EVP_KDF-SSHKDF.7ossl 10 KB

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  135. .IX Title "EVP_KDF-SSHKDF 7ossl"
  136. .TH EVP_KDF-SSHKDF 7ossl "2024-09-03" "3.3.2" "OpenSSL"
  137. .\" For nroff, turn off justification. Always turn off hyphenation; it makes
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  139. .if n .ad l
  140. .nh
  141. .SH "NAME"
  142. EVP_KDF\-SSHKDF \- The SSHKDF EVP_KDF implementation
  143. .SH "DESCRIPTION"
  144. .IX Header "DESCRIPTION"
  145. Support for computing the \fB\s-1SSHKDF\s0\fR \s-1KDF\s0 through the \fB\s-1EVP_KDF\s0\fR \s-1API.\s0
  146. .PP
  147. The \s-1EVP_KDF\-SSHKDF\s0 algorithm implements the \s-1SSHKDF\s0 key derivation function.
  148. It is defined in \s-1RFC 4253,\s0 section 7.2 and is used by \s-1SSH\s0 to derive IVs,
  149. encryption keys and integrity keys.
  150. Five inputs are required to perform key derivation: The hashing function
  151. (for example \s-1SHA256\s0), the Initial Key, the Exchange Hash, the Session \s-1ID,\s0
  152. and the derivation key type.
  153. .SS "Identity"
  154. .IX Subsection "Identity"
  155. \&\*(L"\s-1SSHKDF\*(R"\s0 is the name for this implementation; it
  156. can be used with the \fBEVP_KDF_fetch()\fR function.
  157. .SS "Supported parameters"
  158. .IX Subsection "Supported parameters"
  159. The supported parameters are:
  160. .ie n .IP """properties"" (\fB\s-1OSSL_KDF_PARAM_PROPERTIES\s0\fR) <\s-1UTF8\s0 string>" 4
  161. .el .IP "``properties'' (\fB\s-1OSSL_KDF_PARAM_PROPERTIES\s0\fR) <\s-1UTF8\s0 string>" 4
  162. .IX Item "properties (OSSL_KDF_PARAM_PROPERTIES) <UTF8 string>"
  163. .PD 0
  164. .ie n .IP """digest"" (\fB\s-1OSSL_KDF_PARAM_DIGEST\s0\fR) <\s-1UTF8\s0 string>" 4
  165. .el .IP "``digest'' (\fB\s-1OSSL_KDF_PARAM_DIGEST\s0\fR) <\s-1UTF8\s0 string>" 4
  166. .IX Item "digest (OSSL_KDF_PARAM_DIGEST) <UTF8 string>"
  167. .ie n .IP """key"" (\fB\s-1OSSL_KDF_PARAM_KEY\s0\fR) <octet string>" 4
  168. .el .IP "``key'' (\fB\s-1OSSL_KDF_PARAM_KEY\s0\fR) <octet string>" 4
  169. .IX Item "key (OSSL_KDF_PARAM_KEY) <octet string>"
  170. .PD
  171. These parameters work as described in \*(L"\s-1PARAMETERS\*(R"\s0 in \s-1\fBEVP_KDF\s0\fR\|(3).
  172. .ie n .IP """xcghash"" (\fB\s-1OSSL_KDF_PARAM_SSHKDF_XCGHASH\s0\fR) <octet string>" 4
  173. .el .IP "``xcghash'' (\fB\s-1OSSL_KDF_PARAM_SSHKDF_XCGHASH\s0\fR) <octet string>" 4
  174. .IX Item "xcghash (OSSL_KDF_PARAM_SSHKDF_XCGHASH) <octet string>"
  175. .PD 0
  176. .ie n .IP """session_id"" (\fB\s-1OSSL_KDF_PARAM_SSHKDF_SESSION_ID\s0\fR) <octet string>" 4
  177. .el .IP "``session_id'' (\fB\s-1OSSL_KDF_PARAM_SSHKDF_SESSION_ID\s0\fR) <octet string>" 4
  178. .IX Item "session_id (OSSL_KDF_PARAM_SSHKDF_SESSION_ID) <octet string>"
