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Paul Bakker5121ce52009-01-03 21:22:43 +00001/*
2 * The RSA public-key cryptosystem
3 *
Paul Bakkerb125ed82011-11-10 13:33:51 +00004 * Copyright (C) 2006-2011, Brainspark B.V.
Paul Bakkerb96f1542010-07-18 20:36:00 +00005 *
6 * This file is part of PolarSSL (http://www.polarssl.org)
Paul Bakker84f12b72010-07-18 10:13:04 +00007 * Lead Maintainer: Paul Bakker <polarssl_maintainer at polarssl.org>
Paul Bakkerb96f1542010-07-18 20:36:00 +00008 *
Paul Bakker77b385e2009-07-28 17:23:11 +00009 * All rights reserved.
Paul Bakkere0ccd0a2009-01-04 16:27:10 +000010 *
Paul Bakker5121ce52009-01-03 21:22:43 +000011 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License as published by
13 * the Free Software Foundation; either version 2 of the License, or
14 * (at your option) any later version.
15 *
16 * This program is distributed in the hope that it will be useful,
17 * but WITHOUT ANY WARRANTY; without even the implied warranty of
18 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19 * GNU General Public License for more details.
20 *
21 * You should have received a copy of the GNU General Public License along
22 * with this program; if not, write to the Free Software Foundation, Inc.,
23 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
24 */
25/*
26 * RSA was designed by Ron Rivest, Adi Shamir and Len Adleman.
27 *
28 * http://theory.lcs.mit.edu/~rivest/rsapaper.pdf
29 * http://www.cacr.math.uwaterloo.ca/hac/about/chap8.pdf
30 */
31
Paul Bakker40e46942009-01-03 21:51:57 +000032#include "polarssl/config.h"
Paul Bakker5121ce52009-01-03 21:22:43 +000033
Paul Bakker40e46942009-01-03 21:51:57 +000034#if defined(POLARSSL_RSA_C)
Paul Bakker5121ce52009-01-03 21:22:43 +000035
Paul Bakker40e46942009-01-03 21:51:57 +000036#include "polarssl/rsa.h"
Paul Bakkerbb51f0c2012-08-23 07:46:58 +000037
38#if defined(POLARSSL_PKCS1_V21)
Paul Bakker9dcc3222011-03-08 14:16:06 +000039#include "polarssl/md.h"
Paul Bakkerbb51f0c2012-08-23 07:46:58 +000040#endif
Paul Bakker5121ce52009-01-03 21:22:43 +000041
42#include <stdlib.h>
Paul Bakker5121ce52009-01-03 21:22:43 +000043#include <stdio.h>
44
45/*
46 * Initialize an RSA context
47 */
48void rsa_init( rsa_context *ctx,
49 int padding,
Paul Bakker21eb2802010-08-16 11:10:02 +000050 int hash_id )
Paul Bakker5121ce52009-01-03 21:22:43 +000051{
52 memset( ctx, 0, sizeof( rsa_context ) );
53
54 ctx->padding = padding;
55 ctx->hash_id = hash_id;
Paul Bakker5121ce52009-01-03 21:22:43 +000056}
57
Paul Bakker40e46942009-01-03 21:51:57 +000058#if defined(POLARSSL_GENPRIME)
Paul Bakker5121ce52009-01-03 21:22:43 +000059
60/*
61 * Generate an RSA keypair
62 */
Paul Bakker21eb2802010-08-16 11:10:02 +000063int rsa_gen_key( rsa_context *ctx,
Paul Bakkera3d195c2011-11-27 21:07:34 +000064 int (*f_rng)(void *, unsigned char *, size_t),
65 void *p_rng,
66 unsigned int nbits, int exponent )
Paul Bakker5121ce52009-01-03 21:22:43 +000067{
68 int ret;
69 mpi P1, Q1, H, G;
70
Paul Bakker21eb2802010-08-16 11:10:02 +000071 if( f_rng == NULL || nbits < 128 || exponent < 3 )
Paul Bakker40e46942009-01-03 21:51:57 +000072 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
Paul Bakker5121ce52009-01-03 21:22:43 +000073
Paul Bakker6c591fa2011-05-05 11:49:20 +000074 mpi_init( &P1 ); mpi_init( &Q1 ); mpi_init( &H ); mpi_init( &G );
Paul Bakker5121ce52009-01-03 21:22:43 +000075
76 /*
77 * find primes P and Q with Q < P so that:
78 * GCD( E, (P-1)*(Q-1) ) == 1
79 */
80 MPI_CHK( mpi_lset( &ctx->E, exponent ) );
81
82 do
83 {
84 MPI_CHK( mpi_gen_prime( &ctx->P, ( nbits + 1 ) >> 1, 0,
Paul Bakker21eb2802010-08-16 11:10:02 +000085 f_rng, p_rng ) );
Paul Bakker5121ce52009-01-03 21:22:43 +000086
87 MPI_CHK( mpi_gen_prime( &ctx->Q, ( nbits + 1 ) >> 1, 0,
Paul Bakker21eb2802010-08-16 11:10:02 +000088 f_rng, p_rng ) );
Paul Bakker5121ce52009-01-03 21:22:43 +000089
90 if( mpi_cmp_mpi( &ctx->P, &ctx->Q ) < 0 )
91 mpi_swap( &ctx->P, &ctx->Q );
92
93 if( mpi_cmp_mpi( &ctx->P, &ctx->Q ) == 0 )
94 continue;
95
96 MPI_CHK( mpi_mul_mpi( &ctx->N, &ctx->P, &ctx->Q ) );
97 if( mpi_msb( &ctx->N ) != nbits )
98 continue;
99
100 MPI_CHK( mpi_sub_int( &P1, &ctx->P, 1 ) );
101 MPI_CHK( mpi_sub_int( &Q1, &ctx->Q, 1 ) );
102 MPI_CHK( mpi_mul_mpi( &H, &P1, &Q1 ) );
103 MPI_CHK( mpi_gcd( &G, &ctx->E, &H ) );
104 }
105 while( mpi_cmp_int( &G, 1 ) != 0 );
106
107 /*
108 * D = E^-1 mod ((P-1)*(Q-1))
109 * DP = D mod (P - 1)
110 * DQ = D mod (Q - 1)
111 * QP = Q^-1 mod P
112 */
113 MPI_CHK( mpi_inv_mod( &ctx->D , &ctx->E, &H ) );
114 MPI_CHK( mpi_mod_mpi( &ctx->DP, &ctx->D, &P1 ) );
115 MPI_CHK( mpi_mod_mpi( &ctx->DQ, &ctx->D, &Q1 ) );
116 MPI_CHK( mpi_inv_mod( &ctx->QP, &ctx->Q, &ctx->P ) );
117
118 ctx->len = ( mpi_msb( &ctx->N ) + 7 ) >> 3;
119
120cleanup:
121
Paul Bakker6c591fa2011-05-05 11:49:20 +0000122 mpi_free( &P1 ); mpi_free( &Q1 ); mpi_free( &H ); mpi_free( &G );
Paul Bakker5121ce52009-01-03 21:22:43 +0000123
124 if( ret != 0 )
125 {
126 rsa_free( ctx );
Paul Bakker9d781402011-05-09 16:17:09 +0000127 return( POLARSSL_ERR_RSA_KEY_GEN_FAILED + ret );
Paul Bakker5121ce52009-01-03 21:22:43 +0000128 }
129
130 return( 0 );
131}
132
133#endif
134
135/*
136 * Check a public RSA key
137 */
Paul Bakkerff60ee62010-03-16 21:09:09 +0000138int rsa_check_pubkey( const rsa_context *ctx )
Paul Bakker5121ce52009-01-03 21:22:43 +0000139{
Paul Bakker37940d9f2009-07-10 22:38:58 +0000140 if( !ctx->N.p || !ctx->E.p )
141 return( POLARSSL_ERR_RSA_KEY_CHECK_FAILED );
142
Paul Bakker5121ce52009-01-03 21:22:43 +0000143 if( ( ctx->N.p[0] & 1 ) == 0 ||
144 ( ctx->E.p[0] & 1 ) == 0 )
Paul Bakker40e46942009-01-03 21:51:57 +0000145 return( POLARSSL_ERR_RSA_KEY_CHECK_FAILED );
Paul Bakker5121ce52009-01-03 21:22:43 +0000146
147 if( mpi_msb( &ctx->N ) < 128 ||
Paul Bakkerfe3256e2011-11-25 12:11:43 +0000148 mpi_msb( &ctx->N ) > POLARSSL_MPI_MAX_BITS )
Paul Bakker40e46942009-01-03 21:51:57 +0000149 return( POLARSSL_ERR_RSA_KEY_CHECK_FAILED );
