Filtered by vendor Canonical
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Total
4303 CVE
| CVE | Vendors | Products | Updated | CVSS v2 | CVSS v3 |
|---|---|---|---|---|---|
| CVE-2024-5493 | 3 Canonical, Fedoraproject, Google | 3 Ubuntu Linux, Fedora, Chrome | 2026-06-17 | N/A | 8.8 HIGH |
| Heap buffer overflow in WebRTC in Google Chrome prior to 125.0.6422.141 allowed a remote attacker to potentially exploit heap corruption via a crafted HTML page. (Chromium security severity: High) | |||||
| CVE-2024-5290 | 2 Canonical, W1.fi | 2 Ubuntu Linux, Wpa Supplicant | 2026-06-17 | N/A | 8.8 HIGH |
| An issue was discovered in Ubuntu wpa_supplicant that resulted in loading of arbitrary shared objects, which allows a local unprivileged attacker to escalate privileges to the user that wpa_supplicant runs as (usually root). Membership in the netdev group or access to the dbus interface of wpa_supplicant allow an unprivileged user to specify an arbitrary path to a module to be loaded by the wpa_supplicant process; other escalation paths might exist. | |||||
| CVE-2024-5138 | 1 Canonical | 1 Snapd | 2026-06-17 | N/A | 8.1 HIGH |
| The snapctl component within snapd allows a confined snap to interact with the snapd daemon to take certain privileged actions on behalf of the snap. It was found that snapctl did not properly parse command-line arguments, allowing an unprivileged user to trigger an authorised action on behalf of the snap that would normally require administrator privileges to perform. This could possibly allow an unprivileged user to perform a denial of service or similar. | |||||
| CVE-2024-3250 | 1 Canonical | 1 Pebble | 2026-06-17 | N/A | 6.5 MEDIUM |
| It was discovered that Canonical's Pebble service manager read-file API and the associated pebble pull command, before v1.10.2, allowed unprivileged local users to read files with root-equivalent permissions when Pebble was running as root. Fixes are also available as backports to v1.1.1, v1.4.2, and v1.7.4. | |||||
| CVE-2024-36392 | 2 Canonical, Milesight | 2 Ubuntu Linux, Devicehub | 2026-06-17 | N/A | 6.1 MEDIUM |
| MileSight DeviceHub - CWE-79: Improper Neutralization of Input During Web Page Generation ('Cross-site Scripting') | |||||
| CVE-2024-36391 | 2 Canonical, Milesight | 2 Ubuntu Linux, Devicehub | 2026-06-17 | N/A | 9.1 CRITICAL |
| MileSight DeviceHub - CWE-320: Key Management Errors may allow Authentication Bypass and Man-In-The-Middle Traffic | |||||
| CVE-2024-36390 | 2 Canonical, Milesight | 2 Ubuntu Linux, Devicehub | 2026-06-17 | N/A | 7.5 HIGH |
| MileSight DeviceHub - CWE-20 Improper Input Validation may allow Denial of Service | |||||
| CVE-2024-36389 | 2 Canonical, Milesight | 2 Ubuntu Linux, Devicehub | 2026-06-17 | N/A | 9.8 CRITICAL |
| MileSight DeviceHub - CWE-330 Use of Insufficiently Random Values may allow Authentication Bypass | |||||
| CVE-2024-36388 | 2 Canonical, Milesight | 2 Ubuntu Linux, Devicehub | 2026-06-17 | N/A | 10.0 CRITICAL |
| MileSight DeviceHub - CWE-305 Missing Authentication for Critical Function | |||||
| CVE-2024-29069 | 1 Canonical | 1 Snapd | 2026-06-17 | N/A | 4.8 MEDIUM |
| In snapd versions prior to 2.62, snapd failed to properly check the destination of symbolic links when extracting a snap. The snap format is a squashfs file-system image and so can contain symbolic links and other file types. Various file entries within the snap squashfs image (such as icons and desktop files etc) are directly read by snapd when it is extracted. An attacker who could convince a user to install a malicious snap which contained symbolic links at these paths could then cause snapd to write out the contents of the symbolic link destination into a world-readable directory. This in-turn could allow an unprivileged user to gain access to privileged information. | |||||
| CVE-2024-29068 | 1 Canonical | 1 Snapd | 2026-06-17 | N/A | 5.8 MEDIUM |
