Mercurial > dropbear
annotate common-algo.c @ 755:b07eb3dc23ec ecc
refactor kexdh code a bit, start working on ecdh etc
author | Matt Johnston <matt@ucc.asn.au> |
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date | Tue, 26 Mar 2013 01:35:22 +0800 |
parents | cd3d3c63d189 |
children | bf9dc2d9c2b1 |
rev | line source |
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1 /* |
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2 * Dropbear SSH |
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3 * |
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4 * Copyright (c) 2002,2003 Matt Johnston |
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5 * 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 "algo.h" |
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27 #include "dbutil.h" |
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28 |
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29 /* This file (algo.c) organises the ciphers which can be used, and is used to |
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30 * decide which ciphers/hashes/compression/signing to use during key exchange*/ |
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31 |
502 | 32 static int void_cipher(const unsigned char* in, unsigned char* out, |
33 unsigned long len, void *cipher_state) { | |
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34 if (in != out) { |
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35 memmove(out, in, len); |
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36 } |
502 | 37 return CRYPT_OK; |
38 } | |
39 | |
40 static int void_start(int cipher, const unsigned char *IV, | |
41 const unsigned char *key, | |
42 int keylen, int num_rounds, void *cipher_state) { | |
43 return CRYPT_OK; | |
44 } | |
45 | |
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46 /* Mappings for ciphers, parameters are |
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47 {&cipher_desc, keysize, blocksize} */ |
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48 |
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49 /* Remember to add new ciphers/hashes to regciphers/reghashes too */ |
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50 |
502 | 51 #ifdef DROPBEAR_AES256 |
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52 static const struct dropbear_cipher dropbear_aes256 = |
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53 {&aes_desc, 32, 16}; |
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54 #endif |
502 | 55 #ifdef DROPBEAR_AES128 |
227 | 56 static const struct dropbear_cipher dropbear_aes128 = |
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57 {&aes_desc, 16, 16}; |
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58 #endif |
502 | 59 #ifdef DROPBEAR_BLOWFISH |
227 | 60 static const struct dropbear_cipher dropbear_blowfish = |
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61 {&blowfish_desc, 16, 8}; |
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62 #endif |
502 | 63 #ifdef DROPBEAR_TWOFISH256 |
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64 static const struct dropbear_cipher dropbear_twofish256 = |
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65 {&twofish_desc, 32, 16}; |
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66 #endif |
502 | 67 #ifdef DROPBEAR_TWOFISH128 |
227 | 68 static const struct dropbear_cipher dropbear_twofish128 = |
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69 {&twofish_desc, 16, 16}; |
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70 #endif |
502 | 71 #ifdef DROPBEAR_3DES |
227 | 72 static const struct dropbear_cipher dropbear_3des = |
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73 {&des3_desc, 24, 8}; |
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74 #endif |
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75 |
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76 /* used to indicate no encryption, as defined in rfc2410 */ |
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77 const struct dropbear_cipher dropbear_nocipher = |
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78 {NULL, 16, 8}; |
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79 |
502 | 80 /* A few void* s are required to silence warnings |
81 * about the symmetric_CBC vs symmetric_CTR cipher_state pointer */ | |
82 const struct dropbear_cipher_mode dropbear_mode_cbc = | |
83 {(void*)cbc_start, (void*)cbc_encrypt, (void*)cbc_decrypt}; | |
84 const struct dropbear_cipher_mode dropbear_mode_none = | |
85 {void_start, void_cipher, void_cipher}; | |
86 #ifdef DROPBEAR_ENABLE_CTR_MODE | |
87 /* a wrapper to make ctr_start and cbc_start look the same */ | |
88 static int dropbear_big_endian_ctr_start(int cipher, | |
89 const unsigned char *IV, | |
90 const unsigned char *key, int keylen, | |
91 int num_rounds, symmetric_CTR *ctr) { | |
92 return ctr_start(cipher, IV, key, keylen, num_rounds, CTR_COUNTER_BIG_ENDIAN, ctr); | |
93 } | |
94 const struct dropbear_cipher_mode dropbear_mode_ctr = | |
95 {(void*)dropbear_big_endian_ctr_start, (void*)ctr_encrypt, (void*)ctr_decrypt}; | |
96 #endif | |
97 | |
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98 /* Mapping of ssh hashes to libtomcrypt hashes, including keysize etc. |
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99 {&hash_desc, keysize, hashsize} */ |
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100 |
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101 #ifdef DROPBEAR_SHA1_HMAC |
227 | 102 static const struct dropbear_hash dropbear_sha1 = |
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103 {&sha1_desc, 20, 20}; |
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104 #endif |
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105 #ifdef DROPBEAR_SHA1_96_HMAC |
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106 static const struct dropbear_hash dropbear_sha1_96 = |
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107 {&sha1_desc, 20, 12}; |
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108 #endif |
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109 #ifdef DROPBEAR_SHA2_256_HMAC |
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110 static const struct dropbear_hash dropbear_sha2_256 = |
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111 {&sha256_desc, 32, 32}; |
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112 #endif |
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113 #ifdef DROPBEAR_SHA2_512_HMAC |
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114 static const struct dropbear_hash dropbear_sha2_512 = |
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115 {&sha512_desc, 64, 64}; |
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116 #endif |
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117 #ifdef DROPBEAR_MD5_HMAC |
227 | 118 static const struct dropbear_hash dropbear_md5 = |
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119 {&md5_desc, 16, 16}; |
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120 #endif |
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121 |
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122 const struct dropbear_hash dropbear_nohash = |
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123 {NULL, 16, 0}; /* used initially */ |
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124 |