  179. .PD
  180. These parameters set the respective values for the \s-1KDF.\s0
  181. If a value is already set, the contents are replaced.
  182. .ie n .IP """type"" (\fB\s-1OSSL_KDF_PARAM_SSHKDF_TYPE\s0\fR) <\s-1UTF8\s0 string>" 4
  183. .el .IP "``type'' (\fB\s-1OSSL_KDF_PARAM_SSHKDF_TYPE\s0\fR) <\s-1UTF8\s0 string>" 4
  184. .IX Item "type (OSSL_KDF_PARAM_SSHKDF_TYPE) <UTF8 string>"
  185. This parameter sets the type for the \s-1SSHKDF\s0 operation.
  186. There are six supported types:
  187. .RS 4
  188. .IP "\s-1EVP_KDF_SSHKDF_TYPE_INITIAL_IV_CLI_TO_SRV\s0" 4
  189. .IX Item "EVP_KDF_SSHKDF_TYPE_INITIAL_IV_CLI_TO_SRV"
  190. The Initial \s-1IV\s0 from client to server.
  191. A single char of value 65 (\s-1ASCII\s0 char 'A').
  192. .IP "\s-1EVP_KDF_SSHKDF_TYPE_INITIAL_IV_SRV_TO_CLI\s0" 4
  193. .IX Item "EVP_KDF_SSHKDF_TYPE_INITIAL_IV_SRV_TO_CLI"
  194. The Initial \s-1IV\s0 from server to client
  195. A single char of value 66 (\s-1ASCII\s0 char 'B').
  196. .IP "\s-1EVP_KDF_SSHKDF_TYPE_ENCRYPTION_KEY_CLI_TO_SRV\s0" 4
  197. .IX Item "EVP_KDF_SSHKDF_TYPE_ENCRYPTION_KEY_CLI_TO_SRV"
  198. The Encryption Key from client to server
  199. A single char of value 67 (\s-1ASCII\s0 char 'C').
  200. .IP "\s-1EVP_KDF_SSHKDF_TYPE_ENCRYPTION_KEY_SRV_TO_CLI\s0" 4
  201. .IX Item "EVP_KDF_SSHKDF_TYPE_ENCRYPTION_KEY_SRV_TO_CLI"
  202. The Encryption Key from server to client
  203. A single char of value 68 (\s-1ASCII\s0 char 'D').
  204. .IP "\s-1EVP_KDF_SSHKDF_TYPE_INTEGRITY_KEY_CLI_TO_SRV\s0" 4
  205. .IX Item "EVP_KDF_SSHKDF_TYPE_INTEGRITY_KEY_CLI_TO_SRV"
  206. The Integrity Key from client to server
  207. A single char of value 69 (\s-1ASCII\s0 char 'E').
  208. .IP "\s-1EVP_KDF_SSHKDF_TYPE_INTEGRITY_KEY_SRV_TO_CLI\s0" 4
  209. .IX Item "EVP_KDF_SSHKDF_TYPE_INTEGRITY_KEY_SRV_TO_CLI"
  210. The Integrity Key from client to server
  211. A single char of value 70 (\s-1ASCII\s0 char 'F').
  212. .RE
  213. .RS 4
  214. .RE
  215. .SH "NOTES"
  216. .IX Header "NOTES"
  217. A context for \s-1SSHKDF\s0 can be obtained by calling:
  218. .PP
  219. .Vb 2
  220. \& EVP_KDF *kdf = EVP_KDF_fetch(NULL, "SSHKDF", NULL);
  221. \& EVP_KDF_CTX *kctx = EVP_KDF_CTX_new(kdf);
  222. .Ve
  223. .PP
  224. The output length of the \s-1SSHKDF\s0 derivation is specified via the \fIkeylen\fR
  225. parameter to the \fBEVP_KDF_derive\fR\|(3) function.
