{"dataType":"CVE_RECORD","dataVersion":"5.2","cveMetadata":{"cveId":"CVE-2026-98150","assignerOrgId":"416baaa9-dc9f-4396-8d5f-8c081fb06d67","state":"PUBLISHED","assignerShortName":"Linux","dateReserved":"2026-09-25T10:25:14.320Z","datePublished":"2026-09-25T10:36:22.774Z","dateUpdated":"2026-09-25T14:42:12.855Z"},"containers":{"cna":{"providerMetadata":{"orgId":"416baaa9-dc9f-4396-8d5f-8c081fb06d67","shortName":"Linux","dateUpdated":"2026-09-25T14:42:12.855Z"},"descriptions":[{"lang":"en","value":"In the Linux kernel, the following vulnerability has been resolved:\n\nbpf: Fix BPF_F_CPU validation for sparse CPU IDs\n\nBPF_F_CPU stores the target CPU ID in the upper 32 bits of the map\noperation flags. bpf_map_check_op_flags() currently compares that ID\nwith num_possible_cpus(), which is the number of possible CPUs rather\nthan a bound on CPU IDs.\n\nOn an arm64 QEMU guest with a CPU device-tree hole, the possible CPU\nmask was 0,2-3. A userspace program using raw bpf() syscalls creates\na BPF_MAP_TYPE_PERCPU_ARRAY and performs update and lookup operations\nfor each CPU by setting BPF_F_CPU and the CPU ID in the flags.\n\nWith the old check, CPU 1 is incorrectly accepted while valid CPU 3 is\nrejected with -ERANGE. The CPU 1 update then reaches the per-CPU map\naccess path and triggers:\n\n  Unable to handle kernel paging request at virtual address ...\n  pc : __pi_memcpy_generic+0x5c/0x22c\n  lr : bpf_percpu_array_update+0x2dc/0x2e8\n  Call trace:\n    __pi_memcpy_generic\n    bpf_map_update_value\n    map_update_elem\n    __sys_bpf\n\nCheck the CPU ID against nr_cpu_ids and cpu_possible() instead. This\nrejects CPU IDs outside the valid range and CPUs absent from the\npossible mask, while allowing valid sparse CPU IDs."}],"metrics":[{"cvssV3_1":{"version":"3.1","vectorString":"CVSS:3.1/AV:L/AC:H/PR:L/UI:N/S:U/C:H/I:H/A:H","baseScore":7,"baseSeverity":"HIGH"},"scenarios":[{"lang":"en","value":"AV:L - The out-of-range CPU ID arrives in attr->flags of the local bpf(2) BPF_MAP_UPDATE_ELEM/LOOKUP_ELEM syscall (map_update_elem/map_lookup_elem -> bpf_map_check_op_flags); no network or adjacent protocol carries it.\nAC:H - The check only lets through a CPU ID in a hole of the possible-CPU mask (e.g. 0,2-3 on arm64 device-tree systems). That topology comes from firmware/hardware and the attacker can't create it. It also needs a permissive BPF setup, and where the stray per_cpu_ptr() lands (unmapped init memory vs mapped .data) depends on percpu allocator placement.\nPR:L - BPF_MAP_TYPE_PERCPU_ARRAY/PERCPU_HASH are in map_create()'s unprivileged list when unprivileged_bpf_disabled=0 or with a delegated BPF token, and map_update_elem/map_lookup_elem check only FMODE_CAN_WRITE/READ on the map fd, not a capability.\nUI:N - The attacker creates or opens the per-CPU map and issues the update/lookup with BPF_F_CPU and a hole CPU ID entirely on their own; no other user acts.\nS:U - The bad access corrupts or reads kernel memory within the same kernel security authority; no VM, IOMMU or sandbox boundary is crossed.\nC:H - bpf_percpu_array_copy() copies value_size bytes from per_cpu_ptr(pptr, cpu) for a missing CPU whose __per_cpu_offset is 0, i.e. from a stray kernel address, back to userspace via BPF_MAP_LOOKUP_ELEM, and the attacker can repeat it.\nI:H - bpf_percpu_array_update() does copy_map_value() of attacker-supplied value bytes to per_cpu_ptr(pptr, cpu) for the missing CPU. That is an out-of-bounds write of controlled data to an address outside any valid per-CPU unit, which can land in kernel .data past __init_end.\nA:H - As the fix commit shows, the update faults in __pi_memcpy_generic from bpf_percpu_array_update on unmapped memory (the freed/vunmapped __init region on arm64), causing a kernel oops."}]}],"affected":[{"product":"Linux","vendor":"Linux","defaultStatus":"unaffected","repo":"https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git","programFiles":["include/linux/bpf.h"],"versions":[{"version":"2b421662c7887a0649fe409155a1f101562d0fa9","lessThan":"bdc5941f6eeef90b76a07fd8ca38ac1933ba2195","status":"affected","versionType":"git"},{"version":"2b421662c7887a0649fe409155a1f101562d0fa9","lessThan":"ed54bf564ac52699cf4def3d0c2125d493e756f9","status":"affected","versionType":"git"}]},{"product":"Linux","vendor":"Linux","defaultStatus":"affected","repo":"https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git","programFiles":["include/linux/bpf.h"],"versions":[{"version":"7.0","status":"affected"},{"version":"0","lessThan":"7.0","status":"unaffected","versionType":"semver"},{"version":"7.2.7","lessThanOrEqual":"7.2.*","status":"unaffected","versionType":"semver"},{"version":"7.3-rc2","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":"7.0","versionEndExcluding":"7.2.7"},{"vulnerable":true,"criteria":"cpe:2.3:o:linux:linux_kernel:*:*:*:*:*:*:*:*","versionStartIncluding":"7.0","versionEndExcluding":"7.3-rc2"}]}]}],"references":[{"url":"https://git.kernel.org/stable/c/bdc5941f6eeef90b76a07fd8ca38ac1933ba2195"},{"url":"https://git.kernel.org/stable/c/ed54bf564ac52699cf4def3d0c2125d493e756f9"}],"title":"bpf: Fix BPF_F_CPU validation for sparse CPU IDs","x_generator":{"engine":"bippy-1.2.0"}}}}