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125 |
502 | 126 /* The following map ssh names to internal values. |
127 * The ordering here is important for the client - the first mode | |
128 * that is also supported by the server will get used. */ | |
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129 |
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130 algo_type sshciphers[] = { |
502 | 131 #ifdef DROPBEAR_ENABLE_CTR_MODE |
132 #ifdef DROPBEAR_AES128 | |
133 {"aes128-ctr", 0, &dropbear_aes128, 1, &dropbear_mode_ctr}, | |
134 #endif | |
135 #ifdef DROPBEAR_3DES | |
136 {"3des-ctr", 0, &dropbear_3des, 1, &dropbear_mode_ctr}, | |
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137 #endif |
502 | 138 #ifdef DROPBEAR_AES256 |
139 {"aes256-ctr", 0, &dropbear_aes256, 1, &dropbear_mode_ctr}, | |
140 #endif | |
141 #endif /* DROPBEAR_ENABLE_CTR_MODE */ | |
142 | |
143 /* CBC modes are always enabled */ | |
144 #ifdef DROPBEAR_AES128 | |
145 {"aes128-cbc", 0, &dropbear_aes128, 1, &dropbear_mode_cbc}, | |
146 #endif | |
147 #ifdef DROPBEAR_3DES | |
148 {"3des-cbc", 0, &dropbear_3des, 1, &dropbear_mode_cbc}, | |
149 #endif | |
150 #ifdef DROPBEAR_AES256 | |
151 {"aes256-cbc", 0, &dropbear_aes256, 1, &dropbear_mode_cbc}, | |
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152 #endif |
502 | 153 #ifdef DROPBEAR_TWOFISH256 |
154 {"twofish256-cbc", 0, &dropbear_twofish256, 1, &dropbear_mode_cbc}, | |
155 {"twofish-cbc", 0, &dropbear_twofish256, 1, &dropbear_mode_cbc}, | |
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156 #endif |
502 | 157 #ifdef DROPBEAR_TWOFISH128 |
158 {"twofish128-cbc", 0, &dropbear_twofish128, 1, &dropbear_mode_cbc}, | |
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159 #endif |
502 | 160 #ifdef DROPBEAR_BLOWFISH |
161 {"blowfish-cbc", 0, &dropbear_blowfish, 1, &dropbear_mode_cbc}, | |
162 #endif | |
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163 #ifdef DROPBEAR_NONE_CIPHER |
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164 {"none", 0, (void*)&dropbear_nocipher, 1, &dropbear_mode_none}, |
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165 #endif |
502 | 166 {NULL, 0, NULL, 0, NULL} |
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167 }; |
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168 |
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169 algo_type sshhashes[] = { |
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170 #ifdef DROPBEAR_SHA2_256_HMAC |
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171 {"hmac-sha2-256", 0, &dropbear_sha2_256, 1, NULL}, |
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172 #endif |
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173 #ifdef DROPBEAR_SHA2_512_HMAC |
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174 {"hmac-sha2-512", 0, &dropbear_sha2_512, 1, NULL}, |
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175 #endif |
228
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176 #ifdef DROPBEAR_SHA1_96_HMAC |
502 | 177 {"hmac-sha1-96", 0, &dropbear_sha1_96, 1, NULL}, |
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178 #endif |
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179 #ifdef DROPBEAR_SHA1_HMAC |
502 | 180 {"hmac-sha1", 0, &dropbear_sha1, 1, NULL}, |
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181 #endif |
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182 #ifdef DROPBEAR_MD5_HMAC |
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183 {"hmac-md5", 0, (void*)&dropbear_md5, 1, NULL}, |
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184 #endif |
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185 #ifdef DROPBEAR_NONE_INTEGRITY |
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186 {"none", 0, (void*)&dropbear_nohash, 1, NULL}, |
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187 #endif |
502 | 188 {NULL, 0, NULL, 0, NULL} |
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189 }; |
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190 |
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191 #ifndef DISABLE_ZLIB |
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192 algo_type ssh_compress[] = { |
502 | 193 {"zlib", DROPBEAR_COMP_ZLIB, NULL, 1, NULL}, |
194 {"[email protected]", DROPBEAR_COMP_ZLIB_DELAY, NULL, 1, NULL}, | |
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195 {"none", DROPBEAR_COMP_NONE, NULL, 1, NULL}, |
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196 {NULL, 0, NULL, 0, NULL} |
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197 }; |
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198 #endif |
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199 |
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200 algo_type ssh_nocompress[] = { |
502 | 201 {"none", DROPBEAR_COMP_NONE, NULL, 1, NULL}, |
202 {NULL, 0, NULL, 0, NULL} | |
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203 }; |
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204 |
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205 algo_type sshhostkey[] = { |
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206 #ifdef DROPBEAR_RSA |
502 | 207 {"ssh-rsa", DROPBEAR_SIGNKEY_RSA, NULL, 1, NULL}, |
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208 #endif |
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209 #ifdef DROPBEAR_DSS |
502 | 210 {"ssh-dss", DROPBEAR_SIGNKEY_DSS, NULL, 1, NULL}, |
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211 #endif |
502 | 212 {NULL, 0, NULL, 0, NULL} |
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213 }; |
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214 |
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215 algo_type sshkex[] = { |
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216 // {"ecdh-sha2-secp256r1", DROPBEAR_KEX_ECDH_SECP256R1, NULL, 1, NULL}, |
502 | 217 {"diffie-hellman-group1-sha1", DROPBEAR_KEX_DH_GROUP1, NULL, 1, NULL}, |
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218 {"diffie-hellman-group14-sha1", DROPBEAR_KEX_DH_GROUP14, NULL, 1, NULL}, |
502 | 219 {NULL, 0, NULL, 0, NULL} |
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220 }; |
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221 |
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222 |
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223 /* Register the compiled in ciphers. |
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224 * This should be run before using any of the ciphers/hashes */ |
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225 void crypto_init() { |
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226 |
194
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227 const struct ltc_cipher_descriptor *regciphers[] = { |
502 | 228 #ifdef DROPBEAR_AES |
150
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229 &aes_desc, |
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230 #endif |
502 | 231 #ifdef DROPBEAR_BLOWFISH |
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232 &blowfish_desc, |
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233 #endif |
502 | 234 #ifdef DROPBEAR_TWOFISH |
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235 &twofish_desc, |
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236 #endif |
502 | 237 #ifdef DROPBEAR_3DES |
