Fix various warnings.
[openssl.git] / engines / ccgost / gost2001_keyx.c
1 /**********************************************************************
2  *                          gost_keyx.c                               *
3  *             Copyright (c) 2005-2006 Cryptocom LTD                  *
4  *         This file is distributed under the same license as OpenSSL *
5  *                                                                    *
6  *   VK0 34.10-2001 key exchange and GOST R 34.10-2001                *
7  *   based PKCS7/SMIME support                                        *
8  *          Requires OpenSSL 0.9.9 for compilation                    *
9  **********************************************************************/
10 #include <openssl/evp.h>
11 #include <openssl/rand.h>
12 #include <string.h>
13 #include <openssl/objects.h>
14 #include "gost89.h"
15 #include "gosthash.h"
16 #include "e_gost_err.h"
17 #include "gost_keywrap.h"
18 #include "gost_lcl.h"
19 #include "gost2001_keyx.h"
20
21 /* Transform ECDH shared key into little endian as required by Cryptocom
22  * key exchange */
23 static void *make_key_le(const void *in, size_t inlen, void *out, size_t *outlen)
24         {
25         const char* inbuf= in;
26         char* outbuf= out;
27         int i;
28         if (*outlen < inlen)
29                 {
30                 return NULL;
31                 }
32         for (i=0;i<inlen;i++)
33                 {
34                 outbuf[inlen-1-i]=inbuf[i];
35                 }
36         *outlen = inlen;
37         return out;
38         }       
39
40 /* Create gost 2001 ephemeral key with same parameters as peer key */
41 static EC_KEY *make_ec_ephemeral_key(EC_KEY *peer_key,BIGNUM *seckey)
42         {
43         EC_KEY *out = EC_KEY_new();
44         EC_KEY_copy(out,peer_key);
45         EC_KEY_set_private_key(out,seckey);
46         gost2001_compute_public(out);
47         return out;
48         }
49 /* Packs GOST elliptic curve key into EVP_PKEY setting same parameters
50  * as in passed pubkey
51  */
52 static EVP_PKEY *ec_ephemeral_key_to_EVP(EVP_PKEY *pubk,int type,EC_KEY *ephemeral) 
53         {
54         EVP_PKEY *newkey;
55         newkey = EVP_PKEY_new();
56         EVP_PKEY_assign(newkey,type,ephemeral);
57         return newkey;
58         }       
59
60 /*  
61  * EVP_PKEY_METHOD callback encrypt  
62  * Implementation of GOST2001 key transport, cryptocom variation 
63  */
64
65 int pkey_GOST01cc_encrypt (EVP_PKEY_CTX *pctx,unsigned char *out, 
66         size_t *out_len, const unsigned char *key,size_t key_len)
67         {
68         EVP_PKEY *pubk = EVP_PKEY_CTX_get0_pkey(pctx);
69         struct gost_pmeth_data *data = EVP_PKEY_CTX_get_data(pctx);     
70         GOST_KEY_TRANSPORT *gkt = NULL;
71         int ret=0;
72         gost_ctx ctx;
73         EC_KEY *ephemeral=NULL;
74         const EC_POINT *pub_key_point=NULL;
75         unsigned char shared_key[32],encrypted_key[32],hmac[4],
76                 iv[8]={0,0,0,0,0,0,0,0};
77         ephemeral = make_ec_ephemeral_key(EVP_PKEY_get0(pubk), gost_get_priv_key(data->eph_seckey));
78         if (!ephemeral) goto err;
79         /* compute shared key */
80         pub_key_point=EC_KEY_get0_public_key(EVP_PKEY_get0(pubk));
81         if (!ECDH_compute_key(shared_key,32,pub_key_point,ephemeral,make_key_le)) 
82                 {
83                 GOSTerr(GOST_F_PKEY_GOST01CC_ENCRYPT,GOST_R_ERROR_COMPUTING_SHARED_KEY);
84                 goto err;
