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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 06:51:44 +0000</lastBuildDate>
    <item>
      <title>Withdrawn: BELL-CVE-2026-89518 — CVE-2026-89518 does not affect BellSoft software</title>
      <link>https://cve.radiocsirt.org/vuln/bell-cve-2026-89518</link>
      <description>&lt;p&gt;&lt;strong&gt;Withdrawn by the publisher.&lt;/strong&gt;&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;&lt;strong&gt;Withdrawn by the publisher.&lt;/strong&gt;&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/bell-cve-2026-89518</guid>
    </item>
    <item>
      <title>EUVD-2026-367009</title>
      <link>https://cve.radiocsirt.org/vuln/euvd-2026-367009</link>
      <description>EUVD-2026-367009</description>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/euvd-2026-367009</guid>
    </item>
    <item>
      <title>fkie_cve-2026-89518</title>
      <link>https://cve.radiocsirt.org/vuln/fkie_cve-2026-89518</link>
      <description>&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;sched_ext: Fix this_rq() assumptions in dispatch kfuncs&lt;/p&gt;
&lt;p&gt;Under core scheduling, dispatch runs from within the core-wide pick and can
target a sibling rq, so ops.dispatch() may execute on a CPU different from
the dispatched rq&amp;#39;s. Several kfunc paths assumed the two always coincide:&lt;/p&gt;
&lt;p&gt;- scx_dsq_move() decided whether an rq lock is held by testing this_rq()&amp;#39;s
  rq flags and lock-danced accordingly. A dispatch for a sibling took the
  unlocked-context branch and acquired the source rq lock on top of the
  already held dispatched rq lock which could deadlock.&lt;/p&gt;
&lt;p&gt;- scx_bpf_sub_dispatch() dispatched this_rq() with its stashed
  sub_dispatch_prev, which is NULL when dispatching for a sibling.&lt;/p&gt;
&lt;p&gt;- finish_dispatch(), scx_bpf_dsq_reenq() and scx_bpf_dsq_nr_queued()
  resolved SCX_DSQ_LOCAL to this CPU&amp;#39;s local DSQ rather than the dispatched
  rq&amp;#39;s. The latter two are callable from other rq-locked operations too,
  where SCX_DSQ_LOCAL now likewise resolves to the op&amp;#39;s rq. This changes
  behavior also without core scheduling, e.g. for ops.enqueue() running a
  remote wakeup on the waking CPU, and is intended: which CPU happens to
  execute an operation is incidental, the op&amp;#39;s rq is what it is operating
  on, and the resolution now matches the insert side where SCX_DSQ_LOCAL
  dispatches land on the task&amp;#39;s rq.&lt;/p&gt;
&lt;p&gt;Use the rq tracked by scx_locked_rq(), which is set to the dispatched rq
around ops invocations and NULL in unlocked…&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;sched_ext: Fix this_rq() assumptions in dispatch kfuncs&lt;/p&gt;
&lt;p&gt;Under core scheduling, dispatch runs from within the core-wide pick and can
target a sibling rq, so ops.dispatch() may execute on a CPU different from
the dispatched rq&amp;#39;s. Several kfunc paths assumed the two always coincide:&lt;/p&gt;
&lt;p&gt;- scx_dsq_move() decided whether an rq lock is held by testing this_rq()&amp;#39;s
  rq flags and lock-danced accordingly. A dispatch for a sibling took the
  unlocked-context branch and acquired the source rq lock on top of the
  already held dispatched rq lock which could deadlock.&lt;/p&gt;
&lt;p&gt;- scx_bpf_sub_dispatch() dispatched this_rq() with its stashed
  sub_dispatch_prev, which is NULL when dispatching for a sibling.&lt;/p&gt;
&lt;p&gt;- finish_dispatch(), scx_bpf_dsq_reenq() and scx_bpf_dsq_nr_queued()
  resolved SCX_DSQ_LOCAL to this CPU&amp;#39;s local DSQ rather than the dispatched
  rq&amp;#39;s. The latter two are callable from other rq-locked operations too,
  where SCX_DSQ_LOCAL now likewise resolves to the op&amp;#39;s rq. This changes
  behavior also without core scheduling, e.g. for ops.enqueue() running a
  remote wakeup on the waking CPU, and is intended: which CPU happens to
  execute an operation is incidental, the op&amp;#39;s rq is what it is operating
  on, and the resolution now matches the insert side where SCX_DSQ_LOCAL
  dispatches land on the task&amp;#39;s rq.&lt;/p&gt;
&lt;p&gt;Use the rq tracked by scx_locked_rq(), which is set to the dispatched rq
around ops invocations and NULL in unlocked…&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/fkie_cve-2026-89518</guid>
    </item>
    <item>
      <title>GHSA-45rw-88gp-h7jx</title>
