PULSE
LIVE20signals / 24h
FEED
ransomplay reclama a MIE Solutions · GB · Professional Servicesransomplay reclama a Rilpa Enterprises · Not Foundransomplay reclama a Marconi Industrial Services · IT · Manufacturingransomqilin reclama a Synergy Interactive · US · Technologyransomqilin reclama a Energetic Development Corp · TW · Energy & Utilitiesransomqilin reclama a Panda Logistics Taichung Branch · TW · Transportationransomqilin reclama a East Field Corporation · JP · Agriculture and Food Productionransomqilin reclama a Chun Tai Sing Chemical Industry · HK · Manufacturingransomqilin reclama a pm-energy Die Solarexperten · DE · Energy & Utilitiesransomunsafe reclama a Constellation HomeBuilder Systems · US · Manufacturingransomqilin reclama a Harplast SRL · RO · Manufacturingransomqilin reclama a Price Shoes · MX · Retail & E-Commerceransomqilin reclama a Naval Interior Team · FI · Government & Defenseransomqilin reclama a Phithan Phanich · TH · Manufacturingransomplay reclama a MIE Solutions · GB · Professional Servicesransomplay reclama a Rilpa Enterprises · Not Foundransomplay reclama a Marconi Industrial Services · IT · Manufacturingransomqilin reclama a Synergy Interactive · US · Technologyransomqilin reclama a Energetic Development Corp · TW · Energy & Utilitiesransomqilin reclama a Panda Logistics Taichung Branch · TW · Transportationransomqilin reclama a East Field Corporation · JP · Agriculture and Food Productionransomqilin reclama a Chun Tai Sing Chemical Industry · HK · Manufacturingransomqilin reclama a pm-energy Die Solarexperten · DE · Energy & Utilitiesransomunsafe reclama a Constellation HomeBuilder Systems · US · Manufacturingransomqilin reclama a Harplast SRL · RO · Manufacturingransomqilin reclama a Price Shoes · MX · Retail & E-Commerceransomqilin reclama a Naval Interior Team · FI · Government & Defenseransomqilin reclama a Phithan Phanich · TH · Manufacturing
CVE Watch356,750 in full archive

