/src/openssl/providers/implementations/kdfs/hkdf.c
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1 | | /* |
2 | | * Copyright 2016-2024 The OpenSSL Project Authors. All Rights Reserved. |
3 | | * |
4 | | * Licensed under the Apache License 2.0 (the "License"). You may not use |
5 | | * this file except in compliance with the License. You can obtain a copy |
6 | | * in the file LICENSE in the source distribution or at |
7 | | * https://www.openssl.org/source/license.html |
8 | | */ |
9 | | |
10 | | |
11 | | /* |
12 | | * HMAC low level APIs are deprecated for public use, but still ok for internal |
13 | | * use. |
14 | | */ |
15 | | #include "internal/deprecated.h" |
16 | | |
17 | | #include <stdlib.h> |
18 | | #include <stdarg.h> |
19 | | #include <string.h> |
20 | | #include <openssl/hmac.h> |
21 | | #include <openssl/evp.h> |
22 | | #include <openssl/kdf.h> |
23 | | #include <openssl/core_names.h> |
24 | | #include <openssl/proverr.h> |
25 | | #include "internal/cryptlib.h" |
26 | | #include "internal/numbers.h" |
27 | | #include "internal/packet.h" |
28 | | #include "crypto/evp.h" |
29 | | #include "prov/provider_ctx.h" |
30 | | #include "prov/providercommon.h" |
31 | | #include "prov/implementations.h" |
32 | | #include "prov/provider_util.h" |
33 | | #include "prov/securitycheck.h" |
34 | | #include "internal/e_os.h" |
35 | | #include "internal/params.h" |
36 | | #include "internal/sizes.h" |
37 | | |
38 | | #define HKDF_MAXBUF 2048 |
39 | | #define HKDF_MAXINFO (32*1024) |
40 | 0 | #define HKDF_MAX_INFOS 5 |
41 | | |
42 | | static OSSL_FUNC_kdf_newctx_fn kdf_hkdf_new; |
43 | | static OSSL_FUNC_kdf_dupctx_fn kdf_hkdf_dup; |
44 | | static OSSL_FUNC_kdf_freectx_fn kdf_hkdf_free; |
45 | | static OSSL_FUNC_kdf_reset_fn kdf_hkdf_reset; |
46 | | static OSSL_FUNC_kdf_derive_fn kdf_hkdf_derive; |
47 | | static OSSL_FUNC_kdf_settable_ctx_params_fn kdf_hkdf_settable_ctx_params; |
48 | | static OSSL_FUNC_kdf_set_ctx_params_fn kdf_hkdf_set_ctx_params; |
49 | | static OSSL_FUNC_kdf_gettable_ctx_params_fn hkdf_gettable_ctx_params; |
50 | | static OSSL_FUNC_kdf_get_ctx_params_fn hkdf_common_get_ctx_params; |
51 | | static OSSL_FUNC_kdf_derive_fn kdf_tls1_3_derive; |
52 | | static OSSL_FUNC_kdf_settable_ctx_params_fn kdf_tls1_3_settable_ctx_params; |
53 | | static OSSL_FUNC_kdf_set_ctx_params_fn kdf_tls1_3_set_ctx_params; |
54 | | static OSSL_FUNC_kdf_newctx_fn kdf_hkdf_sha256_new; |
55 | | static OSSL_FUNC_kdf_newctx_fn kdf_hkdf_sha384_new; |
56 | | static OSSL_FUNC_kdf_newctx_fn kdf_hkdf_sha512_new; |
57 | | static OSSL_FUNC_kdf_settable_ctx_params_fn kdf_hkdf_fixed_digest_settable_ctx_params; |
58 | | static OSSL_FUNC_kdf_set_ctx_params_fn kdf_hkdf_fixed_digest_set_ctx_params; |
59 | | |
60 | | static void *kdf_hkdf_fixed_digest_new(void *provctx, const char *digest); |
61 | | static void kdf_hkdf_reset_ex(void *vctx, int on_free); |
62 | | |
63 | | static int HKDF(OSSL_LIB_CTX *libctx, const EVP_MD *evp_md, |
64 | | const unsigned char *salt, size_t salt_len, |
65 | | const unsigned char *key, size_t key_len, |
66 | | const unsigned char *info, size_t info_len, |
67 | | unsigned char *okm, size_t okm_len); |
68 | | static int HKDF_Extract(OSSL_LIB_CTX *libctx, const EVP_MD *evp_md, |
69 | | const unsigned char *salt, size_t salt_len, |
70 | | const unsigned char *ikm, size_t ikm_len, |
71 | | unsigned char *prk, size_t prk_len); |
72 | | static int HKDF_Expand(const EVP_MD *evp_md, |
73 | | const unsigned char *prk, size_t prk_len, |
74 | | const unsigned char *info, size_t info_len, |
75 | | unsigned char *okm, size_t okm_len); |
76 | | |
77 | | typedef struct { |
78 | | void *provctx; |
79 | | int mode; |
80 | | PROV_DIGEST digest; |
81 | | unsigned char *salt; |
82 | | size_t salt_len; |
83 | | unsigned char *key; |
84 | | size_t key_len; |
85 | | unsigned char *prefix; |
86 | | size_t prefix_len; |
87 | | unsigned char *label; |
88 | | size_t label_len; |
89 | | unsigned char *data; |
90 | | size_t data_len; |
91 | | unsigned char *info; |
92 | | size_t info_len; |
93 | | int fixed_digest; |
94 | | OSSL_FIPS_IND_DECLARE |
95 | | } KDF_HKDF; |
96 | | |
97 | | static void *kdf_hkdf_new(void *provctx) |
98 | 0 | { |
99 | 0 | KDF_HKDF *ctx; |
100 | |
|
101 | 0 | if (!ossl_prov_is_running()) |
102 | 0 | return NULL; |
103 | | |
104 | 0 | if ((ctx = OPENSSL_zalloc(sizeof(*ctx))) != NULL) { |
105 | 0 | ctx->provctx = provctx; |
106 | 0 | OSSL_FIPS_IND_INIT(ctx) |
107 | 0 | } |
108 | 0 | return ctx; |
109 | 0 | } |
110 | | |
111 | | static void kdf_hkdf_free(void *vctx) |
112 | 0 | { |
113 | 0 | KDF_HKDF *ctx = (KDF_HKDF *)vctx; |
114 | |
|
115 | 0 | if (ctx != NULL) { |
116 | 0 | kdf_hkdf_reset_ex(vctx, 1); |
117 | 0 | OPENSSL_free(ctx); |
118 | 0 | } |
119 | 0 | } |
120 | | |
121 | | static void kdf_hkdf_reset(void *vctx) |
122 | 0 | { |
123 | 0 | kdf_hkdf_reset_ex(vctx, 0); |
124 | 0 | } |
125 | | |
126 | | static void kdf_hkdf_reset_ex(void *vctx, int on_free) |
127 | 0 | { |
128 | 0 | KDF_HKDF *ctx = (KDF_HKDF *)vctx; |
129 | 0 | void *provctx = ctx->provctx; |
130 | 0 | int preserve_digest = on_free ? 0 : ctx->fixed_digest; |
131 | 0 | PROV_DIGEST save_prov_digest = { 0 }; |
132 | | |
133 | | /* For fixed digests just save and restore the PROV_DIGEST object */ |
134 | 0 | if (preserve_digest) |
135 | 0 | save_prov_digest = ctx->digest; |
136 | 0 | else |
137 | 0 | ossl_prov_digest_reset(&ctx->digest); |
138 | | #ifdef OPENSSL_PEDANTIC_ZEROIZATION |
139 | | OPENSSL_clear_free(ctx->salt, ctx->salt_len); |
140 | | #else |
141 | 0 | OPENSSL_free(ctx->salt); |
142 | 0 | #endif |
143 | 0 | OPENSSL_free(ctx->prefix); |
144 | 0 | OPENSSL_free(ctx->label); |
145 | 0 | OPENSSL_clear_free(ctx->data, ctx->data_len); |
146 | 0 | OPENSSL_clear_free(ctx->key, ctx->key_len); |
147 | 0 | OPENSSL_clear_free(ctx->info, ctx->info_len); |
148 | 0 | memset(ctx, 0, sizeof(*ctx)); |
149 | 0 | ctx->provctx = provctx; |
150 | 0 | if (preserve_digest) { |
151 | 0 | ctx->fixed_digest = preserve_digest; |
152 | 0 | ctx->digest = save_prov_digest; |
153 | 0 | } |
154 | 0 | } |
155 | | |
156 | | static void *kdf_hkdf_dup(void *vctx) |
157 | 0 | { |
158 | 0 | const KDF_HKDF *src = (const KDF_HKDF *)vctx; |
159 | 0 | KDF_HKDF *dest; |
160 | |
|
161 | 0 | dest = kdf_hkdf_new(src->provctx); |
162 | 0 | if (dest != NULL) { |
163 | 0 | if (!ossl_prov_memdup(src->salt, src->salt_len, &dest->salt, |
164 | 0 | &dest->salt_len) |
165 | 0 | || !ossl_prov_memdup(src->key, src->key_len, |
166 | 0 | &dest->key , &dest->key_len) |
167 | 0 | || !ossl_prov_memdup(src->prefix, src->prefix_len, |
168 | 0 | &dest->prefix, &dest->prefix_len) |
169 | 0 | || !ossl_prov_memdup(src->label, src->label_len, |
170 | 0 | &dest->label, &dest->label_len) |
171 | 0 | || !ossl_prov_memdup(src->data, src->data_len, |
172 | 0 | &dest->data, &dest->data_len) |
173 | 0 | || !ossl_prov_memdup(src->info, src->info_len, |
174 | 0 | &dest->info, &dest->info_len) |
175 | 0 | || !ossl_prov_digest_copy(&dest->digest, &src->digest)) |
176 | 0 | goto err; |
177 | 0 | dest->mode = src->mode; |
178 | 0 | dest->fixed_digest = src->fixed_digest; |
179 | 0 | OSSL_FIPS_IND_COPY(dest, src) |
180 | 0 | } |
181 | 0 | return dest; |
182 | | |
183 | 0 | err: |
184 | 0 | kdf_hkdf_free(dest); |
185 | 0 | return NULL; |
186 | 0 | } |
187 | | |
188 | | static size_t kdf_hkdf_size(KDF_HKDF *ctx) |
189 | 0 | { |
190 | 0 | int sz; |
191 | 0 | const EVP_MD *md = ossl_prov_digest_md(&ctx->digest); |
192 | |
|
193 | 0 | if (ctx->mode != EVP_KDF_HKDF_MODE_EXTRACT_ONLY) |
194 | 0 | return SIZE_MAX; |
195 | | |
196 | 0 | if (md == NULL) { |
