Mercurial > dropbear
annotate common-kex.c @ 772:7fc0aeada79c
-y -y to disable hostkey checking
fix missing trailing space when passing arguments for multihop mode
From Hans Harder
author | Matt Johnston <matt@ucc.asn.au> |
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date | Sun, 14 Apr 2013 22:49:10 +0800 |
parents | bf0ac0512ef7 |
children | d44325108d0e b07eb3dc23ec |
rev | line source |
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1 /* |
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2 * Dropbear SSH |
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3 * |
33 | 4 * Copyright (c) 2002-2004 Matt Johnston |
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5 * Portions Copyright (c) 2004 by Mihnea Stoenescu |
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6 * All rights reserved. |
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7 * |
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8 * Permission is hereby granted, free of charge, to any person obtaining a copy |
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9 * of this software and associated documentation files (the "Software"), to deal |
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10 * in the Software without restriction, including without limitation the rights |
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11 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell |
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12 * copies of the Software, and to permit persons to whom the Software is |
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13 * furnished to do so, subject to the following conditions: |
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14 * |
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15 * The above copyright notice and this permission notice shall be included in |
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16 * all copies or substantial portions of the Software. |
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17 * |
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18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR |
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19 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, |
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20 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE |
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21 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER |
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22 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, |
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23 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE |
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24 * SOFTWARE. */ |
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25 |
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26 #include "includes.h" |
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27 #include "dbutil.h" |
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28 #include "algo.h" |
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29 #include "buffer.h" |
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30 #include "session.h" |
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31 #include "kex.h" |
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32 #include "ssh.h" |
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33 #include "packet.h" |
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34 #include "bignum.h" |
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35 #include "random.h" |
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36 #include "runopts.h" |
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37 |
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38 /* diffie-hellman-group1-sha1 value for p */ |
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39 #define DH_P_1_LEN 128 |
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40 static const unsigned char dh_p_1[DH_P_1_LEN] = { |
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41 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xC9, 0x0F, 0xDA, 0xA2, |
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42 0x21, 0x68, 0xC2, 0x34, 0xC4, 0xC6, 0x62, 0x8B, 0x80, 0xDC, 0x1C, 0xD1, |
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43 0x29, 0x02, 0x4E, 0x08, 0x8A, 0x67, 0xCC, 0x74, 0x02, 0x0B, 0xBE, 0xA6, |
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44 0x3B, 0x13, 0x9B, 0x22, 0x51, 0x4A, 0x08, 0x79, 0x8E, 0x34, 0x04, 0xDD, |
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45 0xEF, 0x95, 0x19, 0xB3, 0xCD, 0x3A, 0x43, 0x1B, 0x30, 0x2B, 0x0A, 0x6D, |
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46 0xF2, 0x5F, 0x14, 0x37, 0x4F, 0xE1, 0x35, 0x6D, 0x6D, 0x51, 0xC2, 0x45, |
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47 0xE4, 0x85, 0xB5, 0x76, 0x62, 0x5E, 0x7E, 0xC6, 0xF4, 0x4C, 0x42, 0xE9, |
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48 0xA6, 0x37, 0xED, 0x6B, 0x0B, 0xFF, 0x5C, 0xB6, 0xF4, 0x06, 0xB7, 0xED, |
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49 0xEE, 0x38, 0x6B, 0xFB, 0x5A, 0x89, 0x9F, 0xA5, 0xAE, 0x9F, 0x24, 0x11, |
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50 0x7C, 0x4B, 0x1F, 0xE6, 0x49, 0x28, 0x66, 0x51, 0xEC, 0xE6, 0x53, 0x81, |
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51 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF}; |
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52 |
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53 /* diffie-hellman-group14-sha1 value for p */ |
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54 #define DH_P_14_LEN 256 |
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55 static const unsigned char dh_p_14[DH_P_14_LEN] = { |
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56 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xC9, 0x0F, 0xDA, 0xA2, |
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57 0x21, 0x68, 0xC2, 0x34, 0xC4, 0xC6, 0x62, 0x8B, 0x80, 0xDC, 0x1C, 0xD1, |
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58 0x29, 0x02, 0x4E, 0x08, 0x8A, 0x67, 0xCC, 0x74, 0x02, 0x0B, 0xBE, 0xA6, |
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59 0x3B, 0x13, 0x9B, 0x22, 0x51, 0x4A, 0x08, 0x79, 0x8E, 0x34, 0x04, 0xDD, |
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60 0xEF, 0x95, 0x19, 0xB3, 0xCD, 0x3A, 0x43, 0x1B, 0x30, 0x2B, 0x0A, 0x6D, |
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61 0xF2, 0x5F, 0x14, 0x37, 0x4F, 0xE1, 0x35, 0x6D, 0x6D, 0x51, 0xC2, 0x45, |
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62 0xE4, 0x85, 0xB5, 0x76, 0x62, 0x5E, 0x7E, 0xC6, 0xF4, 0x4C, 0x42, 0xE9, |
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63 0xA6, 0x37, 0xED, 0x6B, 0x0B, 0xFF, 0x5C, 0xB6, 0xF4, 0x06, 0xB7, 0xED, |
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64 0xEE, 0x38, 0x6B, 0xFB, 0x5A, 0x89, 0x9F, 0xA5, 0xAE, 0x9F, 0x24, 0x11, |
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65 0x7C, 0x4B, 0x1F, 0xE6, 0x49, 0x28, 0x66, 0x51, 0xEC, 0xE4, 0x5B, 0x3D, |
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66 0xC2, 0x00, 0x7C, 0xB8, 0xA1, 0x63, 0xBF, 0x05, 0x98, 0xDA, 0x48, 0x36, |
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67 0x1C, 0x55, 0xD3, 0x9A, 0x69, 0x16, 0x3F, 0xA8, 0xFD, 0x24, 0xCF, 0x5F, |
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68 0x83, 0x65, 0x5D, 0x23, 0xDC, 0xA3, 0xAD, 0x96, 0x1C, 0x62, 0xF3, 0x56, |
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69 0x20, 0x85, 0x52, 0xBB, 0x9E, 0xD5, 0x29, 0x07, 0x70, 0x96, 0x96, 0x6D, |
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70 0x67, 0x0C, 0x35, 0x4E, 0x4A, 0xBC, 0x98, 0x04, 0xF1, 0x74, 0x6C, 0x08, |
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71 0xCA, 0x18, 0x21, 0x7C, 0x32, 0x90, 0x5E, 0x46, 0x2E, 0x36, 0xCE, 0x3B, |
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72 0xE3, 0x9E, 0x77, 0x2C, 0x18, 0x0E, 0x86, 0x03, 0x9B, 0x27, 0x83, 0xA2, |
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73 0xEC, 0x07, 0xA2, 0x8F, 0xB5, 0xC5, 0x5D, 0xF0, 0x6F, 0x4C, 0x52, 0xC9, |
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74 0xDE, 0x2B, 0xCB, 0xF6, 0x95, 0x58, 0x17, 0x18, 0x39, 0x95, 0x49, 0x7C, |