Vulnerabilities exploitable today

356,750in current view

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

In KEV catalog1,662
New KEV · 24H0
Exploit Today ≥ 701,605

Distribution · last window

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    2,533
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    6,698
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Vulnerabilities325,121–325,160 · 356,750
CVECVSSEPSSKEVRExploitTitleMod.
CVE-2025-37817
8.8%
3
CVE-2026-1608
8.8%
3
CVE-2026-51208.1 HIG
8.8%
3A Race Condition vulnerability affecting BIOVIA Workbook from Release 2021 through Release 2026 could allow a user to access unauthorized data from another user.38d
CVE-2026-37593
8.8%
3
CVE-2022-497897.0 HIG
8.8%
3In the Linux kernel, the following vulnerability has been resolved: scsi: zfcp: Fix double free of FSF request when qdio send fails We used to use the wrong type of integer in 'zfcp_fsf_req_send()' to cache the FSF request ID when sending a new FSF request. This is used in case the sending fails and we need to remove the request from our internal hash table again (so we don't keep an invalid reference and use it when we free the request again). In 'zfcp_fsf_req_send()' we used to cache the ID as 'int' (signed and 32 bit wide), but the rest of the zfcp code (and the firmware specification) handles the ID as 'unsigned long'/'u64' (unsigned and 64 bit wide [s390x ELF ABI]). For one this has the obvious problem that when the ID grows past 32 bit (this can happen reasonably fast) it is truncated to 32 bit when storing it in the cache variable and so doesn't match the original ID anymore. The second less obvious problem is that even when the original ID has not yet grown past 32 bit, as soon as the 32nd bit is set in the original ID (0x80000000 = 2'147'483'648) we will have a mismatch when we cast it back to 'unsigned long'. As the cached variable is of a signed type, the compiler will choose a sign-extending instruction to load the 32 bit variable into a 64 bit register (e.g.: 'lgf %r11,188(%r15)'). So once we pass the cached variable into 'zfcp_reqlist_find_rm()' to remove the request again all the leading zeros will be flipped to ones to extend the sign and won't match the original ID anymore (this has been observed in practice). If we can't successfully remove the request from the hash table again after 'zfcp_qdio_send()' fails (this happens regularly when zfcp cannot notify the adapter about new work because the adapter is already gone during e.g. a ChpID toggle) we will end up with a double free. We unconditionally free the request in the calling function when 'zfcp_fsf_req_send()' fails, but because the request is still in the hash table we end up with a stale memory reference, and once the zfcp adapter is either reset during recovery or shutdown we end up freeing the same memory twice. The resulting stack traces vary depending on the kernel and have no direct correlation to the place where the bug occurs. Here are three examples that have been seen in practice: list_del corruption. next->prev should be 00000001b9d13800, but was 00000000dead4ead. (next=00000001bd131a00) ------------[ cut here ]------------ kernel BUG at lib/list_debug.c:62! monitor event: 0040 ilc:2 [#1] PREEMPT SMP Modules linked in: ... CPU: 9 PID: 1617 Comm: zfcperp0.0.1740 Kdump: loaded Hardware name: ... Krnl PSW : 0704d00180000000 00000003cbeea1f8 (__list_del_entry_valid+0x98/0x140) R:0 T:1 IO:1 EX:1 Key:0 M:1 W:0 P:0 AS:3 CC:1 PM:0 RI:0 EA:3 Krnl GPRS: 00000000916d12f1 0000000080000000 000000000000006d 00000003cb665cd6 0000000000000001 0000000000000000 0000000000000000 00000000d28d21e8 00000000d3844000 00000380099efd28 00000001bd131a00 00000001b9d13800 00000000d3290100 0000000000000000 00000003cbeea1f4 00000380099efc70 Krnl Code: 00000003cbeea1e8: c020004f68a7 larl %r2,00000003cc8d7336 00000003cbeea1ee: c0e50027fd65 brasl %r14,00000003cc3e9cb8 #00000003cbeea1f4: af000000 mc 0,0 >00000003cbeea1f8: c02000920440 larl %r2,00000003cd12aa78 00000003cbeea1fe: c0e500289c25 brasl %r14,00000003cc3fda48 00000003cbeea204: b9040043 lgr %r4,%r3 00000003cbeea208: b9040051 lgr %r5,%r1 00000003cbeea20c: b9040032 lgr %r3,%r2 Call Trace: [<00000003cbeea1f8>] __list_del_entry_valid+0x98/0x140 ([<00000003cbeea1f4>] __list_del_entry_valid+0x94/0x140) [<000003ff7ff502fe>] zfcp_fsf_req_dismiss_all+0xde/0x150 [zfcp] [<000003ff7ff49cd0>] zfcp_erp_strategy_do_action+0x160/0x280 [zfcp] ---truncated---5d
