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    <title>Most recent entries from all</title>
    <link>https://cve.radiocsirt.org</link>
    <description>Contains only the most 10 recent entries.</description>
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    <lastBuildDate>Sat, 03 Oct 2026 20:41:10 +0000</lastBuildDate>
    <item>
      <title>BELL-CVE-2026-74726</title>
      <link>https://cve.radiocsirt.org/vuln/bell-cve-2026-74726</link>
      <description>&lt;p&gt;&lt;strong&gt;Affected:&lt;/strong&gt; Alpaquita:23: linux-lts, Alpaquita:25: linux-lts, Alpaquita:stream: linux-lts&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;&lt;strong&gt;Affected:&lt;/strong&gt; Alpaquita:23: linux-lts, Alpaquita:25: linux-lts, Alpaquita:stream: linux-lts&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/bell-cve-2026-74726</guid>
    </item>
    <item>
      <title>certfr-2026-avi-1090 — De multiples vulnérabilités ont été découvertes dans le noyau Linux de Debian. Elles permettent à un attaquant de provo…</title>
      <link>https://cve.radiocsirt.org/vuln/certfr-2026-avi-1090</link>
      <description>certfr-2026-avi-1090</description>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/certfr-2026-avi-1090</guid>
    </item>
    <item>
      <title>EUVD-2026-358577</title>
      <link>https://cve.radiocsirt.org/vuln/euvd-2026-358577</link>
      <description>EUVD-2026-358577</description>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/euvd-2026-358577</guid>
    </item>
    <item>
      <title>fkie_cve-2026-74726</title>
      <link>https://cve.radiocsirt.org/vuln/fkie_cve-2026-74726</link>
      <description>&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;bonding: alb: re-check primary_is_promisc under RTNL in bond_alb_monitor&lt;/p&gt;
&lt;p&gt;bond_alb_monitor() reads primary_is_promisc under RCU, then drops RCU and
takes RTNL via rtnl_trylock() before undoing the promiscuity it set on the
active slave. In that window the active slave can change under RTNL
(RTM_DELLINK -&amp;gt; __bond_release_one() -&amp;gt; bond_alb_handle_active_change()),
which already drops the promiscuity and clears primary_is_promisc. The
monitor still acts on the stale decision: if the slave was removed with no
failover, curr_active_slave is now NULL and the deref faults; if it failed
over, the stale dev_set_promiscuity(-1) underflows the new slave&amp;#39;s
promiscuity counter and pins it in IFF_PROMISC.&lt;/p&gt;
&lt;p&gt;Oops: general protection fault, probably for non-canonical address ...
  KASAN: null-ptr-deref in range [0x0000000000000000-0x0000000000000007]
  Workqueue: b42 bond_alb_monitor
  RIP: 0010:bond_alb_monitor (drivers/net/bonding/bond_alb.c:1600)
   process_one_work (kernel/workqueue.c:3322)
   worker_thread (kernel/workqueue.c:3486)
   kthread (kernel/kthread.c:436)
   ret_from_fork (arch/x86/kernel/process.c:158)
  Kernel panic - not syncing: Fatal exception&lt;/p&gt;
&lt;p&gt;Re-check primary_is_promisc (and curr_active_slave) after taking RTNL so
the monitor only undoes an increment it still owns. The other bonding
monitors already re-read state under RTNL in their commit phase
(bond_miimon_commit/bond_ab_arp_commit); bond_alb_monit…&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;bonding: alb: re-check primary_is_promisc under RTNL in bond_alb_monitor&lt;/p&gt;
&lt;p&gt;bond_alb_monitor() reads primary_is_promisc under RCU, then drops RCU and
takes RTNL via rtnl_trylock() before undoing the promiscuity it set on the
active slave. In that window the active slave can change under RTNL
(RTM_DELLINK -&amp;gt; __bond_release_one() -&amp;gt; bond_alb_handle_active_change()),
which already drops the promiscuity and clears primary_is_promisc. The
monitor still acts on the stale decision: if the slave was removed with no
failover, curr_active_slave is now NULL and the deref faults; if it failed
over, the stale dev_set_promiscuity(-1) underflows the new slave&amp;#39;s
promiscuity counter and pins it in IFF_PROMISC.&lt;/p&gt;
&lt;p&gt;Oops: general protection fault, probably for non-canonical address ...
