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Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +01001/*
Manuel Pégourié-Gonnard32b04c12013-12-02 15:49:09 +01002 * Elliptic curves over GF(p): generic functions
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +01003 *
Manuel Pégourié-Gonnarda658a402015-01-23 09:45:19 +00004 * Copyright (C) 2006-2014, ARM Limited, All Rights Reserved
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +01005 *
Manuel Pégourié-Gonnardfe446432015-03-06 13:17:10 +00006 * This file is part of mbed TLS (https://tls.mbed.org)
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +01007 *
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +01008 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License along
19 * with this program; if not, write to the Free Software Foundation, Inc.,
20 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
21 */
22
23/*
24 * References:
25 *
Manuel Pégourié-Gonnard883f3132012-11-02 09:40:25 +010026 * SEC1 http://www.secg.org/index.php?action=secg,docs_secg
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +010027 * GECC = Guide to Elliptic Curve Cryptography - Hankerson, Menezes, Vanstone
Manuel Pégourié-Gonnard62aad142012-11-10 00:27:12 +010028 * FIPS 186-3 http://csrc.nist.gov/publications/fips/fips186-3/fips_186-3.pdf
Manuel Pégourié-Gonnard1a967282013-02-09 17:03:58 +010029 * RFC 4492 for the related TLS structures and constants
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +020030 *
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +010031 * [M255] http://cr.yp.to/ecdh/curve25519-20060209.pdf
32 *
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +020033 * [2] CORON, Jean-Sébastien. Resistance against differential power analysis
34 * for elliptic curve cryptosystems. In : Cryptographic Hardware and
35 * Embedded Systems. Springer Berlin Heidelberg, 1999. p. 292-302.
36 * <http://link.springer.com/chapter/10.1007/3-540-48059-5_25>
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +010037 *
38 * [3] HEDABOU, Mustapha, PINEL, Pierre, et BÉNÉTEAU, Lucien. A comb method to
39 * render ECC resistant against Side Channel Attacks. IACR Cryptology
40 * ePrint Archive, 2004, vol. 2004, p. 342.
41 * <http://eprint.iacr.org/2004/342.pdf>
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +010042 */
43
Manuel Pégourié-Gonnardcef4ad22014-04-29 12:39:06 +020044#if !defined(POLARSSL_CONFIG_FILE)
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +010045#include "polarssl/config.h"
Manuel Pégourié-Gonnardcef4ad22014-04-29 12:39:06 +020046#else
47#include POLARSSL_CONFIG_FILE
48#endif
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +010049
50#if defined(POLARSSL_ECP_C)
51
52#include "polarssl/ecp.h"
Paul Bakker6e339b52013-07-03 13:37:05 +020053
Rich Evans00ab4702015-02-06 13:43:58 +000054#include <string.h>
55
Paul Bakker7dc4c442014-02-01 22:50:26 +010056#if defined(POLARSSL_PLATFORM_C)
57#include "polarssl/platform.h"
Paul Bakker6e339b52013-07-03 13:37:05 +020058#else
Rich Evans00ab4702015-02-06 13:43:58 +000059#include <stdlib.h>
Manuel Pégourié-Gonnard981732b2015-02-17 15:46:45 +000060#include <stdio.h>
Paul Bakker7dc4c442014-02-01 22:50:26 +010061#define polarssl_printf printf
Paul Bakker6e339b52013-07-03 13:37:05 +020062#define polarssl_malloc malloc
63#define polarssl_free free
64#endif
65
Manuel Pégourié-Gonnard0267e3d2013-11-30 15:10:14 +010066#if defined(_MSC_VER) && !defined strcasecmp && !defined(EFIX64) && \
67 !defined(EFI32)
68#define strcasecmp _stricmp
69#endif
70
Manuel Pégourié-Gonnard20607bb2015-10-05 11:40:01 +010071#if ( defined(__ARMCC_VERSION) || defined(_MSC_VER) ) && \
72 !defined(inline) && !defined(__cplusplus)
Paul Bakker6a6087e2013-10-28 18:53:08 +010073#define inline __inline
Manuel Pégourié-Gonnard20607bb2015-10-05 11:40:01 +010074#endif
Paul Bakker6a6087e2013-10-28 18:53:08 +010075
Paul Bakker34617722014-06-13 17:20:13 +020076/* Implementation that should never be optimized out by the compiler */
77static void polarssl_zeroize( void *v, size_t n ) {
78 volatile unsigned char *p = v; while( n-- ) *p++ = 0;
79}
80
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +010081#if defined(POLARSSL_SELF_TEST)
82/*
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +010083 * Counts of point addition and doubling, and field multiplications.
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +020084 * Used to test resistance of point multiplication to simple timing attacks.
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +010085 */
Manuel Pégourié-Gonnard43863ee2013-12-01 16:51:27 +010086static unsigned long add_count, dbl_count, mul_count;
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +010087#endif
88
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +010089#if defined(POLARSSL_ECP_DP_SECP192R1_ENABLED) || \
90 defined(POLARSSL_ECP_DP_SECP224R1_ENABLED) || \
91 defined(POLARSSL_ECP_DP_SECP256R1_ENABLED) || \
92 defined(POLARSSL_ECP_DP_SECP384R1_ENABLED) || \
93 defined(POLARSSL_ECP_DP_SECP521R1_ENABLED) || \
94 defined(POLARSSL_ECP_DP_BP256R1_ENABLED) || \
95 defined(POLARSSL_ECP_DP_BP384R1_ENABLED) || \
Manuel Pégourié-Gonnard2a2ae642014-02-24 08:29:51 +010096 defined(POLARSSL_ECP_DP_BP512R1_ENABLED) || \
97 defined(POLARSSL_ECP_DP_SECP192K1_ENABLED) || \
98 defined(POLARSSL_ECP_DP_SECP224K1_ENABLED) || \
99 defined(POLARSSL_ECP_DP_SECP256K1_ENABLED)
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +0100100#define POLARSSL_ECP_SHORT_WEIERSTRASS
101#endif
102
103#if defined(POLARSSL_ECP_DP_M221_ENABLED) || \
104 defined(POLARSSL_ECP_DP_M255_ENABLED) || \
105 defined(POLARSSL_ECP_DP_M383_ENABLED) || \
106 defined(POLARSSL_ECP_DP_M511_ENABLED)
107#define POLARSSL_ECP_MONTGOMERY
108#endif
109
110/*
111 * Curve types: internal for now, might be exposed later
112 */
113typedef enum
114{
115 POLARSSL_ECP_TYPE_NONE = 0,
116 POLARSSL_ECP_TYPE_SHORT_WEIERSTRASS, /* y^2 = x^3 + a x + b */
117 POLARSSL_ECP_TYPE_MONTGOMERY, /* y^2 = x^3 + a x^2 + x */
118} ecp_curve_type;
119
Manuel Pégourié-Gonnard1e8c8ec2012-10-31 19:24:21 +0100120/*
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200121 * List of supported curves:
122 * - internal ID
Manuel Pégourié-Gonnard8195c1a2013-10-07 19:40:41 +0200123 * - TLS NamedCurve ID (RFC 4492 sec. 5.1.1, RFC 7071 sec. 2)
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200124 * - size in bits
Manuel Pégourié-Gonnard8195c1a2013-10-07 19:40:41 +0200125 * - readable name
Gergely Budaie40c4692014-01-22 11:22:20 +0100126 *
Manuel Pégourié-Gonnardac719412014-02-04 14:48:50 +0100127 * Curves are listed in order: largest curves first, and for a given size,
128 * fastest curves first. This provides the default order for the SSL module.
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200129 */
Manuel Pégourié-Gonnardba782bb2014-07-08 13:31:34 +0200130static const ecp_curve_info ecp_supported_curves[] =
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200131{
132#if defined(POLARSSL_ECP_DP_SECP521R1_ENABLED)
Manuel Pégourié-Gonnard8195c1a2013-10-07 19:40:41 +0200133 { POLARSSL_ECP_DP_SECP521R1, 25, 521, "secp521r1" },
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200134#endif
Gergely Budaie40c4692014-01-22 11:22:20 +0100135#if defined(POLARSSL_ECP_DP_BP512R1_ENABLED)
136 { POLARSSL_ECP_DP_BP512R1, 28, 512, "brainpoolP512r1" },
137#endif
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200138#if defined(POLARSSL_ECP_DP_SECP384R1_ENABLED)
Manuel Pégourié-Gonnard8195c1a2013-10-07 19:40:41 +0200139 { POLARSSL_ECP_DP_SECP384R1, 24, 384, "secp384r1" },
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200140#endif
Gergely Budaie40c4692014-01-22 11:22:20 +0100141#if defined(POLARSSL_ECP_DP_BP384R1_ENABLED)
142 { POLARSSL_ECP_DP_BP384R1, 27, 384, "brainpoolP384r1" },
143#endif
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200144#if defined(POLARSSL_ECP_DP_SECP256R1_ENABLED)
Manuel Pégourié-Gonnard8195c1a2013-10-07 19:40:41 +0200145 { POLARSSL_ECP_DP_SECP256R1, 23, 256, "secp256r1" },
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200146#endif
Manuel Pégourié-Gonnardac719412014-02-04 14:48:50 +0100147#if defined(POLARSSL_ECP_DP_SECP256K1_ENABLED)
148 { POLARSSL_ECP_DP_SECP256K1, 22, 256, "secp256k1" },
149#endif
Gergely Budaie40c4692014-01-22 11:22:20 +0100150#if defined(POLARSSL_ECP_DP_BP256R1_ENABLED)
151 { POLARSSL_ECP_DP_BP256R1, 26, 256, "brainpoolP256r1" },
152#endif
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200153#if defined(POLARSSL_ECP_DP_SECP224R1_ENABLED)
Manuel Pégourié-Gonnard8195c1a2013-10-07 19:40:41 +0200154 { POLARSSL_ECP_DP_SECP224R1, 21, 224, "secp224r1" },
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200155#endif
Manuel Pégourié-Gonnard9bcff392014-01-10 18:26:48 +0100156#if defined(POLARSSL_ECP_DP_SECP224K1_ENABLED)
157 { POLARSSL_ECP_DP_SECP224K1, 20, 224, "secp224k1" },
158#endif
Manuel Pégourié-Gonnardac719412014-02-04 14:48:50 +0100159#if defined(POLARSSL_ECP_DP_SECP192R1_ENABLED)
160 { POLARSSL_ECP_DP_SECP192R1, 19, 192, "secp192r1" },
161#endif
Manuel Pégourié-Gonnard9bcff392014-01-10 18:26:48 +0100162#if defined(POLARSSL_ECP_DP_SECP192K1_ENABLED)
163 { POLARSSL_ECP_DP_SECP192K1, 18, 192, "secp192k1" },
164#endif
Manuel Pégourié-Gonnard8195c1a2013-10-07 19:40:41 +0200165 { POLARSSL_ECP_DP_NONE, 0, 0, NULL },
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200166};
Manuel Pégourié-Gonnardac719412014-02-04 14:48:50 +0100167
Manuel Pégourié-Gonnardba782bb2014-07-08 13:31:34 +0200168#define ECP_NB_CURVES sizeof( ecp_supported_curves ) / \
169 sizeof( ecp_supported_curves[0] )
170
171static ecp_group_id ecp_supported_grp_id[ECP_NB_CURVES];
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200172
173/*
Manuel Pégourié-Gonnardda179e42013-09-18 15:31:24 +0200174 * List of supported curves and associated info
175 */
176const ecp_curve_info *ecp_curve_list( void )
177{
Paul Bakkerd8bb8262014-06-17 14:06:49 +0200178 return( ecp_supported_curves );
Manuel Pégourié-Gonnardda179e42013-09-18 15:31:24 +0200179}
180
181/*
Manuel Pégourié-Gonnardac719412014-02-04 14:48:50 +0100182 * List of supported curves, group ID only
183 */
184const ecp_group_id *ecp_grp_id_list( void )
185{
186 static int init_done = 0;
187
188 if( ! init_done )
189 {
190 size_t i = 0;
191 const ecp_curve_info *curve_info;
192
193 for( curve_info = ecp_curve_list();
194 curve_info->grp_id != POLARSSL_ECP_DP_NONE;
195 curve_info++ )
196 {
197 ecp_supported_grp_id[i++] = curve_info->grp_id;
198 }
199 ecp_supported_grp_id[i] = POLARSSL_ECP_DP_NONE;
200
201 init_done = 1;
202 }
203
Paul Bakkerd8bb8262014-06-17 14:06:49 +0200204 return( ecp_supported_grp_id );
Manuel Pégourié-Gonnardac719412014-02-04 14:48:50 +0100205}
206
207/*
208 * Get the curve info for the internal identifier
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200209 */
210const ecp_curve_info *ecp_curve_info_from_grp_id( ecp_group_id grp_id )
211{
212 const ecp_curve_info *curve_info;
213
214 for( curve_info = ecp_curve_list();
215 curve_info->grp_id != POLARSSL_ECP_DP_NONE;
216 curve_info++ )
217 {
218 if( curve_info->grp_id == grp_id )
219 return( curve_info );
220 }
221
222 return( NULL );
223}
224
225/*
226 * Get the curve info from the TLS identifier
227 */
228const ecp_curve_info *ecp_curve_info_from_tls_id( uint16_t tls_id )
229{
230 const ecp_curve_info *curve_info;
231
232 for( curve_info = ecp_curve_list();
233 curve_info->grp_id != POLARSSL_ECP_DP_NONE;
234 curve_info++ )
235 {
236 if( curve_info->tls_id == tls_id )
237 return( curve_info );
238 }
239
240 return( NULL );
241}
242
243/*
Manuel Pégourié-Gonnard0267e3d2013-11-30 15:10:14 +0100244 * Get the curve info from the name
245 */
246const ecp_curve_info *ecp_curve_info_from_name( const char *name )
247{
248 const ecp_curve_info *curve_info;
249
250 for( curve_info = ecp_curve_list();
251 curve_info->grp_id != POLARSSL_ECP_DP_NONE;
252 curve_info++ )
253 {
254 if( strcasecmp( curve_info->name, name ) == 0 )
255 return( curve_info );
256 }
257
258 return( NULL );
259}
260
261/*
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +0100262 * Get the type of a curve
Manuel Pégourié-Gonnard312d2e82013-12-04 11:08:01 +0100263 */
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +0100264static inline ecp_curve_type ecp_get_type( const ecp_group *grp )