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75 0xEA, 0x95, 0x6A, 0xE5, 0x15, 0xD2, 0x26, 0x18, 0x98, 0xFA, 0x05, 0x10, |
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76 0x15, 0x72, 0x8E, 0x5A, 0x8A, 0xAC, 0xAA, 0x68, 0xFF, 0xFF, 0xFF, 0xFF, |
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77 0xFF, 0xFF, 0xFF, 0xFF}; |
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78 |
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79 /* Same for group1 and group14 */ |
227 | 80 static const int DH_G_VAL = 2; |
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81 |
33 | 82 static void kexinitialise(); |
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83 void gen_new_keys(); |
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84 #ifndef DISABLE_ZLIB |
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85 static void gen_new_zstreams(); |
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86 #endif |
33 | 87 static void read_kex_algos(); |
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88 /* helper function for gen_new_keys */ |
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89 static void hashkeys(unsigned char *out, int outlen, |
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90 const hash_state * hs, unsigned const char X); |
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91 |
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92 |
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93 /* Send our list of algorithms we can use */ |
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94 void send_msg_kexinit() { |
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95 |
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96 CHECKCLEARTOWRITE(); |
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97 buf_putbyte(ses.writepayload, SSH_MSG_KEXINIT); |
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98 |
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99 /* cookie */ |
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100 genrandom(buf_getwriteptr(ses.writepayload, 16), 16); |
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101 buf_incrwritepos(ses.writepayload, 16); |
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102 |
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103 /* kex algos */ |
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104 buf_put_algolist(ses.writepayload, sshkex); |
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105 |
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106 /* server_host_key_algorithms */ |
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107 buf_put_algolist(ses.writepayload, sshhostkey); |
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108 |
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109 /* encryption_algorithms_client_to_server */ |
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110 buf_put_algolist(ses.writepayload, sshciphers); |
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111 |
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112 /* encryption_algorithms_server_to_client */ |
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113 buf_put_algolist(ses.writepayload, sshciphers); |
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114 |
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115 /* mac_algorithms_client_to_server */ |
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116 buf_put_algolist(ses.writepayload, sshhashes); |
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117 |
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118 /* mac_algorithms_server_to_client */ |
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119 buf_put_algolist(ses.writepayload, sshhashes); |
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120 |
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121 |
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122 /* compression_algorithms_client_to_server */ |
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123 buf_put_algolist(ses.writepayload, ses.compress_algos); |
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124 |
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125 /* compression_algorithms_server_to_client */ |
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126 buf_put_algolist(ses.writepayload, ses.compress_algos); |
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127 |
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128 /* languages_client_to_server */ |
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129 buf_putstring(ses.writepayload, "", 0); |
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130 |
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131 /* languages_server_to_client */ |
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132 buf_putstring(ses.writepayload, "", 0); |
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133 |
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134 /* first_kex_packet_follows - unimplemented for now */ |
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135 buf_putbyte(ses.writepayload, 0x00); |
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136 |
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137 /* reserved unit32 */ |
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138 buf_putint(ses.writepayload, 0); |
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139 |
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140 /* set up transmitted kex packet buffer for hashing. |
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141 * This is freed after the end of the kex */ |
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142 ses.transkexinit = buf_newcopy(ses.writepayload); |
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143 |
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144 encrypt_packet(); |
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145 ses.dataallowed = 0; /* don't send other packets during kex */ |
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146 |
165
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147 TRACE(("DATAALLOWED=0")) |
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148 TRACE(("-> KEXINIT")) |
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149 ses.kexstate.sentkexinit = 1; |
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150 } |
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151 |
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152 /* *** NOTE regarding (send|recv)_msg_newkeys *** |
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153 * Changed by mihnea from the original kex.c to set dataallowed after a |
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154 * completed key exchange, no matter the order in which it was performed. |
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155 * This enables client mode without affecting server functionality. |
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156 */ |
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157 |
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158 /* Bring new keys into use after a key exchange, and let the client know*/ |
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159 void send_msg_newkeys() { |
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160 |
165
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161 TRACE(("enter send_msg_newkeys")) |
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162 |
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163 /* generate the kexinit request */ |
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164 CHECKCLEARTOWRITE(); |
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165 buf_putbyte(ses.writepayload, SSH_MSG_NEWKEYS); |
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166 encrypt_packet(); |
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167 |
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168 |
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169 /* set up our state */ |
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170 if (ses.kexstate.recvnewkeys) { |
165
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171 TRACE(("while RECVNEWKEYS=1")) |
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172 gen_new_keys(); |
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173 kexinitialise(); /* we've finished with this kex */ |
