Описание
ELSA-2026-50257: Unbreakable Enterprise kernel security update (IMPORTANT)
[5.15.0-319.201.4.6]
- xfrm: esp: ipv4: fix up flags setting (Greg Kroah-Hartman) [Orabug: 39342679] {CVE-2026-43284}
- xfrm: esp: avoid in-place decrypt on shared skb frags (Kuan-Ting Chen) [Orabug: 39342679] {CVE-2026-43284}
[5.15.0-319.201.4.5]
- iommu/arm-smmu-v3: Handle zeroed A4-2C HTTU override settings (Joao Martins) [Orabug: 39312049]
- iommu: Move IOMMU_DIRTY_NO_CLEAR define (Shameer Kolothum) [Orabug: 39312049]
- iommu/arm-smmu-v3: Enable HTTU for stage1 with io-pgtable mapping (Kunkun Jiang) [Orabug: 39312049]
- iommu/arm-smmu-v3: Add support for dirty tracking in domain alloc (Joao Martins) [Orabug: 39312049]
- iommu/io-pgtable-arm: Add read_and_clear_dirty() support (Shameer Kolothum) [Orabug: 39312049]
- iommu/arm-smmu-v3: Add feature detection for HTTU (Jean-Philippe Brucker) [Orabug: 39312049]
Обновленные пакеты
Oracle Linux 8
Oracle Linux aarch64
bpftool
5.15.0-319.201.4.6.el8uek
kernel-uek
5.15.0-319.201.4.6.el8uek
kernel-uek-container
5.15.0-319.201.4.6.el8uek
kernel-uek-container-debug
5.15.0-319.201.4.6.el8uek
kernel-uek-core
5.15.0-319.201.4.6.el8uek
kernel-uek-debug
5.15.0-319.201.4.6.el8uek
kernel-uek-debug-core
5.15.0-319.201.4.6.el8uek
kernel-uek-debug-devel
5.15.0-319.201.4.6.el8uek
kernel-uek-debug-modules
5.15.0-319.201.4.6.el8uek
kernel-uek-debug-modules-extra
5.15.0-319.201.4.6.el8uek
kernel-uek-devel
5.15.0-319.201.4.6.el8uek
kernel-uek-doc
5.15.0-319.201.4.6.el8uek
kernel-uek-modules
5.15.0-319.201.4.6.el8uek
kernel-uek-modules-extra
5.15.0-319.201.4.6.el8uek
Oracle Linux x86_64
bpftool
5.15.0-319.201.4.6.el8uek
kernel-uek
5.15.0-319.201.4.6.el8uek
kernel-uek-container
5.15.0-319.201.4.6.el8uek
kernel-uek-container-debug
5.15.0-319.201.4.6.el8uek
kernel-uek-core
5.15.0-319.201.4.6.el8uek
kernel-uek-debug
5.15.0-319.201.4.6.el8uek
kernel-uek-debug-core
5.15.0-319.201.4.6.el8uek
kernel-uek-debug-devel
5.15.0-319.201.4.6.el8uek
kernel-uek-debug-modules
5.15.0-319.201.4.6.el8uek
kernel-uek-debug-modules-extra
5.15.0-319.201.4.6.el8uek
kernel-uek-devel
5.15.0-319.201.4.6.el8uek
kernel-uek-doc
5.15.0-319.201.4.6.el8uek
kernel-uek-modules
5.15.0-319.201.4.6.el8uek
kernel-uek-modules-extra
5.15.0-319.201.4.6.el8uek
Oracle Linux 9
Oracle Linux aarch64
bpftool
5.15.0-319.201.4.6.el9uek
kernel-uek
5.15.0-319.201.4.6.el9uek
kernel-uek-container
5.15.0-319.201.4.6.el9uek
kernel-uek-container-debug
5.15.0-319.201.4.6.el9uek
kernel-uek-core
5.15.0-319.201.4.6.el9uek
kernel-uek-debug
5.15.0-319.201.4.6.el9uek
kernel-uek-debug-core
5.15.0-319.201.4.6.el9uek
kernel-uek-debug-devel
5.15.0-319.201.4.6.el9uek
kernel-uek-debug-modules
5.15.0-319.201.4.6.el9uek
kernel-uek-debug-modules-extra
5.15.0-319.201.4.6.el9uek
kernel-uek-devel
5.15.0-319.201.4.6.el9uek
kernel-uek-doc
5.15.0-319.201.4.6.el9uek
kernel-uek-modules
5.15.0-319.201.4.6.el9uek
kernel-uek-modules-extra
5.15.0-319.201.4.6.el9uek
kernel-uek64k
5.15.0-319.201.4.6.el9uek
kernel-uek64k-core
5.15.0-319.201.4.6.el9uek
kernel-uek64k-devel
5.15.0-319.201.4.6.el9uek
kernel-uek64k-modules
5.15.0-319.201.4.6.el9uek
kernel-uek64k-modules-extra
5.15.0-319.201.4.6.el9uek
Oracle Linux x86_64
bpftool
5.15.0-319.201.4.6.el9uek
kernel-uek
5.15.0-319.201.4.6.el9uek
kernel-uek-container
5.15.0-319.201.4.6.el9uek
kernel-uek-container-debug
5.15.0-319.201.4.6.el9uek
kernel-uek-core
5.15.0-319.201.4.6.el9uek
kernel-uek-debug
5.15.0-319.201.4.6.el9uek
kernel-uek-debug-core
5.15.0-319.201.4.6.el9uek