197 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_MISSING_MESSAGE_DIGEST); |
198 | 0 | return 0; |
199 | 0 | } |
200 | 0 | sz = EVP_MD_get_size(md); |
201 | 0 | if (sz <= 0) |
202 | 0 | return 0; |
203 | | |
204 | 0 | return sz; |
205 | 0 | } |
206 | | |
207 | | #ifdef FIPS_MODULE |
208 | | static int fips_hkdf_key_check_passed(KDF_HKDF *ctx) |
209 | | { |
210 | | OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx); |
211 | | int key_approved = ossl_kdf_check_key_size(ctx->key_len); |
212 | | |
213 | | if (!key_approved) { |
214 | | if (!OSSL_FIPS_IND_ON_UNAPPROVED(ctx, OSSL_FIPS_IND_SETTABLE0, |
215 | | libctx, "HKDF", "Key size", |
216 | | ossl_fips_config_hkdf_key_check)) { |
217 | | ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_KEY_LENGTH); |
218 | | return 0; |
219 | | } |
220 | | } |
221 | | return 1; |
222 | | } |
223 | | #endif |
224 | | |
225 | | static int kdf_hkdf_derive(void *vctx, unsigned char *key, size_t keylen, |
226 | | const OSSL_PARAM params[]) |
227 | 0 | { |
228 | 0 | KDF_HKDF *ctx = (KDF_HKDF *)vctx; |
229 | 0 | OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx); |
230 | 0 | const EVP_MD *md; |
231 | |
|
232 | 0 | if (!ossl_prov_is_running() || !kdf_hkdf_set_ctx_params(ctx, params)) |
233 | 0 | return 0; |
234 | | |
235 | 0 | md = ossl_prov_digest_md(&ctx->digest); |
236 | 0 | if (md == NULL) { |
237 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_MISSING_MESSAGE_DIGEST); |
238 | 0 | return 0; |
239 | 0 | } |
240 | 0 | if (ctx->key == NULL) { |
241 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_MISSING_KEY); |
242 | 0 | return 0; |
243 | 0 | } |
244 | 0 | if (keylen == 0) { |
245 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_KEY_LENGTH); |
246 | 0 | return 0; |
247 | 0 | } |
248 | | |
249 | 0 | switch (ctx->mode) { |
250 | 0 | case EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND: |
251 | 0 | default: |
252 | 0 | return HKDF(libctx, md, ctx->salt, ctx->salt_len, |
253 | 0 | ctx->key, ctx->key_len, ctx->info, ctx->info_len, key, keylen); |
254 | | |
255 | 0 | case EVP_KDF_HKDF_MODE_EXTRACT_ONLY: |
256 | 0 | return HKDF_Extract(libctx, md, ctx->salt, ctx->salt_len, |
257 | 0 | ctx->key, ctx->key_len, key, keylen); |
258 | | |
259 | 0 | case EVP_KDF_HKDF_MODE_EXPAND_ONLY: |
260 | 0 | return HKDF_Expand(md, ctx->key, ctx->key_len, ctx->info, |
261 | 0 | ctx->info_len, key, keylen); |
262 | 0 | } |
263 | 0 | } |
264 | | |
265 | | struct hkdf_all_set_ctx_params_st { |
266 | | OSSL_PARAM *mode; |
267 | | OSSL_PARAM *propq; |
268 | | OSSL_PARAM *engine; |
269 | | OSSL_PARAM *digest; |
270 | | OSSL_PARAM *key; |
271 | | OSSL_PARAM *salt; |
272 | | #ifdef FIPS_MODULE |
273 | | OSSL_PARAM *ind_k; |
274 | | OSSL_PARAM *ind_d; |
275 | | #endif |
276 | | OSSL_PARAM *prefix; |
277 | | OSSL_PARAM *label; |
278 | | OSSL_PARAM *data; |
279 | | OSSL_PARAM *info[HKDF_MAX_INFOS]; |
280 | | int num_info; |
281 | | }; |
282 | | |
283 | | static int hkdf_common_set_ctx_params |
284 | | (KDF_HKDF *ctx, struct hkdf_all_set_ctx_params_st *p) |
285 | 0 | { |
286 | 0 | OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx); |
287 | 0 | int n; |
288 | |
|
289 | 0 | if (p->digest != NULL) { |
290 | 0 | const EVP_MD *md = NULL; |
291 | |
|
292 | 0 | if (!ossl_prov_digest_load(&ctx->digest, p->digest, |
293 | 0 | p->propq, p->engine, libctx)) |
294 | 0 | return 0; |
295 | | |
296 | 0 | md = ossl_prov_digest_md(&ctx->digest); |
297 | 0 | if (EVP_MD_xof(md)) { |
298 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_XOF_DIGESTS_NOT_ALLOWED); |
299 | 0 | return 0; |
300 | 0 | } |
301 | 0 | } |
302 | | |
303 | 0 | if (p->mode != NULL) { |
304 | 0 | if (p->mode->data_type == OSSL_PARAM_UTF8_STRING) { |
305 | 0 | if (OPENSSL_strcasecmp(p->mode->data, "EXTRACT_AND_EXPAND") == 0) { |
306 | 0 | ctx->mode = EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND; |
307 | 0 | } else if (OPENSSL_strcasecmp(p->mode->data, "EXTRACT_ONLY") == 0) { |
308 | 0 | ctx->mode = EVP_KDF_HKDF_MODE_EXTRACT_ONLY; |
309 | 0 | } else if (OPENSSL_strcasecmp(p->mode->data, "EXPAND_ONLY") == 0) { |
310 | 0 | ctx->mode = EVP_KDF_HKDF_MODE_EXPAND_ONLY; |
311 | 0 | } else { |
312 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_MODE); |
313 | 0 | return 0; |
314 | 0 | } |
315 | 0 | } else if (OSSL_PARAM_get_int(p->mode, &n)) { |
316 | 0 | if (n != EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND |
317 | 0 | && n != EVP_KDF_HKDF_MODE_EXTRACT_ONLY |
318 | 0 | && n != EVP_KDF_HKDF_MODE_EXPAND_ONLY) { |
319 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_MODE); |
320 | 0 | return 0; |
321 | 0 | } |
322 | 0 | ctx->mode = n; |
323 | 0 | } else { |
324 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_MODE); |
325 | 0 | return 0; |
326 | 0 | } |
327 | 0 | } |
328 | | |
329 | 0 | if (p->key != NULL) { |
330 | 0 | OPENSSL_clear_free(ctx->key, ctx->key_len); |
331 | 0 | ctx->key = NULL; |
332 | 0 | if (!OSSL_PARAM_get_octet_string(p->key, (void **)&ctx->key, 0, |
333 | 0 | &ctx->key_len)) |
334 | 0 | return 0; |
335 | 0 | } |
336 | | |
337 | 0 | if (p->salt != NULL) { |
338 | 0 | OPENSSL_free(ctx->salt); |
339 | 0 | ctx->salt = NULL; |
340 | 0 | if (!OSSL_PARAM_get_octet_string(p->salt, (void **)&ctx->salt, 0, |
341 | 0 | &ctx->salt_len)) |
342 | 0 | return 0; |
343 | 0 | } |
344 | | |
345 | | /* Only relevant for HKDF not to the TLS 1.3 KDF */ |
346 | 0 | if (ossl_param_get1_concat_octet_string(p->num_info, p->info, |
347 | 0 | &ctx->info, &ctx->info_len) == 0) |
348 | 0 | return 0; |
349 | | |
350 | 0 | return 1; |
351 | 0 | } |
352 | | |
353 | | #define hkdf_set_ctx_params_st hkdf_all_set_ctx_params_st |
354 | | |
355 | | /* Machine generated by util/perl/OpenSSL/paramnames.pm */ |
356 | | #ifndef hkdf_set_ctx_params_list |
357 | | static const OSSL_PARAM hkdf_set_ctx_params_list[] = { |
358 | | OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_MODE, NULL, 0), |
359 | | OSSL_PARAM_int(OSSL_KDF_PARAM_MODE, NULL), |
360 | | OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_PROPERTIES, NULL, 0), |
361 | | OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_DIGEST, NULL, 0), |
362 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_KEY, NULL, 0), |
363 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_SALT, NULL, 0), |
364 | | # if defined(FIPS_MODULE) |
365 | | OSSL_PARAM_int(OSSL_KDF_PARAM_FIPS_KEY_CHECK, NULL), |
366 | | # endif |
367 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_INFO, NULL, 0), |
368 | | OSSL_PARAM_END |
369 | | }; |
370 | | #endif |
371 | | |
372 | | #ifndef hkdf_set_ctx_params_st |
373 | | struct hkdf_set_ctx_params_st { |
374 | | OSSL_PARAM *digest; |
375 | | OSSL_PARAM *engine; |
376 | | # if defined(FIPS_MODULE) |
377 | | OSSL_PARAM *ind_k; |
378 | | # endif |
379 | | OSSL_PARAM *info[HKDF_MAX_INFOS]; |
380 | | int num_info; |
381 | | OSSL_PARAM *key; |
382 | | OSSL_PARAM *mode; |
383 | | OSSL_PARAM *propq; |
384 | | OSSL_PARAM *salt; |
385 | | }; |
386 | | #endif |
387 | | |
388 | | #ifndef hkdf_set_ctx_params_decoder |
389 | | static int hkdf_set_ctx_params_decoder |
390 | | (const OSSL_PARAM *p, struct hkdf_set_ctx_params_st *r) |
391 | 0 | { |
392 | 0 | const char *s; |
393 | |
|
394 | 0 | memset(r, 0, sizeof(*r)); |
395 | 0 | if (p != NULL) |
396 | 0 | for (; (s = p->key) != NULL; p++) |
397 | 0 | switch(s[0]) { |
398 | 0 | default: |
399 | 0 | break; |
400 | 0 | case 'd': |
401 | 0 | if (ossl_likely(strcmp("igest", s + 1) == 0)) { |
402 | | /* KDF_PARAM_DIGEST */ |
403 | 0 | if (ossl_unlikely(r->digest != NULL)) { |
404 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
