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478 lines
12 KiB
C
478 lines
12 KiB
C
/* Copyright (c) 2001, Matej Pfajfar.
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* Copyright (c) 2001-2004, Roger Dingledine.
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* Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
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* Copyright (c) 2007-2020, The Tor Project, Inc. */
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/* See LICENSE for licensing information */
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/**
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* \file crypto_dh_openssl.c
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* \brief Implement Tor's Z_p diffie-hellman stuff for OpenSSL.
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**/
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#include "lib/crypt_ops/compat_openssl.h"
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#include "lib/crypt_ops/crypto_dh.h"
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#include "lib/crypt_ops/crypto_digest.h"
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#include "lib/crypt_ops/crypto_hkdf.h"
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#include "lib/crypt_ops/crypto_util.h"
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#include "lib/log/log.h"
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#include "lib/log/util_bug.h"
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DISABLE_GCC_WARNING("-Wredundant-decls")
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#include <openssl/dh.h>
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ENABLE_GCC_WARNING("-Wredundant-decls")
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#include <openssl/bn.h>
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#include <string.h>
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#ifndef ENABLE_NSS
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static int tor_check_dh_key(int severity, const BIGNUM *bn);
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/** A structure to hold the first half (x, g^x) of a Diffie-Hellman handshake
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* while we're waiting for the second.*/
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struct crypto_dh_t {
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DH *dh; /**< The openssl DH object */
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};
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#endif /* !defined(ENABLE_NSS) */
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static DH *new_openssl_dh_from_params(BIGNUM *p, BIGNUM *g);
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/** Shared P parameter for our circuit-crypto DH key exchanges. */
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static BIGNUM *dh_param_p = NULL;
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/** Shared P parameter for our TLS DH key exchanges. */
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static BIGNUM *dh_param_p_tls = NULL;
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/** Shared G parameter for our DH key exchanges. */
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static BIGNUM *dh_param_g = NULL;
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/* This function is disabled unless we change the DH parameters. */
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#if 0
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/** Validate a given set of Diffie-Hellman parameters. This is moderately
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* computationally expensive (milliseconds), so should only be called when
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* the DH parameters change. Returns 0 on success, * -1 on failure.
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*/
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static int
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crypto_validate_dh_params(const BIGNUM *p, const BIGNUM *g)
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{
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DH *dh = NULL;
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int ret = -1;
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/* Copy into a temporary DH object, just so that DH_check() can be called. */
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if (!(dh = DH_new()))
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goto out;
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#ifdef OPENSSL_1_1_API
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BIGNUM *dh_p, *dh_g;
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if (!(dh_p = BN_dup(p)))
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goto out;
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if (!(dh_g = BN_dup(g)))
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goto out;
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if (!DH_set0_pqg(dh, dh_p, NULL, dh_g))
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goto out;
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#else /* !defined(OPENSSL_1_1_API) */
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if (!(dh->p = BN_dup(p)))
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goto out;
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if (!(dh->g = BN_dup(g)))
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goto out;
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#endif /* defined(OPENSSL_1_1_API) */
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/* Perform the validation. */
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int codes = 0;
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if (!DH_check(dh, &codes))
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goto out;
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if (BN_is_word(g, DH_GENERATOR_2)) {
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/* Per https://wiki.openssl.org/index.php/Diffie-Hellman_parameters
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*
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* OpenSSL checks the prime is congruent to 11 when g = 2; while the
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* IETF's primes are congruent to 23 when g = 2.
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*/
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BN_ULONG residue = BN_mod_word(p, 24);
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if (residue == 11 || residue == 23)
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codes &= ~DH_NOT_SUITABLE_GENERATOR;
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}
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if (codes != 0) /* Specifics on why the params suck is irrelevant. */
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goto out;
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/* Things are probably not evil. */
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ret = 0;
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out:
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if (dh)
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DH_free(dh);
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return ret;
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}
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#endif /* 0 */
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/**
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* Helper: convert <b>hex</b> to a bignum, and return it. Assert that the
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* operation was successful.
