---
cve: "CVE-2026-63794"
severity: "LOW"
cvss: 3.1
epss: "0.1%"
vendor: "Linux"
kev: false
exploited: false
published: "2026-07-19 12:16:51"
tags: [cve, security, low]
source: tsecurity.de CVE-Dossier
exported: "2026-09-21T11:01:08+02:00"
---

# CVE-2026-63794

> 3.1 LOW

## Beschreibung

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

KVM: SVM: Fix page overflow in sev_dbg_crypt() for ENCRYPT path

In sev_dbg_crypt(), the per-iteration transfer length is bounded by
the source page offset (PAGE_SIZE - s_off) but not by the destination
page offset (PAGE_SIZE - d_off).  When d_off > s_off, the encrypt
path (__sev_dbg_encrypt_user) performs a read-modify-write using a
single-page intermediate buffer (dst_tpage):

  1. __sev_dbg_decrypt() expands the size to round_up(len + (d_off & 15), 16)
     before issuing the PSP command.  If len + (d_off & 15) > PAGE_SIZE,
     the PSP writes beyond the end of the 4096-byte dst_tpage allocation.

  2. The subsequent memcpy()/copy_from_user() into
     page_address(dst_tpage) + (d_off & 15) of 'len' bytes overflows
     by up to 15 bytes under the same condition.

Trigger example: s_off = 0, d_off = 1, debug.len = PAGE_SIZE -
the PSP is instructed to write round_up(4097, 16) = 4112 bytes to
a 4096-byte buffer.

Fix by also bounding len by (PAGE_SIZE - d_off), the same check that
sev_send_update_data() already performs for its single-page guest
region.

 ==================================================================
 BUG: KASAN: slab-use-after-free in sev_dbg_crypt+0x993/0xd10 [kvm_amd]
 Write of size 4095 at addr ff110062293bb009 by task sev_dbg_test/228214

 CPU: 96 UID: 0 PID: 228214 Comm: sev_dbg_test Tainted: G     U  W           7.0.0-smp--5ce9b0c48211-dbg #156 PREEMPTLAZY
 Tainted: [U]=USER, [W]=WARN
 Hardware name: Google Astoria/astoria, BIOS 0.20250817.1-0 08/25/2025
 Call Trace:
  
  dump_stack_lvl+0x54/0x70
  print_report+0xbc/0x260
  kasan_report+0xa2/0xd0
  kasan_check_range+0x25f/0x2c0
  __asan_memcpy+0x40/0x70
  sev_dbg_crypt+0x993/0xd10 [kvm_amd]
  sev_mem_enc_ioctl+0x33c/0x450 [kvm_amd]
  kvm_vm_ioctl+0x65d/0x6d0 [kvm]
  __se_sys_ioctl+0xb2/0x100
  do_syscall_64+0xe8/0x870
  entry_SYSCALL_64_after_hwframe+0x4b/0x53
  

 The buggy address belongs to the physical page:
 page: refcount:1 mapcount:0 mapping:0000000000000000 index:0x7fe72b6a0 pfn:0x62293bb
 memcg:ff11000112827d82
 flags: 0x1400000000000000(node=1|zone=1)
 raw: 1400000000000000 0000000000000000 dead000000000122 0000000000000000
 raw: 00000007fe72b6a0 0000000000000000 00000001ffffffff ff11000112827d82
 page dumped because: kasan: bad access detected

 Memory state around the buggy address:
  ff110062293bbf00: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
  ff110062293bbf80: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
 >ff110062293bc000: fa fb fb fb fb fb fb fb fc fc fc fc fc fc fc fc
                    ^
  ff110062293bc080: fa fb fb fb fb fb fb fb fc fc fc fc fc fc fc fc
  ff110062293bc100: fa fb fb fb fb fb fb fb fc fc fc fc fc fc fc fc
 ==================================================================
 Disabling lock debugging due to kernel taint

[sean: add sample KASAN splat, Fixes, and stable@]

## Patch verfügbar (OSV)

- Kernel ≥ 5.10.260
- Kernel ≥ 5.15.211
- Kernel ≥ 6.1.177
- Kernel ≥ 6.6.144
- Kernel ≥ 6.12.95
- Kernel ≥ 6.18.38
- Kernel ≥ 7.1.3

## Referenzen

- <https://git.kernel.org/stable/c/f701ae476cb92a3a3d8844bb39bb63b4512684c8>
- <https://git.kernel.org/stable/c/64f2449841ffc7d203183aa4c748c9c77951ecc5>
- <https://git.kernel.org/stable/c/9349b50f4b11f135fe73b56cb2c2c872d8bc71d7>
- <https://git.kernel.org/stable/c/889c2a9c59897ca912bf39df5bb92555a0a13df4>
- <https://git.kernel.org/stable/c/e1a0fe288dee07b7da25a71e007c1ecd1080315b>
- <https://git.kernel.org/stable/c/720949ed666f34ff28ffdfe1471a5861d1e41fdf>
- <https://git.kernel.org/stable/c/2753a097d1fe24c4351c608048612c74108aa89f>
- <https://git.kernel.org/stable/c/78ee2d50185a037b3d2452a97f3dad69c3f7f389>

---
_Exportiert aus dem [tsecurity.de CVE-Dossier](https://tsecurity.de/cve?cve=CVE-2026-63794) · Datenquellen: EUVD (ENISA), NVD, OSV, CISA KEV, FIRST EPSS, Exploit-DB, BSI BITS_
