| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| A DLL hijacking vulnerability in the AMD Software Installer could allow an attacker to achieve privilege escalation potentially resulting in arbitrary code execution. |
| Uncontrolled search path element for some Intel(R) Driver & Support Assistant Tool software before version 24.6.49.8 may allow an authenticated user to potentially enable escalation of privilege via local access. |
| Unquoted path or search item vulnerability in SugarSync versions prior to 4.1.3 for Windows. This misconfiguration could allow an unauthorized local user to inject arbitrary code into the unquoted service path, resulting in privilege escalation. |
| An insufficient policy enforcement vulnerability in Palo Alto Networks Prisma® Browser on Windows allows a locally authenticated non-admin user to bypass the screenshot control feature of the browser.
Browser self-protection should be enabled to mitigate this issue. |
| Uncontrolled search path for some Intel(R) Graphics software may allow an authenticated user to potentially enable escalation of privilege via local access. |
| The Oz Forensics face recognition application before 4.0.8 late 2023 allows PII retrieval via /statistic/list Insecure Direct Object Reference. NOTE: the number 4.0.8 was used for both the unpatched and patched versions. |
| Local privilege escalation due to unquoted search path vulnerability. The following products are affected: Acronis Cyber Protect Cloud Agent (Windows) before build 39378. |
| Untrusted Search Path vulnerability in OpenText™ Application Lifecycle Management (ALM),Quality Center allows Code Inclusion. The vulnerability allows a user to archive a malicious DLLs on the system prior to the installation.
This issue affects Application Lifecycle Management (ALM),Quality Center: 15.00, 15.01, 15.01 P1, 15.01 P2, 15.01 P3, 15.01 P4, 15.01 P5, 15.51, 15.51 P1, 15.51 P2, 15.51 P3, 16.00, 16.01 P1. |
| Uncontrolled search path in some Intel(R) High Level Synthesis Compiler software for Intel(R) Quartus(R) Prime Pro Edition Software before version 24.1 may allow an authenticated user to potentially enable escalation of privilege via local access. |
| Uncontrolled search path in some Intel(R) Rendering Toolkit software before version 2024.1.0 may allow an authenticated user to potentially enable escalation of privilege via local access. |
| The Dyson MQTT server (2022 and possibly later) allows publications and subscriptions by a client that has the correct values of AWS_ACCESS_KEY_ID, AWS_SECRET_ACCESS_KEY, AWS_SESSION_TOKEN, and device serial number, even if a device (such as a Pure Hot+Cool device) has been removed and is not visible in the supported MyDyson app. This could allow an unexpected actor to obtain control and set the room temperature (up to 37 Celsius) if ownership of the device is transferred without wiping the device. NOTE: the Supplier's position is that this is a potential vulnerability that dates back 4 years ago in 2022 and "we are unable to replicate that anymore." Based on the submitted report, in order to leverage this issue, an attacker needs to own a Dyson device with full privileges, sniff for the AWS credentials, and then transfer ownership of that Dyson device to the victim. Even if these steps were successfully accomplished, the attacker only acquires the ability to configure the Dyson device within its safe operating range, and does not acquire the ability to execute code on the device or obtain sensitive information. |
| Uncontrolled search path in some Intel(R) Ethernet Adapter Complete Driver Pack install before versions 29.1 may allow an authenticated user to potentially enable escalation of privilege via local access. |
| Rufus is a utility that helps format and create bootable USB flash drives. A DLL hijacking vulnerability in Rufus 4.6.2208 and earlier versions allows an attacker loading and executing a malicious DLL with escalated privileges (since the executable has been granted higher privileges during the time of launch) due to the ability to inject a malicious `cfgmgr32.dll` in the same directory as the executable and have it side load automatically. This is fixed in commit `74dfa49`, which will be part of version 4.7. Users are advised to upgrade as soon as version 4.7 becomes available. There are no known workarounds for this vulnerability. |
| Uncontrolled search path for some Intel(R) oneAPI DPC++/C++ Compiler software before version 2025.0.1 may allow an authenticated user to potentially enable escalation of privilege via local access. |
| Socket Firewall is an HTTP/HTTPS proxy server that intercepts package manager requests and enforces security policies by blocking dangerous packages. Socket Firewall binary versions (separate from installers) prior to 0.15.5 are vulnerable to arbitrary code execution when run in untrusted project directories. The vulnerability allows an attacker to execute arbitrary code by placing a malicious `.sfw.config` file in a project directory. When a developer runs Socket Firewall commands (e.g., `sfw npm install`) in that directory, the tool loads the `.sfw.config` file and populates environment variables directly into the Node.js process. An attacker can exploit this by setting `NODE_OPTIONS` with a `--require` directive to execute malicious JavaScript code before Socket Firewall's security controls are initialized, effectively bypassing the tool's malicious package detection. The attack vector is indirect and requires a developer to install dependencies for an untrusted project and execute a command within the context of the untrusted project. The vulnerability has been patched in Socket Firewall version 0.15.5. Users should upgrade to version 0.15.5 or later. The fix isolates configuration file values from subprocess environments. Look at `sfw --version` for version information. If users rely on the recommended installation mechanism (e.g. global installation via `npm install -g sfw`) then no workaround is necessary. This wrapper package automatically ensures that users are running the latest version of Socket Firewall. Users who have manually installed the binary and cannot immediately upgrade should avoid running Socket Firewall in untrusted project directories. Before running Socket Firewall in any new project, inspect `.sfw.config` and `.env.local` files for suspicious `NODE_OPTIONS` or other environment variable definitions that reference local files. |
| A vulnerability, which was classified as problematic, was found in Postman up to 11.20 on Windows. This affects an unknown part in the library profapi.dll. The manipulation leads to untrusted search path. An attack has to be approached locally. The complexity of an attack is rather high. The exploitability is told to be difficult. The vendor was contacted early about this disclosure but did not respond in any way. |
| Unquoted search path for some PRI Driver software before version 03.03.1002 within Ring 3: User Applications may allow an escalation of privilege. Unprivileged software adversary with an authenticated user combined with a high complexity attack may enable escalation of privilege. This result may potentially occur via local access when attack requirements are present without special internal knowledge and requires active user interaction. The potential vulnerability may impact the confidentiality (high), integrity (high) and availability (high) of the vulnerable system, resulting in subsequent system confidentiality (none), integrity (none) and availability (none) impacts. |
| Framelink Figma MCP Server before 0.6.3 allows an unauthenticated remote attacker to execute arbitrary operating system commands via a crafted HTTP POST request with shell metacharacters in input that is used by a fetchWithRetry curl command. The vulnerable endpoint fails to properly sanitize user-supplied input, enabling the attacker to inject malicious commands that are executed with the privileges of the MCP process. Exploitation requires network access to the MCP interface. |
| The Microsoft vulnerable driver block list is implemented as Windows Defender Application Control (WDAC) policy. Entries that specify only the to-be-signed (TBS) part of the code signer certificate are properly blocked, but entries that specify the signing certificate's TBS hash along with a 'FileAttribRef' qualifier (such as file name or version) may not be blocked, whether hypervisor-protected code integrity (HVCI) is enabled or not. NOTE: The vendor disputes this CVE ID assignment and states that the driver blocklist is intended for use with HVCI. |
| Uncontrolled search path in some Intel(R) PCM software before version 202311 may allow an authenticated user to potentially enable escalation of privilege via local access. |