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Search Results (347021 CVEs found)

CVE Vendors Products Updated CVSS v3.1
CVE-2025-39463 1 Wordpress 1 Wordpress 2026-04-27 7.5 High
Improper Control of Filename for Include/Require Statement in PHP Program ('PHP Remote File Inclusion') vulnerability in Select-Themes Dessau dessau allows PHP Local File Inclusion.This issue affects Dessau: from n/a through < 1.9.
CVE-2025-32222 1 Wordpress 1 Wordpress 2026-04-27 9.9 Critical
Improper Control of Generation of Code ('Code Injection') vulnerability in Widgetlogic.org Widget Logic widget-logic allows Code Injection.This issue affects Widget Logic: from n/a through <= 6.0.5.
CVE-2025-22728 2 Amentotech, Wordpress 2 Workreap, Wordpress 2026-04-27 8.5 High
Improper Neutralization of Special Elements used in an SQL Command ('SQL Injection') vulnerability in AmentoTech Workreap (theme's plugin) workreap allows SQL Injection.This issue affects Workreap (theme's plugin): from n/a through <= 3.3.6.
CVE-2025-22726 1 Wordpress 1 Wordpress 2026-04-27 6.4 Medium
Server-Side Request Forgery (SSRF) vulnerability in _nK nK Themes Helper nk-themes-helper allows Server Side Request Forgery.This issue affects nK Themes Helper: from n/a through <= 1.7.9.
CVE-2025-22715 2 Loopus, Wordpress 2 Wp Attractive Donations System, Wordpress 2026-04-27 7.5 High
Missing Authorization vulnerability in loopus WP Attractive Donations System - Easy Stripe & Paypal donations WP_AttractiveDonationsSystem allows Exploiting Incorrectly Configured Access Control Security Levels.This issue affects WP Attractive Donations System - Easy Stripe & Paypal donations: from n/a through <= 1.25.
CVE-2025-22713 2 Vanquish, Wordpress 2 Woocommerce Orders Customers Exporter, Wordpress 2026-04-27 8.5 High
Improper Neutralization of Special Elements used in an SQL Command ('SQL Injection') vulnerability in vanquish WooCommerce Orders & Customers Exporter woocommerce-orders-ei allows SQL Injection.This issue affects WooCommerce Orders & Customers Exporter: from n/a through <= 5.4.
CVE-2025-22712 1 Wordpress 1 Wordpress 2026-04-27 8.1 High
Improper Control of Filename for Include/Require Statement in PHP Program ('PHP Remote File Inclusion') vulnerability in QantumThemes Typify typify allows PHP Local File Inclusion.This issue affects Typify: from n/a through <= 3.0.2.
CVE-2025-22708 2 Thememove, Wordpress 2 Mitech, Wordpress 2026-04-27 8.1 High
Improper Control of Filename for Include/Require Statement in PHP Program ('PHP Remote File Inclusion') vulnerability in ThemeMove Mitech mitech allows PHP Local File Inclusion.This issue affects Mitech: from n/a through <= 2.3.4.
CVE-2025-22707 2 Thememove, Wordpress 2 Moody, Wordpress 2026-04-27 8.1 High
Improper Control of Filename for Include/Require Statement in PHP Program ('PHP Remote File Inclusion') vulnerability in ThemeMove Moody tm-moody allows PHP Local File Inclusion.This issue affects Moody: from n/a through <= 2.7.3.
CVE-2025-22509 1 Wordpress 1 Wordpress 2026-04-27 8.1 High
Improper Control of Filename for Include/Require Statement in PHP Program ('PHP Remote File Inclusion') vulnerability in TMRW-studio Atlas atlas allows PHP Local File Inclusion.This issue affects Atlas: from n/a through <= 2.1.0.
CVE-2025-58939 1 Wordpress 1 Wordpress 2026-04-27 4.3 Medium
Cross-Site Request Forgery (CSRF) vulnerability in highwarden Super Store Finder superstorefinder-wp allows Cross Site Request Forgery.This issue affects Super Store Finder: from n/a through <= 7.5.
CVE-2025-58938 2 Themeatelier, Wordpress 2 Idonate, Wordpress 2026-04-27 7.5 High
Missing Authorization vulnerability in ThemeAtelier IDonatePro idonate-pro allows Exploiting Incorrectly Configured Access Control Security Levels.This issue affects IDonatePro: from n/a through <= 2.1.9.
