AMI MegaRAC SPx contains an authentication bypass by spoofing vulnerability in the Redfish Host Interface. A successful exploitation of this vulnerability may lead to a loss of confidentiality, integrity, and/or availability.
The OpenSSL 3.0.4 release introduced a serious bug in the RSA implementation for X8664 CPUs supporting the AVX512IFMA instructions. This issue makes the RSA implementation with 2048 bit private keys incorrect on such machines and memory corruption will happen during the computation. As a consequence of the memory corruption an attacker may be able to trigger a remote code execution on the machine performing the computation. SSL/TLS servers or other servers using 2048 bit RSA private keys running on machines supporting AVX512IFMA instructions of the X8664 architecture are affected by this issue.
In the Linux kernel, the following vulnerability has been resolved:
NFSD: Fix nfsd4encodefattr4() crasher
Ensure that args.acl is initialized early. It is used in an unconditional call to kfree() on the way out of nfsd4encodefattr4().
eventfd double close
Accessibility. A logging issue was addressed with improved data redaction.
A flaw was found in OpenSSL. The issue in CVE-2022-1292 did not find other places in the crehash script where it possibly passed the file names of certificates being hashed to a command executed through the shell. Some operating systems distribute this script in a manner where it is automatically executed. On these operating systems, this flaw allows an attacker to execute arbitrary commands with the privileges of the script.
In OpenLDAP 2.x before 2.5.12 and 2.6.x before 2.6.2, a SQL injection vulnerability exists in the experimental back-sql backend to slapd, via a SQL statement within an LDAP query. This can occur during an LDAP search operation when the search filter is processed, due to a lack of proper escaping.
Last updated 24 July 2024
An out-of-bounds read vulnerability was discovered in the PCRE2 library in the compilexclassmatchingpath() function of the pcre2jitcompile.c file. This involves a unicode property matching issue in JIT-compiled regular expressions. The issue occurs because the character was not fully read in case-less matching within JIT.
An out-of-bounds read vulnerability was discovered in the PCRE2 library in the getrecursedatalength() function of the pcre2jitcompile.c file. This issue affects recursions in JIT-compiled regular expressions caused by duplicate data transfers.
An out-of-bounds access issue was found in the Linux kernel, all versi ...
The server in Dropbear before 2017.75 might allow post-authentication root remote code execution because of a double free in cleanup of TCP listeners when the -a option is enabled.
A flaw was found in the Linux kernel’s KVM implementation, where improper handing of the VMIO|VMPFNMAP VMAs in KVM bypasses RO checks and leads to pages being freed while still accessible by the VMM and guest. This flaw allows users who can start and control a VM to read/write random pages of memory, resulting in local privilege escalation. The highest threat from this vulnerability is to confidentiality, integrity, and system availability.
glibc is vulnerable to a denial of service, caused by a memory corruption by the Name Service Cache Daemon's (nscd) netgroup cache when the NSS callback fails to store all strings in the provided buffer. A local attacker could exploit this vulnerability to corrupt memory and cause a denial of service.
A use-after-free exists in the Linux Kernel in tcnewtfilter that could allow a local attacker to gain privilege escalation. The exploit requires unprivileged user namespaces. We recommend upgrading past commit 04c2a47ffb13c29778e2a14e414ad4cb5a5db4b5
Last updated 25 April 2025
A heap-based buffer overflow flaw was found in the way the legacyparseparam function in the Filesystem Context functionality of the Linux kernel verified the supplied parameters length. An unprivileged (in case of unprivileged user namespaces enabled, otherwise needs namespaced CAPSYSADMIN privilege) local user able to open a filesystem that does not support the Filesystem Context API (and thus fallbacks to legacy handling) could use this flaw to escalate their privileges on the system.
A flaw was discovered in processing setsockopt IPTSOSETREPLACE (or IP6TSOSETREPLACE) for 32 bit processes on 64 bit systems. This flaw will allow local user to gain privileges or cause a DoS through user name space. This action is usually restricted to root-privileged users but can also be leveraged if the kernel is compiled with CONFIGUSERNS and CONFIGNETNS and the user is granted elevated privileges.
AMD. A buffer overflow issue was addressed with improved memory handling.
A stack-based buffer overflow in nscd was reported and assigned CVE-2024-33599.
Reference: https://sourceware.org/bugzilla/showbug.cgi?id=31677
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nscd/netgroupcache.c (addinnetgrX):
497 struct indataset 498 { 499 struct datahead head; 500 innetgroupresponseheader resp; 501 } dataset 502 = (struct indataset ) mempoolalloc (db, 503 sizeof (dataset) + req->keylen, 504 1);
mempoolalloc fails and returns NULL.
This is possible if posixfallocate fails and the retry fails.
505 struct indataset datasetmem; 506 bool cacheable = true; 507 if (glibcunlikely (dataset == NULL)) 508 { 509 cacheable = false; 510 dataset = &datasetmem;
This structure has no room for req->keylen material.
