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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 23:13:47 +0000</lastBuildDate>
    <item>
      <title>BELL-CVE-2026-90001</title>
      <link>https://cve.radiocsirt.org/vuln/bell-cve-2026-90001</link>
      <description>&lt;p&gt;&lt;strong&gt;Affected:&lt;/strong&gt; 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:25: linux-lts, Alpaquita:stream: linux-lts&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/bell-cve-2026-90001</guid>
    </item>
    <item>
      <title>certfr-2026-avi-1253 — De multiples vulnérabilités ont été découvertes dans le noyau Linux de Debian. Certaines d'entre elles permettent à un…</title>
      <link>https://cve.radiocsirt.org/vuln/certfr-2026-avi-1253</link>
      <description>certfr-2026-avi-1253</description>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/certfr-2026-avi-1253</guid>
    </item>
    <item>
      <title>EUVD-2026-369512</title>
      <link>https://cve.radiocsirt.org/vuln/euvd-2026-369512</link>
      <description>EUVD-2026-369512</description>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/euvd-2026-369512</guid>
    </item>
    <item>
      <title>fkie_cve-2026-90001</title>
      <link>https://cve.radiocsirt.org/vuln/fkie_cve-2026-90001</link>
      <description>&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;HID: bpf: serialize device reference release in struct_ops destroy path&lt;/p&gt;
&lt;p&gt;__hid_bpf_ops_destroy_device() and hid_bpf_unreg() can race on the
same registration reference, double-putting struct hid_device and
freeing it while hid_destroy_device() still uses it.  Serialize the
remove/NULL decision under hdev-&amp;gt;bpf.prog_list_lock so exactly one
path releases each registration reference: unreg re-checks ops-&amp;gt;hdev
under the lock and returns without putting when the destroy path
already cleared it; all put_device() calls happen after the lock is
dropped, which is safe because a concurrent unreg then observes
ops-&amp;gt;hdev == NULL under the lock.&lt;/p&gt;
&lt;p&gt;Background: each successful attach (hid_bpf_ops_reg) acquires one
device reference (hid_get_device()).  Two paths can release it:&lt;/p&gt;
&lt;p&gt;- device destruction: hid_destroy_device() -&amp;gt; hid_bpf_destroy_device()
  -&amp;gt; __hid_bpf_ops_destroy_device(), which walks hdev-&amp;gt;bpf.prog_list
  under rcu_read_lock() and drops one reference per attached program;
- BPF link release: bpf map delete (no BPF_F_LINK) synchronously calls
  st_ops-&amp;gt;unreg() -&amp;gt; hid_bpf_unreg(), which drops the reference for
  its own registration.&lt;/p&gt;
&lt;p&gt;The coordination handshake (e-&amp;gt;hdev = NULL on the destroy side vs
&amp;#34;if (!hdev) return&amp;#34; on the unreg side) is a TOCTOU check: the two
paths run under different lock domains (rcu_read_lock vs
prog_list_lock), so a concurrent unreg can read ops-&amp;gt;hdev as
non-NULL, block on prog_list_lock…&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;HID: bpf: serialize device reference release in struct_ops destroy path&lt;/p&gt;
&lt;p&gt;__hid_bpf_ops_destroy_device() and hid_bpf_unreg() can race on the
same registration reference, double-putting struct hid_device and
freeing it while hid_destroy_device() still uses it.  Serialize the
remove/NULL decision under hdev-&amp;gt;bpf.prog_list_lock so exactly one
path releases each registration reference: unreg re-checks ops-&amp;gt;hdev
under the lock and returns without putting when the destroy path
already cleared it; all put_device() calls happen after the lock is
dropped, which is safe because a concurrent unreg then observes
ops-&amp;gt;hdev == NULL under the lock.&lt;/p&gt;
&lt;p&gt;Background: each successful attach (hid_bpf_ops_reg) acquires one
device reference (hid_get_device()).  Two paths can release it:&lt;/p&gt;
&lt;p&gt;- device destruction: hid_destroy_device() -&amp;gt; hid_bpf_destroy_device()
  -&amp;gt; __hid_bpf_ops_destroy_device(), which walks hdev-&amp;gt;bpf.prog_list
  under rcu_read_lock() and drops one reference per attached program;
- BPF link release: bpf map delete (no BPF_F_LINK) synchronously calls