Manuel Pégourié-Gonnard312d2e82013-12-04 11:08:01 +0100265{
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +0100266 if( grp->G.X.p == NULL )
267 return( POLARSSL_ECP_TYPE_NONE );
268
269 if( grp->G.Y.p == NULL )
270 return( POLARSSL_ECP_TYPE_MONTGOMERY );
271 else
272 return( POLARSSL_ECP_TYPE_SHORT_WEIERSTRASS );
Manuel Pégourié-Gonnard312d2e82013-12-04 11:08:01 +0100273}
274
275/*
Manuel Pégourié-Gonnardb505c272012-11-05 17:27:54 +0100276 * Initialize (the components of) a point
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +0100277 */
278void ecp_point_init( ecp_point *pt )
279{
280 if( pt == NULL )
281 return;
282
Manuel Pégourié-Gonnardb505c272012-11-05 17:27:54 +0100283 mpi_init( &pt->X );
284 mpi_init( &pt->Y );
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100285 mpi_init( &pt->Z );
Manuel Pégourié-Gonnardb505c272012-11-05 17:27:54 +0100286}
287
288/*
289 * Initialize (the components of) a group
290 */
291void ecp_group_init( ecp_group *grp )
292{
293 if( grp == NULL )
294 return;
295
Manuel Pégourié-Gonnardc9727702013-09-16 18:56:28 +0200296 memset( grp, 0, sizeof( ecp_group ) );
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +0100297}
298
299/*
Manuel Pégourié-Gonnardb8c6e0e2013-07-01 13:40:52 +0200300 * Initialize (the components of) a key pair
301 */
302void ecp_keypair_init( ecp_keypair *key )
303{
Paul Bakker66d5d072014-06-17 16:39:18 +0200304 if( key == NULL )
Manuel Pégourié-Gonnardb8c6e0e2013-07-01 13:40:52 +0200305 return;
306
307 ecp_group_init( &key->grp );
308 mpi_init( &key->d );
309 ecp_point_init( &key->Q );
Manuel Pégourié-Gonnardb8c6e0e2013-07-01 13:40:52 +0200310}
311
312/*
Manuel Pégourié-Gonnard1e8c8ec2012-10-31 19:24:21 +0100313 * Unallocate (the components of) a point
314 */
315void ecp_point_free( ecp_point *pt )
316{
317 if( pt == NULL )
318 return;
319
320 mpi_free( &( pt->X ) );
321 mpi_free( &( pt->Y ) );
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100322 mpi_free( &( pt->Z ) );
Manuel Pégourié-Gonnard1e8c8ec2012-10-31 19:24:21 +0100323}
324
325/*
326 * Unallocate (the components of) a group
327 */
328void ecp_group_free( ecp_group *grp )
329{
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +0200330 size_t i;
331
Manuel Pégourié-Gonnard1e8c8ec2012-10-31 19:24:21 +0100332 if( grp == NULL )
333 return;
334
Manuel Pégourié-Gonnard1f82b042013-12-06 12:51:50 +0100335 if( grp->h != 1 )
336 {
337 mpi_free( &grp->P );
338 mpi_free( &grp->A );
339 mpi_free( &grp->B );
340 ecp_point_free( &grp->G );
341 mpi_free( &grp->N );
342 }
Manuel Pégourié-Gonnardc9727702013-09-16 18:56:28 +0200343
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +0200344 if( grp->T != NULL )
345 {
346 for( i = 0; i < grp->T_size; i++ )
347 ecp_point_free( &grp->T[i] );
348 polarssl_free( grp->T );
349 }
350
Paul Bakker34617722014-06-13 17:20:13 +0200351 polarssl_zeroize( grp, sizeof( ecp_group ) );
Manuel Pégourié-Gonnard1e8c8ec2012-10-31 19:24:21 +0100352}
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +0100353
Manuel Pégourié-Gonnard883f3132012-11-02 09:40:25 +0100354/*
Manuel Pégourié-Gonnardb8c6e0e2013-07-01 13:40:52 +0200355 * Unallocate (the components of) a key pair
356 */
357void ecp_keypair_free( ecp_keypair *key )
358{
Paul Bakker66d5d072014-06-17 16:39:18 +0200359 if( key == NULL )
Manuel Pégourié-Gonnardb8c6e0e2013-07-01 13:40:52 +0200360 return;
361
362 ecp_group_free( &key->grp );
363 mpi_free( &key->d );
364 ecp_point_free( &key->Q );
Manuel Pégourié-Gonnardb8c6e0e2013-07-01 13:40:52 +0200365}
366
367/*
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200368 * Copy the contents of a point
369 */
370int ecp_copy( ecp_point *P, const ecp_point *Q )
371{
372 int ret;
373
374 MPI_CHK( mpi_copy( &P->X, &Q->X ) );
375 MPI_CHK( mpi_copy( &P->Y, &Q->Y ) );
376 MPI_CHK( mpi_copy( &P->Z, &Q->Z ) );
377
378cleanup:
379 return( ret );
380}
381
382/*
383 * Copy the contents of a group object
384 */
385int ecp_group_copy( ecp_group *dst, const ecp_group *src )
386{
387 return ecp_use_known_dp( dst, src->id );
388}
389
390/*
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +0100391 * Set point to zero
392 */
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100393int ecp_set_zero( ecp_point *pt )
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +0100394{
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100395 int ret;
396
397 MPI_CHK( mpi_lset( &pt->X , 1 ) );
398 MPI_CHK( mpi_lset( &pt->Y , 1 ) );
399 MPI_CHK( mpi_lset( &pt->Z , 0 ) );
400
401cleanup:
402 return( ret );
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +0100403}
404
405/*
Manuel Pégourié-Gonnard6545ca72013-01-26 16:05:22 +0100406 * Tell if a point is zero
407 */
408int ecp_is_zero( ecp_point *pt )
409{
410 return( mpi_cmp_int( &pt->Z, 0 ) == 0 );
411}
412
413/*
Manuel Pégourié-Gonnard847395a2012-11-05 13:13:44 +0100414 * Import a non-zero point from ASCII strings
415 */
416int ecp_point_read_string( ecp_point *P, int radix,
417 const char *x, const char *y )
418{
Manuel Pégourié-Gonnard47123252012-11-10 14:44:24 +0100419 int ret;
Manuel Pégourié-Gonnard847395a2012-11-05 13:13:44 +0100420
Manuel Pégourié-Gonnard847395a2012-11-05 13:13:44 +0100421 MPI_CHK( mpi_read_string( &P->X, radix, x ) );
422 MPI_CHK( mpi_read_string( &P->Y, radix, y ) );
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100423 MPI_CHK( mpi_lset( &P->Z, 1 ) );
Manuel Pégourié-Gonnard847395a2012-11-05 13:13:44 +0100424
425cleanup:
426 return( ret );
427}
428
429/*
Manuel Pégourié-Gonnard37d218a2012-11-24 15:19:55 +0100430 * Export a point into unsigned binary data (SEC1 2.3.3)
Manuel Pégourié-Gonnarde19feb52012-11-24 14:10:14 +0100431 */
Manuel Pégourié-Gonnard7e860252013-02-10 10:58:48 +0100432int ecp_point_write_binary( const ecp_group *grp, const ecp_point *P,
Manuel Pégourié-Gonnard420f1eb2013-02-10 12:22:46 +0100433 int format, size_t *olen,
Manuel Pégourié-Gonnard7e860252013-02-10 10:58:48 +0100434 unsigned char *buf, size_t buflen )
Manuel Pégourié-Gonnarde19feb52012-11-24 14:10:14 +0100435{
Paul Bakkera280d0f2013-04-08 13:40:17 +0200436 int ret = 0;
Manuel Pégourié-Gonnarde19feb52012-11-24 14:10:14 +0100437 size_t plen;
438
Manuel Pégourié-Gonnard37d218a2012-11-24 15:19:55 +0100439 if( format != POLARSSL_ECP_PF_UNCOMPRESSED &&
440 format != POLARSSL_ECP_PF_COMPRESSED )
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100441 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
Manuel Pégourié-Gonnard37d218a2012-11-24 15:19:55 +0100442
Manuel Pégourié-Gonnarde19feb52012-11-24 14:10:14 +0100443 /*
Manuel Pégourié-Gonnard37d218a2012-11-24 15:19:55 +0100444 * Common case: P == 0
Manuel Pégourié-Gonnarde19feb52012-11-24 14:10:14 +0100445 */
446 if( mpi_cmp_int( &P->Z, 0 ) == 0 )
447 {
448 if( buflen < 1 )
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100449 return( POLARSSL_ERR_ECP_BUFFER_TOO_SMALL );
Manuel Pégourié-Gonnarde19feb52012-11-24 14:10:14 +0100450
451 buf[0] = 0x00;
452 *olen = 1;
453
454 return( 0 );
455 }
456
457 plen = mpi_size( &grp->P );
Manuel Pégourié-Gonnarde19feb52012-11-24 14:10:14 +0100458
Manuel Pégourié-Gonnard37d218a2012-11-24 15:19:55 +0100459 if( format == POLARSSL_ECP_PF_UNCOMPRESSED )
460 {
461 *olen = 2 * plen + 1;
Manuel Pégourié-Gonnarde19feb52012-11-24 14:10:14 +0100462
Manuel Pégourié-Gonnard37d218a2012-11-24 15:19:55 +0100463 if( buflen < *olen )
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100464 return( POLARSSL_ERR_ECP_BUFFER_TOO_SMALL );
Manuel Pégourié-Gonnard37d218a2012-11-24 15:19:55 +0100465
466 buf[0] = 0x04;
467 MPI_CHK( mpi_write_binary( &P->X, buf + 1, plen ) );
468 MPI_CHK( mpi_write_binary( &P->Y, buf + 1 + plen, plen ) );
469 }
470 else if( format == POLARSSL_ECP_PF_COMPRESSED )
471 {
472 *olen = plen + 1;
473
474 if( buflen < *olen )
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100475 return( POLARSSL_ERR_ECP_BUFFER_TOO_SMALL );
Manuel Pégourié-Gonnard37d218a2012-11-24 15:19:55 +0100476
477 buf[0] = 0x02 + mpi_get_bit( &P->Y, 0 );
478 MPI_CHK( mpi_write_binary( &P->X, buf + 1, plen ) );
479 }
Manuel Pégourié-Gonnarde19feb52012-11-24 14:10:14 +0100480
481cleanup:
482 return( ret );
483}
484
485/*
Manuel Pégourié-Gonnard5e402d82012-11-24 16:19:42 +0100486 * Import a point from unsigned binary data (SEC1 2.3.4)
487 */
Manuel Pégourié-Gonnard7e860252013-02-10 10:58:48 +0100488int ecp_point_read_binary( const ecp_group *grp, ecp_point *pt,
Manuel Pégourié-Gonnard5246ee52014-03-19 16:18:38 +0100489 const unsigned char *buf, size_t ilen )
490{
Manuel Pégourié-Gonnard5e402d82012-11-24 16:19:42 +0100491 int ret;
492 size_t plen;
493
Paul Bakker82788fb2014-10-20 13:59:19 +0200494 if( ilen < 1 )
Manuel Pégourié-Gonnard67dbe1e2014-07-08 13:09:24 +0200495 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
496
Manuel Pégourié-Gonnardc042cf02014-03-26 14:12:20 +0100497 if( buf[0] == 0x00 )
498 {
499 if( ilen == 1 )
500 return( ecp_set_zero( pt ) );
501 else
502 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
503 }
Manuel Pégourié-Gonnard5e402d82012-11-24 16:19:42 +0100504
Manuel Pégourié-Gonnardd84895d2013-02-10 10:53:04 +0100505 plen = mpi_size( &grp->P );
Manuel Pégourié-Gonnard5e402d82012-11-24 16:19:42 +0100506
Manuel Pégourié-Gonnard5246ee52014-03-19 16:18:38 +0100507 if( buf[0] != 0x04 )
508 return( POLARSSL_ERR_ECP_FEATURE_UNAVAILABLE );
509
510 if( ilen != 2 * plen + 1 )
Manuel Pégourié-Gonnardd84895d2013-02-10 10:53:04 +0100511 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
Manuel Pégourié-Gonnard5e402d82012-11-24 16:19:42 +0100512
Manuel Pégourié-Gonnardd84895d2013-02-10 10:53:04 +0100513 MPI_CHK( mpi_read_binary( &pt->X, buf + 1, plen ) );
514 MPI_CHK( mpi_read_binary( &pt->Y, buf + 1 + plen, plen ) );
515 MPI_CHK( mpi_lset( &pt->Z, 1 ) );
Manuel Pégourié-Gonnard5e402d82012-11-24 16:19:42 +0100516
517cleanup:
518 return( ret );
519}
520
521/*
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100522 * Import a point from a TLS ECPoint record (RFC 4492)
523 * struct {
524 * opaque point <1..2^8-1>;
525 * } ECPoint;
526 */
527int ecp_tls_read_point( const ecp_group *grp, ecp_point *pt,
Manuel Pégourié-Gonnard98f51812013-02-10 13:38:29 +0100528 const unsigned char **buf, size_t buf_len )
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100529{
530 unsigned char data_len;
Manuel Pégourié-Gonnard98f51812013-02-10 13:38:29 +0100531 const unsigned char *buf_start;
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100532
533 /*
Manuel Pégourié-Gonnard67dbe1e2014-07-08 13:09:24 +0200534 * We must have at least two bytes (1 for length, at least one for data)
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100535 */
536 if( buf_len < 2 )
537 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
538
Manuel Pégourié-Gonnard98f51812013-02-10 13:38:29 +0100539 data_len = *(*buf)++;
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100540 if( data_len < 1 || data_len > buf_len - 1 )
541 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
542
Manuel Pégourié-Gonnard98f51812013-02-10 13:38:29 +0100543 /*
544 * Save buffer start for read_binary and update buf
545 */
546 buf_start = *buf;
547 *buf += data_len;
548
549 return ecp_point_read_binary( grp, pt, buf_start, data_len );
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100550}
551
552/*
553 * Export a point as a TLS ECPoint record (RFC 4492)
554 * struct {
555 * opaque point <1..2^8-1>;
556 * } ECPoint;
557 */
558int ecp_tls_write_point( const ecp_group *grp, const ecp_point *pt,
Manuel Pégourié-Gonnard420f1eb2013-02-10 12:22:46 +0100559 int format, size_t *olen,
560 unsigned char *buf, size_t blen )
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100561{
Manuel Pégourié-Gonnard420f1eb2013-02-10 12:22:46 +0100562 int ret;
563
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100564 /*
Manuel Pégourié-Gonnard420f1eb2013-02-10 12:22:46 +0100565 * buffer length must be at least one, for our length byte
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100566 */
Manuel Pégourié-Gonnard420f1eb2013-02-10 12:22:46 +0100567 if( blen < 1 )
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100568 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
569
