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ransomkrybit reclama a www.prohealth.sg · SG · Healthcareransomincransom reclama a ecfa.org · US · Professional Servicesransomqilin reclama a INTERTRUST AUSTRALIA PTY LTD · AU · Professional Servicesransomqilin reclama a Asset Flooring Group Australia · AU · Retail & E-Commerceransomkrybit reclama a www.dcpartner.co.za · ZA · Professional Servicesransomkrybit reclama a nigeria.asa-international.com · NG · Professional Servicesransomkrybit reclama a www.ville-rinxent.fr · FR · Government & Defenseransomkrybit reclama a countrymotors.com.mx · MX · Retail & E-Commerceransomsilentransomgroup reclama a Moses & Singer · US · Professional Servicesransomkrybit reclama a www.buzztrading104.co.za · ZA · Financial Servicesransomqilin reclama a Wire Products · US · Manufacturingransomcrpxo reclama a Encore Enterprises, Inc. · US · Otherransomthegentlemen reclama a Philippine Savings Bank · PH · Financial Servicesransomplay reclama a The Butcher Brothers · US · Retail & E-Commerceransomkrybit reclama a www.prohealth.sg · SG · Healthcareransomincransom reclama a ecfa.org · US · Professional Servicesransomqilin reclama a INTERTRUST AUSTRALIA PTY LTD · AU · Professional Servicesransomqilin reclama a Asset Flooring Group Australia · AU · Retail & E-Commerceransomkrybit reclama a www.dcpartner.co.za · ZA · Professional Servicesransomkrybit reclama a nigeria.asa-international.com · NG · Professional Servicesransomkrybit reclama a www.ville-rinxent.fr · FR · Government & Defenseransomkrybit reclama a countrymotors.com.mx · MX · Retail & E-Commerceransomsilentransomgroup reclama a Moses & Singer · US · Professional Servicesransomkrybit reclama a www.buzztrading104.co.za · ZA · Financial Servicesransomqilin reclama a Wire Products · US · Manufacturingransomcrpxo reclama a Encore Enterprises, Inc. · US · Otherransomthegentlemen reclama a Philippine Savings Bank · PH · Financial Servicesransomplay reclama a The Butcher Brothers · US · Retail & E-Commerce
CVE Watch354,882 in full archive

Vulnerabilities exploitable today

354,882in 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

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    2,556
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    9,177
  • Medium
    7,435
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Vulnerabilities332,601–332,640 · 354,882
CVECVSSEPSSKEVRExploitTitleMod.
CVE-2024-30149
6.2%
2
CVE-2021-1924
6.2%
2
CVE-2025-59539
6.2%
2
CVE-2024-11468
6.2%
2
CVE-2025-36172
6.2%
2
CVE-2024-28881
6.2%
2
CVE-2026-38948
6.2%
2
CVE-2026-3787
6.2%
2
CVE-2024-37354
6.2%
2
CVE-2025-43079
6.2%
2
CVE-2025-36352
6.2%
2
CVE-2025-20076
6.2%
2
CVE-2024-35998
6.2%
2
CVE-2022-34881
6.2%
2
CVE-2026-139453.1 LOW
6.2%
2Insufficient policy enforcement in Extensions in Google Chrome on Linux prior to 150.0.7871.47 allowed an attacker who convinced a user to install a malicious extension to perform UI spoofing via a crafted Chrome Extension. (Chromium security severity: Medium)31d
CVE-2025-58205
6.2%
2
CVE-2026-45448
6.2%
2
CVE-2023-2438
6.2%
2
CVE-2022-34403
6.2%
2
CVE-2026-647409.3 CRI
6.2%
2A parsing issue in the handling of directory paths was addressed with improved path validation. This issue is fixed in iOS 26.6 and iPadOS 26.6, macOS Sequoia 15.7.8, macOS Sonoma 14.8.8, macOS Tahoe 26.6, tvOS 26.6. A malicious app may be able to break out of its sandbox.5d
CVE-2026-413675.0 MED
6.2%
2OpenClaw versions 2026.2.14 through 2026.3.24 fail to consistently apply guild and channel policy gates to Discord button and component interactions. Attackers can trigger privileged component actions from blocked contexts by bypassing channel policy enforcement.9d