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*/
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static BIGNUM *
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bignum_from_hex(const char *hex)
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{
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BIGNUM *result = BN_new();
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tor_assert(result);
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int r = BN_hex2bn(&result, hex);
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tor_assert(r);
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tor_assert(result);
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return result;
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}
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/** Set the global Diffie-Hellman generator, used for both TLS and internal
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* DH stuff.
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*/
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static void
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crypto_set_dh_generator(void)
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{
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BIGNUM *generator;
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int r;
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if (dh_param_g)
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return;
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generator = BN_new();
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tor_assert(generator);
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r = BN_set_word(generator, DH_GENERATOR);
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tor_assert(r);
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dh_param_g = generator;
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}
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/** Initialize our DH parameters. Idempotent. */
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void
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crypto_dh_init_openssl(void)
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{
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if (dh_param_p && dh_param_g && dh_param_p_tls)
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return;
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tor_assert(dh_param_g == NULL);
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tor_assert(dh_param_p == NULL);
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tor_assert(dh_param_p_tls == NULL);
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crypto_set_dh_generator();
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dh_param_p = bignum_from_hex(OAKLEY_PRIME_2);
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dh_param_p_tls = bignum_from_hex(TLS_DH_PRIME);
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/* Checks below are disabled unless we change the hardcoded DH parameters. */
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#if 0
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tor_assert(0 == crypto_validate_dh_params(dh_param_p, dh_param_g));
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tor_assert(0 == crypto_validate_dh_params(dh_param_p_tls, dh_param_g));
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#endif
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}
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/** Number of bits to use when choosing the x or y value in a Diffie-Hellman
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* handshake. Since we exponentiate by this value, choosing a smaller one
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* lets our handhake go faster.
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*/
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#define DH_PRIVATE_KEY_BITS 320
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/** Used by tortls.c: Get the DH* for use with TLS.
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*/
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DH *
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crypto_dh_new_openssl_tls(void)
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{
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return new_openssl_dh_from_params(dh_param_p_tls, dh_param_g);
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}
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#ifndef ENABLE_NSS
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/** Allocate and return a new DH object for a key exchange. Returns NULL on
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* failure.
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*/
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crypto_dh_t *
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crypto_dh_new(int dh_type)
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{
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crypto_dh_t *res = tor_malloc_zero(sizeof(crypto_dh_t));
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tor_assert(dh_type == DH_TYPE_CIRCUIT || dh_type == DH_TYPE_TLS ||
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dh_type == DH_TYPE_REND);
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if (!dh_param_p)
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crypto_dh_init();
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BIGNUM *dh_p = NULL;
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if (dh_type == DH_TYPE_TLS) {
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dh_p = dh_param_p_tls;
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} else {
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dh_p = dh_param_p;
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}
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res->dh = new_openssl_dh_from_params(dh_p, dh_param_g);
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if (res->dh == NULL)
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tor_free(res); // sets res to NULL.
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return res;
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}
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#endif /* !defined(ENABLE_NSS) */
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/** Create and return a new openssl DH from a given prime and generator. */
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static DH *
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new_openssl_dh_from_params(BIGNUM *p, BIGNUM *g)
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{
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DH *res_dh;
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if (!(res_dh = DH_new()))
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goto err;
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BIGNUM *dh_p = NULL, *dh_g = NULL;
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dh_p = BN_dup(p);
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if (!dh_p)
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goto err;
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dh_g = BN_dup(g);
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if (!dh_g) {
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BN_free(dh_p);
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goto err;
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}
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#ifdef OPENSSL_1_1_API
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if (!DH_set0_pqg(res_dh, dh_p, NULL, dh_g)) {
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goto err;
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}
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if (!DH_set_length(res_dh, DH_PRIVATE_KEY_BITS))
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goto err;
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#else /* !defined(OPENSSL_1_1_API) */
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res_dh->p = dh_p;
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res_dh->g = dh_g;
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res_dh->length = DH_PRIVATE_KEY_BITS;
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#endif /* defined(OPENSSL_1_1_API) */
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return res_dh;
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/* LCOV_EXCL_START
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* This error condition is only reached when an allocation fails */
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err:
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crypto_openssl_log_errors(LOG_WARN, "creating DH object");
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if (res_dh) DH_free(res_dh); /* frees p and g too */
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return NULL;
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/* LCOV_EXCL_STOP */
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}
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#ifndef ENABLE_NSS
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/** Return a copy of <b>dh</b>, sharing its internal state. */
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crypto_dh_t *
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crypto_dh_dup(const crypto_dh_t *dh)
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{
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crypto_dh_t *dh_new = tor_malloc_zero(sizeof(crypto_dh_t));
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tor_assert(dh);
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tor_assert(dh->dh);
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dh_new->dh = dh->dh;
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DH_up_ref(dh->dh);
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return dh_new;
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}
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/** Return the length of the DH key in <b>dh</b>, in bytes.
