{"api_version":"1","generated_at":"2026-08-28T04:53:43+00:00","cve":"CVE-2026-80578","urls":{"html":"https://cve.report/CVE-2026-80578","api":"https://cve.report/api/cve/CVE-2026-80578.json","docs":"https://cve.report/api","cve_org":"https://www.cve.org/CVERecord?id=CVE-2026-80578","nvd":"https://nvd.nist.gov/vuln/detail/CVE-2026-80578"},"summary":{"title":"fbdev: core: Fix pointer desynchronization in fb_io_read()","description":"In the Linux kernel, the following vulnerability has been resolved:\n\nfbdev: core: Fix pointer desynchronization in fb_io_read()\n\nIn fb_io_read(), if copy_to_user() performs a partial copy (e.g., due to\na faulty user buffer), the loop adjusts the chunk size 'c' and updates\nthe remaining 'count'. However, the hardware 'src' pointer has already\nbeen eagerly advanced by the original chunk size.\n\nIf the loop is allowed to continue, the read will resume from an\nincorrect, over-advanced offset. Since the remaining 'count' was only\ndecremented by the successful bytes, this desynchronization causes the\nnext iterations to execute more hardware reads than originally bounded,\neventually leading to out-of-bounds I/O reads.\n\nFix this by breaking out of the loop immediately upon a partial\ncopy_to_user(). A partial copy indicates a faulty user buffer, making\nsubsequent read attempts futile. Breaking out ensures we return the\nnumber of successfully read bytes without risking out-of-bounds hardware\naccesses in subsequent mismatched iterations.","state":"PUBLISHED","assigner":"Linux","published_at":"2026-08-26 15:17:13","updated_at":"2026-08-27 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Program record","refsource":"CVE.ORG","tags":["canonical"]},{"url":"https://nvd.nist.gov/vuln/detail/CVE-2026-80578","name":"NVD vulnerability detail","refsource":"NVD","tags":["canonical","analysis"]}],"affected":[{"source":"CNA","vendor":"Linux","product":"Linux","version":"affected 6121cd9ef911432b14c2a17aefaf8cd2f3cfcdff 42bc07b4e5a3c8a02a433388f562a8f46d093e11 git","platforms":[]},{"source":"CNA","vendor":"Linux","product":"Linux","version":"affected 6121cd9ef911432b14c2a17aefaf8cd2f3cfcdff 42a6d8126c194133eafab2b0fd5c8668ebfcba5b git","platforms":[]},{"source":"CNA","vendor":"Linux","product":"Linux","version":"affected 6121cd9ef911432b14c2a17aefaf8cd2f3cfcdff 7ff87a01ae3a8cd0208f7499386998223a8b5dba git","platforms":[]},{"source":"CNA","vendor":"Linux","product":"Linux","version":"affected 6121cd9ef911432b14c2a17aefaf8cd2f3cfcdff 7110b7b794a2aac2c5cf8eb06ebf2af724c74d50 git","platforms":[]},{"source":"CNA","vendor":"Linux","product":"Linux","version":"affected 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original_commit_for_fix","platforms":[]}],"timeline":[],"solutions":[],"workarounds":[],"exploits":[],"credits":[],"nvd_cpes":[],"vendor_comments":[],"enrichments":{"kev":null,"epss":{"cve_year":"2026","cve_id":"80578","cve":"CVE-2026-80578","epss":"0.001160000","percentile":"0.018130000","score_date":"2026-08-27","updated_at":"2026-08-28 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the Linux kernel, the following vulnerability has been resolved:\n\nfbdev: core: Fix pointer desynchronization in fb_io_read()\n\nIn fb_io_read(), if copy_to_user() performs a partial copy (e.g., due to\na faulty user buffer), the loop adjusts the chunk size 'c' and updates\nthe remaining 'count'. However, the hardware 'src' pointer has already\nbeen eagerly advanced by the original chunk size.\n\nIf the loop is allowed to continue, the read will resume from an\nincorrect, over-advanced offset. Since the remaining 'count' was only\ndecremented by the successful bytes, this desynchronization causes the\nnext iterations to execute more hardware reads than originally bounded,\neventually leading to out-of-bounds I/O reads.\n\nFix this by breaking out of the loop immediately upon a partial\ncopy_to_user(). A partial copy indicates a faulty user buffer, making\nsubsequent read attempts futile. Breaking out ensures we return the\nnumber of successfully read bytes without risking out-of-bounds hardware\naccesses in subsequent mismatched iterations."}],"metrics":[{"cvssV3_1":{"baseScore":7.3,"baseSeverity":"HIGH","vectorString":"CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:L/A:H","version":"3.1"},"scenarios":[{"lang":"en","value":"AV:L - Exploitation requires a local read(2) on /dev/fb* through fb_read() in fb_chrdev.c, which calls fb_io_read() for I/O-mapped framebuffers (efifb, simplefb, embedded/industrial LCD drivers); no network, adjacent-radio, or physical-bus handler reaches this code.