mirror of
https://github.com/fkie-cad/nvd-json-data-feeds.git
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145 lines
8.0 KiB
JSON
145 lines
8.0 KiB
JSON
{
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"id": "CVE-2022-48675",
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"sourceIdentifier": "416baaa9-dc9f-4396-8d5f-8c081fb06d67",
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"published": "2024-05-03T15:15:07.627",
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"lastModified": "2024-11-21T07:33:45.427",
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"vulnStatus": "Modified",
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"cveTags": [],
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"descriptions": [
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{
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"lang": "en",
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"value": "In the Linux kernel, the following vulnerability has been resolved:\n\nIB/core: Fix a nested dead lock as part of ODP flow\n\nFix a nested dead lock as part of ODP flow by using mmput_async().\n\nFrom the below call trace [1] can see that calling mmput() once we have\nthe umem_odp->umem_mutex locked as required by\nib_umem_odp_map_dma_and_lock() might trigger in the same task the\nexit_mmap()->__mmu_notifier_release()->mlx5_ib_invalidate_range() which\nmay dead lock when trying to lock the same mutex.\n\nMoving to use mmput_async() will solve the problem as the above\nexit_mmap() flow will be called in other task and will be executed once\nthe lock will be available.\n\n[1]\n[64843.077665] task:kworker/u133:2 state:D stack: 0 pid:80906 ppid:\n2 flags:0x00004000\n[64843.077672] Workqueue: mlx5_ib_page_fault mlx5_ib_eqe_pf_action [mlx5_ib]\n[64843.077719] Call Trace:\n[64843.077722] <TASK>\n[64843.077724] __schedule+0x23d/0x590\n[64843.077729] schedule+0x4e/0xb0\n[64843.077735] schedule_preempt_disabled+0xe/0x10\n[64843.077740] __mutex_lock.constprop.0+0x263/0x490\n[64843.077747] __mutex_lock_slowpath+0x13/0x20\n[64843.077752] mutex_lock+0x34/0x40\n[64843.077758] mlx5_ib_invalidate_range+0x48/0x270 [mlx5_ib]\n[64843.077808] __mmu_notifier_release+0x1a4/0x200\n[64843.077816] exit_mmap+0x1bc/0x200\n[64843.077822] ? walk_page_range+0x9c/0x120\n[64843.077828] ? __cond_resched+0x1a/0x50\n[64843.077833] ? mutex_lock+0x13/0x40\n[64843.077839] ? uprobe_clear_state+0xac/0x120\n[64843.077860] mmput+0x5f/0x140\n[64843.077867] ib_umem_odp_map_dma_and_lock+0x21b/0x580 [ib_core]\n[64843.077931] pagefault_real_mr+0x9a/0x140 [mlx5_ib]\n[64843.077962] pagefault_mr+0xb4/0x550 [mlx5_ib]\n[64843.077992] pagefault_single_data_segment.constprop.0+0x2ac/0x560\n[mlx5_ib]\n[64843.078022] mlx5_ib_eqe_pf_action+0x528/0x780 [mlx5_ib]\n[64843.078051] process_one_work+0x22b/0x3d0\n[64843.078059] worker_thread+0x53/0x410\n[64843.078065] ? process_one_work+0x3d0/0x3d0\n[64843.078073] kthread+0x12a/0x150\n[64843.078079] ? set_kthread_struct+0x50/0x50\n[64843.078085] ret_from_fork+0x22/0x30\n[64843.078093] </TASK>"
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},
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{
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"lang": "es",
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"value": "En el kernel de Linux, se resolvi\u00f3 la siguiente vulnerabilidad: IB/core: corrija un bloqueo anidado como parte del flujo ODP. Corrija un bloqueo anidado como parte del flujo ODP usando mmput_async(). En el siguiente seguimiento de llamadas [1] se puede ver que llamar a mmput() una vez que tenemos umem_odp->umem_mutex bloqueado como lo requiere ib_umem_odp_map_dma_and_lock() podr\u00eda desencadenar en la misma tarea exit_mmap()->__mmu_notifier_release()->mlx5_ib_invalidate_range() lo que puede bloquearse al intentar bloquear el mismo mutex. Pasar a utilizar mmput_async() resolver\u00e1 el problema ya que el flujo exit_mmap() anterior se llamar\u00e1 en otra tarea y se ejecutar\u00e1 una vez que el bloqueo est\u00e9 disponible. [1] [64843.077665] tarea:kworker/u133:2 estado:D pila: 0 pid:80906 ppid: 2 banderas:0x00004000 [64843.077672] Cola de trabajo: mlx5_ib_page_fault mlx5_ib_eqe_pf_action [mlx5_ib] 9] Seguimiento de llamadas: [64843.077722] [64843.077724] __schedule+0x23d/0x590 [64843.077729] Schedule+0x4e/0xb0 [64843.077735] Schedule_preempt_disabled+0xe/0x10 [64843.077740] __mutex_lock.constprop.0+0x263/0x 490 [64843.077747] __mutex_lock_slowpath+0x13/0x20 [64843.077752] mutex_lock+0x34 /0x40 [64843.077758] mlx5_ib_invalidate_range+0x48/0x270 [mlx5_ib] [64843.077808] __mmu_notifier_release+0x1a4/0x200 [64843.077816] exit_mmap+0x1bc/0x200 822] ? walk_page_range+0x9c/0x120 [64843.077828] ? __cond_resched+0x1a/0x50 [64843.077833] ? mutex_lock+0x13/0x40 [64843.077839] ? uprobe_clear_state+0xac/0x120 [64843.077860] mmput+0x5f/0x140 [64843.077867] ib_umem_odp_map_dma_and_lock+0x21b/0x580 [ib_core] [64843.077931] pagefault_real_mr+0x9a/0x 140 [mlx5_ib] [64843.077962] pagefault_mr+0xb4/0x550 [mlx5_ib] [64843.077992] pagefault_single_data_segment .constprop.0+0x2ac/0x560 [mlx5_ib] [64843.078022] mlx5_ib_eqe_pf_action+0x528/0x780 [mlx5_ib] [64843.078051] Process_one_work+0x22b/0x3d0 [64843.078059] x53/0x410 [64843.078065] ? proceso_one_work+0x3d0/0x3d0 [64843.078073] kthread+0x12a/0x150 [64843.078079] ? set_kthread_struct+0x50/0x50 [64843.078085] ret_from_fork+0x22/0x30 [64843.078093] "