511 } 512 513 dataheadinitpos (&dataset->head, sizeof (dataset) + req->keylen, 514 sizeof (innetgroupresponseheader), 515 he == NULL ? 0 : dh->nreloads + 1, result->head.ttl); 516 / Set the notfound status and timeout based on the result from 517 getnetgrent. / 518 dataset->head.notfound = result->head.notfound; 519 dataset->head.timeout = timeout; 520 521 dataset->resp.version = NSCDVERSION; 522 dataset->resp.found = result->resp.found; 523 / Until we find a matching entry the result is 0. / 524 dataset->resp.result = 0; 525 526 char keycopy = memcpy ((char ) (dataset + 1), group, req->keylen);
This copies up to req->keylen material to a structure that has no storage space for it.
This was detected by static code analysis.
It will only happen in the case the database runs out of memory/storage while expanding the netgroup cache.
The group entries overwrite other data on the stack after datasetmem.
The workaround is not to cache the netgroup if this is impacting the use of the application.
An out-of-bounds (OOB) memory access flaw was found in fs/f2fs/node.c in the f2fs module in the Linux kernel in versions before 5.12.0-rc4. A bounds check failure allows a local attacker to gain access to out-of-bounds memory leading to a system crash or a leak of internal kernel information. The highest threat from this vulnerability is to system availability.
A flaw was found in libxml2. A call to the xmlGetID function can return a pointer already freed when parsing an XML document with the XMLPARSEDTDVALID option and without the XMLPARSENOENT option, resulting in a use-after-free issue.
A use-after-free flaw was found in the Linux kernel’s Bluetooth subsystem in the way user calls connect to the socket and disconnect simultaneously due to a race condition. This flaw allows a user to crash the system or escalate their privileges. The highest threat from this vulnerability is to confidentiality, integrity, as well as system availability.
A vulnerability was found in kvms390guestsidaop in arch/s390/kvm/kvm-s390.c in KVM for s390 in the Linux kernel. In this flaw, a local attacker with a normal user privilege may impact in unauthorized memory write access.
A vulnerability was found in cgroupreleaseagentwrite in kernel/cgroup/cgroup-v1.c in the Linux kernel. In this flaw, under certain circumstances, the cgroups v1 releaseagent feature can be used to escalate privilege and bypass namespace isolation unexpectedly.
Upstream Commit:
https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/commit/?id=24f6008564183aa120d07c03d9289519c2fe02af
An integer wraparound in the function l2capconfigreq in net/bluetooth/l2capcore.c in Linux Kernel could allow a remote authenticated attacker from within the local network using L2CAPCONFREQ packets to cause an unknown impact.
A flaw was found in unrestricted eBPF usage by the BPFBTFLOAD, leading to a possible out-of-bounds memory write in the Linux kernel’s BPF subsystem due to the way a user loads BTF. This flaw allows a local user to crash or escalate their privileges on the system.
A use-after-free vulnerability in the Linux kernel's netfilter: nftables component can be exploited to achieve local privilege escalation.
The nftverdictinit() function allows positive values as drop error within the hook verdict, and hence the nfhookslow() function can cause a double free vulnerability when NFDROP is issued with a drop error which resembles NFACCEPT.
We recommend upgrading past commit f342de4e2f33e0e39165d8639387aa6c19dff660.
A UAF flaw in Linux Kernel found in pipes functionality. The problem located in function freepipeinfo of the fs/pipe.c. When a pipe node is freed, it doesn't make pipe->watchqueue->pipe null. When function postonenotification is called, it will use this field, but it has been freed and watchqueue->pipe is a dangling pointer. The problem was introduced since commit db8facfc9fafacefe8a835 "watchqueue, pipe: Free watchqueue state after clearing pipe ring".
Reference: https://git.kernel.org/linus/353f7988dd8413c4
A flaw in the Linux Kernel found. If unprivileged users can mount FUSE filesystems, then can trigger use after free (UAF) that reads of write() buffers, allowing theft of (partial) /etc/shadow hashes or any other data from filesystem.
FUSE allows the userspace filesystem to specify on FUSEOPEN whether the file should use the normal kernel pagecache for handling read()/write() or just send FUSEREAD/FUSEWRITE requests directly to the userspace filesystem (using the flag FOPENDIRECTIO in fuseopenout::openflags).
In FOPENDIRECTIO mode, fusefilewriteiter() calls fusedirectwriteiter(), which normally calls fusedirectio(), which then imports the write buffer with fusegetuserpages(), which uses iovitergetpages() to grab references to userspace pages instead of actually copying memory.
On the filesystem device side, these pages can then either be read to userspace (via fusedevread()), or splice()d over into a pipe using fusedevspliceread() as pipe buffers with &nostealpipebufops.
This is wrong because after fusedevdoread() unlocks the FUSE request, the userspace filesystem can mark the request as completed, causing write() to return. At that point, the write buffer may be reused for other purposes, and the userspace filesystem should no longer have access to it.