85                 }       
86         /* encrypt session key */
87         gost_init(&ctx, &GostR3411_94_CryptoProParamSet);
88         gost_key(&ctx,shared_key);
89         encrypt_cryptocom_key(key,key_len,encrypted_key,&ctx);
90         /* compute hmac of session key */
91         if (!gost_mac(&ctx,32,key,32,hmac)) 
92                 {
93                 GOSTerr(GOST_F_PKEY_GOST01CC_ENCRYPT,GOST_R_ERROR_COMPUTING_MAC);
94                 return -1;
95                 }
96         gkt = GOST_KEY_TRANSPORT_new();
97         if (!gkt) 
98                 {
99                 GOSTerr(GOST_F_PKEY_GOST01CC_ENCRYPT,GOST_R_NO_MEMORY);
100                 return -1;
101                 }       
102         /* Store IV which is always zero in our case */
103         if (!ASN1_OCTET_STRING_set(gkt->key_agreement_info->eph_iv,iv,8))
104                 {
105                 GOSTerr(GOST_F_PKEY_GOST01CC_ENCRYPT,GOST_R_ERROR_STORING_IV);
106                 goto err;
107                 }       
108         if (!ASN1_OCTET_STRING_set(gkt->key_info->imit,hmac,4)) 
109                 {
110                 GOSTerr(GOST_F_PKEY_GOST01CC_ENCRYPT,GOST_R_ERROR_STORING_MAC);
111                 goto err;
112                 }       
113         if (!ASN1_OCTET_STRING_set(gkt->key_info->encrypted_key,encrypted_key,32))
114                 {       
115                 GOSTerr(GOST_F_PKEY_GOST01CC_ENCRYPT,GOST_R_ERROR_STORING_ENCRYPTED_KEY);
116                 goto err;
117                 }
118         
119         if (!X509_PUBKEY_set(&gkt->key_agreement_info->ephem_key,data->eph_seckey))
120                 {
121                 GOSTerr(GOST_F_PKEY_GOST01CC_ENCRYPT,GOST_R_CANNOT_PACK_EPHEMERAL_KEY);
122                 goto err;
123                 }       
124         ASN1_OBJECT_free(gkt->key_agreement_info->cipher);
125         gkt->key_agreement_info->cipher = OBJ_nid2obj(NID_id_Gost28147_89_cc);
126         if ((*out_len = i2d_GOST_KEY_TRANSPORT(gkt,&out))>0) ret = 1;
127         ;
128         err:
129         if (gkt) GOST_KEY_TRANSPORT_free(gkt);
130         return ret;
131         }
132 /*  
133  * EVP_PKEY_METHOD callback decrypt  
134  * Implementation of GOST2001 key transport, cryptocom variation 
135  */
136 int pkey_GOST01cc_decrypt (EVP_PKEY_CTX *pctx, unsigned char *key, size_t *key_len, const unsigned char *in, size_t in_len)
137         {
138         /* Form DH params from compute shared key */
139         EVP_PKEY *priv=EVP_PKEY_CTX_get0_pkey(pctx);
140         GOST_KEY_TRANSPORT *gkt = NULL;
141         const unsigned char *p=in;
142         unsigned char shared_key[32];
143         unsigned char hmac[4],hmac_comp[4];
144         unsigned char iv[8];
145         int i;
146         gost_ctx ctx;
147         const EC_POINT *pub_key_point;
148         EVP_PKEY *eph_key;
149
150         if (!key)
151                 {
152                 *key_len = 32;
153                 return 1;
154                 }       
155         /* Parse passed octet string and find out public key, iv and HMAC*/
156         gkt = d2i_GOST_KEY_TRANSPORT(NULL,(const unsigned char **)&p,
157                 in_len);
158         if (!gkt)
159                 {
160                 GOSTerr(GOST_F_PKEY_GOST01CC_DECRYPT,GOST_R_ERROR_PARSING_KEY_TRANSPORT_INFO);
161                 return 0;
162                 }       
163         eph_key = X509_PUBKEY_get(gkt->key_agreement_info->ephem_key);
164         /* Initialization vector is really ignored here */
