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Jarno Lamsa18987a42019-04-24 15:40:43 +03001/* ecc.c - TinyCrypt implementation of common ECC functions */
2
3/*
Simon Butcher92c3d1f2019-09-09 17:25:08 +01004 * Copyright (c) 2019, Arm Limited (or its affiliates), All Rights Reserved.
5 * SPDX-License-Identifier: BSD-3-Clause
6 */
7
8/*
Jarno Lamsa18987a42019-04-24 15:40:43 +03009 * Copyright (c) 2014, Kenneth MacKay
10 * All rights reserved.
11 *
12 * Redistribution and use in source and binary forms, with or without
13 * modification, are permitted provided that the following conditions are met:
14 * * Redistributions of source code must retain the above copyright notice,
15 * this list of conditions and the following disclaimer.
16 * * Redistributions in binary form must reproduce the above copyright notice,
17 * this list of conditions and the following disclaimer in the documentation
18 * and/or other materials provided with the distribution.
19 *
20 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
21 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
22 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
23 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR
24 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
25 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
26 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
27 * ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
28 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
29 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
30 *
31 * Copyright (C) 2017 by Intel Corporation, All Rights Reserved.
32 *
33 * Redistribution and use in source and binary forms, with or without
34 * modification, are permitted provided that the following conditions are met:
35 *
36 * - Redistributions of source code must retain the above copyright notice,
37 * this list of conditions and the following disclaimer.
38 *
39 * - Redistributions in binary form must reproduce the above copyright
40 * notice, this list of conditions and the following disclaimer in the
41 * documentation and/or other materials provided with the distribution.
42 *
43 * - Neither the name of Intel Corporation nor the names of its contributors
44 * may be used to endorse or promote products derived from this software
45 * without specific prior written permission.
46 *
47 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
48 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
49 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
50 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
51 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
52 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
53 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
54 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
55 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
56 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
57 * POSSIBILITY OF SUCH DAMAGE.
58 */
59
Hanno Becker36ae7582019-07-23 15:52:35 +010060#if !defined(MBEDTLS_CONFIG_FILE)
61#include "mbedtls/config.h"
62#else
63#include MBEDTLS_CONFIG_FILE
64#endif
65
Manuel Pégourié-Gonnardafdc1b52019-05-09 11:24:11 +020066#if defined(MBEDTLS_USE_TINYCRYPT)
Jarno Lamsa18987a42019-04-24 15:40:43 +030067#include <tinycrypt/ecc.h>
Manuel Pégourié-Gonnardef238282019-11-04 11:19:30 +010068#include "mbedtls/platform_util.h"
Jarno Lamsa18987a42019-04-24 15:40:43 +030069#include <string.h>
70
71/* IMPORTANT: Make sure a cryptographically-secure PRNG is set and the platform
72 * has access to enough entropy in order to feed the PRNG regularly. */
73#if default_RNG_defined
74static uECC_RNG_Function g_rng_function = &default_CSPRNG;
75#else
76static uECC_RNG_Function g_rng_function = 0;
77#endif
78
79void uECC_set_rng(uECC_RNG_Function rng_function)
80{
81 g_rng_function = rng_function;
82}
83
84uECC_RNG_Function uECC_get_rng(void)
85{
86 return g_rng_function;
87}
88
89int uECC_curve_private_key_size(uECC_Curve curve)
90{
91 return BITS_TO_BYTES(curve->num_n_bits);
92}
93
94int uECC_curve_public_key_size(uECC_Curve curve)
95{
96 return 2 * curve->num_bytes;
97}
98
Manuel Pégourié-Gonnard94e48492019-11-04 12:47:28 +010099void uECC_vli_clear(uECC_word_t *vli)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300100{
101 wordcount_t i;
Manuel Pégourié-Gonnard94e48492019-11-04 12:47:28 +0100102 for (i = 0; i < NUM_ECC_WORDS; ++i) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300103 vli[i] = 0;
104 }
105}
106
Manuel Pégourié-Gonnardf3899fc2019-11-04 12:44:43 +0100107uECC_word_t uECC_vli_isZero(const uECC_word_t *vli)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300108{
109 uECC_word_t bits = 0;
110 wordcount_t i;
Manuel Pégourié-Gonnardf3899fc2019-11-04 12:44:43 +0100111 for (i = 0; i < NUM_ECC_WORDS; ++i) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300112 bits |= vli[i];
113 }
114 return (bits == 0);
115}
116
117uECC_word_t uECC_vli_testBit(const uECC_word_t *vli, bitcount_t bit)
118{
119 return (vli[bit >> uECC_WORD_BITS_SHIFT] &
120 ((uECC_word_t)1 << (bit & uECC_WORD_BITS_MASK)));
121}
122
123/* Counts the number of words in vli. */
Manuel Pégourié-Gonnard2bf5a122019-11-04 12:56:59 +0100124static wordcount_t vli_numDigits(const uECC_word_t *vli)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300125{
126
127 wordcount_t i;
128 /* Search from the end until we find a non-zero digit. We do it in reverse
129 * because we expect that most digits will be nonzero. */
Manuel Pégourié-Gonnard2bf5a122019-11-04 12:56:59 +0100130 for (i = NUM_ECC_WORDS - 1; i >= 0 && vli[i] == 0; --i) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300131 }
132
133 return (i + 1);
134}
135
Manuel Pégourié-Gonnard2bf5a122019-11-04 12:56:59 +0100136bitcount_t uECC_vli_numBits(const uECC_word_t *vli)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300137{
138
139 uECC_word_t i;
140 uECC_word_t digit;
141
Manuel Pégourié-Gonnard2bf5a122019-11-04 12:56:59 +0100142 wordcount_t num_digits = vli_numDigits(vli);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300143 if (num_digits == 0) {
144 return 0;
145 }
146
147 digit = vli[num_digits - 1];
148 for (i = 0; digit; ++i) {
149 digit >>= 1;
150 }
151
152 return (((bitcount_t)(num_digits - 1) << uECC_WORD_BITS_SHIFT) + i);
153}
154
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100155void uECC_vli_set(uECC_word_t *dest, const uECC_word_t *src)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300156{
157 wordcount_t i;
158
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100159 for (i = 0; i < NUM_ECC_WORDS; ++i) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300160 dest[i] = src[i];
161 }
162}
163
164cmpresult_t uECC_vli_cmp_unsafe(const uECC_word_t *left,
Manuel Pégourié-Gonnarda7521912019-11-04 14:31:35 +0100165 const uECC_word_t *right)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300166{
167 wordcount_t i;
168
Manuel Pégourié-Gonnarda7521912019-11-04 14:31:35 +0100169 for (i = NUM_ECC_WORDS - 1; i >= 0; --i) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300170 if (left[i] > right[i]) {
171 return 1;
172 } else if (left[i] < right[i]) {
173 return -1;
174 }
175 }
176 return 0;
177}
178
Manuel Pégourié-Gonnard2eca3d32019-11-04 14:33:09 +0100179uECC_word_t uECC_vli_equal(const uECC_word_t *left, const uECC_word_t *right)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300180{
181
182 uECC_word_t diff = 0;
183 wordcount_t i;
184
Manuel Pégourié-Gonnard2eca3d32019-11-04 14:33:09 +0100185 for (i = NUM_ECC_WORDS - 1; i >= 0; --i) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300186 diff |= (left[i] ^ right[i]);
187 }
188 return !(diff == 0);
189}
190
191uECC_word_t cond_set(uECC_word_t p_true, uECC_word_t p_false, unsigned int cond)
192{
193 return (p_true*(cond)) | (p_false*(!cond));
194}
195
196/* Computes result = left - right, returning borrow, in constant time.