Manuel Pégourié-Gonnard420f1eb2013-02-10 12:22:46 +0100570 if( ( ret = ecp_point_write_binary( grp, pt, format,
571 olen, buf + 1, blen - 1) ) != 0 )
572 return( ret );
573
574 /*
575 * write length to the first byte and update total length
576 */
Paul Bakkerb9cfaa02013-10-11 18:58:55 +0200577 buf[0] = (unsigned char) *olen;
Manuel Pégourié-Gonnard420f1eb2013-02-10 12:22:46 +0100578 ++*olen;
579
Paul Bakkerd8bb8262014-06-17 14:06:49 +0200580 return( 0 );
Manuel Pégourié-Gonnard00794052013-02-09 19:00:07 +0100581}
582
583/*
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200584 * Import an ECP group from ASCII strings, case A == -3
Manuel Pégourié-Gonnard210b4582013-10-23 14:03:00 +0200585 */
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200586int ecp_group_read_string( ecp_group *grp, int radix,
587 const char *p, const char *b,
588 const char *gx, const char *gy, const char *n)
Manuel Pégourié-Gonnard84338242012-11-11 20:45:18 +0100589{
590 int ret;
Manuel Pégourié-Gonnard84338242012-11-11 20:45:18 +0100591
Manuel Pégourié-Gonnardd5e0fbe2013-12-02 17:20:39 +0100592 MPI_CHK( mpi_read_string( &grp->P, radix, p ) );
Manuel Pégourié-Gonnardd5e0fbe2013-12-02 17:20:39 +0100593 MPI_CHK( mpi_read_string( &grp->B, radix, b ) );
594 MPI_CHK( ecp_point_read_string( &grp->G, radix, gx, gy ) );
595 MPI_CHK( mpi_read_string( &grp->N, radix, n ) );
596
597 grp->pbits = mpi_msb( &grp->P );
598 grp->nbits = mpi_msb( &grp->N );
Manuel Pégourié-Gonnard84338242012-11-11 20:45:18 +0100599
600cleanup:
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200601 if( ret != 0 )
602 ecp_group_free( grp );
Manuel Pégourié-Gonnarde783f062013-10-21 14:52:21 +0200603
604 return( ret );
605}
Manuel Pégourié-Gonnardc04c5302013-10-23 16:11:52 +0200606
Manuel Pégourié-Gonnard62aad142012-11-10 00:27:12 +0100607/*
Manuel Pégourié-Gonnard1a967282013-02-09 17:03:58 +0100608 * Set a group from an ECParameters record (RFC 4492)
609 */
Manuel Pégourié-Gonnard7c145c62013-02-10 13:20:52 +0100610int ecp_tls_read_group( ecp_group *grp, const unsigned char **buf, size_t len )
Manuel Pégourié-Gonnard1a967282013-02-09 17:03:58 +0100611{
Manuel Pégourié-Gonnardf24b4a72013-09-23 18:14:50 +0200612 uint16_t tls_id;
613 const ecp_curve_info *curve_info;
Manuel Pégourié-Gonnard1a967282013-02-09 17:03:58 +0100614
615 /*
616 * We expect at least three bytes (see below)
617 */
618 if( len < 3 )
619 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
620
621 /*
622 * First byte is curve_type; only named_curve is handled
623 */
Manuel Pégourié-Gonnard7c145c62013-02-10 13:20:52 +0100624 if( *(*buf)++ != POLARSSL_ECP_TLS_NAMED_CURVE )
Manuel Pégourié-Gonnard1a967282013-02-09 17:03:58 +0100625 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
626
627 /*
Manuel Pégourié-Gonnardb3258872013-02-10 12:06:19 +0100628 * Next two bytes are the namedcurve value
Manuel Pégourié-Gonnard1a967282013-02-09 17:03:58 +0100629 */
Manuel Pégourié-Gonnardf24b4a72013-09-23 18:14:50 +0200630 tls_id = *(*buf)++;
631 tls_id <<= 8;
632 tls_id |= *(*buf)++;
633
634 if( ( curve_info = ecp_curve_info_from_tls_id( tls_id ) ) == NULL )
635 return( POLARSSL_ERR_ECP_FEATURE_UNAVAILABLE );
636
637 return ecp_use_known_dp( grp, curve_info->grp_id );
Manuel Pégourié-Gonnardb3258872013-02-10 12:06:19 +0100638}
639
640/*
641 * Write the ECParameters record corresponding to a group (RFC 4492)
642 */
643int ecp_tls_write_group( const ecp_group *grp, size_t *olen,
644 unsigned char *buf, size_t blen )
645{
Manuel Pégourié-Gonnardf24b4a72013-09-23 18:14:50 +0200646 const ecp_curve_info *curve_info;
647
648 if( ( curve_info = ecp_curve_info_from_grp_id( grp->id ) ) == NULL )
649 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
Manuel Pégourié-Gonnard70380392013-09-16 16:19:53 +0200650
Manuel Pégourié-Gonnardb3258872013-02-10 12:06:19 +0100651 /*
652 * We are going to write 3 bytes (see below)
653 */
654 *olen = 3;
655 if( blen < *olen )
656 return( POLARSSL_ERR_ECP_BUFFER_TOO_SMALL );
657
658 /*
659 * First byte is curve_type, always named_curve
660 */
661 *buf++ = POLARSSL_ECP_TLS_NAMED_CURVE;
662
663 /*
664 * Next two bytes are the namedcurve value
665 */
Manuel Pégourié-Gonnardf24b4a72013-09-23 18:14:50 +0200666 buf[0] = curve_info->tls_id >> 8;
667 buf[1] = curve_info->tls_id & 0xFF;
Manuel Pégourié-Gonnardb3258872013-02-10 12:06:19 +0100668
Paul Bakkerd8bb8262014-06-17 14:06:49 +0200669 return( 0 );
Manuel Pégourié-Gonnarda5402fe2012-11-07 20:24:05 +0100670}
Manuel Pégourié-Gonnardab38b702012-11-05 17:34:55 +0100671
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200672/*
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200673 * Wrapper around fast quasi-modp functions, with fall-back to mpi_mod_mpi.
674 * See the documentation of struct ecp_group.
675 *
676 * This function is in the critial loop for ecp_mul, so pay attention to perf.
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200677 */
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200678static int ecp_modp( mpi *N, const ecp_group *grp )
Manuel Pégourié-Gonnard70380392013-09-16 16:19:53 +0200679{
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200680 int ret;
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200681
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200682 if( grp->modp == NULL )
683 return( mpi_mod_mpi( N, N, &grp->P ) );
684
685 /* N->s < 0 is a much faster test, which fails only if N is 0 */
686 if( ( N->s < 0 && mpi_cmp_int( N, 0 ) != 0 ) ||
687 mpi_msb( N ) > 2 * grp->pbits )
Manuel Pégourié-Gonnard70380392013-09-16 16:19:53 +0200688 {
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200689 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
Manuel Pégourié-Gonnard70380392013-09-16 16:19:53 +0200690 }
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200691
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200692 MPI_CHK( grp->modp( N ) );
Manuel Pégourié-Gonnard70380392013-09-16 16:19:53 +0200693
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200694 /* N->s < 0 is a much faster test, which fails only if N is 0 */
695 while( N->s < 0 && mpi_cmp_int( N, 0 ) != 0 )
696 MPI_CHK( mpi_add_mpi( N, N, &grp->P ) );
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200697
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200698 while( mpi_cmp_mpi( N, &grp->P ) >= 0 )
699 /* we known P, N and the result are positive */
700 MPI_CHK( mpi_sub_abs( N, N, &grp->P ) );
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200701
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200702cleanup:
703 return( ret );
Manuel Pégourié-Gonnard70380392013-09-16 16:19:53 +0200704}
Manuel Pégourié-Gonnard568c9cf2013-09-16 17:30:04 +0200705
Manuel Pégourié-Gonnard847395a2012-11-05 13:13:44 +0100706/*
Manuel Pégourié-Gonnard47123252012-11-10 14:44:24 +0100707 * Fast mod-p functions expect their argument to be in the 0..p^2 range.
Manuel Pégourié-Gonnarddada4da2012-11-10 14:23:17 +0100708 *
Manuel Pégourié-Gonnard47123252012-11-10 14:44:24 +0100709 * In order to guarantee that, we need to ensure that operands of
710 * mpi_mul_mpi are in the 0..p range. So, after each operation we will
Manuel Pégourié-Gonnarddada4da2012-11-10 14:23:17 +0100711 * bring the result back to this range.
712 *
Manuel Pégourié-Gonnard47123252012-11-10 14:44:24 +0100713 * The following macros are shortcuts for doing that.
Manuel Pégourié-Gonnarddada4da2012-11-10 14:23:17 +0100714 */
715
716/*
Manuel Pégourié-Gonnard84d1aea2012-11-09 02:09:38 +0100717 * Reduce a mpi mod p in-place, general case, to use after mpi_mul_mpi
718 */
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +0100719#if defined(POLARSSL_SELF_TEST)
720#define INC_MUL_COUNT mul_count++;
721#else
722#define INC_MUL_COUNT
723#endif
724
725#define MOD_MUL( N ) do { MPI_CHK( ecp_modp( &N, grp ) ); INC_MUL_COUNT } \
726 while( 0 )
Manuel Pégourié-Gonnard84d1aea2012-11-09 02:09:38 +0100727
728/*
729 * Reduce a mpi mod p in-place, to use after mpi_sub_mpi
Manuel Pégourié-Gonnardc9e387c2013-10-17 17:15:35 +0200730 * N->s < 0 is a very fast test, which fails only if N is 0
Manuel Pégourié-Gonnard84d1aea2012-11-09 02:09:38 +0100731 */
732#define MOD_SUB( N ) \
Manuel Pégourié-Gonnardcae6f3e2013-10-23 20:19:57 +0200733 while( N.s < 0 && mpi_cmp_int( &N, 0 ) != 0 ) \
Manuel Pégourié-Gonnard84d1aea2012-11-09 02:09:38 +0100734 MPI_CHK( mpi_add_mpi( &N, &N, &grp->P ) )
735
736/*
Manuel Pégourié-Gonnardc9e387c2013-10-17 17:15:35 +0200737 * Reduce a mpi mod p in-place, to use after mpi_add_mpi and mpi_mul_int.
738 * We known P, N and the result are positive, so sub_abs is correct, and
739 * a bit faster.
Manuel Pégourié-Gonnard84d1aea2012-11-09 02:09:38 +0100740 */
741#define MOD_ADD( N ) \
742 while( mpi_cmp_mpi( &N, &grp->P ) >= 0 ) \
Manuel Pégourié-Gonnardc9e387c2013-10-17 17:15:35 +0200743 MPI_CHK( mpi_sub_abs( &N, &N, &grp->P ) )
Manuel Pégourié-Gonnard84d1aea2012-11-09 02:09:38 +0100744
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +0100745#if defined(POLARSSL_ECP_SHORT_WEIERSTRASS)
746/*
747 * For curves in short Weierstrass form, we do all the internal operations in
748 * Jacobian coordinates.
749 *
750 * For multiplication, we'll use a comb method with coutermeasueres against
751 * SPA, hence timing attacks.
752 */
753
Manuel Pégourié-Gonnard84d1aea2012-11-09 02:09:38 +0100754/*
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100755 * Normalize jacobian coordinates so that Z == 0 || Z == 1 (GECC 3.2.1)
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +0100756 * Cost: 1N := 1I + 3M + 1S
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100757 */
Manuel Pégourié-Gonnard3c0b4ea2013-12-02 19:44:41 +0100758static int ecp_normalize_jac( const ecp_group *grp, ecp_point *pt )
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100759{
Manuel Pégourié-Gonnard47123252012-11-10 14:44:24 +0100760 int ret;
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100761 mpi Zi, ZZi;
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100762
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100763 if( mpi_cmp_int( &pt->Z, 0 ) == 0 )
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100764 return( 0 );
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100765
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100766 mpi_init( &Zi ); mpi_init( &ZZi );
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100767
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100768 /*
769 * X = X / Z^2 mod p
770 */
771 MPI_CHK( mpi_inv_mod( &Zi, &pt->Z, &grp->P ) );
772 MPI_CHK( mpi_mul_mpi( &ZZi, &Zi, &Zi ) ); MOD_MUL( ZZi );
773 MPI_CHK( mpi_mul_mpi( &pt->X, &pt->X, &ZZi ) ); MOD_MUL( pt->X );
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100774
775 /*
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100776 * Y = Y / Z^3 mod p
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100777 */
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100778 MPI_CHK( mpi_mul_mpi( &pt->Y, &pt->Y, &ZZi ) ); MOD_MUL( pt->Y );
779 MPI_CHK( mpi_mul_mpi( &pt->Y, &pt->Y, &Zi ) ); MOD_MUL( pt->Y );
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100780
781 /*
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100782 * Z = 1
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100783 */
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +0100784 MPI_CHK( mpi_lset( &pt->Z, 1 ) );
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100785
786cleanup:
787
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100788 mpi_free( &Zi ); mpi_free( &ZZi );
Manuel Pégourié-Gonnardd070f512012-11-08 17:40:51 +0100789
790 return( ret );
791}
792
793/*
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +0100794 * Normalize jacobian coordinates of an array of (pointers to) points,
Manuel Pégourié-Gonnard3680c822012-11-21 18:49:45 +0100795 * using Montgomery's trick to perform only one inversion mod P.
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100796 * (See for example Cohen's "A Course in Computational Algebraic Number
797 * Theory", Algorithm 10.3.4.)
798 *
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +0200799 * Warning: fails (returning an error) if one of the points is zero!
Manuel Pégourié-Gonnard7a949d32013-12-05 10:26:01 +0100800 * This should never happen, see choice of w in ecp_mul_comb().