kernel-uek-debug-devel
5.15.0-319.201.4.6.el9uek
kernel-uek-debug-modules
5.15.0-319.201.4.6.el9uek
kernel-uek-debug-modules-extra
5.15.0-319.201.4.6.el9uek
kernel-uek-devel
5.15.0-319.201.4.6.el9uek
kernel-uek-doc
5.15.0-319.201.4.6.el9uek
kernel-uek-modules
5.15.0-319.201.4.6.el9uek
kernel-uek-modules-extra
5.15.0-319.201.4.6.el9uek
Связанные CVE
Связанные уязвимости
In the Linux kernel, the following vulnerability has been resolved: xfrm: esp: avoid in-place decrypt on shared skb frags MSG_SPLICE_PAGES can attach pages from a pipe directly to an skb. TCP marks such skbs with SKBFL_SHARED_FRAG after skb_splice_from_iter(), so later paths that may modify packet data can first make a private copy. The IPv4/IPv6 datagram append paths did not set this flag when splicing pages into UDP skbs. That leaves an ESP-in-UDP packet made from shared pipe pages looking like an ordinary uncloned nonlinear skb. ESP input then takes the no-COW fast path for uncloned skbs without a frag_list and decrypts in place over data that is not owned privately by the skb. Mark IPv4/IPv6 datagram splice frags with SKBFL_SHARED_FRAG, matching TCP. Also make ESP input fall back to skb_cow_data() when the flag is present, so ESP does not decrypt externally backed frags in place. Private nonlinear skb frags still use the existing fast path. This intentionally does not change ESP...
In the Linux kernel, the following vulnerability has been resolved: xfrm: esp: avoid in-place decrypt on shared skb frags MSG_SPLICE_PAGES can attach pages from a pipe directly to an skb. TCP marks such skbs with SKBFL_SHARED_FRAG after skb_splice_from_iter(), so later paths that may modify packet data can first make a private copy. The IPv4/IPv6 datagram append paths did not set this flag when splicing pages into UDP skbs. That leaves an ESP-in-UDP packet made from shared pipe pages looking like an ordinary uncloned nonlinear skb. ESP input then takes the no-COW fast path for uncloned skbs without a frag_list and decrypts in place over data that is not owned privately by the skb. Mark IPv4/IPv6 datagram splice frags with SKBFL_SHARED_FRAG, matching TCP. Also make ESP input fall back to skb_cow_data() when the flag is present, so ESP does not decrypt externally backed frags in place. Private nonlinear skb frags still use the existing fast path. This intentionally does not change ESP...
In the Linux kernel, the following vulnerability has been resolved: xfrm: esp: avoid in-place decrypt on shared skb frags MSG_SPLICE_PAGES can attach pages from a pipe directly to an skb. TCP marks such skbs with SKBFL_SHARED_FRAG after skb_splice_from_iter(), so later paths that may modify packet data can first make a private copy. The IPv4/IPv6 datagram append paths did not set this flag when splicing pages into UDP skbs. That leaves an ESP-in-UDP packet made from shared pipe pages looking like an ordinary uncloned nonlinear skb. ESP input then takes the no-COW fast path for uncloned skbs without a frag_list and decrypts in place over data that is not owned privately by the skb. Mark IPv4/IPv6 datagram splice frags with SKBFL_SHARED_FRAG, matching TCP. Also make ESP input fall back to skb_cow_data() when the flag is present, so ESP does not decrypt externally backed frags in place. Private nonlinear skb frags still use the existing fast path. This intentionally does not change E
xfrm: esp: avoid in-place decrypt on shared skb frags
In the Linux kernel, the following vulnerability has been resolved: x ...