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238 &des3_desc, |
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239 #endif |
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240 NULL |
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241 }; |
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242 |
194
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243 const struct ltc_hash_descriptor *reghashes[] = { |
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244 /* we need sha1 for hostkey stuff regardless */ |
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245 &sha1_desc, |
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246 #ifdef DROPBEAR_MD5_HMAC |
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247 &md5_desc, |
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248 #endif |
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249 #ifdef DROPBEAR_SHA2_256_HMAC |
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250 &sha256_desc, |
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251 #endif |
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252 #ifdef DROPBEAR_SHA2_512_HMAC |
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253 &sha512_desc, |
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254 #endif |
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255 NULL |
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256 }; |
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257 int i; |
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258 |
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259 for (i = 0; regciphers[i] != NULL; i++) { |
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260 if (register_cipher(regciphers[i]) == -1) { |
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261 dropbear_exit("Error registering crypto"); |
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262 } |
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263 } |
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264 |
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265 for (i = 0; reghashes[i] != NULL; i++) { |
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266 if (register_hash(reghashes[i]) == -1) { |
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267 dropbear_exit("Error registering crypto"); |
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268 } |
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269 } |
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270 } |
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271 |
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272 /* algolen specifies the length of algo, algos is our local list to match |
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273 * against. |
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274 * Returns DROPBEAR_SUCCESS if we have a match for algo, DROPBEAR_FAILURE |
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275 * otherwise */ |
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276 int have_algo(char* algo, size_t algolen, algo_type algos[]) { |
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277 |
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278 int i; |
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279 |
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280 for (i = 0; algos[i].name != NULL; i++) { |
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281 if (strlen(algos[i].name) == algolen |
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282 && (strncmp(algos[i].name, algo, algolen) == 0)) { |
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283 return DROPBEAR_SUCCESS; |
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284 } |
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285 } |
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286 |
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287 return DROPBEAR_FAILURE; |
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288 } |
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289 |
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290 /* Output a comma separated list of algorithms to a buffer */ |
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291 void buf_put_algolist(buffer * buf, algo_type localalgos[]) { |
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292 |
238
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293 unsigned int i, len; |
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294 unsigned int donefirst = 0; |
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295 buffer *algolist = NULL; |
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296 |
502 | 297 algolist = buf_new(160); |
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298 for (i = 0; localalgos[i].name != NULL; i++) { |
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299 if (localalgos[i].usable) { |
238
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300 if (donefirst) |
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301 buf_putbyte(algolist, ','); |
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302 donefirst = 1; |
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303 len = strlen(localalgos[i].name); |
238
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304 buf_putbytes(algolist, localalgos[i].name, len); |
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305 } |
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306 } |
238
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307 buf_putstring(buf, algolist->data, algolist->len); |
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308 buf_free(algolist); |
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309 } |
682
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310 |
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311 #ifdef DROPBEAR_NONE_CIPHER |
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312 |
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313 void |
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314 set_algo_usable(algo_type algos[], const char * algo_name, int usable) |
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315 { |
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316 algo_type *a; |
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317 for (a = algos; a->name != NULL; a++) |
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318 { |
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319 if (strcmp(a->name, algo_name) == 0) |
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320 { |
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321 a->usable = usable; |
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322 return; |
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323 } |
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324 } |
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325 } |
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326 |
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327 int |
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328 get_algo_usable(algo_type algos[], const char * algo_name) |
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329 { |
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330 algo_type *a; |
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331 for (a = algos; a->name != NULL; a++) |
