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Search Results (383073 CVEs found)
| CVE | Vendors | Products | Updated | CVSS v3.1 |
|---|---|---|---|---|
| CVE-2025-64127 | 1 Zenitel | 1 Tciv-3+ | 2026-04-15 | 10 Critical |
| An OS command injection vulnerability exists due to insufficient sanitization of user-supplied input. The application accepts parameters that are later incorporated into OS commands without adequate validation. This could allow an unauthenticated attacker to execute arbitrary commands remotely. | ||||
| CVE-2024-12170 | 1 Wordpress | 1 Wordpress | 2026-04-15 | 5.4 Medium |
| The ViewMedica 9 plugin for WordPress is vulnerable to Cross-Site Request Forgery in all versions up to, and including, 1.4.15. This is due to missing or incorrect nonce validation on the 'Viewmedica-Admin' page. This makes it possible for unauthenticated attackers to inject arbitrary SQL queries via a forged request granted they can trick a site administrator into performing an action such as clicking on a link. | ||||
| CVE-2025-64128 | 1 Zenitel | 1 Tciv-3+ | 2026-04-15 | 10 Critical |
| An OS command injection vulnerability exists due to incomplete validation of user-supplied input. Validation fails to enforce sufficient formatting rules, which could permit attackers to append arbitrary data. This could allow an unauthenticated attacker to inject arbitrary commands. | ||||
| CVE-2024-12189 | 2026-04-15 | 6.4 Medium | ||
| The WDesignKit – Elementor & Gutenberg Starter Templates, Patterns, Cloud Workspace & Widget Builder plugin for WordPress is vulnerable to Stored Cross-Site Scripting via custom widgets in all versions up to, and including, 1.2.3 due to insufficient input sanitization and output escaping. This makes it possible for authenticated attackers, with Contributor-level access and above, to inject arbitrary web scripts in pages that will execute whenever a user accesses an injected page. Please note that you may need to recreate any custom widgets or reinstall the plugin to ensure the issue is adequately patched. | ||||
| CVE-2024-11322 | 2026-04-15 | 7.5 High | ||
| A denial-of-service vulnerability exists in CyberPower PowerPanel Business (PPB) 4.11.0. An unauthenticated remote attacker can restart the ppbd.exe process via the PowerPanel Business Service Watchdog service listening on TCP port 2003. The attacker can repeatedly restart ppbd.exe to render it unavailable. | ||||
| CVE-2023-7306 | 2 Najeebmedia, Wordpress | 2 Frontend File Manager Plugin, Wordpress | 2026-04-15 | 7.5 High |
| The Frontend File Manager Plugin plugin for WordPress is vulnerable to unauthorized loss of data due to a missing capability check on the wpfm_delete_multiple_files() function in all versions up to, and including, 21.5. This makes it possible for unauthenticated attackers to delete arbitrary posts. | ||||
| CVE-2017-20198 | 2026-04-15 | N/A | ||
| The Marathon UI in DC/OS < 1.9.0 allows unauthenticated users to deploy arbitrary Docker containers. Due to improper restriction of volume mount configurations, attackers can deploy a container that mounts the host's root filesystem (/) with read/write privileges. When using a malicious Docker image, the attacker can write to /etc/cron.d/ on the host, achieving arbitrary code execution with root privileges. This impacts any system where the Docker daemon honors Marathon container configurations without policy enforcement. | ||||
| CVE-2023-7296 | 2 Blindsidenetworks, Wordpress | 2 Bigbluebutton, Wordpress | 2026-04-15 | 6.4 Medium |
| The BigBlueButton plugin for WordPress is vulnerable to Stored Cross-Site Scripting via the the moderator code and viewer code fields in versions up to, and including, 3.0.0-beta.4 due to insufficient input sanitization and output escaping. This makes it possible for authenticated attackers with author privileges or higher to inject arbitrary web scripts in pages that execute if they can successfully trick a user into performing an action such as clicking on a link. | ||||
| CVE-2017-20203 | 1 Netsarang | 5 Xftp, Xlpd, Xmanager and 2 more | 2026-04-15 | N/A |