Paul Bakker5121ce52009-01-03 21:22:43 +0000150
151 if( mpi_msb( &ctx->E ) < 2 ||
152 mpi_msb( &ctx->E ) > 64 )
Paul Bakker40e46942009-01-03 21:51:57 +0000153 return( POLARSSL_ERR_RSA_KEY_CHECK_FAILED );
Paul Bakker5121ce52009-01-03 21:22:43 +0000154
155 return( 0 );
156}
157
158/*
159 * Check a private RSA key
160 */
Paul Bakkerff60ee62010-03-16 21:09:09 +0000161int rsa_check_privkey( const rsa_context *ctx )
Paul Bakker5121ce52009-01-03 21:22:43 +0000162{
163 int ret;
Paul Bakker321df6f2012-09-27 13:21:34 +0000164 mpi PQ, DE, P1, Q1, H, I, G, G2, L1, L2, DP, DQ, QP;
Paul Bakker5121ce52009-01-03 21:22:43 +0000165
166 if( ( ret = rsa_check_pubkey( ctx ) ) != 0 )
167 return( ret );
168
Paul Bakker37940d9f2009-07-10 22:38:58 +0000169 if( !ctx->P.p || !ctx->Q.p || !ctx->D.p )
170 return( POLARSSL_ERR_RSA_KEY_CHECK_FAILED );
171
Paul Bakker6c591fa2011-05-05 11:49:20 +0000172 mpi_init( &PQ ); mpi_init( &DE ); mpi_init( &P1 ); mpi_init( &Q1 );
173 mpi_init( &H ); mpi_init( &I ); mpi_init( &G ); mpi_init( &G2 );
Paul Bakker321df6f2012-09-27 13:21:34 +0000174 mpi_init( &L1 ); mpi_init( &L2 ); mpi_init( &DP ); mpi_init( &DQ );
175 mpi_init( &QP );
Paul Bakker5121ce52009-01-03 21:22:43 +0000176
177 MPI_CHK( mpi_mul_mpi( &PQ, &ctx->P, &ctx->Q ) );
178 MPI_CHK( mpi_mul_mpi( &DE, &ctx->D, &ctx->E ) );
179 MPI_CHK( mpi_sub_int( &P1, &ctx->P, 1 ) );
180 MPI_CHK( mpi_sub_int( &Q1, &ctx->Q, 1 ) );
181 MPI_CHK( mpi_mul_mpi( &H, &P1, &Q1 ) );
Paul Bakker5121ce52009-01-03 21:22:43 +0000182 MPI_CHK( mpi_gcd( &G, &ctx->E, &H ) );
183
Paul Bakkerb572adf2010-07-18 08:29:32 +0000184 MPI_CHK( mpi_gcd( &G2, &P1, &Q1 ) );
185 MPI_CHK( mpi_div_mpi( &L1, &L2, &H, &G2 ) );
186 MPI_CHK( mpi_mod_mpi( &I, &DE, &L1 ) );
187
Paul Bakker321df6f2012-09-27 13:21:34 +0000188 MPI_CHK( mpi_mod_mpi( &DP, &ctx->D, &P1 ) );
189 MPI_CHK( mpi_mod_mpi( &DQ, &ctx->D, &Q1 ) );
190 MPI_CHK( mpi_inv_mod( &QP, &ctx->Q, &ctx->P ) );
Paul Bakkerb572adf2010-07-18 08:29:32 +0000191 /*
192 * Check for a valid PKCS1v2 private key
193 */
Paul Bakker6c591fa2011-05-05 11:49:20 +0000194 if( mpi_cmp_mpi( &PQ, &ctx->N ) != 0 ||
Paul Bakker321df6f2012-09-27 13:21:34 +0000195 mpi_cmp_mpi( &DP, &ctx->DP ) != 0 ||
196 mpi_cmp_mpi( &DQ, &ctx->DQ ) != 0 ||
197 mpi_cmp_mpi( &QP, &ctx->QP ) != 0 ||
Paul Bakker6c591fa2011-05-05 11:49:20 +0000198 mpi_cmp_int( &L2, 0 ) != 0 ||
199 mpi_cmp_int( &I, 1 ) != 0 ||
200 mpi_cmp_int( &G, 1 ) != 0 )
Paul Bakker5121ce52009-01-03 21:22:43 +0000201 {
Paul Bakker6c591fa2011-05-05 11:49:20 +0000202 ret = POLARSSL_ERR_RSA_KEY_CHECK_FAILED;
Paul Bakker5121ce52009-01-03 21:22:43 +0000203 }
Paul Bakkerb572adf2010-07-18 08:29:32 +0000204
Paul Bakker5121ce52009-01-03 21:22:43 +0000205cleanup:
Paul Bakker6c591fa2011-05-05 11:49:20 +0000206 mpi_free( &PQ ); mpi_free( &DE ); mpi_free( &P1 ); mpi_free( &Q1 );
207 mpi_free( &H ); mpi_free( &I ); mpi_free( &G ); mpi_free( &G2 );
Paul Bakker321df6f2012-09-27 13:21:34 +0000208 mpi_free( &L1 ); mpi_free( &L2 ); mpi_free( &DP ); mpi_free( &DQ );
209 mpi_free( &QP );
Paul Bakker6c591fa2011-05-05 11:49:20 +0000210
Paul Bakker9d781402011-05-09 16:17:09 +0000211 if( ret == POLARSSL_ERR_RSA_KEY_CHECK_FAILED )
212 return( ret );
213
Paul Bakker6c591fa2011-05-05 11:49:20 +0000214 if( ret != 0 )
Paul Bakker9d781402011-05-09 16:17:09 +0000215 return( POLARSSL_ERR_RSA_KEY_CHECK_FAILED + ret );
Paul Bakker6c591fa2011-05-05 11:49:20 +0000216
217 return( 0 );
Paul Bakker5121ce52009-01-03 21:22:43 +0000218}
219
220/*
221 * Do an RSA public key operation
222 */
223int rsa_public( rsa_context *ctx,
Paul Bakkerff60ee62010-03-16 21:09:09 +0000224 const unsigned char *input,
Paul Bakker5121ce52009-01-03 21:22:43 +0000225 unsigned char *output )
226{
Paul Bakker23986e52011-04-24 08:57:21 +0000227 int ret;
228 size_t olen;
Paul Bakker5121ce52009-01-03 21:22:43 +0000229 mpi T;
230
Paul Bakker6c591fa2011-05-05 11:49:20 +0000231 mpi_init( &T );
Paul Bakker5121ce52009-01-03 21:22:43 +0000232
233 MPI_CHK( mpi_read_binary( &T, input, ctx->len ) );
234
235 if( mpi_cmp_mpi( &T, &ctx->N ) >= 0 )
236 {
Paul Bakker6c591fa2011-05-05 11:49:20 +0000237 mpi_free( &T );
Paul Bakker40e46942009-01-03 21:51:57 +0000238 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
Paul Bakker5121ce52009-01-03 21:22:43 +0000239 }
240
241 olen = ctx->len;
242 MPI_CHK( mpi_exp_mod( &T, &T, &ctx->E, &ctx->N, &ctx->RN ) );
243 MPI_CHK( mpi_write_binary( &T, output, olen ) );
244
245cleanup:
246
Paul Bakker6c591fa2011-05-05 11:49:20 +0000247 mpi_free( &T );
Paul Bakker5121ce52009-01-03 21:22:43 +0000248
249 if( ret != 0 )
Paul Bakker9d781402011-05-09 16:17:09 +0000250 return( POLARSSL_ERR_RSA_PUBLIC_FAILED + ret );
Paul Bakker5121ce52009-01-03 21:22:43 +0000251
252 return( 0 );
253}
254
Paul Bakker43f97992013-09-23 11:23:31 +0200255#if !defined(POLARSSL_RSA_NO_CRT)
256/*
257 * Generate or update blinding values, see section 10 of:
258 * KOCHER, Paul C. Timing attacks on implementations of Diffie-Hellman, RSA,
259 * DSS, and other systems. In : Advances in Cryptology—CRYPTO’96. Springer
260 * Berlin Heidelberg, 1996. p. 104-113.
261 */
262static int rsa_prepare_blinding( rsa_context *ctx,
263 int (*f_rng)(void *, unsigned char *, size_t), void *p_rng )
264{
265 int ret;
266
267 if( ctx->Vf.p != NULL )
268 {
269 /* We already have blinding values, just update them by squaring */
270 MPI_CHK( mpi_mul_mpi( &ctx->Vi, &ctx->Vi, &ctx->Vi ) );
271 MPI_CHK( mpi_mod_mpi( &ctx->Vi, &ctx->Vi, &ctx->N ) );
272 MPI_CHK( mpi_mul_mpi( &ctx->Vf, &ctx->Vf, &ctx->Vf ) );
273 MPI_CHK( mpi_mod_mpi( &ctx->Vf, &ctx->Vf, &ctx->N ) );
274
275 return( 0 );
276 }
277
278 /* Unblinding value: Vf = random number */
279 MPI_CHK( mpi_fill_random( &ctx->Vf, ctx->len - 1, f_rng, p_rng ) );
280
Paul Bakker2f1481e2013-10-04 13:54:01 +0200281 /* Mathematically speaking, the algorithm should check Vf
282 * against 0, P and Q (Vf should be relatively prime to N, and 0 < Vf < N),
283 * so that Vf^-1 exists.