197 * Can modify in place. */
198uECC_word_t uECC_vli_sub(uECC_word_t *result, const uECC_word_t *left,
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100199 const uECC_word_t *right)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300200{
201 uECC_word_t borrow = 0;
202 wordcount_t i;
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100203 for (i = 0; i < NUM_ECC_WORDS; ++i) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300204 uECC_word_t diff = left[i] - right[i] - borrow;
205 uECC_word_t val = (diff > left[i]);
206 borrow = cond_set(val, borrow, (diff != left[i]));
207
208 result[i] = diff;
209 }
210 return borrow;
211}
212
213/* Computes result = left + right, returning carry, in constant time.
214 * Can modify in place. */
215static uECC_word_t uECC_vli_add(uECC_word_t *result, const uECC_word_t *left,
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100216 const uECC_word_t *right)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300217{
218 uECC_word_t carry = 0;
219 wordcount_t i;
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100220 for (i = 0; i < NUM_ECC_WORDS; ++i) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300221 uECC_word_t sum = left[i] + right[i] + carry;
222 uECC_word_t val = (sum < left[i]);
223 carry = cond_set(val, carry, (sum != left[i]));
224 result[i] = sum;
225 }
226 return carry;
227}
228
229cmpresult_t uECC_vli_cmp(const uECC_word_t *left, const uECC_word_t *right,
230 wordcount_t num_words)
231{
232 uECC_word_t tmp[NUM_ECC_WORDS];
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100233 uECC_word_t neg = !!uECC_vli_sub(tmp, left, right);
Manuel Pégourié-Gonnardf3899fc2019-11-04 12:44:43 +0100234 uECC_word_t equal = uECC_vli_isZero(tmp);
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100235 (void) num_words;
Jarno Lamsa18987a42019-04-24 15:40:43 +0300236 return (!equal - 2 * neg);
237}
238
239/* Computes vli = vli >> 1. */
240static void uECC_vli_rshift1(uECC_word_t *vli, wordcount_t num_words)
241{
242 uECC_word_t *end = vli;
243 uECC_word_t carry = 0;
244
245 vli += num_words;
246 while (vli-- > end) {
247 uECC_word_t temp = *vli;
248 *vli = (temp >> 1) | carry;
249 carry = temp << (uECC_WORD_BITS - 1);
250 }
251}
252
Manuel Pégourié-Gonnard86c4f812019-10-31 13:02:03 +0100253/* Compute a * b + r, where r is a double-word with high-order word r1 and
254 * low-order word r0, and store the result in the same double-word (r1, r0),
255 * with the carry bit stored in r2.
256 *
257 * (r2, r1, r0) = a * b + (r1, r0):
Manuel Pégourié-Gonnard14ab9c22019-10-22 09:49:53 +0200258 * [in] a, b: operands to be multiplied
259 * [in] r0, r1: low and high-order words of operand to add
260 * [out] r0, r1: low and high-order words of the result
261 * [out] r2: carry
262 */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300263static void muladd(uECC_word_t a, uECC_word_t b, uECC_word_t *r0,
264 uECC_word_t *r1, uECC_word_t *r2)
265{
266
267 uECC_dword_t p = (uECC_dword_t)a * b;
268 uECC_dword_t r01 = ((uECC_dword_t)(*r1) << uECC_WORD_BITS) | *r0;
269 r01 += p;
270 *r2 += (r01 < p);
271 *r1 = r01 >> uECC_WORD_BITS;
272 *r0 = (uECC_word_t)r01;
273
274}
275
Manuel Pégourié-Gonnard14ab9c22019-10-22 09:49:53 +0200276/* State for implementing random delays in uECC_vli_mult_rnd().
277 *
Manuel Pégourié-Gonnardd4671162019-10-31 11:26:26 +0100278 * The state is initialized by randomizing delays and setting i = 0.
Manuel Pégourié-Gonnard14ab9c22019-10-22 09:49:53 +0200279 * Each call to uECC_vli_mult_rnd() uses one byte of delays and increments i.