| NetSarang Xmanager Enterprise 5.0 Build 1232, Xmanager 5.0 Build 1045, Xshell 5.0 Build 1322, Xftp 5.0 Build 1218, and Xlpd 5.0 Build 1220 contain a malicious nssock2.dll that implements a multi-stage, DNS-based backdoor. The dormant library contacts a C2 DNS server via a specially crafted TXT record for a month‑generated domain. After receiving a decryption key, it then downloads and executes arbitrary code, creates an encrypted virtual file system (VFS) in the registry, and grants the attacker full remote code execution, data exfiltration, and persistence. NetSarang released builds for each product line that remediated the compromise: Xmanager Enterprise Build 1236, Xmanager Build 1049, Xshell Build 1326, Xftp Build 1222, and Xlpd Build 1224. Kaspersky Lab identified an instance of exploitation in the wild in August 2017. | ||||
| CVE-2017-20204 | 1 Dbltek | 1 Goip | 2026-04-15 | N/A |
| DBLTek GoIP devices (models GoIP 1, 4, 8, 16, and 32) contain an undocumented vendor backdoor in the Telnet administrative interface that allows remote authentication as an undocumented user via a proprietary challenge–response scheme which is fundamentally flawed. Because the challenge response can be computed from the challenge itself, a remote attacker can authenticate without knowledge of a secret and obtain a root shell on the device. This can lead to persistent remote code execution, full device compromise, and arbitrary control of the device and any managed services. The firmware used within these devices was updated in December 2016 to make this vulnerability more complex to exploit. However, it is unknown if DBLTek has taken steps to fully mitigate. | ||||
| CVE-2017-20205 | 1 Valvesoftware | 2 Source, Source Sdk | 2026-04-15 | N/A |
| Valve's Source SDK (source-sdk-2013)'s ragdoll model parsing logic contains a stack-based buffer overflow vulnerability.The tokenizer function `nexttoken` copies characters from an input string into a fixed-size stack buffer without performing bounds checks. When `ParseKeyValue` processes a collisionpair rule longer than the destination buffer (256 bytes), an overflow of the stack buffer `szToken` can occur and overwrite the function return address. A remote attacker can trigger the vulnerable code by supplying a specially crafted ragdoll model which causes the oversized collisionpair rule to be parsed, resulting in remote code execution on affected clients or servers. Valve has addressed this issue in many of their Source games, but independently-developed games must manually apply patch. | ||||
| CVE-2017-20213 | 1 Flir | 1 Thermal Camera | 2026-04-15 | 7.5 High |
| FLIR Thermal Camera F/FC/PT/D Stream firmware version 8.0.0.64 contains an unauthenticated vulnerability that allows remote attackers to access live camera streams without credentials. Attackers can exploit the vulnerability to view unauthorized thermal camera video feeds across multiple camera series without requiring any authentication. | ||||
| CVE-2017-20214 | 1 Flir | 1 Thermal Camera | 2026-04-15 | 7.5 High |
| FLIR Thermal Camera F/FC/PT/D firmware version 8.0.0.64 contains hard-coded SSH credentials that cannot be changed through normal camera operations. Attackers can leverage these persistent, unmodifiable credentials to gain unauthorized remote access to the thermal camera system. | ||||
| CVE-2017-20215 | 1 Flir | 1 Thermal Camera | 2026-04-15 | 8.8 High |
| FLIR Thermal Camera FC-S/PT firmware version 8.0.0.64 contains an authenticated OS command injection vulnerability that allows attackers to execute shell commands with root privileges. Authenticated attackers can inject arbitrary shell commands through unvalidated input parameters to gain complete control of the thermal camera system. | ||||
| CVE-2024-43647 | 1 Siemens | 14 Simatic S7-200 Smart Cpu Cr20s, Simatic S7-200 Smart Cpu Cr30s, Simatic S7-200 Smart Cpu Cr40 and 11 more | 2026-04-15 | 7.5 High |
| A vulnerability has been identified in SIMATIC S7-200 SMART CPU CR40 (6ES7288-1CR40-0AA0) (All versions), SIMATIC S7-200 SMART CPU CR60 (6ES7288-1CR60-0AA0) (All versions), SIMATIC S7-200 SMART CPU SR20 (6ES7288-1SR20-0AA0) (All versions), SIMATIC S7-200 SMART CPU SR20 (6ES7288-1SR20-0AA1) (All versions), SIMATIC S7-200 SMART CPU SR30 (6ES7288-1SR30-0AA0) (All versions), SIMATIC S7-200 SMART CPU SR30 (6ES7288-1SR30-0AA1) (All versions), SIMATIC S7-200 SMART CPU SR40 (6ES7288-1SR40-0AA0) (All versions), SIMATIC S7-200 SMART CPU SR40 (6ES7288-1SR40-0AA1) (All versions), SIMATIC S7-200 SMART CPU SR60 (6ES7288-1SR60-0AA0) (All versions), SIMATIC S7-200 SMART CPU SR60 (6ES7288-1SR60-0AA1) (All versions), SIMATIC S7-200 SMART CPU ST20 (6ES7288-1ST20-0AA0) (All versions), SIMATIC S7-200 SMART CPU ST20 (6ES7288-1ST20-0AA1) (All versions), SIMATIC S7-200 SMART CPU ST30 (6ES7288-1ST30-0AA0) (All versions), SIMATIC S7-200 SMART CPU ST30 (6ES7288-1ST30-0AA1) (All versions), SIMATIC S7-200 SMART CPU ST40 (6ES7288-1ST40-0AA0) (All versions), SIMATIC S7-200 SMART CPU ST40 (6ES7288-1ST40-0AA1) (All versions), SIMATIC S7-200 SMART CPU ST60 (6ES7288-1ST60-0AA0) (All versions), SIMATIC S7-200 SMART CPU ST60 (6ES7288-1ST60-0AA1) (All versions). Affected devices do not properly handle TCP packets with an incorrect structure. This could allow an unauthenticated remote attacker to cause a denial of service condition. To restore normal operations, the network cable of the device needs to be unplugged and re-plugged. | ||||