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +0100801 *
802 * Cost: 1N(t) := 1I + (6t - 3)M + 1S
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100803 */
Manuel Pégourié-Gonnard3c0b4ea2013-12-02 19:44:41 +0100804static int ecp_normalize_jac_many( const ecp_group *grp,
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +0100805 ecp_point *T[], size_t t_len )
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100806{
807 int ret;
808 size_t i;
809 mpi *c, u, Zi, ZZi;
810
811 if( t_len < 2 )
Manuel Pégourié-Gonnard3c0b4ea2013-12-02 19:44:41 +0100812 return( ecp_normalize_jac( grp, *T ) );
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100813
Mansour Moufidc531b4a2015-02-15 17:35:38 -0500814 if( ( c = polarssl_malloc( t_len * sizeof( mpi ) ) ) == NULL )
Manuel Pégourié-Gonnard456d3b92013-09-16 18:04:38 +0200815 return( POLARSSL_ERR_ECP_MALLOC_FAILED );
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100816
817 mpi_init( &u ); mpi_init( &Zi ); mpi_init( &ZZi );
818 for( i = 0; i < t_len; i++ )
819 mpi_init( &c[i] );
820
821 /*
822 * c[i] = Z_0 * ... * Z_i
823 */
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +0100824 MPI_CHK( mpi_copy( &c[0], &T[0]->Z ) );
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100825 for( i = 1; i < t_len; i++ )
826 {
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +0100827 MPI_CHK( mpi_mul_mpi( &c[i], &c[i-1], &T[i]->Z ) );
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100828 MOD_MUL( c[i] );
829 }
830
831 /*
832 * u = 1 / (Z_0 * ... * Z_n) mod P
833 */
834 MPI_CHK( mpi_inv_mod( &u, &c[t_len-1], &grp->P ) );
835
836 for( i = t_len - 1; ; i-- )
837 {
838 /*
839 * Zi = 1 / Z_i mod p
840 * u = 1 / (Z_0 * ... * Z_i) mod P
841 */
842 if( i == 0 ) {
843 MPI_CHK( mpi_copy( &Zi, &u ) );
844 }
845 else
846 {
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +0100847 MPI_CHK( mpi_mul_mpi( &Zi, &u, &c[i-1] ) ); MOD_MUL( Zi );
848 MPI_CHK( mpi_mul_mpi( &u, &u, &T[i]->Z ) ); MOD_MUL( u );
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100849 }
850
851 /*
852 * proceed as in normalize()
853 */
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +0100854 MPI_CHK( mpi_mul_mpi( &ZZi, &Zi, &Zi ) ); MOD_MUL( ZZi );
855 MPI_CHK( mpi_mul_mpi( &T[i]->X, &T[i]->X, &ZZi ) ); MOD_MUL( T[i]->X );
856 MPI_CHK( mpi_mul_mpi( &T[i]->Y, &T[i]->Y, &ZZi ) ); MOD_MUL( T[i]->Y );
857 MPI_CHK( mpi_mul_mpi( &T[i]->Y, &T[i]->Y, &Zi ) ); MOD_MUL( T[i]->Y );
Manuel Pégourié-Gonnard1f789b82013-12-30 17:31:56 +0100858
859 /*
860 * Post-precessing: reclaim some memory by shrinking coordinates
861 * - not storing Z (always 1)
862 * - shrinking other coordinates, but still keeping the same number of
863 * limbs as P, as otherwise it will too likely be regrown too fast.
864 */
Manuel Pégourié-Gonnard26bc1c02013-12-30 19:33:33 +0100865 MPI_CHK( mpi_shrink( &T[i]->X, grp->P.n ) );
866 MPI_CHK( mpi_shrink( &T[i]->Y, grp->P.n ) );
Manuel Pégourié-Gonnard1f789b82013-12-30 17:31:56 +0100867 mpi_free( &T[i]->Z );
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100868
869 if( i == 0 )
870 break;
871 }
872
873cleanup:
874
875 mpi_free( &u ); mpi_free( &Zi ); mpi_free( &ZZi );
876 for( i = 0; i < t_len; i++ )
877 mpi_free( &c[i] );
Paul Bakker6e339b52013-07-03 13:37:05 +0200878 polarssl_free( c );
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100879
880 return( ret );
881}
882
Manuel Pégourié-Gonnardcdd44322012-11-21 16:00:55 +0100883/*
Manuel Pégourié-Gonnard01fca5e2013-11-21 17:47:12 +0100884 * Conditional point inversion: Q -> -Q = (Q.X, -Q.Y, Q.Z) without leak.
885 * "inv" must be 0 (don't invert) or 1 (invert) or the result will be invalid
886 */
Manuel Pégourié-Gonnard3c0b4ea2013-12-02 19:44:41 +0100887static int ecp_safe_invert_jac( const ecp_group *grp,
Manuel Pégourié-Gonnard01fca5e2013-11-21 17:47:12 +0100888 ecp_point *Q,
889 unsigned char inv )
890{
891 int ret;
892 unsigned char nonzero;
893 mpi mQY;
894
895 mpi_init( &mQY );
896
897 /* Use the fact that -Q.Y mod P = P - Q.Y unless Q.Y == 0 */
898 MPI_CHK( mpi_sub_mpi( &mQY, &grp->P, &Q->Y ) );
899 nonzero = mpi_cmp_int( &Q->Y, 0 ) != 0;
900 MPI_CHK( mpi_safe_cond_assign( &Q->Y, &mQY, inv & nonzero ) );
901
902cleanup:
903 mpi_free( &mQY );
904
905 return( ret );
906}
907
908/*
Manuel Pégourié-Gonnard0cd6f982013-10-10 15:55:39 +0200909 * Point doubling R = 2 P, Jacobian coordinates
Manuel Pégourié-Gonnard0ace4b32013-10-10 12:44:27 +0200910 *
Peter Dettmance661b22015-02-07 14:43:51 +0700911 * Based on http://www.hyperelliptic.org/EFD/g1p/auto-shortw-jacobian.html#doubling-dbl-1998-cmo-2 .
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +0100912 *
Peter Dettmance661b22015-02-07 14:43:51 +0700913 * We follow the variable naming fairly closely. The formula variations that trade a MUL for a SQR
914 * (plus a few ADDs) aren't useful as our bignum implementation doesn't distinguish squaring.
915 *
916 * Standard optimizations are applied when curve parameter A is one of { 0, -3 }.
917 *
918 * Cost: 1D := 3M + 4S (A == 0)
919 * 4M + 4S (A == -3)
920 * 3M + 6S + 1a otherwise
Manuel Pégourié-Gonnard1c4aa242013-10-09 16:09:46 +0200921 */
Manuel Pégourié-Gonnard0cd6f982013-10-10 15:55:39 +0200922static int ecp_double_jac( const ecp_group *grp, ecp_point *R,
923 const ecp_point *P )
Manuel Pégourié-Gonnard1c4aa242013-10-09 16:09:46 +0200924{
925 int ret;
Peter Dettmance661b22015-02-07 14:43:51 +0700926 mpi M, S, T, U;
Manuel Pégourié-Gonnard1c4aa242013-10-09 16:09:46 +0200927
Manuel Pégourié-Gonnard0cd6f982013-10-10 15:55:39 +0200928#if defined(POLARSSL_SELF_TEST)
929 dbl_count++;
930#endif
931
Peter Dettmance661b22015-02-07 14:43:51 +0700932 mpi_init( &M ); mpi_init( &S ); mpi_init( &T ); mpi_init( &U );
Manuel Pégourié-Gonnard73cc01d2013-12-06 12:41:30 +0100933
934 /* Special case for A = -3 */
935 if( grp->A.p == NULL )
936 {
Peter Dettmance661b22015-02-07 14:43:51 +0700937 /* M = 3(X + Z^2)(X - Z^2) */
938 MPI_CHK( mpi_mul_mpi( &S, &P->Z, &P->Z ) ); MOD_MUL( S );
939 MPI_CHK( mpi_add_mpi( &T, &P->X, &S ) ); MOD_ADD( T );
940 MPI_CHK( mpi_sub_mpi( &U, &P->X, &S ) ); MOD_SUB( U );
941 MPI_CHK( mpi_mul_mpi( &S, &T, &U ) ); MOD_MUL( S );
942 MPI_CHK( mpi_mul_int( &M, &S, 3 ) ); MOD_ADD( M );
Manuel Pégourié-Gonnard73cc01d2013-12-06 12:41:30 +0100943 }
944 else
Peter Vaskovica676acf2014-08-06 00:48:39 +0200945 {
Peter Dettmance661b22015-02-07 14:43:51 +0700946 /* M = 3.X^2 */
947 MPI_CHK( mpi_mul_mpi( &S, &P->X, &P->X ) ); MOD_MUL( S );
948 MPI_CHK( mpi_mul_int( &M, &S, 3 ) ); MOD_ADD( M );
949
950 /* Optimize away for "koblitz" curves with A = 0 */
951 if( mpi_cmp_int( &grp->A, 0 ) != 0 )
952 {
953 /* M += A.Z^4 */
954 MPI_CHK( mpi_mul_mpi( &S, &P->Z, &P->Z ) ); MOD_MUL( S );
955 MPI_CHK( mpi_mul_mpi( &T, &S, &S ) ); MOD_MUL( T );
956 MPI_CHK( mpi_mul_mpi( &S, &T, &grp->A ) ); MOD_MUL( S );
957 MPI_CHK( mpi_add_mpi( &M, &M, &S ) ); MOD_ADD( M );
958 }
Peter Vaskovica676acf2014-08-06 00:48:39 +0200959 }
Manuel Pégourié-Gonnard73cc01d2013-12-06 12:41:30 +0100960
Peter Dettmance661b22015-02-07 14:43:51 +0700961 /* S = 4.X.Y^2 */
962 MPI_CHK( mpi_mul_mpi( &T, &P->Y, &P->Y ) ); MOD_MUL( T );
963 MPI_CHK( mpi_shift_l( &T, 1 ) ); MOD_ADD( T );
964 MPI_CHK( mpi_mul_mpi( &S, &P->X, &T ) ); MOD_MUL( S );
965 MPI_CHK( mpi_shift_l( &S, 1 ) ); MOD_ADD( S );
Manuel Pégourié-Gonnard1c4aa242013-10-09 16:09:46 +0200966
Peter Dettmance661b22015-02-07 14:43:51 +0700967 /* U = 8.Y^4 */
968 MPI_CHK( mpi_mul_mpi( &U, &T, &T ) ); MOD_MUL( U );
969 MPI_CHK( mpi_shift_l( &U, 1 ) ); MOD_ADD( U );
970
971 /* T = M^2 - 2.S */
972 MPI_CHK( mpi_mul_mpi( &T, &M, &M ) ); MOD_MUL( T );
973 MPI_CHK( mpi_sub_mpi( &T, &T, &S ) ); MOD_SUB( T );
974 MPI_CHK( mpi_sub_mpi( &T, &T, &S ) ); MOD_SUB( T );
975
976 /* S = M(S - T) - U */
977 MPI_CHK( mpi_sub_mpi( &S, &S, &T ) ); MOD_SUB( S );
978 MPI_CHK( mpi_mul_mpi( &S, &S, &M ) ); MOD_MUL( S );
979 MPI_CHK( mpi_sub_mpi( &S, &S, &U ) ); MOD_SUB( S );
980
981 /* U = 2.Y.Z */
982 MPI_CHK( mpi_mul_mpi( &U, &P->Y, &P->Z ) ); MOD_MUL( U );
983 MPI_CHK( mpi_shift_l( &U, 1 ) ); MOD_ADD( U );
984
985 MPI_CHK( mpi_copy( &R->X, &T ) );
986 MPI_CHK( mpi_copy( &R->Y, &S ) );
987 MPI_CHK( mpi_copy( &R->Z, &U ) );
Manuel Pégourié-Gonnard1c4aa242013-10-09 16:09:46 +0200988
989cleanup:
Peter Dettmance661b22015-02-07 14:43:51 +0700990 mpi_free( &M ); mpi_free( &S ); mpi_free( &T ); mpi_free( &U );
Manuel Pégourié-Gonnard1c4aa242013-10-09 16:09:46 +0200991
992 return( ret );
993}
994
995/*
Manuel Pégourié-Gonnard469a2092013-11-21 18:20:43 +0100996 * Addition: R = P + Q, mixed affine-Jacobian coordinates (GECC 3.22)
Manuel Pégourié-Gonnard9674fd02012-11-19 21:23:27 +0100997 *
998 * The coordinates of Q must be normalized (= affine),
999 * but those of P don't need to. R is not normalized.
1000 *
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001001 * Special cases: (1) P or Q is zero, (2) R is zero, (3) P == Q.
Manuel Pégourié-Gonnard7a949d32013-12-05 10:26:01 +01001002 * None of these cases can happen as intermediate step in ecp_mul_comb():
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001003 * - at each step, P, Q and R are multiples of the base point, the factor
1004 * being less than its order, so none of them is zero;
1005 * - Q is an odd multiple of the base point, P an even multiple,
1006 * due to the choice of precomputed points in the modified comb method.
1007 * So branches for these cases do not leak secret information.
1008 *
Manuel Pégourié-Gonnard72c172a2013-12-30 16:04:55 +01001009 * We accept Q->Z being unset (saving memory in tables) as meaning 1.
