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ransomkillsec reclama a cashcowboy · US · Financial Servicesransomkillsec reclama a Bulwark Exterminating · US · Otherransomkillsec reclama a origins ivf · IN · Healthcareransomqilin reclama a Machinerie P&W · CA · Manufacturingransomqilin reclama a ABM Enviro · CA · Professional Servicesransomkrybit reclama a nilepet.com · EG · Retail & E-Commerceransomthegentlemen reclama a European Design · CA · Otherransomthegentlemen reclama a MK Jewelry · MK · Retail & E-Commerceransomthegentlemen reclama a GUERREIROS seguros · PT · Financial Servicesransomthegentlemen reclama a Tikona Infinet · IN · Technologyransomthegentlemen reclama a TC Printing · AU · Manufacturingransomthegentlemen reclama a Oldelval Oleoductos del Valle · AR · Energy & Utilitiesransomthegentlemen reclama a Decoupe Laser Services · FR · Manufacturingransomthegentlemen reclama a Thialf · NL · Energy & Utilitiesransomkillsec reclama a cashcowboy · US · Financial Servicesransomkillsec reclama a Bulwark Exterminating · US · Otherransomkillsec reclama a origins ivf · IN · Healthcareransomqilin reclama a Machinerie P&W · CA · Manufacturingransomqilin reclama a ABM Enviro · CA · Professional Servicesransomkrybit reclama a nilepet.com · EG · Retail & E-Commerceransomthegentlemen reclama a European Design · CA · Otherransomthegentlemen reclama a MK Jewelry · MK · Retail & E-Commerceransomthegentlemen reclama a GUERREIROS seguros · PT · Financial Servicesransomthegentlemen reclama a Tikona Infinet · IN · Technologyransomthegentlemen reclama a TC Printing · AU · Manufacturingransomthegentlemen reclama a Oldelval Oleoductos del Valle · AR · Energy & Utilitiesransomthegentlemen reclama a Decoupe Laser Services · FR · Manufacturingransomthegentlemen reclama a Thialf · NL · Energy & Utilities
CVE Watch352,162 in full archive

Vulnerabilities exploitable today

352,162in current view

Single score combining CVSS, KEV membership and EPSS. Every CVE with its own record — timeline from publication to active exploitation.

