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ransomclop reclama a ZEBRA.COM · US · Manufacturingransomshinyhunters reclama a Metabase · US · Technologyransomshinyhunters reclama a Sharecare, Inc. · US · Healthcareransomthegentlemen reclama a IPS · IT · Not Foundransomshinyhunters reclama a Carhartt, Inc. · US · Retail & E-Commerceransomthegentlemen reclama a Gfeller Treuhand und Verwaltungs · CH · Professional Servicesransomshinyhunters reclama a Cook Medical LLC · US · Healthcareransomthegentlemen reclama a Gravity Coffee · US · Retail & E-Commerceransomshinyhunters reclama a Baxter International, Inc. · US · Healthcareransomthegentlemen reclama a Ollies Place Kidswear · AU · Retail & E-Commerceransomthegentlemen reclama a The Coffee Bean · MY · Retail & E-Commerceransomthegentlemen reclama a KFC Kosova · Hospitalityransomthegentlemen reclama a First Coast Heart Vascular Center · US · Healthcareransomthegentlemen reclama a Cityside Homes · GB · Not Foundransomclop reclama a ZEBRA.COM · US · Manufacturingransomshinyhunters reclama a Metabase · US · Technologyransomshinyhunters reclama a Sharecare, Inc. · US · Healthcareransomthegentlemen reclama a IPS · IT · Not Foundransomshinyhunters reclama a Carhartt, Inc. · US · Retail & E-Commerceransomthegentlemen reclama a Gfeller Treuhand und Verwaltungs · CH · Professional Servicesransomshinyhunters reclama a Cook Medical LLC · US · Healthcareransomthegentlemen reclama a Gravity Coffee · US · Retail & E-Commerceransomshinyhunters reclama a Baxter International, Inc. · US · Healthcareransomthegentlemen reclama a Ollies Place Kidswear · AU · Retail & E-Commerceransomthegentlemen reclama a The Coffee Bean · MY · Retail & E-Commerceransomthegentlemen reclama a KFC Kosova · Hospitalityransomthegentlemen reclama a First Coast Heart Vascular Center · US · Healthcareransomthegentlemen reclama a Cityside Homes · GB · Not Found
CVE Watch360,624 in full archive

Vulnerabilities exploitable today

360,624in current view

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

In KEV catalog1,665
New KEV · 24H0
Exploit Today ≥ 701,608

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Vulnerabilities360,441–360,480 · 360,624
CVECVSSEPSSKEVRExploitTitleMod.
CVE-2025-66331
0.0%
0
CVE-2021-47991
0Rejected reason: This CVE ID has been rejected.4d
CVE-2023-20834
0.0%
0
CVE-2026-32835
0Rejected reason: This CVE ID has been rejected or withdrawn by its CVE Numbering Authority.10d
CVE-2026-20415
0.0%
0
CVE-2023-7355
0Rejected reason: Erroneously reserved under wrong year by automation defect; never assigned.9d
CVE-2026-51245
0Rejected reason: DO NOT USE THIS CVE RECORD. ConsultIDs: none. Reason: This record was withdrawn by its CNA. Further investigation showed that it was not a security issue. Notes: none.15d
CVE-2023-7354
0Rejected reason: Erroneously reserved under wrong year by automation defect; never assigned.9d
CVE-2026-20438
0.0%
0
CVE-2026-58125
0Rejected reason: This CVE ID has been rejected or withdrawn by its CVE Numbering Authority.37d
CVE-2026-58407
0Rejected reason: Please submit CVE requests for each vulnerability.33d
CVE-2026-61841
0Rejected reason: ** REJECT ** DO NOT USE THIS CANDIDATE NUMBER. ConsultIDs: CVE-2026-61449. Reason: This candidate is a duplicate of CVE-2026-61449. Notes: All CVE users should reference CVE-2026-61449 instead of this candidate.31d
CVE-2026-00947.8 HIG
0.0%
0In getApplicationLabel of KeyChainActivity.java, there is a possible way to trick the user into approving access to certificates due to misleading or insufficient UI. This could lead to local escalation of privilege with no additional execution privileges needed. User interaction is not needed for exploitation.24d
CVE-2026-68574
0Rejected reason: Reserved via standalone CLI outside the OSIM flaw workflow; releasing so the CVE ID can be properly reserved and linked through OSIM when the flaw is worked.15d
CVE-2026-0158
0.0%
0
CVE-2026-61692
0Rejected reason: ** REJECT ** DO NOT USE THIS CANDIDATE NUMBER. ConsultIDs: CVE-2026-61454. Reason: This candidate is a duplicate of CVE-2026-61454. Notes: All CVE users should reference CVE-2026-61454 instead of this candidate.33d
CVE-2026-51237
