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/* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
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* All rights reserved.
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*
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* This package is an SSL implementation written
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* by Eric Young (eay@cryptsoft.com).
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* The implementation was written so as to conform with Netscapes SSL.
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*
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* This library is free for commercial and non-commercial use as long as
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* the following conditions are aheared to. The following conditions
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* apply to all code found in this distribution, be it the RC4, RSA,
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* lhash, DES, etc., code; not just the SSL code. The SSL documentation
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* included with this distribution is covered by the same copyright terms
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* except that the holder is Tim Hudson (tjh@cryptsoft.com).
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*
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* Copyright remains Eric Young's, and as such any Copyright notices in
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* the code are not to be removed.
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* If this package is used in a product, Eric Young should be given attribution
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* as the author of the parts of the library used.
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* This can be in the form of a textual message at program startup or
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* in documentation (online or textual) provided with the package.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. All advertising materials mentioning features or use of this software
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* must display the following acknowledgement:
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* "This product includes cryptographic software written by
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* Eric Young (eay@cryptsoft.com)"
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* The word 'cryptographic' can be left out if the rouines from the library
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* being used are not cryptographic related :-).
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* 4. If you include any Windows specific code (or a derivative thereof) from
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* the apps directory (application code) you must include an acknowledgement:
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* "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
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*
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* THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* The licence and distribution terms for any publically available version or
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* derivative of this code cannot be changed. i.e. this code cannot simply be
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* copied and put under another distribution licence
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* [including the GNU Public Licence.] */
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#ifndef OPENSSL_HEADER_DH_H
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#define OPENSSL_HEADER_DH_H
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#include <openssl/base.h>
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#include <openssl/thread.h>
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#if defined(__cplusplus)
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extern "C" {
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#endif
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// DH contains functions for performing Diffie-Hellman key agreement in
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// multiplicative groups.
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//
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// This module is deprecated and retained for legacy reasons only. It is not
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// considered a priority for performance or hardening work. Do not use it in
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// new code. Use X25519 or ECDH with P-256 instead.
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// Allocation and destruction.
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// DH_new returns a new, empty DH object or NULL on error.
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OPENSSL_EXPORT DH *DH_new(void);
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// DH_free decrements the reference count of |dh| and frees it if the reference
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// count drops to zero.
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OPENSSL_EXPORT void DH_free(DH *dh);
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// DH_up_ref increments the reference count of |dh| and returns one.
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OPENSSL_EXPORT int DH_up_ref(DH *dh);
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// Properties.
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// DH_get0_pub_key returns |dh|'s public key.
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OPENSSL_EXPORT const BIGNUM *DH_get0_pub_key(const DH *dh);
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// DH_get0_priv_key returns |dh|'s private key, or NULL if |dh| is a public key.
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OPENSSL_EXPORT const BIGNUM *DH_get0_priv_key(const DH *dh);
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// DH_get0_p returns |dh|'s group modulus.
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OPENSSL_EXPORT const BIGNUM *DH_get0_p(const DH *dh);
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// DH_get0_q returns the size of |dh|'s subgroup, or NULL if it is unset.
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OPENSSL_EXPORT const BIGNUM *DH_get0_q(const DH *dh);
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// DH_get0_g returns |dh|'s group generator.
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OPENSSL_EXPORT const BIGNUM *DH_get0_g(const DH *dh);
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// DH_get0_key sets |*out_pub_key| and |*out_priv_key|, if non-NULL, to |dh|'s
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// public and private key, respectively. If |dh| is a public key, the private
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// key will be set to NULL.
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OPENSSL_EXPORT void DH_get0_key(const DH *dh, const BIGNUM **out_pub_key,
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const BIGNUM **out_priv_key);
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// DH_set0_key sets |dh|'s public and private key to the specified values. If
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// NULL, the field is left unchanged. On success, it takes ownership of each
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// argument and returns one. Otherwise, it returns zero.
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OPENSSL_EXPORT int DH_set0_key(DH *dh, BIGNUM *pub_key, BIGNUM *priv_key);
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// DH_get0_pqg sets |*out_p|, |*out_q|, and |*out_g|, if non-NULL, to |dh|'s p,
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// q, and g parameters, respectively.
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OPENSSL_EXPORT void DH_get0_pqg(const DH *dh, const BIGNUM **out_p,
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const BIGNUM **out_q, const BIGNUM **out_g);
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// DH_set0_pqg sets |dh|'s p, q, and g parameters to the specified values. If
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// NULL, the field is left unchanged. On success, it takes ownership of each
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// argument and returns one. Otherwise, it returns zero. |q| may be NULL, but
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// |p| and |g| must either be specified or already configured on |dh|.
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OPENSSL_EXPORT int DH_set0_pqg(DH *dh, BIGNUM *p, BIGNUM *q, BIGNUM *g);
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// DH_set_length sets the number of bits to use for the secret exponent when
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// calling |DH_generate_key| on |dh| and returns one. If unset,
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// |DH_generate_key| will use the bit length of p.
