]> git.ipfire.org Git - thirdparty/openssl.git/blame - providers/defltprov.c
Make the provider side EVP PKEY MAC bridge available in default and fips
[thirdparty/openssl.git] / providers / defltprov.c
CommitLineData
8a73348b 1/*
33388b44 2 * Copyright 2019-2020 The OpenSSL Project Authors. All Rights Reserved.
8a73348b
MC
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#include <string.h>
11#include <stdio.h>
55a0a117 12#include <openssl/opensslconf.h>
8a73348b 13#include <openssl/core.h>
23c48d94 14#include <openssl/core_dispatch.h>
8a73348b
MC
15#include <openssl/core_names.h>
16#include <openssl/params.h>
63665fff 17#include "prov/bio.h"
fdaad3f1 18#include "prov/provider_ctx.h"
0d2bfe52 19#include "prov/providercommon.h"
af3e7e1b 20#include "prov/implementations.h"
0d2bfe52
SL
21#include "prov/provider_util.h"
22#include "internal/nelem.h"
23
fdaad3f1
RL
24/*
25 * Forward declarations to ensure that interface functions are correctly
26 * defined.
27 */
363b1e5d
DMSP
28static OSSL_FUNC_provider_gettable_params_fn deflt_gettable_params;
29static OSSL_FUNC_provider_get_params_fn deflt_get_params;
30static OSSL_FUNC_provider_query_operation_fn deflt_query;
fdaad3f1 31
745fc918 32#define ALGC(NAMES, FUNC, CHECK) { { NAMES, "provider=default", FUNC }, CHECK }
0d2bfe52 33#define ALG(NAMES, FUNC) ALGC(NAMES, FUNC, NULL)
8a73348b
MC
34
35/* Functions provided by the core */
363b1e5d
DMSP
36static OSSL_FUNC_core_gettable_params_fn *c_gettable_params = NULL;
37static OSSL_FUNC_core_get_params_fn *c_get_params = NULL;
8a73348b
MC
38
39/* Parameters we provide to the core */
26175013
RL
40static const OSSL_PARAM deflt_param_types[] = {
41 OSSL_PARAM_DEFN(OSSL_PROV_PARAM_NAME, OSSL_PARAM_UTF8_PTR, NULL, 0),
42 OSSL_PARAM_DEFN(OSSL_PROV_PARAM_VERSION, OSSL_PARAM_UTF8_PTR, NULL, 0),
43 OSSL_PARAM_DEFN(OSSL_PROV_PARAM_BUILDINFO, OSSL_PARAM_UTF8_PTR, NULL, 0),
44 OSSL_PARAM_END
8a73348b
MC
45};
46
fdaad3f1 47static const OSSL_PARAM *deflt_gettable_params(void *provctx)
8a73348b
MC
48{
49 return deflt_param_types;
50}
51
fdaad3f1 52static int deflt_get_params(void *provctx, OSSL_PARAM params[])
8a73348b 53{
4e7991b4 54 OSSL_PARAM *p;
8a73348b
MC
55
56 p = OSSL_PARAM_locate(params, OSSL_PROV_PARAM_NAME);
57 if (p != NULL && !OSSL_PARAM_set_utf8_ptr(p, "OpenSSL Default Provider"))
58 return 0;
59 p = OSSL_PARAM_locate(params, OSSL_PROV_PARAM_VERSION);
60 if (p != NULL && !OSSL_PARAM_set_utf8_ptr(p, OPENSSL_VERSION_STR))
61 return 0;
62 p = OSSL_PARAM_locate(params, OSSL_PROV_PARAM_BUILDINFO);
63 if (p != NULL && !OSSL_PARAM_set_utf8_ptr(p, OPENSSL_FULL_VERSION_STR))
64 return 0;
04cb5ec0
SL
65 p = OSSL_PARAM_locate(params, OSSL_PROV_PARAM_STATUS);
66 if (p != NULL && !OSSL_PARAM_set_uint(p, 1))
67 return 0;
8a73348b
MC
68 return 1;
69}
70
df553b79
RL
71/*
72 * For the algorithm names, we use the following formula for our primary
73 * names:
74 *
75 * ALGNAME[VERSION?][-SUBNAME[VERSION?]?][-SIZE?][-MODE?]
