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  <updated>2026-10-01T11:08:12.951749+00:00</updated>
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  <entry>
    <id>https://vulnerability.circl.lu/vuln/cve-2024-50229</id>
    <title>CVE-2024-50229 — nilfs2: fix potential deadlock with newly created symlinks</title>
    <updated>2026-10-01T11:08:13.745143+00:00</updated>
    <content type="xhtml">
      <div xmlns="http://www.w3.org/1999/xhtml"><p><strong>Affected:</strong> Linux</p>
<p>In the Linux kernel, the following vulnerability has been resolved:</p>
<p>nilfs2: fix potential deadlock with newly created symlinks</p>
<p>Syzbot reported that page_symlink(), called by nilfs_symlink(), triggers
memory reclamation involving the filesystem layer, which can result in
circular lock dependencies among the reader/writer semaphore
nilfs-&gt;ns_segctor_sem, s_writers percpu_rwsem (intwrite) and the
fs_reclaim pseudo lock.</p>
<p>This is because after commit 21fc61c73c39 ("don't put symlink bodies in
pagecache into highmem"), the gfp flags of the page cache for symbolic
links are overwritten to GFP_KERNEL via inode_nohighmem().</p>
<p>This is not a problem for symlinks read from the backing device, because
the __GFP_FS flag is dropped after inode_nohighmem() is called.  However,
when a new symlink is created with nilfs_symlink(), the gfp flags remain
overwritten to GFP_KERNEL.  Then, memory allocation called from
page_symlink() etc.  triggers memory reclamation including the FS layer,
which may call nilfs_evict_inode() or nilfs_dirty_inode().  And these can
cause a deadlock if they are called while nilfs-&gt;ns_segctor_sem is held:</p>
<p>Fix this issue by dropping the __GFP_FS flag from the page cache GFP flags
of newly created symlinks in the same way that nilfs_new_inode() and
__nilfs_read_inode() do, as a workaround until we adopt nofs allocation
scope consistently or improve the locking constraints.</p></div>
    </content>
    <link href="https://vulnerability.circl.lu/vuln/cve-2024-50229"/>
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