165
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174 TRACE((" -> DATAALLOWED=1")) |
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175 ses.dataallowed = 1; /* we can send other packets again now */ |
33 | 176 ses.kexstate.donefirstkex = 1; |
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177 } else { |
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178 ses.kexstate.sentnewkeys = 1; |
165
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179 TRACE(("SENTNEWKEYS=1")) |
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180 } |
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181 |
165
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182 TRACE(("-> MSG_NEWKEYS")) |
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183 TRACE(("leave send_msg_newkeys")) |
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184 } |
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185 |
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186 /* Bring the new keys into use after a key exchange */ |
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187 void recv_msg_newkeys() { |
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188 |
165
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189 TRACE(("<- MSG_NEWKEYS")) |
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190 TRACE(("enter recv_msg_newkeys")) |
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191 |
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192 /* simply check if we've sent SSH_MSG_NEWKEYS, and if so, |
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193 * switch to the new keys */ |
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194 if (ses.kexstate.sentnewkeys) { |
165
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195 TRACE(("while SENTNEWKEYS=1")) |
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196 gen_new_keys(); |
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197 kexinitialise(); /* we've finished with this kex */ |
165
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198 TRACE((" -> DATAALLOWED=1")) |
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199 ses.dataallowed = 1; /* we can send other packets again now */ |
33 | 200 ses.kexstate.donefirstkex = 1; |
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201 } else { |
165
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202 TRACE(("RECVNEWKEYS=1")) |
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203 ses.kexstate.recvnewkeys = 1; |
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204 } |
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205 |
165
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206 TRACE(("leave recv_msg_newkeys")) |
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207 } |
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208 |
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209 |
33 | 210 /* Set up the kex for the first time */ |
211 void kexfirstinitialise() { | |
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212 ses.kexstate.donefirstkex = 0; |
33 | 213 |
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214 #ifndef DISABLE_ZLIB |
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215 if (opts.enable_compress) { |
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216 ses.compress_algos = ssh_compress; |
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217 } else |
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218 #endif |
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219 { |
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220 ses.compress_algos = ssh_nocompress; |
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221 } |
33 | 222 kexinitialise(); |
223 } | |
224 | |
225 /* Reset the kex state, ready for a new negotiation */ | |
226 static void kexinitialise() { | |
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227 |
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228 TRACE(("kexinitialise()")) |
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229 |
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230 /* sent/recv'd MSG_KEXINIT */ |
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231 ses.kexstate.sentkexinit = 0; |
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232 ses.kexstate.recvkexinit = 0; |
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233 |
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234 /* sent/recv'd MSG_NEWKEYS */ |
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235 ses.kexstate.recvnewkeys = 0; |
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236 ses.kexstate.sentnewkeys = 0; |
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237 |
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238 /* first_packet_follows */ |
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239 ses.kexstate.firstfollows = 0; |
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240 |
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241 ses.kexstate.datatrans = 0; |
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242 ses.kexstate.datarecv = 0; |
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243 |
454
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244 ses.kexstate.lastkextime = time(NULL); |
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245 |
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246 } |
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247 |
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248 /* Helper function for gen_new_keys, creates a hash. It makes a copy of the |
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249 * already initialised hash_state hs, which should already have processed |
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250 * the dh_K and hash, since these are common. X is the letter 'A', 'B' etc. |
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251 * out must have at least min(SHA1_HASH_SIZE, outlen) bytes allocated. |
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252 * |
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253 * See Section 7.2 of rfc4253 (ssh transport) for details */ |
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254 static void hashkeys(unsigned char *out, int outlen, |
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255 const hash_state * hs, const unsigned char X) { |
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256 |
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257 hash_state hs2; |
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258 int offset; |
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259 |
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260 memcpy(&hs2, hs, sizeof(hash_state)); |
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261 sha1_process(&hs2, &X, 1); |
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262 sha1_process(&hs2, ses.session_id, SHA1_HASH_SIZE); |
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263 sha1_done(&hs2, out); |
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264 for (offset = SHA1_HASH_SIZE; |
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265 offset < outlen; |
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266 offset += SHA1_HASH_SIZE) |
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267 { |
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268 /* need to extend */ |
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269 unsigned char k2[SHA1_HASH_SIZE]; |
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270 memcpy(&hs2, hs, sizeof(hash_state)); |
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271 sha1_process(&hs2, out, offset); |
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272 sha1_done(&hs2, k2); |
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273 memcpy(&out[offset], k2, MIN(outlen - offset, SHA1_HASH_SIZE)); |
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274 } |
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275 } |
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276 |
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277 /* Generate the actual encryption/integrity keys, using the results of the |
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278 * key exchange, as specified in section 7.2 of the transport rfc 4253. |