\nAC:L - The attacker fully controls read offset, length, and user-buffer layout; mmap/mprotect can force a partial copy_to_user() at a page boundary on the first chunk, desynchronizing src without races, rare configs, or conditions outside attacker control.\nPR:L - Triggering requires only local permission to open /dev/fb* (video group, seat uaccess ACL, or default console user on embedded HMIs, kiosks, and automotive/industrial displays using I/O framebuffers); no CAP_SYS_ADMIN or init-namespace root is needed.\nUI:N - Once framebuffer access is available, the attacker triggers the bug solely via crafted read() calls from their own process; no victim, administrator, or other-user interaction is required.\nS:U - Impact is confined to the host kernel and MMIO regions behind the framebuffer mapping; it does not cross VM, container, or IOMMU boundaries into a separate security authority.\nC:H - Pointer desynchronization lets fb_memcpy_fromio() read past screen_size/smem_len into adjacent MMIO (GPU/display registers, firmware handoff data), copying that hardware memory into the attacker user buffer; out-of-bounds I/O read warrants High confidentiality impact.\nI:L - Out-of-bounds MMIO reads can hit read-sensitive device registers (clear-on-read, mode or DMA control fields), causing limited but real hardware/display state modification even though no direct arbitrary kernel-memory write primitive is provided.\nA:H - Repeated unbounded I/O reads beyond the mapped framebuffer can hang or reset display/GPU hardware, provoke bus errors or machine checks on some platforms, and fault on unmapped iomem leading to kernel oops or panic."}]}],"providerMetadata":{"dateUpdated":"2026-08-27T05:01:59.582Z","orgId":"416baaa9-dc9f-4396-8d5f-8c081fb06d67","shortName":"Linux"},"references":[{"url":"https://git.kernel.org/stable/c/42bc07b4e5a3c8a02a433388f562a8f46d093e11"},{"url":"https://git.kernel.org/stable/c/42a6d8126c194133eafab2b0fd5c8668ebfcba5b"},{"url":"https://git.kernel.org/stable/c/7ff87a01ae3a8cd0208f7499386998223a8b5dba"},{"url":"https://git.kernel.org/stable/c/7110b7b794a2aac2c5cf8eb06ebf2af724c74d50"},{"url":"https://git.kernel.org/stable/c/81cc73be40c6f028f1ee3f438ace46afe666dbae"}],"title":"fbdev: core: Fix pointer desynchronization in fb_io_read()","x_generator":{"engine":"bippy-1.2.0"}}},"cveMetadata":{"assignerOrgId":"416baaa9-dc9f-4396-8d5f-8c081fb06d67","assignerShortName":"Linux","cveId":"CVE-2026-80578","datePublished":"2026-08-26T14:37:36.722Z","dateReserved":"2026-08-26T14:34:25.769Z","dateUpdated":"2026-08-27T05:01:59.582Z","state":"PUBLISHED"},"dataType":"CVE_RECORD","dataVersion":"5.2"},"nvd":{"publishedDate":"2026-08-26 15:17:13","lastModifiedDate":"2026-08-27 06:17:43","problem_types":[],"metrics":{"cvssMetricV31":[{"source":"416baaa9-dc9f-4396-8d5f-8c081fb06d67","type":"Secondary","cvssData":{"version":"3.1","vectorString":"CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:L/A:H","baseScore":7.3,"baseSeverity":"HIGH","attackVector":"LOCAL","attackComplexity":"LOW","privilegesRequired":"LOW","userInteraction":"NONE","scope":"UNCHANGED","confidentialityImpact":"HIGH","integrityImpact":"LOW","availabilityImpact":"HIGH"},"exploitabilityScore":1.8,"impactScore":5.5}]},"configurations":[]},"legacy_mitre":{"record":{"CveYear":"2026","CveId":"80578","Ordinal":"1","Title":"fbdev: core: Fix pointer desynchronization in fb_io_read()","CVE":"CVE-2026-80578","Year":"2026"},"notes":[{"CveYear":"2026","CveId":"80578","Ordinal":"1","NoteData":"In the Linux kernel, the following vulnerability has been resolved:\n\nfbdev: core: Fix pointer desynchronization in fb_io_read()\n\nIn fb_io_read(), if copy_to_user() performs a partial copy (e.g., due to\na faulty user buffer), the loop adjusts the chunk size 'c' and updates\nthe remaining 'count'. However, the hardware 'src' pointer has already\nbeen eagerly advanced by the original chunk size.\n\nIf the loop is allowed to continue, the read will resume from an\nincorrect, over-advanced offset. Since the remaining 'count' was only\ndecremented by the successful bytes, this desynchronization causes the\nnext iterations to execute more hardware reads than originally bounded,\neventually leading to out-of-bounds I/O reads.\n\nFix this by breaking out of the loop immediately upon a partial\ncopy_to_user(). A partial copy indicates a faulty user buffer, making\nsubsequent read attempts futile. Breaking out ensures we return the\nnumber of successfully read bytes without risking out-of-bounds hardware\naccesses in subsequent mismatched iterations.","Type":"Description","Title":"fbdev: core: Fix pointer desynchronization in fb_io_read()"}]}}}