In KEV catalog1,653
New KEV · 24H0
Exploit Today ≥ 701,590

Distribution · last window

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    2,073
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    6,924
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    5,904
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Vulnerabilities342,241–342,280 · 352,162
CVECVSSEPSSKEVRExploitTitleMod.
CVE-2026-28281
2.8%
1
CVE-2021-47862
2.8%
1
CVE-2026-640767.8 HIG
2.8%
1In the Linux kernel, the following vulnerability has been resolved: netfilter: bridge: eb_tables: close module init race sashiko reports for unrelated patch: Does the core ebtables initialization in ebtables.c suffer from a similar race? Once nf_register_sockopt() completes, the sockopts are exposed globally. sockopt has to be registered last, just like in ip/ip6/arptables.3d
CVE-2026-23222
2.8%
1
CVE-2025-49164
2.8%
1
CVE-2021-47861
2.8%
1
CVE-2026-46100
2.8%
1
CVE-2025-38508
2.8%
1
CVE-2026-462797.8 HIG
2.8%
1In the Linux kernel, the following vulnerability has been resolved: mm/alloc_tag: clear codetag for pages allocated before page_ext initialization Due to initialization ordering, page_ext is allocated and initialized relatively late during boot. Some pages have already been allocated and freed before page_ext becomes available, leaving their codetag uninitialized. A clear example is in init_section_page_ext(): alloc_page_ext() calls kmemleak_alloc(). If the slab cache has no free objects, it falls back to the buddy allocator to allocate memory. However, at this point page_ext is not yet fully initialized, so these newly allocated pages have no codetag set. These pages may later be reclaimed by KASAN, which causes the warning to trigger when they are freed because their codetag ref is still empty. Use a global array to track pages allocated before page_ext is fully initialized. The array size is fixed at 8192 entries, and will emit a warning if this limit is exceeded. When page_ext initialization completes, set their codetag to empty to avoid warnings when they are freed later. This warning is only observed with CONFIG_MEM_ALLOC_PROFILING_DEBUG=Y and mem_profiling_compressed disabled: [ 9.582133] ------------[ cut here ]------------ [ 9.582137] alloc_tag was not set [ 9.582139] WARNING: ./include/linux/alloc_tag.h:164 at __pgalloc_tag_sub+0x40f/0x550, CPU#5: systemd/1 [ 9.582190] CPU: 5 UID: 0 PID: 1 Comm: systemd Not tainted 7.0.0-rc4 #1 PREEMPT(lazy) [ 9.582192] Hardware name: Red Hat KVM, BIOS rel-1.16.3-0-ga6ed6b701f0a-prebuilt.qemu.org 04/01/2014 [ 9.582194] RIP: 0010:__pgalloc_tag_sub+0x40f/0x550 [ 9.582196] Code: 00 00 4c 29 e5 48 8b 05 1f 88 56 05 48 8d 4c ad 00 48 8d 2c c8 e9 87 fd ff ff 0f 0b 0f 0b e9 f3 fe ff ff 48 8d 3d 61 2f ed 03 <67> 48 0f b9 3a e9 b3 fd ff ff 0f 0b eb e4 e8 5e cd 14 02 4c 89 c7 [ 9.582197] RSP: 0018:ffffc9000001f940 EFLAGS: 00010246 [ 9.582200] RAX: dffffc0000000000 RBX: 1ffff92000003f2b RCX: 1ffff110200d806c [ 9.582201] RDX: ffff8881006c0360 RSI: 0000000000000004 RDI: ffffffff9bc7b460 [ 9.582202] RBP: 0000000000000000 R08: 0000000000000000 R09: fffffbfff3a62324 [ 9.582203] R10: ffffffff9d311923 R11: 0000000000000000 R12: ffffea0004001b00 [ 9.582204] R13: 0000000000002000 R14: ffffea0000000000 R15: ffff8881006c0360 [ 9.582206] FS: 00007ffbbcf2d940(0000) GS:ffff888450479000(0000) knlGS:0000000000000000 [ 9.582208] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [ 9.582210] CR2: 000055ee3aa260d0 CR3: 0000000148b67005 CR4: 0000000000770ef0 [ 9.582211] PKRU: 55555554 [ 9.582212] Call Trace: [ 9.582213] <TASK> [ 9.582214] ? __pfx___pgalloc_tag_sub+0x10/0x10 [ 9.582216] ? check_bytes_and_report+0x68/0x140 [ 9.582219] __free_frozen_pages+0x2e4/0x1150 [ 9.582221] ? __free_slab+0xc2/0x2b0 [ 9.582224] qlist_free_all+0x4c/0xf0 [ 9.582227] kasan_quarantine_reduce+0x15d/0x180 [ 9.582229] __kasan_slab_alloc+0x69/0x90 [ 9.582232] kmem_cache_alloc_noprof+0x14a/0x500 [ 9.582234] do_getname+0x96/0x310 [ 9.582237] do_readlinkat+0x91/0x2f0 [ 9.582239] ? __pfx_do_readlinkat+0x10/0x10 [ 9.582240] ? get_random_bytes_user+0x1df/0x2c0 [ 9.582244] __x64_sys_readlinkat+0x96/0x100 [ 9.582246] do_syscall_64+0xce/0x650 [ 9.582250] ? __x64_sys_getrandom+0x13a/0x1e0 [ 9.582252] ? __pfx___x64_sys_getrandom+0x10/0x10 [ 9.582254] ? do_syscall_64+0x114/0x650 [ 9.582255] ? ksys_read+0xfc/0x1d0 [ 9.582258] ? __pfx_ksys_read+0x10/0x10 [ 9.582260] ? do_syscall_64+0x114/0x650 [ 9.582262] ? do_syscall_64+0x114/0x650 [ 9.582264] ? __pfx_fput_close_sync+0x10/0x10 [ 9.582266] ? file_close_fd_locked+0x178/0x2a0 [ 9.582268] ? __x64_sys_faccessat2+0x96/0x100 [ 9.582269] ? __x64_sys_close+0x7d/0xd0 [ 9.582271] ? do_syscall_64+0x114/0x650 [ 9.582273] ? do_syscall_64+0x114/0x650 [ 9.582275] ? clear_bhb_loop+0x50/0xa0 [ 9.582277] ? clear_bhb_l ---truncated---15d
CVE-2021-47880
2.8%
1
CVE-2026-46045
2.8%
1
CVE-2026-532415.5 MED
2.8%
1In the Linux kernel, the following vulnerability has been resolved: ALSA: seq: dummy: fix UMP event stack overread The dummy sequencer port forwards events by copying an incoming struct snd_seq_event into a stack temporary, rewriting source and destination, and dispatching the temporary to subscribers. That legacy event storage is smaller than struct snd_seq_ump_event. When a UMP event reaches the dummy client, the copy leaves the UMP flag set but only provides legacy-sized stack storage. The subscriber delivery path then uses snd_seq_event_packet_size() and copies a UMP-sized packet from that stack object, reading past the end of the temporary. Use the existing union __snd_seq_event storage and copy the packet size reported for the incoming event before rewriting the common routing fields. This preserves the full UMP packet for UMP events while keeping legacy event handling unchanged.16d
CVE-2025-38518
2.8%
1
CVE-2021-47879
2.8%
1
CVE-2026-31471
2.8%
1
CVE-2025-58801
2.7%
1
CVE-2025-4582
2.7%
1
CVE-2025-23275
2.7%
1
CVE-2025-46516
2.7%
1
CVE-2025-53882
2.7%
1
CVE-2025-47620
2.7%
1
CVE-2025-47514
2.7%
1
CVE-2025-48238
2.7%
1
CVE-2024-2315
2.7%
1
CVE-2025-58818
2.7%
1
CVE-2020-11639
2.7%
1
CVE-2025-0885
2.7%
1
CVE-2025-46514
2.7%
1
CVE-2026-23108
2.7%
1
CVE-2024-22313
2.7%
1
CVE-2025-28981
2.7%
1
CVE-2026-3113
2.7%
1
CVE-2025-30995
2.7%
1
CVE-2025-58074
2.7%
1
CVE-2025-49044
2.7%
1
CVE-2025-57175
2.7%
1
CVE-2025-21892
2.7%
1
CVE-2019-25617
2.7%
1
CVE-2025-67472
2.7%
1
CVE-2026-102305.3 MED
2.7%
1A vulnerability was identified in Assimp up to 6.0.4. This impacts the function Assimp::MDL::HalfLife::HL1MDLLoader::read_animations of the file HL1MDLLoader.cpp of the component Half-Life 1 MDL Loader. Such manipulation leads to heap-based buffer overflow. The attack must be carried out locally. The exploit is publicly available and might be used. The project tagged the reported issue as bug.1d