  st_ops-&amp;gt;unreg() -&amp;gt; hid_bpf_unreg(), which drops the reference for
  its own registration.&lt;/p&gt;
&lt;p&gt;The coordination handshake (e-&amp;gt;hdev = NULL on the destroy side vs
&amp;#34;if (!hdev) return&amp;#34; on the unreg side) is a TOCTOU check: the two
paths run under different lock domains (rcu_read_lock vs
prog_list_lock), so a concurrent unreg can read ops-&amp;gt;hdev as
non-NULL, block on prog_list_lock…&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/fkie_cve-2026-90001</guid>
    </item>
    <item>
      <title>GHSA-7wpm-8hvh-3rp4</title>
      <link>https://cve.radiocsirt.org/vuln/ghsa-7wpm-8hvh-3rp4</link>
      <description>&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved:&lt;/p&gt;
&lt;p&gt;HID: bpf: serialize device reference release in struct_ops destroy path&lt;/p&gt;
&lt;p&gt;__hid_bpf_ops_destroy_device() and hid_bpf_unreg() can race on the
same registration reference, double-putting struct hid_device and
freeing it while hid_destroy_device() still uses it.  Serialize the
remove/NULL decision under hdev-&amp;gt;bpf.prog_list_lock so exactly one
path releases each registration reference: unreg re-checks ops-&amp;gt;hdev
under the lock and returns without putting when the destroy path
already cleared it; all put_device() calls happen after the lock is
dropped, which is safe because a concurrent unreg then observes
ops-&amp;gt;hdev == NULL under the lock.&lt;/p&gt;
&lt;p&gt;Background: each successful attach (hid_bpf_ops_reg) acquires one
device reference (hid_get_device()).  Two paths can release it:&lt;/p&gt;
&lt;p&gt;- device destruction: hid_destroy_device() -&amp;gt; hid_bpf_destroy_device()
  -&amp;gt; __hid_bpf_ops_destroy_device(), which walks hdev-&amp;gt;bpf.prog_list
  under rcu_read_lock() and drops one reference per attached program;
- BPF link release: bpf map delete (no BPF_F_LINK) synchronously calls
  st_ops-&amp;gt;unreg() -&amp;gt; hid_bpf_unreg(), which drops the reference for
  its own registration.&lt;/p&gt;
&lt;p&gt;The coordination handshake (e-&amp;gt;hdev = NULL on the destroy side vs
&amp;#34;if (!hdev) return&amp;#34; on the unreg side) is a TOCTOU check: the two
paths run under different lock domains (rcu_read_lock vs
prog_list_lock), so a concurrent unreg can read ops-&amp;gt;hdev as
non-NULL, block on prog_list_lock…&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;HID: bpf: serialize device reference release in struct_ops destroy path&lt;/p&gt;
&lt;p&gt;__hid_bpf_ops_destroy_device() and hid_bpf_unreg() can race on the
same registration reference, double-putting struct hid_device and
freeing it while hid_destroy_device() still uses it.  Serialize the
remove/NULL decision under hdev-&amp;gt;bpf.prog_list_lock so exactly one
path releases each registration reference: unreg re-checks ops-&amp;gt;hdev
under the lock and returns without putting when the destroy path
already cleared it; all put_device() calls happen after the lock is
dropped, which is safe because a concurrent unreg then observes
ops-&amp;gt;hdev == NULL under the lock.&lt;/p&gt;
&lt;p&gt;Background: each successful attach (hid_bpf_ops_reg) acquires one
device reference (hid_get_device()).  Two paths can release it:&lt;/p&gt;
&lt;p&gt;- device destruction: hid_destroy_device() -&amp;gt; hid_bpf_destroy_device()
  -&amp;gt; __hid_bpf_ops_destroy_device(), which walks hdev-&amp;gt;bpf.prog_list
  under rcu_read_lock() and drops one reference per attached program;
- BPF link release: bpf map delete (no BPF_F_LINK) synchronously calls
  st_ops-&amp;gt;unreg() -&amp;gt; hid_bpf_unreg(), which drops the reference for
  its own registration.&lt;/p&gt;
&lt;p&gt;The coordination handshake (e-&amp;gt;hdev = NULL on the destroy side vs
&amp;#34;if (!hdev) return&amp;#34; on the unreg side) is a TOCTOU check: the two
paths run under different lock domains (rcu_read_lock vs
prog_list_lock), so a concurrent unreg can read ops-&amp;gt;hdev as
non-NULL, block on prog_list_lock…&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/ghsa-7wpm-8hvh-3rp4</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-2026-90001</title>
      <link>https://cve.radiocsirt.org/vuln/ubuntu-cve-2026-90001</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 120 more&lt;/p&gt;