280 *
Manuel Pégourié-Gonnardd4671162019-10-31 11:26:26 +0100281 * Randomized vli multiplication is used only for point operations
282 * (XYcZ_add_rnd() * and XYcZ_addC_rnd()) in scalar multiplication
283 * (ECCPoint_mult()). Those go in pair, and each pair does 14 calls to
284 * uECC_vli_mult_rnd() (6 in XYcZ_add_rnd() and 8 in XYcZ_addC_rnd(),
Manuel Pégourié-Gonnardc78d86b2019-11-04 10:18:42 +0100285 * indirectly through uECC_vli_modMult_rnd().
Manuel Pégourié-Gonnardd4671162019-10-31 11:26:26 +0100286 *
287 * Considering this, in order to minimize the number of calls to the RNG
288 * (which impact performance) while keeping the size of the structure low,
289 * make room for 14 randomized vli mults, which corresponds to one step in the
290 * scalar multiplication routine.
Manuel Pégourié-Gonnard14ab9c22019-10-22 09:49:53 +0200291 */
292typedef struct {
Manuel Pégourié-Gonnardd4671162019-10-31 11:26:26 +0100293 uint8_t i;
294 uint8_t delays[14];
Manuel Pégourié-Gonnardd5e503e2019-10-31 12:53:44 +0100295} ecc_wait_state_t;
Manuel Pégourié-Gonnard14ab9c22019-10-22 09:49:53 +0200296
Manuel Pégourié-Gonnardd4671162019-10-31 11:26:26 +0100297/*
298 * Reset wait_state so that it's ready to be used.
299 */
Manuel Pégourié-Gonnardd5e503e2019-10-31 12:53:44 +0100300void ecc_wait_state_reset(ecc_wait_state_t *ws)
Manuel Pégourié-Gonnardd4671162019-10-31 11:26:26 +0100301{
302 if (ws == NULL)
303 return;
304
305 ws->i = 0;
306 g_rng_function(ws->delays, sizeof(ws->delays));
307}
308
Manuel Pégourié-Gonnard14ab9c22019-10-22 09:49:53 +0200309/* Computes result = left * right. Result must be 2 * num_words long.
310 *
311 * As a counter-measure against horizontal attacks, add noise by performing
312 * a random number of extra computations performing random additional accesses
313 * to limbs of the input.
314 *
315 * Each of the two actual computation loops is surrounded by two
316 * similar-looking waiting loops, to make the beginning and end of the actual
317 * computation harder to spot.
318 *
319 * We add 4 waiting loops of between 0 and 3 calls to muladd() each. That
320 * makes an average of 6 extra calls. Compared to the main computation which
321 * makes 64 such calls, this represents an average performance degradation of
322 * less than 10%.
323 *
324 * Compared to the original uECC_vli_mult(), loose the num_words argument as we
325 * know it's always 8. This saves a bit of code size and execution speed.
326 */
327static void uECC_vli_mult_rnd(uECC_word_t *result, const uECC_word_t *left,
Manuel Pégourié-Gonnardd5e503e2019-10-31 12:53:44 +0100328 const uECC_word_t *right, ecc_wait_state_t *s)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300329{
330
331 uECC_word_t r0 = 0;
332 uECC_word_t r1 = 0;
333 uECC_word_t r2 = 0;
334 wordcount_t i, k;
Manuel Pégourié-Gonnard78a7e352019-11-04 12:31:06 +0100335 const uint8_t num_words = NUM_ECC_WORDS;
Manuel Pégourié-Gonnard14ab9c22019-10-22 09:49:53 +0200336
337 /* Fetch 8 bit worth of delay from the state; 0 if we have no state */
338 uint8_t delays = s ? s->delays[s->i++] : 0;
339 uECC_word_t rr0 = 0, rr1 = 0;
340 volatile uECC_word_t r;
341
342 /* Mimic start of next loop: k in [0, 3] */
343 k = 0 + (delays & 0x03);
344 delays >>= 2;
345 /* k = 0 -> i in [1, 0] -> 0 extra muladd;
346 * k = 3 -> i in [1, 3] -> 3 extra muladd */
347 for (i = 0; i <= k; ++i) {
348 muladd(left[i], right[k - i], &rr0, &rr1, &r2);
349 }
350 r = rr0;
351 rr0 = rr1;
352 rr1 = r2;
353 r2 = 0;
Jarno Lamsa18987a42019-04-24 15:40:43 +0300354
355 /* Compute each digit of result in sequence, maintaining the carries. */
356 for (k = 0; k < num_words; ++k) {
357
358 for (i = 0; i <= k; ++i) {
359 muladd(left[i], right[k - i], &r0, &r1, &r2);
360 }
361
362 result[k] = r0;
363 r0 = r1;
364 r1 = r2;
365 r2 = 0;
366 }
367
Manuel Pégourié-Gonnard14ab9c22019-10-22 09:49:53 +0200368 /* Mimic end of previous loop: k in [4, 7] */
369 k = 4 + (delays & 0x03);
370 delays >>= 2;
371 /* k = 4 -> i in [5, 4] -> 0 extra muladd;
372 * k = 7 -> i in [5, 7] -> 3 extra muladd */
373 for (i = 5; i <= k; ++i) {
374 muladd(left[i], right[k - i], &rr0, &rr1, &r2);
375 }
376 r = rr0;
377 rr0 = rr1;
378 rr1 = r2;
379 r2 = 0;
380
381 /* Mimic start of next loop: k in [8, 11] */
382 k = 11 - (delays & 0x03);
383 delays >>= 2;
384 /* k = 8 -> i in [5, 7] -> 3 extra muladd;
385 * k = 11 -> i in [8, 7] -> 0 extra muladd */
386 for (i = (k + 5) - num_words; i < num_words; ++i) {
387 muladd(left[i], right[k - i], &rr0, &rr1, &r2);
388 }
389 r = rr0;
390 rr0 = rr1;
391 rr1 = r2;
392 r2 = 0;
393
Jarno Lamsa18987a42019-04-24 15:40:43 +0300394 for (k = num_words; k < num_words * 2 - 1; ++k) {
395
396 for (i = (k + 1) - num_words; i < num_words; ++i) {
397 muladd(left[i], right[k - i], &r0, &r1, &r2);
398 }
399 result[k] = r0;
400 r0 = r1;
401 r1 = r2;
402 r2 = 0;
403 }
Manuel Pégourié-Gonnard14ab9c22019-10-22 09:49:53 +0200404
Jarno Lamsa18987a42019-04-24 15:40:43 +0300405 result[num_words * 2 - 1] = r0;
Manuel Pégourié-Gonnard14ab9c22019-10-22 09:49:53 +0200406
407 /* Mimic end of previous loop: k in [12, 15] */
408 k = 15 - (delays & 0x03);
409 delays >>= 2;
410 /* k = 12 -> i in [5, 7] -> 3 extra muladd;
411 * k = 15 -> i in [8, 7] -> 0 extra muladd */
