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<title>user/sven/linux.git/certs, branch v4.9.254</title>
<subtitle>Linux Kernel
</subtitle>
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<updated>2018-09-09T18:01:23Z</updated>
<entry>
<title>Replace magic for trusting the secondary keyring with #define</title>
<updated>2018-09-09T18:01:23Z</updated>
<author>
<name>Yannik Sembritzki</name>
<email>yannik@sembritzki.me</email>
</author>
<published>2018-08-16T13:05:10Z</published>
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<id>urn:sha1:40b08cdac9ae0877dd39d2dcfe2f8c7c68c8ce59</id>
<content type='text'>
commit 817aef260037f33ee0f44c17fe341323d3aebd6d upstream.

Replace the use of a magic number that indicates that verify_*_signature()
should use the secondary keyring with a symbol.

Signed-off-by: Yannik Sembritzki &lt;yannik@sembritzki.me&gt;
Signed-off-by: David Howells &lt;dhowells@redhat.com&gt;
Cc: keyrings@vger.kernel.org
Cc: linux-security-module@vger.kernel.org
Signed-off-by: Linus Torvalds &lt;torvalds@linux-foundation.org&gt;
Signed-off-by: Greg Kroah-Hartman &lt;gregkh@linuxfoundation.org&gt;

</content>
</entry>
<entry>
<title>certs: Add a secondary system keyring that can be added to dynamically</title>
<updated>2016-04-11T21:48:09Z</updated>
<author>
<name>David Howells</name>
<email>dhowells@redhat.com</email>
</author>
<published>2016-04-06T15:14:27Z</published>
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<id>urn:sha1:d3bfe84129f65e0af2450743ebdab33d161d01c9</id>
<content type='text'>
Add a secondary system keyring that can be added to by root whilst the
system is running - provided the key being added is vouched for by a key
built into the kernel or already added to the secondary keyring.

Rename .system_keyring to .builtin_trusted_keys to distinguish it more
obviously from the new keyring (called .secondary_trusted_keys).

The new keyring needs to be enabled with CONFIG_SECONDARY_TRUSTED_KEYRING.

If the secondary keyring is enabled, a link is created from that to
.builtin_trusted_keys so that the the latter will automatically be searched
too if the secondary keyring is searched.

Signed-off-by: David Howells &lt;dhowells@redhat.com&gt;
</content>
</entry>
<entry>
<title>KEYS: Remove KEY_FLAG_TRUSTED and KEY_ALLOC_TRUSTED</title>
<updated>2016-04-11T21:44:15Z</updated>
<author>
<name>David Howells</name>
<email>dhowells@redhat.com</email>
</author>
<published>2016-04-06T15:14:26Z</published>
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<id>urn:sha1:77f68bac9481ad440f4f34dda3d28c2dce6eb87b</id>
<content type='text'>
Remove KEY_FLAG_TRUSTED and KEY_ALLOC_TRUSTED as they're no longer
meaningful.  Also we can drop the trusted flag from the preparse structure.

Given this, we no longer need to pass the key flags through to
restrict_link().

Further, we can now get rid of keyring_restrict_trusted_only() also.

Signed-off-by: David Howells &lt;dhowells@redhat.com&gt;
</content>
</entry>
<entry>
<title>KEYS: Move the point of trust determination to __key_link()</title>
<updated>2016-04-11T21:43:43Z</updated>
<author>
<name>David Howells</name>
<email>dhowells@redhat.com</email>
</author>
<published>2016-04-06T15:14:26Z</published>
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<id>urn:sha1:a511e1af8b12f44c6e55786c463c9f093c214fb6</id>
<content type='text'>
Move the point at which a key is determined to be trustworthy to
__key_link() so that we use the contents of the keyring being linked in to
to determine whether the key being linked in is trusted or not.

What is 'trusted' then becomes a matter of what's in the keyring.

Currently, the test is done when the key is parsed, but given that at that
point we can only sensibly refer to the contents of the system trusted
keyring, we can only use that as the basis for working out the
trustworthiness of a new key.

With this change, a trusted keyring is a set of keys that once the
trusted-only flag is set cannot be added to except by verification through
one of the contained keys.

Further, adding a key into a trusted keyring, whilst it might grant
trustworthiness in the context of that keyring, does not automatically
grant trustworthiness in the context of a second keyring to which it could
be secondarily linked.