76 *
77 * VERSION is only present if there are multiple versions of
78 * an alg (MD2, MD4, MD5). It may be omitted if there is only
79 * one version (if a subsequent version is released in the future,
80 * we can always change the canonical name, and add the old name
81 * as an alias).
82 *
83 * SUBNAME may be present where we are combining multiple
84 * algorithms together, e.g. MD5-SHA1.
85 *
86 * SIZE is only present if multiple versions of an algorithm exist
87 * with different sizes (e.g. AES-128-CBC, AES-256-CBC)
88 *
89 * MODE is only present where applicable.
90 *
91 * We add diverse other names where applicable, such as the names that
92 * NIST uses, or that are used for ASN.1 OBJECT IDENTIFIERs, or names
93 * we have used historically.
cc35c3ed
MC
94 *
95 * Algorithm names are case insensitive, but we use all caps in our "canonical"
96 * names for consistency.
df553b79 97 */
de29ff17 98static const OSSL_ALGORITHM deflt_digests[] = {
df553b79 99 /* Our primary name:NIST name[:our older names] */
5ccada09 100 { "SHA1:SHA-1:SSL3-SHA1", "provider=default", sha1_functions },
745fc918
MC
101 { "SHA2-224:SHA-224:SHA224", "provider=default", sha224_functions },
102 { "SHA2-256:SHA-256:SHA256", "provider=default", sha256_functions },
103 { "SHA2-384:SHA-384:SHA384", "provider=default", sha384_functions },
104 { "SHA2-512:SHA-512:SHA512", "provider=default", sha512_functions },
105 { "SHA2-512/224:SHA-512/224:SHA512-224", "provider=default",
df553b79 106 sha512_224_functions },
745fc918 107 { "SHA2-512/256:SHA-512/256:SHA512-256", "provider=default",
df553b79 108 sha512_256_functions },
d5e5e2ff 109
df553b79 110 /* We agree with NIST here, so one name only */
745fc918
MC
111 { "SHA3-224", "provider=default", sha3_224_functions },
112 { "SHA3-256", "provider=default", sha3_256_functions },
113 { "SHA3-384", "provider=default", sha3_384_functions },
114 { "SHA3-512", "provider=default", sha3_512_functions },
d5e5e2ff 115
e23cda00 116 /*
cc35c3ed
MC
117 * KECCAK-KMAC-128 and KECCAK-KMAC-256 as hashes are mostly useful for
118 * the KMAC-128 and KMAC-256.
e23cda00 119 */
745fc918
MC
120 { "KECCAK-KMAC-128:KECCAK-KMAC128", "provider=default", keccak_kmac_128_functions },
121 { "KECCAK-KMAC-256:KECCAK-KMAC256", "provider=default", keccak_kmac_256_functions },
d5e5e2ff 122
df553b79 123 /* Our primary name:NIST name */
745fc918
MC
124 { "SHAKE-128:SHAKE128", "provider=default", shake_128_functions },
125 { "SHAKE-256:SHAKE256", "provider=default", shake_256_functions },
d5e5e2ff
SL
126
127#ifndef OPENSSL_NO_BLAKE2
df553b79
RL
128 /*
129 * https://blake2.net/ doesn't specify size variants,
130 * but mentions that Bouncy Castle uses the names
131 * BLAKE2b-160, BLAKE2b-256, BLAKE2b-384, and BLAKE2b-512
132 * If we assume that "2b" and "2s" are versions, that pattern
133 * fits with ours. We also add our historical names.
