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ransomqilin reclama a Crystal Pharmatech · US · Healthcareransomplay reclama a Signature Services · Professional Servicesransomplay reclama a GCATS Investments · US · Financial Servicesransomplay reclama a Platinum Group · SG · Manufacturingransomlynx reclama a www.jerryleigh.com · US · Otherransomlynx reclama a www.talbotdes.org · GB · Otherransomgammax reclama a King International LLC · US · Otherransomqilin reclama a AmSpec · US · Energy & Utilitiesransomqilin reclama a ALIZE (alize-sud.fr) · FR · Professional Servicesransomqilin reclama a Jakle & Alexander · US · Not Foundransomqilin reclama a Akuur Law Firm · TR · Professional Servicesransomqilin reclama a J&T Bank and Trust · US · Financial Servicesransombravox reclama a MITC AG · CH · Otherransomakira reclama a Basic Grain Products · Agriculture and Food Productionransomqilin reclama a Crystal Pharmatech · US · Healthcareransomplay reclama a Signature Services · Professional Servicesransomplay reclama a GCATS Investments · US · Financial Servicesransomplay reclama a Platinum Group · SG · Manufacturingransomlynx reclama a www.jerryleigh.com · US · Otherransomlynx reclama a www.talbotdes.org · GB · Otherransomgammax reclama a King International LLC · US · Otherransomqilin reclama a AmSpec · US · Energy & Utilitiesransomqilin reclama a ALIZE (alize-sud.fr) · FR · Professional Servicesransomqilin reclama a Jakle & Alexander · US · Not Foundransomqilin reclama a Akuur Law Firm · TR · Professional Servicesransomqilin reclama a J&T Bank and Trust · US · Financial Servicesransombravox reclama a MITC AG · CH · Otherransomakira reclama a Basic Grain Products · Agriculture and Food Production
CVE Watch356,393 in full archive