412 for (i = (k + 1) - num_words; i < num_words; ++i) {
413 muladd(left[i], right[k - i], &rr0, &rr1, &r2);
414 }
415 r = rr0;
416 rr0 = rr1;
417 rr1 = r2;
418 r2 = 0;
419
420 /* avoid warning that r is set but not used */
421 (void) r;
422}
423
Jarno Lamsa18987a42019-04-24 15:40:43 +0300424void uECC_vli_modAdd(uECC_word_t *result, const uECC_word_t *left,
425 const uECC_word_t *right, const uECC_word_t *mod,
426 wordcount_t num_words)
427{
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100428 uECC_word_t carry = uECC_vli_add(result, left, right);
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100429 (void) num_words;
Manuel Pégourié-Gonnarda7521912019-11-04 14:31:35 +0100430 if (carry || uECC_vli_cmp_unsafe(mod, result) != 1) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300431 /* result > mod (result = mod + remainder), so subtract mod to get
432 * remainder. */
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100433 uECC_vli_sub(result, result, mod);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300434 }
435}
436
437void uECC_vli_modSub(uECC_word_t *result, const uECC_word_t *left,
438 const uECC_word_t *right, const uECC_word_t *mod,
439 wordcount_t num_words)
440{
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100441 uECC_word_t l_borrow = uECC_vli_sub(result, left, right);
442 (void) num_words;
Jarno Lamsa18987a42019-04-24 15:40:43 +0300443 if (l_borrow) {
444 /* In this case, result == -diff == (max int) - diff. Since -x % d == d - x,
445 * we can get the correct result from result + mod (with overflow). */
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100446 uECC_vli_add(result, result, mod);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300447 }
448}
449
450/* Computes result = product % mod, where product is 2N words long. */
451/* Currently only designed to work for curve_p or curve_n. */
452void uECC_vli_mmod(uECC_word_t *result, uECC_word_t *product,
453 const uECC_word_t *mod, wordcount_t num_words)
454{
455 uECC_word_t mod_multiple[2 * NUM_ECC_WORDS];
456 uECC_word_t tmp[2 * NUM_ECC_WORDS];
457 uECC_word_t *v[2] = {tmp, product};
458 uECC_word_t index;
459
460 /* Shift mod so its highest set bit is at the maximum position. */
461 bitcount_t shift = (num_words * 2 * uECC_WORD_BITS) -
Manuel Pégourié-Gonnard2bf5a122019-11-04 12:56:59 +0100462 uECC_vli_numBits(mod);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300463 wordcount_t word_shift = shift / uECC_WORD_BITS;
464 wordcount_t bit_shift = shift % uECC_WORD_BITS;
465 uECC_word_t carry = 0;
Manuel Pégourié-Gonnard94e48492019-11-04 12:47:28 +0100466 uECC_vli_clear(mod_multiple);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300467 if (bit_shift > 0) {
468 for(index = 0; index < (uECC_word_t)num_words; ++index) {
469 mod_multiple[word_shift + index] = (mod[index] << bit_shift) | carry;
470 carry = mod[index] >> (uECC_WORD_BITS - bit_shift);
471 }
472 } else {
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100473 uECC_vli_set(mod_multiple + word_shift, mod);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300474 }
475
476 for (index = 1; shift >= 0; --shift) {
477 uECC_word_t borrow = 0;
478 wordcount_t i;
479 for (i = 0; i < num_words * 2; ++i) {
480 uECC_word_t diff = v[index][i] - mod_multiple[i] - borrow;
481 if (diff != v[index][i]) {
482 borrow = (diff > v[index][i]);
483 }
484 v[1 - index][i] = diff;
485 }
486 /* Swap the index if there was no borrow */
487 index = !(index ^ borrow);
488 uECC_vli_rshift1(mod_multiple, num_words);
489 mod_multiple[num_words - 1] |= mod_multiple[num_words] <<
490 (uECC_WORD_BITS - 1);
491 uECC_vli_rshift1(mod_multiple + num_words, num_words);
492 }
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100493 uECC_vli_set(result, v[index]);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300494}
495
496void uECC_vli_modMult(uECC_word_t *result, const uECC_word_t *left,
497 const uECC_word_t *right, const uECC_word_t *mod,
498 wordcount_t num_words)
499{
500 uECC_word_t product[2 * NUM_ECC_WORDS];
Manuel Pégourié-Gonnardc78d86b2019-11-04 10:18:42 +0100501 uECC_vli_mult_rnd(product, left, right, NULL);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300502 uECC_vli_mmod(result, product, mod, num_words);
503}
504
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100505static void uECC_vli_modMult_rnd(uECC_word_t *result, const uECC_word_t *left,
Manuel Pégourié-Gonnardd5e503e2019-10-31 12:53:44 +0100506 const uECC_word_t *right, ecc_wait_state_t *s)
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100507{
508 uECC_word_t product[2 * NUM_ECC_WORDS];
509 uECC_vli_mult_rnd(product, left, right, s);
510
511 vli_mmod_fast_secp256r1(result, product);
512}
513
Jarno Lamsa18987a42019-04-24 15:40:43 +0300514void uECC_vli_modMult_fast(uECC_word_t *result, const uECC_word_t *left,
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100515 const uECC_word_t *right)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300516{
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100517 uECC_vli_modMult_rnd(result, left, right, NULL);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300518}
519
Jarno Lamsa18987a42019-04-24 15:40:43 +0300520#define EVEN(vli) (!(vli[0] & 1))
521
522static void vli_modInv_update(uECC_word_t *uv,