  KASAN: null-ptr-deref in range [0x0000000000000000-0x0000000000000007]
  Workqueue: b42 bond_alb_monitor
  RIP: 0010:bond_alb_monitor (drivers/net/bonding/bond_alb.c:1600)
   process_one_work (kernel/workqueue.c:3322)
   worker_thread (kernel/workqueue.c:3486)
   kthread (kernel/kthread.c:436)
   ret_from_fork (arch/x86/kernel/process.c:158)
  Kernel panic - not syncing: Fatal exception&lt;/p&gt;
&lt;p&gt;Re-check primary_is_promisc (and curr_active_slave) after taking RTNL so
the monitor only undoes an increment it still owns. The other bonding
monitors already re-read state under RTNL in their commit phase
(bond_miimon_commit/bond_ab_arp_commit); bond_alb_monit…&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/fkie_cve-2026-74726</guid>
    </item>
    <item>
      <title>GHSA-33v4-fjq4-gjwg</title>
      <link>https://cve.radiocsirt.org/vuln/ghsa-33v4-fjq4-gjwg</link>
      <description>&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;bonding: alb: re-check primary_is_promisc under RTNL in bond_alb_monitor&lt;/p&gt;
&lt;p&gt;bond_alb_monitor() reads primary_is_promisc under RCU, then drops RCU and
takes RTNL via rtnl_trylock() before undoing the promiscuity it set on the
active slave. In that window the active slave can change under RTNL
(RTM_DELLINK -&amp;gt; __bond_release_one() -&amp;gt; bond_alb_handle_active_change()),
which already drops the promiscuity and clears primary_is_promisc. The
monitor still acts on the stale decision: if the slave was removed with no
failover, curr_active_slave is now NULL and the deref faults; if it failed
over, the stale dev_set_promiscuity(-1) underflows the new slave&amp;#39;s
promiscuity counter and pins it in IFF_PROMISC.&lt;/p&gt;
&lt;p&gt;Oops: general protection fault, probably for non-canonical address ...
  KASAN: null-ptr-deref in range [0x0000000000000000-0x0000000000000007]
  Workqueue: b42 bond_alb_monitor
  RIP: 0010:bond_alb_monitor (drivers/net/bonding/bond_alb.c:1600)
   process_one_work (kernel/workqueue.c:3322)
   worker_thread (kernel/workqueue.c:3486)
   kthread (kernel/kthread.c:436)
   ret_from_fork (arch/x86/kernel/process.c:158)
  Kernel panic - not syncing: Fatal exception&lt;/p&gt;
&lt;p&gt;Re-check primary_is_promisc (and curr_active_slave) after taking RTNL so
the monitor only undoes an increment it still owns. The other bonding
monitors already re-read state under RTNL in their commit phase
(bond_miimon_commit/bond_ab_arp_commit); bond_alb_monit…&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;bonding: alb: re-check primary_is_promisc under RTNL in bond_alb_monitor&lt;/p&gt;
&lt;p&gt;bond_alb_monitor() reads primary_is_promisc under RCU, then drops RCU and
takes RTNL via rtnl_trylock() before undoing the promiscuity it set on the
active slave. In that window the active slave can change under RTNL
(RTM_DELLINK -&amp;gt; __bond_release_one() -&amp;gt; bond_alb_handle_active_change()),
which already drops the promiscuity and clears primary_is_promisc. The
monitor still acts on the stale decision: if the slave was removed with no
failover, curr_active_slave is now NULL and the deref faults; if it failed
over, the stale dev_set_promiscuity(-1) underflows the new slave&amp;#39;s
promiscuity counter and pins it in IFF_PROMISC.&lt;/p&gt;
&lt;p&gt;Oops: general protection fault, probably for non-canonical address ...