134 */
745fc918
MC
135 { "BLAKE2S-256:BLAKE2s256", "provider=default", blake2s256_functions },
136 { "BLAKE2B-512:BLAKE2b512", "provider=default", blake2b512_functions },
d5e5e2ff
SL
137#endif /* OPENSSL_NO_BLAKE2 */
138
139#ifndef OPENSSL_NO_SM3
745fc918 140 { "SM3", "provider=default", sm3_functions },
d5e5e2ff
SL
141#endif /* OPENSSL_NO_SM3 */
142
143#ifndef OPENSSL_NO_MD5
5ccada09 144 { "MD5:SSL3-MD5", "provider=default", md5_functions },
745fc918 145 { "MD5-SHA1", "provider=default", md5_sha1_functions },
d5e5e2ff
SL
146#endif /* OPENSSL_NO_MD5 */
147
de29ff17
MC
148 { NULL, NULL, NULL }
149};
150
0d2bfe52 151static const OSSL_ALGORITHM_CAPABLE deflt_ciphers[] = {
068489a2 152 ALG("NULL", null_functions),
0d2bfe52
SL
153 ALG("AES-256-ECB", aes256ecb_functions),
154 ALG("AES-192-ECB", aes192ecb_functions),
155 ALG("AES-128-ECB", aes128ecb_functions),
5ccada09
SL
156 ALG("AES-256-CBC:AES256", aes256cbc_functions),
157 ALG("AES-192-CBC:AES192", aes192cbc_functions),
158 ALG("AES-128-CBC:AES128", aes128cbc_functions),
7cc355c2
SL
159 ALG("AES-128-CBC-CTS", aes128cbc_cts_functions),
160 ALG("AES-192-CBC-CTS", aes192cbc_cts_functions),
161 ALG("AES-256-CBC-CTS", aes256cbc_cts_functions),
0d2bfe52
SL
162 ALG("AES-256-OFB", aes256ofb_functions),
163 ALG("AES-192-OFB", aes192ofb_functions),
164 ALG("AES-128-OFB", aes128ofb_functions),
165 ALG("AES-256-CFB", aes256cfb_functions),
166 ALG("AES-192-CFB", aes192cfb_functions),
167 ALG("AES-128-CFB", aes128cfb_functions),
168 ALG("AES-256-CFB1", aes256cfb1_functions),
169 ALG("AES-192-CFB1", aes192cfb1_functions),
170 ALG("AES-128-CFB1", aes128cfb1_functions),
171 ALG("AES-256-CFB8", aes256cfb8_functions),
172 ALG("AES-192-CFB8", aes192cfb8_functions),
173 ALG("AES-128-CFB8", aes128cfb8_functions),
174 ALG("AES-256-CTR", aes256ctr_functions),
175 ALG("AES-192-CTR", aes192ctr_functions),
176 ALG("AES-128-CTR", aes128ctr_functions),
177 ALG("AES-256-XTS", aes256xts_functions),
178 ALG("AES-128-XTS", aes128xts_functions),
3837c202 179#ifndef OPENSSL_NO_OCB
0d2bfe52
SL
180 ALG("AES-256-OCB", aes256ocb_functions),
181 ALG("AES-192-OCB", aes192ocb_functions),
182 ALG("AES-128-OCB", aes128ocb_functions),
3837c202 183#endif /* OPENSSL_NO_OCB */
eb173822 184#ifndef OPENSSL_NO_SIV
0d2bfe52
SL
185 ALG("AES-128-SIV", aes128siv_functions),
186 ALG("AES-192-SIV", aes192siv_functions),
187 ALG("AES-256-SIV", aes256siv_functions),
eb173822 188#endif /* OPENSSL_NO_SIV */
0d2bfe52
SL
189 ALG("AES-256-GCM:id-aes256-GCM", aes256gcm_functions),
190 ALG("AES-192-GCM:id-aes192-GCM", aes192gcm_functions),
191 ALG("AES-128-GCM:id-aes128-GCM", aes128gcm_functions),
192 ALG("AES-256-CCM:id-aes256-CCM", aes256ccm_functions),
193 ALG("AES-192-CCM:id-aes192-CCM", aes192ccm_functions),
194 ALG("AES-128-CCM:id-aes128-CCM", aes128ccm_functions),
195 ALG("AES-256-WRAP:id-aes256-wrap:AES256-WRAP", aes256wrap_functions),