523 const uECC_word_t *mod,
524 wordcount_t num_words)
525{
526
527 uECC_word_t carry = 0;
528
529 if (!EVEN(uv)) {
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100530 carry = uECC_vli_add(uv, uv, mod);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300531 }
532 uECC_vli_rshift1(uv, num_words);
533 if (carry) {
534 uv[num_words - 1] |= HIGH_BIT_SET;
535 }
536}
537
538void uECC_vli_modInv(uECC_word_t *result, const uECC_word_t *input,
539 const uECC_word_t *mod, wordcount_t num_words)
540{
541 uECC_word_t a[NUM_ECC_WORDS], b[NUM_ECC_WORDS];
542 uECC_word_t u[NUM_ECC_WORDS], v[NUM_ECC_WORDS];
543 cmpresult_t cmpResult;
544
Manuel Pégourié-Gonnardf3899fc2019-11-04 12:44:43 +0100545 if (uECC_vli_isZero(input)) {
Manuel Pégourié-Gonnard94e48492019-11-04 12:47:28 +0100546 uECC_vli_clear(result);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300547 return;
548 }
549
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100550 uECC_vli_set(a, input);
551 uECC_vli_set(b, mod);
Manuel Pégourié-Gonnard94e48492019-11-04 12:47:28 +0100552 uECC_vli_clear(u);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300553 u[0] = 1;
Manuel Pégourié-Gonnard94e48492019-11-04 12:47:28 +0100554 uECC_vli_clear(v);
Manuel Pégourié-Gonnarda7521912019-11-04 14:31:35 +0100555 while ((cmpResult = uECC_vli_cmp_unsafe(a, b)) != 0) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300556 if (EVEN(a)) {
557 uECC_vli_rshift1(a, num_words);
558 vli_modInv_update(u, mod, num_words);
559 } else if (EVEN(b)) {
560 uECC_vli_rshift1(b, num_words);
561 vli_modInv_update(v, mod, num_words);
562 } else if (cmpResult > 0) {
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100563 uECC_vli_sub(a, a, b);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300564 uECC_vli_rshift1(a, num_words);
Manuel Pégourié-Gonnarda7521912019-11-04 14:31:35 +0100565 if (uECC_vli_cmp_unsafe(u, v) < 0) {
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100566 uECC_vli_add(u, u, mod);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300567 }
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100568 uECC_vli_sub(u, u, v);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300569 vli_modInv_update(u, mod, num_words);
570 } else {
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100571 uECC_vli_sub(b, b, a);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300572 uECC_vli_rshift1(b, num_words);
Manuel Pégourié-Gonnarda7521912019-11-04 14:31:35 +0100573 if (uECC_vli_cmp_unsafe(v, u) < 0) {
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100574 uECC_vli_add(v, v, mod);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300575 }
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100576 uECC_vli_sub(v, v, u);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300577 vli_modInv_update(v, mod, num_words);
578 }
579 }
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100580 uECC_vli_set(result, u);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300581}
582
583/* ------ Point operations ------ */
584
585void double_jacobian_default(uECC_word_t * X1, uECC_word_t * Y1,
586 uECC_word_t * Z1, uECC_Curve curve)
587{
588 /* t1 = X, t2 = Y, t3 = Z */
589 uECC_word_t t4[NUM_ECC_WORDS];
590 uECC_word_t t5[NUM_ECC_WORDS];
591 wordcount_t num_words = curve->num_words;
592
Manuel Pégourié-Gonnardf3899fc2019-11-04 12:44:43 +0100593 if (uECC_vli_isZero(Z1)) {
Jarno Lamsa18987a42019-04-24 15:40:43 +0300594 return;
595 }
596
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100597 uECC_vli_modMult_fast(t4, Y1, Y1); /* t4 = y1^2 */
598 uECC_vli_modMult_fast(t5, X1, t4); /* t5 = x1*y1^2 = A */
599 uECC_vli_modMult_fast(t4, t4, t4); /* t4 = y1^4 */
600 uECC_vli_modMult_fast(Y1, Y1, Z1); /* t2 = y1*z1 = z3 */
601 uECC_vli_modMult_fast(Z1, Z1, Z1); /* t3 = z1^2 */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300602
603 uECC_vli_modAdd(X1, X1, Z1, curve->p, num_words); /* t1 = x1 + z1^2 */
604 uECC_vli_modAdd(Z1, Z1, Z1, curve->p, num_words); /* t3 = 2*z1^2 */
605 uECC_vli_modSub(Z1, X1, Z1, curve->p, num_words); /* t3 = x1 - z1^2 */
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100606 uECC_vli_modMult_fast(X1, X1, Z1); /* t1 = x1^2 - z1^4 */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300607
608 uECC_vli_modAdd(Z1, X1, X1, curve->p, num_words); /* t3 = 2*(x1^2 - z1^4) */
609 uECC_vli_modAdd(X1, X1, Z1, curve->p, num_words); /* t1 = 3*(x1^2 - z1^4) */
610 if (uECC_vli_testBit(X1, 0)) {
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100611 uECC_word_t l_carry = uECC_vli_add(X1, X1, curve->p);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300612 uECC_vli_rshift1(X1, num_words);
613 X1[num_words - 1] |= l_carry << (uECC_WORD_BITS - 1);
614 } else {
615 uECC_vli_rshift1(X1, num_words);
616 }
617
618 /* t1 = 3/2*(x1^2 - z1^4) = B */
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100619 uECC_vli_modMult_fast(Z1, X1, X1); /* t3 = B^2 */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300620 uECC_vli_modSub(Z1, Z1, t5, curve->p, num_words); /* t3 = B^2 - A */
621 uECC_vli_modSub(Z1, Z1, t5, curve->p, num_words); /* t3 = B^2 - 2A = x3 */
622 uECC_vli_modSub(t5, t5, Z1, curve->p, num_words); /* t5 = A - x3 */
