Vulnerabilities exploitable today
365,446in current view
Single score combining CVSS, KEV membership and EPSS. Every CVE with its own record — timeline from publication to active exploitation.
In KEV catalog1,682
New KEV · 24H0
Exploit Today ≥ 701,626
Distribution · last window
- Critical2,319
- High9,968
- Medium4,903
- Low460
Window
Severity
Flags
CVECVSSEPSSKEVRExploitTitleMod.
CVE-2024-43859—14.5%
——4——CVE-2025-52818—14.5%
——4——CVE-2025-57203—14.5%
——4——CVE-2026-29092—14.5%
——4——CVE-2026-501688.2 HIG14.5%
——4Angular is a development platform for building mobile and desktop web applications using TypeScript/JavaScript and other languages. Prior to 22.0.0-rc.2, 21.2.15, 20.3.22, and 19.2.23, an issue in the @angular/platform-server package allows remote attackers to bypass host allowlist constraints and direct server-side outgoing requests to arbitrary external endpoints. This occurs due to a parser differential between the strict WHATWG URL parser used for allowlist validation and the lenient Domino URL parser used to initialize the server emulated DOM. When a server-side request contains a malformed URL with a double port structure (e.g., http://evil.com:80:80/path), Node's strict URL.canParse(url) logic returns false and skips host check validation entirely. However, the same malformed URL is later accepted and parsed leniently by Domino's internal parser, which resolves the origin to http://evil.com:80. The Angular SSR HTTP request interceptor (relativeUrlsTransformerInterceptorFn) then resolves all relative backend HTTP requests against this adopted origin, executing the SSRF attack. This vulnerability is fixed in 22.0.0-rc.2, 21.2.15, 20.3.22, and 19.2.23.49dCVE-2024-7206—14.5%
——4——CVE-2025-24218—14.5%
——4——CVE-2026-353873.1 LOW14.5%
——4OpenSSH before 10.3 can use unintended ECDSA algorithms. Listing of any ECDSA algorithm in PubkeyAcceptedAlgorithms or HostbasedAcceptedAlgorithms is misinterpreted to mean all ECDSA algorithms.34dCVE-2023-31200—14.5%
——4——CVE-2026-115964.7 MED14.5%
——4In ScreenConnect™ versions prior to 26.2, input
validation within the Host Pass creation functionality could allow an
authenticated user with Host Pass creation privileges the ability to specify a
token expiration duration beyond the intended maximum when generating delegated
access tokens.9dCVE-2023-45170—14.5%
——4——CVE-2024-38588—14.5%
——4——CVE-2026-44742—14.5%
——4——CVE-2024-22316—14.5%
——4——CVE-2024-44216—14.5%
——4——CVE-2025-14372—14.5%
——4——CVE-2022-46282—14.5%
——4——CVE-2026-49440—14.5%
——4——CVE-2025-24096—14.5%
——4——CVE-2023-47722—14.5%
——4——CVE-2024-10476—14.5%
——4——CVE-2024-37533—14.5%
——4——CVE-2023-48762—14.5%
——4——CVE-2022-487027.8 HIG14.5%
——4In the Linux kernel, the following vulnerability has been resolved:
ALSA: emu10k1: Fix out of bounds access in snd_emu10k1_pcm_channel_alloc()
The voice allocator sometimes begins allocating from near the end of the
array and then wraps around, however snd_emu10k1_pcm_channel_alloc()
accesses the newly allocated voices as if it never wrapped around.
This results in out of bounds access if the first voice has a high enough
index so that first_voice + requested_voice_count > NUM_G (64).
The more voices are requested, the more likely it is for this to occur.
This was initially discovered using PipeWire, however it can be reproduced
by calling aplay multiple times with 16 channels:
aplay -r 48000 -D plughw:CARD=Live,DEV=3 -c 16 /dev/zero
UBSAN: array-index-out-of-bounds in sound/pci/emu10k1/emupcm.c:127:40
index 65 is out of range for type 'snd_emu10k1_voice [64]'
CPU: 1 PID: 31977 Comm: aplay Tainted: G W IOE 6.0.0-rc2-emu10k1+ #7
Hardware name: ASUSTEK COMPUTER INC P5W DH Deluxe/P5W DH Deluxe, BIOS 3002 07/22/2010
Call Trace:
<TASK>
dump_stack_lvl+0x49/0x63
dump_stack+0x10/0x16
ubsan_epilogue+0x9/0x3f
__ubsan_handle_out_of_bounds.cold+0x44/0x49
snd_emu10k1_playback_hw_params+0x3bc/0x420 [snd_emu10k1]
snd_pcm_hw_params+0x29f/0x600 [snd_pcm]
snd_pcm_common_ioctl+0x188/0x1410 [snd_pcm]
? exit_to_user_mode_prepare+0x35/0x170
? do_syscall_64+0x69/0x90
? syscall_exit_to_user_mode+0x26/0x50
? do_syscall_64+0x69/0x90
? exit_to_user_mode_prepare+0x35/0x170
snd_pcm_ioctl+0x27/0x40 [snd_pcm]
__x64_sys_ioctl+0x95/0xd0
do_syscall_64+0x5c/0x90
? do_syscall_64+0x69/0x90
? do_syscall_64+0x69/0x90
entry_SYSCALL_64_after_hwframe+0x63/0xcd23dCVE-2025-1058—14.5%
——4——CVE-2025-24584—14.5%
——4——CVE-2026-33674—14.5%
——4——CVE-2026-44169—14.5%
——4——CVE-2026-0635—14.5%
——4——CVE-2025-12117—14.5%
——4——CVE-2025-40761—14.5%
——4——CVE-2026-23970—14.5%
——4——CVE-2024-35183—14.5%
——4——CVE-2024-44141—14.5%
——4——CVE-2024-267347.0 HIG14.5%
——4In the Linux kernel, the following vulnerability has been resolved:
devlink: fix possible use-after-free and memory leaks in devlink_init()
The pernet operations structure for the subsystem must be registered
before registering the generic netlink family.
Make an unregister in case of unsuccessful registration.23dCVE-2023-50436—14.5%
——4——CVE-2024-47965—14.5%
——4——CVE-2019-25504—14.5%
——4——CVE-2025-23991—14.5%
——4——CVE-2021-0135—14.5%
——4——