1*b0d17251Schristos /*
2*b0d17251Schristos * Copyright 2020-2021 The OpenSSL Project Authors. All Rights Reserved.
3*b0d17251Schristos *
4*b0d17251Schristos * Licensed under the Apache License 2.0 (the "License"). You may not use
5*b0d17251Schristos * this file except in compliance with the License. You can obtain a copy
6*b0d17251Schristos * in the file LICENSE in the source distribution or at
7*b0d17251Schristos * https://www.openssl.org/source/license.html
8*b0d17251Schristos */
9*b0d17251Schristos
10*b0d17251Schristos #include <openssl/crypto.h>
11*b0d17251Schristos #include <openssl/core_dispatch.h>
12*b0d17251Schristos #include <openssl/core_names.h>
13*b0d17251Schristos #include <openssl/params.h>
14*b0d17251Schristos #include <openssl/err.h>
15*b0d17251Schristos #include <openssl/proverr.h>
16*b0d17251Schristos #include "internal/cryptlib.h"
17*b0d17251Schristos #include "crypto/ecx.h"
18*b0d17251Schristos #include "prov/implementations.h"
19*b0d17251Schristos #include "prov/providercommon.h"
20*b0d17251Schristos #ifdef S390X_EC_ASM
21*b0d17251Schristos # include "s390x_arch.h"
22*b0d17251Schristos #endif
23*b0d17251Schristos
24*b0d17251Schristos static OSSL_FUNC_keyexch_newctx_fn x25519_newctx;
25*b0d17251Schristos static OSSL_FUNC_keyexch_newctx_fn x448_newctx;
26*b0d17251Schristos static OSSL_FUNC_keyexch_init_fn ecx_init;
27*b0d17251Schristos static OSSL_FUNC_keyexch_set_peer_fn ecx_set_peer;
28*b0d17251Schristos static OSSL_FUNC_keyexch_derive_fn ecx_derive;
29*b0d17251Schristos static OSSL_FUNC_keyexch_freectx_fn ecx_freectx;
30*b0d17251Schristos static OSSL_FUNC_keyexch_dupctx_fn ecx_dupctx;
31*b0d17251Schristos
32*b0d17251Schristos /*
33*b0d17251Schristos * What's passed as an actual key is defined by the KEYMGMT interface.
34*b0d17251Schristos * We happen to know that our KEYMGMT simply passes ECX_KEY structures, so
35*b0d17251Schristos * we use that here too.
36*b0d17251Schristos */
37*b0d17251Schristos
38*b0d17251Schristos typedef struct {
39*b0d17251Schristos size_t keylen;
40*b0d17251Schristos ECX_KEY *key;
41*b0d17251Schristos ECX_KEY *peerkey;
42*b0d17251Schristos } PROV_ECX_CTX;
43*b0d17251Schristos
ecx_newctx(void * provctx,size_t keylen)44*b0d17251Schristos static void *ecx_newctx(void *provctx, size_t keylen)
45*b0d17251Schristos {
46*b0d17251Schristos PROV_ECX_CTX *ctx;
47*b0d17251Schristos
48*b0d17251Schristos if (!ossl_prov_is_running())
49*b0d17251Schristos return NULL;
50*b0d17251Schristos
51*b0d17251Schristos ctx = OPENSSL_zalloc(sizeof(PROV_ECX_CTX));
52*b0d17251Schristos if (ctx == NULL) {
53*b0d17251Schristos ERR_raise(ERR_LIB_PROV, ERR_R_MALLOC_FAILURE);
54*b0d17251Schristos return NULL;
55*b0d17251Schristos }
56*b0d17251Schristos
57*b0d17251Schristos ctx->keylen = keylen;
58*b0d17251Schristos
59*b0d17251Schristos return ctx;
60*b0d17251Schristos }
61*b0d17251Schristos
