3850 matches found
The vulnerability of the btrfs_truncate_block() function in the fs/btrfs/inode.c file of the file system module in Linux kernel allows a attacker to cause a service failure.
The vulnerability of the btrfstruncateblock function in the fs/btrfs/inode.c file of the Btrfs file system in Linux kernels is related to the copying of buffers without checking the size of the input data a classic buffer overflow attack. Exploiting this vulnerability could allow an attacker to...
PT-2026-30159
Name of the Vulnerable Software and Affected Versions Linux kernel affected versions not specified Description The Linux kernel contains a flaw within the btrfs subsystem related to how it handles logging of directory entries dentries when a conflicting inode is encountered. Specifically, when...
The vulnerability of the ext4_fc_record_modified inode() function in the fs/ext4/fast_commit.c module of the Ext4 file system in the Linux operating system, which allows a hacker to cause a service failure.
The vulnerability of the ext4fcrecordmodified inode function in the fs/ext4/fastcommit.c module of the Ext4 file system in the Linux operating system is related to improper memory release memory leak. Exploiting this vulnerability could allow an attacker to cause a service failure...
The vulnerability of the `swap_inode_boot_loader()` function in the `fs/ext4/ioctl.c` file of the Ext4 file system in the Linux operating system allows a hacker to cause a service failure.
The vulnerability of the swapinodebootloader function in the fs/ext4/ioctl.c file of the Ext4 file system in the Linux operating system is related to incorrect initialization. Exploiting this vulnerability could allow an attacker to cause a service failure...
The vulnerability of the ext4_xattr inode_get() function in the fs/ext4/xattr.c module of the Ext4 file system in the Linux operating system allows a attacker to cause a service failure.
The vulnerability of the ext4xattr inodeget function in the fs/ext4/xattr.c module of the Ext4 file system in the Linux operating system is related to the execution of a loop with an unreachable exit condition „Infinite loop“. Exploiting this vulnerability could allow an attacker to cause a servi...
SUSE CVE-2026-23410
In the Linux kernel, the following vulnerability has been resolved: apparmor: fix race on rawdata dereference There is a race condition that leads to a use-after-free situation: because the rawdata inodes are not refcounted, an attacker can start opening one of the rawdata files, and at the same...
SUSE CVE-2026-23411
In the Linux kernel, the following vulnerability has been resolved: apparmor: fix race between freeing data and fs accessing it AppArmor was putting the reference to iprivate data on its end after removing the original entry from the file system. However the inode can aand does live beyond that...
The vulnerability of the ep_io() function in the drivers/usb/gadget/legacy/inode.c module of the Linux USB device driver allows a hacker to cause a service failure.
The vulnerability of the epio function in the drivers/usb/gadget/legacy/inode.c module of the Linux USB device driver framework is related to a buffer overflow based on a stack. Exploiting this vulnerability could allow an attacker to cause a service failure...
EUVD-2026-17843
In the Linux kernel, the following vulnerability has been resolved: apparmor: fix race between freeing data and fs accessing it AppArmor was putting the reference to iprivate data on its end after removing the original entry from the file system. However the inode can aand does live beyond that...
CVE-2026-23411
In the Linux kernel, the following vulnerability has been resolved: apparmor: fix race between freeing data and fs accessing it AppArmor was putting the reference to iprivate data on its end after removing the original entry from the file system. However the inode can aand does live beyond that...
UBUNTU-CVE-2026-23410
In the Linux kernel, the following vulnerability has been resolved: apparmor: fix race on rawdata dereference There is a race condition that leads to a use-after-free situation: because the rawdata inodes are not refcounted, an attacker can start opening one of the rawdata files, and at the same...
CVE-2026-23411
CVE-2026-23411 corresponds to a Linux kernel AppArmor race condition: freeing i_private data can race with filesystem access because the inode may outlive references. The issue is resolved by moving the put of i_private referenced data to the correct place during inode eviction. Affects AppArmor ...
CVE-2026-23411
In the Linux kernel, the following vulnerability has been resolved: apparmor: fix race between freeing data and fs accessing it AppArmor was putting the reference to iprivate data on its end after removing the original entry from the file system. However the inode can aand does live beyond that...
CVE-2026-23410
CVE-2026-23410 – Linux kernel (AppArmor) race condition has a documented use-after-free in rawdata handling. The issue occurs when rawdata inodes aren’t refcounted, allowing an attacker to open a rawdata file while the last reference is removed (e.g., via profile removal), freeing the aa_loaddata...
CVE-2026-23411 apparmor: fix race between freeing data and fs accessing it
In the Linux kernel, the following vulnerability has been resolved: apparmor: fix race between freeing data and fs accessing it AppArmor was putting the reference to iprivate data on its end after removing the original entry from the file system. However the inode can aand does live beyond that...
CVE-2026-23411 apparmor: fix race between freeing data and fs accessing it
In the Linux kernel, the following vulnerability has been resolved: apparmor: fix race between freeing data and fs accessing it AppArmor was putting the reference to iprivate data on its end after removing the original entry from the file system. However the inode can aand does live beyond that...
UBUNTU-CVE-2026-23411
In the Linux kernel, the following vulnerability has been resolved: apparmor: fix race between freeing data and fs accessing it AppArmor was putting the reference to iprivate data on its end after removing the original entry from the file system. However the inode can aand does live beyond that...
The vulnerability in the fs/btrfs/inode.c module of the Linux operating system allows a hacker to gain access to and modify data.
The vulnerability in the fs/btrfs/inode.c module of the Linux operating system is related to the unlocking of a resource that should not be unlocked. Exploiting this vulnerability could allow an attacker to gain access to read and modify data...
The vulnerability of the pstorePutBackendRecords() function in the fs/pstore/inode.c module, which supports the Linux kernel’s persistent storage mechanism, allows a attacker to cause a service failure.
The vulnerability of the pstoreputbackendrecords function in the fs/pstore/inode.c module, which is part of the Linux kernel’s persistent storage support, is related to a error that occurs when memory previously released is reclaimed. Exploiting this vulnerability could allow an attacker to cause...
The vulnerability of the `__cow_file_rangeInline()` function in the fs/btrfs/inode.c module of the Linux operating system allows a hacker to trigger a service failure.
The vulnerability of the cowfilerangeInline function in the fs/btrfs/inode.c module of the Linux operating system’s kernel is related to the lack of resource release after the expiration of the license period. Exploiting this vulnerability could allow a perpetrator to cause a service failure...