&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved: HID: bpf: serialize device reference release in struct_ops destroy path __hid_bpf_ops_destroy_device() and hid_bpf_unreg() can race on the same registration reference, double-putting struct hid_device and freeing it while hid_destroy_device() still uses it.  Serialize the remove/NULL decision under hdev-&amp;gt;bpf.prog_list_lock so exactly one path releases each registration reference: unreg re-checks ops-&amp;gt;hdev under the lock and returns without putting when the destroy path already cleared it; all put_device() calls happen after the lock is dropped, which is safe because a concurrent unreg then observes ops-&amp;gt;hdev == NULL under the lock. Background: each successful attach (hid_bpf_ops_reg) acquires one device reference (hid_get_device()).  Two paths can release it: - device destruction: hid_destroy_device() -&amp;gt; hid_bpf_destroy_device()   -&amp;gt; __hid_bpf_ops_destroy_device(), which walks hdev-&amp;gt;bpf.prog_list   under rcu_read_lock() and drops one reference per attached program; - BPF link release: bpf map delete (no BPF_F_LINK) synchronously calls   st_ops-&amp;gt;unreg() -&amp;gt; hid_bpf_unreg(), which drops the reference for   its own registration. The coordination handshake (e-&amp;gt;hdev = NULL on the destroy side vs &amp;#34;if (!hdev) return&amp;#34; on the unreg side) is a TOCTOU check: the two paths run under different lock domains (rcu_read_lock vs prog_list_lock), so a concurrent unreg can read ops-&amp;gt;hdev as non-NULL, block on prog_list_lock, and…&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 120 more&lt;/p&gt;
&lt;p&gt;In the Linux kernel, the following vulnerability has been resolved: HID: bpf: serialize device reference release in struct_ops destroy path __hid_bpf_ops_destroy_device() and hid_bpf_unreg() can race on the same registration reference, double-putting struct hid_device and freeing it while hid_destroy_device() still uses it.  Serialize the remove/NULL decision under hdev-&amp;gt;bpf.prog_list_lock so exactly one path releases each registration reference: unreg re-checks ops-&amp;gt;hdev under the lock and returns without putting when the destroy path already cleared it; all put_device() calls happen after the lock is dropped, which is safe because a concurrent unreg then observes ops-&amp;gt;hdev == NULL under the lock. Background: each successful attach (hid_bpf_ops_reg) acquires one device reference (hid_get_device()).  Two paths can release it: - device destruction: hid_destroy_device() -&amp;gt; hid_bpf_destroy_device()   -&amp;gt; __hid_bpf_ops_destroy_device(), which walks hdev-&amp;gt;bpf.prog_list   under rcu_read_lock() and drops one reference per attached program; - BPF link release: bpf map delete (no BPF_F_LINK) synchronously calls   st_ops-&amp;gt;unreg() -&amp;gt; hid_bpf_unreg(), which drops the reference for   its own registration. The coordination handshake (e-&amp;gt;hdev = NULL on the destroy side vs &amp;#34;if (!hdev) return&amp;#34; on the unreg side) is a TOCTOU check: the two paths run under different lock domains (rcu_read_lock vs prog_list_lock), so a concurrent unreg can read ops-&amp;gt;hdev as non-NULL, block on prog_list_lock, and…&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/ubuntu-cve-2026-90001</guid>
    </item>
    <item>
      <title>WID-SEC-W-2026-3438 — Linux Kernel: Mehrere Schwachstellen</title>
      <link>https://cve.radiocsirt.org/vuln/wid-sec-w-2026-3438</link>
      <description>&lt;p&gt;Ein lokaler Angreifer kann mehrere Schwachstellen im Linux Kernel ausnutzen, um einen Denial of Service zu verursachen oder eine nicht näher spezifizierte Auswirkung zu erzielen.&lt;/p&gt;</description>
      <content:encoded>&lt;p&gt;Ein lokaler Angreifer kann mehrere Schwachstellen im Linux Kernel ausnutzen, um einen Denial of Service zu verursachen oder eine nicht näher spezifizierte Auswirkung zu erzielen.&lt;/p&gt;</content:encoded>
      <guid isPermaLink="false">https://cve.radiocsirt.org/vuln/wid-sec-w-2026-3438</guid>
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