Vulnerabilities exploitable today

356,393in current view

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

In KEV catalog1,661
New KEV · 24H0
Exploit Today ≥ 701,603

Distribution · last window

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    2,794
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    11,183
  • Medium
    7,442
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Vulnerabilities329,321–329,360 · 356,393
CVECVSSEPSSKEVRExploitTitleMod.
CVE-2022-34404
7.4%
2
CVE-2026-64359
7.4%
2In the Linux kernel, the following vulnerability has been resolved: nilfs2: reject CLEAN_SEGMENTS ioctl with out-of-range segment numbers Syzbot reported a hung task in nilfs_transaction_begin() where multiple tasks performing chmod() on a nilfs2 mount blocked for over 143 seconds waiting to acquire ns_segctor_sem for read: INFO: task syz.0.17:5918 blocked for more than 143 seconds. Call Trace: schedule+0x164/0x360 rwsem_down_read_slowpath+0x6d9/0x940 down_read+0x99/0x2e0 nilfs_transaction_begin+0x364/0x710 fs/nilfs2/segment.c:221 nilfs_setattr+0x124/0x2c0 fs/nilfs2/inode.c:921 notify_change+0xc1a/0xf40 chmod_common+0x273/0x4a0 do_fchmodat+0x12d/0x230 The writer holding ns_segctor_sem was a concurrent NILFS_IOCTL_CLEAN_SEGMENTS caller, stuck inside printk while emitting per-element warnings from nilfs_sufile_updatev(): __nilfs_msg+0x373/0x450 fs/nilfs2/super.c:78 nilfs_sufile_updatev+0x21c/0x6d0 fs/nilfs2/sufile.c:186 nilfs_sufile_freev fs/nilfs2/sufile.h:93 [inline] nilfs_free_segments fs/nilfs2/segment.c:1140 [inline] nilfs_segctor_collect_blocks fs/nilfs2/segment.c:1261 [inline] nilfs_segctor_do_construct+0x1f55/0x76c0 nilfs_clean_segments+0x3bd/0xa50 nilfs_ioctl_clean_segments fs/nilfs2/ioctl.c:922 [inline] nilfs_ioctl+0x261f/0x2780 The root cause is that user-supplied segment numbers are not validated before nilfs_clean_segments() begins doing work; the range check on each segnum is performed deep inside the call chain by nilfs_sufile_updatev(), which emits a nilfs_warn() per invalid entry while still holding the segctor lock and the sufile mi_sem. Under load (repeated invocations across multiple mounts saturating the global printk path), the cumulative printk latency keeps ns_segctor_sem held long enough to trip the hung_task watchdog, blocking concurrent operations such as chmod() that need ns_segctor_sem for read. Fix by validating the contents of kbufs[4] in nilfs_clean_segments() immediately after acquiring ns_segctor_sem via nilfs_transaction_lock(). Holding ns_segctor_sem serializes the check against nilfs_ioctl_resize(), which can modify ns_nsegments, so the validation uses a consistent value. Out-of-range segment numbers are rejected with -EINVAL before any segment-cleaning work begins, so the bad entries never reach the per-element diagnostic path inside nilfs_sufile_updatev().13d
CVE-2024-33393
7.4%
2
CVE-2025-60471
7.4%
2
CVE-2025-60111
7.4%
2
CVE-2026-23046
7.4%
2
CVE-2026-3942
7.4%
2
CVE-2026-149065.3 MED
7.4%
2Pages with malicious titles could potentially allow saved PDF content to overwrite PDF files or bundled content within the Firefox for iOS application sandbox. This vulnerability was fixed in Firefox for iOS 152.4.23d
CVE-2026-40229
7.4%
2
CVE-2025-68709
7.4%
2
CVE-2026-39309
7.4%
2
CVE-2024-42085
7.4%
2
CVE-2026-12451
7.4%
2
CVE-2024-39289
7.4%
2
CVE-2025-59933
7.4%
2
CVE-2024-530807.8 HIG
7.4%
2In the Linux kernel, the following vulnerability has been resolved: drm/panthor: Lock XArray when getting entries for the VM Similar to commit cac075706f29 ("drm/panthor: Fix race when converting group handle to group object") we need to use the XArray's internal locking when retrieving a vm pointer from there. v2: Removed part of the patch that was trying to protect fetching the heap pointer from XArray, as that operation is protected by the @pool->lock.3d
CVE-2024-7818
7.4%
2
CVE-2020-36789
7.4%
2
CVE-2026-64225
7.4%
2In the Linux kernel, the following vulnerability has been resolved: octeontx2-af: CGX: add bounds check to cgx_speed_mbps index cgx_speed_mbps has 13 elements but RESP_LINKSTAT_SPEED can yield values 0-15. If it returns a value >= 13, this causes an out-of-bounds array access. Add a bounds check and default to speed 0 if the index is out of range.7d
CVE-2024-53713
7.4%
2
CVE-2022-49631
7.4%
2
CVE-2025-55251
7.4%
2
CVE-2026-34897
7.4%
2
CVE-2026-33885
7.4%
2
CVE-2024-58062
7.4%
2
CVE-2026-272987.8 HIG
7.4%
2Adobe Framemaker versions 2022.8 and earlier are affected by an Access of Resource Using Incompatible Type ('Type Confusion') vulnerability that could result in arbitrary code execution in the context of the current user. Exploitation of this issue requires user interaction in that a victim must open a malicious file.13d
CVE-2024-7816
7.4%
2
CVE-2022-29965
7.4%
2
CVE-2023-53121
7.4%
2
CVE-2026-57620
7.4%
2
CVE-2024-58057
7.4%
2
CVE-2024-7861
7.4%
2
CVE-2022-49629
7.4%
2
CVE-2022-49443
7.4%
2
CVE-2026-64332
7.4%
2In the Linux kernel, the following vulnerability has been resolved: USB: ulpi: fix memory leak on registration failure The allocated device name is never freed on early ULPI device registration failures. Fix this by initialising the device structure earlier and releasing the initial reference whenever registration fails.13d
CVE-2026-64347
7.4%
2In the Linux kernel, the following vulnerability has been resolved: usb: gadget: composite: fix dead empty check in the USB_DT_OTG handler The OTG branch of composite_setup() falls back to the first configuration when none is selected: if (cdev->config) config = cdev->config; else config = list_first_entry(&cdev->configs, struct usb_configuration, list); if (!config) goto done; ... memcpy(req->buf, config->descriptors[0], value); list_first_entry() never returns NULL. On an empty list it returns container_of() of the list head. So the "if (!config)" check is dead. When cdev->configs is empty, config points at the head inside struct usb_composite_dev. config->descriptors[0] reads whatever sits at that offset. The memcpy copies up to w_length bytes of it into the response buffer. cdev->configs can be empty in two cases. One is a teardown race on gadget unbind with a control transfer in flight. The other is a driver that sets is_otg before it adds a config. A reproducer that holds cdev->configs empty triggers a KASAN fault in this branch. Use list_first_entry_or_null() so the existing check does its job.13d
CVE-2026-64135
7.4%
2In the Linux kernel, the following vulnerability has been resolved: hwmon: (pmbus/adm1266) widen blackbox-info buffer to I2C_SMBUS_BLOCK_MAX adm1266_nvmem_read_blackbox() declares a 5-byte stack buffer and passes it to i2c_smbus_read_block_data() to retrieve the 4-byte BLACKBOX_INFO response. i2c_smbus_read_block_data() does not honour caller buffer sizes -- it memcpy()s data.block[0] bytes from the SMBus transaction (where data.block[0] is the length byte returned by the slave device, up to I2C_SMBUS_BLOCK_MAX = 32): memcpy(values, &data.block[1], data.block[0]); If the device returns any block length above 5, the call overflows the caller's 5-byte stack buffer before the post-call if (ret != 4) return -EIO; check has a chance to reject the response. Widen the local buffer to I2C_SMBUS_BLOCK_MAX so the helper has room for any well-formed SMBus block response, matching the convention used by the other i2c_smbus_read_block_data() callers in this driver.7d
CVE-2022-36829
7.4%
2
CVE-2026-64373
7.4%
2In the Linux kernel, the following vulnerability has been resolved: cpufreq: Fix hotplug-suspend race during reboot During system reboot, cpufreq_suspend() is called via the kernel_restart() -> device_shutdown() path. Unlike the normal system suspend path, the reboot path does not call freeze_processes(), so userspace processes and kernel threads remain active. This allows CPU hotplug operations to run concurrently with cpufreq_suspend(). The original code has no synchronization with CPU hotplug, leading to a race condition where governor_data can be freed by the hotplug path while cpufreq_suspend() is still accessing it, resulting in a null pointer dereference: Unable to handle kernel NULL pointer dereference Call Trace: do_kernel_fault+0x28/0x3c cpufreq_suspend+0xdc/0x160 device_shutdown+0x18/0x200 kernel_restart+0x40/0x80 arm64_sys_reboot+0x1b0/0x200 Fix this by adding cpus_read_lock()/cpus_read_unlock() to cpufreq_suspend() to block CPU hotplug operations while suspend is in progress. [ rjw: Changelog edits ]13d
CVE-2026-585206.1 MED
7.4%
2URL redirection to untrusted site ('open redirect') vulnerability in The Wikimedia Foundation Mediawiki - UrlShortener Extension allows Cross-Site Flashing. This issue affects Mediawiki - UrlShortener Extension: from * before 1.43.9, 1.44.6, 1.45.4.28d