CVE-2026-34587 1 Getkirby 1 Kirby 2026-04-27 8.1 High
Kirby is an open-source content management system. Prior to versions 4.9.0 and 5.4.0, Kirby's user permissions control which user role is allowed to perform specific actions to content models in the CMS. These permissions are defined for each role in the user blueprint (`site/blueprints/users/...`). It is also possible to customize the permissions for each target model in the model blueprints (such as in `site/blueprints/pages/...`) using the `options` feature. The permissions and options together control the authorization of user actions. For pages, Kirby provides the `pages.create` and `pages.changeStatus` permissions (among others). In affected releases, Kirby checked these permissions independently and only for the respective action. However the `changeStatus` permission didn't take effect on page creation. New pages are created as drafts by default and need to be published by changing the page status of an existing page draft. This is ensured when the page is created via the Kirby Panel. However the REST API allows to override the `isDraft` flag when creating a new page. This allowed authenticated attackers with the `pages.create` permission to immediately create published pages, bypassing the normal editorial workflow. The problem has been patched in Kirby 4.9.0 and Kirby 5.4.0. Kirby has updated the `Options` logic to no longer double-resolve queries in option values coming from `OptionsQuery` or `OptionsApi` sources. Kirby now only resolves queries that are directly configured in the blueprints.
CVE-2026-31434 1 Linux 1 Linux Kernel 2026-04-27 N/A
In the Linux kernel, the following vulnerability has been resolved: btrfs: fix leak of kobject name for sub-group space_info When create_space_info_sub_group() allocates elements of space_info->sub_group[], kobject_init_and_add() is called for each element via btrfs_sysfs_add_space_info_type(). However, when check_removing_space_info() frees these elements, it does not call btrfs_sysfs_remove_space_info() on them. As a result, kobject_put() is not called and the associated kobj->name objects are leaked. This memory leak is reproduced by running the blktests test case zbd/009 on kernels built with CONFIG_DEBUG_KMEMLEAK. The kmemleak feature reports the following error: unreferenced object 0xffff888112877d40 (size 16): comm "mount", pid 1244, jiffies 4294996972 hex dump (first 16 bytes): 64 61 74 61 2d 72 65 6c 6f 63 00 c4 c6 a7 cb 7f data-reloc...... backtrace (crc 53ffde4d): __kmalloc_node_track_caller_noprof+0x619/0x870 kstrdup+0x42/0xc0 kobject_set_name_vargs+0x44/0x110 kobject_init_and_add+0xcf/0x150 btrfs_sysfs_add_space_info_type+0xfc/0x210 [btrfs] create_space_info_sub_group.constprop.0+0xfb/0x1b0 [btrfs] create_space_info+0x211/0x320 [btrfs] btrfs_init_space_info+0x15a/0x1b0 [btrfs] open_ctree+0x33c7/0x4a50 [btrfs] btrfs_get_tree.cold+0x9f/0x1ee [btrfs] vfs_get_tree+0x87/0x2f0 vfs_cmd_create+0xbd/0x280 __do_sys_fsconfig+0x3df/0x990 do_syscall_64+0x136/0x1540 entry_SYSCALL_64_after_hwframe+0x76/0x7e To avoid the leak, call btrfs_sysfs_remove_space_info() instead of kfree() for the elements.
CVE-2026-31438 1 Linux 1 Linux Kernel 2026-04-27 7.0 High
In the Linux kernel, the following vulnerability has been resolved: netfs: Fix kernel BUG in netfs_limit_iter() for ITER_KVEC iterators When a process crashes and the kernel writes a core dump to a 9P filesystem, __kernel_write() creates an ITER_KVEC iterator. This iterator reaches netfs_limit_iter() via netfs_unbuffered_write(), which only handles ITER_FOLIOQ, ITER_BVEC and ITER_XARRAY iterator types, hitting the BUG() for any other type. Fix this by adding netfs_limit_kvec() following the same pattern as netfs_limit_bvec(), since both kvec and bvec are simple segment arrays with pointer and length fields. Dispatch it from netfs_limit_iter() when the iterator type is ITER_KVEC.
CVE-2026-31441 1 Linux 1 Linux Kernel 2026-04-27 5.5 Medium
In the Linux kernel, the following vulnerability has been resolved: dmaengine: idxd: Fix memory leak when a wq is reset idxd_wq_disable_cleanup() which is called from the reset path for a workqueue, sets the wq type to NONE, which for other parts of the driver mean that the wq is empty (all its resources were released). Only set the wq type to NONE after its resources are released.