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279 * This occurs after the DH key-exchange. |
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280 * |
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281 * ses.newkeys is the new set of keys which are generated, these are only |
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282 * taken into use after both sides have sent a newkeys message */ |
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283 |
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284 /* Originally from kex.c, generalized for cli/svr mode --mihnea */ |
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285 void gen_new_keys() { |
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286 |
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287 unsigned char C2S_IV[MAX_IV_LEN]; |
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288 unsigned char C2S_key[MAX_KEY_LEN]; |
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289 unsigned char S2C_IV[MAX_IV_LEN]; |
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290 unsigned char S2C_key[MAX_KEY_LEN]; |
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291 /* unsigned char key[MAX_KEY_LEN]; */ |
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292 unsigned char *trans_IV, *trans_key, *recv_IV, *recv_key; |
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293 |
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294 hash_state hs; |
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295 unsigned int C2S_keysize, S2C_keysize; |
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296 char mactransletter, macrecvletter; /* Client or server specific */ |
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297 |
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298 TRACE(("enter gen_new_keys")) |
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299 /* the dh_K and hash are the start of all hashes, we make use of that */ |
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300 |
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301 sha1_init(&hs); |
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302 sha1_process_mp(&hs, ses.dh_K); |
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303 mp_clear(ses.dh_K); |
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304 m_free(ses.dh_K); |
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305 sha1_process(&hs, ses.hash, SHA1_HASH_SIZE); |
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306 m_burn(ses.hash, SHA1_HASH_SIZE); |
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307 |
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308 if (IS_DROPBEAR_CLIENT) { |
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309 trans_IV = C2S_IV; |
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310 recv_IV = S2C_IV; |
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311 trans_key = C2S_key; |
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312 recv_key = S2C_key; |
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313 C2S_keysize = ses.newkeys->trans.algo_crypt->keysize; |
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314 S2C_keysize = ses.newkeys->recv.algo_crypt->keysize; |
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315 mactransletter = 'E'; |
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316 macrecvletter = 'F'; |
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317 } else { |
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318 trans_IV = S2C_IV; |
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319 recv_IV = C2S_IV; |
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320 trans_key = S2C_key; |
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321 recv_key = C2S_key; |
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322 C2S_keysize = ses.newkeys->recv.algo_crypt->keysize; |
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323 S2C_keysize = ses.newkeys->trans.algo_crypt->keysize; |
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324 mactransletter = 'F'; |
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325 macrecvletter = 'E'; |
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326 } |
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327 |
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328 hashkeys(C2S_IV, SHA1_HASH_SIZE, &hs, 'A'); |
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329 hashkeys(S2C_IV, SHA1_HASH_SIZE, &hs, 'B'); |
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330 hashkeys(C2S_key, C2S_keysize, &hs, 'C'); |
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331 hashkeys(S2C_key, S2C_keysize, &hs, 'D'); |
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332 |
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333 if (ses.newkeys->recv.algo_crypt->cipherdesc != NULL) { |
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334 int recv_cipher = find_cipher(ses.newkeys->recv.algo_crypt->cipherdesc->name); |
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335 if (recv_cipher < 0) |
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336 dropbear_exit("Crypto error"); |
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337 if (ses.newkeys->recv.crypt_mode->start(recv_cipher, |
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338 recv_IV, recv_key, |
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339 ses.newkeys->recv.algo_crypt->keysize, 0, |
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340 &ses.newkeys->recv.cipher_state) != CRYPT_OK) { |
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341 dropbear_exit("Crypto error"); |
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342 } |
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343 } |
502 | 344 |
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345 if (ses.newkeys->trans.algo_crypt->cipherdesc != NULL) { |
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346 int trans_cipher = find_cipher(ses.newkeys->trans.algo_crypt->cipherdesc->name); |
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347 if (trans_cipher < 0) |
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348 dropbear_exit("Crypto error"); |
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349 if (ses.newkeys->trans.crypt_mode->start(trans_cipher, |
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350 trans_IV, trans_key, |
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351 ses.newkeys->trans.algo_crypt->keysize, 0, |
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352 &ses.newkeys->trans.cipher_state) != CRYPT_OK) { |
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353 dropbear_exit("Crypto error"); |
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354 } |
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355 } |
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356 |
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357 if (ses.newkeys->trans.algo_mac->hashdesc != NULL) { |
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358 hashkeys(ses.newkeys->trans.mackey, |
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359 ses.newkeys->trans.algo_mac->keysize, &hs, mactransletter); |
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360 ses.newkeys->trans.hash_index = find_hash(ses.newkeys->trans.algo_mac->hashdesc->name); |
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361 } |
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362 |
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363 if (ses.newkeys->recv.algo_mac->hashdesc != NULL) { |
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364 hashkeys(ses.newkeys->recv.mackey, |
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365 ses.newkeys->recv.algo_mac->keysize, &hs, macrecvletter); |
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366 ses.newkeys->recv.hash_index = find_hash(ses.newkeys->recv.algo_mac->hashdesc->name); |
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367 } |
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368 |
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369 #ifndef DISABLE_ZLIB |
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370 gen_new_zstreams(); |
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371 #endif |