405 | 0 | "param %s is repeated", s); |
406 | 0 | return 0; |
407 | 0 | } |
408 | 0 | r->digest = (OSSL_PARAM *)p; |
409 | 0 | } |
410 | 0 | break; |
411 | 0 | case 'e': |
412 | 0 | if (ossl_likely(strcmp("ngine", s + 1) == 0)) { |
413 | | /* ALG_PARAM_ENGINE */ |
414 | 0 | if (ossl_unlikely(r->engine != NULL)) { |
415 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
416 | 0 | "param %s is repeated", s); |
417 | 0 | return 0; |
418 | 0 | } |
419 | 0 | r->engine = (OSSL_PARAM *)p; |
420 | 0 | } |
421 | 0 | break; |
422 | 0 | case 'i': |
423 | 0 | if (ossl_likely(strcmp("nfo", s + 1) == 0)) { |
424 | | /* KDF_PARAM_INFO */ |
425 | 0 | if (ossl_unlikely(r->num_info >= HKDF_MAX_INFOS)) { |
426 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_TOO_MANY_RECORDS, |
427 | 0 | "param %s present >%d times", s, HKDF_MAX_INFOS); |
428 | 0 | return 0; |
429 | 0 | } |
430 | 0 | r->info[r->num_info++] = (OSSL_PARAM *)p; |
431 | 0 | } |
432 | 0 | break; |
433 | 0 | case 'k': |
434 | 0 | switch(s[1]) { |
435 | 0 | default: |
436 | 0 | break; |
437 | 0 | case 'e': |
438 | 0 | switch(s[2]) { |
439 | 0 | default: |
440 | 0 | break; |
441 | 0 | case 'y': |
442 | 0 | switch(s[3]) { |
443 | 0 | default: |
444 | 0 | break; |
445 | 0 | case '-': |
446 | | # if defined(FIPS_MODULE) |
447 | | if (ossl_likely(strcmp("check", s + 4) == 0)) { |
448 | | /* KDF_PARAM_FIPS_KEY_CHECK */ |
449 | | if (ossl_unlikely(r->ind_k != NULL)) { |
450 | | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
451 | | "param %s is repeated", s); |
452 | | return 0; |
453 | | } |
454 | | r->ind_k = (OSSL_PARAM *)p; |
455 | | } |
456 | | # endif |
457 | 0 | break; |
458 | 0 | case '\0': |
459 | 0 | if (ossl_unlikely(r->key != NULL)) { |
460 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
461 | 0 | "param %s is repeated", s); |
462 | 0 | return 0; |
463 | 0 | } |
464 | 0 | r->key = (OSSL_PARAM *)p; |
465 | 0 | } |
466 | 0 | } |
467 | 0 | } |
468 | 0 | break; |
469 | 0 | case 'm': |
470 | 0 | if (ossl_likely(strcmp("ode", s + 1) == 0)) { |
471 | | /* KDF_PARAM_MODE */ |
472 | 0 | if (ossl_unlikely(r->mode != NULL)) { |
473 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
474 | 0 | "param %s is repeated", s); |
475 | 0 | return 0; |
476 | 0 | } |
477 | 0 | r->mode = (OSSL_PARAM *)p; |
478 | 0 | } |
479 | 0 | break; |
480 | 0 | case 'p': |
481 | 0 | if (ossl_likely(strcmp("roperties", s + 1) == 0)) { |
482 | | /* KDF_PARAM_PROPERTIES */ |
483 | 0 | if (ossl_unlikely(r->propq != NULL)) { |
484 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
485 | 0 | "param %s is repeated", s); |
486 | 0 | return 0; |
487 | 0 | } |
488 | 0 | r->propq = (OSSL_PARAM *)p; |
489 | 0 | } |
490 | 0 | break; |
491 | 0 | case 's': |
492 | 0 | if (ossl_likely(strcmp("alt", s + 1) == 0)) { |
493 | | /* KDF_PARAM_SALT */ |
494 | 0 | if (ossl_unlikely(r->salt != NULL)) { |
495 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
496 | 0 | "param %s is repeated", s); |
497 | 0 | return 0; |
498 | 0 | } |
499 | 0 | r->salt = (OSSL_PARAM *)p; |
500 | 0 | } |
501 | 0 | } |
502 | 0 | return 1; |
503 | 0 | } |
504 | | #endif |
505 | | /* End of machine generated */ |
506 | | |
507 | | static int kdf_hkdf_set_ctx_params(void *vctx, const OSSL_PARAM params[]) |
508 | 0 | { |
509 | 0 | struct hkdf_all_set_ctx_params_st p; |
510 | 0 | KDF_HKDF *ctx = vctx; |
511 | |
|
512 | 0 | if (ctx == NULL || !hkdf_set_ctx_params_decoder(params, &p)) |
513 | 0 | return 0; |
514 | | |
515 | 0 | if (!OSSL_FIPS_IND_SET_CTX_FROM_PARAM(ctx, OSSL_FIPS_IND_SETTABLE0, p.ind_k)) |
516 | 0 | return 0; |
517 | | |
518 | 0 | if (!hkdf_common_set_ctx_params(ctx, &p)) |
519 | 0 | return 0; |
520 | | |
521 | | #ifdef FIPS_MODULE |
522 | | if (p.key != NULL) |
523 | | if (!fips_hkdf_key_check_passed(ctx)) |
524 | | return 0; |
525 | | #endif |
526 | | |
527 | 0 | return 1; |
528 | 0 | } |
529 | | |
530 | | static const OSSL_PARAM *kdf_hkdf_settable_ctx_params(ossl_unused void *ctx, |
531 | | ossl_unused void *provctx) |
532 | 0 | { |
533 | 0 | return hkdf_set_ctx_params_list; |
534 | 0 | } |
535 | | |
536 | | /* Machine generated by util/perl/OpenSSL/paramnames.pm */ |
537 | | #ifndef hkdf_get_ctx_params_list |
538 | | static const OSSL_PARAM hkdf_get_ctx_params_list[] = { |
539 | | OSSL_PARAM_size_t(OSSL_KDF_PARAM_SIZE, NULL), |
540 | | OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_DIGEST, NULL, 0), |
541 | | OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_MODE, NULL, 0), |
542 | | OSSL_PARAM_int(OSSL_KDF_PARAM_MODE, NULL), |
543 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_SALT, NULL, 0), |
544 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_INFO, NULL, 0), |
545 | | # if defined(FIPS_MODULE) |
546 | | OSSL_PARAM_int(OSSL_KDF_PARAM_FIPS_APPROVED_INDICATOR, NULL), |
547 | | # endif |
548 | | OSSL_PARAM_END |
549 | | }; |
550 | | #endif |
551 | | |
552 | | #ifndef hkdf_get_ctx_params_st |
553 | | struct hkdf_get_ctx_params_st { |
554 | | OSSL_PARAM *digest; |
555 | | # if defined(FIPS_MODULE) |
556 | | OSSL_PARAM *ind; |
557 | | # endif |
558 | | OSSL_PARAM *info; |
559 | | OSSL_PARAM *mode; |
560 | | OSSL_PARAM *salt; |
561 | | OSSL_PARAM *size; |
562 | | }; |
563 | | #endif |
564 | | |
565 | | #ifndef hkdf_get_ctx_params_decoder |
566 | | static int hkdf_get_ctx_params_decoder |
567 | | (const OSSL_PARAM *p, struct hkdf_get_ctx_params_st *r) |
568 | 0 | { |
569 | 0 | const char *s; |
570 | |
|
571 | 0 | memset(r, 0, sizeof(*r)); |
572 | 0 | if (p != NULL) |
573 | 0 | for (; (s = p->key) != NULL; p++) |
574 | 0 | switch(s[0]) { |
575 | 0 | default: |
576 | 0 | break; |
577 | 0 | case 'd': |
578 | 0 | if (ossl_likely(strcmp("igest", s + 1) == 0)) { |
579 | | /* KDF_PARAM_DIGEST */ |
580 | 0 | if (ossl_unlikely(r->digest != NULL)) { |
581 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
582 | 0 | "param %s is repeated", s); |
583 | 0 | return 0; |
584 | 0 | } |
585 | 0 | r->digest = (OSSL_PARAM *)p; |
586 | 0 | } |
587 | 0 | break; |
588 | 0 | case 'f': |
589 | | # if defined(FIPS_MODULE) |
590 | | if (ossl_likely(strcmp("ips-indicator", s + 1) == 0)) { |
591 | | /* KDF_PARAM_FIPS_APPROVED_INDICATOR */ |
592 | | if (ossl_unlikely(r->ind != NULL)) { |
593 | | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
594 | | "param %s is repeated", s); |
595 | | return 0; |
596 | | } |
597 | | r->ind = (OSSL_PARAM *)p; |
598 | | } |
599 | | # endif |
600 | 0 | break; |
601 | 0 | case 'i': |
602 | 0 | if (ossl_likely(strcmp("nfo", s + 1) == 0)) { |
603 | | /* KDF_PARAM_INFO */ |
604 | 0 | if (ossl_unlikely(r->info != NULL)) { |
605 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
606 | 0 | "param %s is repeated", s); |
607 | 0 | return 0; |
608 | 0 | } |
609 | 0 | r->info = (OSSL_PARAM *)p; |
610 | 0 | } |
611 | 0 | break; |
612 | 0 | case 'm': |
613 | 0 | if (ossl_likely(strcmp("ode", s + 1) == 0)) { |
614 | | /* KDF_PARAM_MODE */ |
615 | 0 | if (ossl_unlikely(r->mode != NULL)) { |
616 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
617 | 0 | "param %s is repeated", s); |
618 | 0 | return 0; |
619 | 0 | } |
620 | 0 | r->mode = (OSSL_PARAM *)p; |
621 | 0 | } |
622 | 0 | break; |
623 | 0 | case 's': |
624 | 0 | switch(s[1]) { |
625 | 0 | default: |
626 | 0 | break; |
627 | 0 | case 'a': |
628 | 0 | if (ossl_likely(strcmp("lt", s + 2) == 0)) { |
629 | | /* KDF_PARAM_SALT */ |
630 | 0 | if (ossl_unlikely(r->salt != NULL)) { |
631 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
632 | 0 | "param %s is repeated", s); |
633 | 0 | return 0; |
634 | 0 | } |
635 | 0 | r->salt = (OSSL_PARAM *)p; |