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100623 uECC_vli_modMult_fast(X1, X1, t5); /* t1 = B * (A - x3) */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300624 /* t4 = B * (A - x3) - y1^4 = y3: */
625 uECC_vli_modSub(t4, X1, t4, curve->p, num_words);
626
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100627 uECC_vli_set(X1, Z1);
628 uECC_vli_set(Z1, Y1);
629 uECC_vli_set(Y1, t4);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300630}
631
632void x_side_default(uECC_word_t *result,
633 const uECC_word_t *x,
634 uECC_Curve curve)
635{
636 uECC_word_t _3[NUM_ECC_WORDS] = {3}; /* -a = 3 */
637 wordcount_t num_words = curve->num_words;
638
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100639 uECC_vli_modMult_fast(result, x, x); /* r = x^2 */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300640 uECC_vli_modSub(result, result, _3, curve->p, num_words); /* r = x^2 - 3 */
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100641 uECC_vli_modMult_fast(result, result, x); /* r = x^3 - 3x */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300642 /* r = x^3 - 3x + b: */
643 uECC_vli_modAdd(result, result, curve->b, curve->p, num_words);
644}
645
646uECC_Curve uECC_secp256r1(void)
647{
648 return &curve_secp256r1;
649}
650
651void vli_mmod_fast_secp256r1(unsigned int *result, unsigned int*product)
652{
653 unsigned int tmp[NUM_ECC_WORDS];
654 int carry;
655
656 /* t */
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100657 uECC_vli_set(result, product);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300658
659 /* s1 */
660 tmp[0] = tmp[1] = tmp[2] = 0;
661 tmp[3] = product[11];
662 tmp[4] = product[12];
663 tmp[5] = product[13];
664 tmp[6] = product[14];
665 tmp[7] = product[15];
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100666 carry = uECC_vli_add(tmp, tmp, tmp);
667 carry += uECC_vli_add(result, result, tmp);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300668
669 /* s2 */
670 tmp[3] = product[12];
671 tmp[4] = product[13];
672 tmp[5] = product[14];
673 tmp[6] = product[15];
674 tmp[7] = 0;
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100675 carry += uECC_vli_add(tmp, tmp, tmp);
676 carry += uECC_vli_add(result, result, tmp);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300677
678 /* s3 */
679 tmp[0] = product[8];
680 tmp[1] = product[9];
681 tmp[2] = product[10];
682 tmp[3] = tmp[4] = tmp[5] = 0;
683 tmp[6] = product[14];
684 tmp[7] = product[15];
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100685 carry += uECC_vli_add(result, result, tmp);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300686
687 /* s4 */
688 tmp[0] = product[9];
689 tmp[1] = product[10];
690 tmp[2] = product[11];
691 tmp[3] = product[13];
692 tmp[4] = product[14];
693 tmp[5] = product[15];
694 tmp[6] = product[13];
695 tmp[7] = product[8];
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100696 carry += uECC_vli_add(result, result, tmp);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300697
698 /* d1 */
699 tmp[0] = product[11];
700 tmp[1] = product[12];
701 tmp[2] = product[13];
702 tmp[3] = tmp[4] = tmp[5] = 0;
703 tmp[6] = product[8];
704 tmp[7] = product[10];
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100705 carry -= uECC_vli_sub(result, result, tmp);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300706
707 /* d2 */
708 tmp[0] = product[12];
709 tmp[1] = product[13];
710 tmp[2] = product[14];
711 tmp[3] = product[15];
712 tmp[4] = tmp[5] = 0;
713 tmp[6] = product[9];
714 tmp[7] = product[11];
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100715 carry -= uECC_vli_sub(result, result, tmp);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300716
717 /* d3 */
718 tmp[0] = product[13];
719 tmp[1] = product[14];
720 tmp[2] = product[15];
721 tmp[3] = product[8];
722 tmp[4] = product[9];
723 tmp[5] = product[10];
724 tmp[6] = 0;
725 tmp[7] = product[12];
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100726 carry -= uECC_vli_sub(result, result, tmp);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300727
728 /* d4 */
729 tmp[0] = product[14];
730 tmp[1] = product[15];
731 tmp[2] = 0;
732 tmp[3] = product[9];
733 tmp[4] = product[10];
734 tmp[5] = product[11];
735 tmp[6] = 0;
736 tmp[7] = product[13];
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100737 carry -= uECC_vli_sub(result, result, tmp);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300738
739 if (carry < 0) {
740 do {
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100741 carry += uECC_vli_add(result, result, curve_secp256r1.p);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300742 }
743 while (carry < 0);
744 } else {
745 while (carry ||
Manuel Pégourié-Gonnarda7521912019-11-04 14:31:35 +0100746 uECC_vli_cmp_unsafe(curve_secp256r1.p, result) != 1) {
Manuel Pégourié-Gonnard129b42e2019-11-04 14:41:45 +0100747 carry -= uECC_vli_sub(result, result, curve_secp256r1.p);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300748 }
749 }
750}
751
752uECC_word_t EccPoint_isZero(const uECC_word_t *point, uECC_Curve curve)
753{
Manuel Pégourié-Gonnardf3899fc2019-11-04 12:44:43 +0100754 (void) curve;
755 return uECC_vli_isZero(point);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300756}
757
