4.1.71.Final.
0
Attacker Value
Unknown
CVE-2021-41165
Disclosure Date: November 17, 2021 (last updated February 23, 2025)
CKEditor4 is an open source WYSIWYG HTML editor. In affected version a vulnerability has been discovered in the core HTML processing module and may affect all plugins used by CKEditor 4. The vulnerability allowed to inject malformed comments HTML bypassing content sanitization, which could result in executing JavaScript code. It affects all users using the CKEditor 4 at version < 4.17.0. The problem has been recognized and patched. The fix will be available in version 4.17.0.
0
Attacker Value
Unknown
CVE-2002-20001
Disclosure Date: November 11, 2021 (last updated February 23, 2025)
The Diffie-Hellman Key Agreement Protocol allows remote attackers (from the client side) to send arbitrary numbers that are actually not public keys, and trigger expensive server-side DHE modular-exponentiation calculations, aka a D(HE)at or D(HE)ater attack. The client needs very little CPU resources and network bandwidth. The attack may be more disruptive in cases where a client can require a server to select its largest supported key size. The basic attack scenario is that the client must claim that it can only communicate with DHE, and the server must be configured to allow DHE.
0
Attacker Value
Unknown
CVE-2021-22096
Disclosure Date: October 28, 2021 (last updated February 23, 2025)
In Spring Framework versions 5.3.0 - 5.3.10, 5.2.0 - 5.2.17, and older unsupported versions, it is possible for a user to provide malicious input to cause the insertion of additional log entries.
0