196 ALG("AES-192-WRAP:id-aes192-wrap:AES192-WRAP", aes192wrap_functions),
197 ALG("AES-128-WRAP:id-aes128-wrap:AES128-WRAP", aes128wrap_functions),
198 ALG("AES-256-WRAP-PAD:id-aes256-wrap-pad:AES256-WRAP-PAD",
199 aes256wrappad_functions),
200 ALG("AES-192-WRAP-PAD:id-aes192-wrap-pad:AES192-WRAP-PAD",
201 aes192wrappad_functions),
202 ALG("AES-128-WRAP-PAD:id-aes128-wrap-pad:AES128-WRAP-PAD",
203 aes128wrappad_functions),
204 ALGC("AES-128-CBC-HMAC-SHA1", aes128cbc_hmac_sha1_functions,
205 cipher_capable_aes_cbc_hmac_sha1),
206 ALGC("AES-256-CBC-HMAC-SHA1", aes256cbc_hmac_sha1_functions,
207 cipher_capable_aes_cbc_hmac_sha1),
208 ALGC("AES-128-CBC-HMAC-SHA256", aes128cbc_hmac_sha256_functions,
209 cipher_capable_aes_cbc_hmac_sha256),
210 ALGC("AES-256-CBC-HMAC-SHA256", aes256cbc_hmac_sha256_functions,
211 cipher_capable_aes_cbc_hmac_sha256),
a672a02a 212#ifndef OPENSSL_NO_ARIA
0d2bfe52
SL
213 ALG("ARIA-256-GCM", aria256gcm_functions),
214 ALG("ARIA-192-GCM", aria192gcm_functions),
215 ALG("ARIA-128-GCM", aria128gcm_functions),
216 ALG("ARIA-256-CCM", aria256ccm_functions),
217 ALG("ARIA-192-CCM", aria192ccm_functions),
218 ALG("ARIA-128-CCM", aria128ccm_functions),
219 ALG("ARIA-256-ECB", aria256ecb_functions),
220 ALG("ARIA-192-ECB", aria192ecb_functions),
221 ALG("ARIA-128-ECB", aria128ecb_functions),
222 ALG("ARIA-256-CBC:ARIA256", aria256cbc_functions),
223 ALG("ARIA-192-CBC:ARIA192", aria192cbc_functions),
224 ALG("ARIA-128-CBC:ARIA128", aria128cbc_functions),
225 ALG("ARIA-256-OFB", aria256ofb_functions),
226 ALG("ARIA-192-OFB", aria192ofb_functions),
227 ALG("ARIA-128-OFB", aria128ofb_functions),
228 ALG("ARIA-256-CFB", aria256cfb_functions),
229 ALG("ARIA-192-CFB", aria192cfb_functions),
230 ALG("ARIA-128-CFB", aria128cfb_functions),
231 ALG("ARIA-256-CFB1", aria256cfb1_functions),
232 ALG("ARIA-192-CFB1", aria192cfb1_functions),
233 ALG("ARIA-128-CFB1", aria128cfb1_functions),
234 ALG("ARIA-256-CFB8", aria256cfb8_functions),
235 ALG("ARIA-192-CFB8", aria192cfb8_functions),
236 ALG("ARIA-128-CFB8", aria128cfb8_functions),
237 ALG("ARIA-256-CTR", aria256ctr_functions),
238 ALG("ARIA-192-CTR", aria192ctr_functions),
239 ALG("ARIA-128-CTR", aria128ctr_functions),
a672a02a 240#endif /* OPENSSL_NO_ARIA */
e1178600 241#ifndef OPENSSL_NO_CAMELLIA
0d2bfe52
SL
242 ALG("CAMELLIA-256-ECB", camellia256ecb_functions),
243 ALG("CAMELLIA-192-ECB", camellia192ecb_functions),
244 ALG("CAMELLIA-128-ECB", camellia128ecb_functions),
245 ALG("CAMELLIA-256-CBC:CAMELLIA256", camellia256cbc_functions),
246 ALG("CAMELLIA-192-CBC:CAMELLIA192", camellia192cbc_functions),
247 ALG("CAMELLIA-128-CBC:CAMELLIA128", camellia128cbc_functions),
248 ALG("CAMELLIA-256-OFB", camellia256ofb_functions),
249 ALG("CAMELLIA-192-OFB", camellia192ofb_functions),
250 ALG("CAMELLIA-128-OFB", camellia128ofb_functions),
251 ALG("CAMELLIA-256-CFB", camellia256cfb_functions),
252 ALG("CAMELLIA-192-CFB", camellia192cfb_functions),