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372 |
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373 /* Switch over to the new keys */ |
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374 m_burn(ses.keys, sizeof(struct key_context)); |
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375 m_free(ses.keys); |
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376 ses.keys = ses.newkeys; |
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377 ses.newkeys = NULL; |
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378 |
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379 m_burn(C2S_IV, sizeof(C2S_IV)); |
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380 m_burn(C2S_key, sizeof(C2S_key)); |
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381 m_burn(S2C_IV, sizeof(S2C_IV)); |
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382 m_burn(S2C_key, sizeof(S2C_key)); |
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383 |
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384 TRACE(("leave gen_new_keys")) |
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385 } |
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386 |
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387 #ifndef DISABLE_ZLIB |
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388 |
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389 int is_compress_trans() { |
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390 return ses.keys->trans.algo_comp == DROPBEAR_COMP_ZLIB |
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391 || (ses.authstate.authdone |
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392 && ses.keys->trans.algo_comp == DROPBEAR_COMP_ZLIB_DELAY); |
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393 } |
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394 |
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395 int is_compress_recv() { |
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396 return ses.keys->recv.algo_comp == DROPBEAR_COMP_ZLIB |
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397 || (ses.authstate.authdone |
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398 && ses.keys->recv.algo_comp == DROPBEAR_COMP_ZLIB_DELAY); |
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399 } |
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400 |
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401 /* Set up new zlib compression streams, close the old ones. Only |
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402 * called from gen_new_keys() */ |
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403 static void gen_new_zstreams() { |
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404 |
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405 /* create new zstreams */ |
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406 if (ses.newkeys->recv.algo_comp == DROPBEAR_COMP_ZLIB |
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407 || ses.newkeys->recv.algo_comp == DROPBEAR_COMP_ZLIB_DELAY) { |
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408 ses.newkeys->recv.zstream = (z_streamp)m_malloc(sizeof(z_stream)); |
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409 ses.newkeys->recv.zstream->zalloc = Z_NULL; |
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410 ses.newkeys->recv.zstream->zfree = Z_NULL; |
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411 |
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412 if (inflateInit(ses.newkeys->recv.zstream) != Z_OK) { |
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413 dropbear_exit("zlib error"); |
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414 } |
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415 } else { |
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416 ses.newkeys->recv.zstream = NULL; |
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417 } |
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418 |
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419 if (ses.newkeys->trans.algo_comp == DROPBEAR_COMP_ZLIB |
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420 || ses.newkeys->trans.algo_comp == DROPBEAR_COMP_ZLIB_DELAY) { |
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421 ses.newkeys->trans.zstream = (z_streamp)m_malloc(sizeof(z_stream)); |
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422 ses.newkeys->trans.zstream->zalloc = Z_NULL; |
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423 ses.newkeys->trans.zstream->zfree = Z_NULL; |
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424 |
555
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425 if (deflateInit2(ses.newkeys->trans.zstream, Z_DEFAULT_COMPRESSION, |
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426 Z_DEFLATED, DROPBEAR_ZLIB_WINDOW_BITS, |
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427 DROPBEAR_ZLIB_MEM_LEVEL, Z_DEFAULT_STRATEGY) |
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428 != Z_OK) { |
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429 dropbear_exit("zlib error"); |
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430 } |
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431 } else { |
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432 ses.newkeys->trans.zstream = NULL; |
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433 } |
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434 |
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435 /* clean up old keys */ |
534
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436 if (ses.keys->recv.zstream != NULL) { |
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437 if (inflateEnd(ses.keys->recv.zstream) == Z_STREAM_ERROR) { |
4
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438 /* Z_DATA_ERROR is ok, just means that stream isn't ended */ |
594
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575
diff
changeset
|
439 dropbear_exit("Crypto error"); |
4
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440 } |
534
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441 m_free(ses.keys->recv.zstream); |
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442 } |
534
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443 if (ses.keys->trans.zstream != NULL) { |
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444 if (deflateEnd(ses.keys->trans.zstream) == Z_STREAM_ERROR) { |
4
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445 /* Z_DATA_ERROR is ok, just means that stream isn't ended */ |
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diff
changeset
|
446 dropbear_exit("Crypto error"); |
4
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|
447 } |
534
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448 m_free(ses.keys->trans.zstream); |
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449 } |
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450 } |
501
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|
451 #endif /* DISABLE_ZLIB */ |
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|
452 |
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|
453 |
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|
454 /* Executed upon receiving a kexinit message from the client to initiate |
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455 * key exchange. If we haven't already done so, we send the list of our |
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456 * preferred algorithms. The client's requested algorithms are processed, |
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457 * and we calculate the first portion of the key-exchange-hash for used |
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458 * later in the key exchange. No response is sent, as the client should |
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459 * initiate the diffie-hellman key exchange */ |
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|
460 |
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461 /* Originally from kex.c, generalized for cli/svr mode --mihnea */ |
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462 /* Belongs in common_kex.c where it should be moved after review */ |
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463 void recv_msg_kexinit() { |
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464 |