284 */
285
Paul Bakker43f97992013-09-23 11:23:31 +0200286 /* Blinding value: Vi = Vf^(-e) mod N */
287 MPI_CHK( mpi_inv_mod( &ctx->Vi, &ctx->Vf, &ctx->N ) );
288 MPI_CHK( mpi_exp_mod( &ctx->Vi, &ctx->Vi, &ctx->E, &ctx->N, &ctx->RN ) );
289
290cleanup:
291 return( ret );
292}
293#endif
294
Paul Bakker5121ce52009-01-03 21:22:43 +0000295/*
296 * Do an RSA private key operation
297 */
298int rsa_private( rsa_context *ctx,
Paul Bakker43f97992013-09-23 11:23:31 +0200299 int (*f_rng)(void *, unsigned char *, size_t),
300 void *p_rng,
Paul Bakkerff60ee62010-03-16 21:09:09 +0000301 const unsigned char *input,
Paul Bakker5121ce52009-01-03 21:22:43 +0000302 unsigned char *output )
303{
Paul Bakker23986e52011-04-24 08:57:21 +0000304 int ret;
305 size_t olen;
Paul Bakker5121ce52009-01-03 21:22:43 +0000306 mpi T, T1, T2;
307
Paul Bakker6c591fa2011-05-05 11:49:20 +0000308 mpi_init( &T ); mpi_init( &T1 ); mpi_init( &T2 );
Paul Bakker5121ce52009-01-03 21:22:43 +0000309
310 MPI_CHK( mpi_read_binary( &T, input, ctx->len ) );
311
312 if( mpi_cmp_mpi( &T, &ctx->N ) >= 0 )
313 {
Paul Bakker6c591fa2011-05-05 11:49:20 +0000314 mpi_free( &T );
Paul Bakker40e46942009-01-03 21:51:57 +0000315 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
Paul Bakker5121ce52009-01-03 21:22:43 +0000316 }
317
Paul Bakker0216cc12011-03-26 13:40:23 +0000318#if defined(POLARSSL_RSA_NO_CRT)
Paul Bakker2f1481e2013-10-04 13:54:01 +0200319 ((void) f_rng);
320 ((void) p_rng);
Paul Bakker5121ce52009-01-03 21:22:43 +0000321 MPI_CHK( mpi_exp_mod( &T, &T, &ctx->D, &ctx->N, &ctx->RN ) );
322#else
Paul Bakker43f97992013-09-23 11:23:31 +0200323 if( f_rng != NULL )
324 {
325 /*
326 * Blinding
327 * T = T * Vi mod N
328 */
329 MPI_CHK( rsa_prepare_blinding( ctx, f_rng, p_rng ) );
330 MPI_CHK( mpi_mul_mpi( &T, &T, &ctx->Vi ) );
331 MPI_CHK( mpi_mod_mpi( &T, &T, &ctx->N ) );
332 }
333
Paul Bakker5121ce52009-01-03 21:22:43 +0000334 /*
335 * faster decryption using the CRT
336 *
337 * T1 = input ^ dP mod P
338 * T2 = input ^ dQ mod Q
339 */
340 MPI_CHK( mpi_exp_mod( &T1, &T, &ctx->DP, &ctx->P, &ctx->RP ) );
341 MPI_CHK( mpi_exp_mod( &T2, &T, &ctx->DQ, &ctx->Q, &ctx->RQ ) );
342
343 /*
344 * T = (T1 - T2) * (Q^-1 mod P) mod P
345 */
346 MPI_CHK( mpi_sub_mpi( &T, &T1, &T2 ) );
347 MPI_CHK( mpi_mul_mpi( &T1, &T, &ctx->QP ) );
348 MPI_CHK( mpi_mod_mpi( &T, &T1, &ctx->P ) );
349
350 /*
351 * output = T2 + T * Q
352 */
353 MPI_CHK( mpi_mul_mpi( &T1, &T, &ctx->Q ) );
354 MPI_CHK( mpi_add_mpi( &T, &T2, &T1 ) );
Paul Bakker43f97992013-09-23 11:23:31 +0200355
356 if( f_rng != NULL )
357 {
358 /*
359 * Unblind
360 * T = T * Vf mod N
361 */
362 MPI_CHK( mpi_mul_mpi( &T, &T, &ctx->Vf ) );
363 MPI_CHK( mpi_mod_mpi( &T, &T, &ctx->N ) );
364 }
Paul Bakker5121ce52009-01-03 21:22:43 +0000365#endif
366
367 olen = ctx->len;
368 MPI_CHK( mpi_write_binary( &T, output, olen ) );
369
370cleanup:
371
Paul Bakker6c591fa2011-05-05 11:49:20 +0000372 mpi_free( &T ); mpi_free( &T1 ); mpi_free( &T2 );
Paul Bakker5121ce52009-01-03 21:22:43 +0000373
374 if( ret != 0 )
Paul Bakker9d781402011-05-09 16:17:09 +0000375 return( POLARSSL_ERR_RSA_PRIVATE_FAILED + ret );
Paul Bakker5121ce52009-01-03 21:22:43 +0000376
377 return( 0 );
378}
379
Paul Bakker9dcc3222011-03-08 14:16:06 +0000380#if defined(POLARSSL_PKCS1_V21)
381/**
382 * Generate and apply the MGF1 operation (from PKCS#1 v2.1) to a buffer.
383 *
Paul Bakkerb125ed82011-11-10 13:33:51 +0000384 * \param dst buffer to mask
385 * \param dlen length of destination buffer
386 * \param src source of the mask generation
387 * \param slen length of the source buffer
388 * \param md_ctx message digest context to use
Paul Bakker9dcc3222011-03-08 14:16:06 +0000389 */
Paul Bakker23986e52011-04-24 08:57:21 +0000390static void mgf_mask( unsigned char *dst, size_t dlen, unsigned char *src, size_t slen,
Paul Bakker9dcc3222011-03-08 14:16:06 +0000391 md_context_t *md_ctx )
392{
393 unsigned char mask[POLARSSL_MD_MAX_SIZE];
394 unsigned char counter[4];
395 unsigned char *p;
Paul Bakker23986e52011-04-24 08:57:21 +0000396 unsigned int hlen;
397 size_t i, use_len;
Paul Bakker9dcc3222011-03-08 14:16:06 +0000398
399 memset( mask, 0, POLARSSL_MD_MAX_SIZE );
400 memset( counter, 0, 4 );
401
402 hlen = md_ctx->md_info->size;
403
404 // Generate and apply dbMask
405 //
406 p = dst;
407
408 while( dlen > 0 )
409 {
410 use_len = hlen;
411 if( dlen < hlen )
412 use_len = dlen;
413
414 md_starts( md_ctx );
415 md_update( md_ctx, src, slen );
416 md_update( md_ctx, counter, 4 );
417 md_finish( md_ctx, mask );
418
419 for( i = 0; i < use_len; ++i )
420 *p++ ^= mask[i];
421
422 counter[3]++;
423
424 dlen -= use_len;
425 }
426}
427#endif
428
Paul Bakkerb3869132013-02-28 17:21:01 +0100429#if defined(POLARSSL_PKCS1_V21)
430/*
431 * Implementation of the PKCS#1 v2.1 RSAES-OAEP-ENCRYPT function
432 */
433int rsa_rsaes_oaep_encrypt( rsa_context *ctx,
434 int (*f_rng)(void *, unsigned char *, size_t),
435 void *p_rng,
Paul Bakkera43231c2013-02-28 17:33:49 +0100436 int mode,
437 const unsigned char *label, size_t label_len,
438 size_t ilen,
Paul Bakkerb3869132013-02-28 17:21:01 +0100439 const unsigned char *input,
440 unsigned char *output )
441{
442 size_t olen;
443 int ret;
444 unsigned char *p = output;
445 unsigned int hlen;
446 const md_info_t *md_info;
447 md_context_t md_ctx;
448
449 if( ctx->padding != RSA_PKCS_V21 || f_rng == NULL )
450 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
451
452 md_info = md_info_from_type( ctx->hash_id );
453
454 if( md_info == NULL )
455 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
456
457 olen = ctx->len;
458 hlen = md_get_size( md_info );
459
460 if( olen < ilen + 2 * hlen + 2 || f_rng == NULL )
461 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
462
463 memset( output, 0, olen );
464
465 *p++ = 0;
466
467 // Generate a random octet string seed
468 //
469 if( ( ret = f_rng( p_rng, p, hlen ) ) != 0 )
470 return( POLARSSL_ERR_RSA_RNG_FAILED + ret );
471
472 p += hlen;
473
474 // Construct DB
475 //
Paul Bakkera43231c2013-02-28 17:33:49 +0100476 md( md_info, label, label_len, p );
Paul Bakkerb3869132013-02-28 17:21:01 +0100477 p += hlen;
478 p += olen - 2 * hlen - 2 - ilen;
479 *p++ = 1;
480 memcpy( p, input, ilen );
481
482 md_init_ctx( &md_ctx, md_info );
483
484 // maskedDB: Apply dbMask to DB
485 //
486 mgf_mask( output + hlen + 1, olen - hlen - 1, output + 1, hlen,
487 &md_ctx );
488
489 // maskedSeed: Apply seedMask to seed
490 //
491 mgf_mask( output + 1, hlen, output + hlen + 1, olen - hlen - 1,
492 &md_ctx );
493
494 md_free_ctx( &md_ctx );
495
496 return( ( mode == RSA_PUBLIC )
497 ? rsa_public( ctx, output, output )
Paul Bakker43f97992013-09-23 11:23:31 +0200498 : rsa_private( ctx, f_rng, p_rng, output, output ) );
Paul Bakkerb3869132013-02-28 17:21:01 +0100499}
500#endif /* POLARSSL_PKCS1_V21 */
501
502/*
503 * Implementation of the PKCS#1 v2.1 RSAES-PKCS1-V1_5-ENCRYPT function
504 */
505int rsa_rsaes_pkcs1_v15_encrypt( rsa_context *ctx,
506 int (*f_rng)(void *, unsigned char *, size_t),
507 void *p_rng,
508 int mode, size_t ilen,