CVE-2020-3630
8.8%
3
CVE-2023-30653
8.8%
3
CVE-2025-10998
8.8%
3
CVE-2023-21508
8.8%
3
CVE-2024-6287
8.8%
3
CVE-2025-1950
8.8%
3
CVE-2019-2295
8.8%
3
CVE-2026-32039
8.8%
3
CVE-2023-30669
8.8%
3
CVE-2024-25939
8.8%
3
CVE-2020-36891
8.8%
3
CVE-2025-220017.8 HIG
8.8%
3In the Linux kernel, the following vulnerability has been resolved: accel/qaic: Fix integer overflow in qaic_validate_req() These are u64 variables that come from the user via qaic_attach_slice_bo_ioctl(). Use check_add_overflow() to ensure that the math doesn't have an integer wrapping bug.11d
CVE-2023-21499
8.8%
3
CVE-2026-37600
8.8%
3
CVE-2024-57905
8.8%
3
CVE-2025-575705.6 MED
8.8%
3Tenda F3 V12.01.01.48_multi and after is vulnerable to Buffer Overflow via the QosList parameter in goform/setQoS.36d
CVE-2026-1411
8.8%
3
CVE-2026-43534
8.8%
3
CVE-2019-10608
8.8%
3
CVE-2025-14103
8.8%
3
CVE-2023-22869
8.8%
3
CVE-2026-554794.3 MED
8.8%
3Snipe-IT is an IT asset/license management system. Prior to 8.6.2, the legacy single-seat license checkin flow authorizes the action with the checkout permission instead of the checkin permission, allowing a user who can assign licenses but not unassign them to directly access the old checkin endpoint and reclaim a license seat assigned to another user or asset. This issue is fixed in version 8.6.2.26d
CVE-2025-33226
8.8%
3
CVE-2024-41148
8.8%
3
CVE-2026-21632
8.8%
3
CVE-2025-10558
8.8%
3
CVE-2026-624834.3 MED
8.8%
3Vulnerability in the Oracle Project Contracts product of Oracle E-Business Suite (component: Internal Operations). Supported versions that are affected are 12.2.3-12.2.15. Easily exploitable vulnerability allows low privileged attacker with network access via HTTP to compromise Oracle Project Contracts. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Oracle Project Contracts accessible data. CVSS 3.1 Base Score 4.3 (Integrity impacts). CVSS Vector: (CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:L/A:N).9d
CVE-2024-579775.5 MED
8.8%
3In the Linux kernel, the following vulnerability has been resolved: memcg: fix soft lockup in the OOM process A soft lockup issue was found in the product with about 56,000 tasks were in the OOM cgroup, it was traversing them when the soft lockup was triggered. watchdog: BUG: soft lockup - CPU#2 stuck for 23s! [VM Thread:1503066] CPU: 2 PID: 1503066 Comm: VM Thread Kdump: loaded Tainted: G Hardware name: Huawei Cloud OpenStack Nova, BIOS RIP: 0010:console_unlock+0x343/0x540 RSP: 0000:ffffb751447db9a0 EFLAGS: 00000247 ORIG_RAX: ffffffffffffff13 RAX: 0000000000000001 RBX: 0000000000000000 RCX: 00000000ffffffff RDX: 0000000000000000 RSI: 0000000000000004 RDI: 0000000000000247 RBP: ffffffffafc71f90 R08: 0000000000000000 R09: 0000000000000040 R10: 0000000000000080 R11: 0000000000000000 R12: ffffffffafc74bd0 R13: ffffffffaf60a220 R14: 0000000000000247 R15: 0000000000000000 CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 CR2: 00007f2fe6ad91f0 CR3: 00000004b2076003 CR4: 0000000000360ee0 DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 DR3: 0000000000000000 DR6: 00000000fffe0ff0 DR7: 0000000000000400 Call Trace: vprintk_emit+0x193/0x280 printk+0x52/0x6e dump_task+0x114/0x130 mem_cgroup_scan_tasks+0x76/0x100 dump_header+0x1fe/0x210 oom_kill_process+0xd1/0x100 out_of_memory+0x125/0x570 mem_cgroup_out_of_memory+0xb5/0xd0 try_charge+0x720/0x770 mem_cgroup_try_charge+0x86/0x180 mem_cgroup_try_charge_delay+0x1c/0x40 do_anonymous_page+0xb5/0x390 handle_mm_fault+0xc4/0x1f0 This is because thousands of processes are in the OOM cgroup, it takes a long time to traverse all of them. As a result, this lead to soft lockup in the OOM process. To fix this issue, call 'cond_resched' in the 'mem_cgroup_scan_tasks' function per 1000 iterations. For global OOM, call 'touch_softlockup_watchdog' per 1000 iterations to avoid this issue.26d
CVE-2025-14985
8.8%
3
CVE-2023-40728
8.8%
3
CVE-2023-21501
8.8%
3
CVE-2021-47714
8.8%
3
CVE-2026-6063
8.8%
3
CVE-2025-62482
8.8%
3
CVE-2026-1611
8.8%
3