| In snapd versions prior to 2.62, snapd failed to properly check the file type when extracting a snap. The snap format is a squashfs file-system image and so can contain files that are non-regular files (such as pipes or sockets etc). Various file entries within the snap squashfs image (such as icons etc) are directly read by snapd when it is extracted. An attacker who could convince a user to install a malicious snap which contained non-regular files at these paths could then cause snapd to block indefinitely trying to read from such files and cause a denial of service. | |||||
| CVE-2024-27776 | 2 Canonical, Milesight | 2 Ubuntu Linux, Devicehub | 2026-06-17 | N/A | 9.8 CRITICAL |
| MileSight DeviceHub - CWE-22 Improper Limitation of a Pathname to a Restricted Directory ('Path Traversal') may allow Unauthenticated RCE | |||||
| CVE-2024-1724 | 1 Canonical | 1 Snapd | 2026-06-17 | N/A | 6.3 MEDIUM |
| In snapd versions prior to 2.62, when using AppArmor for enforcement of sandbox permissions, snapd failed to restrict writes to the $HOME/bin path. In Ubuntu, when this path exists, it is automatically added to the users PATH. An attacker who could convince a user to install a malicious snap which used the 'home' plug could use this vulnerability to install arbitrary scripts into the users PATH which may then be run by the user outside of the expected snap sandbox and hence allow them to escape confinement. | |||||
| CVE-2024-11586 | 2 Canonical, Pulseaudio | 2 Ubuntu Linux, Pulseaudio | 2026-06-17 | N/A | 4.0 MEDIUM |
| Ubuntu's implementation of pulseaudio can be crashed by a malicious program if a bluetooth headset is connected. | |||||
| CVE-2024-11584 | 1 Canonical | 1 Cloud-init | 2026-06-17 | N/A | 5.9 MEDIUM |
| cloud-init through 25.1.2 includes the systemd socket unit cloud-init-hotplugd.socket with default SocketMode that grants 0666 permissions, making it world-writable. This is used for the "/run/cloud-init/hook-hotplug-cmd" FIFO. An unprivileged user could trigger hotplug-hook commands. | |||||
| CVE-2024-0115 | 2 Canonical, Nvidia | 3 Ubuntu Linux, Cv-cuda, Jetpack Software Development Kit | 2026-06-17 | N/A | 6.1 MEDIUM |
| NVIDIA CV-CUDA for Ubuntu 20.04, Ubuntu 22.04, and Jetpack contains a vulnerability in Python APIs where a user may cause an uncontrolled resource consumption issue by a long running CV-CUDA Python process. A successful exploit of this vulnerability may lead to denial of service and data loss. | |||||
| CVE-2024-0093 | 5 Canonical, Citrix, Nvidia and 2 more | 6 Ubuntu Linux, Hypervisor, Cloud Gaming and 3 more | 2026-06-17 | N/A | 6.5 MEDIUM |
| NVIDIA GPU software for Linux contains a vulnerability where it can expose sensitive information to an actor that is not explicitly authorized to have access to that information. A successful exploit of this vulnerability might lead to information disclosure. | |||||
| CVE-2024-0092 | 6 Canonical, Citrix, Microsoft and 3 more | 14 Ubuntu Linux, Hypervisor, Azure Stack Hci and 11 more | 2026-06-17 | N/A | 5.5 MEDIUM |
| NVIDIA GPU Driver for Windows and Linux contains a vulnerability where an improper check or improper handling of exception conditions might lead to denial of service. | |||||
| CVE-2024-0091 | 7 Canonical, Citrix, Linux and 4 more | 16 Ubuntu Linux, Hypervisor, Linux Kernel and 13 more | 2026-06-17 | N/A | 7.8 HIGH |
| NVIDIA GPU Display Driver for Windows and Linux contains a vulnerability where a user can cause an untrusted pointer dereference by executing a driver API. A successful exploit of this vulnerability might lead to denial of service, information disclosure, and data tampering. | |||||
| CVE-2024-0090 | 7 Canonical, Citrix, Linux and 4 more | 16 Ubuntu Linux, Hypervisor, Linux Kernel and 13 more | 2026-06-17 | N/A | 7.8 HIGH |
| NVIDIA GPU driver for Windows and Linux contains a vulnerability where a user can cause an out-of-bounds write. A successful exploit of this vulnerability might lead to code execution, denial of service, escalation of privileges, information disclosure, and data tampering. | |||||