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}
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],
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"metrics": {
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"cvssMetricV31": [
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{
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"source": "nvd@nist.gov",
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"type": "Primary",
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"cvssData": {
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"version": "3.1",
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"vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H",
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"baseScore": 5.5,
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"baseSeverity": "MEDIUM",
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"attackVector": "LOCAL",
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"attackComplexity": "LOW",
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"privilegesRequired": "LOW",
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"userInteraction": "NONE",
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"scope": "UNCHANGED",
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"confidentialityImpact": "NONE",
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"integrityImpact": "NONE",
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"availabilityImpact": "HIGH"
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},
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"exploitabilityScore": 1.8,
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"impactScore": 3.6
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}
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]
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},
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"weaknesses": [
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{
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"source": "nvd@nist.gov",
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"type": "Primary",
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"description": [
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{
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"lang": "en",
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"value": "CWE-667"
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}
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]
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}
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],
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"configurations": [
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{
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"nodes": [
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{
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"operator": "OR",
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"negate": false,
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"cpeMatch": [
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{
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"vulnerable": true,
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"criteria": "cpe:2.3:o:linux:linux_kernel:*:*:*:*:*:*:*:*",
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"versionStartIncluding": "5.10",
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"versionEndExcluding": "5.10.143",
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"matchCriteriaId": "76CAFB30-218D-4245-9302-53CC23E96072"
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"criteria": "cpe:2.3:o:linux:linux_kernel:*:*:*:*:*:*:*:*",
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"versionEndExcluding": "5.15.68",
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"matchCriteriaId": "C440CED2-FE3C-495D-839C-857FFC6F523A"
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}
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],
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"references": [
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{
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"url": "https://git.kernel.org/stable/c/819110054b14d7272b4188db997a3d80f75ab785",
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