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352 lines
10 KiB
C
352 lines
10 KiB
C
/*
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* wrapper.c - wrapper for crytpo functions
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*
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* This file is part of the SSH Library
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*
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* Copyright (c) 2003-2013 by Aris Adamantiadis
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*
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* The SSH Library is free software; you can redistribute it and/or modify
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* it under the terms of the GNU Lesser General Public License as published by
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* the Free Software Foundation; either version 2.1 of the License, or (at your
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* option) any later version.
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*
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* The SSH Library 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 Lesser General Public
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* License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public License
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* along with the SSH Library; see the file COPYING. If not, write to
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* the Free Software Foundation, Inc., 59 Temple Place - Suite 330, Boston,
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* MA 02111-1307, USA.
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*/
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/*
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* Why a wrapper?
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*
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* Let's say you want to port libssh from libcrypto of openssl to libfoo
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* you are going to spend hours to remove every references to SHA1_Update()
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* to libfoo_sha1_update after the work is finished, you're going to have
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* only this file to modify it's not needed to say that your modifications
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* are welcome.
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*/
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#include "config.h"
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#ifdef WITH_ZLIB
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#include <zlib.h>
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#endif
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#include "libssh/priv.h"
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#include "libssh/session.h"
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#include "libssh/crypto.h"
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#include "libssh/wrapper.h"
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#include "libssh/pki.h"
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/* it allocates a new cipher structure based on its offset into the global table */
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static struct ssh_cipher_struct *cipher_new(int offset) {
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struct ssh_cipher_struct *cipher = NULL;
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cipher = malloc(sizeof(struct ssh_cipher_struct));
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if (cipher == NULL) {
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return NULL;
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}
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/* note the memcpy will copy the pointers : so, you shouldn't free them */
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memcpy(cipher, &ssh_get_ciphertab()[offset], sizeof(*cipher));
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return cipher;
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}
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static void cipher_free(struct ssh_cipher_struct *cipher) {
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#ifdef HAVE_LIBGCRYPT
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unsigned int i;
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#endif
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if (cipher == NULL) {
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return;
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}
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if(cipher->key) {
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#ifdef HAVE_LIBGCRYPT
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for (i = 0; i < (cipher->keylen / sizeof(gcry_cipher_hd_t)); i++) {
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gcry_cipher_close(cipher->key[i]);
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}
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#elif defined HAVE_LIBCRYPTO
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/* destroy the key */
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memset(cipher->key, 0, cipher->keylen);
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#endif
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SAFE_FREE(cipher->key);
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}
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SAFE_FREE(cipher);
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}
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struct ssh_crypto_struct *crypto_new(void) {
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struct ssh_crypto_struct *crypto;
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crypto = malloc(sizeof(struct ssh_crypto_struct));
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if (crypto == NULL) {
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return NULL;
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}
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ZERO_STRUCTP(crypto);
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return crypto;
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}
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void crypto_free(struct ssh_crypto_struct *crypto){
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int i;
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if (crypto == NULL) {
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return;
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}
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SAFE_FREE(crypto->server_pubkey);
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cipher_free(crypto->in_cipher);
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cipher_free(crypto->out_cipher);
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bignum_free(crypto->e);
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bignum_free(crypto->f);
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bignum_free(crypto->x);
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bignum_free(crypto->y);
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bignum_free(crypto->k);
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#ifdef HAVE_ECDH
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SAFE_FREE(crypto->ecdh_client_pubkey);
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SAFE_FREE(crypto->ecdh_server_pubkey);
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#endif
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if(crypto->session_id != NULL){
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memset(crypto->session_id, '\0', crypto->digest_len);
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SAFE_FREE(crypto->session_id);
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}
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if(crypto->secret_hash != NULL){
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memset(crypto->secret_hash, '\0', crypto->digest_len);
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SAFE_FREE(crypto->secret_hash);
