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CVE-2025-40052— Linux kernel 安全漏洞

AI 预测 6.5 利用难度: 中等 EPSS 0.20% · P10

可能的 ATT&CK 技术 1AI

T1055 · Process Injection

影响版本矩阵 10

厂商产品版本范围状态
LinuxLinuxd08089f649a0cfb2099c8551ac47eef0cc23fdf2< ba905a567105dde21cdb8e6d3a87110fa434b393affected
d08089f649a0cfb2099c8551ac47eef0cc23fdf2< 7a8a8c15468f0c99685e9964451feffd1a3cc859affected
d08089f649a0cfb2099c8551ac47eef0cc23fdf2< 4a61b68abd2788db0364c9a0b6a39f1699fea440affected
d08089f649a0cfb2099c8551ac47eef0cc23fdf2< 998a67b954680f26f3734040aeeed08642d49721affected
6.3affected
< 6.3unaffected
6.6.112≤ 6.6.*unaffected
6.12.53≤ 6.12.*unaffected
… +2 条更多
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一、 漏洞 CVE-2025-40052 基础信息

漏洞信息

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Vulnerability Title
smb: client: fix crypto buffers in non-linear memory
来源: 美国国家漏洞数据库 NVD
Vulnerability Description
In the Linux kernel, the following vulnerability has been resolved: smb: client: fix crypto buffers in non-linear memory The crypto API, through the scatterlist API, expects input buffers to be in linear memory. We handle this with the cifs_sg_set_buf() helper that converts vmalloc'd memory to their corresponding pages. However, when we allocate our aead_request buffer (@creq in smb2ops.c::crypt_message()), we do so with kvzalloc(), which possibly puts aead_request->__ctx in vmalloc area. AEAD algorithm then uses ->__ctx for its private/internal data and operations, and uses sg_set_buf() for such data on a few places. This works fine as long as @creq falls into kmalloc zone (small requests) or vmalloc'd memory is still within linear range. Tasks' stacks are vmalloc'd by default (CONFIG_VMAP_STACK=y), so too many tasks will increment the base stacks' addresses to a point where virt_addr_valid(buf) will fail (BUG() in sg_set_buf()) when that happens. In practice: too many parallel reads and writes on an encrypted mount will trigger this bug. To fix this, always alloc @creq with kmalloc() instead. Also drop the @sensitive_size variable/arguments since kfree_sensitive() doesn't need it. Backtrace: [ 945.272081] ------------[ cut here ]------------ [ 945.272774] kernel BUG at include/linux/scatterlist.h:209! [ 945.273520] Oops: invalid opcode: 0000 [#1] SMP DEBUG_PAGEALLOC NOPTI [ 945.274412] CPU: 7 UID: 0 PID: 56 Comm: kworker/u33:0 Kdump: loaded Not tainted 6.15.0-lku-11779-g8e9d6efccdd7-dirty #1 PREEMPT(voluntary) [ 945.275736] Hardware name: QEMU Standard PC (Q35 + ICH9, 2009), BIOS rel-1.16.3-2-gc13ff2cd-prebuilt.qemu.org 04/01/2014 [ 945.276877] Workqueue: writeback wb_workfn (flush-cifs-2) [ 945.277457] RIP: 0010:crypto_gcm_init_common+0x1f9/0x220 [ 945.278018] Code: b0 00 00 00 48 83 c4 08 5b 5d 41 5c 41 5d 41 5e 41 5f c3 cc cc cc cc 48 c7 c0 00 00 00 80 48 2b 05 5c 58 e5 00 e9 58 ff ff ff <0f> 0b 0f 0b 0f 0b 0f 0b 0f 0b 0f 0b 48 c7 04 24 01 00 00 00 48 8b [ 945.279992] RSP: 0018:ffffc90000a27360 EFLAGS: 00010246 [ 945.280578] RAX: 0000000000000000 RBX: ffffc90001d85060 RCX: 0000000000000030 [ 945.281376] RDX: 0000000000080000 RSI: 0000000000000000 RDI: ffffc90081d85070 [ 945.282145] RBP: ffffc90001d85010 R08: ffffc90001d85000 R09: 0000000000000000 [ 945.282898] R10: ffffc90001d85090 R11: 0000000000001000 R12: ffffc90001d85070 [ 945.283656] R13: ffff888113522948 R14: ffffc90001d85060 R15: ffffc90001d85010 [ 945.284407] FS: 0000000000000000(0000) GS:ffff8882e66cf000(0000) knlGS:0000000000000000 [ 945.285262] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [ 945.285884] CR2: 00007fa7ffdd31f4 CR3: 000000010540d000 CR4: 0000000000350ef0 [ 945.286683] Call Trace: [ 945.286952] <TASK> [ 945.287184] ? crypt_message+0x33f/0xad0 [cifs] [ 945.287719] crypto_gcm_encrypt+0x36/0xe0 [ 945.288152] crypt_message+0x54a/0xad0 [cifs] [ 945.288724] smb3_init_transform_rq+0x277/0x300 [cifs] [ 945.289300] smb_send_rqst+0xa3/0x160 [cifs] [ 945.289944] cifs_call_async+0x178/0x340 [cifs] [ 945.290514] ? __pfx_smb2_writev_callback+0x10/0x10 [cifs] [ 945.291177] smb2_async_writev+0x3e3/0x670 [cifs] [ 945.291759] ? find_held_lock+0x32/0x90 [ 945.292212] ? netfs_advance_write+0xf2/0x310 [ 945.292723] netfs_advance_write+0xf2/0x310 [ 945.293210] netfs_write_folio+0x346/0xcc0 [ 945.293689] ? __pfx__raw_spin_unlock_irq+0x10/0x10 [ 945.294250] netfs_writepages+0x117/0x460 [ 945.294724] do_writepages+0xbe/0x170 [ 945.295152] ? find_held_lock+0x32/0x90 [ 945.295600] ? kvm_sched_clock_read+0x11/0x20 [ 945.296103] __writeback_single_inode+0x56/0x4b0 [ 945.296643] writeback_sb_inodes+0x229/0x550 [ 945.297140] __writeback_inodes_wb+0x4c/0xe0 [ 945.297642] wb_writeback+0x2f1/0x3f0 [ 945.298069] wb_workfn+0x300/0x490 [ 945.298472] process_one_work+0x1fe/0x590 [ 945.298949] worker_thread+0x1ce/0x3c0 [ 945.299397] ? __pfx_worker_thread+0x10/0x10 [ 945.299900] kthr ---truncated---
来源: 美国国家漏洞数据库 NVD
CVSS Information
N/A
来源: 美国国家漏洞数据库 NVD
Vulnerability Type
N/A
来源: 美国国家漏洞数据库 NVD
Vulnerability Title
Linux kernel 安全漏洞
来源: 中国国家信息安全漏洞库 CNNVD
Vulnerability Description
Linux kernel是美国Linux基金会的开源操作系统Linux所使用的内核。 Linux kernel存在安全漏洞,该漏洞源于非连续内存中的加密缓冲区处理不当,可能导致内核崩溃。
来源: 中国国家信息安全漏洞库 CNNVD
CVSS Information
N/A
来源: 中国国家信息安全漏洞库 CNNVD
Vulnerability Type
N/A
来源: 中国国家信息安全漏洞库 CNNVD