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OPENSSL_EXPORT int DH_set_length(DH *dh, unsigned priv_length);
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// Standard parameters.
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// BN_get_rfc3526_prime_1536 sets |*ret| to the 1536-bit MODP group from RFC
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// 3526 and returns |ret|. If |ret| is NULL then a fresh |BIGNUM| is allocated
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// and returned. It returns NULL on allocation failure.
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OPENSSL_EXPORT BIGNUM *BN_get_rfc3526_prime_1536(BIGNUM *ret);
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// DH_get_rfc7919_2048 returns the group `ffdhe2048` from
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// https://tools.ietf.org/html/rfc7919#appendix-A.1. It returns NULL if out
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// of memory.
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OPENSSL_EXPORT DH *DH_get_rfc7919_2048(void);
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// Parameter generation.
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#define DH_GENERATOR_2 2
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#define DH_GENERATOR_5 5
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// DH_generate_parameters_ex generates a suitable Diffie-Hellman group with a
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// prime that is |prime_bits| long and stores it in |dh|. The generator of the
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// group will be |generator|, which should be |DH_GENERATOR_2| unless there's a
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// good reason to use a different value. The |cb| argument contains a callback
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// function that will be called during the generation. See the documentation in
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// |bn.h| about this. In addition to the callback invocations from |BN|, |cb|
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// will also be called with |event| equal to three when the generation is
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// complete.
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OPENSSL_EXPORT int DH_generate_parameters_ex(DH *dh, int prime_bits,
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int generator, BN_GENCB *cb);
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// Diffie-Hellman operations.
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// DH_generate_key generates a new, random, private key and stores it in
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// |dh|. It returns one on success and zero on error.
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OPENSSL_EXPORT int DH_generate_key(DH *dh);
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// DH_compute_key_padded calculates the shared key between |dh| and |peers_key|
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// and writes it as a big-endian integer into |out|, padded up to |DH_size|
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// bytes. It returns the number of bytes written, which is always |DH_size|, or
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// a negative number on error. |out| must have |DH_size| bytes of space.
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//
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// WARNING: this differs from the usual BoringSSL return-value convention.
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//
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// Note this function differs from |DH_compute_key| in that it preserves leading
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// zeros in the secret. This function is the preferred variant. It matches PKCS
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// #3 and avoids some side channel attacks. However, the two functions are not
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// drop-in replacements for each other. Using a different variant than the
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// application expects will result in sporadic key mismatches.
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//
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// Callers that expect a fixed-width secret should use this function over
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// |DH_compute_key|. Callers that use either function should migrate to a modern
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// primitive such as X25519 or ECDH with P-256 instead.
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OPENSSL_EXPORT int DH_compute_key_padded(uint8_t *out, const BIGNUM *peers_key,
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DH *dh);
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// DH_compute_key_hashed calculates the shared key between |dh| and |peers_key|
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// and hashes it with the given |digest|. If the hash output is less than
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// |max_out_len| bytes then it writes the hash output to |out| and sets
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// |*out_len| to the number of bytes written. Otherwise it signals an error. It
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// returns one on success or zero on error.
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//
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// NOTE: this follows the usual BoringSSL return-value convention, but that's
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// different from |DH_compute_key| and |DH_compute_key_padded|.
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OPENSSL_EXPORT int DH_compute_key_hashed(DH *dh, uint8_t *out, size_t *out_len,
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size_t max_out_len,
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const BIGNUM *peers_key,
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const EVP_MD *digest);
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// Utility functions.
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// DH_size returns the number of bytes in the DH group's prime.
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OPENSSL_EXPORT int DH_size(const DH *dh);
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// DH_num_bits returns the minimum number of bits needed to represent the
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// absolute value of the DH group's prime.
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OPENSSL_EXPORT unsigned DH_num_bits(const DH *dh);
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#define DH_CHECK_P_NOT_PRIME 0x01
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#define DH_CHECK_P_NOT_SAFE_PRIME 0x02
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#define DH_CHECK_UNABLE_TO_CHECK_GENERATOR 0x04
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#define DH_CHECK_NOT_SUITABLE_GENERATOR 0x08
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#define DH_CHECK_Q_NOT_PRIME 0x10
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#define DH_CHECK_INVALID_Q_VALUE 0x20
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#define DH_CHECK_INVALID_J_VALUE 0x40
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// These are compatibility defines.
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#define DH_NOT_SUITABLE_GENERATOR DH_CHECK_NOT_SUITABLE_GENERATOR
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#define DH_UNABLE_TO_CHECK_GENERATOR DH_CHECK_UNABLE_TO_CHECK_GENERATOR
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// DH_check checks the suitability of |dh| as a Diffie-Hellman group. and sets
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// |DH_CHECK_*| flags in |*out_flags| if it finds any errors. It returns one if
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// |*out_flags| was successfully set and zero on error.
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//
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// Note: these checks may be quite computationally expensive.
