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CVE-2022-49700— mm/slub: add missing TID updates on slab deactivation

EPSS 0.02% · P4

Affected Version Matrix 18

VendorProductVersion RangeStatus
LinuxLinux03e404af26dc2ea0d278d7a342de0aab394793ce< 308c6d0e1f200fd26c71270c6e6bfcf0fc6ff082affected
03e404af26dc2ea0d278d7a342de0aab394793ce< d6a597450e686d4c6388bd3cdcb17224b4dae7f0affected
03e404af26dc2ea0d278d7a342de0aab394793ce< e2b2f0e2e34d71ae6c2a1114fd3c525930e84bc7affected
03e404af26dc2ea0d278d7a342de0aab394793ce< e7e3e90d671078455a3a08189f89d85b3da2de9eaffected
03e404af26dc2ea0d278d7a342de0aab394793ce< 6c32496964da0dc230cea763a0e934b2e02dabd5affected
03e404af26dc2ea0d278d7a342de0aab394793ce< 0515cc9b6b24877f59b222ade704bfaa42caa2a6affected
03e404af26dc2ea0d278d7a342de0aab394793ce< 197e257da473c725dfe47759c3ee02f2398d8ea5affected
03e404af26dc2ea0d278d7a342de0aab394793ce< eeaa345e128515135ccb864c04482180c08e3259affected
… +10 more rows
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I. Basic Information for CVE-2022-49700

Vulnerability Information

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Vulnerability Title
mm/slub: add missing TID updates on slab deactivation
Source: NVD (National Vulnerability Database)
Vulnerability Description
In the Linux kernel, the following vulnerability has been resolved: mm/slub: add missing TID updates on slab deactivation The fastpath in slab_alloc_node() assumes that c->slab is stable as long as the TID stays the same. However, two places in __slab_alloc() currently don't update the TID when deactivating the CPU slab. If multiple operations race the right way, this could lead to an object getting lost; or, in an even more unlikely situation, it could even lead to an object being freed onto the wrong slab's freelist, messing up the `inuse` counter and eventually causing a page to be freed to the page allocator while it still contains slab objects. (I haven't actually tested these cases though, this is just based on looking at the code. Writing testcases for this stuff seems like it'd be a pain...) The race leading to state inconsistency is (all operations on the same CPU and kmem_cache): - task A: begin do_slab_free(): - read TID - read pcpu freelist (==NULL) - check `slab == c->slab` (true) - [PREEMPT A->B] - task B: begin slab_alloc_node(): - fastpath fails (`c->freelist` is NULL) - enter __slab_alloc() - slub_get_cpu_ptr() (disables preemption) - enter ___slab_alloc() - take local_lock_irqsave() - read c->freelist as NULL - get_freelist() returns NULL - write `c->slab = NULL` - drop local_unlock_irqrestore() - goto new_slab - slub_percpu_partial() is NULL - get_partial() returns NULL - slub_put_cpu_ptr() (enables preemption) - [PREEMPT B->A] - task A: finish do_slab_free(): - this_cpu_cmpxchg_double() succeeds() - [CORRUPT STATE: c->slab==NULL, c->freelist!=NULL] From there, the object on c->freelist will get lost if task B is allowed to continue from here: It will proceed to the retry_load_slab label, set c->slab, then jump to load_freelist, which clobbers c->freelist. But if we instead continue as follows, we get worse corruption: - task A: run __slab_free() on object from other struct slab: - CPU_PARTIAL_FREE case (slab was on no list, is now on pcpu partial) - task A: run slab_alloc_node() with NUMA node constraint: - fastpath fails (c->slab is NULL) - call __slab_alloc() - slub_get_cpu_ptr() (disables preemption) - enter ___slab_alloc() - c->slab is NULL: goto new_slab - slub_percpu_partial() is non-NULL - set c->slab to slub_percpu_partial(c) - [CORRUPT STATE: c->slab points to slab-1, c->freelist has objects from slab-2] - goto redo - node_match() fails - goto deactivate_slab - existing c->freelist is passed into deactivate_slab() - inuse count of slab-1 is decremented to account for object from slab-2 At this point, the inuse count of slab-1 is 1 lower than it should be. This means that if we free all allocated objects in slab-1 except for one, SLUB will think that slab-1 is completely unused, and may free its page, leading to use-after-free.
Source: NVD (National Vulnerability Database)
CVSS Information
N/A
Source: NVD (National Vulnerability Database)
Vulnerability Type
N/A
Source: NVD (National Vulnerability Database)
Vulnerability Title
Linux kernel 资源管理错误漏洞
Source: CNNVD (China National Vulnerability Database)
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存在资源管理错误漏洞,该漏洞源于slab分配器在释放CPU slab时未更新TID,可能导致对象丢失或错误释放。
Source: CNNVD (China National Vulnerability Database)
CVSS Information
N/A
Source: CNNVD (China National Vulnerability Database)
Vulnerability Type
N/A
Source: CNNVD (China National Vulnerability Database)

Affected Products

VendorProductAffected VersionsCPESubscribe
LinuxLinux 03e404af26dc2ea0d278d7a342de0aab394793ce ~ 308c6d0e1f200fd26c71270c6e6bfcf0fc6ff082 -
LinuxLinux 3.1 -

II. Public POCs for CVE-2022-49700

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III. Intelligence Information for CVE-2022-49700

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Same Patch Batch · Linux · 2025-02-26 · 706 CVEs total

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CVE-2022-49488drm/msm/mdp5: Return error code in mdp5_mixer_release when deadlock is detected
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CVE-2022-49490drm/msm/mdp5: Return error code in mdp5_pipe_release when deadlock is detected
CVE-2022-49491drm/rockchip: vop: fix possible null-ptr-deref in vop_bind()
CVE-2022-49492nvme-pci: fix a NULL pointer dereference in nvme_alloc_admin_tags
CVE-2022-49493ASoC: rt5645: Fix errorenous cleanup order
CVE-2022-49494mtd: rawnand: cadence: fix possible null-ptr-deref in cadence_nand_dt_probe()
CVE-2022-49495drm/msm/hdmi: check return value after calling platform_get_resource_byname()
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CVE-2022-49508HID: elan: Fix potential double free in elan_input_configured
CVE-2022-49506drm/mediatek: Add vblank register/unregister callback functions
CVE-2022-49504scsi: lpfc: Inhibit aborts if external loopback plug is inserted
CVE-2022-49505NFC: NULL out the dev->rfkill to prevent UAF
CVE-2022-49502media: rga: fix possible memory leak in rga_probe
CVE-2022-49499drm/msm: Fix null pointer dereferences without iommu
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Showing top 20 of 706 CVEs. View all on vendor page &rarr; →

IV. Related Vulnerabilities

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