1010 *
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001011 * Cost: 1A := 8M + 3S
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001012 */
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +01001013static int ecp_add_mixed( const ecp_group *grp, ecp_point *R,
Manuel Pégourié-Gonnard469a2092013-11-21 18:20:43 +01001014 const ecp_point *P, const ecp_point *Q )
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001015{
Manuel Pégourié-Gonnard47123252012-11-10 14:44:24 +01001016 int ret;
Manuel Pégourié-Gonnard7e0adfb2012-11-08 23:21:46 +01001017 mpi T1, T2, T3, T4, X, Y, Z;
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001018
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01001019#if defined(POLARSSL_SELF_TEST)
1020 add_count++;
1021#endif
1022
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001023 /*
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001024 * Trivial cases: P == 0 or Q == 0 (case 1)
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001025 */
Manuel Pégourié-Gonnard469a2092013-11-21 18:20:43 +01001026 if( mpi_cmp_int( &P->Z, 0 ) == 0 )
1027 return( ecp_copy( R, Q ) );
1028
Manuel Pégourié-Gonnard72c172a2013-12-30 16:04:55 +01001029 if( Q->Z.p != NULL && mpi_cmp_int( &Q->Z, 0 ) == 0 )
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +01001030 return( ecp_copy( R, P ) );
1031
1032 /*
1033 * Make sure Q coordinates are normalized
1034 */
Manuel Pégourié-Gonnard72c172a2013-12-30 16:04:55 +01001035 if( Q->Z.p != NULL && mpi_cmp_int( &Q->Z, 1 ) != 0 )
Manuel Pégourié-Gonnard456d3b92013-09-16 18:04:38 +02001036 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001037
Manuel Pégourié-Gonnard7e0adfb2012-11-08 23:21:46 +01001038 mpi_init( &T1 ); mpi_init( &T2 ); mpi_init( &T3 ); mpi_init( &T4 );
1039 mpi_init( &X ); mpi_init( &Y ); mpi_init( &Z );
Manuel Pégourié-Gonnardab38b702012-11-05 17:34:55 +01001040
Manuel Pégourié-Gonnard47123252012-11-10 14:44:24 +01001041 MPI_CHK( mpi_mul_mpi( &T1, &P->Z, &P->Z ) ); MOD_MUL( T1 );
1042 MPI_CHK( mpi_mul_mpi( &T2, &T1, &P->Z ) ); MOD_MUL( T2 );
1043 MPI_CHK( mpi_mul_mpi( &T1, &T1, &Q->X ) ); MOD_MUL( T1 );
1044 MPI_CHK( mpi_mul_mpi( &T2, &T2, &Q->Y ) ); MOD_MUL( T2 );
1045 MPI_CHK( mpi_sub_mpi( &T1, &T1, &P->X ) ); MOD_SUB( T1 );
1046 MPI_CHK( mpi_sub_mpi( &T2, &T2, &P->Y ) ); MOD_SUB( T2 );
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001047
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001048 /* Special cases (2) and (3) */
Manuel Pégourié-Gonnard7e0adfb2012-11-08 23:21:46 +01001049 if( mpi_cmp_int( &T1, 0 ) == 0 )
1050 {
1051 if( mpi_cmp_int( &T2, 0 ) == 0 )
1052 {
1053 ret = ecp_double_jac( grp, R, P );
1054 goto cleanup;
1055 }
1056 else
1057 {
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +01001058 ret = ecp_set_zero( R );
Manuel Pégourié-Gonnard7e0adfb2012-11-08 23:21:46 +01001059 goto cleanup;
1060 }
1061 }
1062
Manuel Pégourié-Gonnard47123252012-11-10 14:44:24 +01001063 MPI_CHK( mpi_mul_mpi( &Z, &P->Z, &T1 ) ); MOD_MUL( Z );
1064 MPI_CHK( mpi_mul_mpi( &T3, &T1, &T1 ) ); MOD_MUL( T3 );
1065 MPI_CHK( mpi_mul_mpi( &T4, &T3, &T1 ) ); MOD_MUL( T4 );
1066 MPI_CHK( mpi_mul_mpi( &T3, &T3, &P->X ) ); MOD_MUL( T3 );
1067 MPI_CHK( mpi_mul_int( &T1, &T3, 2 ) ); MOD_ADD( T1 );
1068 MPI_CHK( mpi_mul_mpi( &X, &T2, &T2 ) ); MOD_MUL( X );
1069 MPI_CHK( mpi_sub_mpi( &X, &X, &T1 ) ); MOD_SUB( X );
1070 MPI_CHK( mpi_sub_mpi( &X, &X, &T4 ) ); MOD_SUB( X );
1071 MPI_CHK( mpi_sub_mpi( &T3, &T3, &X ) ); MOD_SUB( T3 );
1072 MPI_CHK( mpi_mul_mpi( &T3, &T3, &T2 ) ); MOD_MUL( T3 );
1073 MPI_CHK( mpi_mul_mpi( &T4, &T4, &P->Y ) ); MOD_MUL( T4 );
1074 MPI_CHK( mpi_sub_mpi( &Y, &T3, &T4 ) ); MOD_SUB( Y );
Manuel Pégourié-Gonnard7e0adfb2012-11-08 23:21:46 +01001075
Manuel Pégourié-Gonnard84d1aea2012-11-09 02:09:38 +01001076 MPI_CHK( mpi_copy( &R->X, &X ) );
1077 MPI_CHK( mpi_copy( &R->Y, &Y ) );
1078 MPI_CHK( mpi_copy( &R->Z, &Z ) );
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001079
1080cleanup:
1081
Manuel Pégourié-Gonnard7e0adfb2012-11-08 23:21:46 +01001082 mpi_free( &T1 ); mpi_free( &T2 ); mpi_free( &T3 ); mpi_free( &T4 );
1083 mpi_free( &X ); mpi_free( &Y ); mpi_free( &Z );
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001084
1085 return( ret );
1086}
1087
1088/*
Manuel Pégourié-Gonnard1c2782c2012-11-19 20:16:28 +01001089 * Addition: R = P + Q, result's coordinates normalized
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001090 */
1091int ecp_add( const ecp_group *grp, ecp_point *R,
1092 const ecp_point *P, const ecp_point *Q )
1093{
Manuel Pégourié-Gonnard47123252012-11-10 14:44:24 +01001094 int ret;
Manuel Pégourié-Gonnard989c32b2012-11-08 22:02:42 +01001095
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +01001096 if( ecp_get_type( grp ) != POLARSSL_ECP_TYPE_SHORT_WEIERSTRASS )
Manuel Pégourié-Gonnard97871ef2013-12-04 20:52:04 +01001097 return( POLARSSL_ERR_ECP_FEATURE_UNAVAILABLE );
1098
Manuel Pégourié-Gonnard469a2092013-11-21 18:20:43 +01001099 MPI_CHK( ecp_add_mixed( grp, R, P, Q ) );
Manuel Pégourié-Gonnard3c0b4ea2013-12-02 19:44:41 +01001100 MPI_CHK( ecp_normalize_jac( grp, R ) );
Manuel Pégourié-Gonnard9674fd02012-11-19 21:23:27 +01001101
1102cleanup:
1103 return( ret );
1104}
1105
1106/*
1107 * Subtraction: R = P - Q, result's coordinates normalized
1108 */
1109int ecp_sub( const ecp_group *grp, ecp_point *R,
1110 const ecp_point *P, const ecp_point *Q )
1111{
1112 int ret;
Manuel Pégourié-Gonnard469a2092013-11-21 18:20:43 +01001113 ecp_point mQ;
Manuel Pégourié-Gonnard9674fd02012-11-19 21:23:27 +01001114
Manuel Pégourié-Gonnard469a2092013-11-21 18:20:43 +01001115 ecp_point_init( &mQ );
1116
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +01001117 if( ecp_get_type( grp ) != POLARSSL_ECP_TYPE_SHORT_WEIERSTRASS )
Manuel Pégourié-Gonnard97871ef2013-12-04 20:52:04 +01001118 return( POLARSSL_ERR_ECP_FEATURE_UNAVAILABLE );
1119
Manuel Pégourié-Gonnard469a2092013-11-21 18:20:43 +01001120 /* mQ = - Q */
Manuel Pégourié-Gonnard26bc1c02013-12-30 19:33:33 +01001121 MPI_CHK( ecp_copy( &mQ, Q ) );
Manuel Pégourié-Gonnard469a2092013-11-21 18:20:43 +01001122 if( mpi_cmp_int( &mQ.Y, 0 ) != 0 )
1123 MPI_CHK( mpi_sub_mpi( &mQ.Y, &grp->P, &mQ.Y ) );
1124
1125 MPI_CHK( ecp_add_mixed( grp, R, P, &mQ ) );
Manuel Pégourié-Gonnard3c0b4ea2013-12-02 19:44:41 +01001126 MPI_CHK( ecp_normalize_jac( grp, R ) );
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001127
Manuel Pégourié-Gonnard989c32b2012-11-08 22:02:42 +01001128cleanup:
Manuel Pégourié-Gonnard469a2092013-11-21 18:20:43 +01001129 ecp_point_free( &mQ );
1130
Manuel Pégourié-Gonnard7e0adfb2012-11-08 23:21:46 +01001131 return( ret );
Manuel Pégourié-Gonnardae180d02012-11-02 18:14:40 +01001132}
1133
Manuel Pégourié-Gonnardefaa31e2012-11-06 21:34:35 +01001134/*
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +02001135 * Randomize jacobian coordinates:
1136 * (X, Y, Z) -> (l^2 X, l^3 Y, l Z) for random l
Manuel Pégourié-Gonnard3c0b4ea2013-12-02 19:44:41 +01001137 * This is sort of the reverse operation of ecp_normalize_jac().
Manuel Pégourié-Gonnard44aab792013-11-21 10:53:59 +01001138 *
1139 * This countermeasure was first suggested in [2].
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +02001140 */
Manuel Pégourié-Gonnard3afa07f2013-12-03 13:28:21 +01001141static int ecp_randomize_jac( const ecp_group *grp, ecp_point *pt,
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +02001142 int (*f_rng)(void *, unsigned char *, size_t), void *p_rng )
1143{
1144 int ret;
1145 mpi l, ll;
Paul Bakker66d5d072014-06-17 16:39:18 +02001146 size_t p_size = ( grp->pbits + 7 ) / 8;
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +02001147 int count = 0;
1148
1149 mpi_init( &l ); mpi_init( &ll );
1150
1151 /* Generate l such that 1 < l < p */
1152 do
1153 {
Ron Eldor57501ef2017-01-12 14:50:50 +02001154 MPI_CHK( mpi_fill_random( &l, p_size, f_rng, p_rng ) );
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +02001155
1156 while( mpi_cmp_mpi( &l, &grp->P ) >= 0 )
Paul Bakker3d8fb632014-04-17 12:42:41 +02001157 MPI_CHK( mpi_shift_r( &l, 1 ) );
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +02001158
1159 if( count++ > 10 )
Manuel Pégourié-Gonnard456d3b92013-09-16 18:04:38 +02001160 return( POLARSSL_ERR_ECP_RANDOM_FAILED );
Manuel Pégourié-Gonnard07de4b12013-09-02 16:26:04 +02001161 }
1162 while( mpi_cmp_int( &l, 1 ) <= 0 );
1163
1164 /* Z = l * Z */
1165 MPI_CHK( mpi_mul_mpi( &pt->Z, &pt->Z, &l ) ); MOD_MUL( pt->Z );
1166
1167 /* X = l^2 * X */
1168 MPI_CHK( mpi_mul_mpi( &ll, &l, &l ) ); MOD_MUL( ll );
1169 MPI_CHK( mpi_mul_mpi( &pt->X, &pt->X, &ll ) ); MOD_MUL( pt->X );
1170
1171 /* Y = l^3 * Y */
1172 MPI_CHK( mpi_mul_mpi( &ll, &ll, &l ) ); MOD_MUL( ll );
1173 MPI_CHK( mpi_mul_mpi( &pt->Y, &pt->Y, &ll ) ); MOD_MUL( pt->Y );
1174
1175cleanup:
1176 mpi_free( &l ); mpi_free( &ll );
1177
1178 return( ret );
1179}
1180
1181/*
Manuel Pégourié-Gonnardc30200e2013-11-20 18:39:55 +01001182 * Check and define parameters used by the comb method (see below for details)
1183 */
1184#if POLARSSL_ECP_WINDOW_SIZE < 2 || POLARSSL_ECP_WINDOW_SIZE > 7
1185#error "POLARSSL_ECP_WINDOW_SIZE out of bounds"
1186#endif
1187
1188/* d = ceil( n / w ) */
1189#define COMB_MAX_D ( POLARSSL_ECP_MAX_BITS + 1 ) / 2
1190
1191/* number of precomputed points */
1192#define COMB_MAX_PRE ( 1 << ( POLARSSL_ECP_WINDOW_SIZE - 1 ) )
1193
1194/*
1195 * Compute the representation of m that will be used with our comb method.
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001196 *
1197 * The basic comb method is described in GECC 3.44 for example. We use a
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001198 * modified version that provides resistance to SPA by avoiding zero
1199 * digits in the representation as in [3]. We modify the method further by
1200 * requiring that all K_i be odd, which has the small cost that our
Manuel Pégourié-Gonnardc30200e2013-11-20 18:39:55 +01001201 * representation uses one more K_i, due to carries.
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001202 *
1203 * Also, for the sake of compactness, only the seven low-order bits of x[i]
1204 * are used to represent K_i, and the msb of x[i] encodes the the sign (s_i in
1205 * the paper): it is set if and only if if s_i == -1;
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001206 *
1207 * Calling conventions:
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001208 * - x is an array of size d + 1
Manuel Pégourié-Gonnardc30200e2013-11-20 18:39:55 +01001209 * - w is the size, ie number of teeth, of the comb, and must be between
1210 * 2 and 7 (in practice, between 2 and POLARSSL_ECP_WINDOW_SIZE)
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001211 * - m is the MPI, expected to be odd and such that bitlength(m) <= w * d
1212 * (the result will be incorrect if these assumptions are not satisfied)
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001213 */
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001214static void ecp_comb_fixed( unsigned char x[], size_t d,
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001215 unsigned char w, const mpi *m )
1216{
1217 size_t i, j;
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001218 unsigned char c, cc, adjust;
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001219
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001220 memset( x, 0, d+1 );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001221
Manuel Pégourié-Gonnardedc1a1f2013-11-21 09:50:00 +01001222 /* First get the classical comb values (except for x_d = 0) */
1223 for( i = 0; i < d; i++ )
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001224 for( j = 0; j < w; j++ )
1225 x[i] |= mpi_get_bit( m, i + d * j ) << j;
1226
Manuel Pégourié-Gonnardedc1a1f2013-11-21 09:50:00 +01001227 /* Now make sure x_1 .. x_d are odd */
1228 c = 0;
1229 for( i = 1; i <= d; i++ )
1230 {
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001231 /* Add carry and update it */
1232 cc = x[i] & c;
1233 x[i] = x[i] ^ c;
1234 c = cc;
1235
Manuel Pégourié-Gonnardedc1a1f2013-11-21 09:50:00 +01001236 /* Adjust if needed, avoiding branches */
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001237 adjust = 1 - ( x[i] & 0x01 );
1238 c |= x[i] & ( x[i-1] * adjust );
1239 x[i] = x[i] ^ ( x[i-1] * adjust );
1240 x[i-1] |= adjust << 7;
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001241 }
1242}
1243
1244/*
1245 * Precompute points for the comb method
1246 *
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001247 * If i = i_{w-1} ... i_1 is the binary representation of i, then
1248 * T[i] = i_{w-1} 2^{(w-1)d} P + ... + i_1 2^d P + P
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001249 *
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001250 * T must be able to hold 2^{w - 1} elements
1251 *
1252 * Cost: d(w-1) D + (2^{w-1} - 1) A + 1 N(w-1) + 1 N(2^{w-1} - 1)
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001253 */
1254static int ecp_precompute_comb( const ecp_group *grp,
1255 ecp_point T[], const ecp_point *P,
1256 unsigned char w, size_t d )
1257{
1258 int ret;
Manuel Pégourié-Gonnardc30200e2013-11-20 18:39:55 +01001259 unsigned char i, k;
1260 size_t j;
1261 ecp_point *cur, *TT[COMB_MAX_PRE - 1];
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001262
1263 /*
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001264 * Set T[0] = P and
1265 * T[2^{l-1}] = 2^{dl} P for l = 1 .. w-1 (this is not the final value)
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001266 */
1267 MPI_CHK( ecp_copy( &T[0], P ) );
1268
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001269 k = 0;
Paul Bakker66d5d072014-06-17 16:39:18 +02001270 for( i = 1; i < ( 1U << ( w - 1 ) ); i <<= 1 )
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001271 {
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001272 cur = T + i;
1273 MPI_CHK( ecp_copy( cur, T + ( i >> 1 ) ) );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001274 for( j = 0; j < d; j++ )
1275 MPI_CHK( ecp_double_jac( grp, cur, cur ) );
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001276
1277 TT[k++] = cur;
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001278 }
1279
Manuel Pégourié-Gonnard26bc1c02013-12-30 19:33:33 +01001280 MPI_CHK( ecp_normalize_jac_many( grp, TT, k ) );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001281
1282 /*
1283 * Compute the remaining ones using the minimal number of additions
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001284 * Be careful to update T[2^l] only after using it!