636 | 0 | } |
637 | 0 | break; |
638 | 0 | case 'i': |
639 | 0 | if (ossl_likely(strcmp("ze", s + 2) == 0)) { |
640 | | /* KDF_PARAM_SIZE */ |
641 | 0 | if (ossl_unlikely(r->size != NULL)) { |
642 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
643 | 0 | "param %s is repeated", s); |
644 | 0 | return 0; |
645 | 0 | } |
646 | 0 | r->size = (OSSL_PARAM *)p; |
647 | 0 | } |
648 | 0 | } |
649 | 0 | } |
650 | 0 | return 1; |
651 | 0 | } |
652 | | #endif |
653 | | /* End of machine generated */ |
654 | | |
655 | | static const OSSL_PARAM *hkdf_gettable_ctx_params(ossl_unused void *ctx, |
656 | | ossl_unused void *provctx) |
657 | 0 | { |
658 | 0 | return hkdf_get_ctx_params_list; |
659 | 0 | } |
660 | | |
661 | | static int hkdf_common_get_ctx_params(void *vctx, OSSL_PARAM params[]) |
662 | 0 | { |
663 | 0 | KDF_HKDF *ctx = (KDF_HKDF *)vctx; |
664 | 0 | struct hkdf_get_ctx_params_st p; |
665 | |
|
666 | 0 | if (ctx == NULL || !hkdf_get_ctx_params_decoder(params, &p)) |
667 | 0 | return 0; |
668 | | |
669 | 0 | if (p.size != NULL) { |
670 | 0 | size_t sz = kdf_hkdf_size(ctx); |
671 | |
|
672 | 0 | if (sz == 0) |
673 | 0 | return 0; |
674 | 0 | if (!OSSL_PARAM_set_size_t(p.size, sz)) |
675 | 0 | return 0; |
676 | 0 | } |
677 | | |
678 | 0 | if (p.digest != NULL) { |
679 | 0 | const EVP_MD *md = ossl_prov_digest_md(&ctx->digest); |
680 | |
|
681 | 0 | if (md == NULL) |
682 | 0 | return 0; |
683 | 0 | else if (!OSSL_PARAM_set_utf8_string(p.digest, EVP_MD_get0_name(md))) |
684 | 0 | return 0; |
685 | 0 | } |
686 | | |
687 | | /* OSSL_KDF_PARAM_MODE has multiple parameter types, so look for all instances */ |
688 | 0 | if (p.mode != NULL) { |
689 | 0 | if (p.mode->data_type == OSSL_PARAM_UTF8_STRING) { |
690 | 0 | switch (ctx->mode) { |
691 | 0 | case EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND: |
692 | 0 | if (!OSSL_PARAM_set_utf8_string(p.mode, "EXTRACT_AND_EXPAND")) |
693 | 0 | return 0; |
694 | 0 | break; |
695 | 0 | case EVP_KDF_HKDF_MODE_EXTRACT_ONLY: |
696 | 0 | if (!OSSL_PARAM_set_utf8_string(p.mode, "EXTRACT_ONLY")) |
697 | 0 | return 0; |
698 | 0 | break; |
699 | 0 | case EVP_KDF_HKDF_MODE_EXPAND_ONLY: |
700 | 0 | if (!OSSL_PARAM_set_utf8_string(p.mode, "EXPAND_ONLY")) |
701 | 0 | return 0; |
702 | 0 | break; |
703 | 0 | default: |
704 | 0 | return 0; |
705 | 0 | } |
706 | 0 | } else { |
707 | 0 | if (!OSSL_PARAM_set_int(p.mode, ctx->mode)) |
708 | 0 | return 0; |
709 | 0 | } |
710 | 0 | } |
711 | | |
712 | 0 | if (p.salt != NULL) { |
713 | 0 | if (ctx->salt == NULL || ctx->salt_len == 0) |
714 | 0 | p.salt->return_size = 0; |
715 | 0 | else if (!OSSL_PARAM_set_octet_string(p.salt, ctx->salt, ctx->salt_len)) |
716 | 0 | return 0; |
717 | 0 | } |
718 | | |
719 | 0 | if (p.info != NULL) { |
720 | 0 | if (ctx->info == NULL || ctx->info_len == 0) |
721 | 0 | p.info->return_size = 0; |
722 | 0 | else if (!OSSL_PARAM_set_octet_string(p.info, ctx->info, ctx->info_len)) |
723 | 0 | return 0; |
724 | 0 | } |
725 | | |
726 | 0 | if (!OSSL_FIPS_IND_GET_CTX_FROM_PARAM(ctx, p.ind)) |
727 | 0 | return 0; |
728 | | |
729 | 0 | return 1; |
730 | 0 | } |
731 | | |
732 | | const OSSL_DISPATCH ossl_kdf_hkdf_functions[] = { |
733 | | { OSSL_FUNC_KDF_NEWCTX, (void(*)(void))kdf_hkdf_new }, |
734 | | { OSSL_FUNC_KDF_DUPCTX, (void(*)(void))kdf_hkdf_dup }, |
735 | | { OSSL_FUNC_KDF_FREECTX, (void(*)(void))kdf_hkdf_free }, |
736 | | { OSSL_FUNC_KDF_RESET, (void(*)(void))kdf_hkdf_reset }, |
737 | | { OSSL_FUNC_KDF_DERIVE, (void(*)(void))kdf_hkdf_derive }, |
738 | | { OSSL_FUNC_KDF_SETTABLE_CTX_PARAMS, |
739 | | (void(*)(void))kdf_hkdf_settable_ctx_params }, |
740 | | { OSSL_FUNC_KDF_SET_CTX_PARAMS, (void(*)(void))kdf_hkdf_set_ctx_params }, |
741 | | { OSSL_FUNC_KDF_GETTABLE_CTX_PARAMS, |
742 | | (void(*)(void))hkdf_gettable_ctx_params }, |
743 | | { OSSL_FUNC_KDF_GET_CTX_PARAMS, (void(*)(void))hkdf_common_get_ctx_params }, |
744 | | OSSL_DISPATCH_END |
745 | | }; |
746 | | |
747 | | static void *kdf_hkdf_fixed_digest_new(void *provctx, const char *digest) |
748 | 0 | { |
749 | 0 | OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(provctx); |
750 | 0 | KDF_HKDF *ctx; |
751 | 0 | OSSL_PARAM params[2]; |
752 | |
|
753 | 0 | ctx = kdf_hkdf_new(provctx); |
754 | 0 | if (ctx == NULL) |
755 | 0 | return NULL; |
756 | | |
757 | 0 | params[0] = OSSL_PARAM_construct_utf8_string(OSSL_ALG_PARAM_DIGEST, |
758 | 0 | (char *)digest, 0); |
759 | 0 | params[1] = OSSL_PARAM_construct_end(); |
760 | 0 | if (!ossl_prov_digest_load_from_params(&ctx->digest, params, libctx)) { |
761 | 0 | kdf_hkdf_free(ctx); |
762 | 0 | return NULL; |
763 | 0 | } |
764 | | |
765 | | /* Now the digest can no longer be changed */ |
766 | 0 | ctx->fixed_digest = 1; |
767 | |
|
768 | 0 | return ctx; |
769 | 0 | } |
770 | | |
771 | | #define hkdf_fixed_digest_set_ctx_params_st hkdf_all_set_ctx_params_st |
772 | | |
773 | | /* Machine generated by util/perl/OpenSSL/paramnames.pm */ |
774 | | #ifndef hkdf_fixed_digest_set_ctx_params_list |
775 | | static const OSSL_PARAM hkdf_fixed_digest_set_ctx_params_list[] = { |
776 | | OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_MODE, NULL, 0), |
777 | | OSSL_PARAM_int(OSSL_KDF_PARAM_MODE, NULL), |
778 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_KEY, NULL, 0), |
779 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_SALT, NULL, 0), |
780 | | # if defined(FIPS_MODULE) |
781 | | OSSL_PARAM_int(OSSL_KDF_PARAM_FIPS_KEY_CHECK, NULL), |
782 | | # endif |
783 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_INFO, NULL, 0), |
784 | | OSSL_PARAM_END |
785 | | }; |
786 | | #endif |
787 | | |
788 | | #ifndef hkdf_fixed_digest_set_ctx_params_st |
789 | | struct hkdf_fixed_digest_set_ctx_params_st { |
790 | | OSSL_PARAM *digest; |
791 | | # if defined(FIPS_MODULE) |
792 | | OSSL_PARAM *ind_k; |
793 | | # endif |
794 | | OSSL_PARAM *info[HKDF_MAX_INFOS]; |
795 | | int num_info; |
796 | | OSSL_PARAM *key; |
797 | | OSSL_PARAM *mode; |
798 | | OSSL_PARAM *salt; |
799 | | }; |
800 | | #endif |
801 | | |
802 | | #ifndef hkdf_fixed_digest_set_ctx_params_decoder |
803 | | static int hkdf_fixed_digest_set_ctx_params_decoder |
804 | | (const OSSL_PARAM *p, struct hkdf_fixed_digest_set_ctx_params_st *r) |
805 | 0 | { |
806 | 0 | const char *s; |
807 | |
|
808 | 0 | memset(r, 0, sizeof(*r)); |
809 | 0 | if (p != NULL) |
810 | 0 | for (; (s = p->key) != NULL; p++) |
811 | 0 | switch(s[0]) { |
812 | 0 | default: |
813 | 0 | break; |
814 | 0 | case 'd': |
815 | 0 | if (ossl_likely(strcmp("igest", s + 1) == 0)) { |
816 | | /* KDF_PARAM_DIGEST */ |
817 | 0 | if (ossl_unlikely(r->digest != NULL)) { |
818 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
819 | 0 | "param %s is repeated", s); |
820 | 0 | return 0; |
821 | 0 | } |
822 | 0 | r->digest = (OSSL_PARAM *)p; |
823 | 0 | } |
824 | 0 | break; |
825 | 0 | case 'i': |
826 | 0 | if (ossl_likely(strcmp("nfo", s + 1) == 0)) { |
827 | | /* KDF_PARAM_INFO */ |
828 | 0 | if (ossl_unlikely(r->num_info >= HKDF_MAX_INFOS)) { |
829 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_TOO_MANY_RECORDS, |
830 | 0 | "param %s present >%d times", s, HKDF_MAX_INFOS); |
831 | 0 | return 0; |
832 | 0 | } |
833 | 0 | r->info[r->num_info++] = (OSSL_PARAM *)p; |
834 | 0 | } |
835 | 0 | break; |
836 | 0 | case 'k': |
837 | 0 | switch(s[1]) { |
838 | 0 | default: |
839 | 0 | break; |
840 | 0 | case 'e': |
841 | 0 | switch(s[2]) { |
842 | 0 | default: |
843 | 0 | break; |
844 | 0 | case 'y': |
845 | 0 | switch(s[3]) { |
846 | 0 | default: |
847 | 0 | break; |
848 | 0 | case '-': |
849 | | # if defined(FIPS_MODULE) |