253 ALG("CAMELLIA-128-CFB", camellia128cfb_functions),
254 ALG("CAMELLIA-256-CFB1", camellia256cfb1_functions),
255 ALG("CAMELLIA-192-CFB1", camellia192cfb1_functions),
256 ALG("CAMELLIA-128-CFB1", camellia128cfb1_functions),
257 ALG("CAMELLIA-256-CFB8", camellia256cfb8_functions),
258 ALG("CAMELLIA-192-CFB8", camellia192cfb8_functions),
259 ALG("CAMELLIA-128-CFB8", camellia128cfb8_functions),
260 ALG("CAMELLIA-256-CTR", camellia256ctr_functions),
261 ALG("CAMELLIA-192-CTR", camellia192ctr_functions),
262 ALG("CAMELLIA-128-CTR", camellia128ctr_functions),
e1178600 263#endif /* OPENSSL_NO_CAMELLIA */
cb1548bc 264#ifndef OPENSSL_NO_DES
0d2bfe52
SL
265 ALG("DES-EDE3-ECB:DES-EDE3", tdes_ede3_ecb_functions),
266 ALG("DES-EDE3-CBC:DES3", tdes_ede3_cbc_functions),
267 ALG("DES-EDE3-OFB", tdes_ede3_ofb_functions),
268 ALG("DES-EDE3-CFB", tdes_ede3_cfb_functions),
269 ALG("DES-EDE3-CFB8", tdes_ede3_cfb8_functions),
270 ALG("DES-EDE3-CFB1", tdes_ede3_cfb1_functions),
f5056577 271 ALG("DES3-WRAP:id-smime-alg-CMS3DESwrap", tdes_wrap_cbc_functions),
0d2bfe52
SL
272 ALG("DES-EDE-ECB:DES-EDE", tdes_ede2_ecb_functions),
273 ALG("DES-EDE-CBC", tdes_ede2_cbc_functions),
274 ALG("DES-EDE-OFB", tdes_ede2_ofb_functions),
275 ALG("DES-EDE-CFB", tdes_ede2_cfb_functions),
cb1548bc 276#endif /* OPENSSL_NO_DES */
105dde25 277#ifndef OPENSSL_NO_SM4
0d2bfe52
SL
278 ALG("SM4-ECB", sm4128ecb_functions),
279 ALG("SM4-CBC:SM4", sm4128cbc_functions),
280 ALG("SM4-CTR", sm4128ctr_functions),
281 ALG("SM4-OFB:SM4-OFB128", sm4128ofb128_functions),
282 ALG("SM4-CFB:SM4-CFB128", sm4128cfb128_functions),
105dde25 283#endif /* OPENSSL_NO_SM4 */
3d5a7578 284#ifndef OPENSSL_NO_CHACHA
0d2bfe52 285 ALG("ChaCha20", chacha20_functions),
3d5a7578 286# ifndef OPENSSL_NO_POLY1305
0d2bfe52 287 ALG("ChaCha20-Poly1305", chacha20_poly1305_functions),
3d5a7578
SL
288# endif /* OPENSSL_NO_POLY1305 */
289#endif /* OPENSSL_NO_CHACHA */
0d2bfe52 290 { { NULL, NULL, NULL }, NULL }
aab26e6f 291};
0d2bfe52 292static OSSL_ALGORITHM exported_ciphers[OSSL_NELEM(deflt_ciphers)];
aab26e6f 293
55a0a117
RL
294static const OSSL_ALGORITHM deflt_macs[] = {
295#ifndef OPENSSL_NO_BLAKE2
745fc918
MC
296 { "BLAKE2BMAC", "provider=default", blake2bmac_functions },
297 { "BLAKE2SMAC", "provider=default", blake2smac_functions },
2e5db6ad
RL
298#endif
299#ifndef OPENSSL_NO_CMAC
745fc918 300 { "CMAC", "provider=default", cmac_functions },
55a0a117 301#endif
745fc918
MC
302 { "GMAC", "provider=default", gmac_functions },
303 { "HMAC", "provider=default", hmac_functions },
304 { "KMAC-128:KMAC128", "provider=default", kmac128_functions },
305 { "KMAC-256:KMAC256", "provider=default", kmac256_functions },
4657693d 306#ifndef OPENSSL_NO_SIPHASH
745fc918 307 { "SIPHASH", "provider=default", siphash_functions },
ae0b6b92
RL
308#endif
309#ifndef OPENSSL_NO_POLY1305
745fc918 310 { "POLY1305", "provider=default", poly1305_functions },
4657693d 311#endif