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465 unsigned int kexhashbuf_len = 0; |
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466 unsigned int remote_ident_len = 0; |
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467 unsigned int local_ident_len = 0; |
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468 |
165
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|
469 TRACE(("<- KEXINIT")) |
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470 TRACE(("enter recv_msg_kexinit")) |
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|
471 |
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|
472 if (!ses.kexstate.sentkexinit) { |
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473 /* we need to send a kex packet */ |
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|
474 send_msg_kexinit(); |
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475 TRACE(("continue recv_msg_kexinit: sent kexinit")) |
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476 } |
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477 |
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478 /* start the kex hash */ |
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479 local_ident_len = strlen(LOCAL_IDENT); |
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480 remote_ident_len = strlen((char*)ses.remoteident); |
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481 |
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482 kexhashbuf_len = local_ident_len + remote_ident_len |
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|
483 + ses.transkexinit->len + ses.payload->len |
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484 + KEXHASHBUF_MAX_INTS; |
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|
485 |
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* options.h, common-kex.c: fix support of 4096 byte host keys
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486 ses.kexhashbuf = buf_new(kexhashbuf_len); |
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487 |
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488 if (IS_DROPBEAR_CLIENT) { |
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489 |
26 | 490 /* read the peer's choice of algos */ |
33 | 491 read_kex_algos(); |
4
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492 |
26 | 493 /* V_C, the client's version string (CR and NL excluded) */ |
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494 buf_putstring(ses.kexhashbuf, |
257
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495 (unsigned char*)LOCAL_IDENT, local_ident_len); |
26 | 496 /* V_S, the server's version string (CR and NL excluded) */ |
257
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497 buf_putstring(ses.kexhashbuf, ses.remoteident, remote_ident_len); |
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498 |
26 | 499 /* I_C, the payload of the client's SSH_MSG_KEXINIT */ |
4
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500 buf_putstring(ses.kexhashbuf, |
257
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501 ses.transkexinit->data, ses.transkexinit->len); |
26 | 502 /* I_S, the payload of the server's SSH_MSG_KEXINIT */ |
4
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503 buf_setpos(ses.payload, 0); |
257
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504 buf_putstring(ses.kexhashbuf, ses.payload->data, ses.payload->len); |
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505 |
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506 } else { |
26 | 507 /* SERVER */ |
4
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508 |
26 | 509 /* read the peer's choice of algos */ |
33 | 510 read_kex_algos(); |
26 | 511 /* V_C, the client's version string (CR and NL excluded) */ |
257
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512 buf_putstring(ses.kexhashbuf, ses.remoteident, remote_ident_len); |
26 | 513 /* V_S, the server's version string (CR and NL excluded) */ |
257
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514 buf_putstring(ses.kexhashbuf, |
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515 (unsigned char*)LOCAL_IDENT, local_ident_len); |
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516 |
26 | 517 /* I_C, the payload of the client's SSH_MSG_KEXINIT */ |
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518 buf_setpos(ses.payload, 0); |
257
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519 buf_putstring(ses.kexhashbuf, ses.payload->data, ses.payload->len); |
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520 |
26 | 521 /* I_S, the payload of the server's SSH_MSG_KEXINIT */ |
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522 buf_putstring(ses.kexhashbuf, |
257
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523 ses.transkexinit->data, ses.transkexinit->len); |
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524 |
26 | 525 ses.requirenext = SSH_MSG_KEXDH_INIT; |
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526 } |
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527 |
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528 buf_free(ses.transkexinit); |
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529 ses.transkexinit = NULL; |
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530 /* the rest of ses.kexhashbuf will be done after DH exchange */ |
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531 |
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532 ses.kexstate.recvkexinit = 1; |
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533 |
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534 TRACE(("leave recv_msg_kexinit")) |
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535 } |
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536 |
595
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537 static void load_dh_p(mp_int * dh_p) |
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538 { |
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539 switch (ses.newkeys->algo_kex) { |
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540 case DROPBEAR_KEX_DH_GROUP1: |
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541 bytes_to_mp(dh_p, dh_p_1, DH_P_1_LEN); |
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542 break; |
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543 case DROPBEAR_KEX_DH_GROUP14: |
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544 bytes_to_mp(dh_p, dh_p_14, DH_P_14_LEN); |
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545 break; |
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546 } |
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547 } |
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548 |
26 | 549 /* Initialises and generate one side of the diffie-hellman key exchange values. |
603
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550 * See the transport rfc 4253 section 8 for details */ |
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551 /* dh_pub and dh_priv MUST be already initialised */ |
26 | 552 void gen_kexdh_vals(mp_int *dh_pub, mp_int *dh_priv) { |
553 | |
84
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554 DEF_MP_INT(dh_p); |
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555 DEF_MP_INT(dh_q); |
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556 DEF_MP_INT(dh_g); |
26 | 557 |
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558 TRACE(("enter send_msg_kexdh_reply")) |
26 | 559 |
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560 m_mp_init_multi(&dh_g, &dh_p, &dh_q, NULL); |
26 | 561 |
562 /* read the prime and generator*/ | |
595
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563 load_dh_p(&dh_p); |
26 | 564 |
565 if (mp_set_int(&dh_g, DH_G_VAL) != MP_OKAY) { | |
566 dropbear_exit("Diffie-Hellman error"); | |
567 } | |
568 | |
569 /* calculate q = (p-1)/2 */ | |
570 /* dh_priv is just a temp var here */ | |
571 if (mp_sub_d(&dh_p, 1, dh_priv) != MP_OKAY) { | |
572 dropbear_exit("Diffie-Hellman error"); | |
573 } | |
574 if (mp_div_2(dh_priv, &dh_q) != MP_OKAY) { | |
575 dropbear_exit("Diffie-Hellman error"); | |
576 } | |
577 | |
188
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578 /* Generate a private portion 0 < dh_priv < dh_q */ |
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579 gen_random_mpint(&dh_q, dh_priv); |