  KASAN: null-ptr-deref in range [0x0000000000000000-0x0000000000000007]
  Workqueue: b42 bond_alb_monitor
  RIP: 0010:bond_alb_monitor (drivers/net/bonding/bond_alb.c:1600)
   process_one_work (kernel/workqueue.c:3322)
   worker_thread (kernel/workqueue.c:3486)
   kthread (kernel/kthread.c:436)
   ret_from_fork (arch/x86/kernel/process.c:158)
  Kernel panic - not syncing: Fatal exception&lt;/p&gt;
&lt;p&gt;Re-check primary_is_promisc (and curr_active_slave) after taking RTNL so
the monitor only undoes an increment it still owns. The other bonding
monitors already re-read state under RTNL in their commit phase
(bond_miimon_commit/bond_ab_arp_commit); bond_alb_monit…&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/ghsa-33v4-fjq4-gjwg</guid>
    </item>
    <item>
      <title>msrc_CVE-2026-74726 — bonding: alb: re-check primary_is_promisc under RTNL in bond_alb_monitor</title>
      <link>https://cve.radiocsirt.org/vuln/msrc_cve-2026-74726</link>
      <description>msrc_CVE-2026-74726</description>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/msrc_cve-2026-74726</guid>
    </item>
    <item>
      <title>OESA-2026-3707 — kernel security update</title>
      <link>https://cve.radiocsirt.org/vuln/oesa-2026-3707</link>
      <description>&lt;p&gt;&lt;strong&gt;Affected:&lt;/strong&gt; openEuler:24.03-LTS-SP1: kernel&lt;/p&gt;
&lt;p&gt;The Linux Kernel, the operating system core itself.&#13;
&#13;
Security Fix(es):&lt;/p&gt;
&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;seg6: separate dst_cache for input and output paths in seg6 lwtunnel&lt;/p&gt;
&lt;p&gt;The seg6 lwtunnel uses a single dst_cache per encap route, shared
between seg6_input_core() and seg6_output_core(). These two paths
can perform the post-encap SID lookup in different routing contexts
(e.g., ip rules matching on the ingress interface, or VRF table
separation). Whichever path runs first populates the cache, and the
other reuses it blindly, bypassing its own lookup.&lt;/p&gt;
&lt;p&gt;Fix this by splitting the cache into cache_input and cache_output,
so each path maintains its own cached dst independently.(CVE-2026-31668)&lt;/p&gt;
&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;RDMA/rxe: Fix iova-to-va conversion for MR page sizes != PAGE_SIZE&lt;/p&gt;
&lt;p&gt;The current implementation incorrectly handles memory regions (MRs) with
page sizes different from the system PAGE_SIZE. The core issue is that
rxe_set_page() is called with mr-&amp;amp;gt;page_size step increments, but the
page_list stores individual struct page pointers, each representing
PAGE_SIZE of memory.&lt;/p&gt;
&lt;p&gt;ib_sg_to_page() has ensured that when i&amp;amp;gt;=1 either
a) SG[i-1].dma_end and SG[i].dma_addr are contiguous
or
b) SG[i-1].dma_end and SG[i].dma_addr are mr-&amp;amp;gt;page_size aligned.&lt;/p&gt;
&lt;p&gt;This leads to incorrect iova-to-va conversion in scenarios:&lt;/p&gt;
&lt;p&gt;1) page_size &amp;amp;lt; PAGE_SIZE (e.g., MR: 4K, system: 64K):
   ibmr-&amp;amp;gt;iova = 0x1…&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;&lt;strong&gt;Affected:&lt;/strong&gt; openEuler:24.03-LTS-SP1: kernel&lt;/p&gt;
&lt;p&gt;The Linux Kernel, the operating system core itself.&#13;
&#13;
Security Fix(es):&lt;/p&gt;
&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;seg6: separate dst_cache for input and output paths in seg6 lwtunnel&lt;/p&gt;