CVE-2026-31444 1 Linux 1 Linux Kernel 2026-04-27 9.8 Critical
In the Linux kernel, the following vulnerability has been resolved: ksmbd: fix use-after-free and NULL deref in smb_grant_oplock() smb_grant_oplock() has two issues in the oplock publication sequence: 1) opinfo is linked into ci->m_op_list (via opinfo_add) before add_lease_global_list() is called. If add_lease_global_list() fails (kmalloc returns NULL), the error path frees the opinfo via __free_opinfo() while it is still linked in ci->m_op_list. Concurrent m_op_list readers (opinfo_get_list, or direct iteration in smb_break_all_levII_oplock) dereference the freed node. 2) opinfo->o_fp is assigned after add_lease_global_list() publishes the opinfo on the global lease list. A concurrent find_same_lease_key() can walk the lease list and dereference opinfo->o_fp->f_ci while o_fp is still NULL. Fix by restructuring the publication sequence to eliminate post-publish failure: - Set opinfo->o_fp before any list publication (fixes NULL deref). - Preallocate lease_table via alloc_lease_table() before opinfo_add() so add_lease_global_list() becomes infallible after publication. - Keep the original m_op_list publication order (opinfo_add before lease list) so concurrent opens via same_client_has_lease() and opinfo_get_list() still see the in-flight grant. - Use opinfo_put() instead of __free_opinfo() on err_out so that the RCU-deferred free path is used. This also requires splitting add_lease_global_list() to take a preallocated lease_table and changing its return type from int to void, since it can no longer fail.
CVE-2026-31445 1 Linux 1 Linux Kernel 2026-04-27 N/A
In the Linux kernel, the following vulnerability has been resolved: mm/damon/core: avoid use of half-online-committed context One major usage of damon_call() is online DAMON parameters update. It is done by calling damon_commit_ctx() inside the damon_call() callback function. damon_commit_ctx() can fail for two reasons: 1) invalid parameters and 2) internal memory allocation failures. In case of failures, the damon_ctx that attempted to be updated (commit destination) can be partially updated (or, corrupted from a perspective), and therefore shouldn't be used anymore. The function only ensures the damon_ctx object can safely deallocated using damon_destroy_ctx(). The API callers are, however, calling damon_commit_ctx() only after asserting the parameters are valid, to avoid damon_commit_ctx() fails due to invalid input parameters. But it can still theoretically fail if the internal memory allocation fails. In the case, DAMON may run with the partially updated damon_ctx. This can result in unexpected behaviors including even NULL pointer dereference in case of damos_commit_dests() failure [1]. Such allocation failure is arguably too small to fail, so the real world impact would be rare. But, given the bad consequence, this needs to be fixed. Avoid such partially-committed (maybe-corrupted) damon_ctx use by saving the damon_commit_ctx() failure on the damon_ctx object. For this, introduce damon_ctx->maybe_corrupted field. damon_commit_ctx() sets it when it is failed. kdamond_call() checks if the field is set after each damon_call_control->fn() is executed. If it is set, ignore remaining callback requests and return. All kdamond_call() callers including kdamond_fn() also check the maybe_corrupted field right after kdamond_call() invocations. If the field is set, break the kdamond_fn() main loop so that DAMON sill doesn't use the context that might be corrupted. [sj@kernel.org: let kdamond_call() with cancel regardless of maybe_corrupted]
CVE-2026-31449 1 Linux 1 Linux Kernel 2026-04-27 7.8 High
In the Linux kernel, the following vulnerability has been resolved: ext4: validate p_idx bounds in ext4_ext_correct_indexes ext4_ext_correct_indexes() walks up the extent tree correcting index entries when the first extent in a leaf is modified. Before accessing path[k].p_idx->ei_block, there is no validation that p_idx falls within the valid range of index entries for that level. If the on-disk extent header contains a corrupted or crafted eh_entries value, p_idx can point past the end of the allocated buffer, causing a slab-out-of-bounds read. Fix this by validating path[k].p_idx against EXT_LAST_INDEX() at both access sites: before the while loop and inside it. Return -EFSCORRUPTED if the index pointer is out of range, consistent with how other bounds violations are handled in the ext4 extent tree code.
CVE-2026-31452 1 Linux 1 Linux Kernel 2026-04-27 5.5 Medium
In the Linux kernel, the following vulnerability has been resolved: ext4: convert inline data to extents when truncate exceeds inline size Add a check in ext4_setattr() to convert files from inline data storage to extent-based storage when truncate() grows the file size beyond the inline capacity. This prevents the filesystem from entering an inconsistent state where the inline data flag is set but the file size exceeds what can be stored inline. Without this fix, the following sequence causes a kernel BUG_ON(): 1. Mount filesystem with inode that has inline flag set and small size 2. truncate(file, 50MB) - grows size but inline flag remains set 3. sendfile() attempts to write data 4. ext4_write_inline_data() hits BUG_ON(write_size > inline_capacity) The crash occurs because ext4_write_inline_data() expects inline storage to accommodate the write, but the actual inline capacity (~60 bytes for i_block + ~96 bytes for xattrs) is far smaller than the file size and write request. The fix checks if the new size from setattr exceeds the inode's actual inline capacity (EXT4_I(inode)->i_inline_size) and converts the file to extent-based storage before proceeding with the size change. This addresses the root cause by ensuring the inline data flag and file size remain consistent during truncate operations.