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| CVE | Vendors | Products | Updated | CVSS v3.1 |
|---|---|---|---|---|
| CVE-2025-61584 | 1 Serverless-dns | 1 Serverless-dns | 2026-04-15 | N/A |
| serverless-dns is a RethinkDNS resolver that deploys to Cloudflare Workers, Deno Deploy, Fastly, and Fly.io. Versions through abd including 0.1.30 have a vulnerability where the pr.yml GitHub Action interpolates in an unsafe manner untrusted input, specifically the github.event.pull_request.head.repo.clone_url and github.head_ref, to a command in the runner. Due to the action using the pull_request_target trigger it has permissive permissions by default. An unauthorized attacker can exploit this vulnerability to push arbitrary data to the repository. The subsequent impact on the end-user is executing the attackers' code when running serverless-dns. This is fixed in commit c5537dd, and expected to be released in 0.1.31. | ||||
| CVE-2025-62593 | 1 Ray Project | 1 Ray | 2026-04-15 | 8.8 High |
| Ray is an AI compute engine. Prior to version 2.52.0, developers working with Ray as a development tool can be exploited via a critical RCE vulnerability exploitable via Firefox and Safari. This vulnerability is due to an insufficient guard against browser-based attacks, as the current defense uses the User-Agent header starting with the string "Mozilla" as a defense mechanism. This defense is insufficient as the fetch specification allows the User-Agent header to be modified. Combined with a DNS rebinding attack against the browser, and this vulnerability is exploitable against a developer running Ray who inadvertently visits a malicious website, or is served a malicious advertisement (malvertising). This issue has been patched in version 2.52.0. | ||||
| CVE-2025-68259 | 1 Linux | 1 Linux Kernel | 2026-04-15 | 5.5 Medium |
| In the Linux kernel, the following vulnerability has been resolved: KVM: SVM: Don't skip unrelated instruction if INT3/INTO is replaced When re-injecting a soft interrupt from an INT3, INT0, or (select) INTn instruction, discard the exception and retry the instruction if the code stream is changed (e.g. by a different vCPU) between when the CPU executes the instruction and when KVM decodes the instruction to get the next RIP. As effectively predicted by commit 6ef88d6e36c2 ("KVM: SVM: Re-inject INT3/INTO instead of retrying the instruction"), failure to verify that the correct INTn instruction was decoded can effectively clobber guest state due to decoding the wrong instruction and thus specifying the wrong next RIP. The bug most often manifests as "Oops: int3" panics on static branch checks in Linux guests. Enabling or disabling a static branch in Linux uses the kernel's "text poke" code patching mechanism. To modify code while other CPUs may be executing that code, Linux (temporarily) replaces the first byte of the original instruction with an int3 (opcode 0xcc), then patches in the new code stream except for the first byte, and finally replaces the int3 with the first byte of the new code stream. If a CPU hits the int3, i.e. executes the code while it's being modified, then the guest kernel must look up the RIP to determine how to handle the #BP, e.g. by emulating the new instruction. If the RIP is incorrect, then this lookup fails and the guest kernel panics. The bug reproduces almost instantly by hacking the guest kernel to repeatedly check a static branch[1] while running a drgn script[2] on the host to constantly swap out the memory containing the guest's TSS. [1]: https://gist.github.com/osandov/44d17c51c28c0ac998ea0334edf90b5a [2]: https://gist.github.com/osandov/10e45e45afa29b11e0c7209247afc00b | ||||
| CVE-2025-7493 | 1 Redhat | 7 Enterprise Linux, Rhel Aus, Rhel E4s and 4 more | 2026-04-15 | 9.1 Critical |
| A privilege escalation flaw from host to domain administrator was found in FreeIPA. This vulnerability is similar to CVE-2025-4404, where it fails to validate the uniqueness of the krbCanonicalName. While the previously released version added validations for the admin@REALM credential, FreeIPA still does not validate the root@REALM canonical name, which can also be used as the realm administrator's name. This flaw allows an attacker to perform administrative tasks over the REALM, leading to access to sensitive data and sensitive data exfiltration. | ||||
| CVE-2025-7771 | 1 Techpowerup | 1 Throttlestop | 2026-04-15 | N/A |
| ThrottleStop.sys, a legitimate driver, exposes two IOCTL interfaces that allow arbitrary read and write access to physical memory via the MmMapIoSpace function. This insecure implementation can be exploited by a malicious user-mode application to patch the running Windows kernel and invoke arbitrary kernel functions with ring-0 privileges. The vulnerability enables local attackers to execute arbitrary code in kernel context, resulting in privilege escalation and potential follow-on attacks, such as disabling security software or bypassing kernel-level protections. ThrottleStop.sys version 3.0.0.0 and possibly others are affected. Apply updates per vendor instructions. | ||||
| CVE-2025-8757 | 1 Trendnet | 1 Tv-ip110wn | 2026-04-15 | 7 High |