&lt;p&gt;The seg6 lwtunnel uses a single dst_cache per encap route, shared
between seg6_input_core() and seg6_output_core(). These two paths
can perform the post-encap SID lookup in different routing contexts
(e.g., ip rules matching on the ingress interface, or VRF table
separation). Whichever path runs first populates the cache, and the
other reuses it blindly, bypassing its own lookup.&lt;/p&gt;
&lt;p&gt;Fix this by splitting the cache into cache_input and cache_output,
so each path maintains its own cached dst independently.(CVE-2026-31668)&lt;/p&gt;
&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;RDMA/rxe: Fix iova-to-va conversion for MR page sizes != PAGE_SIZE&lt;/p&gt;
&lt;p&gt;The current implementation incorrectly handles memory regions (MRs) with
page sizes different from the system PAGE_SIZE. The core issue is that
rxe_set_page() is called with mr-&amp;amp;gt;page_size step increments, but the
page_list stores individual struct page pointers, each representing
PAGE_SIZE of memory.&lt;/p&gt;
&lt;p&gt;ib_sg_to_page() has ensured that when i&amp;amp;gt;=1 either
a) SG[i-1].dma_end and SG[i].dma_addr are contiguous
or
b) SG[i-1].dma_end and SG[i].dma_addr are mr-&amp;amp;gt;page_size aligned.&lt;/p&gt;
&lt;p&gt;This leads to incorrect iova-to-va conversion in scenarios:&lt;/p&gt;
&lt;p&gt;1) page_size &amp;amp;lt; PAGE_SIZE (e.g., MR: 4K, system: 64K):
   ibmr-&amp;amp;gt;iova = 0x1…&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/oesa-2026-3707</guid>
    </item>
    <item>
      <title>UBUNTU-CVE-2026-74726</title>
      <link>https://cve.radiocsirt.org/vuln/ubuntu-cve-2026-74726</link>
      <description>&lt;p&gt;&lt;strong&gt;Affected:&lt;/strong&gt; Ubuntu:Pro:14.04:LTS: linux, Ubuntu:Pro:14.04:LTS: linux-aws, Ubuntu:Pro:14.04:LTS: linux-azure, Ubuntu:Pro:14.04:LTS: linux-lts-xenial, Ubuntu:Pro:16.04:LTS: linux, Ubuntu:Pro:16.04:LTS: linux-aws, Ubuntu:Pro:16.04:LTS: linux-aws-hwe, Ubuntu:Pro:16.04:LTS: linux-azure, Ubuntu:Pro:16.04:LTS: linux-gcp, Ubuntu:Pro:16.04:LTS: linux-hwe and 246 more&lt;/p&gt;
&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved: bonding: alb: re-check primary_is_promisc under RTNL in bond_alb_monitor bond_alb_monitor() reads primary_is_promisc under RCU, then drops RCU and takes RTNL via rtnl_trylock() before undoing the promiscuity it set on the active slave. In that window the active slave can change under RTNL (RTM_DELLINK -&amp;gt; __bond_release_one() -&amp;gt; bond_alb_handle_active_change()), which already drops the promiscuity and clears primary_is_promisc. The monitor still acts on the stale decision: if the slave was removed with no failover, curr_active_slave is now NULL and the deref faults; if it failed over, the stale dev_set_promiscuity(-1) underflows the new slave&amp;#39;s promiscuity counter and pins it in IFF_PROMISC.   Oops: general protection fault, probably for non-canonical address ...   