x25519_newctx(void * provctx)62*b0d17251Schristos static void *x25519_newctx(void *provctx)
63*b0d17251Schristos {
64*b0d17251Schristos return ecx_newctx(provctx, X25519_KEYLEN);
65*b0d17251Schristos }
66*b0d17251Schristos
x448_newctx(void * provctx)67*b0d17251Schristos static void *x448_newctx(void *provctx)
68*b0d17251Schristos {
69*b0d17251Schristos return ecx_newctx(provctx, X448_KEYLEN);
70*b0d17251Schristos }
71*b0d17251Schristos
ecx_init(void * vecxctx,void * vkey,ossl_unused const OSSL_PARAM params[])72*b0d17251Schristos static int ecx_init(void *vecxctx, void *vkey,
73*b0d17251Schristos ossl_unused const OSSL_PARAM params[])
74*b0d17251Schristos {
75*b0d17251Schristos PROV_ECX_CTX *ecxctx = (PROV_ECX_CTX *)vecxctx;
76*b0d17251Schristos ECX_KEY *key = vkey;
77*b0d17251Schristos
78*b0d17251Schristos if (!ossl_prov_is_running())
79*b0d17251Schristos return 0;
80*b0d17251Schristos
81*b0d17251Schristos if (ecxctx == NULL
82*b0d17251Schristos || key == NULL
83*b0d17251Schristos || key->keylen != ecxctx->keylen
84*b0d17251Schristos || !ossl_ecx_key_up_ref(key)) {
85*b0d17251Schristos ERR_raise(ERR_LIB_PROV, ERR_R_INTERNAL_ERROR);
86*b0d17251Schristos return 0;
87*b0d17251Schristos }
88*b0d17251Schristos
89*b0d17251Schristos ossl_ecx_key_free(ecxctx->key);
90*b0d17251Schristos ecxctx->key = key;
91*b0d17251Schristos
92*b0d17251Schristos return 1;
93*b0d17251Schristos }
94*b0d17251Schristos
ecx_set_peer(void * vecxctx,void * vkey)95*b0d17251Schristos static int ecx_set_peer(void *vecxctx, void *vkey)
96*b0d17251Schristos {
97*b0d17251Schristos PROV_ECX_CTX *ecxctx = (PROV_ECX_CTX *)vecxctx;
98*b0d17251Schristos ECX_KEY *key = vkey;
99*b0d17251Schristos
100*b0d17251Schristos if (!ossl_prov_is_running())
101*b0d17251Schristos return 0;
102*b0d17251Schristos
103*b0d17251Schristos if (ecxctx == NULL
104*b0d17251Schristos || key == NULL
105*b0d17251Schristos || key->keylen != ecxctx->keylen
106*b0d17251Schristos || !ossl_ecx_key_up_ref(key)) {
107*b0d17251Schristos ERR_raise(ERR_LIB_PROV, ERR_R_INTERNAL_ERROR);
108*b0d17251Schristos return 0;
109*b0d17251Schristos }
110*b0d17251Schristos ossl_ecx_key_free(ecxctx->peerkey);
111*b0d17251Schristos ecxctx->peerkey = key;
112*b0d17251Schristos
113*b0d17251Schristos return 1;
114*b0d17251Schristos }
115*b0d17251Schristos
ecx_derive(void * vecxctx,unsigned char * secret,size_t * secretlen,size_t outlen)116*b0d17251Schristos static int ecx_derive(void *vecxctx, unsigned char *secret, size_t *secretlen,
117*b0d17251Schristos size_t outlen)
118*b0d17251Schristos {
119*b0d17251Schristos PROV_ECX_CTX *ecxctx = (PROV_ECX_CTX *)vecxctx;
120*b0d17251Schristos
121*b0d17251Schristos if (!ossl_prov_is_running())
122*b0d17251Schristos return 0;
123*b0d17251Schristos
124*b0d17251Schristos if (ecxctx->key == NULL
125*b0d17251Schristos || ecxctx->key->privkey == NULL
