forked from Minki/linux
KEYS: Add documentation for asymmetric keyring restrictions
Provide more specific examples of keyring restrictions as applied to X.509 signature chain verification. Signed-off-by: Mat Martineau <mathew.j.martineau@linux.intel.com> Signed-off-by: David Howells <dhowells@redhat.com> Signed-off-by: James Morris <james.l.morris@oracle.com>
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@ -10,6 +10,7 @@ Contents:
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- Signature verification.
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- Asymmetric key subtypes.
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- Instantiation data parsers.
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- Keyring link restrictions.
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========
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@ -318,7 +319,8 @@ KEYRING LINK RESTRICTIONS
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=========================
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Keyrings created from userspace using add_key can be configured to check the
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signature of the key being linked.
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signature of the key being linked. Keys without a valid signature are not
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allowed to link.
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Several restriction methods are available:
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@ -327,9 +329,10 @@ Several restriction methods are available:
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- Option string used with KEYCTL_RESTRICT_KEYRING:
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- "builtin_trusted"
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The kernel builtin trusted keyring will be searched for the signing
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key. The ca_keys kernel parameter also affects which keys are used for
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signature verification.
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The kernel builtin trusted keyring will be searched for the signing key.
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If the builtin trusted keyring is not configured, all links will be
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rejected. The ca_keys kernel parameter also affects which keys are used
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for signature verification.
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(2) Restrict using the kernel builtin and secondary trusted keyrings
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@ -337,8 +340,10 @@ Several restriction methods are available:
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- "builtin_and_secondary_trusted"
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The kernel builtin and secondary trusted keyrings will be searched for the
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signing key. The ca_keys kernel parameter also affects which keys are used
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for signature verification.
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signing key. If the secondary trusted keyring is not configured, this
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restriction will behave like the "builtin_trusted" option. The ca_keys
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kernel parameter also affects which keys are used for signature
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verification.
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(3) Restrict using a separate key or keyring
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@ -346,7 +351,7 @@ Several restriction methods are available:
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- "key_or_keyring:<key or keyring serial number>[:chain]"
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Whenever a key link is requested, the link will only succeed if the key
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being linked is signed by one of the designated keys. This key may be
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being linked is signed by one of the designated keys. This key may be
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specified directly by providing a serial number for one asymmetric key, or
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a group of keys may be searched for the signing key by providing the
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serial number for a keyring.
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@ -354,7 +359,51 @@ Several restriction methods are available:
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When the "chain" option is provided at the end of the string, the keys
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within the destination keyring will also be searched for signing keys.
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This allows for verification of certificate chains by adding each
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cert in order (starting closest to the root) to one keyring.
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certificate in order (starting closest to the root) to a keyring. For
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instance, one keyring can be populated with links to a set of root
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certificates, with a separate, restricted keyring set up for each
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certificate chain to be validated:
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# Create and populate a keyring for root certificates
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root_id=`keyctl add keyring root-certs "" @s`
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keyctl padd asymmetric "" $root_id < root1.cert
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keyctl padd asymmetric "" $root_id < root2.cert
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# Create and restrict a keyring for the certificate chain
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chain_id=`keyctl add keyring chain "" @s`
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keyctl restrict_keyring $chain_id asymmetric key_or_keyring:$root_id:chain
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# Attempt to add each certificate in the chain, starting with the
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# certificate closest to the root.
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keyctl padd asymmetric "" $chain_id < intermediateA.cert
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keyctl padd asymmetric "" $chain_id < intermediateB.cert
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keyctl padd asymmetric "" $chain_id < end-entity.cert
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If the final end-entity certificate is successfully added to the "chain"
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keyring, we can be certain that it has a valid signing chain going back to
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one of the root certificates.
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A single keyring can be used to verify a chain of signatures by
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restricting the keyring after linking the root certificate:
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# Create a keyring for the certificate chain and add the root
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chain2_id=`keyctl add keyring chain2 "" @s`
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keyctl padd asymmetric "" $chain2_id < root1.cert
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# Restrict the keyring that already has root1.cert linked. The cert
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# will remain linked by the keyring.
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keyctl restrict_keyring $chain2_id asymmetric key_or_keyring:0:chain
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# Attempt to add each certificate in the chain, starting with the
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# certificate closest to the root.
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keyctl padd asymmetric "" $chain2_id < intermediateA.cert
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keyctl padd asymmetric "" $chain2_id < intermediateB.cert
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keyctl padd asymmetric "" $chain2_id < end-entity.cert
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If the final end-entity certificate is successfully added to the "chain2"
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keyring, we can be certain that there is a valid signing chain going back
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to the root certificate that was added before the keyring was restricted.
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In all of these cases, if the signing key is found the signature of the key to
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be linked will be verified using the signing key. The requested key is added
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@ -894,6 +894,12 @@ The keyctl syscall functions are:
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To apply a keyring restriction the process must have Set Attribute
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permission and the keyring must not be previously restricted.
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One application of restricted keyrings is to verify X.509 certificate
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chains or individual certificate signatures using the asymmetric key type.
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See Documentation/crypto/asymmetric-keys.txt for specific restrictions
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applicable to the asymmetric key type.
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Kernel Services
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===============
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