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ransomakira reclama a Kruse Construction · Constructionransomakira reclama a University Sprinkler Systems · Business Servicesransombooba project reclama a Pelli Clarke Pelli Architects · US · Business Servicesransomdragonforce reclama a Koshkaryan Law Group · US · Business Servicesransomchaos reclama a issvc.com · SG · Technologyransomnova reclama a Marpatech · Technologyransomnova reclama a Canal 9 Litoral · AR · Telecommunicationransomqilin reclama a Evergreen Title · US · Financial Servicesransomplay reclama a Tax MT · MT · Business Servicesransomplay reclama a Kreysler & Associates · US · Business Servicesransomnova reclama a La Financière d'Orion (finorion) · FR · Financial Servicesransomchaos reclama a argonautms.com · RU · Technologyransomdragonforce reclama a One Community FCU · US · Financial Servicesransomqilin reclama a RehaVital Gesundheitsservice GmbH · DE · Healthcareransomakira reclama a Kruse Construction · Constructionransomakira reclama a University Sprinkler Systems · Business Servicesransombooba project reclama a Pelli Clarke Pelli Architects · US · Business Servicesransomdragonforce reclama a Koshkaryan Law Group · US · Business Servicesransomchaos reclama a issvc.com · SG · Technologyransomnova reclama a Marpatech · Technologyransomnova reclama a Canal 9 Litoral · AR · Telecommunicationransomqilin reclama a Evergreen Title · US · Financial Servicesransomplay reclama a Tax MT · MT · Business Servicesransomplay reclama a Kreysler & Associates · US · Business Servicesransomnova reclama a La Financière d'Orion (finorion) · FR · Financial Servicesransomchaos reclama a argonautms.com · RU · Technologyransomdragonforce reclama a One Community FCU · US · Financial Servicesransomqilin reclama a RehaVital Gesundheitsservice GmbH · DE · Healthcare
CVE Watch351,736 in full archive