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}
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#ifdef WITH_ZLIB
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if (crypto->compress_out_ctx &&
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(deflateEnd(crypto->compress_out_ctx) != 0)) {
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inflateEnd(crypto->compress_out_ctx);
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}
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if (crypto->compress_in_ctx &&
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(deflateEnd(crypto->compress_in_ctx) != 0)) {
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inflateEnd(crypto->compress_in_ctx);
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}
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#endif /* WITH_ZLIB */
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if(crypto->encryptIV)
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SAFE_FREE(crypto->encryptIV);
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if(crypto->decryptIV)
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SAFE_FREE(crypto->decryptIV);
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if(crypto->encryptMAC)
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SAFE_FREE(crypto->encryptMAC);
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if(crypto->decryptMAC)
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SAFE_FREE(crypto->decryptMAC);
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if(crypto->encryptkey){
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memset(crypto->encryptkey, 0, crypto->digest_len);
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SAFE_FREE(crypto->encryptkey);
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}
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if(crypto->decryptkey){
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memset(crypto->decryptkey, 0, crypto->digest_len);
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SAFE_FREE(crypto->decryptkey);
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}
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for (i = 0; i < SSH_KEX_METHODS; i++) {
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SAFE_FREE(crypto->client_kex.methods[i]);
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SAFE_FREE(crypto->server_kex.methods[i]);
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SAFE_FREE(crypto->kex_methods[i]);
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}
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BURN_BUFFER(crypto, sizeof(struct ssh_crypto_struct));
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SAFE_FREE(crypto);
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}
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static int crypt_set_algorithms2(ssh_session session){
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const char *wanted;
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int i = 0;
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struct ssh_cipher_struct *ssh_ciphertab=ssh_get_ciphertab();
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/* we must scan the kex entries to find crypto algorithms and set their appropriate structure */
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/* out */
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wanted = session->next_crypto->kex_methods[SSH_CRYPT_C_S];
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while (ssh_ciphertab[i].name && strcmp(wanted, ssh_ciphertab[i].name)) {
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i++;
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}
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if (ssh_ciphertab[i].name == NULL) {
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ssh_set_error(session, SSH_FATAL,
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"crypt_set_algorithms2: no crypto algorithm function found for %s",
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wanted);
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return SSH_ERROR;
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}
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SSH_LOG(SSH_LOG_PACKET, "Set output algorithm to %s", wanted);
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session->next_crypto->out_cipher = cipher_new(i);
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if (session->next_crypto->out_cipher == NULL) {
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ssh_set_error_oom(session);
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return SSH_ERROR;
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}
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i = 0;
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/* in */
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wanted = session->next_crypto->kex_methods[SSH_CRYPT_S_C];
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while (ssh_ciphertab[i].name && strcmp(wanted, ssh_ciphertab[i].name)) {
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i++;
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}
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if (ssh_ciphertab[i].name == NULL) {
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ssh_set_error(session, SSH_FATAL,
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"Crypt_set_algorithms: no crypto algorithm function found for %s",
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wanted);
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return SSH_ERROR;
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}
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SSH_LOG(SSH_LOG_PACKET, "Set input algorithm to %s", wanted);
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session->next_crypto->in_cipher = cipher_new(i);
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if (session->next_crypto->in_cipher == NULL) {
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ssh_set_error_oom(session);
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return SSH_ERROR;
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}
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/* compression */
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if (strcmp(session->next_crypto->kex_methods[SSH_COMP_C_S], "zlib") == 0) {
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session->next_crypto->do_compress_out = 1;
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}
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if (strcmp(session->next_crypto->kex_methods[SSH_COMP_S_C], "zlib") == 0) {
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session->next_crypto->do_compress_in = 1;
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}
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if (strcmp(session->next_crypto->kex_methods[SSH_COMP_C_S], "zlib@openssh.com") == 0) {
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session->next_crypto->delayed_compress_out = 1;
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}
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if (strcmp(session->next_crypto->kex_methods[SSH_COMP_S_C], "zlib@openssh.com") == 0) {
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session->next_crypto->delayed_compress_in = 1;
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}
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return SSH_OK;
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}
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static int crypt_set_algorithms1(ssh_session session, enum ssh_des_e des_type) {
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int i = 0;
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struct ssh_cipher_struct *ssh_ciphertab=ssh_get_ciphertab();
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/* right now, we force 3des-cbc to be taken */
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while (ssh_ciphertab[i].name && strcmp(ssh_ciphertab[i].name,
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des_type == SSH_DES ? "des-cbc-ssh1" : "3des-cbc-ssh1")) {
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i++;
