| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| ntfs3 in the Linux kernel through 6.8.0 allows a physically proximate attacker to read kernel memory by mounting a filesystem (e.g., if a Linux distribution is configured to allow unprivileged mounts of removable media) and then leveraging local access to trigger an out-of-bounds read. A length value can be larger than the amount of memory allocated. NOTE: the supplier's perspective is that there is no vulnerability when an attack requires an attacker-modified filesystem image. |
| On Windows a directory returned by tempfile.mkdtemp() would not always have permissions set to restrict reading and writing to the temporary directory by other users, instead usually inheriting the correct permissions from the default location. Alternate configurations or users without a profile directory may not have the intended permissions.
If you’re not using Windows or haven’t changed the temporary directory location then you aren’t affected by this vulnerability. On other platforms the returned directory is consistently readable and writable only by the current user.
This issue was caused by Python not supporting Unix permissions on Windows. The fix adds support for Unix “700” for the mkdir function on Windows which is used by mkdtemp() to ensure the newly created directory has the proper permissions. |
| apko allows users to build and publish OCI container images built from apk packages. Starting in version 0.27.0 and prior to version 0.29.5, critical files were inadvertently set to 0666, which could likely be abused for root escalation. Version 0.29.5 contains a fix for the issue. |
| MacPaw The Unarchiver before 4.3.6 contains vulnerability related to missing quarantine attributes for extracted items. |
| An improper permissions vulnerability was reported in Lenovo Baiying Client that could allow a local authenticated user to execute code with elevated privileges. |
| Incorrect default permissions for some Intel(R) DSA installer for Windows before version 24.2.19.5 may allow an authenticated user to potentially enable escalation of privilege via local access. |
| A Local privilege escalation vulnerability found in a Self-Hosted UniFi Network Server with UniFi Network Application (Version 8.4.62 and earlier) allows a malicious actor with a local operational system user to execute high privilege actions on UniFi Network Server. |
| The default mode of pseudo terminals (PTYs) allocated by Screen was changed from 0620 to 0622, thereby allowing anyone to write to any Screen PTYs in the system. |
| A remote attacker using the insecure upload functionality will be able to overwrite any Python file and get Remote Code Execution. As for the affected products/models/versions, see the reference URL. |
| Incorrect default permissions for some Intel(R) Battery Life Diagnostic Tool 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. |
| Attackers with local access to the medical office computer can
escalate their Windows user privileges to "NT AUTHORITY\SYSTEM" by
overwriting one of two Elefant service binaries with weak permissions. The default installation directory of Elefant is "C:\Elefant1" which is
writable for all users. In addition, the Elefant installer registers two
Firebird database services which are running as “NT AUTHORITY\SYSTEM”.
Path: C:\Elefant1\Firebird_2\bin\fbserver.exe
Path: C:\Elefant1\Firebird_2\bin\fbguard.exe
Both service binaries are user writable. This means that a local
attacker can rename one of the service binaries, replace the service
executable with a new executable, and then restart the system. Once the
system has rebooted, the new service binary is executed as "NT
AUTHORITY\SYSTEM". |
| The application Faronics WINSelect (Standard + Enterprise) saves its configuration in an encrypted file on the file system which "Everyone" has read and write access to, path to file:
C:\ProgramData\WINSelect\WINSelect.wsd
The path for the affected WINSelect Enterprise configuration file is:
C:\ProgramData\Faronics\StorageSpace\WS\WINSelect.wsd |
| By default, dedicated folders of ZEDMAIL for Windows up to 2024.3 can be accessed by other users to misuse technical files and make them perform tasks with higher privileges. Configuration of ZEDMAIL has to be modified to prevent this vulnerability. |
| Keyfactor Command before 12.5.0 has Incorrect Access Control: access tokens are over permissioned, aka 64099. The fixed versions are 11.5.1.1, 11.5.2.1, 11.5.3.1, 11.5.4.5, 11.5.6.1, 11.6.0, 12.2.0.1, 12.3.0.1, 12.4.0.1, 12.5.0, and 24.4.0. |
| Incorrect access control in QuickHeal Antivirus Pro 24.1.0.182 and earlier allows authenticated attackers with low-level privileges to arbitrarily modify antivirus settings. |
| Incorrect default permissions for some Endurance Gaming Mode software installers may allow an authenticated user to potentially enable escalation of privilege via local access. |
| In ICMPv6 Neighbor Discovery (ND), the ID is always 0. When pf is configured to allow ND and block incoming Echo Requests, a crafted Echo Request packet after a Neighbor Solicitation (NS) can trigger an Echo Reply. The packet has to come from the same host as the NS and have a zero as identifier to match the state created by the Neighbor Discovery and allow replies to be generated.
ICMPv6 packets with identifier value of zero bypass firewall rules written on the assumption that the incoming packets are going to create a state in the state table. |
| Certain software builds for the TCL 30Z and TCL 10 Android devices contain a vulnerable, pre-installed app that relies on a missing permission that provides no protection at runtime. The missing permission is required as an access permission by components in various pre-installed apps. On the TCL 30Z device, the vulnerable app has a package name of com.tcl.screenrecorder (versionCode='1221092802', versionName='v5.2120.02.12008.1.T' ; versionCode='1221092805', versionName='v5.2120.02.12008.2.T'). On the TCL 10L device, the vulnerable app has a package name of com.tcl.sos (versionCode='2020102827', versionName='v3.2014.12.1012.B'). When a third-party app declares and requests the missing permission, it can interact with certain service components in the aforementioned apps (that execute with "system" privileges) to perform arbitrary files reads/writes in its context. An app exploiting this vulnerability only needs to declare and request the single missing permission and no user interaction is required beyond installing and running a third-party app. The software build fingerprints for each confirmed vulnerable device are as follows: TCL 10L (TCL/T770B/T1_LITE:11/RKQ1.210107.001/8BIC:user/release-keys) and TCL 30Z (TCL/4188R/Jetta_ATT:12/SP1A.210812.016/LV8E:user/release-keys, TCL/T602DL/Jetta_TF:12/SP1A.210812.016/vU5P:user/release-keys, TCL/T602DL/Jetta_TF:12/SP1A.210812.016/vU61:user/release-keys, TCL/T602DL/Jetta_TF:12/SP1A.210812.016/vU66:user/release-keys, TCL/T602DL/Jetta_TF:12/SP1A.210812.016/vU68:user/release-keys, TCL/T602DL/Jetta_TF:12/SP1A.210812.016/vU6P:user/release-keys, and TCL/T602DL/Jetta_TF:12/SP1A.210812.016/vU6X:user/release-keys). This malicious app declares the missing permission named com.tct.smart.switchphone.permission.SWITCH_DATA as a normal permission, requests the missing permission, and uses it to interact with the com.tct.smart.switchdata.DataService service component that is declared in vulnerable apps that execute with "system" privileges to perform arbitrary file reads/writes. |
| In Thermo Fisher Scientific Xcalibur before 4.7 SP1 and Thermo Foundation Instrument Control Software (ICSW) before 3.1 SP10, the driver packages have a local privilege escalation vulnerability due to improper access control permissions on Windows systems. |
| Incorrect default permissions issue exists in Security Point (Windows) of MaLion prior to Ver.5.3.4. If this vulnerability is exploited, an arbitrary file could be placed in the specific folder by a user who can log in to the system where the product's Windows client is installed. If the file is a specially crafted DLL file, arbitrary code could be executed with SYSTEM privilege. |