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100758void apply_z(uECC_word_t * X1, uECC_word_t * Y1, const uECC_word_t * const Z)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300759{
760 uECC_word_t t1[NUM_ECC_WORDS];
761
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100762 uECC_vli_modMult_fast(t1, Z, Z); /* z^2 */
763 uECC_vli_modMult_fast(X1, X1, t1); /* x1 * z^2 */
764 uECC_vli_modMult_fast(t1, t1, Z); /* z^3 */
765 uECC_vli_modMult_fast(Y1, Y1, t1); /* y1 * z^3 */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300766}
767
768/* P = (x1, y1) => 2P, (x2, y2) => P' */
769static void XYcZ_initial_double(uECC_word_t * X1, uECC_word_t * Y1,
770 uECC_word_t * X2, uECC_word_t * Y2,
771 const uECC_word_t * const initial_Z,
772 uECC_Curve curve)
773{
774 uECC_word_t z[NUM_ECC_WORDS];
Jarno Lamsa18987a42019-04-24 15:40:43 +0300775 if (initial_Z) {
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100776 uECC_vli_set(z, initial_Z);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300777 } else {
Manuel Pégourié-Gonnard94e48492019-11-04 12:47:28 +0100778 uECC_vli_clear(z);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300779 z[0] = 1;
780 }
781
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100782 uECC_vli_set(X2, X1);
783 uECC_vli_set(Y2, Y1);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300784
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100785 apply_z(X1, Y1, z);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300786 curve->double_jacobian(X1, Y1, z, curve);
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100787 apply_z(X2, Y2, z);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300788}
789
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100790static void XYcZ_add_rnd(uECC_word_t * X1, uECC_word_t * Y1,
791 uECC_word_t * X2, uECC_word_t * Y2,
Manuel Pégourié-Gonnardd5e503e2019-10-31 12:53:44 +0100792 ecc_wait_state_t *s)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300793{
794 /* t1 = X1, t2 = Y1, t3 = X2, t4 = Y2 */
795 uECC_word_t t5[NUM_ECC_WORDS];
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100796 const uECC_Curve curve = &curve_secp256r1;
Manuel Pégourié-Gonnard78a7e352019-11-04 12:31:06 +0100797 const wordcount_t num_words = NUM_ECC_WORDS;
Jarno Lamsa18987a42019-04-24 15:40:43 +0300798
799 uECC_vli_modSub(t5, X2, X1, curve->p, num_words); /* t5 = x2 - x1 */
Manuel Pégourié-Gonnardc78d86b2019-11-04 10:18:42 +0100800 uECC_vli_modMult_rnd(t5, t5, t5, s); /* t5 = (x2 - x1)^2 = A */
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100801 uECC_vli_modMult_rnd(X1, X1, t5, s); /* t1 = x1*A = B */
802 uECC_vli_modMult_rnd(X2, X2, t5, s); /* t3 = x2*A = C */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300803 uECC_vli_modSub(Y2, Y2, Y1, curve->p, num_words); /* t4 = y2 - y1 */
Manuel Pégourié-Gonnardc78d86b2019-11-04 10:18:42 +0100804 uECC_vli_modMult_rnd(t5, Y2, Y2, s); /* t5 = (y2 - y1)^2 = D */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300805
806 uECC_vli_modSub(t5, t5, X1, curve->p, num_words); /* t5 = D - B */
807 uECC_vli_modSub(t5, t5, X2, curve->p, num_words); /* t5 = D - B - C = x3 */
808 uECC_vli_modSub(X2, X2, X1, curve->p, num_words); /* t3 = C - B */
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100809 uECC_vli_modMult_rnd(Y1, Y1, X2, s); /* t2 = y1*(C - B) */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300810 uECC_vli_modSub(X2, X1, t5, curve->p, num_words); /* t3 = B - x3 */
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100811 uECC_vli_modMult_rnd(Y2, Y2, X2, s); /* t4 = (y2 - y1)*(B - x3) */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300812 uECC_vli_modSub(Y2, Y2, Y1, curve->p, num_words); /* t4 = y3 */
813
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100814 uECC_vli_set(X2, t5);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300815}
816
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100817void XYcZ_add(uECC_word_t * X1, uECC_word_t * Y1,
818 uECC_word_t * X2, uECC_word_t * Y2,
819 uECC_Curve curve)
820{
821 (void) curve;
822 XYcZ_add_rnd(X1, Y1, X2, Y2, NULL);
823}
824
Jarno Lamsa18987a42019-04-24 15:40:43 +0300825/* Input P = (x1, y1, Z), Q = (x2, y2, Z)
826 Output P + Q = (x3, y3, Z3), P - Q = (x3', y3', Z3)
827 or P => P - Q, Q => P + Q
828 */
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100829static void XYcZ_addC_rnd(uECC_word_t * X1, uECC_word_t * Y1,
830 uECC_word_t * X2, uECC_word_t * Y2,
Manuel Pégourié-Gonnardd5e503e2019-10-31 12:53:44 +0100831 ecc_wait_state_t *s)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300832{
833 /* t1 = X1, t2 = Y1, t3 = X2, t4 = Y2 */
834 uECC_word_t t5[NUM_ECC_WORDS];
835 uECC_word_t t6[NUM_ECC_WORDS];
836 uECC_word_t t7[NUM_ECC_WORDS];
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100837 const uECC_Curve curve = &curve_secp256r1;
Manuel Pégourié-Gonnard78a7e352019-11-04 12:31:06 +0100838 const wordcount_t num_words = NUM_ECC_WORDS;
Jarno Lamsa18987a42019-04-24 15:40:43 +0300839
840 uECC_vli_modSub(t5, X2, X1, curve->p, num_words); /* t5 = x2 - x1 */
Manuel Pégourié-Gonnardc78d86b2019-11-04 10:18:42 +0100841 uECC_vli_modMult_rnd(t5, t5, t5, s); /* t5 = (x2 - x1)^2 = A */