126*b0d17251Schristos || ecxctx->peerkey == NULL) {
127*b0d17251Schristos ERR_raise(ERR_LIB_PROV, PROV_R_MISSING_KEY);
128*b0d17251Schristos return 0;
129*b0d17251Schristos }
130*b0d17251Schristos
131*b0d17251Schristos if (!ossl_assert(ecxctx->keylen == X25519_KEYLEN
132*b0d17251Schristos || ecxctx->keylen == X448_KEYLEN)) {
133*b0d17251Schristos ERR_raise(ERR_LIB_PROV, PROV_R_INVALID_KEY_LENGTH);
134*b0d17251Schristos return 0;
135*b0d17251Schristos }
136*b0d17251Schristos
137*b0d17251Schristos if (secret == NULL) {
138*b0d17251Schristos *secretlen = ecxctx->keylen;
139*b0d17251Schristos return 1;
140*b0d17251Schristos }
141*b0d17251Schristos if (outlen < ecxctx->keylen) {
142*b0d17251Schristos ERR_raise(ERR_LIB_PROV, PROV_R_OUTPUT_BUFFER_TOO_SMALL);
143*b0d17251Schristos return 0;
144*b0d17251Schristos }
145*b0d17251Schristos
146*b0d17251Schristos if (ecxctx->keylen == X25519_KEYLEN) {
147*b0d17251Schristos #ifdef S390X_EC_ASM
148*b0d17251Schristos if (OPENSSL_s390xcap_P.pcc[1]
149*b0d17251Schristos & S390X_CAPBIT(S390X_SCALAR_MULTIPLY_X25519)) {
150*b0d17251Schristos if (s390x_x25519_mul(secret, ecxctx->peerkey->pubkey,
151*b0d17251Schristos ecxctx->key->privkey) == 0) {
152*b0d17251Schristos ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_DURING_DERIVATION);
153*b0d17251Schristos return 0;
154*b0d17251Schristos }
155*b0d17251Schristos } else
156*b0d17251Schristos #endif
157*b0d17251Schristos if (ossl_x25519(secret, ecxctx->key->privkey,
158*b0d17251Schristos ecxctx->peerkey->pubkey) == 0) {
159*b0d17251Schristos ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_DURING_DERIVATION);
160*b0d17251Schristos return 0;
161*b0d17251Schristos }
162*b0d17251Schristos } else {
163*b0d17251Schristos #ifdef S390X_EC_ASM
164*b0d17251Schristos if (OPENSSL_s390xcap_P.pcc[1]
165*b0d17251Schristos & S390X_CAPBIT(S390X_SCALAR_MULTIPLY_X448)) {
166*b0d17251Schristos if (s390x_x448_mul(secret, ecxctx->peerkey->pubkey,
167*b0d17251Schristos ecxctx->key->privkey) == 0) {
168*b0d17251Schristos ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_DURING_DERIVATION);
169*b0d17251Schristos return 0;
170*b0d17251Schristos }
171*b0d17251Schristos } else
172*b0d17251Schristos #endif
173*b0d17251Schristos if (ossl_x448(secret, ecxctx->key->privkey,
174*b0d17251Schristos ecxctx->peerkey->pubkey) == 0) {
175*b0d17251Schristos ERR_raise(ERR_LIB_PROV, PROV_R_FAILED_DURING_DERIVATION);
176*b0d17251Schristos return 0;
177*b0d17251Schristos }
178*b0d17251Schristos }
179*b0d17251Schristos
180*b0d17251Schristos *secretlen = ecxctx->keylen;
181*b0d17251Schristos return 1;
182*b0d17251Schristos }
183*b0d17251Schristos
ecx_freectx(void * vecxctx)184*b0d17251Schristos static void ecx_freectx(void *vecxctx)
185*b0d17251Schristos {
186*b0d17251Schristos PROV_ECX_CTX *ecxctx = (PROV_ECX_CTX *)vecxctx;
187*b0d17251Schristos