850 | | if (ossl_likely(strcmp("check", s + 4) == 0)) { |
851 | | /* KDF_PARAM_FIPS_KEY_CHECK */ |
852 | | if (ossl_unlikely(r->ind_k != NULL)) { |
853 | | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
854 | | "param %s is repeated", s); |
855 | | return 0; |
856 | | } |
857 | | r->ind_k = (OSSL_PARAM *)p; |
858 | | } |
859 | | # endif |
860 | 0 | break; |
861 | 0 | case '\0': |
862 | 0 | if (ossl_unlikely(r->key != NULL)) { |
863 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
864 | 0 | "param %s is repeated", s); |
865 | 0 | return 0; |
866 | 0 | } |
867 | 0 | r->key = (OSSL_PARAM *)p; |
868 | 0 | } |
869 | 0 | } |
870 | 0 | } |
871 | 0 | break; |
872 | 0 | case 'm': |
873 | 0 | if (ossl_likely(strcmp("ode", s + 1) == 0)) { |
874 | | /* KDF_PARAM_MODE */ |
875 | 0 | if (ossl_unlikely(r->mode != NULL)) { |
876 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
877 | 0 | "param %s is repeated", s); |
878 | 0 | return 0; |
879 | 0 | } |
880 | 0 | r->mode = (OSSL_PARAM *)p; |
881 | 0 | } |
882 | 0 | break; |
883 | 0 | case 's': |
884 | 0 | if (ossl_likely(strcmp("alt", s + 1) == 0)) { |
885 | | /* KDF_PARAM_SALT */ |
886 | 0 | if (ossl_unlikely(r->salt != NULL)) { |
887 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
888 | 0 | "param %s is repeated", s); |
889 | 0 | return 0; |
890 | 0 | } |
891 | 0 | r->salt = (OSSL_PARAM *)p; |
892 | 0 | } |
893 | 0 | } |
894 | 0 | return 1; |
895 | 0 | } |
896 | | #endif |
897 | | /* End of machine generated */ |
898 | | |
899 | | static int kdf_hkdf_fixed_digest_set_ctx_params(void *vctx, const OSSL_PARAM params[]) |
900 | 0 | { |
901 | 0 | struct hkdf_all_set_ctx_params_st p; |
902 | 0 | KDF_HKDF *ctx = vctx; |
903 | |
|
904 | 0 | if (ctx == NULL || !hkdf_fixed_digest_set_ctx_params_decoder(params, &p)) |
905 | 0 | return 0; |
906 | | |
907 | 0 | if (p.digest != NULL) { |
908 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_DIGEST_NOT_ALLOWED, |
909 | 0 | "Setting the digest is not supported for fixed-digest HKDFs"); |
910 | 0 | return 0; |
911 | 0 | } |
912 | | |
913 | 0 | if (!OSSL_FIPS_IND_SET_CTX_FROM_PARAM(ctx, OSSL_FIPS_IND_SETTABLE0, p.ind_k)) |
914 | 0 | return 0; |
915 | | |
916 | 0 | if (!hkdf_common_set_ctx_params(ctx, &p)) |
917 | 0 | return 0; |
918 | | |
919 | | #ifdef FIPS_MODULE |
920 | | if (p.key != NULL) |
921 | | if (!fips_hkdf_key_check_passed(ctx)) |
922 | | return 0; |
923 | | #endif |
924 | | |
925 | 0 | return 1; |
926 | 0 | } |
927 | | |
928 | | static const OSSL_PARAM *kdf_hkdf_fixed_digest_settable_ctx_params |
929 | | (ossl_unused void *ctx, ossl_unused void *provctx) |
930 | 0 | { |
931 | 0 | return hkdf_fixed_digest_set_ctx_params_list; |
932 | 0 | } |
933 | | |
934 | | |
935 | | #define KDF_HKDF_FIXED_DIGEST_NEW(hashname, hashstring) \ |
936 | | static void *kdf_hkdf_##hashname##_new(void *provctx) \ |
937 | 0 | { \ |
938 | 0 | return kdf_hkdf_fixed_digest_new(provctx, hashstring); \ |
939 | 0 | } Unexecuted instantiation: hkdf.c:kdf_hkdf_sha256_new Unexecuted instantiation: hkdf.c:kdf_hkdf_sha384_new Unexecuted instantiation: hkdf.c:kdf_hkdf_sha512_new |
940 | | |
941 | | KDF_HKDF_FIXED_DIGEST_NEW(sha256, "SHA256") |
942 | | KDF_HKDF_FIXED_DIGEST_NEW(sha384, "SHA384") |
943 | | KDF_HKDF_FIXED_DIGEST_NEW(sha512, "SHA512") |
944 | | |
945 | | #define MAKE_KDF_HKDF_FIXED_DIGEST_FUNCTIONS(hashname) \ |
946 | | const OSSL_DISPATCH ossl_kdf_hkdf_##hashname##_functions[] = { \ |
947 | | { OSSL_FUNC_KDF_NEWCTX, (void(*)(void))kdf_hkdf_##hashname##_new }, \ |
948 | | { OSSL_FUNC_KDF_DUPCTX, (void(*)(void))kdf_hkdf_dup }, \ |
949 | | { OSSL_FUNC_KDF_FREECTX, (void(*)(void))kdf_hkdf_free }, \ |
950 | | { OSSL_FUNC_KDF_RESET, (void(*)(void))kdf_hkdf_reset }, \ |
951 | | { OSSL_FUNC_KDF_DERIVE, (void(*)(void))kdf_hkdf_derive }, \ |
952 | | { OSSL_FUNC_KDF_SETTABLE_CTX_PARAMS, (void(*)(void))kdf_hkdf_fixed_digest_settable_ctx_params }, \ |
953 | | { OSSL_FUNC_KDF_SET_CTX_PARAMS, (void(*)(void))kdf_hkdf_fixed_digest_set_ctx_params }, \ |
954 | | { OSSL_FUNC_KDF_GETTABLE_CTX_PARAMS, (void(*)(void))hkdf_gettable_ctx_params }, \ |
955 | | { OSSL_FUNC_KDF_GET_CTX_PARAMS, (void(*)(void))hkdf_common_get_ctx_params }, \ |
956 | | OSSL_DISPATCH_END \ |
957 | | }; |
958 | | |
959 | | MAKE_KDF_HKDF_FIXED_DIGEST_FUNCTIONS(sha256) |
960 | | MAKE_KDF_HKDF_FIXED_DIGEST_FUNCTIONS(sha384) |
961 | | MAKE_KDF_HKDF_FIXED_DIGEST_FUNCTIONS(sha512) |
962 | | |
963 | | /* |
964 | | * Refer to "HMAC-based Extract-and-Expand Key Derivation Function (HKDF)" |
965 | | * Section 2 (https://tools.ietf.org/html/rfc5869#section-2) and |
966 | | * "Cryptographic Extraction and Key Derivation: The HKDF Scheme" |
967 | | * Section 4.2 (https://eprint.iacr.org/2010/264.pdf). |
968 | | * |
969 | | * From the paper: |
970 | | * The scheme HKDF is specified as: |
971 | | * HKDF(XTS, SKM, CTXinfo, L) = K(1) | K(2) | ... | K(t) |
972 | | * |
973 | | * where: |
974 | | * SKM is source key material |
975 | | * XTS is extractor salt (which may be null or constant) |
976 | | * CTXinfo is context information (may be null) |
977 | | * L is the number of key bits to be produced by KDF |
978 | | * k is the output length in bits of the hash function used with HMAC |
979 | | * t = ceil(L/k) |
980 | | * the value K(t) is truncated to its first d = L mod k bits. |
981 | | * |
982 | | * From RFC 5869: |
983 | | * 2.2. Step 1: Extract |
984 | | * HKDF-Extract(salt, IKM) -> PRK |
985 | | * 2.3. Step 2: Expand |
986 | | * HKDF-Expand(PRK, info, L) -> OKM |
987 | | */ |
988 | | static int HKDF(OSSL_LIB_CTX *libctx, const EVP_MD *evp_md, |
989 | | const unsigned char *salt, size_t salt_len, |
990 | | const unsigned char *ikm, size_t ikm_len, |
991 | | const unsigned char *info, size_t info_len, |
992 | | unsigned char *okm, size_t okm_len) |
993 | 0 | { |
994 | 0 | unsigned char prk[EVP_MAX_MD_SIZE]; |
995 | 0 | int ret, sz; |
996 | 0 | size_t prk_len; |
997 | |
|
998 | 0 | sz = EVP_MD_get_size(evp_md); |
999 | 0 | if (sz <= 0) |
1000 | 0 | return 0; |
1001 | 0 | prk_len = (size_t)sz; |
1002 | | |
1003 | | /* Step 1: HKDF-Extract(salt, IKM) -> PRK */ |
1004 | 0 | if (!HKDF_Extract(libctx, evp_md, |
1005 | 0 | salt, salt_len, ikm, ikm_len, prk, prk_len)) |
1006 | 0 | return 0; |
1007 | | |
1008 | | /* Step 2: HKDF-Expand(PRK, info, L) -> OKM */ |
1009 | 0 | ret = HKDF_Expand(evp_md, prk, prk_len, info, info_len, okm, okm_len); |
1010 | 0 | OPENSSL_cleanse(prk, sizeof(prk)); |
1011 | |
|
1012 | 0 | return ret; |
1013 | 0 | } |
1014 | | |
1015 | | /* |
1016 | | * Refer to "HMAC-based Extract-and-Expand Key Derivation Function (HKDF)" |
1017 | | * Section 2.2 (https://tools.ietf.org/html/rfc5869#section-2.2). |
1018 | | * |
1019 | | * 2.2. Step 1: Extract |
1020 | | * |
1021 | | * HKDF-Extract(salt, IKM) -> PRK |
1022 | | * |
1023 | | * Options: |
1024 | | * Hash a hash function; HashLen denotes the length of the |
1025 | | * hash function output in octets |
1026 | | * |
1027 | | * Inputs: |
1028 | | * salt optional salt value (a non-secret random value); |
1029 | | * if not provided, it is set to a string of HashLen zeros. |
1030 | | * IKM input keying material |
1031 | | * |
1032 | | * Output: |
1033 | | * PRK a pseudorandom key (of HashLen octets) |
1034 | | * |
1035 | | * The output PRK is calculated as follows: |
1036 | | * |
1037 | | * PRK = HMAC-Hash(salt, IKM) |
1038 | | */ |
1039 | | static int HKDF_Extract(OSSL_LIB_CTX *libctx, const EVP_MD *evp_md, |
1040 | | const unsigned char *salt, size_t salt_len, |
1041 | | const unsigned char *ikm, size_t ikm_len, |
1042 | | unsigned char *prk, size_t prk_len) |
1043 | 0 | { |
