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CVE-2026-97533— x86/mm/pat 属性变更竞态条件导致空指针解引用漏洞

一分钟漏洞结论

影响对象
Linux Linux
利用判断
尚无明确在野利用证据,仍需结合暴露面评估
建议动作
优先检查厂商安全公告和参考链接中的修复版本;无法立即升级时,限制受影响服务暴露并加强监测。

在 Linux 内核中,已解决以下漏洞: x86/mm/pat: 在属性更改时获取 init_mm 读锁,以避免Use-After-Free(UAF)漏洞 之前的提交已防止了 ptdump 与 CPA(Change Page Attribute,更改页面属性)折叠操作之间的竞争条件,但正如 Denis V. Lunev 所指出的(见相关链接),在属性更改与折叠操作之间仍然存在竞争条件。 当发生属性更改时,一个无锁页表遍历器会获取一个 PTE(页表项)条目,随后该条目会通过 被写入: 没有任何机制能阻止并发的 CPA

AI 预测 7.8 利用难度: 困难 EPSS 0.21% · P10

影响版本矩阵 8

厂商产品 版本范围状态
Linux Linux 41d88484c71cd4f659348da41b7b5b3dbd3be1f6< e21a9ea81426a85fdb0cdcfcc99d5d9c16b402ab affected
41d88484c71cd4f659348da41b7b5b3dbd3be1f6< cc73b2043d106b467accd38e9b1fc09e0607c056 affected
41d88484c71cd4f659348da41b7b5b3dbd3be1f6< d5d8b8662e6e5a565b47a0388640e88402f23274 affected
6.15 affected
< 6.15 unaffected
6.18.53≤ 6.18.* unaffected
7.2.7≤ 7.2.* unaffected
7.3-rc4≤ * unaffected
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一、 漏洞 CVE-2026-97533 基础信息

漏洞信息

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Vulnerability Title
x86/mm/pat: Acquire init_mm read lock on attribute changes to avoid UAF
来源: CVE Program / CVE List V5
Vulnerability Description
In the Linux kernel, the following vulnerability has been resolved: x86/mm/pat: Acquire init_mm read lock on attribute changes to avoid UAF A previous commit protected against races between ptdump and CPA collapse, however one still exists between attribute changes and collapse as reported by Denis V. Lunev (linked). When an attribute change arises, a lockless page table walker obtains a PTE entry, which is later written to via set_pte_atomic(): ... -> change_page_attr_set_clr() -> __change_page_attr_set_clr() -> __change_page_attr() -> _lookup_address_cpa() -> lookup_address_in_pgd_attr() -> [ lockless page table walker ] -> set_pte_atomic() There is nothing preventing a concurrent CPA collapse which can free the PTE that was retrieved here, resulting in a use-after-free. With the mmap write lock taken on init_mm over CPA collapse, resolve this race by acquiring an mmap read lock on init_mm over __change_page_attr_set_clr(). This locks across the whole operation over which the walk and the PTE entry write occurs, solving the race. It is safe to do this here, as no spinlocks are held upon entry to __change_page_attr_set_clr(). However, the lock must not be held over an allocation, as allocation can trigger reclaim and shrinkers may call into CPA recursively, making deadlocks possible (init_mm -> ... -> fs_reclaim -> init_mm). A page table is allocated when a huge page needs to be split: -> change_page_attr_set_clr() -> __change_page_attr_set_clr() -> __change_page_attr() -> split_large_page() [ pagetable_alloc() ] -> __split_large_page() Avoid deadlocks by dropping the mmap lock across pagetable_alloc() in split_large_page() and track whether this is needed by adding a new 'init_mm_read_locked' flag to struct cpa_data. This is safe as __split_large_page() (called with locks re-established) revalidates that the page table entry is the same as it was prior to the locks being dropped and __change_page_attr() repeats the entire page table walk whenever a split occurs, so concurrent split and collapse are accounted for. Concurrent ptdump is also safe as the lock is only dropped over page table allocation during which time the page table has not yet been modified. The CPA_COLLAPSE flag is only set by set_memory_rox(), which exclusively operates upon vmalloc ranges, and on x86 only within the module mapping space. This is important, because some callers directly invoke __change_page_attr_set_clr(), bypassing this lock. However, none of these operate within the module mapping space. * cpa_process_alias() - a recursive helper called by __change_page_attr_set_clr(). * __set_memory_enc_pgtable() - operates on the direct mapping and (via __vmbus_establish_gpadl()) the vmalloc mapping space. * __set_pages_[n]p() - called by set_direct_map_[invalid, default, valid]_noflush(), __kernel_map_pages() - operates on the direct map. * kernel_[un]map_pages_in_pgd() - operates on EFI ranges. This work is based upon Denis V. Lunev's excellent analysis of the bug with gratitude. [ dhansen: move to imperative voice in changelog ]
来源: CVE Program / CVE List V5
CVSS Information
N/A
来源: CVE Program / CVE List V5
Vulnerability Type
N/A
来源: CVE Program / CVE List V5