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OPENSSL_EXPORT int DH_check(const DH *dh, int *out_flags);
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#define DH_CHECK_PUBKEY_TOO_SMALL 0x1
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#define DH_CHECK_PUBKEY_TOO_LARGE 0x2
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#define DH_CHECK_PUBKEY_INVALID 0x4
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// DH_check_pub_key checks the suitability of |pub_key| as a public key for the
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// DH group in |dh| and sets |DH_CHECK_PUBKEY_*| flags in |*out_flags| if it
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// finds any errors. It returns one if |*out_flags| was successfully set and
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// zero on error.
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OPENSSL_EXPORT int DH_check_pub_key(const DH *dh, const BIGNUM *pub_key,
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int *out_flags);
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// DHparams_dup allocates a fresh |DH| and copies the parameters from |dh| into
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// it. It returns the new |DH| or NULL on error.
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OPENSSL_EXPORT DH *DHparams_dup(const DH *dh);
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// ASN.1 functions.
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// DH_parse_parameters decodes a DER-encoded DHParameter structure (PKCS #3)
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// from |cbs| and advances |cbs|. It returns a newly-allocated |DH| or NULL on
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// error.
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OPENSSL_EXPORT DH *DH_parse_parameters(CBS *cbs);
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// DH_marshal_parameters marshals |dh| as a DER-encoded DHParameter structure
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// (PKCS #3) and appends the result to |cbb|. It returns one on success and zero
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// on error.
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OPENSSL_EXPORT int DH_marshal_parameters(CBB *cbb, const DH *dh);
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// Deprecated functions.
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// DH_generate_parameters behaves like |DH_generate_parameters_ex|, which is
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// what you should use instead. It returns NULL on error, or a newly-allocated
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// |DH| on success. This function is provided for compatibility only.
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OPENSSL_EXPORT DH *DH_generate_parameters(int prime_len, int generator,
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void (*callback)(int, int, void *),
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void *cb_arg);
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// d2i_DHparams parses a DER-encoded DHParameter structure (PKCS #3) from |len|
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// bytes at |*inp|, as in |d2i_SAMPLE|.
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//
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// Use |DH_parse_parameters| instead.
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OPENSSL_EXPORT DH *d2i_DHparams(DH **ret, const unsigned char **inp, long len);
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// i2d_DHparams marshals |in| to a DER-encoded DHParameter structure (PKCS #3),
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// as described in |i2d_SAMPLE|.
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//
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// Use |DH_marshal_parameters| instead.
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OPENSSL_EXPORT int i2d_DHparams(const DH *in, unsigned char **outp);
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// DH_compute_key behaves like |DH_compute_key_padded| but, contrary to PKCS #3,
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// returns a variable-length shared key with leading zeros. It returns the
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// number of bytes written, or a negative number on error. |out| must have
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// |DH_size| bytes of space.
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//
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// WARNING: this differs from the usual BoringSSL return-value convention.
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//
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// Note this function's running time and memory access pattern leaks information
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// about the shared secret. Particularly if |dh| is reused, this may result in
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// side channel attacks such as https://raccoon-attack.com/.
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//
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// |DH_compute_key_padded| is the preferred variant and avoids the above
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// attacks. However, the two functions are not drop-in replacements for each
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// other. Using a different variant than the application expects will result in
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// sporadic key mismatches.
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//
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// Callers that expect a fixed-width secret should use |DH_compute_key_padded|
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// instead. Callers that use either function should migrate to a modern
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// primitive such as X25519 or ECDH with P-256 instead.
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OPENSSL_EXPORT int DH_compute_key(uint8_t *out, const BIGNUM *peers_key,
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DH *dh);
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struct dh_st {
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BIGNUM *p;
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BIGNUM *g;
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BIGNUM *pub_key; // g^x mod p
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BIGNUM *priv_key; // x
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// priv_length contains the length, in bits, of the private value. If zero,
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// the private value will be the same length as |p|.
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unsigned priv_length;
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CRYPTO_MUTEX method_mont_p_lock;
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BN_MONT_CTX *method_mont_p;
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// Place holders if we want to do X9.42 DH
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BIGNUM *q;
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BIGNUM *j;
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unsigned char *seed;
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int seedlen;
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BIGNUM *counter;
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int flags;
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CRYPTO_refcount_t references;
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};
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#if defined(__cplusplus)
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} // extern C
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extern "C++" {
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BSSL_NAMESPACE_BEGIN
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BORINGSSL_MAKE_DELETER(DH, DH_free)
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BORINGSSL_MAKE_UP_REF(DH, DH_up_ref)
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BSSL_NAMESPACE_END
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} // extern C++
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#endif
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#define DH_R_BAD_GENERATOR 100
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#define DH_R_INVALID_PUBKEY 101
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#define DH_R_MODULUS_TOO_LARGE 102
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#define DH_R_NO_PRIVATE_VALUE 103
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#define DH_R_DECODE_ERROR 104
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#define DH_R_ENCODE_ERROR 105
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#endif // OPENSSL_HEADER_DH_H
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