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CVE-2026-90264— Btrfs文件系统数据丢失漏洞

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。

以下是该 Linux 内核漏洞描述信息的中文翻译: 在 Linux 内核中,以下漏洞已得到解决: btrfs: 始终等待有序 extent 以避免有序 extent 之间的竞态条件 [缺陷描述] Syzbot 报告了一个 bug,即针对同一地址范围可能存在相互冲突的有序 extent(Ordered Extent, OE): [原因分析] 自提交 ff66fe666233(“btrfs: 修复追加直接写入时的错误缓冲 IO 回退”)以来,如果直接 IO 未完全写入(即“finished short”),系统会将 (

AI 预测 5.5 利用难度: 困难 EPSS 0.21% · P10

影响版本矩阵 19

厂商产品 版本范围状态
Linux Linux c3a3d3986719026c85950bfa6f41a251fc46e16f< 58ce50b1802a446d3b26df1b9c58be1ab8913d0e affected
ff66fe6662330226b3f486014c375538d91c44aa< aaac9b352f7f53f5d2f7e58e612d67d2a2bf7094 affected
ff66fe6662330226b3f486014c375538d91c44aa< ec78575dde998c21be7e0cb2503b5620f34b6255 affected
4b5875cbb85dbf4d11385eb0a7a589c086d76d42 affected
10b1abc1d0c8ae25c2b9ac465515717c68ffff05 affected
097b159d43407b4ea0e5d14ae58a3bbfa5865a24 affected
ccd5c23122b01de646c80485e2fadac82d1aab62 affected
b8df7f486a4617d3096b8fa27148cfa54b1d6a8d affected
… +11 条更多
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一、 漏洞 CVE-2026-90264 基础信息

漏洞信息

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Vulnerability Title
btrfs: always wait for ordered extents to avoid OE races
来源: CVE Program / CVE List V5
Vulnerability Description
In the Linux kernel, the following vulnerability has been resolved: btrfs: always wait for ordered extents to avoid OE races [BUG] Syzbot reported a bug that there can be conflicting OEs for the same range: BTRFS critical (device loop4): panic in insert_ordered_extent:264: overlapping ordered extents, existing oe file_offset 16384 num_bytes 430080 flags 0x1089, new oe file_offset 16384 num_bytes 430080 flags 0x80 (errno=-17 Object alrea[ 179.162726][ T6897] BTRFS critical (device loop4): panic in insert_ordered_extent:264: overlapping ordered extents, existing oe file_offset 16384 num_bytes 430080 flags 0x1089, new oe file_offset 16384 num_bytes 430080 flags 0x80 (errno=-17 Object already exists) ------------[ cut here ]------------ kernel BUG at fs/btrfs/ordered-data.c:264! Hardware name: Google Google Compute Engine/Google Compute Engine, BIOS Google 05/09/2026 RIP: 0010:btrfs_alloc_ordered_extent+0x943/0xad0 Call Trace: <TASK> cow_file_range+0x744/0x12a0 fallback_to_cow+0x5ea/0xa00 run_delalloc_nocow+0x110c/0x17a0 btrfs_run_delalloc_range+0xbe4/0x1c20 writepage_delalloc+0x104d/0x1ba0 btrfs_writepages+0x1667/0x28b0 do_writepages+0x338/0x560 filemap_fdatawrite_range+0x1f2/0x300 btrfs_fdatawrite_range+0x54/0xf0 btrfs_direct_write+0x6a0/0xc30 btrfs_do_write_iter+0x329/0x790 do_iter_readv_writev+0x624/0x8d0 vfs_writev+0x34c/0x990 __se_sys_pwritev2+0x17a/0x2a0 do_syscall_64+0x174/0x580 entry_SYSCALL_64_after_hwframe+0x77/0x7f </TASK> ---[ end trace 0000000000000000 ]--- [CAUSE] Since commit ff66fe666233 ("btrfs: fix incorrect buffered IO fallback for append direct writes"), if the direct IO finished short, we will revert the isize back to the original one, so that append writes can be respected during the buffered fallback. Normally we rely on lock_and_cleanup_extent_if_need() function during buffered writeback to wait for any existing ordered extents. But that ordered extent waiting only happens if the start_pos is inside the isize. Since we have reverted the isize during failed direct IO, we will not wait for any ordered extents. This means we can have a race where the direct IO OE is still in the tree, finished but not yet removed, then we're inserting the OE for the buffered write, causing the above crash. [FIX] Make the OE wait to be unconditional, to handle the reverted isize situation. And since lock_and_cleanup_extent_if_need() now either lock the extents or return -EAGAIN, also remove the branches that handles no-extent-locked cases, and rename it to remove the "_if_need" suffix. The following micro benchmark shows the runtime difference for btrfs_buffered_write(), doing `xfs_io -f -c "pwrite 0 1m"` workload, all values are the average runtime in nano seconds. function runtime | before | after -----------------------------------+-------------+--------------- lock_and_cleanup_extent_if_need() | 58.2 | 183.0 btrfs_buffered_write() | 2115.6 | 2973.3 The overall runtime of btrfs_buffered_write() is still pretty tiny (still less than 3 micro seconds), I'd say the extra cost is still acceptable. An alternative to fix this problem is to wait ordered extents during iomap_end() where the isize revert is done. But that solution will break nowait requirement, as if a nowait direct IO finished short, we have to wait for the OEs unconditionally or the next append buffered IO can still hit the same problem. So here we have to move the wait cost to buffered write, but at least the code is slightly more streamline.
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 c3a3d3986719026c85950bfa6f41a251fc46e16f ~ 58ce50b1802a446d3b26df1b9c58be1ab8913d0e -
Linux Linux 7.2 -