1044 | 0 | int sz = EVP_MD_get_size(evp_md); |
1045 | |
|
1046 | 0 | if (sz <= 0) |
1047 | 0 | return 0; |
1048 | 0 | if (prk_len != (size_t)sz) { |
1049 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_WRONG_OUTPUT_BUFFER_SIZE); |
1050 | 0 | return 0; |
1051 | 0 | } |
1052 | | /* calc: PRK = HMAC-Hash(salt, IKM) */ |
1053 | 0 | return |
1054 | 0 | EVP_Q_mac(libctx, "HMAC", NULL, EVP_MD_get0_name(evp_md), NULL, salt, |
1055 | 0 | salt_len, ikm, ikm_len, prk, EVP_MD_get_size(evp_md), NULL) |
1056 | 0 | != NULL; |
1057 | 0 | } |
1058 | | |
1059 | | /* |
1060 | | * Refer to "HMAC-based Extract-and-Expand Key Derivation Function (HKDF)" |
1061 | | * Section 2.3 (https://tools.ietf.org/html/rfc5869#section-2.3). |
1062 | | * |
1063 | | * 2.3. Step 2: Expand |
1064 | | * |
1065 | | * HKDF-Expand(PRK, info, L) -> OKM |
1066 | | * |
1067 | | * Options: |
1068 | | * Hash a hash function; HashLen denotes the length of the |
1069 | | * hash function output in octets |
1070 | | * |
1071 | | * Inputs: |
1072 | | * PRK a pseudorandom key of at least HashLen octets |
1073 | | * (usually, the output from the extract step) |
1074 | | * info optional context and application specific information |
1075 | | * (can be a zero-length string) |
1076 | | * L length of output keying material in octets |
1077 | | * (<= 255*HashLen) |
1078 | | * |
1079 | | * Output: |
1080 | | * OKM output keying material (of L octets) |
1081 | | * |
1082 | | * The output OKM is calculated as follows: |
1083 | | * |
1084 | | * N = ceil(L/HashLen) |
1085 | | * T = T(1) | T(2) | T(3) | ... | T(N) |
1086 | | * OKM = first L octets of T |
1087 | | * |
1088 | | * where: |
1089 | | * T(0) = empty string (zero length) |
1090 | | * T(1) = HMAC-Hash(PRK, T(0) | info | 0x01) |
1091 | | * T(2) = HMAC-Hash(PRK, T(1) | info | 0x02) |
1092 | | * T(3) = HMAC-Hash(PRK, T(2) | info | 0x03) |
1093 | | * ... |
1094 | | * |
1095 | | * (where the constant concatenated to the end of each T(n) is a |
1096 | | * single octet.) |
1097 | | */ |
1098 | | static int HKDF_Expand(const EVP_MD *evp_md, |
1099 | | const unsigned char *prk, size_t prk_len, |
1100 | | const unsigned char *info, size_t info_len, |
1101 | | unsigned char *okm, size_t okm_len) |
1102 | 0 | { |
1103 | 0 | HMAC_CTX *hmac; |
1104 | 0 | int ret = 0, sz; |
1105 | 0 | unsigned int i; |
1106 | 0 | unsigned char prev[EVP_MAX_MD_SIZE]; |
1107 | 0 | size_t done_len = 0, dig_len, n; |
1108 | |
|
1109 | 0 | sz = EVP_MD_get_size(evp_md); |
1110 | 0 | if (sz <= 0) |
1111 | 0 | return 0; |
1112 | 0 | dig_len = (size_t)sz; |
1113 | | |
1114 | | /* calc: N = ceil(L/HashLen) */ |
1115 | 0 | n = okm_len / dig_len; |
1116 | 0 | if (okm_len % dig_len) |
1117 | 0 | n++; |
1118 | |
|
1119 | 0 | if (n > 255 || okm == NULL) |
1120 | 0 | return 0; |
1121 | | |
1122 | 0 | if ((hmac = HMAC_CTX_new()) == NULL) |
1123 | 0 | return 0; |
1124 | | |
1125 | 0 | if (!HMAC_Init_ex(hmac, prk, (int)prk_len, evp_md, NULL)) |
1126 | 0 | goto err; |
1127 | | |
1128 | 0 | for (i = 1; i <= n; i++) { |
1129 | 0 | size_t copy_len; |
1130 | 0 | const unsigned char ctr = i; |
1131 | | |
1132 | | /* calc: T(i) = HMAC-Hash(PRK, T(i - 1) | info | i) */ |
1133 | 0 | if (i > 1) { |
1134 | 0 | if (!HMAC_Init_ex(hmac, NULL, 0, NULL, NULL)) |
1135 | 0 | goto err; |
1136 | | |
1137 | 0 | if (!HMAC_Update(hmac, prev, dig_len)) |
1138 | 0 | goto err; |
1139 | 0 | } |
1140 | | |
1141 | 0 | if (!HMAC_Update(hmac, info, info_len)) |
1142 | 0 | goto err; |
1143 | | |
1144 | 0 | if (!HMAC_Update(hmac, &ctr, 1)) |
1145 | 0 | goto err; |
1146 | | |
1147 | 0 | if (!HMAC_Final(hmac, prev, NULL)) |
1148 | 0 | goto err; |
1149 | | |
1150 | 0 | copy_len = (dig_len > okm_len - done_len) ? |
1151 | 0 | okm_len - done_len : |
1152 | 0 | dig_len; |
1153 | |
|
1154 | 0 | memcpy(okm + done_len, prev, copy_len); |
1155 | |
|
1156 | 0 | done_len += copy_len; |
1157 | 0 | } |
1158 | 0 | ret = 1; |
1159 | |
|
1160 | 0 | err: |
1161 | 0 | OPENSSL_cleanse(prev, sizeof(prev)); |
1162 | 0 | HMAC_CTX_free(hmac); |
1163 | 0 | return ret; |
1164 | 0 | } |
1165 | | |
1166 | | /* |
1167 | | * TLS uses slight variations of the above and for FIPS validation purposes, |
1168 | | * they need to be present here. |
1169 | | * Refer to RFC 8446 section 7 for specific details. |
1170 | | */ |
1171 | | |
1172 | | /* |
1173 | | * Given a |secret|; a |label| of length |labellen|; and |data| of length |
1174 | | * |datalen| (e.g. typically a hash of the handshake messages), derive a new |
1175 | | * secret |outlen| bytes long and store it in the location pointed to be |out|. |
1176 | | * The |data| value may be zero length. Returns 1 on success and 0 on failure. |
1177 | | */ |
1178 | | static int prov_tls13_hkdf_expand(const EVP_MD *md, |
1179 | | const unsigned char *key, size_t keylen, |
1180 | | const unsigned char *prefix, size_t prefixlen, |
1181 | | const unsigned char *label, size_t labellen, |
1182 | | const unsigned char *data, size_t datalen, |
1183 | | unsigned char *out, size_t outlen) |
1184 | 0 | { |
1185 | 0 | size_t hkdflabellen; |
1186 | 0 | unsigned char hkdflabel[HKDF_MAXBUF]; |
1187 | 0 | WPACKET pkt; |
1188 | | |
1189 | | /* |
1190 | | * 2 bytes for length of derived secret + 1 byte for length of combined |
1191 | | * prefix and label + bytes for the label itself + 1 byte length of hash |
1192 | | * + bytes for the hash itself. We've got the maximum the KDF can handle |
1193 | | * which should always be sufficient. |
1194 | | */ |
1195 | 0 | if (!WPACKET_init_static_len(&pkt, hkdflabel, sizeof(hkdflabel), 0) |
1196 | 0 | || !WPACKET_put_bytes_u16(&pkt, outlen) |
1197 | 0 | || !WPACKET_start_sub_packet_u8(&pkt) |
1198 | 0 | || !WPACKET_memcpy(&pkt, prefix, prefixlen) |
1199 | 0 | || !WPACKET_memcpy(&pkt, label, labellen) |
1200 | 0 | || !WPACKET_close(&pkt) |
1201 | 0 | || !WPACKET_sub_memcpy_u8(&pkt, data, (data == NULL) ? 0 : datalen) |
1202 | 0 | || !WPACKET_get_total_written(&pkt, &hkdflabellen) |
1203 | 0 | || !WPACKET_finish(&pkt)) { |
1204 | 0 | WPACKET_cleanup(&pkt); |
1205 | 0 | return 0; |
1206 | 0 | } |
1207 | | |
1208 | 0 | return HKDF_Expand(md, key, keylen, hkdflabel, hkdflabellen, |
1209 | 0 | out, outlen); |
1210 | 0 | } |
1211 | | |
1212 | | static int prov_tls13_hkdf_generate_secret(OSSL_LIB_CTX *libctx, |
1213 | | const EVP_MD *md, |
1214 | | const unsigned char *prevsecret, |
1215 | | size_t prevsecretlen, |
1216 | | const unsigned char *insecret, |
1217 | | size_t insecretlen, |
1218 | | const unsigned char *prefix, |
1219 | | size_t prefixlen, |
1220 | | const unsigned char *label, |
1221 | | size_t labellen, |
1222 | | unsigned char *out, size_t outlen) |
1223 | 0 | { |
1224 | 0 | size_t mdlen; |
1225 | 0 | int ret; |
1226 | 0 | unsigned char preextractsec[EVP_MAX_MD_SIZE]; |
1227 | | /* Always filled with zeros */ |
1228 | 0 | static const unsigned char default_zeros[EVP_MAX_MD_SIZE]; |
1229 | |
|
1230 | 0 | ret = EVP_MD_get_size(md); |
1231 | | /* Ensure cast to size_t is safe */ |
1232 | 0 | if (ret <= 0) |
1233 | 0 | return 0; |
1234 | 0 | mdlen = (size_t)ret; |
1235 | |
|
1236 | 0 | if (insecret == NULL) { |
1237 | 0 | insecret = default_zeros; |
1238 | 0 | insecretlen = mdlen; |
1239 | 0 | } |
1240 | 0 | if (prevsecret == NULL) { |
1241 | 0 | prevsecret = default_zeros; |
1242 | 0 | prevsecretlen = mdlen; |
1243 | 0 | } else { |
1244 | 0 | EVP_MD_CTX *mctx = EVP_MD_CTX_new(); |
1245 | 0 | unsigned char hash[EVP_MAX_MD_SIZE]; |
1246 | | |
1247 | | /* The pre-extract derive step uses a hash of no messages */ |
1248 | 0 | if (mctx == NULL |
1249 | 0 | || EVP_DigestInit_ex(mctx, md, NULL) <= 0 |
