modules: add refluxfs (CVE-2026-64600, "RefluXFS" XFS reflink CoW ILOCK race)
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Adds the corpus's first XFS module and its first data-oriented kernel bug —
every other kernel entry corrupts memory; this one corrupts file contents.
xfs_direct_write_iomap_begin() reads the data-fork extent map under ILOCK,
then xfs_reflink_fill_cow_hole() drops ILOCK to wait for transaction log
space. On reacquiring it, the code re-queries the refcount btree at the
ORIGINAL imap->br_startblock and never re-reads the data fork. A second
O_DIRECT writer holding only IOLOCK completes a whole CoW cycle in that
window, so the first writer's stale mapping sees refcount 1, treats a
still-shared block as private, and writes to it in place — landing its data
on the reflink source file's on-disk blocks.
The primitive is an arbitrary overwrite of the on-disk contents of any
readable file, which has three consequences that drive the design:
- No offsets, no ROP, no KASLR/SMEP/SMAP; SELinux, containers and seccomp
are all irrelevant.
- The victim's inode is never written, so mtime/ctime/size never change
and nothing is logged — FIM and `-w /etc/passwd -p wa` cannot see it.
- The change persists across reboots.
Introduced 4.11 (3c68d44a2b49); fixed 2f4acd0fcd86 (mainline 7.2-rc4,
merged 2026-07-16), stable backports 7.1.4 / 6.18.39 / 6.12.96. Exposure is
distro-shaped: RHEL/CentOS/Rocky/Alma/Oracle/CloudLinux 8-10, Fedora Server
>= 31 and Amazon Linux 2023 ship XFS+reflink by default.
detect() is not a pure version gate — reachability here is safely
observable, so it pairs the backport table with a real storage precondition
(writable XFS via statfs XFS_SUPER_MAGIC, deliberately not via a successful
FICLONE since btrfs implements that too and is unaffected). --active
confirms reflink via FICLONE; SKELETONKEY_XFS_ASSUME_REFLINK=1/0 overrides.
On rpm-family hosts it warns that vendors backport without bumping the
upstream version, so the verdict speaks only to the upstream base.
exploit() forks a child that works only in a private mkdtemp scratch dir on
two files it owns: it establishes a shared extent (FICLONE, corroborated by
FIEMAP_EXTENT_SHARED) plus an O_DIRECT gate, then races a hard-bounded
8 writers / 2 helpers / 16 rounds / 2s and stops, reading the donor back
with O_DIRECT. Deliberately under-driven, and it never clones or targets a
file it does not own — the /etc/passwd overwrite -> su -> root step is
documented but NOT bundled. Always returns EXPLOIT_FAIL.
Safety rank 55, far above bad_epoll (12) and ghostlock (11): a won race
corrupts 4 KiB of our own scratch file and cannot touch kernel memory, so
there is no oops/KASAN/panic path.
Detection inverts the usual advice. auditd/sigma anchor on ioctl request
0x40049409 (FICLONE, matched exactly) and openat O_DIRECT; falco adds the
cross-uid reflink condition; and the yara rule is genuinely the right tool
here, matching the on-disk artifact because FIM is structurally blind.
VM-VERIFIED 2026-07-23 — the corpus's first rpm-family verification, taking
the empirical count to 29 of 41 CVEs. Rocky Linux 9.8 /
5.14.0-687.10.1.el9_8.0.1.x86_64 under qemu/KVM, stock GenericCloud layout
with no provisioner changes (root is XFS with reflink=1 out of the box).
detect() -> VULNERABLE, --active FICLONE witness confirmed reflink, phase A
observed FIEMAP_EXTENT_SHARED on a real shared extent, scratch self-cleaned,
clean build on el9 gcc. The underlying bug was separately confirmed winnable
on that kernel via tools/verify-vm/refluxfs_verify.c at the public PoC's
parameters (32 writers / 8 helpers, 60s): 4/4 runs won, first divergence
after 69/114/170/494 rounds. The shipped under-driven trigger did NOT win in
its 2s budget on that same vulnerable kernel — intended behaviour, and
exactly why a non-win must never be read as "patched".
