CVE-2026-90133

Source
https://cve.org/CVERecord?id=CVE-2026-90133
Import Source
https://storage.googleapis.com/cve-osv-conversion/osv-output/CVE-2026-90133.json
JSON Data
https://api.osv.dev/v1/vulns/CVE-2026-90133
Downstream
Published
2026-09-17T16:06:33Z
Modified
2026-09-19T03:47:24Z
Severity
  • 7.8 (High) CVSS_V3 - CVSS:3.1/AV:L/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H CVSS Calculator
Summary
ntfs: Fix index_root heap OOB write in ntfs_ir_to_ib()
Details

In the Linux kernel, the following vulnerability has been resolved:

ntfs: Fix index_root heap OOB write in ntfs_ir_to_ib()

ntfs_ir_to_ib copies all entries from index_root into a freshly allocated index_block_size-byte buffer without verifying that the entries fit in the available space. The entries in index_root may be larger than the usable entry space in the index block.

This can cause OOB writes past the end of the allocation.

The validator ntfs_index_root_inconsistent() checks that entries are self-consistent within the IR value, but never cross-checks them against index_block_size. There is no bounds check in ntfs_ir_to_ib() before the memcpy.

Fixing this at the sink in ntfs_ir_to_ib() since ntfs_index_root_inconsistent() validates the logical consistency of index_root as a structure and a root with large entries is a structurally valid root. The bug is a size conflict of ntfs_ir_to_ib(). Also, the validator is called once per inode load in ntfs_read_locked_inode() while ntfs_ir_to_ib() is only called during a reparent, a check there adds no overhead to the common path. Moreover, even a future call path that bypasses the validator would still be protected.

With NULL as first parameter of ntfs_error(), the volume error flag is never set by this call, so the device name will be absent from the error message. In any case, that the caller, ntfs_ir_reparent(), prints an error message that includes the device name on NULL returns. I think this is the best solution available without adding 'struct super_block *sb' as a parameter to ntfs_ir_to_ib().

This heap out-of-bounds write is triggered by a crafted filesystem image, which is not in the kernel threat model, anyway, fixing memory errors would be nice to keep things secure.

Database specific
{
    "cna_assigner": "Linux",
    "osv_generated_from": "https://github.com/CVEProject/cvelistV5/tree/main/cves/2026/90xxx/CVE-2026-90133.json"
}
References

Affected packages

Git / git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git

Affected ranges

Type
GIT
Repo
https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git
Events
Introduced
0a8ac0c1fa0b99a5b29002bc7f232ed7eafddef0
Fixed
825dec5120933e90c54e30e31ccfa6c3449043a8
Fixed
dc09bf79b76f9a7157e225f449655f3f62f96c9c

Database specific

source
"https://storage.googleapis.com/cve-osv-conversion/osv-output/CVE-2026-90133.json"

Linux / Kernel

Package

Name
Kernel

Affected ranges

Type
ECOSYSTEM
Events
Introduced
7.1.0
Fixed
7.2.6

Database specific

source
"https://storage.googleapis.com/cve-osv-conversion/osv-output/CVE-2026-90133.json"