      <link>https://cve.radiocsirt.org/vuln/ghsa-45rw-88gp-h7jx</link>
      <description>&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;sched_ext: Fix this_rq() assumptions in dispatch kfuncs&lt;/p&gt;
&lt;p&gt;Under core scheduling, dispatch runs from within the core-wide pick and can
target a sibling rq, so ops.dispatch() may execute on a CPU different from
the dispatched rq&amp;#39;s. Several kfunc paths assumed the two always coincide:&lt;/p&gt;
&lt;p&gt;- scx_dsq_move() decided whether an rq lock is held by testing this_rq()&amp;#39;s
  rq flags and lock-danced accordingly. A dispatch for a sibling took the
  unlocked-context branch and acquired the source rq lock on top of the
  already held dispatched rq lock which could deadlock.&lt;/p&gt;
&lt;p&gt;- scx_bpf_sub_dispatch() dispatched this_rq() with its stashed
  sub_dispatch_prev, which is NULL when dispatching for a sibling.&lt;/p&gt;
&lt;p&gt;- finish_dispatch(), scx_bpf_dsq_reenq() and scx_bpf_dsq_nr_queued()
  resolved SCX_DSQ_LOCAL to this CPU&amp;#39;s local DSQ rather than the dispatched
  rq&amp;#39;s. The latter two are callable from other rq-locked operations too,
  where SCX_DSQ_LOCAL now likewise resolves to the op&amp;#39;s rq. This changes
  behavior also without core scheduling, e.g. for ops.enqueue() running a
  remote wakeup on the waking CPU, and is intended: which CPU happens to
  execute an operation is incidental, the op&amp;#39;s rq is what it is operating
  on, and the resolution now matches the insert side where SCX_DSQ_LOCAL
  dispatches land on the task&amp;#39;s rq.&lt;/p&gt;
&lt;p&gt;Use the rq tracked by scx_locked_rq(), which is set to the dispatched rq
around ops invocations and NULL in unlocked…&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;sched_ext: Fix this_rq() assumptions in dispatch kfuncs&lt;/p&gt;
&lt;p&gt;Under core scheduling, dispatch runs from within the core-wide pick and can
target a sibling rq, so ops.dispatch() may execute on a CPU different from
the dispatched rq&amp;#39;s. Several kfunc paths assumed the two always coincide:&lt;/p&gt;
&lt;p&gt;- scx_dsq_move() decided whether an rq lock is held by testing this_rq()&amp;#39;s
  rq flags and lock-danced accordingly. A dispatch for a sibling took the
  unlocked-context branch and acquired the source rq lock on top of the
  already held dispatched rq lock which could deadlock.&lt;/p&gt;
&lt;p&gt;- scx_bpf_sub_dispatch() dispatched this_rq() with its stashed
  sub_dispatch_prev, which is NULL when dispatching for a sibling.&lt;/p&gt;
&lt;p&gt;- finish_dispatch(), scx_bpf_dsq_reenq() and scx_bpf_dsq_nr_queued()
  resolved SCX_DSQ_LOCAL to this CPU&amp;#39;s local DSQ rather than the dispatched
  rq&amp;#39;s. The latter two are callable from other rq-locked operations too,
  where SCX_DSQ_LOCAL now likewise resolves to the op&amp;#39;s rq. This changes
  behavior also without core scheduling, e.g. for ops.enqueue() running a
  remote wakeup on the waking CPU, and is intended: which CPU happens to
  execute an operation is incidental, the op&amp;#39;s rq is what it is operating
  on, and the resolution now matches the insert side where SCX_DSQ_LOCAL
  dispatches land on the task&amp;#39;s rq.&lt;/p&gt;
&lt;p&gt;Use the rq tracked by scx_locked_rq(), which is set to the dispatched rq
around ops invocations and NULL in unlocked…&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/ghsa-45rw-88gp-h7jx</guid>
    </item>
    <item>
      <title>openSUSE-SU-2026:11880-1 — kernel-devel-7.2.7-1.1 on GA media</title>
      <link>https://cve.radiocsirt.org/vuln/opensuse-su-2026:11880-1</link>
      <description>&lt;p&gt;kernel-devel-7.2.7-1.1 on GA media&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;kernel-devel-7.2.7-1.1 on GA media&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/opensuse-su-2026:11880-1</guid>
    </item>
    <item>
      <title>UBUNTU-CVE-2026-89518</title>
      <link>https://cve.radiocsirt.org/vuln/ubuntu-cve-2026-89518</link>
      <description>&lt;p&gt;&lt;strong&gt;Affected:&lt;/strong&gt; Ubuntu:16.04:LTS: linux-hwe-edge, Ubuntu:18.04:LTS: linux-aws-5.0, Ubuntu:18.04:LTS: linux-aws-5.3, Ubuntu:18.04:LTS: linux-azure, Ubuntu:18.04:LTS: linux-azure-5.3, Ubuntu:18.04:LTS: linux-azure-edge, Ubuntu:18.04:LTS: linux-gcp, Ubuntu:18.04:LTS: linux-gcp-5.3, Ubuntu:18.04:LTS: linux-gke-4.15, Ubuntu:18.04:LTS: linux-gke-5.4 and 118 more&lt;/p&gt;