受影响产品

厂商产品影响版本CPE订阅
LinuxLinux d08089f649a0cfb2099c8551ac47eef0cc23fdf2 ~ ba905a567105dde21cdb8e6d3a87110fa434b393 -
LinuxLinux 6.3 -

二、漏洞 CVE-2025-40052 的公开POC

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三、漏洞 CVE-2025-40052 的情报信息

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同批安全公告 · Linux · 2025-10-28 · 共 58 条

CVE-2025-40064Linux kernel 安全漏洞
CVE-2025-40075Linux kernel 安全漏洞
CVE-2025-40078Linux kernel 安全漏洞
CVE-2025-40079Linux kernel 安全漏洞
CVE-2025-40077Linux kernel 安全漏洞
CVE-2025-40081Linux kernel 安全漏洞
CVE-2025-40068Linux kernel 安全漏洞
CVE-2025-40067Linux kernel 安全漏洞
CVE-2025-40066Linux kernel 安全漏洞
CVE-2025-40065Linux kernel 安全漏洞
CVE-2025-40069Linux kernel 安全漏洞
CVE-2025-40063Linux kernel 安全漏洞
CVE-2025-40062Linux kernel 安全漏洞
CVE-2025-40061Linux kernel 安全漏洞
CVE-2025-40060Linux kernel 安全漏洞
CVE-2025-40058Linux kernel 安全漏洞
CVE-2025-40059Linux kernel 安全漏洞
CVE-2025-40057Linux kernel 安全漏洞
CVE-2025-40056Linux kernel 安全漏洞
CVE-2025-40055Linux kernel 安全漏洞

显示前 20 条,共 58 条。 查看全部 &rarr; →

IV. Related Vulnerabilities

V. Comments for CVE-2025-40052

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