Vulnerabilities exploitable today
354,883in current view
Single score combining CVSS, KEV membership and EPSS. Every CVE with its own record — timeline from publication to active exploitation.
In KEV catalog1,656
New KEV · 24H0
Exploit Today ≥ 701,601
Distribution · last window
- Critical2,556
- High9,177
- Medium7,435
- Low692
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CVECVSSEPSSKEVRExploitTitleMod.
CVE-2025-67983—6.3%
——2——CVE-2025-7048—6.3%
——2——CVE-2025-12736—6.3%
——2——CVE-2026-27251—6.3%
——2——CVE-2023-47717—6.3%
——2——CVE-2020-37256—6.3%
——2——CVE-2026-27262—6.3%
——2——CVE-2025-36375—6.3%
——2——CVE-2025-396837.8 HIG6.3%
——2In the Linux kernel, the following vulnerability has been resolved:
tracing: Limit access to parser->buffer when trace_get_user failed
When the length of the string written to set_ftrace_filter exceeds
FTRACE_BUFF_MAX, the following KASAN alarm will be triggered:
BUG: KASAN: slab-out-of-bounds in strsep+0x18c/0x1b0
Read of size 1 at addr ffff0000d00bd5ba by task ash/165
CPU: 1 UID: 0 PID: 165 Comm: ash Not tainted 6.16.0-g6bcdbd62bd56-dirty
Hardware name: linux,dummy-virt (DT)
Call trace:
show_stack+0x34/0x50 (C)
dump_stack_lvl+0xa0/0x158
print_address_description.constprop.0+0x88/0x398
print_report+0xb0/0x280
kasan_report+0xa4/0xf0
__asan_report_load1_noabort+0x20/0x30
strsep+0x18c/0x1b0
ftrace_process_regex.isra.0+0x100/0x2d8
ftrace_regex_release+0x484/0x618
__fput+0x364/0xa58
____fput+0x28/0x40
task_work_run+0x154/0x278
do_notify_resume+0x1f0/0x220
el0_svc+0xec/0xf0
el0t_64_sync_handler+0xa0/0xe8
el0t_64_sync+0x1ac/0x1b0
The reason is that trace_get_user will fail when processing a string
longer than FTRACE_BUFF_MAX, but not set the end of parser->buffer to 0.
Then an OOB access will be triggered in ftrace_regex_release->
ftrace_process_regex->strsep->strpbrk. We can solve this problem by
limiting access to parser->buffer when trace_get_user failed.4dCVE-2025-385427.8 HIG6.3%
——2In the Linux kernel, the following vulnerability has been resolved:
net: appletalk: Fix device refcount leak in atrtr_create()
When updating an existing route entry in atrtr_create(), the old device
reference was not being released before assigning the new device,
leading to a device refcount leak. Fix this by calling dev_put() to
release the old device reference before holding the new one.4dCVE-2025-40685—6.3%
——2——CVE-2017-6894—6.3%
——2——CVE-2016-20048—6.3%
——2——CVE-2025-386777.8 HIG6.3%
——2In the Linux kernel, the following vulnerability has been resolved:
f2fs: fix to avoid out-of-boundary access in dnode page
As Jiaming Zhang reported:
<TASK>
__dump_stack lib/dump_stack.c:94 [inline]
dump_stack_lvl+0x1c1/0x2a0 lib/dump_stack.c:120
print_address_description mm/kasan/report.c:378 [inline]
print_report+0x17e/0x800 mm/kasan/report.c:480
kasan_report+0x147/0x180 mm/kasan/report.c:593
data_blkaddr fs/f2fs/f2fs.h:3053 [inline]
f2fs_data_blkaddr fs/f2fs/f2fs.h:3058 [inline]
f2fs_get_dnode_of_data+0x1a09/0x1c40 fs/f2fs/node.c:855
f2fs_reserve_block+0x53/0x310 fs/f2fs/data.c:1195
prepare_write_begin fs/f2fs/data.c:3395 [inline]
f2fs_write_begin+0xf39/0x2190 fs/f2fs/data.c:3594
generic_perform_write+0x2c7/0x910 mm/filemap.c:4112
f2fs_buffered_write_iter fs/f2fs/file.c:4988 [inline]
f2fs_file_write_iter+0x1ec8/0x2410 fs/f2fs/file.c:5216
new_sync_write fs/read_write.c:593 [inline]
vfs_write+0x546/0xa90 fs/read_write.c:686
ksys_write+0x149/0x250 fs/read_write.c:738
do_syscall_x64 arch/x86/entry/syscall_64.c:63 [inline]
do_syscall_64+0xf3/0x3d0 arch/x86/entry/syscall_64.c:94
entry_SYSCALL_64_after_hwframe+0x77/0x7f
The root cause is in the corrupted image, there is a dnode has the same
node id w/ its inode, so during f2fs_get_dnode_of_data(), it tries to
access block address in dnode at offset 934, however it parses the dnode
as inode node, so that get_dnode_addr() returns 360, then it tries to
access page address from 360 + 934 * 4 = 4096 w/ 4 bytes.