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*/
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int
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crypto_dh_get_bytes(crypto_dh_t *dh)
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{
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tor_assert(dh);
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return DH_size(dh->dh);
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}
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/** Generate \<x,g^x\> for our part of the key exchange. Return 0 on
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* success, -1 on failure.
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*/
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int
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crypto_dh_generate_public(crypto_dh_t *dh)
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{
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#ifndef OPENSSL_1_1_API
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again:
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#endif
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if (!DH_generate_key(dh->dh)) {
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/* LCOV_EXCL_START
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* To test this we would need some way to tell openssl to break DH. */
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crypto_openssl_log_errors(LOG_WARN, "generating DH key");
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return -1;
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/* LCOV_EXCL_STOP */
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}
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#ifdef OPENSSL_1_1_API
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/* OpenSSL 1.1.x doesn't appear to let you regenerate a DH key, without
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* recreating the DH object. I have no idea what sort of aliasing madness
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* can occur here, so do the check, and just bail on failure.
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*/
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const BIGNUM *pub_key, *priv_key;
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DH_get0_key(dh->dh, &pub_key, &priv_key);
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if (tor_check_dh_key(LOG_WARN, pub_key)<0) {
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log_warn(LD_CRYPTO, "Weird! Our own DH key was invalid. I guess once-in-"
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"the-universe chances really do happen. Treating as a failure.");
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return -1;
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}
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#else /* !defined(OPENSSL_1_1_API) */
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if (tor_check_dh_key(LOG_WARN, dh->dh->pub_key)<0) {
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/* LCOV_EXCL_START
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* If this happens, then openssl's DH implementation is busted. */
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log_warn(LD_CRYPTO, "Weird! Our own DH key was invalid. I guess once-in-"
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"the-universe chances really do happen. Trying again.");
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/* Free and clear the keys, so OpenSSL will actually try again. */
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BN_clear_free(dh->dh->pub_key);
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BN_clear_free(dh->dh->priv_key);
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dh->dh->pub_key = dh->dh->priv_key = NULL;
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goto again;
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/* LCOV_EXCL_STOP */
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}
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#endif /* defined(OPENSSL_1_1_API) */
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return 0;
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}
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/** Generate g^x as necessary, and write the g^x for the key exchange
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* as a <b>pubkey_len</b>-byte value into <b>pubkey</b>. Return 0 on
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* success, -1 on failure. <b>pubkey_len</b> must be \>= DH1024_KEY_LEN.
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*/
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int
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crypto_dh_get_public(crypto_dh_t *dh, char *pubkey, size_t pubkey_len)
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{
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int bytes;
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tor_assert(dh);
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const BIGNUM *dh_pub;
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#ifdef OPENSSL_1_1_API
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const BIGNUM *dh_priv;
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DH_get0_key(dh->dh, &dh_pub, &dh_priv);
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#else
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dh_pub = dh->dh->pub_key;
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#endif /* defined(OPENSSL_1_1_API) */
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if (!dh_pub) {
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if (crypto_dh_generate_public(dh)<0)
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return -1;
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else {
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#ifdef OPENSSL_1_1_API
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DH_get0_key(dh->dh, &dh_pub, &dh_priv);
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#else
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dh_pub = dh->dh->pub_key;
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#endif
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}
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}
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tor_assert(dh_pub);
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bytes = BN_num_bytes(dh_pub);
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tor_assert(bytes >= 0);
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if (pubkey_len < (size_t)bytes) {
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log_warn(LD_CRYPTO,
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"Weird! pubkey_len (%d) was smaller than DH1024_KEY_LEN (%d)",
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(int) pubkey_len, bytes);
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return -1;
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}
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memset(pubkey, 0, pubkey_len);
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BN_bn2bin(dh_pub, (unsigned char*)(pubkey+(pubkey_len-bytes)));
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return 0;
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}
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/** Check for bad Diffie-Hellman public keys (g^x). Return 0 if the key is
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* okay (in the subgroup [2,p-2]), or -1 if it's bad.