55a0a117
RL
312 { NULL, NULL, NULL }
313};
314
e3405a4a 315static const OSSL_ALGORITHM deflt_kdfs[] = {
745fc918
MC
316 { "HKDF", "provider=default", kdf_hkdf_functions },
317 { "SSKDF", "provider=default", kdf_sskdf_functions },
318 { "PBKDF2", "provider=default", kdf_pbkdf2_functions },
b7466c13 319 { "PKCS12KDF", "provider=default", kdf_pkcs12_functions },
745fc918
MC
320 { "SSHKDF", "provider=default", kdf_sshkdf_functions },
321 { "X963KDF", "provider=default", kdf_x963_kdf_functions },
322 { "TLS1-PRF", "provider=default", kdf_tls1_prf_functions },
323 { "KBKDF", "provider=default", kdf_kbkdf_functions },
e3405a4a 324#ifndef OPENSSL_NO_CMS
745fc918 325 { "X942KDF", "provider=default", kdf_x942_kdf_functions },
e3405a4a
P
326#endif
327#ifndef OPENSSL_NO_SCRYPT
745fc918 328 { "SCRYPT:id-scrypt", "provider=default", kdf_scrypt_functions },
e3405a4a 329#endif
745fc918 330 { "KRB5KDF", "provider=default", kdf_krb5kdf_functions },
0fee1dff 331 { NULL, NULL, NULL }
e3405a4a
P
332};
333
89e29174 334static const OSSL_ALGORITHM deflt_keyexch[] = {
76ca35e7 335#ifndef OPENSSL_NO_DH
745fc918 336 { "DH:dhKeyAgreement", "provider=default", dh_keyexch_functions },
6f7d2135
MC
337#endif
338#ifndef OPENSSL_NO_EC
edd3b7a3 339 { "ECDH", "provider=default", ecdh_keyexch_functions },
745fc918
MC
340 { "X25519", "provider=default", x25519_keyexch_functions },
341 { "X448", "provider=default", x448_keyexch_functions },
8b84b075 342#endif
05d2f72e
MC
343 { "TLS1-PRF", "provider=default", kdf_tls1_prf_keyexch_functions },
344 { "HKDF", "provider=default", kdf_hkdf_keyexch_functions },
194de849 345 { "SCRYPT:id-scrypt", "provider=default", kdf_scrypt_keyexch_functions },
8b84b075
RL
346 { NULL, NULL, NULL }
347};
348
bcc4ae67 349static const OSSL_ALGORITHM deflt_rands[] = {
f000e828 350 { "CTR-DRBG", "provider=default", drbg_ctr_functions },
bcc4ae67 351 { "HASH-DRBG", "provider=default", drbg_hash_functions },
bcc4ae67 352 { "HMAC-DRBG", "provider=default", drbg_hmac_functions },
f000e828 353 { "TEST-RAND", "provider=default", test_rng_functions },
bcc4ae67
P
354 { NULL, NULL, NULL }
355};
356
4889dadc
MC
357static const OSSL_ALGORITHM deflt_signature[] = {
358#ifndef OPENSSL_NO_DSA
745fc918 359 { "DSA:dsaEncryption", "provider=default", dsa_signature_functions },
4889dadc 360#endif
e1182bdb 361 { "RSA:rsaEncryption", "provider=default", rsa_signature_functions },
3965480c
MC
362#ifndef OPENSSL_NO_EC
363 { "ED25519:Ed25519", "provider=default", ed25519_signature_functions },
364 { "ED448:Ed448", "provider=default", ed448_signature_functions },
edd3b7a3 365 { "ECDSA", "provider=default", ecdsa_signature_functions },
3965480c 366#endif
b571e662 367 { "HMAC", "provider=default", mac_hmac_signature_functions },
4889dadc
MC
368 { NULL, NULL, NULL }
369};
370
89abd1b6 371static const OSSL_ALGORITHM deflt_asym_cipher[] = {
745fc918 372 { "RSA:rsaEncryption", "provider=default", rsa_asym_cipher_functions },