| A vulnerability was found in TRENDnet TV-IP110WN 1.2.2 and classified as problematic. Affected by this issue is some unknown functionality of the file /server/boa.conf of the component Embedded Boa Web Server. The manipulation leads to least privilege violation. Local access is required to approach this attack. The complexity of an attack is rather high. The exploitation is known to be difficult. 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. | ||||
| CVE-2025-8758 | 1 Trendnet | 1 Tew-822dre | 2026-04-15 | 7 High |
| A vulnerability was found in TRENDnet TEW-822DRE FW103B02. It has been classified as problematic. This affects an unknown part of the component vsftpd. The manipulation leads to least privilege violation. Attacking locally is a requirement. The complexity of an attack is rather high. The exploitability is told to be difficult. 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. | ||||
| CVE-2025-8763 | 2 Ruijie, Strongswan | 3 Eg306mg, Rg-eg, Strongswan | 2026-04-15 | 3.7 Low |
| A vulnerability was found in Ruijie EG306MG 3.0(1)B11P309. It has been rated as problematic. This issue affects some unknown processing of the file /etc/strongswan.conf of the component strongSwan. The manipulation of the argument i_dont_care_about_security_and_use_aggressive_mode_psk leads to missing encryption of sensitive data. The attack may be initiated remotely. The complexity of an attack is rather high. The exploitation is known to be difficult. The vendor was contacted early about this disclosure but did not respond in any way. | ||||
| CVE-2025-8765 | 1 Datacom | 1 Dm955 | 2026-04-15 | 3.5 Low |
| A vulnerability classified as problematic was found in Datacom DM955 5GT 1200 825.8010.00. Affected by this vulnerability is an unknown functionality of the component Wireless Basic Settings. The manipulation of the argument SSID leads to cross site scripting. The attack can be launched remotely. The exploit has been disclosed to the public and may be used. | ||||
| CVE-2025-9150 | 1 Surbowl | 1 Dormitory-management-php | 2026-04-15 | 7.3 High |
| A vulnerability was identified in Surbowl dormitory-management-php up to 9f1d9d1f528cabffc66fda3652c56ff327fda317. Affected is an unknown function of the file /admin/violation_add.php?id=2. Such manipulation of the argument ID leads to sql injection. The attack may be performed from a remote location. The exploit is publicly available and might be used. This product utilizes a rolling release system for continuous delivery, and as such, version information for affected or updated releases is not disclosed. This vulnerability only affects products that are no longer supported by the maintainer. | ||||
| CVE-2025-9151 | 1 Thrivex | 1 Blog | 2026-04-15 | 6.3 Medium |
| A security flaw has been discovered in LiuYuYang01 ThriveX-Blog up to 3.1.7. Affected by this vulnerability is the function updateJsonValueByName of the file /web_config/json/name/web. Performing manipulation results in improper authorization. It is possible to initiate the attack remotely. The exploit has been released to the public and may be exploited. The vendor was contacted early about this disclosure but did not respond in any way. | ||||
| CVE-2025-58781 | 2026-04-15 | N/A | ||
| WTW-EAGLE App does not properly validate server certificates, which may allow a man-in-the-middle attacker to monitor encrypted traffic. | ||||
| CVE-2020-36852 | 2 Custom Searchable Data Entry System Project, Wordpress | 2 Custom Searchable Data Entry System, Wordpress | 2026-04-15 | 9.1 Critical |
| The Custom Searchable Data Entry System plugin for WordPress is vulnerable to unauthenticated database wiping in versions up to, and including 1.7.1, due to a missing capability check and lack of sufficient validation on the ghazale_sds_delete_entries_table_row() function. This makes it possible for unauthenticated attackers to completely wipe database tables such as wp_users. | ||||
| CVE-2023-45290 | 1 Redhat | 20 Advanced Cluster Security, Ansible Automation Platform, Ceph Storage and 17 more | 2026-04-15 | 6.5 Medium |
| When parsing a multipart form (either explicitly with Request.ParseMultipartForm or implicitly with Request.FormValue, Request.PostFormValue, or Request.FormFile), limits on the total size of the parsed form were not applied to the memory consumed while reading a single form line. This permits a maliciously crafted input containing very long lines to cause allocation of arbitrarily large amounts of memory, potentially leading to memory exhaustion. With fix, the ParseMultipartForm function now correctly limits the maximum size of form lines. | ||||
| CVE-2024-11870 | 2 Vcita, Wordpress | 2 Event Registration Calendar By Vcita, Wordpress | 2026-04-15 | 6.4 Medium |
| The Event Registration Calendar By vcita plugin for WordPress is vulnerable to Stored Cross-Site Scripting via the plugin's shortcodes in all versions up to, and including, 1.4.0 due to insufficient input sanitization and output escaping on user supplied attributes. 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. | ||||
| CVE-2024-30896 | 1 Influxdata | 1 Influxdb | 2026-04-15 | 9.1 Critical |