14 new detect() unit rows (148 tests total, 0 failures). Bumps to v0.9.14.
Credit: Qualys Threat Research Unit (blog by Saeed Abbasi; the technical
advisory credits model-assisted kernel analysis performed with Anthropic),
and the upstream XFS maintainers who fixed it.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_0118iUgHY44hdRtANgyCmu7y
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# NOTICE — refluxfs (CVE-2026-64600)
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## Vulnerability
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**CVE-2026-64600** — "RefluXFS", a **time-of-check/time-of-use race** in the
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Linux kernel's XFS **reflink copy-on-write** path
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(`fs/xfs/xfs_iomap.c` :: `xfs_direct_write_iomap_begin` →
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`fs/xfs/xfs_reflink.c` :: `xfs_reflink_allocate_cow` /
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`xfs_reflink_fill_cow_hole` / `xfs_find_trim_cow_extent`).
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A direct-I/O writer reads the data-fork extent map under `ILOCK`, then drops
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`ILOCK` to allocate a transaction (waiting for log space). On re-acquiring the
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lock it re-queries the refcount btree at the **original** physical block number
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(`imap->br_startblock`) and never re-reads the data fork. A concurrent
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`O_DIRECT` writer holding only the coarser `IOLOCK` can complete a full CoW
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cycle in that window (allocate block Y, write, remap via
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`xfs_reflink_end_cow()`), leaving the first writer's `imap` pointing at a block
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now owned solely by the reflink **source**. The stale lookup returns refcount
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`1`, the writer treats the block as private, and writes to it in place.
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The resulting primitive is **not memory corruption**: it is an arbitrary
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overwrite of the **on-disk contents of any file the attacker can read**, on any
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reflink-enabled XFS volume they can write to. It needs **no kernel offsets, no
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ROP, and no KASLR/SMEP/SMAP bypass**, and it is unaffected by SELinux enforcing,
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container boundaries or seccomp. Because the write is applied to the shared
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physical block *beneath* the victim inode, the victim's `mtime`/`ctime`/size
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never change and no kernel log output is produced — **file-integrity monitoring
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does not detect it** — and the change persists across reboots.
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Reachable by **any unprivileged local user**: no capability, no user namespace,
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no crafted filesystem image. Preconditions are only an XFS filesystem mounted
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with `reflink=1` (the `mkfs.xfs` default since xfsprogs 5.1) that the user can
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write to, plus read access to the target file. NVD class: **CWE-362** (race)
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yielding **CWE-367** (TOCTOU); NVD had published neither a CWE nor a CVSS vector
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at time of writing. **Not** in CISA KEV (disclosed 2026-07-22).
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## Research credit
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- **Discovery and research** by the **Qualys Threat Research Unit (TRU)**,
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published 2026-07-22 as "RefluXFS: A Linux Kernel Local Privilege Escalation
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to Root in XFS (CVE-2026-64600)"
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(<https://blog.qualys.com/vulnerabilities-threat-research/2026/07/22/refluxfs-a-linux-kernel-local-privilege-escalation-to-root-in-xfs-cve-2026-64600>),
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authored by **Saeed Abbasi**, with the technical advisory at
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<https://cdn2.qualys.com/advisory/2026/07/22/RefluXFS.txt> and the disclosure
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posted to oss-security
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(<https://www.openwall.com/lists/oss-security/2026/07/22/14>). The advisory
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credits model-assisted kernel analysis performed with **Anthropic**.
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Qualys demonstrated end-to-end root on **RHEL 10.2** by reflink-cloning
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`/etc/passwd` into `/var/tmp` and racing concurrent direct-I/O writes to
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rewrite it in place. SKELETONKEY's trigger reconstruction uses only the
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published shape of that race — the reflink clone, the concurrent `O_DIRECT`
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writers, and the `ftruncate`/`fdatasync` helpers that widen the window — and
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reuses no exploitation code; it never targets a file it does not own.
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- **Introduced** in **4.11** (2017-02) by commit `3c68d44a2b49` ("xfs: allocate
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direct I/O COW blocks in iomap_begin").