89abd1b6
MC
373 { NULL, NULL, NULL }
374};
4889dadc 375
8b84b075
RL
376static const OSSL_ALGORITHM deflt_keymgmt[] = {
377#ifndef OPENSSL_NO_DH
745fc918 378 { "DH:dhKeyAgreement", "provider=default", dh_keymgmt_functions },
627c2203 379 { "DHX:X9.42 DH:dhpublicnumber", "provider=default", dhx_keymgmt_functions },
4889dadc
MC
380#endif
381#ifndef OPENSSL_NO_DSA
745fc918 382 { "DSA:dsaEncryption", "provider=default", dsa_keymgmt_functions },
76ca35e7 383#endif
745fc918 384 { "RSA:rsaEncryption", "provider=default", rsa_keymgmt_functions },
8a758e96 385 { "RSA-PSS:RSASSA-PSS", "provider=default", rsapss_keymgmt_functions },
90d3cb57 386#ifndef OPENSSL_NO_EC
745fc918
MC
387 { "EC:id-ecPublicKey", "provider=default", ec_keymgmt_functions },
388 { "X25519", "provider=default", x25519_keymgmt_functions },
389 { "X448", "provider=default", x448_keymgmt_functions },
af6d8dd3
MC
390 { "ED25519", "provider=default", ed25519_keymgmt_functions },
391 { "ED448", "provider=default", ed448_keymgmt_functions },
90d3cb57 392#endif
ac2d58c7 393 { "TLS1-PRF", "provider=default", kdf_keymgmt_functions },
05d2f72e 394 { "HKDF", "provider=default", kdf_keymgmt_functions },
194de849 395 { "SCRYPT:id-scrypt", "provider=default", kdf_keymgmt_functions },
b571e662 396 { "HMAC", "provider=default", mac_keymgmt_functions },
89e29174
MC
397 { NULL, NULL, NULL }
398};
399
ece9304c
RL
400static const OSSL_ALGORITHM deflt_encoder[] = {
401#define ENCODER(name, fips, format, type, func_table) \
dfc0857d 402 { name, \
a3f15e23 403 "provider=default,fips=" fips ",format=" format ",type=" type, \
dfc0857d 404 (func_table) }
1017b8e4 405
ece9304c 406#include "encoders.inc"
1017b8e4
RL
407 { NULL, NULL, NULL }
408};
ece9304c 409#undef ENCODER
1017b8e4 410
ece9304c
RL
411static const OSSL_ALGORITHM deflt_decoder[] = {
412#define DECODER(name, fips, input, func_table) \
a3f15e23
P
413 { name, \
414 "provider=default,fips=" fips ",input=" input, \
415 (func_table) }
dcfacbbf 416
ece9304c 417#include "decoders.inc"
677add38
RL
418 { NULL, NULL, NULL }
419};
ece9304c 420#undef DECODER
677add38 421
fdaad3f1 422static const OSSL_ALGORITHM *deflt_query(void *provctx, int operation_id,
de29ff17
MC
423 int *no_cache)
424{
425 *no_cache = 0;
426 switch (operation_id) {
427 case OSSL_OP_DIGEST:
428 return deflt_digests;
aab26e6f 429 case OSSL_OP_CIPHER:
0d2bfe52
SL
430 ossl_prov_cache_exported_algorithms(deflt_ciphers, exported_ciphers);
431 return exported_ciphers;
55a0a117
RL
432 case OSSL_OP_MAC:
433 return deflt_macs;
e3405a4a
P
434 case OSSL_OP_KDF:
435 return deflt_kdfs;
bcc4ae67
P
436 case OSSL_OP_RAND:
437 return deflt_rands;
8b84b075
RL
438 case OSSL_OP_KEYMGMT:
439 return deflt_keymgmt;
89e29174
MC
440 case OSSL_OP_KEYEXCH:
441 return deflt_keyexch;
4889dadc
MC
442 case OSSL_OP_SIGNATURE:
443 return deflt_signature;
89abd1b6
MC
444 case OSSL_OP_ASYM_CIPHER:
445 return deflt_asym_cipher;