509 const unsigned char *input,
510 unsigned char *output )
511{
512 size_t nb_pad, olen;
513 int ret;
514 unsigned char *p = output;
515
516 if( ctx->padding != RSA_PKCS_V15 || f_rng == NULL )
517 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
518
519 olen = ctx->len;
520
521 if( olen < ilen + 11 )
522 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
523
524 nb_pad = olen - 3 - ilen;
525
526 *p++ = 0;
527 if( mode == RSA_PUBLIC )
528 {
529 *p++ = RSA_CRYPT;
530
531 while( nb_pad-- > 0 )
532 {
533 int rng_dl = 100;
534
535 do {
536 ret = f_rng( p_rng, p, 1 );
537 } while( *p == 0 && --rng_dl && ret == 0 );
538
539 // Check if RNG failed to generate data
540 //
541 if( rng_dl == 0 || ret != 0)
542 return POLARSSL_ERR_RSA_RNG_FAILED + ret;
543
544 p++;
545 }
546 }
547 else
548 {
549 *p++ = RSA_SIGN;
550
551 while( nb_pad-- > 0 )
552 *p++ = 0xFF;
553 }
554
555 *p++ = 0;
556 memcpy( p, input, ilen );
557
558 return( ( mode == RSA_PUBLIC )
559 ? rsa_public( ctx, output, output )
Paul Bakker43f97992013-09-23 11:23:31 +0200560 : rsa_private( ctx, f_rng, p_rng, output, output ) );
Paul Bakkerb3869132013-02-28 17:21:01 +0100561}
562
Paul Bakker5121ce52009-01-03 21:22:43 +0000563/*
564 * Add the message padding, then do an RSA operation
565 */
566int rsa_pkcs1_encrypt( rsa_context *ctx,
Paul Bakkera3d195c2011-11-27 21:07:34 +0000567 int (*f_rng)(void *, unsigned char *, size_t),
Paul Bakker21eb2802010-08-16 11:10:02 +0000568 void *p_rng,
Paul Bakker23986e52011-04-24 08:57:21 +0000569 int mode, size_t ilen,
Paul Bakkerff60ee62010-03-16 21:09:09 +0000570 const unsigned char *input,
Paul Bakker5121ce52009-01-03 21:22:43 +0000571 unsigned char *output )
572{
Paul Bakker5121ce52009-01-03 21:22:43 +0000573 switch( ctx->padding )
574 {
575 case RSA_PKCS_V15:
Paul Bakkerb3869132013-02-28 17:21:01 +0100576 return rsa_rsaes_pkcs1_v15_encrypt( ctx, f_rng, p_rng, mode, ilen,
577 input, output );
Paul Bakker5121ce52009-01-03 21:22:43 +0000578
Paul Bakker9dcc3222011-03-08 14:16:06 +0000579#if defined(POLARSSL_PKCS1_V21)
580 case RSA_PKCS_V21:
Paul Bakkerb3869132013-02-28 17:21:01 +0100581 return rsa_rsaes_oaep_encrypt( ctx, f_rng, p_rng, mode, NULL, 0,
582 ilen, input, output );
Paul Bakker9dcc3222011-03-08 14:16:06 +0000583#endif
Paul Bakker5121ce52009-01-03 21:22:43 +0000584
585 default:
Paul Bakker40e46942009-01-03 21:51:57 +0000586 return( POLARSSL_ERR_RSA_INVALID_PADDING );
Paul Bakker5121ce52009-01-03 21:22:43 +0000587 }
Paul Bakker5121ce52009-01-03 21:22:43 +0000588}
589
Paul Bakkerb3869132013-02-28 17:21:01 +0100590#if defined(POLARSSL_PKCS1_V21)
Paul Bakker5121ce52009-01-03 21:22:43 +0000591/*
Paul Bakkerb3869132013-02-28 17:21:01 +0100592 * Implementation of the PKCS#1 v2.1 RSAES-OAEP-DECRYPT function
Paul Bakker5121ce52009-01-03 21:22:43 +0000593 */
Paul Bakkerb3869132013-02-28 17:21:01 +0100594int rsa_rsaes_oaep_decrypt( rsa_context *ctx,
Paul Bakker43f97992013-09-23 11:23:31 +0200595 int (*f_rng)(void *, unsigned char *, size_t),
596 void *p_rng,
597 int mode,
Paul Bakkera43231c2013-02-28 17:33:49 +0100598 const unsigned char *label, size_t label_len,
599 size_t *olen,
Paul Bakkerb3869132013-02-28 17:21:01 +0100600 const unsigned char *input,
601 unsigned char *output,
602 size_t output_max_len )
Paul Bakker5121ce52009-01-03 21:22:43 +0000603{
Paul Bakker23986e52011-04-24 08:57:21 +0000604 int ret;
605 size_t ilen;
Paul Bakker5121ce52009-01-03 21:22:43 +0000606 unsigned char *p;
Paul Bakker0be82f22012-10-03 20:36:33 +0000607 unsigned char buf[POLARSSL_MPI_MAX_SIZE];
Paul Bakker9dcc3222011-03-08 14:16:06 +0000608 unsigned char lhash[POLARSSL_MD_MAX_SIZE];
Paul Bakker23986e52011-04-24 08:57:21 +0000609 unsigned int hlen;
Paul Bakker9dcc3222011-03-08 14:16:06 +0000610 const md_info_t *md_info;
611 md_context_t md_ctx;
Paul Bakkerb3869132013-02-28 17:21:01 +0100612
613 if( ctx->padding != RSA_PKCS_V21 )
614 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
Paul Bakker5121ce52009-01-03 21:22:43 +0000615
616 ilen = ctx->len;
617
Paul Bakker27fdf462011-06-09 13:55:13 +0000618 if( ilen < 16 || ilen > sizeof( buf ) )
Paul Bakker40e46942009-01-03 21:51:57 +0000619 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
Paul Bakker5121ce52009-01-03 21:22:43 +0000620
621 ret = ( mode == RSA_PUBLIC )
622 ? rsa_public( ctx, input, buf )
Paul Bakker43f97992013-09-23 11:23:31 +0200623 : rsa_private( ctx, f_rng, p_rng, input, buf );
Paul Bakker5121ce52009-01-03 21:22:43 +0000624
625 if( ret != 0 )
626 return( ret );
627
628 p = buf;
629
Paul Bakkerb3869132013-02-28 17:21:01 +0100630 if( *p++ != 0 )
631 return( POLARSSL_ERR_RSA_INVALID_PADDING );
632
633 md_info = md_info_from_type( ctx->hash_id );
634 if( md_info == NULL )
635 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
636
637 hlen = md_get_size( md_info );
638
639 md_init_ctx( &md_ctx, md_info );
640
641 // Generate lHash
642 //
Paul Bakkera43231c2013-02-28 17:33:49 +0100643 md( md_info, label, label_len, lhash );
Paul Bakkerb3869132013-02-28 17:21:01 +0100644
645 // seed: Apply seedMask to maskedSeed
646 //
647 mgf_mask( buf + 1, hlen, buf + hlen + 1, ilen - hlen - 1,
648 &md_ctx );
649
650 // DB: Apply dbMask to maskedDB
651 //
652 mgf_mask( buf + hlen + 1, ilen - hlen - 1, buf + 1, hlen,
653 &md_ctx );
654
655 p += hlen;
656 md_free_ctx( &md_ctx );
657
658 // Check validity
659 //
660 if( memcmp( lhash, p, hlen ) != 0 )
661 return( POLARSSL_ERR_RSA_INVALID_PADDING );
662
663 p += hlen;
664
665 while( *p == 0 && p < buf + ilen )
666 p++;
667
668 if( p == buf + ilen )
669 return( POLARSSL_ERR_RSA_INVALID_PADDING );
670
671 if( *p++ != 0x01 )
672 return( POLARSSL_ERR_RSA_INVALID_PADDING );
673
674 if (ilen - (p - buf) > output_max_len)
675 return( POLARSSL_ERR_RSA_OUTPUT_TOO_LARGE );
676
677 *olen = ilen - (p - buf);
678 memcpy( output, p, *olen );
679
680 return( 0 );
681}
682#endif /* POLARSSL_PKCS1_V21 */
683
684/*
685 * Implementation of the PKCS#1 v2.1 RSAES-PKCS1-V1_5-DECRYPT function
686 */
687int rsa_rsaes_pkcs1_v15_decrypt( rsa_context *ctx,
Paul Bakker43f97992013-09-23 11:23:31 +0200688 int (*f_rng)(void *, unsigned char *, size_t),
689 void *p_rng,
Paul Bakkerb3869132013-02-28 17:21:01 +0100690 int mode, size_t *olen,
691 const unsigned char *input,
692 unsigned char *output,
693 size_t output_max_len)
694{
Paul Bakker8804f692013-02-28 18:06:26 +0100695 int ret, correct = 1;
696 size_t ilen, pad_count = 0;
697 unsigned char *p, *q;
Paul Bakkerb3869132013-02-28 17:21:01 +0100698 unsigned char bt;
699 unsigned char buf[POLARSSL_MPI_MAX_SIZE];
700
701 if( ctx->padding != RSA_PKCS_V15 )
702 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
703
704 ilen = ctx->len;
705
706 if( ilen < 16 || ilen > sizeof( buf ) )
707 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
708
709 ret = ( mode == RSA_PUBLIC )
710 ? rsa_public( ctx, input, buf )
Paul Bakker43f97992013-09-23 11:23:31 +0200711 : rsa_private( ctx, f_rng, p_rng, input, buf );
Paul Bakkerb3869132013-02-28 17:21:01 +0100712
713 if( ret != 0 )
714 return( ret );
715
716 p = buf;
717
718 if( *p++ != 0 )