To fix this issue, let's add sanity check for node id of all direct nodes
during f2fs_get_dnode_of_data().4dCVE-2021-37036—6.3%
——2——CVE-2026-97994.6 MED6.3%
——2A flaw was found in org.keycloak.authorization. An authenticated user with a granted User-Managed Access (UMA) permission ticket for one resource can exploit this by using a specific permission request prefix to bypass per-resource access control. This allows the user to gain unauthorized access to all resources of that type within the same resource server, even if they do not have a ticket for those specific resources. This vulnerability requires the resource server to be configured in PERMISSIVE policy enforcement mode and affects typed resources with ownerManagedAccess enabled, where no explicit policy protects the resource type. The primary consequence is unauthorized information disclosure or modification of resources.32dCVE-2024-53736—6.3%
——2——CVE-2026-28829—6.3%
——2——CVE-2026-148623.7 LOW6.3%
——2The Support Genix WordPress plugin before 1.4.48 does not properly authorize access to support-ticket attachment downloads, allowing unauthenticated users who obtain the stored attachment file name to download other users' private ticket attachments.2dCVE-2025-13859—6.3%
——2——CVE-2025-23340—6.3%
——2——CVE-2023-6833—6.3%
——2——CVE-2026-64230—6.3%
——2In the Linux kernel, the following vulnerability has been resolved:
regulator: tps65219: fix irq_data.rdev not being assigned
Commit 64a6b577490c ("regulator: tps65219: Remove debugging helper
function") removed the tps65219_get_rdev_by_name() helper along with
the irq_data.rdev assignment that depended on it. This left
irq_data.rdev uninitialized for all IRQs, causing undefined behavior
when regulator_notifier_call_chain() is called from the IRQ handler:
Internal error: Oops: 0000000096000004
pc : regulator_notifier_call_chain
lr : tps65219_regulator_irq_handler
Call trace:
regulator_notifier_call_chain
tps65219_regulator_irq_handler
handle_nested_irq
regmap_irq_thread
irq_thread_fn
irq_thread
kthread
ret_from_fork
Instead of restoring a dedicated lookup array, restructure the probe
function to combine regulator registration with IRQ registration in
the same loop. This way the rdev returned by devm_regulator_register()
is naturally available for assigning to irq_data.rdev without any
auxiliary data structure.
Non-regulator IRQs (SENSOR, TIMEOUT) that don't correspond to any
registered regulator are registered with rdev=NULL, and the IRQ handler
is protected with a NULL check to avoid crashing.4dCVE-2024-21063—6.3%
——2——CVE-2024-53727—6.3%
——2——CVE-2024-53725—6.3%
——2——CVE-2024-53724—6.3%
——2——CVE-2024-53726—6.3%
——2——CVE-2022-20590—6.3%
——2——CVE-2024-13317—6.3%
——2——CVE-2026-40917—6.3%
——2——CVE-2025-41459—6.3%
——2——CVE-2024-28132—6.3%
——2——CVE-2025-59853—6.3%
——2——CVE-2023-31428—6.3%
——2——CVE-2026-632363.7 LOW6.3%
——2An improper access control vulnerability in
Koollab LMS allowed an
unauthenticated attacker to read another user's name, internal identifier,
scores, lesson status, lesson position, and cached lesson state via the SCORM
API endpoint.4dCVE-2023-39251—6.3%
——2——CVE-2022-49296—6.3%
——2——CVE-2025-59107—6.3%
——2——CVE-2026-43940—6.3%
——2——