  226. Since the \s-1SSHKDF\s0 output length is variable, calling \fBEVP_KDF_CTX_get_kdf_size\fR\|(3)
  227. to obtain the requisite length is not meaningful. The caller must
  228. allocate a buffer of the desired length, and pass that buffer to the
  229. \&\fBEVP_KDF_derive\fR\|(3) function along with the desired length.
  230. .SH "EXAMPLES"
  231. .IX Header "EXAMPLES"
  232. This example derives an 8 byte \s-1IV\s0 using \s-1SHA\-256\s0 with a 1K \*(L"key\*(R" and appropriate
  233. \&\*(L"xcghash\*(R" and \*(L"session_id\*(R" values:
  234. .PP
  235. .Vb 9
  236. \& EVP_KDF *kdf;
  237. \& EVP_KDF_CTX *kctx;
  238. \& char type = EVP_KDF_SSHKDF_TYPE_INITIAL_IV_CLI_TO_SRV;
  239. \& unsigned char key[1024] = "01234...";
  240. \& unsigned char xcghash[32] = "012345...";
  241. \& unsigned char session_id[32] = "012345...";
  242. \& unsigned char out[8];
  243. \& size_t outlen = sizeof(out);
  244. \& OSSL_PARAM params[6], *p = params;
  245. \&
  246. \& kdf = EVP_KDF_fetch(NULL, "SSHKDF", NULL);
  247. \& kctx = EVP_KDF_CTX_new(kdf);
  248. \& EVP_KDF_free(kdf);
  249. \&
  250. \& *p++ = OSSL_PARAM_construct_utf8_string(OSSL_KDF_PARAM_DIGEST,
  251. \& SN_sha256, strlen(SN_sha256));
  252. \& *p++ = OSSL_PARAM_construct_octet_string(OSSL_KDF_PARAM_KEY,
  253. \& key, (size_t)1024);
  254. \& *p++ = OSSL_PARAM_construct_octet_string(OSSL_KDF_PARAM_SSHKDF_XCGHASH,
  255. \& xcghash, (size_t)32);
  256. \& *p++ = OSSL_PARAM_construct_octet_string(OSSL_KDF_PARAM_SSHKDF_SESSION_ID,
  257. \& session_id, (size_t)32);
  258. \& *p++ = OSSL_PARAM_construct_utf8_string(OSSL_KDF_PARAM_SSHKDF_TYPE,
  259. \& &type, sizeof(type));
  260. \& *p = OSSL_PARAM_construct_end();
  261. \& if (EVP_KDF_derive(kctx, out, outlen, params) <= 0)
  262. \& /* Error */
  263. .Ve
  264. .SH "CONFORMING TO"
  265. .IX Header "CONFORMING TO"
  266. \&\s-1RFC 4253\s0
  267. .SH "SEE ALSO"
  268. .IX Header "SEE ALSO"
  269. \&\s-1\fBEVP_KDF\s0\fR\|(3),
  270. \&\fBEVP_KDF_CTX_new\fR\|(3),
  271. \&\fBEVP_KDF_CTX_free\fR\|(3),
  272. \&\fBEVP_KDF_CTX_set_params\fR\|(3),
  273. \&\fBEVP_KDF_CTX_get_kdf_size\fR\|(3),
  274. \&\fBEVP_KDF_derive\fR\|(3),
  275. \&\*(L"\s-1PARAMETERS\*(R"\s0 in \s-1\fBEVP_KDF\s0\fR\|(3)
  276. .SH "HISTORY"
  277. .IX Header "HISTORY"
  278. This functionality was added in OpenSSL 3.0.
  279. .SH "COPYRIGHT"
  280. .IX Header "COPYRIGHT"
  281. Copyright 2016\-2022 The OpenSSL Project Authors. All Rights Reserved.
  282. .PP
  283. Licensed under the Apache License 2.0 (the \*(L"License\*(R"). You may not use
  284. this file except in compliance with the License. You can obtain a copy
  285. in the file \s-1LICENSE\s0 in the source distribution or at
  286. <https://www.openssl.org/source/license.html>.