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001285 */
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001286 k = 0;
Paul Bakker66d5d072014-06-17 16:39:18 +02001287 for( i = 1; i < ( 1U << ( w - 1 ) ); i <<= 1 )
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001288 {
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001289 j = i;
1290 while( j-- )
1291 {
Manuel Pégourié-Gonnard26bc1c02013-12-30 19:33:33 +01001292 MPI_CHK( ecp_add_mixed( grp, &T[i + j], &T[j], &T[i] ) );
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001293 TT[k++] = &T[i + j];
1294 }
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001295 }
1296
Manuel Pégourié-Gonnard26bc1c02013-12-30 19:33:33 +01001297 MPI_CHK( ecp_normalize_jac_many( grp, TT, k ) );
Manuel Pégourié-Gonnarde2820122013-11-21 10:08:50 +01001298
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001299cleanup:
1300 return( ret );
1301}
1302
1303/*
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001304 * Select precomputed point: R = sign(i) * T[ abs(i) / 2 ]
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001305 */
1306static int ecp_select_comb( const ecp_group *grp, ecp_point *R,
Manuel Pégourié-Gonnard96c7a922013-11-25 18:28:53 +01001307 const ecp_point T[], unsigned char t_len,
Manuel Pégourié-Gonnardd7283502013-11-21 20:00:38 +01001308 unsigned char i )
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001309{
1310 int ret;
Manuel Pégourié-Gonnardd7283502013-11-21 20:00:38 +01001311 unsigned char ii, j;
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001312
Manuel Pégourié-Gonnardd7283502013-11-21 20:00:38 +01001313 /* Ignore the "sign" bit and scale down */
1314 ii = ( i & 0x7Fu ) >> 1;
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001315
Manuel Pégourié-Gonnardd7283502013-11-21 20:00:38 +01001316 /* Read the whole table to thwart cache-based timing attacks */
1317 for( j = 0; j < t_len; j++ )
1318 {
1319 MPI_CHK( mpi_safe_cond_assign( &R->X, &T[j].X, j == ii ) );
1320 MPI_CHK( mpi_safe_cond_assign( &R->Y, &T[j].Y, j == ii ) );
1321 }
1322
Manuel Pégourié-Gonnard01fca5e2013-11-21 17:47:12 +01001323 /* Safely invert result if i is "negative" */
Manuel Pégourié-Gonnard3c0b4ea2013-12-02 19:44:41 +01001324 MPI_CHK( ecp_safe_invert_jac( grp, R, i >> 7 ) );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001325
1326cleanup:
1327 return( ret );
1328}
1329
1330/*
1331 * Core multiplication algorithm for the (modified) comb method.
1332 * This part is actually common with the basic comb method (GECC 3.44)
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001333 *
1334 * Cost: d A + d D + 1 R
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001335 */
1336static int ecp_mul_comb_core( const ecp_group *grp, ecp_point *R,
Manuel Pégourié-Gonnard96c7a922013-11-25 18:28:53 +01001337 const ecp_point T[], unsigned char t_len,
Manuel Pégourié-Gonnard70c14372013-11-20 20:07:26 +01001338 const unsigned char x[], size_t d,
1339 int (*f_rng)(void *, unsigned char *, size_t),
1340 void *p_rng )
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001341{
1342 int ret;
1343 ecp_point Txi;
1344 size_t i;
1345
1346 ecp_point_init( &Txi );
1347
Manuel Pégourié-Gonnard70c14372013-11-20 20:07:26 +01001348 /* Start with a non-zero point and randomize its coordinates */
Manuel Pégourié-Gonnard101a39f2013-11-20 14:47:19 +01001349 i = d;
Manuel Pégourié-Gonnardd7283502013-11-21 20:00:38 +01001350 MPI_CHK( ecp_select_comb( grp, R, T, t_len, x[i] ) );
Manuel Pégourié-Gonnard72c172a2013-12-30 16:04:55 +01001351 MPI_CHK( mpi_lset( &R->Z, 1 ) );
Manuel Pégourié-Gonnard70c14372013-11-20 20:07:26 +01001352 if( f_rng != 0 )
Manuel Pégourié-Gonnard3afa07f2013-12-03 13:28:21 +01001353 MPI_CHK( ecp_randomize_jac( grp, R, f_rng, p_rng ) );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001354
1355 while( i-- != 0 )
1356 {
1357 MPI_CHK( ecp_double_jac( grp, R, R ) );
Manuel Pégourié-Gonnardd7283502013-11-21 20:00:38 +01001358 MPI_CHK( ecp_select_comb( grp, &Txi, T, t_len, x[i] ) );
Manuel Pégourié-Gonnard469a2092013-11-21 18:20:43 +01001359 MPI_CHK( ecp_add_mixed( grp, R, R, &Txi ) );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001360 }
1361
1362cleanup:
1363 ecp_point_free( &Txi );
1364
1365 return( ret );
1366}
1367
1368/*
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001369 * Multiplication using the comb method,
1370 * for curves in short Weierstrass form
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001371 */
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001372static int ecp_mul_comb( ecp_group *grp, ecp_point *R,
1373 const mpi *m, const ecp_point *P,
1374 int (*f_rng)(void *, unsigned char *, size_t),
1375 void *p_rng )
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001376{
1377 int ret;
Manuel Pégourié-Gonnardd7283502013-11-21 20:00:38 +01001378 unsigned char w, m_is_odd, p_eq_g, pre_len, i;
1379 size_t d;
Manuel Pégourié-Gonnardc30200e2013-11-20 18:39:55 +01001380 unsigned char k[COMB_MAX_D + 1];
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001381 ecp_point *T;
1382 mpi M, mm;
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001383
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001384 mpi_init( &M );
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001385 mpi_init( &mm );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001386
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001387 /* we need N to be odd to trnaform m in an odd number, check now */
1388 if( mpi_get_bit( &grp->N, 0 ) != 1 )
1389 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
1390
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001391 /*
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001392 * Minimize the number of multiplications, that is minimize
Manuel Pégourié-Gonnard36daa132013-11-21 18:33:36 +01001393 * 10 * d * w + 18 * 2^(w-1) + 11 * d + 7 * w, with d = ceil( nbits / w )
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001394 * (see costs of the various parts, with 1S = 1M)
1395 */
1396 w = grp->nbits >= 384 ? 5 : 4;
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001397
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001398 /*
1399 * If P == G, pre-compute a bit more, since this may be re-used later.
Manuel Pégourié-Gonnard9e4191c2013-12-30 18:41:16 +01001400 * Just adding one avoids upping the cost of the first mul too much,
1401 * and the memory cost too.
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001402 */
Manuel Pégourié-Gonnard9e4191c2013-12-30 18:41:16 +01001403#if POLARSSL_ECP_FIXED_POINT_OPTIM == 1
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001404 p_eq_g = ( mpi_cmp_mpi( &P->Y, &grp->G.Y ) == 0 &&
1405 mpi_cmp_mpi( &P->X, &grp->G.X ) == 0 );
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001406 if( p_eq_g )
1407 w++;
Manuel Pégourié-Gonnard9e4191c2013-12-30 18:41:16 +01001408#else
1409 p_eq_g = 0;
1410#endif
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001411
1412 /*
Manuel Pégourié-Gonnard36daa132013-11-21 18:33:36 +01001413 * Make sure w is within bounds.
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001414 * (The last test is useful only for very small curves in the test suite.)
1415 */
1416 if( w > POLARSSL_ECP_WINDOW_SIZE )
1417 w = POLARSSL_ECP_WINDOW_SIZE;
Manuel Pégourié-Gonnard36daa132013-11-21 18:33:36 +01001418 if( w >= grp->nbits )
Manuel Pégourié-Gonnard04a02252013-11-20 22:57:38 +01001419 w = 2;
1420
1421 /* Other sizes that depend on w */
Manuel Pégourié-Gonnardc30200e2013-11-20 18:39:55 +01001422 pre_len = 1U << ( w - 1 );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001423 d = ( grp->nbits + w - 1 ) / w;
1424
1425 /*
1426 * Prepare precomputed points: if P == G we want to
Manuel Pégourié-Gonnardedc1a1f2013-11-21 09:50:00 +01001427 * use grp->T if already initialized, or initialize it.
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001428 */
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001429 T = p_eq_g ? grp->T : NULL;
Manuel Pégourié-Gonnardedc1a1f2013-11-21 09:50:00 +01001430
1431 if( T == NULL )
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001432 {
Mansour Moufidc531b4a2015-02-15 17:35:38 -05001433 T = polarssl_malloc( pre_len * sizeof( ecp_point ) );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001434 if( T == NULL )
1435 {
1436 ret = POLARSSL_ERR_ECP_MALLOC_FAILED;
1437 goto cleanup;
1438 }
1439
1440 for( i = 0; i < pre_len; i++ )
1441 ecp_point_init( &T[i] );
1442
1443 MPI_CHK( ecp_precompute_comb( grp, T, P, w, d ) );
1444
1445 if( p_eq_g )
1446 {
1447 grp->T = T;
1448 grp->T_size = pre_len;
1449 }
1450 }
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001451
1452 /*
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001453 * Make sure M is odd (M = m or M = N - m, since N is odd)
1454 * using the fact that m * P = - (N - m) * P
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001455 */
1456 m_is_odd = ( mpi_get_bit( m, 0 ) == 1 );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001457 MPI_CHK( mpi_copy( &M, m ) );
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001458 MPI_CHK( mpi_sub_mpi( &mm, &grp->N, m ) );
1459 MPI_CHK( mpi_safe_cond_assign( &M, &mm, ! m_is_odd ) );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001460
1461 /*
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001462 * Go for comb multiplication, R = M * P
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001463 */
1464 ecp_comb_fixed( k, d, w, &M );
Manuel Pégourié-Gonnardd7283502013-11-21 20:00:38 +01001465 MPI_CHK( ecp_mul_comb_core( grp, R, T, pre_len, k, d, f_rng, p_rng ) );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001466
1467 /*
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001468 * Now get m * P from M * P and normalize it
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001469 */
Manuel Pégourié-Gonnard3c0b4ea2013-12-02 19:44:41 +01001470 MPI_CHK( ecp_safe_invert_jac( grp, R, ! m_is_odd ) );
1471 MPI_CHK( ecp_normalize_jac( grp, R ) );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001472
1473cleanup:
1474
1475 if( T != NULL && ! p_eq_g )
1476 {
1477 for( i = 0; i < pre_len; i++ )
1478 ecp_point_free( &T[i] );
1479 polarssl_free( T );
1480 }
1481
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001482 mpi_free( &M );
Manuel Pégourié-Gonnardaade42f2013-11-21 19:19:54 +01001483 mpi_free( &mm );
1484
1485 if( ret != 0 )
1486 ecp_point_free( R );
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001487
1488 return( ret );
1489}
1490
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +01001491#endif /* POLARSSL_ECP_SHORT_WEIERSTRASS */
1492
1493#if defined(POLARSSL_ECP_MONTGOMERY)
1494/*
1495 * For Montgomery curves, we do all the internal arithmetic in projective
1496 * coordinates. Import/export of points uses only the x coordinates, which is
1497 * internaly represented as X / Z.
1498 *
1499 * For scalar multiplication, we'll use a Montgomery ladder.
1500 */
1501
Manuel Pégourié-Gonnardd1c1ba92013-11-16 15:50:12 +01001502/*
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001503 * Normalize Montgomery x/z coordinates: X = X/Z, Z = 1
1504 * Cost: 1M + 1I
1505 */
1506static int ecp_normalize_mxz( const ecp_group *grp, ecp_point *P )
1507{
1508 int ret;
1509
1510 MPI_CHK( mpi_inv_mod( &P->Z, &P->Z, &grp->P ) );
1511 MPI_CHK( mpi_mul_mpi( &P->X, &P->X, &P->Z ) ); MOD_MUL( P->X );
1512 MPI_CHK( mpi_lset( &P->Z, 1 ) );
1513
1514cleanup:
1515 return( ret );
1516}
1517
1518/*
Manuel Pégourié-Gonnard3afa07f2013-12-03 13:28:21 +01001519 * Randomize projective x/z coordinates:
1520 * (X, Z) -> (l X, l Z) for random l
1521 * This is sort of the reverse operation of ecp_normalize_mxz().
1522 *
1523 * This countermeasure was first suggested in [2].
1524 * Cost: 2M
1525 */
1526static int ecp_randomize_mxz( const ecp_group *grp, ecp_point *P,
1527 int (*f_rng)(void *, unsigned char *, size_t), void *p_rng )
1528{
1529 int ret;
1530 mpi l;
Paul Bakker66d5d072014-06-17 16:39:18 +02001531 size_t p_size = ( grp->pbits + 7 ) / 8;
Manuel Pégourié-Gonnard3afa07f2013-12-03 13:28:21 +01001532 int count = 0;
1533
1534 mpi_init( &l );
1535
1536 /* Generate l such that 1 < l < p */
1537 do
1538 {
Ron Eldor57501ef2017-01-12 14:50:50 +02001539 MPI_CHK( mpi_fill_random( &l, p_size, f_rng, p_rng ) );
Manuel Pégourié-Gonnard3afa07f2013-12-03 13:28:21 +01001540
1541 while( mpi_cmp_mpi( &l, &grp->P ) >= 0 )
Paul Bakker3d8fb632014-04-17 12:42:41 +02001542 MPI_CHK( mpi_shift_r( &l, 1 ) );
Manuel Pégourié-Gonnard3afa07f2013-12-03 13:28:21 +01001543
1544 if( count++ > 10 )
1545 return( POLARSSL_ERR_ECP_RANDOM_FAILED );
1546 }
1547 while( mpi_cmp_int( &l, 1 ) <= 0 );
1548
1549 MPI_CHK( mpi_mul_mpi( &P->X, &P->X, &l ) ); MOD_MUL( P->X );
1550 MPI_CHK( mpi_mul_mpi( &P->Z, &P->Z, &l ) ); MOD_MUL( P->Z );
1551
1552cleanup:
1553 mpi_free( &l );
1554
1555 return( ret );
1556}
1557
1558/*
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001559 * Double-and-add: R = 2P, S = P + Q, with d = X(P - Q),
1560 * for Montgomery curves in x/z coordinates.
1561 *
1562 * http://www.hyperelliptic.org/EFD/g1p/auto-code/montgom/xz/ladder/mladd-1987-m.op3
1563 * with
1564 * d = X1
1565 * P = (X2, Z2)
1566 * Q = (X3, Z3)
1567 * R = (X4, Z4)
1568 * S = (X5, Z5)
1569 * and eliminating temporary variables tO, ..., t4.