Paul Bakker8804f692013-02-28 18:06:26 +0100719 correct = 0;
Paul Bakkerb3869132013-02-28 17:21:01 +0100720
721 bt = *p++;
722 if( ( bt != RSA_CRYPT && mode == RSA_PRIVATE ) ||
723 ( bt != RSA_SIGN && mode == RSA_PUBLIC ) )
Paul Bakker5121ce52009-01-03 21:22:43 +0000724 {
Paul Bakker8804f692013-02-28 18:06:26 +0100725 correct = 0;
Paul Bakkerb3869132013-02-28 17:21:01 +0100726 }
Paul Bakker5121ce52009-01-03 21:22:43 +0000727
Paul Bakkerb3869132013-02-28 17:21:01 +0100728 if( bt == RSA_CRYPT )
729 {
730 while( *p != 0 && p < buf + ilen - 1 )
Paul Bakker8804f692013-02-28 18:06:26 +0100731 pad_count += ( *p++ != 0 );
Paul Bakkere6ee41f2012-05-19 08:43:48 +0000732
Paul Bakker8804f692013-02-28 18:06:26 +0100733 correct &= ( *p == 0 && p < buf + ilen - 1 );
Paul Bakkerb3869132013-02-28 17:21:01 +0100734
Paul Bakker8804f692013-02-28 18:06:26 +0100735 q = p;
736
737 // Also pass over all other bytes to reduce timing differences
738 //
739 while ( q < buf + ilen - 1 )
740 pad_count += ( *q++ != 0 );
741
742 // Prevent compiler optimization of pad_count
743 //
744 correct |= pad_count & 0x100000; /* Always 0 unless 1M bit keys */
Paul Bakkerb3869132013-02-28 17:21:01 +0100745 p++;
746 }
747 else
748 {
749 while( *p == 0xFF && p < buf + ilen - 1 )
Paul Bakker8804f692013-02-28 18:06:26 +0100750 pad_count += ( *p++ == 0xFF );
Paul Bakkerb3869132013-02-28 17:21:01 +0100751
Paul Bakker8804f692013-02-28 18:06:26 +0100752 correct &= ( *p == 0 && p < buf + ilen - 1 );
Paul Bakkerb3869132013-02-28 17:21:01 +0100753
Paul Bakker8804f692013-02-28 18:06:26 +0100754 q = p;
755
756 // Also pass over all other bytes to reduce timing differences
757 //
758 while ( q < buf + ilen - 1 )
759 pad_count += ( *q++ != 0 );
760
761 // Prevent compiler optimization of pad_count
762 //
763 correct |= pad_count & 0x100000; /* Always 0 unless 1M bit keys */
Paul Bakkerb3869132013-02-28 17:21:01 +0100764 p++;
Paul Bakker5121ce52009-01-03 21:22:43 +0000765 }
766
Paul Bakker8804f692013-02-28 18:06:26 +0100767 if( correct == 0 )
768 return( POLARSSL_ERR_RSA_INVALID_PADDING );
769
Paul Bakker27fdf462011-06-09 13:55:13 +0000770 if (ilen - (p - buf) > output_max_len)
Paul Bakker23986e52011-04-24 08:57:21 +0000771 return( POLARSSL_ERR_RSA_OUTPUT_TOO_LARGE );
Paul Bakker060c5682009-01-12 21:48:39 +0000772
Paul Bakker27fdf462011-06-09 13:55:13 +0000773 *olen = ilen - (p - buf);
Paul Bakker5121ce52009-01-03 21:22:43 +0000774 memcpy( output, p, *olen );
775
776 return( 0 );
777}
778
779/*
Paul Bakkerb3869132013-02-28 17:21:01 +0100780 * Do an RSA operation, then remove the message padding
781 */
782int rsa_pkcs1_decrypt( rsa_context *ctx,
Paul Bakker43f97992013-09-23 11:23:31 +0200783 int (*f_rng)(void *, unsigned char *, size_t),
784 void *p_rng,
Paul Bakkerb3869132013-02-28 17:21:01 +0100785 int mode, size_t *olen,
786 const unsigned char *input,
787 unsigned char *output,
788 size_t output_max_len)
789{
790 switch( ctx->padding )
791 {
792 case RSA_PKCS_V15:
Paul Bakker43f97992013-09-23 11:23:31 +0200793 return rsa_rsaes_pkcs1_v15_decrypt( ctx, f_rng, p_rng, mode, olen,
794 input, output, output_max_len );
Paul Bakkerb3869132013-02-28 17:21:01 +0100795
796#if defined(POLARSSL_PKCS1_V21)
797 case RSA_PKCS_V21:
Paul Bakker43f97992013-09-23 11:23:31 +0200798 return rsa_rsaes_oaep_decrypt( ctx, f_rng, p_rng, mode, NULL, 0,
799 olen, input, output, output_max_len );
Paul Bakkerb3869132013-02-28 17:21:01 +0100800#endif
801
802 default:
803 return( POLARSSL_ERR_RSA_INVALID_PADDING );
804 }
805}
806
807#if defined(POLARSSL_PKCS1_V21)
808/*
809 * Implementation of the PKCS#1 v2.1 RSASSA-PSS-SIGN function
810 */
811int rsa_rsassa_pss_sign( rsa_context *ctx,
812 int (*f_rng)(void *, unsigned char *, size_t),
813 void *p_rng,
814 int mode,
815 int hash_id,
816 unsigned int hashlen,
817 const unsigned char *hash,
818 unsigned char *sig )
819{
820 size_t olen;
821 unsigned char *p = sig;
822 unsigned char salt[POLARSSL_MD_MAX_SIZE];
823 unsigned int slen, hlen, offset = 0;
824 int ret;
825 size_t msb;
826 const md_info_t *md_info;
827 md_context_t md_ctx;
828
829 if( ctx->padding != RSA_PKCS_V21 || f_rng == NULL )
830 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
831
832 olen = ctx->len;
833
834 switch( hash_id )
835 {
836 case SIG_RSA_MD2:
837 case SIG_RSA_MD4:
838 case SIG_RSA_MD5:
839 hashlen = 16;
840 break;
841
842 case SIG_RSA_SHA1:
843 hashlen = 20;
844 break;
845
846 case SIG_RSA_SHA224:
847 hashlen = 28;
848 break;
849
850 case SIG_RSA_SHA256:
851 hashlen = 32;
852 break;
853
854 case SIG_RSA_SHA384:
855 hashlen = 48;
856 break;
857
858 case SIG_RSA_SHA512:
859 hashlen = 64;
860 break;
861
862 default:
863 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
864 }
865
866 md_info = md_info_from_type( ctx->hash_id );
867 if( md_info == NULL )
868 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
869
870 hlen = md_get_size( md_info );
871 slen = hlen;
872
873 if( olen < hlen + slen + 2 )
874 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
875
876 memset( sig, 0, olen );
877
878 msb = mpi_msb( &ctx->N ) - 1;
879
880 // Generate salt of length slen
881 //
882 if( ( ret = f_rng( p_rng, salt, slen ) ) != 0 )
883 return( POLARSSL_ERR_RSA_RNG_FAILED + ret );
884
885 // Note: EMSA-PSS encoding is over the length of N - 1 bits
886 //
887 msb = mpi_msb( &ctx->N ) - 1;
888 p += olen - hlen * 2 - 2;
889 *p++ = 0x01;
890 memcpy( p, salt, slen );
891 p += slen;
892
893 md_init_ctx( &md_ctx, md_info );
894
895 // Generate H = Hash( M' )
896 //
897 md_starts( &md_ctx );
898 md_update( &md_ctx, p, 8 );
899 md_update( &md_ctx, hash, hashlen );
900 md_update( &md_ctx, salt, slen );
901 md_finish( &md_ctx, p );
902
903 // Compensate for boundary condition when applying mask
904 //
905 if( msb % 8 == 0 )
906 offset = 1;
907
908 // maskedDB: Apply dbMask to DB
909 //
910 mgf_mask( sig + offset, olen - hlen - 1 - offset, p, hlen, &md_ctx );
911
912 md_free_ctx( &md_ctx );
913
914 msb = mpi_msb( &ctx->N ) - 1;
915 sig[0] &= 0xFF >> ( olen * 8 - msb );
916
917 p += hlen;
918 *p++ = 0xBC;
919
920 return( ( mode == RSA_PUBLIC )
921 ? rsa_public( ctx, sig, sig )
Paul Bakker43f97992013-09-23 11:23:31 +0200922 : rsa_private( ctx, f_rng, p_rng, sig, sig ) );
Paul Bakkerb3869132013-02-28 17:21:01 +0100923}
924#endif /* POLARSSL_PKCS1_V21 */
925
926/*
927 * Implementation of the PKCS#1 v2.1 RSASSA-PKCS1-V1_5-SIGN function
928 */
929/*
930 * Do an RSA operation to sign the message digest
931 */
932int rsa_rsassa_pkcs1_v15_sign( rsa_context *ctx,
Paul Bakker43f97992013-09-23 11:23:31 +0200933 int (*f_rng)(void *, unsigned char *, size_t),
934 void *p_rng,
Paul Bakkerb3869132013-02-28 17:21:01 +0100935 int mode,
936 int hash_id,
937 unsigned int hashlen,
938 const unsigned char *hash,
939 unsigned char *sig )
940{
941 size_t nb_pad, olen;
942 unsigned char *p = sig;
943
944 if( ctx->padding != RSA_PKCS_V15 )
945 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
946
947 olen = ctx->len;
948
949 switch( hash_id )
950 {
951 case SIG_RSA_RAW:
952 nb_pad = olen - 3 - hashlen;
953 break;
954
955 case SIG_RSA_MD2:
956 case SIG_RSA_MD4:
957 case SIG_RSA_MD5:
958 nb_pad = olen - 3 - 34;
959 break;
960
961 case SIG_RSA_SHA1:
962 nb_pad = olen - 3 - 35;
963 break;
964
965 case SIG_RSA_SHA224:
966 nb_pad = olen - 3 - 47;
967 break;
968
969 case SIG_RSA_SHA256:
970 nb_pad = olen - 3 - 51;
971 break;
972
973 case SIG_RSA_SHA384:
974 nb_pad = olen - 3 - 67;
975 break;
976
977 case SIG_RSA_SHA512:
978 nb_pad = olen - 3 - 83;
979 break;
980
981
982 default:
983 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
984 }
985
986 if( ( nb_pad < 8 ) || ( nb_pad > olen ) )
987 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
988
989 *p++ = 0;
990 *p++ = RSA_SIGN;
991 memset( p, 0xFF, nb_pad );
992 p += nb_pad;
993 *p++ = 0;
994
995 switch( hash_id )
996 {
997 case SIG_RSA_RAW:
998 memcpy( p, hash, hashlen );
999 break;
1000
1001 case SIG_RSA_MD2:
1002 memcpy( p, ASN1_HASH_MDX, 18 );
1003 memcpy( p + 18, hash, 16 );
1004 p[13] = 2; break;
1005
1006 case SIG_RSA_MD4:
1007 memcpy( p, ASN1_HASH_MDX, 18 );
1008 memcpy( p + 18, hash, 16 );
1009 p[13] = 4; break;
1010
1011 case SIG_RSA_MD5:
1012 memcpy( p, ASN1_HASH_MDX, 18 );
1013 memcpy( p + 18, hash, 16 );
1014 p[13] = 5; break;
1015
1016 case SIG_RSA_SHA1:
1017 memcpy( p, ASN1_HASH_SHA1, 15 );
1018 memcpy( p + 15, hash, 20 );
1019 break;
1020
1021 case SIG_RSA_SHA224:
1022 memcpy( p, ASN1_HASH_SHA2X, 19 );
1023 memcpy( p + 19, hash, 28 );
1024 p[1] += 28; p[14] = 4; p[18] += 28; break;
1025
1026 case SIG_RSA_SHA256:
1027 memcpy( p, ASN1_HASH_SHA2X, 19 );
1028 memcpy( p + 19, hash, 32 );
1029 p[1] += 32; p[14] = 1; p[18] += 32; break;
1030
1031 case SIG_RSA_SHA384:
1032 memcpy( p, ASN1_HASH_SHA2X, 19 );
1033 memcpy( p + 19, hash, 48 );
1034 p[1] += 48; p[14] = 2; p[18] += 48; break;
1035
1036 case SIG_RSA_SHA512:
1037 memcpy( p, ASN1_HASH_SHA2X, 19 );
1038 memcpy( p + 19, hash, 64 );
1039 p[1] += 64; p[14] = 3; p[18] += 64; break;
1040
1041 default:
1042 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
1043 }
1044
1045 return( ( mode == RSA_PUBLIC )
1046 ? rsa_public( ctx, sig, sig )
Paul Bakker43f97992013-09-23 11:23:31 +02001047 : rsa_private( ctx, f_rng, p_rng, sig, sig ) );
Paul Bakkerb3869132013-02-28 17:21:01 +01001048}
1049
1050/*
Paul Bakker5121ce52009-01-03 21:22:43 +00001051 * Do an RSA operation to sign the message digest
1052 */
1053int rsa_pkcs1_sign( rsa_context *ctx,
Paul Bakkera3d195c2011-11-27 21:07:34 +00001054 int (*f_rng)(void *, unsigned char *, size_t),
Paul Bakker9dcc3222011-03-08 14:16:06 +00001055 void *p_rng,
Paul Bakker5121ce52009-01-03 21:22:43 +00001056 int mode,
1057 int hash_id,
Paul Bakker23986e52011-04-24 08:57:21 +00001058 unsigned int hashlen,
Paul Bakkerff60ee62010-03-16 21:09:09 +00001059 const unsigned char *hash,
Paul Bakker5121ce52009-01-03 21:22:43 +00001060 unsigned char *sig )
1061{
Paul Bakker5121ce52009-01-03 21:22:43 +00001062 switch( ctx->padding )
1063 {
1064 case RSA_PKCS_V15:
Paul Bakker43f97992013-09-23 11:23:31 +02001065 return rsa_rsassa_pkcs1_v15_sign( ctx, f_rng, p_rng, mode, hash_id,
Paul Bakkerb3869132013-02-28 17:21:01 +01001066 hashlen, hash, sig );
Paul Bakker5121ce52009-01-03 21:22:43 +00001067
Paul Bakker9dcc3222011-03-08 14:16:06 +00001068#if defined(POLARSSL_PKCS1_V21)
1069 case RSA_PKCS_V21:
Paul Bakkerb3869132013-02-28 17:21:01 +01001070 return rsa_rsassa_pss_sign( ctx, f_rng, p_rng, mode, hash_id,
1071 hashlen, hash, sig );
Paul Bakker9dcc3222011-03-08 14:16:06 +00001072#endif
1073
Paul Bakker5121ce52009-01-03 21:22:43 +00001074 default:
Paul Bakker40e46942009-01-03 21:51:57 +00001075 return( POLARSSL_ERR_RSA_INVALID_PADDING );
Paul Bakker5121ce52009-01-03 21:22:43 +00001076 }
Paul Bakker5121ce52009-01-03 21:22:43 +00001077}
1078
Paul Bakkerb3869132013-02-28 17:21:01 +01001079#if defined(POLARSSL_PKCS1_V21)
Paul Bakker5121ce52009-01-03 21:22:43 +00001080/*
Paul Bakkerb3869132013-02-28 17:21:01 +01001081 * Implementation of the PKCS#1 v2.1 RSASSA-PSS-VERIFY function
Paul Bakker5121ce52009-01-03 21:22:43 +00001082 */
Paul Bakkerb3869132013-02-28 17:21:01 +01001083int rsa_rsassa_pss_verify( rsa_context *ctx,
Paul Bakker43f97992013-09-23 11:23:31 +02001084 int (*f_rng)(void *, unsigned char *, size_t),
1085 void *p_rng,
Paul Bakkerb3869132013-02-28 17:21:01 +01001086 int mode,
1087 int hash_id,
1088 unsigned int hashlen,
1089 const unsigned char *hash,
1090 unsigned char *sig )
Paul Bakker5121ce52009-01-03 21:22:43 +00001091{
Paul Bakker23986e52011-04-24 08:57:21 +00001092 int ret;
Paul Bakkerb3869132013-02-28 17:21:01 +01001093 size_t siglen;
1094 unsigned char *p;
Paul Bakker0be82f22012-10-03 20:36:33 +00001095 unsigned char buf[POLARSSL_MPI_MAX_SIZE];
Paul Bakker1fe7d9b2011-11-15 15:26:03 +00001096 unsigned char result[POLARSSL_MD_MAX_SIZE];
Paul Bakker9dcc3222011-03-08 14:16:06 +00001097 unsigned char zeros[8];
Paul Bakker23986e52011-04-24 08:57:21 +00001098 unsigned int hlen;
1099 size_t slen, msb;
Paul Bakker9dcc3222011-03-08 14:16:06 +00001100 const md_info_t *md_info;
1101 md_context_t md_ctx;
Paul Bakkerb3869132013-02-28 17:21:01 +01001102
1103 if( ctx->padding != RSA_PKCS_V21 )
1104 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
1105
Paul Bakker5121ce52009-01-03 21:22:43 +00001106 siglen = ctx->len;
1107
Paul Bakker27fdf462011-06-09 13:55:13 +00001108 if( siglen < 16 || siglen > sizeof( buf ) )
Paul Bakker40e46942009-01-03 21:51:57 +00001109 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
Paul Bakker5121ce52009-01-03 21:22:43 +00001110
1111 ret = ( mode == RSA_PUBLIC )
1112 ? rsa_public( ctx, sig, buf )
Paul Bakker43f97992013-09-23 11:23:31 +02001113 : rsa_private( ctx, f_rng, p_rng, sig, buf );
Paul Bakker5121ce52009-01-03 21:22:43 +00001114
1115 if( ret != 0 )
1116 return( ret );
1117
1118 p = buf;
1119
Paul Bakkerb3869132013-02-28 17:21:01 +01001120 if( buf[siglen - 1] != 0xBC )
1121 return( POLARSSL_ERR_RSA_INVALID_PADDING );
1122
1123 switch( hash_id )
Paul Bakker5121ce52009-01-03 21:22:43 +00001124 {
Paul Bakkerb3869132013-02-28 17:21:01 +01001125 case SIG_RSA_MD2:
1126 case SIG_RSA_MD4:
1127 case SIG_RSA_MD5:
1128 hashlen = 16;
Paul Bakker5121ce52009-01-03 21:22:43 +00001129 break;
1130
Paul Bakkerb3869132013-02-28 17:21:01 +01001131 case SIG_RSA_SHA1:
1132 hashlen = 20;
1133 break;
Paul Bakker9dcc3222011-03-08 14:16:06 +00001134
Paul Bakkerb3869132013-02-28 17:21:01 +01001135 case SIG_RSA_SHA224:
1136 hashlen = 28;
1137 break;
Paul Bakker9dcc3222011-03-08 14:16:06 +00001138
Paul Bakkerb3869132013-02-28 17:21:01 +01001139 case SIG_RSA_SHA256:
1140 hashlen = 32;
1141 break;
Paul Bakker9dcc3222011-03-08 14:16:06 +00001142
Paul Bakkerb3869132013-02-28 17:21:01 +01001143 case SIG_RSA_SHA384:
1144 hashlen = 48;
1145 break;
Paul Bakker9dcc3222011-03-08 14:16:06 +00001146
Paul Bakkerb3869132013-02-28 17:21:01 +01001147 case SIG_RSA_SHA512:
1148 hashlen = 64;
1149 break;
Paul Bakker9dcc3222011-03-08 14:16:06 +00001150
Paul Bakkerb3869132013-02-28 17:21:01 +01001151 default:
1152 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
1153 }
Paul Bakker9dcc3222011-03-08 14:16:06 +00001154
Paul Bakkerb3869132013-02-28 17:21:01 +01001155 md_info = md_info_from_type( ctx->hash_id );