KASAN: null-ptr-deref in range [0x0000000000000000-0x0000000000000007]   Workqueue: b42 bond_alb_monitor   RIP: 0010:bond_alb_monitor (drivers/net/bonding/bond_alb.c:1600)    process_one_work (kernel/workqueue.c:3322)    worker_thread (kernel/workqueue.c:3486)    kthread (kernel/kthread.c:436)    ret_from_fork (arch/x86/kernel/process.c:158)   Kernel panic - not syncing: Fatal exception Re-check primary_is_promisc (and curr_active_slave) after taking RTNL so the monitor only undoes an increment it still owns. The other bonding monitors already re-read state under RTNL in their commit phase (bond_miimon_commit/bond_ab_arp_commit); bond_alb_monitor()…&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;&lt;strong&gt;Affected:&lt;/strong&gt; Ubuntu:Pro:14.04:LTS: linux, Ubuntu:Pro:14.04:LTS: linux-aws, Ubuntu:Pro:14.04:LTS: linux-azure, Ubuntu:Pro:14.04:LTS: linux-lts-xenial, Ubuntu:Pro:16.04:LTS: linux, Ubuntu:Pro:16.04:LTS: linux-aws, Ubuntu:Pro:16.04:LTS: linux-aws-hwe, Ubuntu:Pro:16.04:LTS: linux-azure, Ubuntu:Pro:16.04:LTS: linux-gcp, Ubuntu:Pro:16.04:LTS: linux-hwe and 246 more&lt;/p&gt;
&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved: bonding: alb: re-check primary_is_promisc under RTNL in bond_alb_monitor bond_alb_monitor() reads primary_is_promisc under RCU, then drops RCU and takes RTNL via rtnl_trylock() before undoing the promiscuity it set on the active slave. In that window the active slave can change under RTNL (RTM_DELLINK -&amp;gt; __bond_release_one() -&amp;gt; bond_alb_handle_active_change()), which already drops the promiscuity and clears primary_is_promisc. The monitor still acts on the stale decision: if the slave was removed with no failover, curr_active_slave is now NULL and the deref faults; if it failed over, the stale dev_set_promiscuity(-1) underflows the new slave&amp;#39;s promiscuity counter and pins it in IFF_PROMISC.   Oops: general protection fault, probably for non-canonical address ...   KASAN: null-ptr-deref in range [0x0000000000000000-0x0000000000000007]   Workqueue: b42 bond_alb_monitor   RIP: 0010:bond_alb_monitor (drivers/net/bonding/bond_alb.c:1600)    process_one_work (kernel/workqueue.c:3322)    worker_thread (kernel/workqueue.c:3486)    kthread (kernel/kthread.c:436)    ret_from_fork (arch/x86/kernel/process.c:158)   Kernel panic - not syncing: Fatal exception Re-check primary_is_promisc (and curr_active_slave) after taking RTNL so the monitor only undoes an increment it still owns. The other bonding monitors already re-read state under RTNL in their commit phase (bond_miimon_commit/bond_ab_arp_commit); bond_alb_monitor()…&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/ubuntu-cve-2026-74726</guid>
    </item>
    <item>
      <title>WID-SEC-W-2026-2970 — Linux Kernel: Mehrere Schwachstellen ermöglichen nicht spezifizierten Angriff</title>
      <link>https://cve.radiocsirt.org/vuln/wid-sec-w-2026-2970</link>
      <description>&lt;p&gt;Ein Angreifer kann mehrere Schwachstellen im Linux Kernel ausnutzen, um einen nicht näher spezifizierten Angriff durchzuführen, möglicherweise Sicherheitsmaßnahmen zu umgehen, einen Denial-of-Service-Zustand herbeizuführen oder vertrauliche Informationen offenzulegen.&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;Ein Angreifer kann mehrere Schwachstellen im Linux Kernel ausnutzen, um einen nicht näher spezifizierten Angriff durchzuführen, möglicherweise Sicherheitsmaßnahmen zu umgehen, einen Denial-of-Service-Zustand herbeizuführen oder vertrauliche Informationen offenzulegen.&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/wid-sec-w-2026-2970</guid>
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