| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Time4J Base v5.9.3 was discovered to contain a NullPointerException via the component net.time4j.format.internal.FormatUtils::useDefaultWeekmodel(Locale). NOTE: this is disputed by multiple third parties who believe there was not reasonable evidence to determine the existence of a vulnerability. The submission may have been based on a tool that is not sufficiently robust for vulnerability identification. |
| Versions of the package z-push/z-push-dev before 2.7.6 are vulnerable to SQL Injection due to unparameterized queries in the IMAP backend. An attacker can inject malicious commands by manipulating the username field in basic authentication. This allows the attacker to access and potentially modify or delete sensitive data from a linked third-party database.
**Note:** This vulnerability affects Z-Push installations that utilize the IMAP backend and have the IMAP_FROM_SQL_QUERY option configured.
Mitigation
Change configuration to use the default or LDAP in backend/imap/config.php
php
define('IMAP_DEFAULTFROM', '');
or
php
define('IMAP_DEFAULTFROM', 'ldap'); |
| An issue in the getcolor function in utils.py of xhtml2pdf v0.2.13 allows attackers to cause a Regular expression Denial of Service (ReDOS) via supplying a crafted string. |
| Cross Site Scripting vulnerability in Evertz microsystems MViP-II Firmware 8.6.5, XPS-EDGE-* Build 1467, evEDGE-EO-* Build 0029, MMA10G-* Build 0498, 570IPG-X19-10G Build 0691 allows a remote attacker to execute arbitrary code via a crafted payload to the login parameters. |
| Cross Site Scripting vulnerability in Innovaphone myPBX v.14r1, v.13r3, v.12r2 allows a remote attacker to execute arbitrary code via the query parameter to the /CMD0/xml_modes.xml endpoint |
| OS command injection vulnerability exists in AIPHONE IX SYSTEM and IXG SYSTEM. A network-adjacent authenticated attacker may execute an arbitrary OS command with root privileges by sending a specially crafted request. |
| An issue in FME Modules fileuploads v.2.0.3 and before and fixed in v2.0.4 allows a remote attacker to obtain sensitive information via the uploadfiles.php component. |
| An issue in Nedis SmartLife Video Doorbell (WIFICDP10GY), Nedis SmartLife IOS v1.4.0 causes users who are disconnected from a previous peer-to-peer connection with the device to still have access to live video feed. |
| Integer overflow within the AMD NPU Driver could allow a local attacker to write out of bounds, potentially leading to a loss of confidentiality, integrity, or availability. |
| Integer overflow within AMD NPU Driver could allow a local attacker to write out of bounds, potentially leading to loss of confidentiality, integrity or availability. |
| The com.enflick.android.TextNow (aka TextNow: Call + Text Unlimited) application 24.17.0.2 for Android enables any installed application (with no permissions) to place phone calls without user interaction by sending a crafted intent via the com.enflick.android.TextNow.activities.DialerActivity component. |
| An LDAP injection vulnerability in the login page of Gladinet CentreStack v13.12.9934.54690 allows attackers to access sensitive data or execute arbitrary commands via a crafted payload injected into the username field. |
| Improper input validation in /admin/config/save in User-friendly SVN (USVN) before v1.0.12 and below allows administrators to execute arbitrary code via the fields "siteTitle", "siteIco" and "siteLogo". |
| Pexip Infinity Connect before 1.13.0 lacks sufficient authenticity checks during the loading of resources, and thus remote attackers can cause the application to run untrusted code. |
| A flaw was found in Smallrye, where smallrye-fault-tolerance is vulnerable to an out-of-memory (OOM) issue. This vulnerability is externally triggered when calling the metrics URI. Every call creates a new object within meterMap and may lead to a denial of service (DoS) issue. |