二、漏洞 CVE-2026-90264 的公开POC

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三、漏洞 CVE-2026-90264 的情报信息

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CVE-2026-90264 补丁与修复 (3)

同批安全公告 · Linux · 2026-09-17 · 共 600 条

CVE-2026-92489 9.8 CRITICAL Linux内核 xfrm 双重释放漏洞
CVE-2026-90104 9.8 CRITICAL NFSv4.1 解码前未清空调用列表
CVE-2026-90235 9.8 CRITICAL 内核sunrpc xprtsock并发读取修复
CVE-2026-90173 9.8 CRITICAL SMB SmbDirect 释放完成队列漏洞
CVE-2026-90151 9.8 CRITICAL NFSv4客户端分配失败回调处理漏洞
CVE-2026-90110 9.4 CRITICAL inetpeer 随机化RB树节点比较
CVE-2026-90413 9.1 CRITICAL IB/isert 登录PDU数据长度校验漏洞
CVE-2026-90414 9.1 CRITICAL IB/isert拒绝声明超出实际接收数据的PDU
CVE-2026-90230 9.1 CRITICAL Linux内核Nvme-target堆越界读取漏洞
CVE-2026-90256 8.8 HIGH Linux Bluetooth L2CAP 远程代码执行漏洞
CVE-2026-90357 8.8 HIGH mt76驱动MT7915无线局域网远程拒绝服务漏洞
CVE-2026-90286 8.8 HIGH AMDGPU GFX6 计算队列PFP使用漏洞
CVE-2026-90381 8.8 HIGH Linux内核mt76驱动无线信道切换漏洞
CVE-2026-90380 8.8 HIGH MT76驱动 mt792x 使用释放后内存漏洞
CVE-2026-90329 8.8 HIGH Linux 内核 HID 驱动探测清理同步漏洞
CVE-2026-93042 8.8 HIGH Linux内核dmaengine模块资源耗尽漏洞
CVE-2026-90162 8.8 HIGH Linux ksmbd 锁授予UAF/双重释放竞态漏洞
CVE-2026-90379 8.8 HIGH Linux 内核 mt76 驱动系统崩溃漏洞
CVE-2026-90367 8.8 HIGH Linux内核MT7996驱动死锁漏洞
CVE-2026-90371 8.8 HIGH mt76 无线驱动 RXDMAD_C 竞态修复

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IV. Related Vulnerabilities

V. Comments for CVE-2026-90264

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