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CVE-2025-25220

Description: Improper neutralization of special elements used in an OS command ('OS Command Injection') issue exists in +F FS010M versions prior to V2.0.1_1101. If this vulnerability is exploited, an arbitrary OS command may be executed by a remote authenticated attacker.

CVSS: HIGH (8.8)

EPSS Score: 0.25%

Source: CVE
March 18th, 2025 (4 months ago)

CVE-2025-24306

Description: Improper neutralization of special elements used in an OS command ('OS Command Injection') issue exists in +F FS010M versions prior to V2.0.0_1101. If this vulnerability is exploited, an arbitrary OS command may be executed by a remote authenticated attacker with an administrative privilege.

CVSS: HIGH (7.2)

EPSS Score: 0.3%

Source: CVE
March 18th, 2025 (4 months ago)

CVE-2025-0755

Description: The various bson_append functions in the MongoDB C driver library may be susceptible to buffer overflow when performing operations that could result in a final BSON document which exceeds the maximum allowable size (INT32_MAX), resulting in a segmentation fault and possible application crash. This issue affected libbson versions prior to 1.27.5, MongoDB Server v8.0 versions prior to 8.0.1 and MongoDB Server v7.0 versions prior to 7.0.16

CVSS: HIGH (8.4)

EPSS Score: 0.02%

Source: CVE
March 18th, 2025 (4 months ago)

CVE-2025-2262

Description: The The Logo Slider – Logo Showcase, Logo Carousel, Logo Gallery and Client Logo Presentation plugin for WordPress is vulnerable to arbitrary shortcode execution in all versions up to, and including, 3.7.3. This is due to the software allowing users to execute an action that does not properly validate a value before running do_shortcode. This makes it possible for unauthenticated attackers to execute arbitrary shortcodes.

CVSS: HIGH (7.3)

EPSS Score: 0.08%

Source: CVE
March 18th, 2025 (4 months ago)

CVE-2025-29913

Description: CryptoLib provides a software-only solution using the CCSDS Space Data Link Security Protocol - Extended Procedures (SDLS-EP) to secure communications between a spacecraft running the core Flight System (cFS) and a ground station. A critical heap buffer overflow vulnerability was identified in the `Crypto_TC_Prep_AAD` function of CryptoLib versions 1.3.3 and prior. This vulnerability allows an attacker to trigger a Denial of Service (DoS) or potentially execute arbitrary code (RCE) by providing a maliciously crafted telecommand (TC) frame that causes an unsigned integer underflow. The vulnerability lies in the function `Crypto_TC_Prep_AAD`, specifically during the computation of `tc_mac_start_index`. The affected code incorrectly calculates the MAC start index without ensuring it remains within the bounds of the `ingest` buffer. When `tc_mac_start_index` underflows due to an incorrect length calculation, the function attempts to access an out-of-bounds memory location, leading to a segmentation fault. The vulnerability is still present in the repository as of commit `d3cc420ace96d02a5b7e83d88cbd2e48010d5723`.

CVSS: HIGH (8.9)

EPSS Score: 0.07%

Source: CVE
March 17th, 2025 (4 months ago)

CVE-2025-29912

Description: CryptoLib provides a software-only solution using the CCSDS Space Data Link Security Protocol - Extended Procedures (SDLS-EP) to secure communications between a spacecraft running the core Flight System (cFS) and a ground station. In versions 1.3.3 and prior, an unsigned integer underflow in the `Crypto_TC_ProcessSecurity` function of CryptoLib leads to a heap buffer overflow. The vulnerability is triggered when the `fl` (frame length) field in a Telecommand (TC) packet is set to 0. This underflow causes the frame length to be interpreted as 65535, resulting in out-of-bounds memory access. This critical vulnerability can be exploited to cause a denial of service (DoS) or potentially achieve remote code execution. Users of CryptoLib are advised to apply the recommended patch or avoid processing untrusted TC packets until a fix is available.