| CVE-2023-7327 | 1 Ozeki | 1 Ozeki Ng Sms Gateway | 2026-04-15 | N/A |
| Ozeki SMS Gateway versions up to and including 10.3.208 contain a path traversal vulnerability. Successful exploitation allows an unauthenticated attacker to use URL-encoded traversal sequences to read arbitrary files from the underlying filesystem with the privileges of the gateway service, leading to disclosure of sensitive information. | ||||
| CVE-2024-38443 | 1 The Algorithms | 1 C | 2026-04-15 | 6.2 Medium |
| C/sorting/binary_insertion_sort.c in The Algorithms - C through e5dad3f has a segmentation fault for deep recursion, which may affect common use cases such as sorting an array of 50 elements. | ||||
| CVE-2024-43650 | 2026-04-15 | N/A | ||
| Improper Neutralization of Special Elements used in a Command ('Command Injection') vulnerability in Iocharger firmware for AC models allows OS Command Injection as root This issue affects firmware versions before 24120701. Likelihood: Moderate – The <redacted> binary does not seem to be used by the web interface, so it might be more difficult to find. It seems to be largely the same binary as used by the Iocharger Pedestal charging station, however. The attacker will also need a (low privilege) account to gain access to the <redacted> binary, or convince a user with such access to execute a crafted HTTP request. Impact: Critical – The attacker has full control over the charging station as the root user, and can arbitrarily add, modify and delete files and services. CVSS clarification: The attack can be executed over any network connection serving the web interface (AV:N). There are no additional measures that need to be circumvented (AC:L) or attack preconditions (AT:N). THe attack is privileged, but the level does not matter (PR:L) and does not require user interaction (UI:N). Attack leads to full system compromised (VC:H/VI:H/VA:H) and compromised devices can be used to "pivot" to other networks that should be unreachable (SC:L/SI:L/SA:H). Because this an EV charger using high power, there is a potential safety impact (S:P). The attack can be automated (AU:Y). | ||||
| CVE-2024-38448 | 2026-04-15 | 9.1 Critical | ||
| htags in GNU Global through 6.6.12 allows code execution in situations where dbpath (aka -d) is untrusted, because shell metacharacters may be used. | ||||
| CVE-2024-43651 | 2026-04-15 | N/A | ||
| Improper Neutralization of Special Elements used in a Command ('Command Injection') vulnerability allows OS Command Injection as root This issue affects Iocharger firmware for AC models before version 241207101 Likelihood: Moderate – The <redacted> binary does not seem to be used by the web interface, so it might be more difficult to find. It seems to be largely the same binary as used by the Iocharger Pedestal charging station, however. The attacker will also need a (low privilege) account to gain access to the <redacted> binary, or convince a user with such access to execute a crafted HTTP request. Impact: Critical – The attacker has full control over the charging station as the root user, and can arbitrarily add, modify and delete files and services. CVSS clarification: Any network connection serving the web interface is vulnerable (AV:N) and there are no additional measures to circumvent (AC:L) nor does the attack require special conditions to be present (AT:N). The attack requires authentication, but the level does not matter (PR:L), nor is user interaction required (UI:N). The attack leads to a full compromised (VC:H/VI:H/VA:H) and a compromised device can be used to potentially "pivot" into a network that should nopt be reachable (SC:L/SI:L/SA:H). Because this is an EV charger handing significant power, there is a potential safety impact (S:P). THe attack can be autometed (AU:Y). | ||||