To accomplish this, the authentication data associated with the key source
must now be retained.  For an X.509 cert, this means the contents of the
AuthorityKeyIdentifier and the signature data.


If system keyrings are disabled then restrict_link_by_builtin_trusted()
resolves to restrict_link_reject().  The integrity digital signature code
still works correctly with this as it was previously using
KEY_FLAG_TRUSTED_ONLY, which doesn't permit anything to be added if there
is no system keyring against which trust can be determined.

Signed-off-by: David Howells &lt;dhowells@redhat.com&gt;
</content>
</entry>
<entry>
<title>KEYS: Make the system trusted keyring depend on the asymmetric key type</title>
<updated>2016-04-11T21:43:24Z</updated>
<author>
<name>David Howells</name>
<email>dhowells@redhat.com</email>
</author>
<published>2016-04-06T15:14:26Z</published>
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<id>urn:sha1:99716b7cae8263e1c7e7c1987e95d8f67071ab3e</id>
<content type='text'>
Make the system trusted keyring depend on the asymmetric key type as
there's not a lot of point having it if you can't then load asymmetric keys
onto it.

This requires the ASYMMETRIC_KEY_TYPE to be made a bool, not a tristate, as
the Kconfig language doesn't then correctly force ASYMMETRIC_KEY_TYPE to
'y' rather than 'm' if SYSTEM_TRUSTED_KEYRING is 'y'.

Making SYSTEM_TRUSTED_KEYRING *select* ASYMMETRIC_KEY_TYPE instead doesn't
work as the Kconfig interpreter then wrongly complains about dependency
loops.

Signed-off-by: David Howells &lt;dhowells@redhat.com&gt;
</content>
</entry>
<entry>
<title>KEYS: Add a facility to restrict new links into a keyring</title>
<updated>2016-04-11T21:37:37Z</updated>
<author>
<name>David Howells</name>
<email>dhowells@redhat.com</email>
</author>
<published>2016-04-06T15:14:24Z</published>
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<id>urn:sha1:5ac7eace2d00eab5ae0e9fdee63e38aee6001f7c</id>
<content type='text'>
Add a facility whereby proposed new links to be added to a keyring can be
vetted, permitting them to be rejected if necessary.  This can be used to
block public keys from which the signature cannot be verified or for which
the signature verification fails.  It could also be used to provide
blacklisting.

This affects operations like add_key(), KEYCTL_LINK and KEYCTL_INSTANTIATE.

To this end:

 (1) A function pointer is added to the key struct that, if set, points to
     the vetting function.  This is called as:

	int (*restrict_link)(struct key *keyring,
			     const struct key_type *key_type,
			     unsigned long key_flags,
			     const union key_payload *key_payload),

     where 'keyring' will be the keyring being added to, key_type and
     key_payload will describe the key being added and key_flags[*] can be
     AND'ed with KEY_FLAG_TRUSTED.

     [*] This parameter will be removed in a later patch when
     	 KEY_FLAG_TRUSTED is removed.

     The function should return 0 to allow the link to take place or an
     error (typically -ENOKEY, -ENOPKG or -EKEYREJECTED) to reject the
     link.

     The pointer should not be set directly, but rather should be set
     through keyring_alloc().

     Note that if called during add_key(), preparse is called before this
     method, but a key isn't actually allocated until after this function
     is called.

 (2) KEY_ALLOC_BYPASS_RESTRICTION is added.  This can be passed to
     key_create_or_update() or key_instantiate_and_link() to bypass the
     restriction check.

 (3) KEY_FLAG_TRUSTED_ONLY is removed.  The entire contents of a keyring
     with this restriction emplaced can be considered 'trustworthy' by
     virtue of being in the keyring when that keyring is consulted.

 (4) key_alloc() and keyring_alloc() take an extra argument that will be
     used to set restrict_link in the new key.  This ensures that the
     pointer is set before the key is published, thus preventing a window
     of unrestrictedness.  Normally this argument will be NULL.

 (5) As a temporary affair, keyring_restrict_trusted_only() is added.  It
     should be passed to keyring_alloc() as the extra argument instead of
     setting KEY_FLAG_TRUSTED_ONLY on a keyring.  This will be replaced in
     a later patch with functions that look in the appropriate places for
     authoritative keys.