1250 | 0 | || EVP_DigestFinal_ex(mctx, hash, NULL) <= 0) { |
1251 | 0 | EVP_MD_CTX_free(mctx); |
1252 | 0 | return 0; |
1253 | 0 | } |
1254 | 0 | EVP_MD_CTX_free(mctx); |
1255 | | |
1256 | | /* Generate the pre-extract secret */ |
1257 | 0 | if (!prov_tls13_hkdf_expand(md, prevsecret, prevsecretlen, |
1258 | 0 | prefix, prefixlen, label, labellen, |
1259 | 0 | hash, mdlen, preextractsec, mdlen)) |
1260 | 0 | return 0; |
1261 | 0 | prevsecret = preextractsec; |
1262 | 0 | prevsecretlen = mdlen; |
1263 | 0 | } |
1264 | | |
1265 | 0 | ret = HKDF_Extract(libctx, md, prevsecret, prevsecretlen, |
1266 | 0 | insecret, insecretlen, out, outlen); |
1267 | |
|
1268 | 0 | if (prevsecret == preextractsec) |
1269 | 0 | OPENSSL_cleanse(preextractsec, mdlen); |
1270 | 0 | return ret; |
1271 | 0 | } |
1272 | | |
1273 | | #ifdef FIPS_MODULE |
1274 | | static int fips_tls1_3_digest_check_passed(KDF_HKDF *ctx, const EVP_MD *md) |
1275 | | { |
1276 | | OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx); |
1277 | | /* |
1278 | | * Perform digest check |
1279 | | * |
1280 | | * According to RFC 8446 appendix B.4, the valid hash functions are |
1281 | | * specified in FIPS 180-4. However, it only lists SHA2-256 and SHA2-384 in |
1282 | | * the table. ACVP also only lists the same set of hash functions. |
1283 | | */ |
1284 | | int digest_unapproved = !EVP_MD_is_a(md, SN_sha256) |
1285 | | && !EVP_MD_is_a(md, SN_sha384); |
1286 | | |
1287 | | if (digest_unapproved) { |
1288 | | if (!OSSL_FIPS_IND_ON_UNAPPROVED(ctx, OSSL_FIPS_IND_SETTABLE0, |
1289 | | libctx, "TLS13 KDF", "Digest", |
1290 | | ossl_fips_config_tls13_kdf_digest_check)) { |
1291 | | ERR_raise(ERR_LIB_PROV, PROV_R_DIGEST_NOT_ALLOWED); |
1292 | | return 0; |
1293 | | } |
1294 | | } |
1295 | | return 1; |
1296 | | } |
1297 | | |
1298 | | /* |
1299 | | * Calculate the correct length of the secret key. |
1300 | | * |
1301 | | * RFC 8446: |
1302 | | * If a given secret is not available, then the 0-value consisting of a |
1303 | | * string of Hash.length bytes set to zeros is used. |
1304 | | */ |
1305 | | static size_t fips_tls1_3_key_size(KDF_HKDF *ctx) |
1306 | | { |
1307 | | const EVP_MD *md = ossl_prov_digest_md(&ctx->digest); |
1308 | | size_t key_size = 0; |
1309 | | |
1310 | | if (ctx->key != NULL) |
1311 | | key_size = ctx->key_len; |
1312 | | else if (md != NULL) |
1313 | | key_size = EVP_MD_size(md); |
1314 | | |
1315 | | return key_size; |
1316 | | } |
1317 | | |
1318 | | static int fips_tls1_3_key_check_passed(KDF_HKDF *ctx) |
1319 | | { |
1320 | | OSSL_LIB_CTX *libctx = PROV_LIBCTX_OF(ctx->provctx); |
1321 | | int key_approved = ossl_kdf_check_key_size(fips_tls1_3_key_size(ctx)); |
1322 | | |
1323 | | if (!key_approved) { |
1324 | | if (!OSSL_FIPS_IND_ON_UNAPPROVED(ctx, OSSL_FIPS_IND_SETTABLE1, |
1325 | | libctx, "TLS13 KDF", "Key size", |
1326 | | ossl_fips_config_tls13_kdf_key_check)) { |
1327 | | ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_KEY_LENGTH); |
1328 | | return 0; |
1329 | | } |
1330 | | } |
1331 | | return 1; |
1332 | | } |
1333 | | #endif |
1334 | | |
1335 | | static int kdf_tls1_3_derive(void *vctx, unsigned char *key, size_t keylen, |
1336 | | const OSSL_PARAM params[]) |
1337 | 0 | { |
1338 | 0 | KDF_HKDF *ctx = (KDF_HKDF *)vctx; |
1339 | 0 | const EVP_MD *md; |
1340 | |
|
1341 | 0 | if (!ossl_prov_is_running() || !kdf_tls1_3_set_ctx_params(ctx, params)) |
1342 | 0 | return 0; |
1343 | | |
1344 | 0 | md = ossl_prov_digest_md(&ctx->digest); |
1345 | 0 | if (md == NULL) { |
1346 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_MISSING_MESSAGE_DIGEST); |
1347 | 0 | return 0; |
1348 | 0 | } |
1349 | | |
1350 | 0 | switch (ctx->mode) { |
1351 | 0 | default: |
1352 | 0 | return 0; |
1353 | | |
1354 | 0 | case EVP_KDF_HKDF_MODE_EXTRACT_ONLY: |
1355 | 0 | return prov_tls13_hkdf_generate_secret(PROV_LIBCTX_OF(ctx->provctx), |
1356 | 0 | md, |
1357 | 0 | ctx->salt, ctx->salt_len, |
1358 | 0 | ctx->key, ctx->key_len, |
1359 | 0 | ctx->prefix, ctx->prefix_len, |
1360 | 0 | ctx->label, ctx->label_len, |
1361 | 0 | key, keylen); |
1362 | | |
1363 | 0 | case EVP_KDF_HKDF_MODE_EXPAND_ONLY: |
1364 | 0 | return prov_tls13_hkdf_expand(md, ctx->key, ctx->key_len, |
1365 | 0 | ctx->prefix, ctx->prefix_len, |
1366 | 0 | ctx->label, ctx->label_len, |
1367 | 0 | ctx->data, ctx->data_len, |
1368 | 0 | key, keylen); |
1369 | 0 | } |
1370 | 0 | } |
1371 | | |
1372 | | #define kdf_tls1_3_set_ctx_params_st hkdf_all_set_ctx_params_st |
1373 | | |
1374 | | /* Machine generated by util/perl/OpenSSL/paramnames.pm */ |
1375 | | #ifndef kdf_tls1_3_set_ctx_params_list |
1376 | | static const OSSL_PARAM kdf_tls1_3_set_ctx_params_list[] = { |
1377 | | OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_MODE, NULL, 0), |
1378 | | OSSL_PARAM_int(OSSL_KDF_PARAM_MODE, NULL), |
1379 | | OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_PROPERTIES, NULL, 0), |
1380 | | OSSL_PARAM_utf8_string(OSSL_KDF_PARAM_DIGEST, NULL, 0), |
1381 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_KEY, NULL, 0), |
1382 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_SALT, NULL, 0), |
1383 | | # if defined(FIPS_MODULE) |
1384 | | OSSL_PARAM_int(OSSL_KDF_PARAM_FIPS_KEY_CHECK, NULL), |
1385 | | # endif |
1386 | | # if defined(FIPS_MODULE) |
1387 | | OSSL_PARAM_int(OSSL_KDF_PARAM_FIPS_DIGEST_CHECK, NULL), |
1388 | | # endif |
1389 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_PREFIX, NULL, 0), |
1390 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_LABEL, NULL, 0), |
1391 | | OSSL_PARAM_octet_string(OSSL_KDF_PARAM_DATA, NULL, 0), |
1392 | | OSSL_PARAM_END |
1393 | | }; |
1394 | | #endif |
1395 | | |
1396 | | #ifndef kdf_tls1_3_set_ctx_params_st |
1397 | | struct kdf_tls1_3_set_ctx_params_st { |
1398 | | OSSL_PARAM *data; |
1399 | | OSSL_PARAM *digest; |
1400 | | OSSL_PARAM *engine; |
1401 | | # if defined(FIPS_MODULE) |
1402 | | OSSL_PARAM *ind_d; |
1403 | | # endif |
1404 | | # if defined(FIPS_MODULE) |
1405 | | OSSL_PARAM *ind_k; |
1406 | | # endif |
1407 | | OSSL_PARAM *key; |
1408 | | OSSL_PARAM *label; |
1409 | | OSSL_PARAM *mode; |
1410 | | OSSL_PARAM *prefix; |
1411 | | OSSL_PARAM *propq; |
1412 | | OSSL_PARAM *salt; |
1413 | | }; |
1414 | | #endif |
1415 | | |
1416 | | #ifndef kdf_tls1_3_set_ctx_params_decoder |
1417 | | static int kdf_tls1_3_set_ctx_params_decoder |
1418 | | (const OSSL_PARAM *p, struct kdf_tls1_3_set_ctx_params_st *r) |
1419 | 0 | { |
1420 | 0 | const char *s; |
1421 | |
|
1422 | 0 | memset(r, 0, sizeof(*r)); |
1423 | 0 | if (p != NULL) |
1424 | 0 | for (; (s = p->key) != NULL; p++) |
1425 | 0 | switch(s[0]) { |
1426 | 0 | default: |
1427 | 0 | break; |
1428 | 0 | case 'd': |
1429 | 0 | switch(s[1]) { |
1430 | 0 | default: |
1431 | 0 | break; |
1432 | 0 | case 'a': |
1433 | 0 | if (ossl_likely(strcmp("ta", s + 2) == 0)) { |
1434 | | /* KDF_PARAM_DATA */ |
1435 | 0 | if (ossl_unlikely(r->data != NULL)) { |
1436 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1437 | 0 | "param %s is repeated", s); |
1438 | 0 | return 0; |
1439 | 0 | } |
1440 | 0 | r->data = (OSSL_PARAM *)p; |
1441 | 0 | } |
1442 | 0 | break; |
1443 | 0 | case 'i': |
1444 | 0 | switch(s[2]) { |
1445 | 0 | default: |
1446 | 0 | break; |
1447 | 0 | case 'g': |
1448 | 0 | switch(s[3]) { |
1449 | 0 | default: |
1450 | 0 | break; |
1451 | 0 | case 'e': |
1452 | 0 | switch(s[4]) { |
1453 | 0 | default: |
1454 | 0 | break; |
1455 | 0 | case 's': |
1456 | 0 | switch(s[5]) { |
1457 | 0 | default: |
1458 | 0 | break; |
1459 | 0 | case 't': |
1460 | 0 | switch(s[6]) { |
1461 | 0 | default: |
1462 | 0 | break; |
1463 | 0 | case '-': |