1156 if( md_info == NULL )
1157 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
Paul Bakker9dcc3222011-03-08 14:16:06 +00001158
Paul Bakkerb3869132013-02-28 17:21:01 +01001159 hlen = md_get_size( md_info );
1160 slen = siglen - hlen - 1;
Paul Bakker9dcc3222011-03-08 14:16:06 +00001161
Paul Bakkerb3869132013-02-28 17:21:01 +01001162 memset( zeros, 0, 8 );
Paul Bakker53019ae2011-03-25 13:58:48 +00001163
Paul Bakkerb3869132013-02-28 17:21:01 +01001164 // Note: EMSA-PSS verification is over the length of N - 1 bits
1165 //
1166 msb = mpi_msb( &ctx->N ) - 1;
Paul Bakker9dcc3222011-03-08 14:16:06 +00001167
Paul Bakkerb3869132013-02-28 17:21:01 +01001168 // Compensate for boundary condition when applying mask
1169 //
1170 if( msb % 8 == 0 )
1171 {
1172 p++;
1173 siglen -= 1;
1174 }
1175 if( buf[0] >> ( 8 - siglen * 8 + msb ) )
1176 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
Paul Bakker9dcc3222011-03-08 14:16:06 +00001177
Paul Bakkerb3869132013-02-28 17:21:01 +01001178 md_init_ctx( &md_ctx, md_info );
Paul Bakker9dcc3222011-03-08 14:16:06 +00001179
Paul Bakkerb3869132013-02-28 17:21:01 +01001180 mgf_mask( p, siglen - hlen - 1, p + siglen - hlen - 1, hlen, &md_ctx );
Paul Bakker02303e82013-01-03 11:08:31 +01001181
Paul Bakkerb3869132013-02-28 17:21:01 +01001182 buf[0] &= 0xFF >> ( siglen * 8 - msb );
Paul Bakker9dcc3222011-03-08 14:16:06 +00001183
Paul Bakkerb3869132013-02-28 17:21:01 +01001184 while( *p == 0 && p < buf + siglen )
1185 p++;
Paul Bakker9dcc3222011-03-08 14:16:06 +00001186
Paul Bakkerb3869132013-02-28 17:21:01 +01001187 if( p == buf + siglen ||
1188 *p++ != 0x01 )
1189 {
1190 md_free_ctx( &md_ctx );
1191 return( POLARSSL_ERR_RSA_INVALID_PADDING );
1192 }
Paul Bakker9dcc3222011-03-08 14:16:06 +00001193
Paul Bakkerb3869132013-02-28 17:21:01 +01001194 slen -= p - buf;
Paul Bakker9dcc3222011-03-08 14:16:06 +00001195
Paul Bakkerb3869132013-02-28 17:21:01 +01001196 // Generate H = Hash( M' )
1197 //
1198 md_starts( &md_ctx );
1199 md_update( &md_ctx, zeros, 8 );
1200 md_update( &md_ctx, hash, hashlen );
1201 md_update( &md_ctx, p, slen );
1202 md_finish( &md_ctx, result );
Paul Bakker53019ae2011-03-25 13:58:48 +00001203
Paul Bakkerb3869132013-02-28 17:21:01 +01001204 md_free_ctx( &md_ctx );
Paul Bakker9dcc3222011-03-08 14:16:06 +00001205
Paul Bakkerb3869132013-02-28 17:21:01 +01001206 if( memcmp( p + slen, result, hlen ) == 0 )
1207 return( 0 );
1208 else
1209 return( POLARSSL_ERR_RSA_VERIFY_FAILED );
1210}
1211#endif /* POLARSSL_PKCS1_V21 */
Paul Bakker40628ba2013-01-03 10:50:31 +01001212
Paul Bakkerb3869132013-02-28 17:21:01 +01001213/*
1214 * Implementation of the PKCS#1 v2.1 RSASSA-PKCS1-v1_5-VERIFY function
1215 */
1216int rsa_rsassa_pkcs1_v15_verify( rsa_context *ctx,
Paul Bakker43f97992013-09-23 11:23:31 +02001217 int (*f_rng)(void *, unsigned char *, size_t),
1218 void *p_rng,
Paul Bakkerb3869132013-02-28 17:21:01 +01001219 int mode,
1220 int hash_id,
1221 unsigned int hashlen,
1222 const unsigned char *hash,
1223 unsigned char *sig )
1224{
1225 int ret;
1226 size_t len, siglen;
1227 unsigned char *p, c;
1228 unsigned char buf[POLARSSL_MPI_MAX_SIZE];
1229
1230 if( ctx->padding != RSA_PKCS_V15 )
1231 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
1232
1233 siglen = ctx->len;
1234
1235 if( siglen < 16 || siglen > sizeof( buf ) )
1236 return( POLARSSL_ERR_RSA_BAD_INPUT_DATA );
1237
1238 ret = ( mode == RSA_PUBLIC )
1239 ? rsa_public( ctx, sig, buf )
Paul Bakker43f97992013-09-23 11:23:31 +02001240 : rsa_private( ctx, f_rng, p_rng, sig, buf );
Paul Bakkerb3869132013-02-28 17:21:01 +01001241
1242 if( ret != 0 )
1243 return( ret );
1244
1245 p = buf;
1246
1247 if( *p++ != 0 || *p++ != RSA_SIGN )
1248 return( POLARSSL_ERR_RSA_INVALID_PADDING );
1249
1250 while( *p != 0 )
1251 {
1252 if( p >= buf + siglen - 1 || *p != 0xFF )
1253 return( POLARSSL_ERR_RSA_INVALID_PADDING );
1254 p++;
1255 }
1256 p++;
1257
1258 len = siglen - ( p - buf );
1259
1260 if( len == 33 && hash_id == SIG_RSA_SHA1 )
1261 {
1262 if( memcmp( p, ASN1_HASH_SHA1_ALT, 13 ) == 0 &&
1263 memcmp( p + 13, hash, 20 ) == 0 )
1264 return( 0 );
1265 else
1266 return( POLARSSL_ERR_RSA_VERIFY_FAILED );
1267 }
1268 if( len == 34 )
1269 {
1270 c = p[13];
1271 p[13] = 0;
1272
1273 if( memcmp( p, ASN1_HASH_MDX, 18 ) != 0 )
1274 return( POLARSSL_ERR_RSA_VERIFY_FAILED );
1275
1276 if( ( c == 2 && hash_id == SIG_RSA_MD2 ) ||
1277 ( c == 4 && hash_id == SIG_RSA_MD4 ) ||
1278 ( c == 5 && hash_id == SIG_RSA_MD5 ) )
1279 {
1280 if( memcmp( p + 18, hash, 16 ) == 0 )
Paul Bakker9dcc3222011-03-08 14:16:06 +00001281 return( 0 );
1282 else
1283 return( POLARSSL_ERR_RSA_VERIFY_FAILED );
Paul Bakkerb3869132013-02-28 17:21:01 +01001284 }
1285 }
Paul Bakker9dcc3222011-03-08 14:16:06 +00001286
Paul Bakkerb3869132013-02-28 17:21:01 +01001287 if( len == 35 && hash_id == SIG_RSA_SHA1 )
1288 {
1289 if( memcmp( p, ASN1_HASH_SHA1, 15 ) == 0 &&
1290 memcmp( p + 15, hash, 20 ) == 0 )
1291 return( 0 );
1292 else
1293 return( POLARSSL_ERR_RSA_VERIFY_FAILED );
1294 }
1295 if( ( len == 19 + 28 && p[14] == 4 && hash_id == SIG_RSA_SHA224 ) ||
1296 ( len == 19 + 32 && p[14] == 1 && hash_id == SIG_RSA_SHA256 ) ||
1297 ( len == 19 + 48 && p[14] == 2 && hash_id == SIG_RSA_SHA384 ) ||
1298 ( len == 19 + 64 && p[14] == 3 && hash_id == SIG_RSA_SHA512 ) )
1299 {
1300 c = p[1] - 17;
1301 p[1] = 17;
1302 p[14] = 0;
Paul Bakker5121ce52009-01-03 21:22:43 +00001303
Paul Bakkerb3869132013-02-28 17:21:01 +01001304 if( p[18] == c &&
1305 memcmp( p, ASN1_HASH_SHA2X, 18 ) == 0 &&
1306 memcmp( p + 19, hash, c ) == 0 )
1307 return( 0 );
1308 else
1309 return( POLARSSL_ERR_RSA_VERIFY_FAILED );
1310 }
1311
1312 if( len == hashlen && hash_id == SIG_RSA_RAW )
1313 {
1314 if( memcmp( p, hash, hashlen ) == 0 )
1315 return( 0 );
1316 else
1317 return( POLARSSL_ERR_RSA_VERIFY_FAILED );
Paul Bakker5121ce52009-01-03 21:22:43 +00001318 }
1319
Paul Bakker40e46942009-01-03 21:51:57 +00001320 return( POLARSSL_ERR_RSA_INVALID_PADDING );
Paul Bakker5121ce52009-01-03 21:22:43 +00001321}
1322
1323/*
Paul Bakkerb3869132013-02-28 17:21:01 +01001324 * Do an RSA operation and check the message digest
1325 */
1326int rsa_pkcs1_verify( rsa_context *ctx,
Paul Bakker43f97992013-09-23 11:23:31 +02001327 int (*f_rng)(void *, unsigned char *, size_t),
1328 void *p_rng,
Paul Bakkerb3869132013-02-28 17:21:01 +01001329 int mode,
1330 int hash_id,
1331 unsigned int hashlen,
1332 const unsigned char *hash,
1333 unsigned char *sig )
1334{
1335 switch( ctx->padding )
1336 {
1337 case RSA_PKCS_V15:
Paul Bakker43f97992013-09-23 11:23:31 +02001338 return rsa_rsassa_pkcs1_v15_verify( ctx, f_rng, p_rng, mode,
1339 hash_id, hashlen, hash, sig );
Paul Bakkerb3869132013-02-28 17:21:01 +01001340
1341#if defined(POLARSSL_PKCS1_V21)
1342 case RSA_PKCS_V21:
Paul Bakker43f97992013-09-23 11:23:31 +02001343 return rsa_rsassa_pss_verify( ctx, f_rng, p_rng, mode, hash_id,
Paul Bakkerb3869132013-02-28 17:21:01 +01001344 hashlen, hash, sig );
1345#endif
1346
1347 default:
1348 return( POLARSSL_ERR_RSA_INVALID_PADDING );