受影响产品

厂商 产品 影响版本 CPE 订阅
Linux Linux 41d88484c71cd4f659348da41b7b5b3dbd3be1f6 ~ e21a9ea81426a85fdb0cdcfcc99d5d9c16b402ab -
Linux Linux 6.15 -

二、漏洞 CVE-2026-97533 的公开POC

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三、漏洞 CVE-2026-97533 的情报信息

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CVE-2026-97533 补丁与修复 (3)

同批安全公告 · Linux · 2026-09-25 · 共 372 条

CVE-2026-100075 9.8 CRITICAL RDMA/srpt:srpt_alloc_rw_ctxs() 未释放计数器修复
CVE-2026-97957 8.8 HIGH hinic 邮箱段缓冲区溢出漏洞
CVE-2026-97527 8.8 HIGH qla2xxx SCSI驱动程序 NVMe未解决上下文列表竞争条件漏洞
CVE-2026-97528 8.8 HIGH QLogic qla2xxx驱动LS拒绝错误NVMe内存泄漏漏洞
CVE-2026-97555 8.8 HIGH smb客户端:修复DACL所有者/组重写中的堆溢出漏洞
CVE-2026-98115 8.8 HIGH ksmbd 注销期间会话安全排空漏洞
CVE-2026-97525 8.2 HIGH x86/mm/pat:内核页表分裂页表分配漏洞
CVE-2026-97573 8.1 HIGH bnxt_en 驱动 bnxt_rx_ring_reset 缓冲区分配失败漏洞
CVE-2026-98070 8.1 HIGH Linux RDS 模块远程代码执行漏洞
CVE-2026-97570 8.1 HIGH bnxt_en: 修复因SW TPA ID绑定问题导致的崩溃漏洞
CVE-2026-98069 8.1 HIGH Net/RDS rds_conn_shutdown() 快速路径锁获取漏洞
CVE-2026-98130 8.1 HIGH SCTP定时器启动竞争条件漏洞
CVE-2026-98116 7.8 HIGH ALSA: PCM内存映射与缓冲区重新分配序列化以修复页面UAF漏洞
CVE-2026-97548 7.8 HIGH XFS rtrmap和rtrefcount _maxlevels_ondisk函数漏洞
CVE-2026-97903 7.8 HIGH exit: proc_flush_pid 线程 PID 持引越界漏洞
CVE-2026-97611 7.8 HIGH Open vSwitch 使用后释放漏洞
CVE-2026-97612 7.8 HIGH MPLS 协议栈在弹出标签时未清除 inner_protocol
CVE-2026-98073 7.8 HIGH Linux 内核网络命名空间更改竞态条件漏洞
CVE-2026-97602 7.8 HIGH Linux内核inet模块队列失效前刷新漏洞
CVE-2026-97577 7.8 HIGH Rockchip RK3588 媒体引擎 AV1 帧容量超限漏洞

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IV. Related Vulnerabilities

V. Comments for CVE-2026-97533

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