26 | 580 |
581 /* f = g^y mod p */ | |
582 if (mp_exptmod(&dh_g, dh_priv, &dh_p, dh_pub) != MP_OKAY) { | |
583 dropbear_exit("Diffie-Hellman error"); | |
584 } | |
585 mp_clear_multi(&dh_g, &dh_p, &dh_q, NULL); | |
586 } | |
587 | |
588 /* This function is fairly common between client/server, with some substitution | |
589 * of dh_e/dh_f etc. Hence these arguments: | |
590 * dh_pub_us is 'e' for the client, 'f' for the server. dh_pub_them is | |
591 * vice-versa. dh_priv is the x/y value corresponding to dh_pub_us */ | |
592 void kexdh_comb_key(mp_int *dh_pub_us, mp_int *dh_priv, mp_int *dh_pub_them, | |
593 sign_key *hostkey) { | |
594 | |
595 mp_int dh_p; | |
596 mp_int *dh_e = NULL, *dh_f = NULL; | |
597 hash_state hs; | |
598 | |
599 /* read the prime and generator*/ | |
342 | 600 m_mp_init(&dh_p); |
595
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601 load_dh_p(&dh_p); |
26 | 602 |
603 /* Check that dh_pub_them (dh_e or dh_f) is in the range [1, p-1] */ | |
604 if (mp_cmp(dh_pub_them, &dh_p) != MP_LT | |
605 || mp_cmp_d(dh_pub_them, 0) != MP_GT) { | |
606 dropbear_exit("Diffie-Hellman error"); | |
607 } | |
608 | |
609 /* K = e^y mod p = f^x mod p */ | |
610 ses.dh_K = (mp_int*)m_malloc(sizeof(mp_int)); | |
611 m_mp_init(ses.dh_K); | |
612 if (mp_exptmod(dh_pub_them, dh_priv, &dh_p, ses.dh_K) != MP_OKAY) { | |
613 dropbear_exit("Diffie-Hellman error"); | |
614 } | |
615 | |
616 /* clear no longer needed vars */ | |
617 mp_clear_multi(&dh_p, NULL); | |
618 | |
619 /* From here on, the code needs to work with the _same_ vars on each side, | |
620 * not vice-versaing for client/server */ | |
621 if (IS_DROPBEAR_CLIENT) { | |
622 dh_e = dh_pub_us; | |
623 dh_f = dh_pub_them; | |
624 } else { | |
625 dh_e = dh_pub_them; | |
626 dh_f = dh_pub_us; | |
627 } | |
628 | |
629 /* Create the remainder of the hash buffer, to generate the exchange hash */ | |
630 /* K_S, the host key */ | |
631 buf_put_pub_key(ses.kexhashbuf, hostkey, ses.newkeys->algo_hostkey); | |
632 /* e, exchange value sent by the client */ | |
633 buf_putmpint(ses.kexhashbuf, dh_e); | |
634 /* f, exchange value sent by the server */ | |
635 buf_putmpint(ses.kexhashbuf, dh_f); | |
636 /* K, the shared secret */ | |
637 buf_putmpint(ses.kexhashbuf, ses.dh_K); | |
638 | |
639 /* calculate the hash H to sign */ | |
640 sha1_init(&hs); | |
641 buf_setpos(ses.kexhashbuf, 0); | |
642 sha1_process(&hs, buf_getptr(ses.kexhashbuf, ses.kexhashbuf->len), | |
643 ses.kexhashbuf->len); | |
644 sha1_done(&hs, ses.hash); | |
35
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diff
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645 |
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646 buf_burn(ses.kexhashbuf); |
26 | 647 buf_free(ses.kexhashbuf); |
648 ses.kexhashbuf = NULL; | |
649 | |
650 /* first time around, we set the session_id to H */ | |
651 if (ses.session_id == NULL) { | |
652 /* create the session_id, this never needs freeing */ | |
653 ses.session_id = (unsigned char*)m_malloc(SHA1_HASH_SIZE); | |
654 memcpy(ses.session_id, ses.hash, SHA1_HASH_SIZE); | |
655 } | |
656 } | |
657 | |
658 /* read the other side's algo list. buf_match_algo is a callback to match | |
659 * algos for the client or server. */ | |
33 | 660 static void read_kex_algos() { |
26 | 661 |
36
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662 /* for asymmetry */ |
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663 algo_type * c2s_hash_algo = NULL; |
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664 algo_type * s2c_hash_algo = NULL; |
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diff
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665 algo_type * c2s_cipher_algo = NULL; |
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666 algo_type * s2c_cipher_algo = NULL; |
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667 algo_type * c2s_comp_algo = NULL; |
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diff
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668 algo_type * s2c_comp_algo = NULL; |
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diff
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669 /* the generic one */ |
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670 algo_type * algo = NULL; |
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diff
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671 |
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672 /* which algo couldn't match */ |
26 | 673 char * erralgo = NULL; |
674 | |
675 int goodguess = 0; | |
676 int allgood = 1; /* we AND this with each goodguess and see if its still | |
677 true after */ | |
678 | |
679 buf_incrpos(ses.payload, 16); /* start after the cookie */ | |
680 | |
681 ses.newkeys = (struct key_context*)m_malloc(sizeof(struct key_context)); | |
682 | |
683 /* kex_algorithms */ | |
33 | 684 algo = ses.buf_match_algo(ses.payload, sshkex, &goodguess); |
26 | 685 allgood &= goodguess; |
686 if (algo == NULL) { | |
687 erralgo = "kex"; | |
688 goto error; | |
689 } | |
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690 TRACE(("kex algo %s", algo->name)) |
26 | 691 ses.newkeys->algo_kex = algo->val; |
692 | |
693 /* server_host_key_algorithms */ | |
33 | 694 algo = ses.buf_match_algo(ses.payload, sshhostkey, &goodguess); |
26 | 695 allgood &= goodguess; |
696 if (algo == NULL) { | |
697 erralgo = "hostkey"; | |
698 goto error; | |
699 } | |
165
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700 TRACE(("hostkey algo %s", algo->name)) |
26 | 701 ses.newkeys->algo_hostkey = algo->val; |
702 | |
703 /* encryption_algorithms_client_to_server */ | |
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diff
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704 c2s_cipher_algo = ses.buf_match_algo(ses.payload, sshciphers, &goodguess); |
116
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705 if (c2s_cipher_algo == NULL) { |
26 | 706 erralgo = "enc c->s"; |
707 goto error; | |
708 } | |
228
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- Fixed twofish algorithm naming so it actually works.
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709 TRACE(("enc c2s is %s", c2s_cipher_algo->name)) |
26 | 710 |
711 /* encryption_algorithms_server_to_client */ | |
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diff
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712 s2c_cipher_algo = ses.buf_match_algo(ses.payload, sshciphers, &goodguess); |
116
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diff
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713 if (s2c_cipher_algo == NULL) { |
26 | 714 erralgo = "enc s->c"; |
715 goto error; | |
716 } | |
228
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- Fixed twofish algorithm naming so it actually works.
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717 TRACE(("enc s2c is %s", s2c_cipher_algo->name)) |
26 | 718 |
719 /* mac_algorithms_client_to_server */ | |
36
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35
diff
changeset
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720 c2s_hash_algo = ses.buf_match_algo(ses.payload, sshhashes, &goodguess); |
116
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Check for non-matching algos properly
Matt Johnston <matt@ucc.asn.au>
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84
diff
changeset
|
721 if (c2s_hash_algo == NULL) { |
26 | 722 erralgo = "mac c->s"; |
723 goto error; | |
724 } | |
228
5e4110bb753a
- Fixed twofish algorithm naming so it actually works.
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725 TRACE(("hash c2s is %s", c2s_hash_algo->name)) |
26 | 726 |
727 /* mac_algorithms_server_to_client */ | |
36
a600c015562d
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35
diff
changeset
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728 s2c_hash_algo = ses.buf_match_algo(ses.payload, sshhashes, &goodguess); |
116
2010f4119c1a
Check for non-matching algos properly
Matt Johnston <matt@ucc.asn.au>
parents:
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diff
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729 if (s2c_hash_algo == NULL) { |
26 | 730 erralgo = "mac s->c"; |
731 goto error; | |
732 } | |
228
5e4110bb753a
- Fixed twofish algorithm naming so it actually works.
