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Attacker Value
Unknown

CVE-2017-12617

Disclosure Date: October 04, 2017 (last updated July 17, 2024)
When running Apache Tomcat versions 9.0.0.M1 to 9.0.0, 8.5.0 to 8.5.22, 8.0.0.RC1 to 8.0.46 and 7.0.0 to 7.0.81 with HTTP PUTs enabled (e.g. via setting the readonly initialisation parameter of the Default servlet to false) it was possible to upload a JSP file to the server via a specially crafted request. This JSP could then be requested and any code it contained would be executed by the server.
Attacker Value
Unknown

CVE-2021-44832

Disclosure Date: December 28, 2021 (last updated October 07, 2023)
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.
Attacker Value
Unknown

CVE-2021-29425

Disclosure Date: April 13, 2021 (last updated November 08, 2023)
In Apache Commons IO before 2.7, When invoking the method FileNameUtils.normalize with an improper input string, like "//../foo", or "\\..\foo", the result would be the same value, thus possibly providing access to files in the parent directory, but not further above (thus "limited" path traversal), if the calling code would use the result to construct a path value.
Attacker Value
Unknown

CVE-2021-23337

Disclosure Date: February 15, 2021 (last updated November 28, 2024)
Lodash versions prior to 4.17.21 are vulnerable to Command Injection via the template function.
Attacker Value
Unknown

CVE-2020-28500

Disclosure Date: February 15, 2021 (last updated November 28, 2024)
Lodash versions prior to 4.17.21 are vulnerable to Regular Expression Denial of Service (ReDoS) via the toNumber, trim and trimEnd functions.
Attacker Value
Unknown

CVE-2019-9513

Disclosure Date: August 13, 2019 (last updated January 15, 2025)
Some HTTP/2 implementations are vulnerable to resource loops, potentially leading to a denial of service. The attacker creates multiple request streams and continually shuffles the priority of the streams in a way that causes substantial churn to the priority tree. This can consume excess CPU.
Attacker Value
Unknown

CVE-2019-9511

Disclosure Date: August 13, 2019 (last updated January 15, 2025)
Some HTTP/2 implementations are vulnerable to window size manipulation and stream prioritization manipulation, potentially leading to a denial of service. The attacker requests a large amount of data from a specified resource over multiple streams. They manipulate window size and stream priority to force the server to queue the data in 1-byte chunks. Depending on how efficiently this data is queued, this can consume excess CPU, memory, or both.
Attacker Value
Unknown

CVE-2018-16865

Disclosure Date: January 11, 2019 (last updated November 27, 2024)
An allocation of memory without limits, that could result in the stack clashing with another memory region, was discovered in systemd-journald when many entries are sent to the journal socket. A local attacker, or a remote one if systemd-journal-remote is used, may use this flaw to crash systemd-journald or execute code with journald privileges. Versions through v240 are vulnerable.
Attacker Value
Unknown

CVE-2018-16864

Disclosure Date: January 11, 2019 (last updated November 27, 2024)
An allocation of memory without limits, that could result in the stack clashing with another memory region, was discovered in systemd-journald when a program with long command line arguments calls syslog. A local attacker may use this flaw to crash systemd-journald or escalate his privileges. Versions through v240 are vulnerable.
Attacker Value
Unknown

CVE-2018-11236

Disclosure Date: May 18, 2018 (last updated November 08, 2023)
stdlib/canonicalize.c in the GNU C Library (aka glibc or libc6) 2.27 and earlier, when processing very long pathname arguments to the realpath function, could encounter an integer overflow on 32-bit architectures, leading to a stack-based buffer overflow and, potentially, arbitrary code execution.
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