0Rejected reason: DO NOT USE THIS CVE RECORD. ConsultIDs: none. Reason: This record was withdrawn by its CNA. Further investigation showed that it was not a security issue. Notes: none.15d
CVE-2026-24508
0.0%
0
CVE-2023-54383
0Rejected reason: Erroneously reserved under wrong year by automation defect; never assigned.10d
CVE-2026-62174
0Rejected reason: ** REJECT ** DO NOT USE THIS CANDIDATE NUMBER. ConsultIDs: CVE-2026-61435. Reason: This candidate is a duplicate of CVE-2026-61435. Notes: All CVE users should reference CVE-2026-61435 instead of this candidate.31d
CVE-2026-12374
0.0%
0Improper certificate validation and a time-of-check time-of-use (TOCTOU) race condition in the PrivilegedHelperTool XPC service in Cato Client before v.5.13.1 on macOS allows a local authenticated attacker to escalate privileges to root via a self-signed certificate that bypasses the XPC caller verification and a symlink swap during package installation.44d
CVE-2026-158115.8 MED
0.0%
0A vulnerability was found in kronosnet's (version <=1.34) cryptographic configuration management. The framework does not correctly zero-out or wipe sensitive memory segments after executing changes to its cryptographic configuration. This omission leaves raw encryption keys resident in memory after the associated structures are freed. A local attacker capable of leveraging memory disclosure techniques could exploit this flaw to retrieve the active encryption key, allowing them to decrypt cluster network communications or inject malicious packets to cause severe high-availability cluster instability.23d
CVE-2026-68948
0Rejected reason: ** REJECT ** DO NOT USE THIS CANDIDATE NUMBER. ConsultIDs: CVE-2026-67318. Reason: This candidate is a duplicate of CVE-2026-67318. Notes: All CVE users should reference CVE-2026-67318 instead of this candidate.9d
CVE-2021-47989
0Rejected reason: This CVE ID has been rejected.4d
CVE-2021-47990
0Rejected reason: This CVE ID has been rejected.4d
CVE-2020-37264
0Rejected reason: This CVE ID has been rejected.4d
CVE-2026-51230
0Rejected reason: DO NOT USE THIS CVE RECORD. ConsultIDs: none. Reason: This record was withdrawn by its CNA. Further investigation showed that it was not a security issue. Notes: none.15d
CVE-2026-51286
0Rejected reason: DO NOT USE THIS CVE RECORD. ConsultIDs: none. Reason: This record was withdrawn by its CNA. Further investigation showed that it was not a security issue. Notes: none.15d
CVE-2026-51285
0Rejected reason: DO NOT USE THIS CVE RECORD. ConsultIDs: none. Reason: This record was withdrawn by its CNA. Further investigation showed that it was not a security issue. Notes: none.15d
CVE-2026-50238
0Rejected reason: Red Hat Product Security has concluded that this CVE is not required. The reported issue has been classified as a regular bug and will be addressed through the standard bug-fixing process.43d
CVE-2026-74473
In the Linux kernel, the following vulnerability has been resolved: vxlan: use pskb_network_may_pull() in route_shortcircuit() route_shortcircuit() currently calls pskb_may_pull(skb, sizeof(struct iphdr)) (or ipv6hdr), which checks if bytes are available starting from skb->data. However, in vxlan_xmit(), skb->data points to the MAC header, so skb_network_offset(skb) is ETH_HLEN (14 bytes). Using pskb_may_pull(skb, 20) only checks 20 bytes from skb->data (which is 14 bytes MAC header + 6 bytes of IP header), leaving the rest of the IP header potentially un-pulled in non-linear frags. Subsequent dereferences of ip_hdr(skb)->daddr can read beyond the pulled linear buffer length. Fix this by using pskb_network_may_pull(), which adds skb_network_offset(skb) to the length check to ensure the full network header is present in the linear buffer.5h
CVE-2026-74481