CVE-2026-660315.4 MED
6.2%
2Ekushey Project Manager CRM through version 5.0 contains a stored cross-site scripting vulnerability that allows authenticated client users to inject arbitrary HTML and JavaScript by entering malicious payloads into the Reply Ticket field. Attackers can craft and store malicious scripts that execute in the browser sessions of Staff or Administrator users who view the Support Ticket detail page.5d
CVE-2021-1890
6.2%
2
CVE-2025-12804
6.2%
2
CVE-2022-0835
6.2%
2
CVE-2025-6141
6.2%
2
CVE-2025-20688
6.2%
2
CVE-2024-47940
6.2%
2
CVE-2019-2089
6.2%
2
CVE-2024-369274.7 MED
6.2%
2In the Linux kernel, the following vulnerability has been resolved: ipv4: Fix uninit-value access in __ip_make_skb() KMSAN reported uninit-value access in __ip_make_skb() [1]. __ip_make_skb() tests HDRINCL to know if the skb has icmphdr. However, HDRINCL can cause a race condition. If calling setsockopt(2) with IP_HDRINCL changes HDRINCL while __ip_make_skb() is running, the function will access icmphdr in the skb even if it is not included. This causes the issue reported by KMSAN. Check FLOWI_FLAG_KNOWN_NH on fl4->flowi4_flags instead of testing HDRINCL on the socket. Also, fl4->fl4_icmp_type and fl4->fl4_icmp_code are not initialized. These are union in struct flowi4 and are implicitly initialized by flowi4_init_output(), but we should not rely on specific union layout. Initialize these explicitly in raw_sendmsg(). [1] BUG: KMSAN: uninit-value in __ip_make_skb+0x2b74/0x2d20 net/ipv4/ip_output.c:1481 __ip_make_skb+0x2b74/0x2d20 net/ipv4/ip_output.c:1481 ip_finish_skb include/net/ip.h:243 [inline] ip_push_pending_frames+0x4c/0x5c0 net/ipv4/ip_output.c:1508 raw_sendmsg+0x2381/0x2690 net/ipv4/raw.c:654 inet_sendmsg+0x27b/0x2a0 net/ipv4/af_inet.c:851 sock_sendmsg_nosec net/socket.c:730 [inline] __sock_sendmsg+0x274/0x3c0 net/socket.c:745 __sys_sendto+0x62c/0x7b0 net/socket.c:2191 __do_sys_sendto net/socket.c:2203 [inline] __se_sys_sendto net/socket.c:2199 [inline] __x64_sys_sendto+0x130/0x200 net/socket.c:2199 do_syscall_64+0xd8/0x1f0 arch/x86/entry/common.c:83 entry_SYSCALL_64_after_hwframe+0x6d/0x75 Uninit was created at: slab_post_alloc_hook mm/slub.c:3804 [inline] slab_alloc_node mm/slub.c:3845 [inline] kmem_cache_alloc_node+0x5f6/0xc50 mm/slub.c:3888 kmalloc_reserve+0x13c/0x4a0 net/core/skbuff.c:577 __alloc_skb+0x35a/0x7c0 net/core/skbuff.c:668 alloc_skb include/linux/skbuff.h:1318 [inline] __ip_append_data+0x49ab/0x68c0 net/ipv4/ip_output.c:1128 ip_append_data+0x1e7/0x260 net/ipv4/ip_output.c:1365 raw_sendmsg+0x22b1/0x2690 net/ipv4/raw.c:648 inet_sendmsg+0x27b/0x2a0 net/ipv4/af_inet.c:851 sock_sendmsg_nosec net/socket.c:730 [inline] __sock_sendmsg+0x274/0x3c0 net/socket.c:745 __sys_sendto+0x62c/0x7b0 net/socket.c:2191 __do_sys_sendto net/socket.c:2203 [inline] __se_sys_sendto net/socket.c:2199 [inline] __x64_sys_sendto+0x130/0x200 net/socket.c:2199 do_syscall_64+0xd8/0x1f0 arch/x86/entry/common.c:83 entry_SYSCALL_64_after_hwframe+0x6d/0x75 CPU: 1 PID: 15709 Comm: syz-executor.7 Not tainted 6.8.0-11567-gb3603fcb79b1 #25 Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS 1.16.3-1.fc39 04/01/201419d
CVE-2025-1826
6.2%
2
CVE-2023-31028
6.2%
2
CVE-2021-21559
6.2%
2
CVE-2025-52654
6.2%
2
CVE-2020-3626
6.2%
2
CVE-2025-400387.1 HIG
6.2%