Vulnerabilities exploitable today

351,736in current view

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

In KEV catalog1,651
New KEV · 24H0
Exploit Today ≥ 701,587

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Vulnerabilities344,201–344,240 · 351,736
CVECVSSEPSSKEVRExploitTitleMod.
CVE-2021-0388
1.7%
1
CVE-2021-22340
1.7%
1
CVE-2020-37229
1.7%
1
CVE-2023-53046
1.7%
1
CVE-2022-20020
1.7%
1
CVE-2026-42308
1.7%
1
CVE-2025-11535
1.7%
1
CVE-2026-461817.8 HIG
1.7%
1In the Linux kernel, the following vulnerability has been resolved: RDMA/mlx4: Fix mis-use of RCU in mlx4_srq_event() Sashiko points out the radix_tree itself is RCU safe, but nothing ever frees the mlx4_srq struct with RCU, and it isn't even accessed within the RCU critical section. It also will crash if an event is delivered before the srq object is finished initializing. Use the spinlock since it isn't easy to make RCU work, use refcount_inc_not_zero() to protect against partially initialized objects, and order the refcount_set() to be after the srq is fully initialized.2d
CVE-2026-317037.8 HIG
1.7%
1In the Linux kernel, the following vulnerability has been resolved: writeback: Fix use after free in inode_switch_wbs_work_fn() inode_switch_wbs_work_fn() has a loop like: wb_get(new_wb); while (1) { list = llist_del_all(&new_wb->switch_wbs_ctxs); /* Nothing to do? */ if (!list) break; ... process the items ... } Now adding of items to the list looks like: wb_queue_isw() if (llist_add(&isw->list, &wb->switch_wbs_ctxs)) queue_work(isw_wq, &wb->switch_work); Because inode_switch_wbs_work_fn() loops when processing isw items, it can happen that wb->switch_work is pending while wb->switch_wbs_ctxs is empty. This is a problem because in that case wb can get freed (no isw items -> no wb reference) while the work is still pending causing use-after-free issues. We cannot just fix this by cancelling work when freeing wb because that could still trigger problematic 0 -> 1 transitions on wb refcount due to wb_get() in inode_switch_wbs_work_fn(). It could be all handled with more careful code but that seems unnecessarily complex so let's avoid that until it is proven that the looping actually brings practical benefit. Just remove the loop from inode_switch_wbs_work_fn() instead. That way when wb_queue_isw() queues work, we are guaranteed we have added the first item to wb->switch_wbs_ctxs and nobody is going to remove it (and drop the wb reference it holds) until the queued work runs.8d
CVE-2021-30162
1.7%
1
CVE-2024-5275
1.7%
1
CVE-2026-463135.5 MED
1.7%
1In the Linux kernel, the following vulnerability has been resolved: media: intel/ipu6: fix error pointer dereference In a error path isp->psys is confirmed to be an error pointer not NULL so this condition is true and the error pointer is dereferenced. So isp-psys should be set to NULL before going to out_ipu6_bus_del_devices. Detected by Smatch: drivers/media/pci/intel/ipu6/ipu6.c:690 ipu6_pci_probe() error: 'isp->psys' dereferencing possible ERR_PTR() [Sakari Ailus: Fix commit message.]14d
CVE-2024-47127
1.7%
1
CVE-2026-20655
1.7%
1
CVE-2025-71153
1.7%
1
CVE-2025-37155
1.7%
1
CVE-2026-23260
1.7%
1
CVE-2026-23261
1.7%
1
CVE-2022-21765
1.7%
1
CVE-2026-314155.5 MED
1.7%
1In the Linux kernel, the following vulnerability has been resolved: ipv6: avoid overflows in ip6_datagram_send_ctl() Yiming Qian reported : <quote> I believe I found a locally triggerable kernel bug in the IPv6 sendmsg ancillary-data path that can panic the kernel via `skb_under_panic()` (local DoS). The core issue is a mismatch between: - a 16-bit length accumulator (`struct ipv6_txoptions::opt_flen`, type `__u16`) and - a pointer to the *last* provided destination-options header (`opt->dst1opt`) when multiple `IPV6_DSTOPTS` control messages (cmsgs) are provided. - `include/net/ipv6.h`: - `struct ipv6_txoptions::opt_flen` is `__u16` (wrap possible). (lines 291-307, especially 298) - `net/ipv6/datagram.c:ip6_datagram_send_ctl()`: - Accepts repeated `IPV6_DSTOPTS` and accumulates into `opt_flen` without rejecting duplicates. (lines 909-933) - `net/ipv6/ip6_output.c:__ip6_append_data()`: - Uses `opt->opt_flen + opt->opt_nflen` to compute header sizes/headroom decisions. (lines 1448-1466, especially 1463-1465) - `net/ipv6/ip6_output.c:__ip6_make_skb()`: - Calls `ipv6_push_frag_opts()` if `opt->opt_flen` is non-zero. (lines 1930-1934) - `net/ipv6/exthdrs.c:ipv6_push_frag_opts()` / `ipv6_push_exthdr()`: - Push size comes from `ipv6_optlen(opt->dst1opt)` (based on the pointed-to header). (lines 1179-1185 and 1206-1211) 1. `opt_flen` is a 16-bit accumulator: - `include/net/ipv6.h:298` defines `__u16 opt_flen; /* after fragment hdr */`. 2. `ip6_datagram_send_ctl()` accepts *repeated* `IPV6_DSTOPTS` cmsgs and increments `opt_flen` each time: - In `net/ipv6/datagram.c:909-933`, for `IPV6_DSTOPTS`: - It computes `len = ((hdr->hdrlen + 1) << 3);` - It checks `CAP_NET_RAW` using `ns_capable(net->user_ns, CAP_NET_RAW)`. (line 922) - Then it does: - `opt->opt_flen += len;` (line 927) - `opt->dst1opt = hdr;` (line 928) There is no duplicate rejection here (unlike the legacy `IPV6_2292DSTOPTS` path which rejects duplicates at `net/ipv6/datagram.c:901-904`). If enough large `IPV6_DSTOPTS` cmsgs are provided, `opt_flen` wraps while `dst1opt` still points to a large (2048-byte) destination-options header. In the attached PoC (`poc.c`): - 32 cmsgs with `hdrlen=255` => `len = (255+1)*8 = 2048` - 1 cmsg with `hdrlen=0` => `len = 8` - Total increment: `32*2048 + 8 = 65544`, so `(__u16)opt_flen == 8` - The last cmsg is 2048 bytes, so `dst1opt` points to a 2048-byte header. 3. The transmit path sizes headers using the wrapped `opt_flen`: - In `net/ipv6/ip6_output.c:1463-1465`: - `headersize = sizeof(struct ipv6hdr) + (opt ? opt->opt_flen + opt->opt_nflen : 0) + ...;` With wrapped `opt_flen`, `headersize`/headroom decisions underestimate what will be pushed later. 4. When building the final skb, the actual push length comes from `dst1opt` and is not limited by wrapped `opt_flen`: - In `net/ipv6/ip6_output.c:1930-1934`: - `if (opt->opt_flen) proto = ipv6_push_frag_opts(skb, opt, proto);` - In `net/ipv6/exthdrs.c:1206-1211`, `ipv6_push_frag_opts()` pushes `dst1opt` via `ipv6_push_exthdr()`. - In `net/ipv6/exthdrs.c:1179-1184`, `ipv6_push_exthdr()` does: - `skb_push(skb, ipv6_optlen(opt));` - `memcpy(h, opt, ipv6_optlen(opt));` With insufficient headroom, `skb_push()` underflows and triggers `skb_under_panic()` -> `BUG()`: - `net/core/skbuff.c:2669-2675` (`skb_push()` calls `skb_under_panic()`) - `net/core/skbuff.c:207-214` (`skb_panic()` ends in `BUG()`) - The `IPV6_DSTOPTS` cmsg path requires `CAP_NET_RAW` in the target netns user namespace (`ns_capable(net->user_ns, CAP_NET_RAW)`). - Root (or any task with `CAP_NET_RAW`) can trigger this without user namespaces. - An unprivileged `uid=1000` user can trigger this if unprivileged user namespaces are enabled and it can create a userns+netns to obtain namespaced `CAP_NET_RAW` (the attached PoC does this). - Local denial of service: kernel BUG/panic (system crash). - ---truncated---8d
CVE-2024-39672
1.7%
1
CVE-2025-48650
1.7%
1
CVE-2026-28717
1.7%
1
CVE-2026-22801
1.7%
1
CVE-2025-43026
1.7%
1
CVE-2026-43338
1.7%
1
CVE-2026-31394
1.7%
1
CVE-2026-43488
1.7%
1
CVE-2025-9055
1.7%
1
CVE-2023-21641
1.7%
1
CVE-2026-23166
1.7%
1
CVE-2022-25722
1.7%
1
CVE-2025-27560
1.7%
1
CVE-2026-11478
1.7%
1
CVE-2025-36244
1.7%
1
CVE-2026-56693
1.7%
1
CVE-2021-0919
1.7%
1
CVE-2025-9578
1.7%
1
CVE-2022-39089
1.7%
1
CVE-2021-0992
1.7%
1