165         OPENSSL_assert(gkt->key_agreement_info->eph_iv->length==8);
166         memcpy(iv,gkt->key_agreement_info->eph_iv->data,8);
167         /* HMAC should be computed and checked */
168         OPENSSL_assert(gkt->key_info->imit->length==4);
169         memcpy(hmac,gkt->key_info->imit->data,4);       
170         /* Compute shared key */
171         pub_key_point=EC_KEY_get0_public_key(EVP_PKEY_get0(eph_key));
172         i=ECDH_compute_key(shared_key,32,pub_key_point,EVP_PKEY_get0(priv),make_key_le);
173         EVP_PKEY_free(eph_key);
174         if (!i) 
175                 {
176                 GOSTerr(GOST_F_PKEY_GOST01CC_DECRYPT,GOST_R_ERROR_COMPUTING_SHARED_KEY);
177                 GOST_KEY_TRANSPORT_free(gkt);
178                 return 0;
179                 }
180         /* Decrypt session key */
181         gost_init(&ctx, &GostR3411_94_CryptoProParamSet);
182         gost_key(&ctx,shared_key);
183         
184         if (!decrypt_cryptocom_key(key,*key_len,gkt->key_info->encrypted_key->data, 
185                         gkt->key_info->encrypted_key->length, &ctx)) 
186                 {
187                 GOST_KEY_TRANSPORT_free(gkt);
188                 return 0;
189                 }
190         GOST_KEY_TRANSPORT_free(gkt);
191         /* check HMAC of session key*/
192         if (!gost_mac(&ctx,32,key,32,hmac_comp))
193                 {
194                 GOSTerr(GOST_F_PKEY_GOST01CC_DECRYPT,GOST_R_ERROR_COMPUTING_MAC);
195                 return 0;
196                 }
197         /* HMAC of session key is not correct */
198     if (memcmp(hmac,hmac_comp,4)!=0)
199                 {
200                 GOSTerr(GOST_F_PKEY_GOST01CC_DECRYPT,GOST_R_SESSION_KEY_MAC_DOES_NOT_MATCH);
201                 return 0;
202                 }       
203         return 1; 
204         }
205
206 /* Implementation of CryptoPro VKO 34.10-2001 algorithm */
207 static int VKO_compute_key(unsigned char *shared_key,size_t shared_key_size,const EC_POINT *pub_key,EC_KEY *priv_key,const unsigned char *ukm)
208         {
209         unsigned char ukm_be[8],databuf[64],hashbuf[64];
210         BIGNUM *UKM=NULL,*p=NULL,*order=NULL,*X=NULL,*Y=NULL;
211         const BIGNUM* key=EC_KEY_get0_private_key(priv_key);
212         EC_POINT *pnt=EC_POINT_new(EC_KEY_get0_group(priv_key));
213         int i;
214         gost_hash_ctx hash_ctx;
215         BN_CTX *ctx = BN_CTX_new();
216
217         for (i=0;i<8;i++)
218                 {
219                 ukm_be[7-i]=ukm[i];
220                 }
221         BN_CTX_start(ctx);
222         UKM=getbnfrombuf(ukm_be,8);
223         p=BN_CTX_get(ctx);
224         order = BN_CTX_get(ctx);
225         X=BN_CTX_get(ctx);
226         Y=BN_CTX_get(ctx);
227         EC_GROUP_get_order(EC_KEY_get0_group(priv_key),order,ctx);
228         BN_mod_mul(p,key,UKM,order,ctx);        
229         EC_POINT_mul(EC_KEY_get0_group(priv_key),pnt,NULL,pub_key,p,ctx);
230         EC_POINT_get_affine_coordinates_GFp(EC_KEY_get0_group(priv_key),
231                 pnt,X,Y,ctx);
232         /*Serialize elliptic curve point same way as we do it when saving
233          * key */
234         store_bignum(Y,databuf,32);
235         store_bignum(X,databuf+32,32);
236         /* And reverse byte order of whole buffer */
237         for (i=0;i<64;i++)
238                 {
239                 hashbuf[63-i]=databuf[i];
240                 }
241         init_gost_hash_ctx(&hash_ctx,&GostR3411_94_CryptoProParamSet);
242         start_hash(&hash_ctx);
