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CVE-2021-46961— Linux kernel 安全漏洞

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。

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,该漏洞源于处理虚假中断时不要启用 irq。

AI 预测 6.5 利用难度: 极易 EPSS 0.24% · P13

可能的 ATT&CK 技术 1 AI

T1496 · Resource Hijacking

影响版本矩阵 12

厂商产品 版本范围状态
Linux Linux 3f1f3234bc2db1c16b9818b9a15a5d58ad45251c< e7ea8e46e3b777be26aa855fe07778c415f24926 affected
3f1f3234bc2db1c16b9818b9a15a5d58ad45251c< 7be4db5c2b59fa77071c93ca4329876fb9777202 affected
3f1f3234bc2db1c16b9818b9a15a5d58ad45251c< ea817ac1014c04f47885532b55f5d0898deadfba affected
3f1f3234bc2db1c16b9818b9a15a5d58ad45251c< 3f72d3709f53af72835af7dc8b15ba61611a0e36 affected
3f1f3234bc2db1c16b9818b9a15a5d58ad45251c< a97709f563a078e259bf0861cd259aa60332890a affected
5.1 affected
< 5.1 unaffected
5.4.118≤ 5.4.* unaffected
… +4 条更多
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一、 漏洞 CVE-2021-46961 基础信息

漏洞信息

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Vulnerability Title
irqchip/gic-v3: Do not enable irqs when handling spurious interrups
来源: CVE Program / CVE List V5
Vulnerability Description
In the Linux kernel, the following vulnerability has been resolved: irqchip/gic-v3: Do not enable irqs when handling spurious interrups We triggered the following error while running our 4.19 kernel with the pseudo-NMI patches backported to it: [ 14.816231] ------------[ cut here ]------------ [ 14.816231] kernel BUG at irq.c:99! [ 14.816232] Internal error: Oops - BUG: 0 [#1] SMP [ 14.816232] Process swapper/0 (pid: 0, stack limit = 0x(____ptrval____)) [ 14.816233] CPU: 0 PID: 0 Comm: swapper/0 Tainted: G O 4.19.95.aarch64 #14 [ 14.816233] Hardware name: evb (DT) [ 14.816234] pstate: 80400085 (Nzcv daIf +PAN -UAO) [ 14.816234] pc : asm_nmi_enter+0x94/0x98 [ 14.816235] lr : asm_nmi_enter+0x18/0x98 [ 14.816235] sp : ffff000008003c50 [ 14.816235] pmr_save: 00000070 [ 14.816237] x29: ffff000008003c50 x28: ffff0000095f56c0 [ 14.816238] x27: 0000000000000000 x26: ffff000008004000 [ 14.816239] x25: 00000000015e0000 x24: ffff8008fb916000 [ 14.816240] x23: 0000000020400005 x22: ffff0000080817cc [ 14.816241] x21: ffff000008003da0 x20: 0000000000000060 [ 14.816242] x19: 00000000000003ff x18: ffffffffffffffff [ 14.816243] x17: 0000000000000008 x16: 003d090000000000 [ 14.816244] x15: ffff0000095ea6c8 x14: ffff8008fff5ab40 [ 14.816244] x13: ffff8008fff58b9d x12: 0000000000000000 [ 14.816245] x11: ffff000008c8a200 x10: 000000008e31fca5 [ 14.816246] x9 : ffff000008c8a208 x8 : 000000000000000f [ 14.816247] x7 : 0000000000000004 x6 : ffff8008fff58b9e [ 14.816248] x5 : 0000000000000000 x4 : 0000000080000000 [ 14.816249] x3 : 0000000000000000 x2 : 0000000080000000 [ 14.816250] x1 : 0000000000120000 x0 : ffff0000095f56c0 [ 14.816251] Call trace: [ 14.816251] asm_nmi_enter+0x94/0x98 [ 14.816251] el1_irq+0x8c/0x180 (IRQ C) [ 14.816252] gic_handle_irq+0xbc/0x2e4 [ 14.816252] el1_irq+0xcc/0x180 (IRQ B) [ 14.816253] arch_timer_handler_virt+0x38/0x58 [ 14.816253] handle_percpu_devid_irq+0x90/0x240 [ 14.816253] generic_handle_irq+0x34/0x50 [ 14.816254] __handle_domain_irq+0x68/0xc0 [ 14.816254] gic_handle_irq+0xf8/0x2e4 [ 14.816255] el1_irq+0xcc/0x180 (IRQ A) [ 14.816255] arch_cpu_idle+0x34/0x1c8 [ 14.816255] default_idle_call+0x24/0x44 [ 14.816256] do_idle+0x1d0/0x2c8 [ 14.816256] cpu_startup_entry+0x28/0x30 [ 14.816256] rest_init+0xb8/0xc8 [ 14.816257] start_kernel+0x4c8/0x4f4 [ 14.816257] Code: 940587f1 d5384100 b9401001 36a7fd01 (d4210000) [ 14.816258] Modules linked in: start_dp(O) smeth(O) [ 15.103092] ---[ end trace 701753956cb14aa8 ]--- [ 15.103093] Kernel panic - not syncing: Fatal exception in interrupt [ 15.103099] SMP: stopping secondary CPUs [ 15.103100] Kernel Offset: disabled [ 15.103100] CPU features: 0x36,a2400218 [ 15.103100] Memory Limit: none which is cause by a 'BUG_ON(in_nmi())' in nmi_enter(). From the call trace, we can find three interrupts (noted A, B, C above): interrupt (A) is preempted by (B), which is further interrupted by (C). Subsequent investigations show that (B) results in nmi_enter() being called, but that it actually is a spurious interrupt. Furthermore, interrupts are reenabled in the context of (B), and (C) fires with NMI priority. We end-up with a nested NMI situation, something we definitely do not want to (and cannot) handle. The bug here is that spurious interrupts should never result in any state change, and we should just return to the interrupted context. Moving the handling of spurious interrupts as early as possible in the GICv3 handler fixes this issue. [maz: rewrote commit message, corrected Fixes: tag]
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
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,该漏洞源于处理虚假中断时不要启用 irq。
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
Linux Linux 3f1f3234bc2db1c16b9818b9a15a5d58ad45251c ~ e7ea8e46e3b777be26aa855fe07778c415f24926 -
Linux Linux 5.1 -

二、漏洞 CVE-2021-46961 的公开POC

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三、漏洞 CVE-2021-46961 的情报信息

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CVE-2021-46961 其他参考 (5)

同批安全公告 · Linux · 2024-02-27 · 共 67 条

CVE-2021-46911 9.8 CRITICAL Linux kernel 安全漏洞
CVE-2021-46955 8.2 HIGH Linux kernel 安全漏洞
CVE-2021-46963 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46925 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46929 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46913 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46973 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46936 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46933 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46969 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46958 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46967 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46921 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46922 7.8 HIGH Linux kernel 安全漏洞
CVE-2021-46948 7.5 HIGH Linux kernel 安全漏洞
CVE-2021-46960 7.5 HIGH Linux kernel 安全漏洞
CVE-2021-46912 7.3 HIGH Linux kernel 安全漏洞
CVE-2021-46908 7.1 HIGH Linux kernel 安全漏洞
CVE-2021-46974 7.1 HIGH Linux kernel 安全漏洞
CVE-2021-46910 7.0 HIGH Linux kernel 安全漏洞

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IV. Related Vulnerabilities

V. Comments for CVE-2021-46961

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