1349 }
1350}
1351
1352/*
Paul Bakker5121ce52009-01-03 21:22:43 +00001353 * Free the components of an RSA key
1354 */
1355void rsa_free( rsa_context *ctx )
1356{
Paul Bakker2f1481e2013-10-04 13:54:01 +02001357#if !defined(POLARSSL_RSA_NO_CRT)
Paul Bakker62087ee2013-10-04 10:56:03 +02001358 mpi_free( &ctx->Vi ); mpi_free( &ctx->Vf );
Paul Bakker2f1481e2013-10-04 13:54:01 +02001359#endif
Paul Bakker6c591fa2011-05-05 11:49:20 +00001360 mpi_free( &ctx->RQ ); mpi_free( &ctx->RP ); mpi_free( &ctx->RN );
1361 mpi_free( &ctx->QP ); mpi_free( &ctx->DQ ); mpi_free( &ctx->DP );
1362 mpi_free( &ctx->Q ); mpi_free( &ctx->P ); mpi_free( &ctx->D );
1363 mpi_free( &ctx->E ); mpi_free( &ctx->N );
Paul Bakker5121ce52009-01-03 21:22:43 +00001364}
1365
Paul Bakker40e46942009-01-03 21:51:57 +00001366#if defined(POLARSSL_SELF_TEST)
Paul Bakker5121ce52009-01-03 21:22:43 +00001367
Paul Bakker40e46942009-01-03 21:51:57 +00001368#include "polarssl/sha1.h"
Paul Bakker5121ce52009-01-03 21:22:43 +00001369
1370/*
1371 * Example RSA-1024 keypair, for test purposes
1372 */
1373#define KEY_LEN 128
1374
1375#define RSA_N "9292758453063D803DD603D5E777D788" \
1376 "8ED1D5BF35786190FA2F23EBC0848AEA" \
1377 "DDA92CA6C3D80B32C4D109BE0F36D6AE" \
1378 "7130B9CED7ACDF54CFC7555AC14EEBAB" \
1379 "93A89813FBF3C4F8066D2D800F7C38A8" \
1380 "1AE31942917403FF4946B0A83D3D3E05" \
1381 "EE57C6F5F5606FB5D4BC6CD34EE0801A" \
1382 "5E94BB77B07507233A0BC7BAC8F90F79"
1383
1384#define RSA_E "10001"
1385
1386#define RSA_D "24BF6185468786FDD303083D25E64EFC" \
1387 "66CA472BC44D253102F8B4A9D3BFA750" \
1388 "91386C0077937FE33FA3252D28855837" \
1389 "AE1B484A8A9A45F7EE8C0C634F99E8CD" \
1390 "DF79C5CE07EE72C7F123142198164234" \
1391 "CABB724CF78B8173B9F880FC86322407" \
1392 "AF1FEDFDDE2BEB674CA15F3E81A1521E" \
1393 "071513A1E85B5DFA031F21ECAE91A34D"
1394
1395#define RSA_P "C36D0EB7FCD285223CFB5AABA5BDA3D8" \
1396 "2C01CAD19EA484A87EA4377637E75500" \
1397 "FCB2005C5C7DD6EC4AC023CDA285D796" \
1398 "C3D9E75E1EFC42488BB4F1D13AC30A57"
1399
1400#define RSA_Q "C000DF51A7C77AE8D7C7370C1FF55B69" \
1401 "E211C2B9E5DB1ED0BF61D0D9899620F4" \
1402 "910E4168387E3C30AA1E00C339A79508" \
1403 "8452DD96A9A5EA5D9DCA68DA636032AF"
1404
1405#define RSA_DP "C1ACF567564274FB07A0BBAD5D26E298" \
1406 "3C94D22288ACD763FD8E5600ED4A702D" \
1407 "F84198A5F06C2E72236AE490C93F07F8" \
1408 "3CC559CD27BC2D1CA488811730BB5725"
1409
1410#define RSA_DQ "4959CBF6F8FEF750AEE6977C155579C7" \
1411 "D8AAEA56749EA28623272E4F7D0592AF" \
1412 "7C1F1313CAC9471B5C523BFE592F517B" \
1413 "407A1BD76C164B93DA2D32A383E58357"
1414
1415#define RSA_QP "9AE7FBC99546432DF71896FC239EADAE" \
1416 "F38D18D2B2F0E2DD275AA977E2BF4411" \
1417 "F5A3B2A5D33605AEBBCCBA7FEB9F2D2F" \
1418 "A74206CEC169D74BF5A8C50D6F48EA08"
1419
1420#define PT_LEN 24
1421#define RSA_PT "\xAA\xBB\xCC\x03\x02\x01\x00\xFF\xFF\xFF\xFF\xFF" \
1422 "\x11\x22\x33\x0A\x0B\x0C\xCC\xDD\xDD\xDD\xDD\xDD"
1423
Paul Bakkera3d195c2011-11-27 21:07:34 +00001424static int myrand( void *rng_state, unsigned char *output, size_t len )
Paul Bakker545570e2010-07-18 09:00:25 +00001425{
Paul Bakkera3d195c2011-11-27 21:07:34 +00001426 size_t i;
1427
Paul Bakker545570e2010-07-18 09:00:25 +00001428 if( rng_state != NULL )
1429 rng_state = NULL;
1430
Paul Bakkera3d195c2011-11-27 21:07:34 +00001431 for( i = 0; i < len; ++i )
1432 output[i] = rand();
Paul Bakker43f97992013-09-23 11:23:31 +02001433
Paul Bakkera3d195c2011-11-27 21:07:34 +00001434 return( 0 );
Paul Bakker545570e2010-07-18 09:00:25 +00001435}
1436
Paul Bakker5121ce52009-01-03 21:22:43 +00001437/*
1438 * Checkup routine
1439 */
1440int rsa_self_test( int verbose )
1441{
Paul Bakker23986e52011-04-24 08:57:21 +00001442 size_t len;
Paul Bakker5121ce52009-01-03 21:22:43 +00001443 rsa_context rsa;
Paul Bakker5121ce52009-01-03 21:22:43 +00001444 unsigned char rsa_plaintext[PT_LEN];
1445 unsigned char rsa_decrypted[PT_LEN];
1446 unsigned char rsa_ciphertext[KEY_LEN];
Paul Bakker5690efc2011-05-26 13:16:06 +00001447#if defined(POLARSSL_SHA1_C)
1448 unsigned char sha1sum[20];
1449#endif
Paul Bakker5121ce52009-01-03 21:22:43 +00001450
Paul Bakker21eb2802010-08-16 11:10:02 +00001451 rsa_init( &rsa, RSA_PKCS_V15, 0 );
Paul Bakker5121ce52009-01-03 21:22:43 +00001452
1453 rsa.len = KEY_LEN;
1454 mpi_read_string( &rsa.N , 16, RSA_N );
1455 mpi_read_string( &rsa.E , 16, RSA_E );
1456 mpi_read_string( &rsa.D , 16, RSA_D );
1457 mpi_read_string( &rsa.P , 16, RSA_P );
1458 mpi_read_string( &rsa.Q , 16, RSA_Q );
1459 mpi_read_string( &rsa.DP, 16, RSA_DP );
1460 mpi_read_string( &rsa.DQ, 16, RSA_DQ );
1461 mpi_read_string( &rsa.QP, 16, RSA_QP );
1462
1463 if( verbose != 0 )
1464 printf( " RSA key validation: " );
1465
1466 if( rsa_check_pubkey( &rsa ) != 0 ||
1467 rsa_check_privkey( &rsa ) != 0 )
1468 {
1469 if( verbose != 0 )
1470 printf( "failed\n" );
1471
1472 return( 1 );
1473 }
1474
1475 if( verbose != 0 )
1476 printf( "passed\n PKCS#1 encryption : " );
1477
1478 memcpy( rsa_plaintext, RSA_PT, PT_LEN );
1479
Paul Bakker21eb2802010-08-16 11:10:02 +00001480 if( rsa_pkcs1_encrypt( &rsa, &myrand, NULL, RSA_PUBLIC, PT_LEN,
Paul Bakker5121ce52009-01-03 21:22:43 +00001481 rsa_plaintext, rsa_ciphertext ) != 0 )
1482 {
1483 if( verbose != 0 )
1484 printf( "failed\n" );
1485
1486 return( 1 );
1487 }
1488
1489 if( verbose != 0 )
1490 printf( "passed\n PKCS#1 decryption : " );
1491
Paul Bakker43f97992013-09-23 11:23:31 +02001492 if( rsa_pkcs1_decrypt( &rsa, &myrand, NULL, RSA_PRIVATE, &len,
Paul Bakker060c5682009-01-12 21:48:39 +00001493 rsa_ciphertext, rsa_decrypted,
Paul Bakker23986e52011-04-24 08:57:21 +00001494 sizeof(rsa_decrypted) ) != 0 )
Paul Bakker5121ce52009-01-03 21:22:43 +00001495 {
1496 if( verbose != 0 )
1497 printf( "failed\n" );
1498
1499 return( 1 );
1500 }
1501
1502 if( memcmp( rsa_decrypted, rsa_plaintext, len ) != 0 )
1503 {
1504 if( verbose != 0 )
1505 printf( "failed\n" );
1506
1507 return( 1 );
1508 }
1509
Paul Bakker5690efc2011-05-26 13:16:06 +00001510#if defined(POLARSSL_SHA1_C)
Paul Bakker5121ce52009-01-03 21:22:43 +00001511 if( verbose != 0 )
1512 printf( "passed\n PKCS#1 data sign : " );
1513
1514 sha1( rsa_plaintext, PT_LEN, sha1sum );
1515
Paul Bakker43f97992013-09-23 11:23:31 +02001516 if( rsa_pkcs1_sign( &rsa, &myrand, NULL, RSA_PRIVATE, SIG_RSA_SHA1, 20,
Paul Bakker5121ce52009-01-03 21:22:43 +00001517 sha1sum, rsa_ciphertext ) != 0 )
1518 {
1519 if( verbose != 0 )
1520 printf( "failed\n" );
1521
1522 return( 1 );
1523 }
1524
1525 if( verbose != 0 )
1526 printf( "passed\n PKCS#1 sig. verify: " );
1527
Paul Bakker43f97992013-09-23 11:23:31 +02001528 if( rsa_pkcs1_verify( &rsa, &myrand, NULL, RSA_PUBLIC, SIG_RSA_SHA1, 20,
Paul Bakker5121ce52009-01-03 21:22:43 +00001529 sha1sum, rsa_ciphertext ) != 0 )
1530 {
1531 if( verbose != 0 )
1532 printf( "failed\n" );
1533
1534 return( 1 );
1535 }
1536
1537 if( verbose != 0 )
1538 printf( "passed\n\n" );
Paul Bakker5690efc2011-05-26 13:16:06 +00001539#endif /* POLARSSL_SHA1_C */
Paul Bakker5121ce52009-01-03 21:22:43 +00001540
1541 rsa_free( &rsa );
1542
1543 return( 0 );
1544}
1545
1546#endif
1547
1548#endif