Matt Johnston <matt@ucc.asn.au>
parents:
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diff
changeset
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733 TRACE(("hash s2c is %s", s2c_hash_algo->name)) |
26 | 734 |
735 /* compression_algorithms_client_to_server */ | |
575
f9b5dc0cba61
- Disable compression for non-final multihops
Matt Johnston <matt@ucc.asn.au>
parents:
555
diff
changeset
|
736 c2s_comp_algo = ses.buf_match_algo(ses.payload, ses.compress_algos, &goodguess); |
116
2010f4119c1a
Check for non-matching algos properly
Matt Johnston <matt@ucc.asn.au>
parents:
84
diff
changeset
|
737 if (c2s_comp_algo == NULL) { |
26 | 738 erralgo = "comp c->s"; |
739 goto error; | |
740 } | |
228
5e4110bb753a
- Fixed twofish algorithm naming so it actually works.
Matt Johnston <matt@ucc.asn.au>
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diff
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|
741 TRACE(("hash c2s is %s", c2s_comp_algo->name)) |
26 | 742 |
743 /* compression_algorithms_server_to_client */ | |
575
f9b5dc0cba61
- Disable compression for non-final multihops
Matt Johnston <matt@ucc.asn.au>
parents:
555
diff
changeset
|
744 s2c_comp_algo = ses.buf_match_algo(ses.payload, ses.compress_algos, &goodguess); |
116
2010f4119c1a
Check for non-matching algos properly
Matt Johnston <matt@ucc.asn.au>
parents:
84
diff
changeset
|
745 if (s2c_comp_algo == NULL) { |
26 | 746 erralgo = "comp s->c"; |
747 goto error; | |
748 } | |
228
5e4110bb753a
- Fixed twofish algorithm naming so it actually works.
Matt Johnston <matt@ucc.asn.au>
parents:
227
diff
changeset
|
749 TRACE(("hash s2c is %s", s2c_comp_algo->name)) |
26 | 750 |
751 /* languages_client_to_server */ | |
752 buf_eatstring(ses.payload); | |
753 | |
754 /* languages_server_to_client */ | |
755 buf_eatstring(ses.payload); | |
756 | |
757 /* first_kex_packet_follows */ | |
179
161557a9dde8
* fix longstanding bug with connections being closed on failure to
Matt Johnston <matt@ucc.asn.au>
parents:
165
diff
changeset
|
758 if (buf_getbool(ses.payload)) { |
26 | 759 ses.kexstate.firstfollows = 1; |
760 /* if the guess wasn't good, we ignore the packet sent */ | |
761 if (!allgood) { | |
762 ses.ignorenext = 1; | |
763 } | |
764 } | |
765 | |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
766 /* Handle the asymmetry */ |
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
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diff
changeset
|
767 if (IS_DROPBEAR_CLIENT) { |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
768 ses.newkeys->recv.algo_crypt = |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
769 (struct dropbear_cipher*)s2c_cipher_algo->data; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
770 ses.newkeys->trans.algo_crypt = |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
771 (struct dropbear_cipher*)c2s_cipher_algo->data; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
772 ses.newkeys->recv.crypt_mode = |
502 | 773 (struct dropbear_cipher_mode*)s2c_cipher_algo->mode; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
774 ses.newkeys->trans.crypt_mode = |
502 | 775 (struct dropbear_cipher_mode*)c2s_cipher_algo->mode; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
776 ses.newkeys->recv.algo_mac = |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
777 (struct dropbear_hash*)s2c_hash_algo->data; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
778 ses.newkeys->trans.algo_mac = |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
779 (struct dropbear_hash*)c2s_hash_algo->data; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
780 ses.newkeys->recv.algo_comp = s2c_comp_algo->val; |
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
781 ses.newkeys->trans.algo_comp = c2s_comp_algo->val; |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
782 } else { |
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
783 /* SERVER */ |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
784 ses.newkeys->recv.algo_crypt = |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
785 (struct dropbear_cipher*)c2s_cipher_algo->data; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
786 ses.newkeys->trans.algo_crypt = |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
787 (struct dropbear_cipher*)s2c_cipher_algo->data; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
788 ses.newkeys->recv.crypt_mode = |
502 | 789 (struct dropbear_cipher_mode*)c2s_cipher_algo->mode; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
790 ses.newkeys->trans.crypt_mode = |
502 | 791 (struct dropbear_cipher_mode*)s2c_cipher_algo->mode; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
792 ses.newkeys->recv.algo_mac = |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
793 (struct dropbear_hash*)c2s_hash_algo->data; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
794 ses.newkeys->trans.algo_mac = |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
795 (struct dropbear_hash*)s2c_hash_algo->data; |
534
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
796 ses.newkeys->recv.algo_comp = c2s_comp_algo->val; |
0431915df79f
- Get rid of decryptreadbuf, just decrypt in-place with readbuf
Matt Johnston <matt@ucc.asn.au>
parents:
502
diff
changeset
|
797 ses.newkeys->trans.algo_comp = s2c_comp_algo->val; |
36
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
798 } |
a600c015562d
Handle differing c2s and s2c algorithms properly
Matt Johnston <matt@ucc.asn.au>
parents:
35
diff
changeset
|
799 |
26 | 800 /* reserved for future extensions */ |
801 buf_getint(ses.payload); | |
802 return; | |
803 | |
804 error: | |
594
a98a2138364a
Improve capitalisation for all logged strings
Matt Johnston <matt@ucc.asn.au>
parents:
575
diff
changeset
|
805 dropbear_exit("No matching algo %s", erralgo); |
26 | 806 } |