In the Linux kernel, the following vulnerability has been resolved: mm/page_reporting: use system_freezable_wq to fix UAF during suspend During PM freeze (e.g. S3 suspend or S4 hibernation), device drivers like virtio_balloon reset their underlying virtio devices and delete their virtqueues via vdev->config->del_vqs(). However, page reporting work (page_reporting_process) was scheduled on the global system_wq. Because system_wq lacks the WQ_FREEZABLE flag, the PM freezer skips it, leaving page_reporting_process active during suspend. If pages are freed into the buddy allocator while suspending (for example, when core MM invokes the balloon shrinker during S4 hibernation image saving), page reporting triggers virtballoon_free_page_report() on deleted virtqueues, resulting in a Use-After-Free / General Protection Fault: [ 196.795226] general protection fault, probably for non-canonical address 0xaa1436fe70dae6df: 0000 [#1] SMP NOPTI [ 196.825967] Workqueue: events page_reporting_process [ 196.831038] RIP: 0010:virtqueue_add_split+0x233/0x4c0 [virtio_ring] [ 196.927073] virtballoon_free_page_report+0x3a/0xe0 [virtio_balloon] [ 196.946943] page_reporting_process+0x370/0x4f0 Fix this by switching page reporting work to system_freezable_wq. This ensures that the PM freezer pauses page_reporting_process before device drivers destroy their reporting virtqueues. Because the reporting worker is frozen, memory reclamation/freeing (e.g. via shrinker execution) can safely return pages to MM during freeze without triggering unfrozen reporting work on deleted virtqueues. This aligns with the driver's existing design. The comment in virtballoon_freeze() states: /* * The workqueue is already frozen by the PM core before this * function is called. */ Testing: I have verified these fixes using Google’s virtualization infrastructure by running continuous suspend/resume iterations (40+ cycles) while churning memory using stress-ng (`stress-ng --vm 4 --vm-bytes 60% --timeout 1`) to constantly create free pages for the buddy allocator. We also set the `page_reporting_order` parameter to 0 to make the page reporting worker highly sensitive, forcing it to pick up any 4K free pages. This confirmed that the UAF crashes are no longer reproducible.5h
CVE-2026-198973.7 LOW
A vulnerability has been found in mangroup dtale up to 3.22.0. This issue affects the function Login of the file dtale/auth.py of the component Login Endpoint. Such manipulation leads to improper restriction of excessive authentication attempts. The attack can be executed remotely. This attack is characterized by high complexity. The exploitability is assessed as difficult. The exploit has been disclosed to the public and may be used. The project was informed of the problem early through an issue report but has not responded yet.2h
CVE-2026-198983.7 LOW
A vulnerability was found in VictoriaMetrics up to 1.146.0. Impacted is the function requestHandler of the file app/vmauth/main.go of the component VMAuth Authentication Endpoint. Performing a manipulation results in improper restriction of excessive authentication attempts. The attack is possible to be carried out remotely. The complexity of an attack is rather high. The exploitability is considered difficult. The exploit has been made public and could be used. Upgrading to version 1.147.0 is recommended to address this issue. The patch is named 119ba0fb5be8024d50c5ba946599b2e69e8803ea. Upgrading the affected component is recommended.2h
CVE-2026-73193
DBI versions before 1.652 for Perl allow a heap out-of-bounds write on 32-bit perl via an integer wraparound in the output buffer size computed by preparse. preparse reserves its output buffer with `newSV(strlen(statement) * 7 + 16)`, budgeting seven output bytes per input byte for the longest ':p99999' expansion. The product is computed in STRLEN, which is 32 bits wide on a 32-bit perl build, so a statement of 613,566,757 bytes multiplies to 4,294,967,299, wraps modulo 2^32 to 3, and reserves 19 bytes. The parser then copies the statement out through a raw pointer with no capacity check, writing the whole 585 MB input past the end of the allocation. The 99,999 placeholder limit does not bound this path, which is reached by ordinary non-placeholder content. Any caller that passes an untrusted statement of that length to preparse on a 32-bit perl gets a heap out-of-bounds write of attacker controlled bytes. Builds with a 64-bit STRLEN are not affected, since the wrap there needs a statement of about 2.3 exabytes.5h
CVE-2026-74474
