{
    "dataType": "CVE_RECORD",
    "dataVersion": "5.2",
    "cveMetadata": {
        "cveId": "CVE-2024-42293",
        "assignerOrgId": "416baaa9-dc9f-4396-8d5f-8c081fb06d67",
        "state": "PUBLISHED",
        "assignerShortName": "Linux",
        "dateReserved": "2024-07-30T07:40:12.268Z",
        "datePublished": "2024-08-17T09:09:02.303Z",
        "dateUpdated": "2026-08-05T11:36:25.572Z"
    },
    "containers": {
        "cna": {
            "providerMetadata": {
                "orgId": "416baaa9-dc9f-4396-8d5f-8c081fb06d67",
                "shortName": "Linux",
                "dateUpdated": "2026-08-05T11:36:25.572Z"
            },
            "descriptions": [
                {
                    "lang": "en",
                    "value": "In the Linux kernel, the following vulnerability has been resolved:\n\narm64: mm: Fix lockless walks with static and dynamic page-table folding\n\nLina reports random oopsen originating from the fast GUP code when\n16K pages are used with 4-level page-tables, the fourth level being\nfolded at runtime due to lack of LPA2.\n\nIn this configuration, the generic implementation of\np4d_offset_lockless() will return a 'p4d_t *' corresponding to the\n'pgd_t' allocated on the stack of the caller, gup_fast_pgd_range().\nThis is normally fine, but when the fourth level of page-table is folded\nat runtime, pud_offset_lockless() will offset from the address of the\n'p4d_t' to calculate the address of the PUD in the same page-table page.\nThis results in a stray stack read when the 'p4d_t' has been allocated\non the stack and can send the walker into the weeds.\n\nFix the problem by providing our own definition of p4d_offset_lockless()\nwhen CONFIG_PGTABLE_LEVELS <= 4 which returns the real page-table\npointer rather than the address of the local stack variable."
                }
            ],
            "metrics": [
                {
                    "cvssV3_1": {
                        "version": "3.1",
                        "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                        "baseScore": 7.8,
                        "baseSeverity": "HIGH"
                    },
                    "scenarios": [
                        {
                            "lang": "en",
                            "value": "AV:L - The vulnerable code is reached via ordinary syscalls that invoke GUP-fast on `current->mm` (O_DIRECT read/write, io_uring, vmsplice, futex, process_vm_readv), and it walks the calling task's own kernel stack. This requires local code execution; there is no remote or adjacent trigger.\nAC:L - No race and no unpredictable state is needed — the stray stack read happens on every GUP-fast call in the affected configuration, and the attacker directly selects which 8-byte stack word is used as a PUD by choosing the user address (`pud_index(addr) = (addr >> 36) & 2047` covers the whole 16K stack). The vulnerable build (16K pages with the default 52-bit VA) plus non-LPA2 hardware is a real, widely shipped deployment (Asahi Linux, 16KB-page Android), and is not a condition the attacker must win.\nPR:L - Any unprivileged local user can call `pread()`/`pwrite()` on an O_DIRECT fd, `vmsplice()`, `futex()`, or io_uring to enter `gup_fast_fallback()`. No capability, namespace, or other access check exists on the path.\nUI:N - The attacker triggers the fault entirely through their own syscalls on their own address space; no victim action or cooperation is needed.\nS:U - The corruption and its consequences are confined to the kernel's own security authority — standard kernel memory corruption and privilege escalation, not a VM or IOMMU boundary crossing.\nC:H - Attacker-controlled kernel-stack words (including `pt_regs`-held user register values) are interpreted as PUD/PMD/PTE entries with no `pfn_valid()` check in production builds, so `pud_page()`/`pte_page()` returns a struct page for an arbitrary PFN that the caller then reads — an arbitrary physical memory read primitive (e.g. dumping kernel memory via an O_DIRECT write).\nI:H - The same fabricated page-table walk lets an O_DIRECT read or io_uring write target arbitrary physical pages, and `try_grab_folio()` performs a refcount increment on a struct page synthesized from a fully controlled 64-bit value, giving arbitrary write primitives suitable for control-flow hijacking and privilege escalation.\nA:H - The reporter observed random kernel oopsen from the fast GUP code in this configuration, and dereferencing garbage as page-table entries reliably produces kernel panics and refcount corruption."