Signed-off-by: David Howells &lt;dhowells@redhat.com&gt;
Reviewed-by: Mimi Zohar &lt;zohar@linux.vnet.ibm.com&gt;
</content>
</entry>
<entry>
<title>PKCS#7: Make trust determination dependent on contents of trust keyring</title>
<updated>2016-04-06T15:14:24Z</updated>
<author>
<name>David Howells</name>
<email>dhowells@redhat.com</email>
</author>
<published>2016-04-06T15:14:24Z</published>
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<id>urn:sha1:bda850cd214e90b1be0cc25bc48c4f6ac53eb543</id>
<content type='text'>
Make the determination of the trustworthiness of a key dependent on whether
a key that can verify it is present in the supplied ring of trusted keys
rather than whether or not the verifying key has KEY_FLAG_TRUSTED set.

verify_pkcs7_signature() will return -ENOKEY if the PKCS#7 message trust
chain cannot be verified.

Signed-off-by: David Howells &lt;dhowells@redhat.com&gt;
</content>
</entry>
<entry>
<title>KEYS: Generalise system_verify_data() to provide access to internal content</title>
<updated>2016-04-06T15:14:24Z</updated>
<author>
<name>David Howells</name>
<email>dhowells@redhat.com</email>
</author>
<published>2016-04-06T15:14:24Z</published>
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<id>urn:sha1:e68503bd6836ba765dc8e0ee77ea675fedc07e41</id>
<content type='text'>
Generalise system_verify_data() to provide access to internal content
through a callback.  This allows all the PKCS#7 stuff to be hidden inside
this function and removed from the PE file parser and the PKCS#7 test key.

If external content is not required, NULL should be passed as data to the
function.  If the callback is not required, that can be set to NULL.

The function is now called verify_pkcs7_signature() to contrast with
verify_pefile_signature() and the definitions of both have been moved into
linux/verification.h along with the key_being_used_for enum.

Signed-off-by: David Howells &lt;dhowells@redhat.com&gt;
</content>
</entry>
<entry>
<title>certs: Fix misaligned data in extra certificate list</title>
<updated>2016-02-29T14:44:30Z</updated>
<author>
<name>David Howells</name>
<email>dhowells@redhat.com</email>
</author>
<published>2016-02-29T14:44:30Z</published>
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<id>urn:sha1:0d1db3e37022770a221b2a7565cfe425792ed22e</id>
<content type='text'>
Fix the following warning found by kbuild:

	certs/system_certificates.S:24: Error: misaligned data

because:

	KEYS: Reserve an extra certificate symbol for inserting without recompiling

doesn't correctly align system_extra_cert_used.

Signed-off-by: David Howells &lt;dhowells@redhat.com&gt;
cc: Mehmet Kayaalp &lt;mkayaalp@linux.vnet.ibm.com&gt;
</content>
</entry>
<entry>
<title>KEYS: Reserve an extra certificate symbol for inserting without recompiling</title>
<updated>2016-02-26T15:30:20Z</updated>
<author>
<name>Mehmet Kayaalp</name>
<email>mkayaalp@linux.vnet.ibm.com</email>
</author>
<published>2015-11-24T21:18:05Z</published>
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<id>urn:sha1:c4c36105958576fee87d2c75f4b69b6e5bbde772</id>
<content type='text'>
Place a system_extra_cert buffer of configurable size, right after the
system_certificate_list, so that inserted keys can be readily processed by
the existing mechanism. Added script takes a key file and a kernel image
and inserts its contents to the reserved area. The
system_certificate_list_size is also adjusted accordingly.

Call the script as:

    scripts/insert-sys-cert -b &lt;vmlinux&gt; -c &lt;certfile&gt;

If vmlinux has no symbol table, supply System.map file with -s flag.
Subsequent runs replace the previously inserted key, instead of appending
the new one.

Signed-off-by: Mehmet Kayaalp &lt;mkayaalp@linux.vnet.ibm.com&gt;
Signed-off-by: David Howells &lt;dhowells@redhat.com&gt;
Acked-by: Mimi Zohar &lt;zohar@linux.vnet.ibm.com&gt;
</content>
</entry>
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