CVSS: HIGH (8.9)

EPSS Score: 0.2%

Source: CVE
March 17th, 2025 (4 months ago)

CVE-2025-29911

Description: CryptoLib provides a software-only solution using the CCSDS Space Data Link Security Protocol - Extended Procedures (SDLS-EP) to secure communications between a spacecraft running the core Flight System (cFS) and a ground station. A critical heap buffer overflow vulnerability was identified in the `Crypto_AOS_ProcessSecurity` function of CryptoLib versions 1.3.3 and prior. This vulnerability allows an attacker to trigger a Denial of Service (DoS) or potentially execute arbitrary code (RCE) by providing a maliciously crafted AOS frame with an insufficient length. The vulnerability lies in the function `Crypto_AOS_ProcessSecurity`, specifically during the processing of the Frame Error Control Field (FECF). The affected code attempts to read from the `p_ingest` buffer at indices `current_managed_parameters_struct.max_frame_size - 2` and `current_managed_parameters_struct.max_frame_size - 1` without verifying if `len_ingest` is sufficiently large. This leads to a heap buffer overflow when `len_ingest` is smaller than `max_frame_size`. As of time of publication, no known patched versions exist.

CVSS: HIGH (8.9)

EPSS Score: 0.07%

Source: CVE
March 17th, 2025 (4 months ago)

CVE-2025-29909

Description: CryptoLib provides a software-only solution using the CCSDS Space Data Link Security Protocol - Extended Procedures (SDLS-EP) to secure communications between a spacecraft running the core Flight System (cFS) and a ground station. In versions 1.3.3 and prior, a heap buffer overflow vulnerability in CryptoLib's `Crypto_TC_ApplySecurity()` allows an attacker to craft a malicious TC frame that causes out-of-bounds memory writes. This can result in denial of service (DoS) or, under certain conditions, remote code execution (RCE). Any application or system that relies on CryptoLib for Telecommand (TC) processing and does not strictly validate incoming TC frames is at risk. This includes satellite ground stations or mission control software where attackers can inject malformed frames. A patch is available at commit c7e8a8745ff4b5e9bd7e500e91358e86d5abedcc.

CVSS: HIGH (8.9)

EPSS Score: 0.2%

Source: CVE
March 17th, 2025 (4 months ago)

CVE-2025-2398

Description: A vulnerability was found in China Mobile P22g-CIac, ZXWT-MIG-P4G4V, ZXWT-MIG-P8G8V, GT3200-4G4P and GT3200-8G8P up to 20250305. It has been rated as critical. This issue affects some unknown processing of the component CLI su Command Handler. The manipulation leads to use of default credentials. The attack may be initiated remotely. The exploit has been disclosed to the public and may be used. The vendor was contacted early about this disclosure but did not respond in any way. Eine Schwachstelle wurde in China Mobile P22g-CIac, ZXWT-MIG-P4G4V, ZXWT-MIG-P8G8V, GT3200-4G4P and GT3200-8G8P bis 20250305 ausgemacht. Sie wurde als kritisch eingestuft. Dies betrifft einen unbekannten Teil der Komponente CLI su Command Handler. Durch Manipulation mit unbekannten Daten kann eine use of default credentials-Schwachstelle ausgenutzt werden. Der Angriff kann über das Netzwerk passieren. Der Exploit steht zur öffentlichen Verfügung.

CVSS: HIGH (8.6)

EPSS Score: 0.06%

Source: CVE
March 17th, 2025 (4 months ago)
Description: Impact If the Expr expression parser is given an unbounded input string, it will attempt to compile the entire string and generate an Abstract Syntax Tree (AST) node for each part of the expression. In scenarios where input size isn’t limited, a malicious or inadvertent extremely large expression can consume excessive memory as the parser builds a huge AST. This can ultimately lead to excessive memory usage and an Out-Of-Memory (OOM) crash of the process. This issue is relatively uncommon and will only manifest when there are no restrictions on the input size, i.e. the expression length is allowed to grow arbitrarily large. In typical use cases where inputs are bounded or validated, this problem would not occur. Patches The problem has been patched in the latest versions of the Expr library. The fix introduces compile-time limits on the number of AST nodes and memory usage during parsing, preventing any single expression from exhausting resources. Users should upgrade to Expr version 1.17.0 or later, as this release includes the new node budget and memory limit safeguards. Upgrading to v1.17.0 ensures that extremely deep or large expressions are detected and safely aborted during compilation, avoiding the OOM condition. Workarounds For users who cannot immediately upgrade, the recommended workaround is to impose an input size restriction before parsing. In practice, this means validating or limiting the length of expression strings that your application will accept. For ex...

CVSS: HIGH (7.5)

EPSS Score: 0.02%

Source: Github Advisory Database (Go)
March 17th, 2025 (4 months ago)