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ransomgunra reclama a worldtube · KR · Technologyransomqilin reclama a WD Masonry & Concrete · US · Otherransomakira reclama a University SprinklerSystems · Manufacturingransomorova reclama a Tat Fung Textile Co., Ltd. · HK · Manufacturingransomorova reclama a Integrated Site Management · US · Professional Servicesransomorova reclama a Conceptual Designs, Inc. · US · Otherransomorova reclama a JK Capital Management Limited · HK · Financial Servicesransomorova reclama a Global Friction Products, Inc · US · Manufacturingransomaurora reclama a GILDE Handwerk Macrander GmbH & Co. KG · DE · Manufacturingransomaurora reclama a US Installation Group, Inc. · US · Manufacturingransomincransom reclama a pushidrosal.id · ID · Otherransomincransom reclama a lccgroup.com · PH · Professional Servicesransomincransom reclama a https://geleximco.vn/ · VN · Manufacturingransomincransom reclama a clintonhealthaccess.org · US · Healthcareransomgunra reclama a worldtube · KR · Technologyransomqilin reclama a WD Masonry & Concrete · US · Otherransomakira reclama a University SprinklerSystems · Manufacturingransomorova reclama a Tat Fung Textile Co., Ltd. · HK · Manufacturingransomorova reclama a Integrated Site Management · US · Professional Servicesransomorova reclama a Conceptual Designs, Inc. · US · Otherransomorova reclama a JK Capital Management Limited · HK · Financial Servicesransomorova reclama a Global Friction Products, Inc · US · Manufacturingransomaurora reclama a GILDE Handwerk Macrander GmbH & Co. KG · DE · Manufacturingransomaurora reclama a US Installation Group, Inc. · US · Manufacturingransomincransom reclama a pushidrosal.id · ID · Otherransomincransom reclama a lccgroup.com · PH · Professional Servicesransomincransom reclama a https://geleximco.vn/ · VN · Manufacturingransomincransom reclama a clintonhealthaccess.org · US · Healthcare
CVE Watch355,262 in full archive

