171 lines
5.8 KiB
C
171 lines
5.8 KiB
C
/*
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* Copyright (C) 2011-2015 Tobias Brunner
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* HSR Hochschule fuer Technik Rapperswil
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; either version 2 of the License, or (at your
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* option) any later version. See <http://www.fsf.org/copyleft/gpl.txt>.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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* or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* for more details.
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*/
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/**
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* @defgroup keymat_v2 keymat_v2
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* @{ @ingroup ikev2
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*/
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#ifndef KEYMAT_V2_H_
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#define KEYMAT_V2_H_
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#include <sa/keymat.h>
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#include <collections/array.h>
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typedef struct keymat_v2_t keymat_v2_t;
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/**
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* Derivation and management of sensitive keying material, IKEv2 variant.
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*/
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struct keymat_v2_t {
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/**
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* Implements keymat_t.
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*/
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keymat_t keymat;
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/**
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* Derive keys for the IKE_SA.
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*
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* These keys are not handed out, but are used by the associated signers,
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* crypters and authentication functions.
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*
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* @param proposal selected algorithms
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* @param dh diffie hellman key allocated by create_dh()
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* @param nonce_i initiators nonce value
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* @param nonce_r responders nonce value
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* @param id IKE_SA identifier
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* @param rekey_prf PRF of old SA if rekeying, PRF_UNDEFINED otherwise
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* @param rekey_sdk SKd of old SA if rekeying
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* @return TRUE on success
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*/
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bool (*derive_ike_keys)(keymat_v2_t *this, proposal_t *proposal,
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diffie_hellman_t *dh, chunk_t nonce_i,
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chunk_t nonce_r, ike_sa_id_t *id,
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pseudo_random_function_t rekey_function,
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chunk_t rekey_skd);
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/**
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* Derive SK_d, SK_pi and SK_pr after authentication using the given
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* Postquantum Preshared Key and the previous values of these keys that
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* were derived by derive_ike_keys().
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*
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* @param ppk the postquantum preshared key
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* @return TRUE on success
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*/
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bool (*derive_ike_keys_ppk)(keymat_v2_t *this, chunk_t ppk);
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/**
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* Derive keys for a CHILD_SA.
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*
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* The keys for the CHILD_SA are allocated in the integ and encr chunks.
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* An implementation might hand out encrypted keys only, which are
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* decrypted in the kernel before use.
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* If no PFS is used for the CHILD_SA, dh can be NULL.
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*
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* @param proposal selected algorithms
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* @param dh diffie hellman key allocated by create_dh(), or NULL
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* @param nonce_i initiators nonce value
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* @param nonce_r responders nonce value
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* @param encr_i chunk to write initiators encryption key to
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* @param integ_i chunk to write initiators integrity key to
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* @param encr_r chunk to write responders encryption key to
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* @param integ_r chunk to write responders integrity key to
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* @return TRUE on success
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*/
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bool (*derive_child_keys)(keymat_v2_t *this,
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proposal_t *proposal, diffie_hellman_t *dh,
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chunk_t nonce_i, chunk_t nonce_r,
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chunk_t *encr_i, chunk_t *integ_i,
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chunk_t *encr_r, chunk_t *integ_r);
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/**
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* Get SKd to pass to derive_ikey_keys() during rekeying.
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*
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* @param skd chunk to write SKd to (internal data)
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* @return PRF function to derive keymat
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*/
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pseudo_random_function_t (*get_skd)(keymat_v2_t *this, chunk_t *skd);
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/**
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* Generate octets to use for authentication procedure (RFC4306 2.15).
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*
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* This method creates the plain octets and is usually signed by a private
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* key. PSK and EAP authentication include a secret into the data, use
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* the get_psk_sig() method instead.
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*
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* @param verify TRUE to create for verification, FALSE to sign
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* @param ike_sa_init encoded ike_sa_init message
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* @param nonce nonce value
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* @param ppk optional postquantum preshared key
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* @param id identity
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* @param reserved reserved bytes of id_payload
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* @param octests chunk receiving allocated auth octets
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* @param schemes array containing signature schemes
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* (signature_params_t*) in case they need to be
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* modified by the keymat implementation
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* @return TRUE if octets created successfully
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*/
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bool (*get_auth_octets)(keymat_v2_t *this, bool verify, chunk_t ike_sa_init,
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chunk_t nonce, chunk_t ppk, identification_t *id,
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char reserved[3], chunk_t *octets,
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array_t *schemes);
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/**
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* Build the shared secret signature used for PSK and EAP authentication.
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*
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* This method wraps the get_auth_octets() method and additionally
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* includes the secret into the signature. If no secret is given, SK_p is
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* used as secret (used for EAP methods without MSK).
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*
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* @param verify TRUE to create for verification, FALSE to sign
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* @param ike_sa_init encoded ike_sa_init message
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* @param nonce nonce value
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* @param secret optional secret to include into signature
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* @param ppk optional postquantum preshared key
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* @param id identity
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* @param reserved reserved bytes of id_payload
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* @param sign chunk receiving allocated signature octets
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* @return TRUE if signature created successfully
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*/
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bool (*get_psk_sig)(keymat_v2_t *this, bool verify, chunk_t ike_sa_init,
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chunk_t nonce, chunk_t secret, chunk_t ppk,
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identification_t *id, char reserved[3], chunk_t *sig);
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/**
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* Add a hash algorithm supported by the peer for signature authentication.
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*
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* @param hash hash algorithm
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*/
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void (*add_hash_algorithm)(keymat_v2_t *this, hash_algorithm_t hash);
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/**
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* Check if a given hash algorithm is supported by the peer for signature
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* authentication.
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*
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* @param hash hash algorithm
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* @return TRUE if supported, FALSE otherwise
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*/
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bool (*hash_algorithm_supported)(keymat_v2_t *this, hash_algorithm_t hash);
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};
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/**
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* Create a keymat instance.
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*
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* @param initiator TRUE if we are the initiator
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* @return keymat instance
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*/
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keymat_v2_t *keymat_v2_create(bool initiator);
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#endif /** KEYMAT_V2_H_ @}*/
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