ece9304c
RL
446 case OSSL_OP_ENCODER:
447 return deflt_encoder;
448 case OSSL_OP_DECODER:
449 return deflt_decoder;
de29ff17
MC
450 }
451 return NULL;
452}
453
72bfc958 454
78906fff
RL
455static void deflt_teardown(void *provctx)
456{
d40b42ab 457 BIO_meth_free(PROV_CTX_get0_core_bio_method(provctx));
78906fff
RL
458 PROV_CTX_free(provctx);
459}
460
8a73348b
MC
461/* Functions we provide to the core */
462static const OSSL_DISPATCH deflt_dispatch_table[] = {
78906fff 463 { OSSL_FUNC_PROVIDER_TEARDOWN, (void (*)(void))deflt_teardown },
dca97d00 464 { OSSL_FUNC_PROVIDER_GETTABLE_PARAMS, (void (*)(void))deflt_gettable_params },
8a73348b 465 { OSSL_FUNC_PROVIDER_GET_PARAMS, (void (*)(void))deflt_get_params },
de29ff17 466 { OSSL_FUNC_PROVIDER_QUERY_OPERATION, (void (*)(void))deflt_query },
72bfc958 467 { OSSL_FUNC_PROVIDER_GET_CAPABILITIES, (void (*)(void))provider_get_capabilities },
8a73348b
MC
468 { 0, NULL }
469};
470
471OSSL_provider_init_fn ossl_default_provider_init;
472
d40b42ab 473int ossl_default_provider_init(const OSSL_CORE_HANDLE *handle,
8a73348b 474 const OSSL_DISPATCH *in,
a39eb840
RL
475 const OSSL_DISPATCH **out,
476 void **provctx)
8a73348b 477{
363b1e5d 478 OSSL_FUNC_core_get_library_context_fn *c_get_libctx = NULL;
d40b42ab 479 BIO_METHOD *corebiometh;
8013a933 480
63665fff
RL
481 if (!ossl_prov_bio_from_dispatch(in))
482 return 0;
8a73348b
MC
483 for (; in->function_id != 0; in++) {
484 switch (in->function_id) {
dca97d00 485 case OSSL_FUNC_CORE_GETTABLE_PARAMS:
363b1e5d 486 c_gettable_params = OSSL_FUNC_core_gettable_params(in);
8a73348b
MC
487 break;
488 case OSSL_FUNC_CORE_GET_PARAMS:
363b1e5d 489 c_get_params = OSSL_FUNC_core_get_params(in);
8a73348b 490 break;
8013a933 491 case OSSL_FUNC_CORE_GET_LIBRARY_CONTEXT:
363b1e5d 492 c_get_libctx = OSSL_FUNC_core_get_library_context(in);
8013a933 493 break;
8a73348b
MC
494 default:
495 /* Just ignore anything we don't understand */
496 break;
497 }
498 }
499
8013a933
RL
500 if (c_get_libctx == NULL)
501 return 0;
502
8013a933
RL
503 /*
504 * We want to make sure that all calls from this provider that requires
505 * a library context use the same context as the one used to call our
d40b42ab 506 * functions. We do that by passing it along in the provider context.
78906fff 507 *
d40b42ab 508 * This only works for built-in providers. Most providers should
78906fff 509 * create their own library context.
8013a933 510 */
d40b42ab
MC
511 if ((*provctx = PROV_CTX_new()) == NULL
512 || (corebiometh = bio_prov_init_bio_method()) == NULL) {
513 PROV_CTX_free(*provctx);
514 *provctx = NULL;
78906fff 515 return 0;
d40b42ab
MC
516 }
517 PROV_CTX_set0_library_context(*provctx, (OPENSSL_CTX *)c_get_libctx(handle));
518 PROV_CTX_set0_handle(*provctx, handle);
519 PROV_CTX_set0_core_bio_method(*provctx, corebiometh);
78906fff
RL
520
521 *out = deflt_dispatch_table;
522
8a73348b
MC
523 return 1;
524}