In the Linux kernel, the following vulnerability has been resolved: vxlan: use pskb_network_may_pull() for transmit path header pulls In vxlan_xmit(), arp_reduce(), and vxlan_mdb_entry_skb_get(), pskb_may_pull() was being called to verify the availability of network layer headers (ARP, IPv6/ND, IP/IPv6 MDB keys). However, during transmit skb->data points to the MAC header, so skb_network_offset(skb) is ETH_HLEN (14 bytes). Using pskb_may_pull(skb, len) only checks len bytes from skb->data rather than skb_network_offset(skb) + len, which can leave part of the network header in non-linear frags. Replace these remaining pskb_may_pull() calls with pskb_network_may_pull() to properly account for the MAC header offset.5h
CVE-2026-198997.3 HIG
A vulnerability was determined in SourceCodester Class and Exam Timetabling System 1.0. The affected element is an unknown function of the file /edit_teacher.php. Executing a manipulation of the argument ID can lead to sql injection. The attack may be performed from remote. The exploit has been publicly disclosed and may be utilized.1h
CVE-2026-74482
In the Linux kernel, the following vulnerability has been resolved: mm/huge_memory: unlock i_mmap_rwsem before releasing after-split folios __folio_split() keeps dereferencing the mapping after the split: shmem_uncharge(mapping->host) and remap_page() while the folios are still frozen/locked, and i_mmap_unlock_read(mapping) at the very end, after the after-split folios have been unlocked and freed. Nothing holds an inode reference across that. The split relies on @folio -- which the beyond-EOF drop loop never removes, as it starts at folio_next(folio) -- staying locked and in the page cache to hold off eviction. But the unlock loop unlocks @folio before i_mmap_unlock_read() runs. If the caller's @lock_at is a tail beyond EOF, as memory_failure() passes when splitting a poisoned tail of a shmem THP that reaches past i_size during truncation, it too is gone from the page cache; so once @folio is unlocked no locked, in-cache folio pins the inode, and a concurrent final iput() can evict and RCU-free it before i_mmap_unlock_read() touches i_mmap_rwsem: BUG: KASAN: slab-use-after-free in __up_read+0x634/0x790 i_mmap_unlock_read include/linux/fs.h:537 [inline] __folio_split+0x732/0x1640 mm/huge_memory.c:4100 try_to_split_thp_page+0xab/0x390 mm/memory-failure.c:1675 memory_failure+0x1394/0x26e0 mm/memory-failure.c:2470 Freed by task 4601: shmem_free_in_core_inode+0x54/0xb0 mm/shmem.c:5177 evict+0x57f/0xac0 fs/inode.c:870 Do every mapping dereference while @folio still pins the inode: drop i_mmap_rwsem right after remap_page(), before the loop that unlocks and frees the after-split folios, and clear @mapping so the exit path does not unlock it again. shmem_uncharge() and remap_page() already run before that point, so after this nothing past the unlock loop touches the inode or the mapping. This is now a rule the split depends on, alongside keeping @folio frozen until the page cache is updated: no inode or mapping dereference once the after-split folios start being unlocked.5h
CVE-2026-199008.1 HIG
A vulnerability was identified in LB-LINK X-PRO 1.0.22-20231206. The impacted element is an unknown function of the file /etc/shadow. The manipulation leads to hard-coded credentials. It is possible to initiate the attack remotely. A high degree of complexity is needed for the attack. The exploitability is regarded as difficult. The exploit is publicly available and might be used. The vendor was contacted early about this disclosure but did not respond in any way.1h
CVE-2026-74547
In the Linux kernel, the following vulnerability has been resolved: hwmon: (adt7470) Fix busy-loop and I2C flooding in update thread When userspace configures 'auto_update_interval' to 0 via sysfs, the background kthread executes schedule_timeout_interruptible(0), which returns immediately. If 'num_temp_sensors' is concurrently or previously set to 0, the msleep_interruptible() delay inside adt7470_read_temperatures() also becomes 0. This combination forces the background thread into a tight, unbounded busy-loop, hogging the CPU and flooding the I2C bus with a continuous stream of transactions. Fix this vulnerability by raising the lower limit of the clamp_val in auto_update_interval_store() from 0 to 500 milliseconds. This guarantees a reasonable minimum sleep window between sensor updates, protecting the system from intentional or accidental I2C bus denial of service.5h