2In the Linux kernel, the following vulnerability has been resolved: KVM: SVM: Skip fastpath emulation on VM-Exit if next RIP isn't valid Skip the WRMSR and HLT fastpaths in SVM's VM-Exit handler if the next RIP isn't valid, e.g. because KVM is running with nrips=false. SVM must decode and emulate to skip the instruction if the CPU doesn't provide the next RIP, and getting the instruction bytes to decode requires reading guest memory. Reading guest memory through the emulator can fault, i.e. can sleep, which is disallowed since the fastpath handlers run with IRQs disabled. BUG: sleeping function called from invalid context at ./include/linux/uaccess.h:106 in_atomic(): 1, irqs_disabled(): 1, non_block: 0, pid: 32611, name: qemu preempt_count: 1, expected: 0 INFO: lockdep is turned off. irq event stamp: 30580 hardirqs last enabled at (30579): [<ffffffffc08b2527>] vcpu_run+0x1787/0x1db0 [kvm] hardirqs last disabled at (30580): [<ffffffffb4f62e32>] __schedule+0x1e2/0xed0 softirqs last enabled at (30570): [<ffffffffb4247a64>] fpu_swap_kvm_fpstate+0x44/0x210 softirqs last disabled at (30568): [<ffffffffb4247a64>] fpu_swap_kvm_fpstate+0x44/0x210 CPU: 298 UID: 0 PID: 32611 Comm: qemu Tainted: G U 6.16.0-smp--e6c618b51cfe-sleep #782 NONE Tainted: [U]=USER Hardware name: Google Astoria-Turin/astoria, BIOS 0.20241223.2-0 01/17/2025 Call Trace: <TASK> dump_stack_lvl+0x7d/0xb0 __might_resched+0x271/0x290 __might_fault+0x28/0x80 kvm_vcpu_read_guest_page+0x8d/0xc0 [kvm] kvm_fetch_guest_virt+0x92/0xc0 [kvm] __do_insn_fetch_bytes+0xf3/0x1e0 [kvm] x86_decode_insn+0xd1/0x1010 [kvm] x86_emulate_instruction+0x105/0x810 [kvm] __svm_skip_emulated_instruction+0xc4/0x140 [kvm_amd] handle_fastpath_invd+0xc4/0x1a0 [kvm] vcpu_run+0x11a1/0x1db0 [kvm] kvm_arch_vcpu_ioctl_run+0x5cc/0x730 [kvm] kvm_vcpu_ioctl+0x578/0x6a0 [kvm] __se_sys_ioctl+0x6d/0xb0 do_syscall_64+0x8a/0x2c0 entry_SYSCALL_64_after_hwframe+0x4b/0x53 RIP: 0033:0x7f479d57a94b </TASK> Note, this is essentially a reapply of commit 5c30e8101e8d ("KVM: SVM: Skip WRMSR fastpath on VM-Exit if next RIP isn't valid"), but with different justification (KVM now grabs SRCU when skipping the instruction for other reasons).4d
CVE-2025-37992
6.2%
2
CVE-2025-384347.8 HIG
6.2%
2In the Linux kernel, the following vulnerability has been resolved: Revert "riscv: Define TASK_SIZE_MAX for __access_ok()" This reverts commit ad5643cf2f69 ("riscv: Define TASK_SIZE_MAX for __access_ok()"). This commit changes TASK_SIZE_MAX to be LONG_MAX to optimize access_ok(), because the previous TASK_SIZE_MAX (default to TASK_SIZE) requires some computation. The reasoning was that all user addresses are less than LONG_MAX, and all kernel addresses are greater than LONG_MAX. Therefore access_ok() can filter kernel addresses. Addresses between TASK_SIZE and LONG_MAX are not valid user addresses, but access_ok() let them pass. That was thought to be okay, because they are not valid addresses at hardware level. Unfortunately, one case is missed: get_user_pages_fast() happily accepts addresses between TASK_SIZE and LONG_MAX. futex(), for instance, uses get_user_pages_fast(). This causes the problem reported by Robert [1]. Therefore, revert this commit. TASK_SIZE_MAX is changed to the default: TASK_SIZE. This unfortunately reduces performance, because TASK_SIZE is more expensive to compute compared to LONG_MAX. But correctness first, we can think about optimization later, if required.4d
CVE-2019-20574
6.2%
2
CVE-2026-637524.3 MED
6.2%
2SurrealDB before 3.1.0 contains an authorization bypass vulnerability in the RELATE statement that allows authenticated users with CREATE permission to overwrite existing edge records without UPDATE permission. Attackers can issue a RELATE statement with a SET id clause pointing to an existing edge id, causing the storage layer to silently overwrite the target record instead of rejecting the operation.11d