1570 *
1571 * Cost: 5M + 4S
1572 */
1573static int ecp_double_add_mxz( const ecp_group *grp,
1574 ecp_point *R, ecp_point *S,
1575 const ecp_point *P, const ecp_point *Q,
1576 const mpi *d )
1577{
1578 int ret;
1579 mpi A, AA, B, BB, E, C, D, DA, CB;
1580
1581 mpi_init( &A ); mpi_init( &AA ); mpi_init( &B );
1582 mpi_init( &BB ); mpi_init( &E ); mpi_init( &C );
1583 mpi_init( &D ); mpi_init( &DA ); mpi_init( &CB );
1584
1585 MPI_CHK( mpi_add_mpi( &A, &P->X, &P->Z ) ); MOD_ADD( A );
1586 MPI_CHK( mpi_mul_mpi( &AA, &A, &A ) ); MOD_MUL( AA );
1587 MPI_CHK( mpi_sub_mpi( &B, &P->X, &P->Z ) ); MOD_SUB( B );
1588 MPI_CHK( mpi_mul_mpi( &BB, &B, &B ) ); MOD_MUL( BB );
1589 MPI_CHK( mpi_sub_mpi( &E, &AA, &BB ) ); MOD_SUB( E );
1590 MPI_CHK( mpi_add_mpi( &C, &Q->X, &Q->Z ) ); MOD_ADD( C );
1591 MPI_CHK( mpi_sub_mpi( &D, &Q->X, &Q->Z ) ); MOD_SUB( D );
1592 MPI_CHK( mpi_mul_mpi( &DA, &D, &A ) ); MOD_MUL( DA );
1593 MPI_CHK( mpi_mul_mpi( &CB, &C, &B ) ); MOD_MUL( CB );
1594 MPI_CHK( mpi_add_mpi( &S->X, &DA, &CB ) ); MOD_MUL( S->X );
1595 MPI_CHK( mpi_mul_mpi( &S->X, &S->X, &S->X ) ); MOD_MUL( S->X );
1596 MPI_CHK( mpi_sub_mpi( &S->Z, &DA, &CB ) ); MOD_SUB( S->Z );
1597 MPI_CHK( mpi_mul_mpi( &S->Z, &S->Z, &S->Z ) ); MOD_MUL( S->Z );
1598 MPI_CHK( mpi_mul_mpi( &S->Z, d, &S->Z ) ); MOD_MUL( S->Z );
1599 MPI_CHK( mpi_mul_mpi( &R->X, &AA, &BB ) ); MOD_MUL( R->X );
1600 MPI_CHK( mpi_mul_mpi( &R->Z, &grp->A, &E ) ); MOD_MUL( R->Z );
1601 MPI_CHK( mpi_add_mpi( &R->Z, &BB, &R->Z ) ); MOD_ADD( R->Z );
1602 MPI_CHK( mpi_mul_mpi( &R->Z, &E, &R->Z ) ); MOD_MUL( R->Z );
1603
1604cleanup:
1605 mpi_free( &A ); mpi_free( &AA ); mpi_free( &B );
1606 mpi_free( &BB ); mpi_free( &E ); mpi_free( &C );
1607 mpi_free( &D ); mpi_free( &DA ); mpi_free( &CB );
1608
1609 return( ret );
1610}
1611
1612/*
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001613 * Multiplication with Montgomery ladder in x/z coordinates,
1614 * for curves in Montgomery form
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001615 */
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001616static int ecp_mul_mxz( ecp_group *grp, ecp_point *R,
1617 const mpi *m, const ecp_point *P,
1618 int (*f_rng)(void *, unsigned char *, size_t),
1619 void *p_rng )
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001620{
1621 int ret;
1622 size_t i;
Manuel Pégourié-Gonnardb6f45a62013-12-04 21:54:36 +01001623 unsigned char b;
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001624 ecp_point RP;
1625 mpi PX;
1626
1627 ecp_point_init( &RP ); mpi_init( &PX );
1628
Manuel Pégourié-Gonnard3afa07f2013-12-03 13:28:21 +01001629 /* Save PX and read from P before writing to R, in case P == R */
Paul Bakker3d8fb632014-04-17 12:42:41 +02001630 MPI_CHK( mpi_copy( &PX, &P->X ) );
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001631 MPI_CHK( ecp_copy( &RP, P ) );
Manuel Pégourié-Gonnard357ff652013-12-04 18:39:17 +01001632
1633 /* Set R to zero in modified x/z coordinates */
1634 MPI_CHK( mpi_lset( &R->X, 1 ) );
1635 MPI_CHK( mpi_lset( &R->Z, 0 ) );
1636 mpi_free( &R->Y );
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001637
Manuel Pégourié-Gonnard93f41db2013-12-05 10:48:42 +01001638 /* RP.X might be sligtly larger than P, so reduce it */
1639 MOD_ADD( RP.X );
1640
Manuel Pégourié-Gonnard3afa07f2013-12-03 13:28:21 +01001641 /* Randomize coordinates of the starting point */
Manuel Pégourié-Gonnard357ff652013-12-04 18:39:17 +01001642 if( f_rng != NULL )
1643 MPI_CHK( ecp_randomize_mxz( grp, &RP, f_rng, p_rng ) );
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001644
Manuel Pégourié-Gonnardb6f45a62013-12-04 21:54:36 +01001645 /* Loop invariant: R = result so far, RP = R + P */
Manuel Pégourié-Gonnard357ff652013-12-04 18:39:17 +01001646 i = mpi_msb( m ); /* one past the (zero-based) most significant bit */
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001647 while( i-- > 0 )
1648 {
Manuel Pégourié-Gonnardb6f45a62013-12-04 21:54:36 +01001649 b = mpi_get_bit( m, i );
1650 /*
1651 * if (b) R = 2R + P else R = 2R,
1652 * which is:
1653 * if (b) double_add( RP, R, RP, R )
1654 * else double_add( R, RP, R, RP )
1655 * but using safe conditional swaps to avoid leaks
1656 */
1657 MPI_CHK( mpi_safe_cond_swap( &R->X, &RP.X, b ) );
1658 MPI_CHK( mpi_safe_cond_swap( &R->Z, &RP.Z, b ) );
1659 MPI_CHK( ecp_double_add_mxz( grp, R, &RP, R, &RP, &PX ) );
1660 MPI_CHK( mpi_safe_cond_swap( &R->X, &RP.X, b ) );
1661 MPI_CHK( mpi_safe_cond_swap( &R->Z, &RP.Z, b ) );
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001662 }
1663
1664 MPI_CHK( ecp_normalize_mxz( grp, R ) );
1665
1666cleanup:
1667 ecp_point_free( &RP ); mpi_free( &PX );
1668
1669 return( ret );
1670}
1671
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +01001672#endif /* POLARSSL_ECP_MONTGOMERY */
1673
Manuel Pégourié-Gonnardd9ea82e72013-12-03 12:02:28 +01001674/*
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001675 * Multiplication R = m * P
1676 */
1677int ecp_mul( ecp_group *grp, ecp_point *R,
1678 const mpi *m, const ecp_point *P,
1679 int (*f_rng)(void *, unsigned char *, size_t), void *p_rng )
1680{
1681 int ret;
1682
1683 /* Common sanity checks */
1684 if( mpi_cmp_int( &P->Z, 1 ) != 0 )
1685 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
1686
1687 if( ( ret = ecp_check_privkey( grp, m ) ) != 0 ||
1688 ( ret = ecp_check_pubkey( grp, P ) ) != 0 )
1689 return( ret );
1690
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +01001691#if defined(POLARSSL_ECP_MONTGOMERY)
1692 if( ecp_get_type( grp ) == POLARSSL_ECP_TYPE_MONTGOMERY )
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001693 return( ecp_mul_mxz( grp, R, m, P, f_rng, p_rng ) );
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +01001694#endif
1695#if defined(POLARSSL_ECP_SHORT_WEIERSTRASS)
1696 if( ecp_get_type( grp ) == POLARSSL_ECP_TYPE_SHORT_WEIERSTRASS )
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001697 return( ecp_mul_comb( grp, R, m, P, f_rng, p_rng ) );
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +01001698#endif
1699 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001700}
1701
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001702#if defined(POLARSSL_ECP_SHORT_WEIERSTRASS)
Manuel Pégourié-Gonnarda0179b82013-12-04 11:49:20 +01001703/*
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001704 * Check that an affine point is valid as a public key,
1705 * short weierstrass curves (SEC1 3.2.3.1)
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001706 */
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001707static int ecp_check_pubkey_sw( const ecp_group *grp, const ecp_point *pt )
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001708{
1709 int ret;
1710 mpi YY, RHS;
1711
Manuel Pégourié-Gonnard312d2e82013-12-04 11:08:01 +01001712 /* pt coordinates must be normalized for our checks */
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001713 if( mpi_cmp_int( &pt->X, 0 ) < 0 ||
1714 mpi_cmp_int( &pt->Y, 0 ) < 0 ||
1715 mpi_cmp_mpi( &pt->X, &grp->P ) >= 0 ||
1716 mpi_cmp_mpi( &pt->Y, &grp->P ) >= 0 )
Manuel Pégourié-Gonnard456d3b92013-09-16 18:04:38 +02001717 return( POLARSSL_ERR_ECP_INVALID_KEY );
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001718
1719 mpi_init( &YY ); mpi_init( &RHS );
1720
1721 /*
1722 * YY = Y^2
Manuel Pégourié-Gonnardcd7458a2013-10-08 13:11:30 +02001723 * RHS = X (X^2 + A) + B = X^3 + A X + B
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001724 */
Manuel Pégourié-Gonnardcd7458a2013-10-08 13:11:30 +02001725 MPI_CHK( mpi_mul_mpi( &YY, &pt->Y, &pt->Y ) ); MOD_MUL( YY );
1726 MPI_CHK( mpi_mul_mpi( &RHS, &pt->X, &pt->X ) ); MOD_MUL( RHS );
Manuel Pégourié-Gonnard73cc01d2013-12-06 12:41:30 +01001727
1728 /* Special case for A = -3 */
1729 if( grp->A.p == NULL )
1730 {
1731 MPI_CHK( mpi_sub_int( &RHS, &RHS, 3 ) ); MOD_SUB( RHS );
1732 }
1733 else
1734 {
1735 MPI_CHK( mpi_add_mpi( &RHS, &RHS, &grp->A ) ); MOD_ADD( RHS );
1736 }
1737
Manuel Pégourié-Gonnardcd7458a2013-10-08 13:11:30 +02001738 MPI_CHK( mpi_mul_mpi( &RHS, &RHS, &pt->X ) ); MOD_MUL( RHS );
1739 MPI_CHK( mpi_add_mpi( &RHS, &RHS, &grp->B ) ); MOD_ADD( RHS );
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001740
1741 if( mpi_cmp_mpi( &YY, &RHS ) != 0 )
Manuel Pégourié-Gonnard456d3b92013-09-16 18:04:38 +02001742 ret = POLARSSL_ERR_ECP_INVALID_KEY;
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001743
1744cleanup:
1745
1746 mpi_free( &YY ); mpi_free( &RHS );
1747
1748 return( ret );
1749}
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001750#endif /* POLARSSL_ECP_SHORT_WEIERSTRASS */
1751
1752
1753#if defined(POLARSSL_ECP_MONTGOMERY)
1754/*
1755 * Check validity of a public key for Montgomery curves with x-only schemes
1756 */
1757static int ecp_check_pubkey_mx( const ecp_group *grp, const ecp_point *pt )
1758{
1759 /* [M255 p. 5] Just check X is the correct number of bytes */
1760 if( mpi_size( &pt->X ) > ( grp->nbits + 7 ) / 8 )
1761 return( POLARSSL_ERR_ECP_INVALID_KEY );
1762
1763 return( 0 );
1764}
1765#endif /* POLARSSL_ECP_MONTGOMERY */
1766
1767/*
1768 * Check that a point is valid as a public key
1769 */
1770int ecp_check_pubkey( const ecp_group *grp, const ecp_point *pt )
1771{
1772 /* Must use affine coordinates */
1773 if( mpi_cmp_int( &pt->Z, 1 ) != 0 )
1774 return( POLARSSL_ERR_ECP_INVALID_KEY );
1775
1776#if defined(POLARSSL_ECP_MONTGOMERY)
1777 if( ecp_get_type( grp ) == POLARSSL_ECP_TYPE_MONTGOMERY )
1778 return( ecp_check_pubkey_mx( grp, pt ) );
1779#endif
1780#if defined(POLARSSL_ECP_SHORT_WEIERSTRASS)
1781 if( ecp_get_type( grp ) == POLARSSL_ECP_TYPE_SHORT_WEIERSTRASS )
1782 return( ecp_check_pubkey_sw( grp, pt ) );
1783#endif
1784 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
1785}
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001786
1787/*
Manuel Pégourié-Gonnard312d2e82013-12-04 11:08:01 +01001788 * Check that an mpi is valid as a private key
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001789 */
Manuel Pégourié-Gonnardde44a4a2013-07-09 16:05:52 +02001790int ecp_check_privkey( const ecp_group *grp, const mpi *d )
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001791{
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001792#if defined(POLARSSL_ECP_MONTGOMERY)
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +01001793 if( ecp_get_type( grp ) == POLARSSL_ECP_TYPE_MONTGOMERY )
Manuel Pégourié-Gonnard312d2e82013-12-04 11:08:01 +01001794 {
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001795 /* see [M255] page 5 */
Manuel Pégourié-Gonnard312d2e82013-12-04 11:08:01 +01001796 if( mpi_get_bit( d, 0 ) != 0 ||
1797 mpi_get_bit( d, 1 ) != 0 ||
1798 mpi_get_bit( d, 2 ) != 0 ||
1799 mpi_msb( d ) - 1 != grp->nbits ) /* mpi_msb is one-based! */
1800 return( POLARSSL_ERR_ECP_INVALID_KEY );
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001801 else
1802 return( 0 );
Manuel Pégourié-Gonnard312d2e82013-12-04 11:08:01 +01001803 }
Paul Bakker9af723c2014-05-01 13:03:14 +02001804#endif /* POLARSSL_ECP_MONTGOMERY */
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001805#if defined(POLARSSL_ECP_SHORT_WEIERSTRASS)
1806 if( ecp_get_type( grp ) == POLARSSL_ECP_TYPE_SHORT_WEIERSTRASS )
Manuel Pégourié-Gonnard312d2e82013-12-04 11:08:01 +01001807 {
1808 /* see SEC1 3.2 */
1809 if( mpi_cmp_int( d, 1 ) < 0 ||
1810 mpi_cmp_mpi( d, &grp->N ) >= 0 )
1811 return( POLARSSL_ERR_ECP_INVALID_KEY );
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001812 else
1813 return( 0 );
Manuel Pégourié-Gonnard312d2e82013-12-04 11:08:01 +01001814 }
Paul Bakker9af723c2014-05-01 13:03:14 +02001815#endif /* POLARSSL_ECP_SHORT_WEIERSTRASS */
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001816
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001817 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
Manuel Pégourié-Gonnardc8dc2952013-07-01 14:06:13 +02001818}
1819
1820/*
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001821 * Generate a keypair
Manuel Pégourié-Gonnard45a035a2013-01-26 14:42:45 +01001822 */
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02001823int ecp_gen_keypair( ecp_group *grp, mpi *d, ecp_point *Q,
Manuel Pégourié-Gonnard45a035a2013-01-26 14:42:45 +01001824 int (*f_rng)(void *, unsigned char *, size_t),
1825 void *p_rng )
1826{
Manuel Pégourié-Gonnardc9573992014-01-03 12:54:00 +01001827 int ret;
Paul Bakker66d5d072014-06-17 16:39:18 +02001828 size_t n_size = ( grp->nbits + 7 ) / 8;
Manuel Pégourié-Gonnard45a035a2013-01-26 14:42:45 +01001829
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001830#if defined(POLARSSL_ECP_MONTGOMERY)
Manuel Pégourié-Gonnard7c94d8b2013-12-04 23:15:46 +01001831 if( ecp_get_type( grp ) == POLARSSL_ECP_TYPE_MONTGOMERY )
Manuel Pégourié-Gonnard45a035a2013-01-26 14:42:45 +01001832 {
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001833 /* [M225] page 5 */
1834 size_t b;
1835
Manuel Pégourié-Gonnardc9573992014-01-03 12:54:00 +01001836 MPI_CHK( mpi_fill_random( d, n_size, f_rng, p_rng ) );
Manuel Pégourié-Gonnard45a035a2013-01-26 14:42:45 +01001837
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001838 /* Make sure the most significant bit is nbits */
1839 b = mpi_msb( d ) - 1; /* mpi_msb is one-based */
1840 if( b > grp->nbits )
Manuel Pégourié-Gonnardc9573992014-01-03 12:54:00 +01001841 MPI_CHK( mpi_shift_r( d, b - grp->nbits ) );
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001842 else
Manuel Pégourié-Gonnardc9573992014-01-03 12:54:00 +01001843 MPI_CHK( mpi_set_bit( d, grp->nbits, 1 ) );
Manuel Pégourié-Gonnard45a035a2013-01-26 14:42:45 +01001844
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001845 /* Make sure the last three bits are unset */
Manuel Pégourié-Gonnardc9573992014-01-03 12:54:00 +01001846 MPI_CHK( mpi_set_bit( d, 0, 0 ) );
1847 MPI_CHK( mpi_set_bit( d, 1, 0 ) );
1848 MPI_CHK( mpi_set_bit( d, 2, 0 ) );
Manuel Pégourié-Gonnard45a035a2013-01-26 14:42:45 +01001849 }
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001850 else
Paul Bakker9af723c2014-05-01 13:03:14 +02001851#endif /* POLARSSL_ECP_MONTGOMERY */
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001852#if defined(POLARSSL_ECP_SHORT_WEIERSTRASS)
1853 if( ecp_get_type( grp ) == POLARSSL_ECP_TYPE_SHORT_WEIERSTRASS )
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001854 {
1855 /* SEC1 3.2.1: Generate d such that 1 <= n < N */
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001856 int count = 0;
Manuel Pégourié-Gonnard79f73b92014-01-03 12:35:05 +01001857
1858 /*
1859 * Match the procedure given in RFC 6979 (deterministic ECDSA):
1860 * - use the same byte ordering;
1861 * - keep the leftmost nbits bits of the generated octet string;
1862 * - try until result is in the desired range.