188*b0d17251Schristos ossl_ecx_key_free(ecxctx->key);
189*b0d17251Schristos ossl_ecx_key_free(ecxctx->peerkey);
190*b0d17251Schristos
191*b0d17251Schristos OPENSSL_free(ecxctx);
192*b0d17251Schristos }
193*b0d17251Schristos
ecx_dupctx(void * vecxctx)194*b0d17251Schristos static void *ecx_dupctx(void *vecxctx)
195*b0d17251Schristos {
196*b0d17251Schristos PROV_ECX_CTX *srcctx = (PROV_ECX_CTX *)vecxctx;
197*b0d17251Schristos PROV_ECX_CTX *dstctx;
198*b0d17251Schristos
199*b0d17251Schristos if (!ossl_prov_is_running())
200*b0d17251Schristos return NULL;
201*b0d17251Schristos
202*b0d17251Schristos dstctx = OPENSSL_zalloc(sizeof(*srcctx));
203*b0d17251Schristos if (dstctx == NULL) {
204*b0d17251Schristos ERR_raise(ERR_LIB_PROV, ERR_R_MALLOC_FAILURE);
205*b0d17251Schristos return NULL;
206*b0d17251Schristos }
207*b0d17251Schristos
208*b0d17251Schristos *dstctx = *srcctx;
209*b0d17251Schristos if (dstctx->key != NULL && !ossl_ecx_key_up_ref(dstctx->key)) {
210*b0d17251Schristos ERR_raise(ERR_LIB_PROV, ERR_R_INTERNAL_ERROR);
211*b0d17251Schristos OPENSSL_free(dstctx);
212*b0d17251Schristos return NULL;
213*b0d17251Schristos }
214*b0d17251Schristos
215*b0d17251Schristos if (dstctx->peerkey != NULL && !ossl_ecx_key_up_ref(dstctx->peerkey)) {
216*b0d17251Schristos ERR_raise(ERR_LIB_PROV, ERR_R_INTERNAL_ERROR);
217*b0d17251Schristos ossl_ecx_key_free(dstctx->key);
218*b0d17251Schristos OPENSSL_free(dstctx);
219*b0d17251Schristos return NULL;
220*b0d17251Schristos }
221*b0d17251Schristos
222*b0d17251Schristos return dstctx;
223*b0d17251Schristos }
224*b0d17251Schristos
225*b0d17251Schristos const OSSL_DISPATCH ossl_x25519_keyexch_functions[] = {
226*b0d17251Schristos { OSSL_FUNC_KEYEXCH_NEWCTX, (void (*)(void))x25519_newctx },
227*b0d17251Schristos { OSSL_FUNC_KEYEXCH_INIT, (void (*)(void))ecx_init },
228*b0d17251Schristos { OSSL_FUNC_KEYEXCH_DERIVE, (void (*)(void))ecx_derive },
229*b0d17251Schristos { OSSL_FUNC_KEYEXCH_SET_PEER, (void (*)(void))ecx_set_peer },
230*b0d17251Schristos { OSSL_FUNC_KEYEXCH_FREECTX, (void (*)(void))ecx_freectx },
231*b0d17251Schristos { OSSL_FUNC_KEYEXCH_DUPCTX, (void (*)(void))ecx_dupctx },
232*b0d17251Schristos { 0, NULL }
233*b0d17251Schristos };
234*b0d17251Schristos
235*b0d17251Schristos const OSSL_DISPATCH ossl_x448_keyexch_functions[] = {
236*b0d17251Schristos { OSSL_FUNC_KEYEXCH_NEWCTX, (void (*)(void))x448_newctx },
237*b0d17251Schristos { OSSL_FUNC_KEYEXCH_INIT, (void (*)(void))ecx_init },
238*b0d17251Schristos { OSSL_FUNC_KEYEXCH_DERIVE, (void (*)(void))ecx_derive },
239*b0d17251Schristos { OSSL_FUNC_KEYEXCH_SET_PEER, (void (*)(void))ecx_set_peer },
240*b0d17251Schristos { OSSL_FUNC_KEYEXCH_FREECTX, (void (*)(void))ecx_freectx },
241*b0d17251Schristos { OSSL_FUNC_KEYEXCH_DUPCTX, (void (*)(void))ecx_dupctx },
242*b0d17251Schristos { 0, NULL }
243*b0d17251Schristos };
244