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* See http://www.cl.cam.ac.uk/ftp/users/rja14/psandqs.ps.gz for some tips.
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*/
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static int
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tor_check_dh_key(int severity, const BIGNUM *bn)
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{
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BIGNUM *x;
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char *s;
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tor_assert(bn);
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x = BN_new();
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tor_assert(x);
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if (BUG(!dh_param_p))
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crypto_dh_init(); //LCOV_EXCL_LINE we already checked whether we did this.
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BN_set_word(x, 1);
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if (BN_cmp(bn,x)<=0) {
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log_fn(severity, LD_CRYPTO, "DH key must be at least 2.");
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goto err;
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}
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BN_copy(x,dh_param_p);
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BN_sub_word(x, 1);
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if (BN_cmp(bn,x)>=0) {
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log_fn(severity, LD_CRYPTO, "DH key must be at most p-2.");
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goto err;
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}
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BN_clear_free(x);
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return 0;
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err:
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BN_clear_free(x);
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s = BN_bn2hex(bn);
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log_fn(severity, LD_CRYPTO, "Rejecting insecure DH key [%s]", s);
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OPENSSL_free(s);
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return -1;
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}
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/** Given a DH key exchange object, and our peer's value of g^y (as a
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* <b>pubkey_len</b>-byte value in <b>pubkey</b>) generate
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* g^xy as a big-endian integer in <b>secret_out</b>.
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* Return the number of bytes generated on success,
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* or -1 on failure.
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*
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* This function MUST validate that g^y is actually in the group.
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*/
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ssize_t
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crypto_dh_handshake(int severity, crypto_dh_t *dh,
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const char *pubkey, size_t pubkey_len,
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unsigned char *secret_out, size_t secret_bytes_out)
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{
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BIGNUM *pubkey_bn = NULL;
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size_t secret_len=0;
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int result=0;
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tor_assert(dh);
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tor_assert(secret_bytes_out/DIGEST_LEN <= 255);
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tor_assert(pubkey_len < INT_MAX);
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if (BUG(crypto_dh_get_bytes(dh) > (int)secret_bytes_out)) {
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goto error;
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}
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if (!(pubkey_bn = BN_bin2bn((const unsigned char*)pubkey,
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(int)pubkey_len, NULL)))
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goto error;
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if (tor_check_dh_key(severity, pubkey_bn)<0) {
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/* Check for invalid public keys. */
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log_fn(severity, LD_CRYPTO,"Rejected invalid g^x");
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goto error;
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}
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result = DH_compute_key(secret_out, pubkey_bn, dh->dh);
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if (result < 0) {
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log_warn(LD_CRYPTO,"DH_compute_key() failed.");
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goto error;
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}
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secret_len = result;
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goto done;
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error:
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result = -1;
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done:
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crypto_openssl_log_errors(LOG_WARN, "completing DH handshake");
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if (pubkey_bn)
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BN_clear_free(pubkey_bn);
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if (result < 0)
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return result;
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else
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return secret_len;
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}
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/** Free a DH key exchange object.
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*/
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void
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crypto_dh_free_(crypto_dh_t *dh)
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{
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if (!dh)
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return;
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tor_assert(dh->dh);
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DH_free(dh->dh);
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tor_free(dh);
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}
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#endif /* !defined(ENABLE_NSS) */
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void
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crypto_dh_free_all_openssl(void)
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{
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if (dh_param_p)
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BN_clear_free(dh_param_p);
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if (dh_param_p_tls)
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BN_clear_free(dh_param_p_tls);
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if (dh_param_g)
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BN_clear_free(dh_param_g);
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dh_param_p = dh_param_p_tls = dh_param_g = NULL;
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}
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