&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved: sched_ext: Fix this_rq() assumptions in dispatch kfuncs Under core scheduling, dispatch runs from within the core-wide pick and can target a sibling rq, so ops.dispatch() may execute on a CPU different from the dispatched rq&amp;#39;s. Several kfunc paths assumed the two always coincide: - scx_dsq_move() decided whether an rq lock is held by testing this_rq()&amp;#39;s   rq flags and lock-danced accordingly. A dispatch for a sibling took the   unlocked-context branch and acquired the source rq lock on top of the   already held dispatched rq lock which could deadlock. - scx_bpf_sub_dispatch() dispatched this_rq() with its stashed   sub_dispatch_prev, which is NULL when dispatching for a sibling. - finish_dispatch(), scx_bpf_dsq_reenq() and scx_bpf_dsq_nr_queued()   resolved SCX_DSQ_LOCAL to this CPU&amp;#39;s local DSQ rather than the dispatched   rq&amp;#39;s. The latter two are callable from other rq-locked operations too,   where SCX_DSQ_LOCAL now likewise resolves to the op&amp;#39;s rq. This changes   behavior also without core scheduling, e.g. for ops.enqueue() running a   remote wakeup on the waking CPU, and is intended: which CPU happens to   execute an operation is incidental, the op&amp;#39;s rq is what it is operating   on, and the resolution now matches the insert side where SCX_DSQ_LOCAL   dispatches land on the task&amp;#39;s rq. Use the rq tracked by scx_locked_rq(), which is set to the dispatched rq around ops invocations and NULL in unlocked conte…&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;&lt;strong&gt;Affected:&lt;/strong&gt; Ubuntu:16.04:LTS: linux-hwe-edge, Ubuntu:18.04:LTS: linux-aws-5.0, Ubuntu:18.04:LTS: linux-aws-5.3, Ubuntu:18.04:LTS: linux-azure, Ubuntu:18.04:LTS: linux-azure-5.3, Ubuntu:18.04:LTS: linux-azure-edge, Ubuntu:18.04:LTS: linux-gcp, Ubuntu:18.04:LTS: linux-gcp-5.3, Ubuntu:18.04:LTS: linux-gke-4.15, Ubuntu:18.04:LTS: linux-gke-5.4 and 118 more&lt;/p&gt;
&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved: sched_ext: Fix this_rq() assumptions in dispatch kfuncs Under core scheduling, dispatch runs from within the core-wide pick and can target a sibling rq, so ops.dispatch() may execute on a CPU different from the dispatched rq&amp;#39;s. Several kfunc paths assumed the two always coincide: - scx_dsq_move() decided whether an rq lock is held by testing this_rq()&amp;#39;s   rq flags and lock-danced accordingly. A dispatch for a sibling took the   unlocked-context branch and acquired the source rq lock on top of the   already held dispatched rq lock which could deadlock. - scx_bpf_sub_dispatch() dispatched this_rq() with its stashed   sub_dispatch_prev, which is NULL when dispatching for a sibling. - finish_dispatch(), scx_bpf_dsq_reenq() and scx_bpf_dsq_nr_queued()   resolved SCX_DSQ_LOCAL to this CPU&amp;#39;s local DSQ rather than the dispatched   rq&amp;#39;s. The latter two are callable from other rq-locked operations too,   where SCX_DSQ_LOCAL now likewise resolves to the op&amp;#39;s rq. This changes   behavior also without core scheduling, e.g. for ops.enqueue() running a   remote wakeup on the waking CPU, and is intended: which CPU happens to   execute an operation is incidental, the op&amp;#39;s rq is what it is operating   on, and the resolution now matches the insert side where SCX_DSQ_LOCAL   dispatches land on the task&amp;#39;s rq. Use the rq tracked by scx_locked_rq(), which is set to the dispatched rq around ops invocations and NULL in unlocked conte…&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/ubuntu-cve-2026-89518</guid>
    </item>
    <item>
      <title>WID-SEC-W-2026-3321 — Linux Kernel: Mehrere Schwachstellen</title>
      <link>https://cve.radiocsirt.org/vuln/wid-sec-w-2026-3321</link>
      <description>&lt;p&gt;Ein Angreifer kann mehrere Schwachstellen im Linux Kernel ausnutzen, um Sicherheitsmaßnahmen zu umgehen, Daten oder den Systemzustand zu manipulieren, Denial-of-Service-Zustände herbeizuführen oder andere, nicht näher spezifizierte Angriffe durchzuführen.&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;Ein Angreifer kann mehrere Schwachstellen im Linux Kernel ausnutzen, um Sicherheitsmaßnahmen zu umgehen, Daten oder den Systemzustand zu manipulieren, Denial-of-Service-Zustände herbeizuführen oder andere, nicht näher spezifizierte Angriffe durchzuführen.&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/wid-sec-w-2026-3321</guid>
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