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}
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if (ssh_ciphertab[i].name == NULL) {
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ssh_set_error(session, SSH_FATAL, "cipher 3des-cbc-ssh1 or des-cbc-ssh1 not found!");
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return SSH_ERROR;
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}
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session->next_crypto->out_cipher = cipher_new(i);
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if (session->next_crypto->out_cipher == NULL) {
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ssh_set_error_oom(session);
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return SSH_ERROR;
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}
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session->next_crypto->in_cipher = cipher_new(i);
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if (session->next_crypto->in_cipher == NULL) {
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ssh_set_error_oom(session);
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return SSH_ERROR;
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}
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return SSH_OK;
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}
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int crypt_set_algorithms(ssh_session session, enum ssh_des_e des_type) {
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return (session->version == 1) ? crypt_set_algorithms1(session, des_type) :
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crypt_set_algorithms2(session);
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}
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#ifdef WITH_SERVER
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int crypt_set_algorithms_server(ssh_session session){
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char *method = NULL;
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int i = 0;
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struct ssh_cipher_struct *ssh_ciphertab=ssh_get_ciphertab();
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if (session == NULL) {
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return SSH_ERROR;
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}
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/*
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* We must scan the kex entries to find crypto algorithms and set their
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* appropriate structure
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*/
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/* out */
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method = session->next_crypto->kex_methods[SSH_CRYPT_S_C];
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while(ssh_ciphertab[i].name && strcmp(method,ssh_ciphertab[i].name))
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i++;
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if(!ssh_ciphertab[i].name){
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ssh_set_error(session,SSH_FATAL,"crypt_set_algorithms_server : "
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"no crypto algorithm function found for %s",method);
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return SSH_ERROR;
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}
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SSH_LOG(SSH_LOG_PACKET,"Set output algorithm %s",method);
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session->next_crypto->out_cipher = cipher_new(i);
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if (session->next_crypto->out_cipher == NULL) {
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ssh_set_error_oom(session);
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return SSH_ERROR;
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}
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i=0;
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/* in */
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method = session->next_crypto->kex_methods[SSH_CRYPT_C_S];
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while(ssh_ciphertab[i].name && strcmp(method,ssh_ciphertab[i].name))
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i++;
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if(!ssh_ciphertab[i].name){
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ssh_set_error(session,SSH_FATAL,"Crypt_set_algorithms_server :"
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"no crypto algorithm function found for %s",method);
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return SSH_ERROR;
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}
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SSH_LOG(SSH_LOG_PACKET,"Set input algorithm %s",method);
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session->next_crypto->in_cipher = cipher_new(i);
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if (session->next_crypto->in_cipher == NULL) {
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ssh_set_error_oom(session);
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return SSH_ERROR;
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}
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/* compression */
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method = session->next_crypto->kex_methods[SSH_COMP_C_S];
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if(strcmp(method,"zlib") == 0){
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SSH_LOG(SSH_LOG_PACKET,"enabling C->S compression");
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session->next_crypto->do_compress_in=1;
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}
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if(strcmp(method,"zlib@openssh.com") == 0){
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SSH_LOG(SSH_LOG_PACKET,"enabling C->S delayed compression");
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if (session->flags & SSH_SESSION_FLAG_AUTHENTICATED) {
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session->next_crypto->do_compress_in = 1;
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} else {
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session->next_crypto->delayed_compress_in = 1;
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}
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}
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method = session->next_crypto->kex_methods[SSH_COMP_S_C];
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if(strcmp(method,"zlib") == 0){
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SSH_LOG(SSH_LOG_PACKET, "enabling S->C compression\n");
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session->next_crypto->do_compress_out=1;
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}
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if(strcmp(method,"zlib@openssh.com") == 0){
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SSH_LOG(SSH_LOG_PACKET,"enabling S->C delayed compression\n");
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if (session->flags & SSH_SESSION_FLAG_AUTHENTICATED) {
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session->next_crypto->do_compress_out = 1;
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} else {
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session->next_crypto->delayed_compress_out = 1;
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}
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}
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method = session->next_crypto->kex_methods[SSH_HOSTKEYS];
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session->srv.hostkey = ssh_key_type_from_name(method);
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return SSH_OK;
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}
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#endif /* WITH_SERVER */
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/* vim: set ts=2 sw=2 et cindent: */
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