243         hash_block(&hash_ctx,hashbuf,64);
244         finish_hash(&hash_ctx,shared_key);
245         done_gost_hash_ctx(&hash_ctx);
246         BN_free(UKM);
247         BN_CTX_end(ctx);
248         BN_CTX_free(ctx);
249         EC_POINT_free(pnt);
250         return 32;
251         }
252
253 /* Generates ephemeral key based on pubk algorithm
254  * computes shared key using VKO and returns filled up
255  * GOST_KEY_TRANSPORT structure
256  */
257 /* Public, because it would be needed in SSL implementation */
258 GOST_KEY_TRANSPORT *make_rfc4490_keytransport_2001(EVP_PKEY *pubk,BIGNUM *eph_key,
259         const unsigned char *key,size_t keylen, unsigned char *ukm,
260         size_t ukm_len)
261         {
262
263         const struct gost_cipher_info *param=get_encryption_params(NULL);
264         EC_KEY *ephemeral = NULL;
265         GOST_KEY_TRANSPORT *gkt=NULL;
266         const EC_POINT *pub_key_point = EC_KEY_get0_public_key(EVP_PKEY_get0(pubk));
267         unsigned char shared_key[32],crypted_key[44];
268         gost_ctx ctx;
269         EVP_PKEY *newkey=NULL;
270         
271         /* Do not use vizir cipher parameters with cryptopro */
272         if (!get_gost_engine_param(GOST_PARAM_CRYPT_PARAMS) && param ==  gost_cipher_list)
273                 {
274                 param= gost_cipher_list+1;
275                 }       
276         ephemeral = make_ec_ephemeral_key(EVP_PKEY_get0(pubk),eph_key);
277     VKO_compute_key(shared_key,32,pub_key_point,ephemeral,ukm);
278         gost_init(&ctx,param->sblock);  
279         keyWrapCryptoPro(&ctx,shared_key,ukm,key,crypted_key);
280         gkt = GOST_KEY_TRANSPORT_new();
281         if (!gkt)
282                 {
283                 goto memerr;
284                 }       
285         if(!ASN1_OCTET_STRING_set(gkt->key_agreement_info->eph_iv,
286                         ukm,8))
287                 {
288                 goto memerr;
289                 }       
290         if (!ASN1_OCTET_STRING_set(gkt->key_info->imit,crypted_key+40,4))
291                 {
292                 goto memerr;
293                 }
294         if (!ASN1_OCTET_STRING_set(gkt->key_info->encrypted_key,crypted_key+8,32))
295                 {
296                 goto memerr;
297                 }
298         newkey = ec_ephemeral_key_to_EVP(pubk,NID_id_GostR3410_2001,ephemeral);
299         if (!X509_PUBKEY_set(&gkt->key_agreement_info->ephem_key,newkey))
300                 {
301                 GOSTerr(GOST_F_MAKE_RFC4490_KEYTRANSPORT_2001,GOST_R_CANNOT_PACK_EPHEMERAL_KEY);
302                 goto err;
303                 }       
304         ASN1_OBJECT_free(gkt->key_agreement_info->cipher);
305         gkt->key_agreement_info->cipher = OBJ_nid2obj(param->nid);
306         EVP_PKEY_free(newkey);
307         return gkt;
308         memerr:
309         GOSTerr(GOST_F_MAKE_RFC4490_KEYTRANSPORT_2001,
310                 GOST_R_MALLOC_FAILURE);
311         err:            
312         GOST_KEY_TRANSPORT_free(gkt);
313         return NULL;
314         }
315
316 /*  
317  * EVP_PKEY_METHOD callback encrypt  
318  * Implementation of GOST2001 key transport, cryptopo variation 
319  */
320
321 int pkey_GOST01cp_encrypt (EVP_PKEY_CTX *pctx, unsigned char *out, size_t *out_len, const unsigned char *key,size_t key_len) 
322         {
323         GOST_KEY_TRANSPORT *gkt=NULL; 
324         EVP_PKEY *pubk = EVP_PKEY_CTX_get0_pkey(pctx);
325         struct gost_pmeth_data *data = EVP_PKEY_CTX_get_data(pctx);
