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CVE-2026-64007

Critical · CVSS 9.8
CVSS
9.8
nvd
EPSS
0.18%
7th pct
KEV
No
Class
oss containerizable

Description

In the Linux kernel, the following vulnerability has been resolved: netfilter: synproxy: refresh tcphdr after skb_ensure_writable synproxy_tstamp_adjust() rewrites the TCP timestamp option in place and then patches the TCP checksum via inet_proto_csum_replace4() on the caller-supplied tcphdr pointer. Both ipv4_synproxy_hook() and ipv6_synproxy_hook() obtain that pointer with skb_header_pointer() before calling in, so it may either alias skb->head directly or point at the caller's on-stack _tcph buffer. Between obtaining the pointer and using it, the function calls skb_ensure_writable(skb, optend), which on a cloned or non-linear skb invokes pskb_expand_head() and frees the old skb->head. After that point the cached th is stale: caller (ipv[46]_synproxy_hook) th = skb_header_pointer(skb, ..., &_tcph) synproxy_tstamp_adjust(skb, protoff, th, ...) skb_ensure_writable(skb, optend) pskb_expand_head() /* kfree(old skb->head) */ ... inet_proto_csum_replace4(&th->check, ...) /* writes into freed head, or into the caller's stack copy leaving the on-wire checksum stale */ The option bytes are written through skb->data and are fine; only the checksum update goes through th and so lands in the wrong place. The result is either a write into freed slab memory or a packet leaving with a checksum that does not match its payload. Fix by re-deriving th from skb->data + protoff immediately after skb_ensure_writable() succeeds, so the subsequent checksum update targets the linear, writable header.

Affected packages

Linux Kernel 3.12.0 → 5.10.259
Linux Kernel 5.11.0 → 5.15.210
Linux Kernel 5.16.0 → 6.1.176
Linux Kernel 6.13.0 → 6.18.35
Linux Kernel 6.19.0 → 7.0.12
Linux Kernel 6.2.0 → 6.6.143
Linux Kernel 6.7.0 → 6.12.93

References

Status: profiled · ingested 2026-07-20T18:00:18.000Z