Vulnerabilities exploitable today

355,262in current view

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

In KEV catalog1,657
New KEV · 24H0
Exploit Today ≥ 701,602

Distribution · last window

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Vulnerabilities329,721–329,760 · 355,262
CVECVSSEPSSKEVRExploitTitleMod.
CVE-2023-538107.8 HIG
7.1%
2In the Linux kernel, the following vulnerability has been resolved: blk-mq: release crypto keyslot before reporting I/O complete Once all I/O using a blk_crypto_key has completed, filesystems can call blk_crypto_evict_key(). However, the block layer currently doesn't call blk_crypto_put_keyslot() until the request is being freed, which happens after upper layers have been told (via bio_endio()) the I/O has completed. This causes a race condition where blk_crypto_evict_key() can see 'slot_refs != 0' without there being an actual bug. This makes __blk_crypto_evict_key() hit the 'WARN_ON_ONCE(atomic_read(&slot->slot_refs) != 0)' and return without doing anything, eventually causing a use-after-free in blk_crypto_reprogram_all_keys(). (This is a very rare bug and has only been seen when per-file keys are being used with fscrypt.) There are two options to fix this: either release the keyslot before bio_endio() is called on the request's last bio, or make __blk_crypto_evict_key() ignore slot_refs. Let's go with the first solution, since it preserves the ability to report bugs (via WARN_ON_ONCE) where a key is evicted while still in-use.5h
CVE-2025-1320
7.1%
2
CVE-2022-2835
7.1%
2
CVE-2026-42312
7.1%
2
CVE-2025-42973
7.1%
2
CVE-2025-66161
7.1%
2
CVE-2024-9994
7.1%
2
CVE-2023-32458
7.1%
2
CVE-2025-66147
7.1%
2
CVE-2021-3439
7.1%
2
CVE-2026-13151
7.1%
2Rejected reason: This CVE ID has been rejected or withdrawn by its CVE Numbering Authority.19h
CVE-2025-22559
7.1%
2
CVE-2019-25622
7.1%
2
CVE-2023-52236
7.1%
2
CVE-2025-39448
7.1%
2
CVE-2022-20600
7.1%
2
CVE-2025-49427
7.1%
2
CVE-2024-39816
7.1%
2
CVE-2025-0591
7.1%
2
CVE-2024-48191
7.1%
2
CVE-2023-6631
7.1%
2
CVE-2023-543087.8 HIG
7.1%
2In the Linux kernel, the following vulnerability has been resolved: ALSA: ymfpci: Create card with device-managed snd_devm_card_new() snd_card_ymfpci_remove() was removed in commit c6e6bb5eab74 ("ALSA: ymfpci: Allocate resources with device-managed APIs"), but the call to snd_card_new() was not replaced with snd_devm_card_new(). Since there was no longer a call to snd_card_free, unloading the module would eventually result in Oops: [697561.532887] BUG: unable to handle page fault for address: ffffffffc0924480 [697561.532893] #PF: supervisor read access in kernel mode [697561.532896] #PF: error_code(0x0000) - not-present page [697561.532899] PGD ae1e15067 P4D ae1e15067 PUD ae1e17067 PMD 11a8f5067 PTE 0 [697561.532905] Oops: 0000 [#1] PREEMPT SMP NOPTI [697561.532909] CPU: 21 PID: 5080 Comm: wireplumber Tainted: G W OE 6.2.7 #1 [697561.532914] Hardware name: System manufacturer System Product Name/TUF GAMING X570-PLUS, BIOS 4408 10/28/2022 [697561.532916] RIP: 0010:try_module_get.part.0+0x1a/0xe0 [697561.532924] Code: 90 90 90 90 90 90 90 90 90 90 90 90 90 90 90 90 0f 1f 44 00 00 55 48 89 e5 41 55 41 54 49 89 fc bf 01 00 00 00 e8 56 3c f8 ff <41> 83 3c 24 02 0f 84 96 00 00 00 41 8b 84 24 30 03 00 00 85 c0 0f [697561.532927] RSP: 0018:ffffbe9b858c3bd8 EFLAGS: 00010246 [697561.532930] RAX: ffff9815d14f1900 RBX: ffff9815c14e6000 RCX: 0000000000000000 [697561.532933] RDX: 0000000000000000 RSI: ffffffffc055092c RDI: ffffffffb3778c1a [697561.532935] RBP: ffffbe9b858c3be8 R08: 0000000000000040 R09: ffff981a1a741380 [697561.532937] R10: ffffbe9b858c3c80 R11: 00000009d56533a6 R12: ffffffffc0924480 [697561.532939] R13: ffff9823439d8500 R14: 0000000000000025 R15: ffff9815cd109f80 [697561.532942] FS: 00007f13084f1f80(0000) GS:ffff9824aef40000(0000) knlGS:0000000000000000 [697561.532945] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [697561.532947] CR2: ffffffffc0924480 CR3: 0000000145344000 CR4: 0000000000350ee0 [697561.532949] Call Trace: [697561.532951] <TASK> [697561.532955] try_module_get+0x13/0x30 [697561.532960] snd_ctl_open+0x61/0x1c0 [snd] [697561.532976] snd_open+0xb4/0x1e0 [snd] [697561.532989] chrdev_open+0xc7/0x240 [697561.532995] ? fsnotify_perm.part.0+0x6e/0x160 [697561.533000] ? __pfx_chrdev_open+0x10/0x10 [697561.533005] do_dentry_open+0x169/0x440 [697561.533009] vfs_open+0x2d/0x40 [697561.533012] path_openat+0xa9d/0x10d0 [697561.533017] ? debug_smp_processor_id+0x17/0x20 [697561.533022] ? trigger_load_balance+0x65/0x370 [697561.533026] do_filp_open+0xb2/0x160 [697561.533032] ? _raw_spin_unlock+0x19/0x40 [697561.533036] ? alloc_fd+0xa9/0x190 [697561.533040] do_sys_openat2+0x9f/0x160 [697561.533044] __x64_sys_openat+0x55/0x90 [697561.533048] do_syscall_64+0x3b/0x90 [697561.533052] entry_SYSCALL_64_after_hwframe+0x72/0xdc [697561.533056] RIP: 0033:0x7f1308a40db4 [697561.533059] Code: 24 20 eb 8f 66 90 44 89 54 24 0c e8 46 68 f8 ff 44 8b 54 24 0c 44 89 e2 48 89 ee 41 89 c0 bf 9c ff ff ff b8 01 01 00 00 0f 05 <48> 3d 00 f0 ff ff 77 32 44 89 c7 89 44 24 0c e8 78 68 f8 ff 8b 44 [697561.533062] RSP: 002b:00007ffcce664450 EFLAGS: 00000293 ORIG_RAX: 0000000000000101 [697561.533066] RAX: ffffffffffffffda RBX: 0000000000000003 RCX: 00007f1308a40db4 [697561.533068] RDX: 0000000000080000 RSI: 00007ffcce664690 RDI: 00000000ffffff9c [697561.533070] RBP: 00007ffcce664690 R08: 0000000000000000 R09: 0000000000000012 [697561.533072] R10: 0000000000000000 R11: 0000000000000293 R12: 0000000000080000 [697561.533074] R13: 00007f13054b069b R14: 0000565209f83200 R15: 0000000000000000 [697561.533078] </TASK>4h
CVE-2025-15515
7.1%
2
CVE-2025-66167
7.1%
2
CVE-2025-27707
7.1%
2
CVE-2026-541634.7 MED
7.1%
2secure_headers manages application of security headers with many safe defaults. Prior to 7.3.0, secure_headers builds the Content-Security-Policy value by stitching directives with ; separators, and build_sandbox_list_directive, build_media_type_list_directive, and build_report_to_directive interpolate caller-supplied strings without scrubbing ;, \r, or \n. When untrusted input reaches SecureHeaders.override_content_security_policy_directives or append APIs for :sandbox, :plugin_types, or :report_to, an attacker can inject a CSP directive such as script-src 'unsafe-inline' * before the legitimate script-src, enabling XSS reachability through these sinks or CSP report exfiltration. This issue is fixed in version 7.3.0.12d
CVE-2022-37931
7.1%
2
CVE-2025-66166
7.1%
2
CVE-2025-66164
7.1%
2
CVE-2025-66165
7.1%
2
CVE-2025-11543
7.1%
2
CVE-2025-22590
7.1%
2
CVE-2025-49450
7.1%
2
CVE-2025-22555
7.1%
2
CVE-2026-344627.8 HIG
7.1%
2Sandboxie-Plus is an open source sandbox-based isolation software for Windows. In versions 1.17.2 and earlier, several ProcessServer handlers (KillAllHandler, SuspendAllHandler, and RunSandboxedHandler) copy a WCHAR boxname[34] field from request structures into WCHAR[40] stack buffers using wcscpy without verifying null termination. Because the service pipe accepts variable-length packets larger than the request structure, an attacker can fill the boxname field with non-zero data and append additional controlled wide characters after the structure. wcscpy then reads past the fixed field and overflows the destination stack buffer. The service pipe is created with a NULL DACL, allowing any local process to connect, and the unsafe copy occurs before authorization checks. This can lead to a crash of the SbieSvc service or potential code execution as SYSTEM. This issue has been fixed in version 1.17.3.11d
CVE-2023-541827.1 HIG
7.1%
2In the Linux kernel, the following vulnerability has been resolved: f2fs: fix to check readonly condition correctly With below case, it can mount multi-device image w/ rw option, however one of secondary device is set as ro, later update will cause panic, so let's introduce f2fs_dev_is_readonly(), and check multi-devices rw status in f2fs_remount() w/ it in order to avoid such inconsistent mount status. mkfs.f2fs -c /dev/zram1 /dev/zram0 -f blockdev --setro /dev/zram1 mount -t f2fs dev/zram0 /mnt/f2fs mount: /mnt/f2fs: WARNING: source write-protected, mounted read-only. mount -t f2fs -o remount,rw mnt/f2fs dd if=/dev/zero of=/mnt/f2fs/file bs=1M count=8192 kernel BUG at fs/f2fs/inline.c:258! RIP: 0010:f2fs_write_inline_data+0x23e/0x2d0 [f2fs] Call Trace: f2fs_write_single_data_page+0x26b/0x9f0 [f2fs] f2fs_write_cache_pages+0x389/0xa60 [f2fs] __f2fs_write_data_pages+0x26b/0x2d0 [f2fs] f2fs_write_data_pages+0x2e/0x40 [f2fs] do_writepages+0xd3/0x1b0 __writeback_single_inode+0x5b/0x420 writeback_sb_inodes+0x236/0x5a0 __writeback_inodes_wb+0x56/0xf0 wb_writeback+0x2a3/0x490 wb_do_writeback+0x2b2/0x330 wb_workfn+0x6a/0x260 process_one_work+0x270/0x5e0 worker_thread+0x52/0x3e0 kthread+0xf4/0x120 ret_from_fork+0x29/0x504h
CVE-2022-20597
7.1%
2
CVE-2026-95715.9 MED
7.1%
2Mattermost versions 11.7.x <= 11.7.2, 11.6.x <= 11.6.4, 10.11.x <= 10.11.19 fail to invalidate OAuth refresh tokens upon user account deactivation, which allows a deactivated user or an attacker in possession of a valid refresh token to obtain new functional access tokens via the OAuth refresh token grant endpoint.. Mattermost Advisory ID: MMSA-2026-0068020d
CVE-2019-25624
7.1%
2
CVE-2023-30297
7.1%
2