326         unsigned char ukm[8];
327         int ret=0;
328         if (RAND_bytes(ukm,8)<=0)
329                 {
330                 GOSTerr(GOST_F_PKEY_GOST01CP_ENCRYPT,
331                         GOST_R_RANDOM_GENERATOR_FAILURE);
332                 return 0;
333                 }       
334                 
335         if (!(gkt=make_rfc4490_keytransport_2001(pubk,gost_get_priv_key(data->eph_seckey),key, key_len,ukm,8)))
336                 {
337                 goto err;
338                 }       
339         if ((*out_len = i2d_GOST_KEY_TRANSPORT(gkt,&out))>0) ret =1;
340         GOST_KEY_TRANSPORT_free(gkt);
341         return ret;     
342         err:            
343         GOST_KEY_TRANSPORT_free(gkt);
344         return -1;
345         }
346 /* Public, because it would be needed in SSL implementation */
347 int decrypt_rfc4490_shared_key_2001(EVP_PKEY *priv,GOST_KEY_TRANSPORT *gkt,
348         unsigned char *key_buf,int key_buf_len) 
349         {
350         unsigned char wrappedKey[44];
351         unsigned char sharedKey[32];
352         gost_ctx ctx;
353         const struct gost_cipher_info *param=NULL;
354         EVP_PKEY *eph_key=NULL;
355         
356         eph_key = X509_PUBKEY_get(gkt->key_agreement_info->ephem_key);
357         param = get_encryption_params(gkt->key_agreement_info->cipher);
358         gost_init(&ctx,param->sblock);  
359         OPENSSL_assert(gkt->key_agreement_info->eph_iv->length==8);
360         memcpy(wrappedKey,gkt->key_agreement_info->eph_iv->data,8);
361         OPENSSL_assert(gkt->key_info->encrypted_key->length==32);
362         memcpy(wrappedKey+8,gkt->key_info->encrypted_key->data,32);
363         OPENSSL_assert(gkt->key_info->imit->length==4);
364         memcpy(wrappedKey+40,gkt->key_info->imit->data,4);      
365         VKO_compute_key(sharedKey,32,EC_KEY_get0_public_key(EVP_PKEY_get0(eph_key)),
366                 EVP_PKEY_get0(priv),wrappedKey);
367         if (!keyUnwrapCryptoPro(&ctx,sharedKey,wrappedKey,key_buf))
368                 {
369                 GOSTerr(GOST_F_PKCS7_GOST94CP_KEY_TRANSPORT_DECRYPT,
370                         GOST_R_ERROR_COMPUTING_SHARED_KEY);
371                 goto err;
372                 }       
373                                 
374         EVP_PKEY_free(eph_key);
375         return 32;
376         err:
377         EVP_PKEY_free(eph_key);
378         return -1;
379         }
380 /*  
381  * EVP_PKEY_METHOD callback decrypt  
382  * Implementation of GOST2001 key transport, cryptopo variation 
383  */
384 int pkey_GOST01cp_decrypt (EVP_PKEY_CTX *pctx, unsigned char *key, size_t * key_len, const unsigned char *in, size_t in_len)
385         {
386         const unsigned char *p = in;
387         EVP_PKEY *priv = EVP_PKEY_CTX_get0_pkey(pctx);
388         GOST_KEY_TRANSPORT *gkt = NULL;
389         int ret=0;      
390
391         if (!key)
392                 {
393                 *key_len = 32;
394                 return 1;
395                 }       
396         gkt = d2i_GOST_KEY_TRANSPORT(NULL,(const unsigned char **)&p,
397                 in_len);
398         if (!gkt)
399                 {
400                 GOSTerr(GOST_F_PKCS7_GOST94CP_KEY_TRANSPORT_DECRYPT,GOST_R_ERROR_PARSING_KEY_TRANSPORT_INFO);
401                 return -1;
402                 }       
403         ret =   decrypt_rfc4490_shared_key_2001(priv,gkt,key,*key_len);
404         GOST_KEY_TRANSPORT_free(gkt);
405         return ret;
406         }