1863 * This also avoids any biais, which is especially important for ECDSA.
1864 */
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001865 do
1866 {
Hanno Becker754663f2017-10-25 16:08:19 +01001867 MPI_CHK( mpi_fill_random( d, n_size, f_rng, p_rng ) );
Manuel Pégourié-Gonnardc9573992014-01-03 12:54:00 +01001868 MPI_CHK( mpi_shift_r( d, 8 * n_size - grp->nbits ) );
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001869
Manuel Pégourié-Gonnard6e8e34d2014-01-28 19:30:56 +01001870 /*
1871 * Each try has at worst a probability 1/2 of failing (the msb has
1872 * a probability 1/2 of being 0, and then the result will be < N),
1873 * so after 30 tries failure probability is a most 2**(-30).
1874 *
1875 * For most curves, 1 try is enough with overwhelming probability,
1876 * since N starts with a lot of 1s in binary, but some curves
1877 * such as secp224k1 are actually very close to the worst case.
1878 */
1879 if( ++count > 30 )
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001880 return( POLARSSL_ERR_ECP_RANDOM_FAILED );
1881 }
Manuel Pégourié-Gonnard79f73b92014-01-03 12:35:05 +01001882 while( mpi_cmp_int( d, 1 ) < 0 ||
1883 mpi_cmp_mpi( d, &grp->N ) >= 0 );
Manuel Pégourié-Gonnardfe0af402013-12-04 18:14:55 +01001884 }
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001885 else
Paul Bakker9af723c2014-05-01 13:03:14 +02001886#endif /* POLARSSL_ECP_SHORT_WEIERSTRASS */
Manuel Pégourié-Gonnardd9622732013-12-05 10:06:06 +01001887 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
Manuel Pégourié-Gonnard45a035a2013-01-26 14:42:45 +01001888
Manuel Pégourié-Gonnardc9573992014-01-03 12:54:00 +01001889cleanup:
1890 if( ret != 0 )
1891 return( ret );
1892
Manuel Pégourié-Gonnarde09d2f82013-09-02 14:29:09 +02001893 return( ecp_mul( grp, Q, d, &grp->G, f_rng, p_rng ) );
Manuel Pégourié-Gonnard45a035a2013-01-26 14:42:45 +01001894}
Manuel Pégourié-Gonnardefaa31e2012-11-06 21:34:35 +01001895
Manuel Pégourié-Gonnard104ee1d2013-11-30 14:13:16 +01001896/*
1897 * Generate a keypair, prettier wrapper
1898 */
1899int ecp_gen_key( ecp_group_id grp_id, ecp_keypair *key,
1900 int (*f_rng)(void *, unsigned char *, size_t), void *p_rng )
1901{
1902 int ret;
1903
1904 if( ( ret = ecp_use_known_dp( &key->grp, grp_id ) ) != 0 )
1905 return( ret );
1906
1907 return( ecp_gen_keypair( &key->grp, &key->d, &key->Q, f_rng, p_rng ) );
1908}
1909
Manuel Pégourié-Gonnard30668d62014-11-06 15:25:32 +01001910/*
1911 * Check a public-private key pair
1912 */
1913int ecp_check_pub_priv( const ecp_keypair *pub, const ecp_keypair *prv )
1914{
1915 int ret;
1916 ecp_point Q;
1917 ecp_group grp;
1918
1919 if( pub->grp.id == POLARSSL_ECP_DP_NONE ||
1920 pub->grp.id != prv->grp.id ||
1921 mpi_cmp_mpi( &pub->Q.X, &prv->Q.X ) ||
1922 mpi_cmp_mpi( &pub->Q.Y, &prv->Q.Y ) ||
1923 mpi_cmp_mpi( &pub->Q.Z, &prv->Q.Z ) )
1924 {
1925 return( POLARSSL_ERR_ECP_BAD_INPUT_DATA );
1926 }
1927
1928 ecp_point_init( &Q );
1929 ecp_group_init( &grp );
1930
1931 /* ecp_mul() needs a non-const group... */
1932 ecp_group_copy( &grp, &prv->grp );
1933
1934 /* Also checks d is valid */
1935 MPI_CHK( ecp_mul( &grp, &Q, &prv->d, &prv->grp.G, NULL, NULL ) );
1936
1937 if( mpi_cmp_mpi( &Q.X, &prv->Q.X ) ||
1938 mpi_cmp_mpi( &Q.Y, &prv->Q.Y ) ||
1939 mpi_cmp_mpi( &Q.Z, &prv->Q.Z ) )
1940 {
1941 ret = POLARSSL_ERR_ECP_BAD_INPUT_DATA;
1942 goto cleanup;
1943 }
1944
1945cleanup:
1946 ecp_point_free( &Q );
1947 ecp_group_free( &grp );
1948
1949 return( ret );
1950}
1951
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +01001952#if defined(POLARSSL_SELF_TEST)
1953
Manuel Pégourié-Gonnardb505c272012-11-05 17:27:54 +01001954/*
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +01001955 * Checkup routine
1956 */
1957int ecp_self_test( int verbose )
1958{
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01001959 int ret;
1960 size_t i;
1961 ecp_group grp;
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02001962 ecp_point R, P;
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01001963 mpi m;
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +01001964 unsigned long add_c_prev, dbl_c_prev, mul_c_prev;
Manuel Pégourié-Gonnardb8012fc2013-10-10 15:40:49 +02001965 /* exponents especially adapted for secp192r1 */
Paul Bakkerb6c5d2e2013-06-25 16:25:17 +02001966 const char *exponents[] =
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01001967 {
Manuel Pégourié-Gonnardb63f9e92012-11-21 13:00:58 +01001968 "000000000000000000000000000000000000000000000001", /* one */
Manuel Pégourié-Gonnardff27b7c2013-11-21 09:28:03 +01001969 "FFFFFFFFFFFFFFFFFFFFFFFF99DEF836146BC9B1B4D22830", /* N - 1 */
Manuel Pégourié-Gonnardb63f9e92012-11-21 13:00:58 +01001970 "5EA6F389A38B8BC81E767753B15AA5569E1782E30ABE7D25", /* random */
Manuel Pégourié-Gonnardff27b7c2013-11-21 09:28:03 +01001971 "400000000000000000000000000000000000000000000000", /* one and zeros */
1972 "7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF", /* all ones */
1973 "555555555555555555555555555555555555555555555555", /* 101010... */
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01001974 };
1975
1976 ecp_group_init( &grp );
1977 ecp_point_init( &R );
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02001978 ecp_point_init( &P );
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01001979 mpi_init( &m );
1980
Manuel Pégourié-Gonnardb8012fc2013-10-10 15:40:49 +02001981 /* Use secp192r1 if available, or any available curve */
Paul Bakker5dc6b5f2013-06-29 23:26:34 +02001982#if defined(POLARSSL_ECP_DP_SECP192R1_ENABLED)
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01001983 MPI_CHK( ecp_use_known_dp( &grp, POLARSSL_ECP_DP_SECP192R1 ) );
Paul Bakker5dc6b5f2013-06-29 23:26:34 +02001984#else
Manuel Pégourié-Gonnardb8012fc2013-10-10 15:40:49 +02001985 MPI_CHK( ecp_use_known_dp( &grp, ecp_curve_list()->grp_id ) );
1986#endif
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01001987
1988 if( verbose != 0 )
Paul Bakker7dc4c442014-02-01 22:50:26 +01001989 polarssl_printf( " ECP test #1 (constant op_count, base point G): " );
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02001990
1991 /* Do a dummy multiplication first to trigger precomputation */
1992 MPI_CHK( mpi_lset( &m, 2 ) );
1993 MPI_CHK( ecp_mul( &grp, &P, &m, &grp.G, NULL, NULL ) );
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01001994
1995 add_count = 0;
1996 dbl_count = 0;
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +01001997 mul_count = 0;
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01001998 MPI_CHK( mpi_read_string( &m, 16, exponents[0] ) );
Manuel Pégourié-Gonnarde09d2f82013-09-02 14:29:09 +02001999 MPI_CHK( ecp_mul( &grp, &R, &m, &grp.G, NULL, NULL ) );
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002000
2001 for( i = 1; i < sizeof( exponents ) / sizeof( exponents[0] ); i++ )
2002 {
2003 add_c_prev = add_count;
2004 dbl_c_prev = dbl_count;
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +01002005 mul_c_prev = mul_count;
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002006 add_count = 0;
2007 dbl_count = 0;
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +01002008 mul_count = 0;
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002009
2010 MPI_CHK( mpi_read_string( &m, 16, exponents[i] ) );
Manuel Pégourié-Gonnarde09d2f82013-09-02 14:29:09 +02002011 MPI_CHK( ecp_mul( &grp, &R, &m, &grp.G, NULL, NULL ) );
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002012
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +01002013 if( add_count != add_c_prev ||
2014 dbl_count != dbl_c_prev ||
2015 mul_count != mul_c_prev )
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002016 {
2017 if( verbose != 0 )
Paul Bakker7dc4c442014-02-01 22:50:26 +01002018 polarssl_printf( "failed (%u)\n", (unsigned int) i );
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002019
2020 ret = 1;
2021 goto cleanup;
2022 }
2023 }
2024
2025 if( verbose != 0 )
Paul Bakker7dc4c442014-02-01 22:50:26 +01002026 polarssl_printf( "passed\n" );
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002027
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02002028 if( verbose != 0 )
Paul Bakker7dc4c442014-02-01 22:50:26 +01002029 polarssl_printf( " ECP test #2 (constant op_count, other point): " );
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02002030 /* We computed P = 2G last time, use it */
2031
2032 add_count = 0;
2033 dbl_count = 0;
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +01002034 mul_count = 0;
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02002035 MPI_CHK( mpi_read_string( &m, 16, exponents[0] ) );
2036 MPI_CHK( ecp_mul( &grp, &R, &m, &P, NULL, NULL ) );
2037
2038 for( i = 1; i < sizeof( exponents ) / sizeof( exponents[0] ); i++ )
2039 {
2040 add_c_prev = add_count;
2041 dbl_c_prev = dbl_count;
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +01002042 mul_c_prev = mul_count;
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02002043 add_count = 0;
2044 dbl_count = 0;
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +01002045 mul_count = 0;
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02002046
2047 MPI_CHK( mpi_read_string( &m, 16, exponents[i] ) );
2048 MPI_CHK( ecp_mul( &grp, &R, &m, &P, NULL, NULL ) );
2049
Manuel Pégourié-Gonnard91814812013-11-21 20:23:55 +01002050 if( add_count != add_c_prev ||
2051 dbl_count != dbl_c_prev ||
2052 mul_count != mul_c_prev )
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02002053 {
2054 if( verbose != 0 )
Paul Bakker7dc4c442014-02-01 22:50:26 +01002055 polarssl_printf( "failed (%u)\n", (unsigned int) i );
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02002056
2057 ret = 1;
2058 goto cleanup;
2059 }
2060 }
2061
2062 if( verbose != 0 )
Paul Bakker7dc4c442014-02-01 22:50:26 +01002063 polarssl_printf( "passed\n" );
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02002064
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002065cleanup:
2066
2067 if( ret < 0 && verbose != 0 )
Paul Bakker7dc4c442014-02-01 22:50:26 +01002068 polarssl_printf( "Unexpected error, return code = %08X\n", ret );
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002069
2070 ecp_group_free( &grp );
2071 ecp_point_free( &R );
Manuel Pégourié-Gonnard161ef962013-09-17 19:13:10 +02002072 ecp_point_free( &P );
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002073 mpi_free( &m );
2074
2075 if( verbose != 0 )
Paul Bakker7dc4c442014-02-01 22:50:26 +01002076 polarssl_printf( "\n" );
Manuel Pégourié-Gonnardb4a310b2012-11-13 20:57:00 +01002077
2078 return( ret );
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +01002079}
2080
Paul Bakker9af723c2014-05-01 13:03:14 +02002081#endif /* POLARSSL_SELF_TEST */
Manuel Pégourié-Gonnard39d2adb2012-10-31 09:26:55 +01002082
Paul Bakker9af723c2014-05-01 13:03:14 +02002083#endif /* POLARSSL_ECP_C */