1464 | | # if defined(FIPS_MODULE) |
1465 | | if (ossl_likely(strcmp("check", s + 7) == 0)) { |
1466 | | /* KDF_PARAM_FIPS_DIGEST_CHECK */ |
1467 | | if (ossl_unlikely(r->ind_d != NULL)) { |
1468 | | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1469 | | "param %s is repeated", s); |
1470 | | return 0; |
1471 | | } |
1472 | | r->ind_d = (OSSL_PARAM *)p; |
1473 | | } |
1474 | | # endif |
1475 | 0 | break; |
1476 | 0 | case '\0': |
1477 | 0 | if (ossl_unlikely(r->digest != NULL)) { |
1478 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1479 | 0 | "param %s is repeated", s); |
1480 | 0 | return 0; |
1481 | 0 | } |
1482 | 0 | r->digest = (OSSL_PARAM *)p; |
1483 | 0 | } |
1484 | 0 | } |
1485 | 0 | } |
1486 | 0 | } |
1487 | 0 | } |
1488 | 0 | } |
1489 | 0 | break; |
1490 | 0 | case 'e': |
1491 | 0 | if (ossl_likely(strcmp("ngine", s + 1) == 0)) { |
1492 | | /* ALG_PARAM_ENGINE */ |
1493 | 0 | if (ossl_unlikely(r->engine != NULL)) { |
1494 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1495 | 0 | "param %s is repeated", s); |
1496 | 0 | return 0; |
1497 | 0 | } |
1498 | 0 | r->engine = (OSSL_PARAM *)p; |
1499 | 0 | } |
1500 | 0 | break; |
1501 | 0 | case 'k': |
1502 | 0 | switch(s[1]) { |
1503 | 0 | default: |
1504 | 0 | break; |
1505 | 0 | case 'e': |
1506 | 0 | switch(s[2]) { |
1507 | 0 | default: |
1508 | 0 | break; |
1509 | 0 | case 'y': |
1510 | 0 | switch(s[3]) { |
1511 | 0 | default: |
1512 | 0 | break; |
1513 | 0 | case '-': |
1514 | | # if defined(FIPS_MODULE) |
1515 | | if (ossl_likely(strcmp("check", s + 4) == 0)) { |
1516 | | /* KDF_PARAM_FIPS_KEY_CHECK */ |
1517 | | if (ossl_unlikely(r->ind_k != NULL)) { |
1518 | | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1519 | | "param %s is repeated", s); |
1520 | | return 0; |
1521 | | } |
1522 | | r->ind_k = (OSSL_PARAM *)p; |
1523 | | } |
1524 | | # endif |
1525 | 0 | break; |
1526 | 0 | case '\0': |
1527 | 0 | if (ossl_unlikely(r->key != NULL)) { |
1528 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1529 | 0 | "param %s is repeated", s); |
1530 | 0 | return 0; |
1531 | 0 | } |
1532 | 0 | r->key = (OSSL_PARAM *)p; |
1533 | 0 | } |
1534 | 0 | } |
1535 | 0 | } |
1536 | 0 | break; |
1537 | 0 | case 'l': |
1538 | 0 | if (ossl_likely(strcmp("abel", s + 1) == 0)) { |
1539 | | /* KDF_PARAM_LABEL */ |
1540 | 0 | if (ossl_unlikely(r->label != NULL)) { |
1541 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1542 | 0 | "param %s is repeated", s); |
1543 | 0 | return 0; |
1544 | 0 | } |
1545 | 0 | r->label = (OSSL_PARAM *)p; |
1546 | 0 | } |
1547 | 0 | break; |
1548 | 0 | case 'm': |
1549 | 0 | if (ossl_likely(strcmp("ode", s + 1) == 0)) { |
1550 | | /* KDF_PARAM_MODE */ |
1551 | 0 | if (ossl_unlikely(r->mode != NULL)) { |
1552 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1553 | 0 | "param %s is repeated", s); |
1554 | 0 | return 0; |
1555 | 0 | } |
1556 | 0 | r->mode = (OSSL_PARAM *)p; |
1557 | 0 | } |
1558 | 0 | break; |
1559 | 0 | case 'p': |
1560 | 0 | switch(s[1]) { |
1561 | 0 | default: |
1562 | 0 | break; |
1563 | 0 | case 'r': |
1564 | 0 | switch(s[2]) { |
1565 | 0 | default: |
1566 | 0 | break; |
1567 | 0 | case 'e': |
1568 | 0 | if (ossl_likely(strcmp("fix", s + 3) == 0)) { |
1569 | | /* KDF_PARAM_PREFIX */ |
1570 | 0 | if (ossl_unlikely(r->prefix != NULL)) { |
1571 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1572 | 0 | "param %s is repeated", s); |
1573 | 0 | return 0; |
1574 | 0 | } |
1575 | 0 | r->prefix = (OSSL_PARAM *)p; |
1576 | 0 | } |
1577 | 0 | break; |
1578 | 0 | case 'o': |
1579 | 0 | if (ossl_likely(strcmp("perties", s + 3) == 0)) { |
1580 | | /* KDF_PARAM_PROPERTIES */ |
1581 | 0 | if (ossl_unlikely(r->propq != NULL)) { |
1582 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1583 | 0 | "param %s is repeated", s); |
1584 | 0 | return 0; |
1585 | 0 | } |
1586 | 0 | r->propq = (OSSL_PARAM *)p; |
1587 | 0 | } |
1588 | 0 | } |
1589 | 0 | } |
1590 | 0 | break; |
1591 | 0 | case 's': |
1592 | 0 | if (ossl_likely(strcmp("alt", s + 1) == 0)) { |
1593 | | /* KDF_PARAM_SALT */ |
1594 | 0 | if (ossl_unlikely(r->salt != NULL)) { |
1595 | 0 | ERR_raise_data(ERR_LIB_PROV, PROV_R_REPEATED_PARAMETER, |
1596 | 0 | "param %s is repeated", s); |
1597 | 0 | return 0; |
1598 | 0 | } |
1599 | 0 | r->salt = (OSSL_PARAM *)p; |
1600 | 0 | } |
1601 | 0 | } |
1602 | 0 | return 1; |
1603 | 0 | } |
1604 | | #endif |
1605 | | /* End of machine generated */ |
1606 | | |
1607 | | static int kdf_tls1_3_set_ctx_params(void *vctx, const OSSL_PARAM params[]) |
1608 | 0 | { |
1609 | 0 | struct hkdf_all_set_ctx_params_st p; |
1610 | 0 | KDF_HKDF *ctx = vctx; |
1611 | |
|
1612 | 0 | if (ctx == NULL || !kdf_tls1_3_set_ctx_params_decoder(params, &p)) |
1613 | 0 | return 0; |
1614 | | |
1615 | 0 | if (!OSSL_FIPS_IND_SET_CTX_FROM_PARAM(ctx, OSSL_FIPS_IND_SETTABLE0, p.ind_d)) |
1616 | 0 | return 0; |
1617 | 0 | if (!OSSL_FIPS_IND_SET_CTX_FROM_PARAM(ctx, OSSL_FIPS_IND_SETTABLE1, p.ind_k)) |
1618 | 0 | return 0; |
1619 | | |
1620 | 0 | if (!hkdf_common_set_ctx_params(ctx, &p)) |
1621 | 0 | return 0; |
1622 | | |
1623 | 0 | if (ctx->mode == EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND) { |
1624 | 0 | ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_MODE); |
1625 | 0 | return 0; |
1626 | 0 | } |
1627 | | |
1628 | 0 | if (p.prefix != NULL) { |
1629 | 0 | OPENSSL_free(ctx->prefix); |
1630 | 0 | ctx->prefix = NULL; |
1631 | 0 | if (!OSSL_PARAM_get_octet_string(p.prefix, (void **)&ctx->prefix, 0, |
1632 | 0 | &ctx->prefix_len)) |
1633 | 0 | return 0; |
1634 | 0 | } |
1635 | | |
1636 | 0 | if (p.label != NULL) { |
1637 | 0 | OPENSSL_free(ctx->label); |
1638 | 0 | ctx->label = NULL; |
1639 | 0 | if (!OSSL_PARAM_get_octet_string(p.label, (void **)&ctx->label, 0, |
1640 | 0 | &ctx->label_len)) |
1641 | 0 | return 0; |
1642 | 0 | } |
1643 | | |
1644 | 0 | if (p.data != NULL) { |
1645 | 0 | OPENSSL_clear_free(ctx->data, ctx->data_len); |
1646 | 0 | ctx->data = NULL; |
1647 | 0 | if (!OSSL_PARAM_get_octet_string(p.data, (void **)&ctx->data, 0, |
1648 | 0 | &ctx->data_len)) |
1649 | 0 | return 0; |
1650 | 0 | } |
1651 | | |
1652 | | #ifdef FIPS_MODULE |
1653 | | if (p.digest != NULL) { |
1654 | | const EVP_MD *md = ossl_prov_digest_md(&ctx->digest); |
1655 | | |
1656 | | if (!fips_tls1_3_digest_check_passed(ctx, md)) |
1657 | | return 0; |
1658 | | } |
1659 | | |
1660 | | if (p.key != NULL) |
1661 | | if (!fips_tls1_3_key_check_passed(ctx)) |
1662 | | return 0; |
1663 | | #endif |
1664 | | |
1665 | 0 | return 1; |
1666 | 0 | } |
1667 | | |
1668 | | static const OSSL_PARAM *kdf_tls1_3_settable_ctx_params(ossl_unused void *ctx, |
1669 | | ossl_unused void *provctx) |
1670 | 0 | { |
1671 | 0 | return kdf_tls1_3_set_ctx_params_list; |
1672 | 0 | } |
1673 | | |
1674 | | const OSSL_DISPATCH ossl_kdf_tls1_3_kdf_functions[] = { |
1675 | | { OSSL_FUNC_KDF_NEWCTX, (void(*)(void))kdf_hkdf_new }, |
1676 | | { OSSL_FUNC_KDF_DUPCTX, (void(*)(void))kdf_hkdf_dup }, |
1677 | | { OSSL_FUNC_KDF_FREECTX, (void(*)(void))kdf_hkdf_free }, |
1678 | | { OSSL_FUNC_KDF_RESET, (void(*)(void))kdf_hkdf_reset }, |
1679 | | { OSSL_FUNC_KDF_DERIVE, (void(*)(void))kdf_tls1_3_derive }, |
1680 | | { OSSL_FUNC_KDF_SETTABLE_CTX_PARAMS, |
1681 | | (void(*)(void))kdf_tls1_3_settable_ctx_params }, |
1682 | | { OSSL_FUNC_KDF_SET_CTX_PARAMS, (void(*)(void))kdf_tls1_3_set_ctx_params }, |
1683 | | { OSSL_FUNC_KDF_GETTABLE_CTX_PARAMS, |
1684 | | (void(*)(void))hkdf_gettable_ctx_params }, |
1685 | | { OSSL_FUNC_KDF_GET_CTX_PARAMS, (void(*)(void))hkdf_common_get_ctx_params }, |
1686 | | OSSL_DISPATCH_END |
1687 | | }; |