                        }
                    ]
                }
            ],
            "affected": [
                {
                    "product": "Linux",
                    "vendor": "Linux",
                    "defaultStatus": "unaffected",
                    "repo": "https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git",
                    "programFiles": [
                        "arch/arm64/include/asm/pgtable.h"
                    ],
                    "versions": [
                        {
                            "version": "0dd4f60a2c76938c2625f6c630c225699d97608b",
                            "lessThan": "78672d49d3eebbcda3589f4d6e589caf357c5a59",
                            "status": "affected",
                            "versionType": "git"
                        },
                        {
                            "version": "0dd4f60a2c76938c2625f6c630c225699d97608b",
                            "lessThan": "36639013b3462c06ff8e3400a427f775b4fc97f5",
                            "status": "affected",
                            "versionType": "git"
                        }
                    ]
                },
                {
                    "product": "Linux",
                    "vendor": "Linux",
                    "defaultStatus": "affected",
                    "repo": "https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git",
                    "programFiles": [
                        "arch/arm64/include/asm/pgtable.h"
                    ],
                    "versions": [
                        {
                            "version": "6.9",
                            "status": "affected"
                        },
                        {
                            "version": "0",
                            "lessThan": "6.9",
                            "status": "unaffected",
                            "versionType": "semver"
                        },
                        {
                            "version": "6.10.3",
                            "lessThanOrEqual": "6.10.*",
                            "status": "unaffected",
                            "versionType": "semver"
                        },
                        {
                            "version": "6.11",
                            "lessThanOrEqual": "*",
                            "status": "unaffected",
                            "versionType": "original_commit_for_fix"
                        }
                    ]
                }
            ],
            "cpeApplicability": [
                {
                    "nodes": [
                        {
                            "operator": "OR",
                            "negate": false,
                            "cpeMatch": [
                                {
                                    "vulnerable": true,
                                    "criteria": "cpe:2.3:o:linux:linux_kernel:*:*:*:*:*:*:*:*",
                                    "versionStartIncluding": "6.9",
                                    "versionEndExcluding": "6.10.3"
                                },
                                {
                                    "vulnerable": true,
                                    "criteria": "cpe:2.3:o:linux:linux_kernel:*:*:*:*:*:*:*:*",
                                    "versionStartIncluding": "6.9",
                                    "versionEndExcluding": "6.11"
                                }
                            ]
                        }
                    ]
                }
            ],
            "references": [
                {
                    "url": "https://git.kernel.org/stable/c/78672d49d3eebbcda3589f4d6e589caf357c5a59"
                },
                {
                    "url": "https://git.kernel.org/stable/c/36639013b3462c06ff8e3400a427f775b4fc97f5"
                }
            ],
            "title": "arm64: mm: Fix lockless walks with static and dynamic page-table folding",
            "x_generator": {
                "engine": "bippy-1.2.0"
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        },
        "adp": [
            {
                "metrics": [
                    {
                        "other": {
                            "type": "ssvc",
                            "content": {
                                "id": "CVE-2024-42293",
                                "role": "CISA Coordinator",
                                "options": [
                                    {
                                        "Exploitation": "none"
                                    },
                                    {
                                        "Automatable": "no"
                                    },
                                    {
                                        "Technical Impact": "partial"
                                    }
                                ],
                                "version": "2.0.3",
                                "timestamp": "2024-09-10T16:10:57.009784Z"
                            }
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                    }
                ],
                "title": "CISA ADP Vulnrichment",
                "providerMetadata": {
                    "orgId": "134c704f-9b21-4f2e-91b3-4a467353bcc0",
                    "shortName": "CISA-ADP",
                    "dateUpdated": "2024-09-12T17:33:29.368Z"
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}