| InfluxDB OSS 2.x through 2.7.11 stores the administrative operator token under the default organization which allows authorized users with read access to the authorization resource of the default organization to retrieve the operator token. InfluxDB OSS 1.x, Enterprise, Cloud, Cloud Dedicated and Clustered are not affected. NOTE: The researcher states that InfluxDB allows allAccess administrators to retrieve all raw tokens via an "influx auth ls" command. The supplier indicates that the organizations feature is operating as intended and that users may choose to add users to non-default organizations. A future release of InfluxDB 2.x will remove the ability to retrieve tokens from the API. The supplier has stated that InfluxDB 2.8.0 has addressed this issue. | ||||
| CVE-2024-34070 | 1 Froxlor | 1 Froxlor | 2026-04-15 | 9.7 Critical |
| Froxlor is open source server administration software. Prior to 2.1.9, a Stored Blind Cross-Site Scripting (XSS) vulnerability was identified in the Failed Login Attempts Logging Feature of the Froxlor Application. An unauthenticated User can inject malicious scripts in the loginname parameter on the Login attempt, which will then be executed when viewed by the Administrator in the System Logs. By exploiting this vulnerability, the attacker can perform various malicious actions such as forcing the Administrator to execute actions without their knowledge or consent. For instance, the attacker can force the Administrator to add a new administrator controlled by the attacker, thereby giving the attacker full control over the application. This vulnerability is fixed in 2.1.9. | ||||
| CVE-2024-50338 | 2026-04-15 | 7.4 High | ||
| Git Credential Manager (GCM) is a secure Git credential helper built on .NET that runs on Windows, macOS, and Linux. The Git credential protocol is text-based over standard input/output, and consists of a series of lines of key-value pairs in the format `key=value`. Git's documentation restricts the use of the NUL (`\0`) character and newlines to form part of the keys or values. When Git reads from standard input, it considers both LF and CRLF as newline characters for the credential protocol by virtue of calling `strbuf_getline` that calls to `strbuf_getdelim_strip_crlf`. Git also validates that a newline is not present in the value by checking for the presence of the line-feed character (LF, `\n`), and errors if this is the case. This captures both LF and CRLF-type newlines. Git Credential Manager uses the .NET standard library `StreamReader` class to read the standard input stream line-by-line and parse the `key=value` credential protocol format. The implementation of the `ReadLineAsync` method considers LF, CRLF, and CR as valid line endings. This is means that .NET considers a single CR as a valid newline character, whereas Git does not. This mismatch of newline treatment between Git and GCM means that an attacker can craft a malicious remote URL. When a user clones or otherwise interacts with a malicious repository that requires authentication, the attacker can capture credentials for another Git remote. The attack is also heightened when cloning from repositories with submodules when using the `--recursive` clone option as the user is not able to inspect the submodule remote URLs beforehand. This issue has been patched in version 2.6.1 and all users are advised to upgrade. Users unable to upgrade should only interact with trusted remote repositories, and not clone with `--recursive` to allow inspection of any submodule URLs before cloning those submodules. | ||||
| CVE-2024-6098 | 2026-04-15 | 5.3 Medium | ||
| When performing an online tag generation to devices which communicate using the ControlLogix protocol, a machine-in-the-middle, or a device that is not configured correctly, could deliver a response leading to unrestricted or unregulated resource allocation. This could cause a denial-of-service condition and crash the Kepware application. By default, these functions are turned off, yet they remain accessible for users who recognize and require their advantages. | ||||
| CVE-2024-6538 | 1 Redhat | 1 Openshift | 2026-04-15 | 5.3 Medium |
| A flaw was found in OpenShift Console. A Server Side Request Forgery (SSRF) attack can happen if an attacker supplies all or part of a URL to the server to query. The server is considered to be in a privileged network position and can often reach exposed services that aren't readily available to clients due to network filtering. Leveraging such an attack vector, the attacker can have an impact on other services and potentially disclose information or have other nefarious effects on the system. The /api/dev-console/proxy/internet endpoint on the OpenShift Console allows authenticated users to have the console's pod perform arbitrary and fully controlled HTTP(s) requests. The full response to these requests is returned by the endpoint. While the name of this endpoint suggests the requests are only bound to the internet, no such checks are in place. An authenticated user can therefore ask the console to perform arbitrary HTTP requests from outside the cluster to a service inside the cluster. | ||||