213 lines
5.6 KiB
C
213 lines
5.6 KiB
C
/*
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* Copyright (C) 2010-2019 Tobias Brunner
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* Copyright (C) 2005-2007 Martin Willi
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* Copyright (C) 2005 Jan Hutter
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*
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* Copyright (C) secunet Security Networks AG
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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 key_exchange key_exchange
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* @{ @ingroup crypto
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*/
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#ifndef KEY_EXCHANGE_H_
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#define KEY_EXCHANGE_H_
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typedef enum key_exchange_method_t key_exchange_method_t;
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typedef struct key_exchange_t key_exchange_t;
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typedef struct diffie_hellman_params_t diffie_hellman_params_t;
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#include <library.h>
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/**
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* Key exchange method.
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*
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* The modulus (or group) to use for a Diffie-Hellman calculation.
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* See IKEv2 RFC 3.3.2 and RFC 3526.
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*
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* ECP groups are defined in RFC 4753 and RFC 5114.
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* ECC Brainpool groups are defined in RFC 6954.
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* Curve25519 and Curve448 groups are defined in RFC 8031.
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*/
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enum key_exchange_method_t {
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KE_NONE = 0,
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MODP_768_BIT = 1,
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MODP_1024_BIT = 2,
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MODP_1536_BIT = 5,
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MODP_2048_BIT = 14,
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MODP_3072_BIT = 15,
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MODP_4096_BIT = 16,
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MODP_6144_BIT = 17,
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MODP_8192_BIT = 18,
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ECP_256_BIT = 19,
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ECP_384_BIT = 20,
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ECP_521_BIT = 21,
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MODP_1024_160 = 22,
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MODP_2048_224 = 23,
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MODP_2048_256 = 24,
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ECP_192_BIT = 25,
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ECP_224_BIT = 26,
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ECP_224_BP = 27,
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ECP_256_BP = 28,
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ECP_384_BP = 29,
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ECP_512_BP = 30,
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CURVE_25519 = 31,
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CURVE_448 = 32,
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/** insecure NULL diffie hellman group for testing, in PRIVATE USE */
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MODP_NULL = 1024,
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/** MODP group with custom generator/prime */
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/** Parameters defined by IEEE 1363.1, in PRIVATE USE */
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NTRU_112_BIT = 1030,
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NTRU_128_BIT = 1031,
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NTRU_192_BIT = 1032,
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NTRU_256_BIT = 1033,
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NH_128_BIT = 1040,
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/** internally used DH group with additional parameters g and p, outside
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* of PRIVATE USE (i.e. IKEv2 DH group range) so it can't be negotiated */
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MODP_CUSTOM = 65536,
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};
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/**
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* enum name for key_exchange_method_t.
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*/
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extern enum_name_t *key_exchange_method_names;
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/**
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* enum names for key_exchange_method_t (matching proposal keywords).
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*/
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extern enum_name_t *key_exchange_method_names_short;
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/**
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* Implementation of a key exchange algorithms (e.g. Diffie-Hellman).
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*/
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struct key_exchange_t {
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/**
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* Returns the shared secret of this key exchange method.
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*
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* @param secret shared secret (allocated)
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* @return TRUE if shared secret computed successfully
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*/
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bool (*get_shared_secret)(key_exchange_t *this, chunk_t *secret)
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__attribute__((warn_unused_result));
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/**
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* Sets the public key from the peer.
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*
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* @note This operation should be relatively quick. Costly public key
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* validation operations or key derivation should be implemented in
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* get_shared_secret().
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*
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* @param value public key of peer
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* @return TRUE if other public key verified and set
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*/
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bool (*set_public_key)(key_exchange_t *this, chunk_t value)
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__attribute__((warn_unused_result));
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/**
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* Gets the own public key to transmit.
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*
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* @param value public key (allocated)
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* @return TRUE if public key retrieved
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*/
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bool (*get_public_key)(key_exchange_t *this, chunk_t *value)
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__attribute__((warn_unused_result));
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/**
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* Set an explicit own private key to use.
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*
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* Calling this method is usually not required, as the DH backend generates
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* an appropriate private value itself. It is optional to implement, and
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* used mostly for testing purposes. The private key may be the actual key
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* or a seed for a DRBG.
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*
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* @param value private key value to set
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*/
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bool (*set_private_key)(key_exchange_t *this, chunk_t value)
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__attribute__((warn_unused_result));
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/**
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* Get the key exchange method used.
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*
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* @return key exchange method set in construction
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*/
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key_exchange_method_t (*get_method)(key_exchange_t *this);
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/**
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* Destroys a key_exchange_t object.
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*/
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void (*destroy)(key_exchange_t *this);
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};
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/**
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* Parameters for a specific Diffie-Hellman group.
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*/
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struct diffie_hellman_params_t {
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/**
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* The prime of the group
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*/
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const chunk_t prime;
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/**
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* Generator of the group
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*/
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const chunk_t generator;
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/**
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* Exponent length to use
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*/
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size_t exp_len;
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/**
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* Prime order subgroup; for MODP Groups 22-24
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*/
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const chunk_t subgroup;
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};
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/**
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* Initialize diffie hellman parameters during startup.
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*/
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void diffie_hellman_init();
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/**
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* Get the parameters associated with the specified Diffie-Hellman group.
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*
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* Before calling this method, use diffie_hellman_init() to initialize the
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* DH group table. This is usually done by library_init().
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*
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* @param ke key exchange method (DH group)
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* @return The parameters or NULL, if the group is not supported
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*/
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diffie_hellman_params_t *diffie_hellman_get_params(key_exchange_method_t ke);
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/**
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* Check if a given key exchange method is an ECDH group.
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*
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* @param ke key exchange method to check
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* @return TRUE if key exchange method is an ECP group
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*/
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bool key_exchange_is_ecdh(key_exchange_method_t ke);
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/**
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* Check if a public key is valid for given key exchange method.
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*
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* @param ke key exchange method
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* @param value public key to check
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* @return TRUE if value looks valid
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*/
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bool key_exchange_verify_pubkey(key_exchange_method_t ke, chunk_t value);
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#endif /** KEY_EXCHANGE_H_ @}*/
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