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- **Fixed upstream** by commit
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`2f4acd0fcd862e22eab45690ec2c08c80b6ef2e7` ("xfs: resample the data fork
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mapping after cycling ILOCK"), merged **2026-07-16** for **7.2-rc4**; stable
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backports **7.1.4** (`e705d81a7193`), **6.18.39** (`206c09b04dc5`) and
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**6.12.96** (`44f891bc0889`).
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- Authoritative version data: the Linux kernel CNA record
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(<https://cveawg.mitre.org/api/cve/CVE-2026-64600>,
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`git.kernel.org/stable/c/<hash>`). The 6.6 / 6.1 / 5.15 / 5.14 / 5.10 / 4.19 /
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4.18 LTS lines are affected with no upstream stable fix published at time of
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writing; RHEL-family, Oracle UEK and Amazon vendor branches backport the fix
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**without bumping the upstream base version**, so the vendor erratum
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(RHSA / ELSA / ALSA / RLSA) — not `uname -r` — is authoritative there.
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All credit for finding, analysing and exploiting this bug belongs to the Qualys
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Threat Research Unit and to the upstream XFS maintainers who fixed it.
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SKELETONKEY is the bundling and bookkeeping layer only.
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## SKELETONKEY role
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🟡 **Trigger (reconstructed) — VM-verified, and deliberately not weaponised.**
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Confirmed 2026-07-23 on **Rocky Linux 9.8 / `5.14.0-687.10.1.el9_8.0.1.x86_64`**
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(stock GenericCloud layout, root on XFS with `reflink=1`) under qemu/KVM:
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`detect()` returns `VULNERABLE`, the `--active` FICLONE witness confirms
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reflink, and phase A observes `FIEMAP_EXTENT_SHARED` on a real shared extent.
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The underlying bug was separately confirmed winnable on that kernel — **4/4
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runs, first divergence after 69-494 rounds** in a 60 s budget — via a VM-only
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harness at the public PoC's parameters (`tools/verify-vm/refluxfs_verify.c`).
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The shipped trigger, deliberately under-driven, did **not** win in its 2 s
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budget on that same vulnerable kernel; that is intended, and is why a non-win
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must never be read as "patched". See `MODULE.md` for the full result table.
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This is the corpus's first XFS
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module and its first **data-oriented** kernel bug — every other kernel entry
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corrupts memory; this one corrupts file contents.
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`detect()` is a kernel-version gate over the three-branch backport table
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(7.1.4 / 6.18.39 / 6.12.96, 7.2+ inherits mainline; introduced 4.11) **plus a
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real precondition probe**: a writable directory on a mounted XFS filesystem,
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identified by `statfs(2)` `f_type == XFS_SUPER_MAGIC` rather than by a working
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`FICLONE`, since btrfs implements `FICLONE` too and is unaffected. Under
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`--active` it confirms `reflink=1` empirically. Override with
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`SKELETONKEY_XFS_ASSUME_REFLINK=1/0`. On rpm-family hosts it explicitly warns
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that the upstream-version verdict cannot see a vendor backport.
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`exploit()` forks an isolated child that works only inside a private `mkdtemp`
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scratch directory, on two files it owns: it confirms a shared extent via
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`FIEMAP_EXTENT_SHARED` (a safe, read-only observation of the refcount state the
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bug misjudges), then races a hard-bounded 8 writers / 2 helpers / 16 rounds / 2 s
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window and stops, reading the donor back with `O_DIRECT` to report divergence
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honestly.
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It is **deliberately under-driven** (the public PoC uses 32 writers and 8
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helpers) and **never clones or targets a file it does not own**. The escalation
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step — reflink-cloning a root-owned file such as `/etc/passwd` and racing writes
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onto its shared blocks, then `su` — persistently rewrites a system file on disk
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with no undo, and is documented in `MODULE.md` but **not bundled**. It always
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returns `EXPLOIT_FAIL` and never claims root it did not get.
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Unlike the corpus's other reconstructed race triggers, a won race here cannot
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touch kernel memory: there is no oops, no KASAN report and no panic risk, and
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the blast radius is 4 KiB of our own scratch file. That is why it ranks **55**
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in `--auto` safety rather than at the bottom alongside `bad_epoll` (12) and
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`ghostlock` (11).
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