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332 { |
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333 if (strcmp(a->name, algo_name) == 0) |
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334 { |
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335 return a->usable; |
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336 } |
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337 } |
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338 return 0; |
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339 } |
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340 |
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341 #endif // DROPBEAR_NONE_CIPHER |
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342 |
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343 #ifdef ENABLE_USER_ALGO_LIST |
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344 |
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345 char * |
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346 algolist_string(algo_type algos[]) |
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347 { |
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348 char *ret_list; |
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349 buffer *b = buf_new(200); |
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350 buf_put_algolist(b, algos); |
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351 buf_setpos(b, b->len); |
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352 buf_putbyte(b, '\0'); |
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353 buf_setpos(b, 4); |
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354 ret_list = m_strdup(buf_getptr(b, b->len - b->pos)); |
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355 buf_free(b); |
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356 return ret_list; |
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357 } |
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358 |
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359 static algo_type* |
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360 check_algo(const char* algo_name, algo_type *algos) |
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361 { |
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362 algo_type *a; |
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363 for (a = algos; a->name != NULL; a++) |
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364 { |
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365 if (strcmp(a->name, algo_name) == 0) |
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366 { |
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367 return a; |
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368 } |
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369 } |
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370 |
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371 return NULL; |
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372 } |
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373 |
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374 static void |
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375 try_add_algo(const char *algo_name, algo_type *algos, |
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376 const char *algo_desc, algo_type * new_algos, int *num_ret) |
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377 { |
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378 algo_type *match_algo = check_algo(algo_name, algos); |
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379 if (!match_algo) |
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380 { |
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381 dropbear_log(LOG_WARNING, "This Dropbear program does not support '%s' %s algorithm", algo_name, algo_desc); |
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382 return; |
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383 } |
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384 |
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385 new_algos[*num_ret] = *match_algo; |
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386 (*num_ret)++; |
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387 } |
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388 |
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389 /* Checks a user provided comma-separated algorithm list for available |
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390 * options. Any that are not acceptable are removed in-place. Returns the |
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391 * number of valid algorithms. */ |
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392 int |
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393 check_user_algos(const char* user_algo_list, algo_type * algos, |
682
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394 const char *algo_desc) |
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395 { |
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396 algo_type new_algos[MAX_PROPOSED_ALGO]; |
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397 /* this has two passes. first we sweep through the given list of |
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398 * algorithms and mark them as usable=2 in the algo_type[] array... */ |
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399 int num_ret = 0; |
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400 char *work_list = m_strdup(user_algo_list); |
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401 char *last_name = work_list; |
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402 char *c; |
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403 for (c = work_list; *c; c++) |
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404 { |
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405 if (*c == ',') |
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406 { |
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407 *c = '\0'; |
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408 try_add_algo(last_name, algos, algo_desc, new_algos, &num_ret); |
686
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409 c++; |
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410 last_name = c; |
682
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411 } |
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412 } |
683
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413 try_add_algo(last_name, algos, algo_desc, new_algos, &num_ret); |
682
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414 m_free(work_list); |
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415 |
683
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416 new_algos[num_ret].name = NULL; |
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417 |
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418 /* Copy one more as a blank delimiter */ |
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419 memcpy(algos, new_algos, sizeof(*new_algos) * (num_ret+1)); |
682
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420 return num_ret; |
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421 } |
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422 #endif // ENABLE_USER_ALGO_LIST |