| Insufficiently protected credentials issue exists in AIPHONE IX SYSTEM and IXG SYSTEM. A network-adjacent unauthenticated attacker may obtain sensitive information such as a username and its password in the address book. |
| A flaw was found in Undertow. Servlets using a method that calls HttpServletRequestImpl.getParameterNames() can cause an OutOfMemoryError when the client sends a request with large parameter names. This issue can be exploited by an unauthorized user to cause a remote denial-of-service (DoS) attack. |
| Directory Traversal vulnerability in Severalnines Cluster Control 1.9.8 before 1.9.8-9778, 2.0.0 before 2.0.0-9779, and 2.1.0 before 2.1.0-9780 allows a remote attacker to include and display file content in an HTTP request via the CMON API. |
| In the Linux kernel, the following vulnerability has been resolved:
fuse: fix readahead reclaim deadlock
Commit e26ee4efbc79 ("fuse: allocate ff->release_args only if release is
needed") skips allocating ff->release_args if the server does not
implement open. However in doing so, fuse_prepare_release() now skips
grabbing the reference on the inode, which makes it possible for an
inode to be evicted from the dcache while there are inflight readahead
requests. This causes a deadlock if the server triggers reclaim while
servicing the readahead request and reclaim attempts to evict the inode
of the file being read ahead. Since the folio is locked during
readahead, when reclaim evicts the fuse inode and fuse_evict_inode()
attempts to remove all folios associated with the inode from the page
cache (truncate_inode_pages_range()), reclaim will block forever waiting
for the lock since readahead cannot relinquish the lock because it is
itself blocked in reclaim:
>>> stack_trace(1504735)
folio_wait_bit_common (mm/filemap.c:1308:4)
folio_lock (./include/linux/pagemap.h:1052:3)
truncate_inode_pages_range (mm/truncate.c:336:10)
fuse_evict_inode (fs/fuse/inode.c:161:2)
evict (fs/inode.c:704:3)
dentry_unlink_inode (fs/dcache.c:412:3)
__dentry_kill (fs/dcache.c:615:3)
shrink_kill (fs/dcache.c:1060:12)
shrink_dentry_list (fs/dcache.c:1087:3)
prune_dcache_sb (fs/dcache.c:1168:2)
super_cache_scan (fs/super.c:221:10)
do_shrink_slab (mm/shrinker.c:435:9)
shrink_slab (mm/shrinker.c:626:10)
shrink_node (mm/vmscan.c:5951:2)
shrink_zones (mm/vmscan.c:6195:3)
do_try_to_free_pages (mm/vmscan.c:6257:3)
do_swap_page (mm/memory.c:4136:11)
handle_pte_fault (mm/memory.c:5562:10)
handle_mm_fault (mm/memory.c:5870:9)
do_user_addr_fault (arch/x86/mm/fault.c:1338:10)
handle_page_fault (arch/x86/mm/fault.c:1481:3)
exc_page_fault (arch/x86/mm/fault.c:1539:2)
asm_exc_page_fault+0x22/0x27
Fix this deadlock by allocating ff->release_args and grabbing the
reference on the inode when preparing the file for release even if the
server does not implement open. The inode reference will be dropped when
the last reference on the fuse file is dropped (see fuse_file_put() ->
fuse_release_end()). |
| In the Linux kernel, the following vulnerability has been resolved:
fs: Protect reconfiguration of sb read-write from racing writes
The reconfigure / remount code takes a lot of effort to protect
filesystem's reconfiguration code from racing writes on remounting
read-only. However during remounting read-only filesystem to read-write
mode userspace writes can start immediately once we clear SB_RDONLY
flag. This is inconvenient for example for ext4 because we need to do
some writes to the filesystem (such as preparation of quota files)
before we can take userspace writes so we are clearing SB_RDONLY flag
before we are fully ready to accept userpace writes and syzbot has found
a way to exploit this [1]. Also as far as I'm reading the code
the filesystem remount code was protected from racing writes in the
legacy mount path by the mount's MNT_READONLY flag so this is relatively
new problem. It is actually fairly easy to protect remount read-write
from racing writes using sb->s_readonly_remount flag so let's just do
that instead of having to workaround these races in the filesystem code.
[1] https://lore.kernel.org/all/00000000000006a0df05f6667499@google.com/T/ |