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100842 uECC_vli_modMult_rnd(X1, X1, t5, s); /* t1 = x1*A = B */
843 uECC_vli_modMult_rnd(X2, X2, t5, s); /* t3 = x2*A = C */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300844 uECC_vli_modAdd(t5, Y2, Y1, curve->p, num_words); /* t5 = y2 + y1 */
845 uECC_vli_modSub(Y2, Y2, Y1, curve->p, num_words); /* t4 = y2 - y1 */
846
847 uECC_vli_modSub(t6, X2, X1, curve->p, num_words); /* t6 = C - B */
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100848 uECC_vli_modMult_rnd(Y1, Y1, t6, s); /* t2 = y1 * (C - B) = E */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300849 uECC_vli_modAdd(t6, X1, X2, curve->p, num_words); /* t6 = B + C */
Manuel Pégourié-Gonnardc78d86b2019-11-04 10:18:42 +0100850 uECC_vli_modMult_rnd(X2, Y2, Y2, s); /* t3 = (y2 - y1)^2 = D */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300851 uECC_vli_modSub(X2, X2, t6, curve->p, num_words); /* t3 = D - (B + C) = x3 */
852
853 uECC_vli_modSub(t7, X1, X2, curve->p, num_words); /* t7 = B - x3 */
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100854 uECC_vli_modMult_rnd(Y2, Y2, t7, s); /* t4 = (y2 - y1)*(B - x3) */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300855 /* t4 = (y2 - y1)*(B - x3) - E = y3: */
856 uECC_vli_modSub(Y2, Y2, Y1, curve->p, num_words);
857
Manuel Pégourié-Gonnardc78d86b2019-11-04 10:18:42 +0100858 uECC_vli_modMult_rnd(t7, t5, t5, s); /* t7 = (y2 + y1)^2 = F */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300859 uECC_vli_modSub(t7, t7, t6, curve->p, num_words); /* t7 = F - (B + C) = x3' */
860 uECC_vli_modSub(t6, t7, X1, curve->p, num_words); /* t6 = x3' - B */
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100861 uECC_vli_modMult_rnd(t6, t6, t5, s); /* t6 = (y2+y1)*(x3' - B) */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300862 /* t2 = (y2+y1)*(x3' - B) - E = y3': */
863 uECC_vli_modSub(Y1, t6, Y1, curve->p, num_words);
864
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100865 uECC_vli_set(X1, t7);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300866}
867
Manuel Pégourié-Gonnard27926d62019-11-04 11:26:46 +0100868static void EccPoint_mult(uECC_word_t * result, const uECC_word_t * point,
Jarno Lamsa18987a42019-04-24 15:40:43 +0300869 const uECC_word_t * scalar,
Manuel Pégourié-Gonnard3645ac92019-11-04 11:39:18 +0100870 const uECC_word_t * initial_Z)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300871{
872 /* R0 and R1 */
873 uECC_word_t Rx[2][NUM_ECC_WORDS];
874 uECC_word_t Ry[2][NUM_ECC_WORDS];
875 uECC_word_t z[NUM_ECC_WORDS];
876 bitcount_t i;
877 uECC_word_t nb;
Manuel Pégourié-Gonnard78a7e352019-11-04 12:31:06 +0100878 const wordcount_t num_words = NUM_ECC_WORDS;
879 const bitcount_t num_bits = NUM_ECC_BITS + 1; /* from regularize_k */
Manuel Pégourié-Gonnard3645ac92019-11-04 11:39:18 +0100880 const uECC_Curve curve = uECC_secp256r1();
Manuel Pégourié-Gonnardd5e503e2019-10-31 12:53:44 +0100881 ecc_wait_state_t wait_state;
882 ecc_wait_state_t * const ws = g_rng_function ? &wait_state : NULL;
Jarno Lamsa18987a42019-04-24 15:40:43 +0300883
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100884 uECC_vli_set(Rx[1], point);
885 uECC_vli_set(Ry[1], point + num_words);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300886
887 XYcZ_initial_double(Rx[1], Ry[1], Rx[0], Ry[0], initial_Z, curve);
888
889 for (i = num_bits - 2; i > 0; --i) {
Manuel Pégourié-Gonnardd5e503e2019-10-31 12:53:44 +0100890 ecc_wait_state_reset(ws);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300891 nb = !uECC_vli_testBit(scalar, i);
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100892 XYcZ_addC_rnd(Rx[1 - nb], Ry[1 - nb], Rx[nb], Ry[nb], ws);
893 XYcZ_add_rnd(Rx[nb], Ry[nb], Rx[1 - nb], Ry[1 - nb], ws);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300894 }
895
Manuel Pégourié-Gonnardd5e503e2019-10-31 12:53:44 +0100896 ecc_wait_state_reset(ws);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300897 nb = !uECC_vli_testBit(scalar, 0);
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100898 XYcZ_addC_rnd(Rx[1 - nb], Ry[1 - nb], Rx[nb], Ry[nb], ws);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300899
900 /* Find final 1/Z value. */
901 uECC_vli_modSub(z, Rx[1], Rx[0], curve->p, num_words); /* X1 - X0 */
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100902 uECC_vli_modMult_fast(z, z, Ry[1 - nb]); /* Yb * (X1 - X0) */
903 uECC_vli_modMult_fast(z, z, point); /* xP * Yb * (X1 - X0) */
Jarno Lamsa18987a42019-04-24 15:40:43 +0300904 uECC_vli_modInv(z, z, curve->p, num_words); /* 1 / (xP * Yb * (X1 - X0))*/
905 /* yP / (xP * Yb * (X1 - X0)) */
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100906 uECC_vli_modMult_fast(z, z, point + num_words);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300907 /* Xb * yP / (xP * Yb * (X1 - X0)) */
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100908 uECC_vli_modMult_fast(z, z, Rx[1 - nb]);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300909 /* End 1/Z calculation */
910
Manuel Pégourié-Gonnard938f53f2019-10-29 11:23:43 +0100911 XYcZ_add_rnd(Rx[nb], Ry[nb], Rx[1 - nb], Ry[1 - nb], ws);
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +0100912 apply_z(Rx[0], Ry[0], z);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300913
Manuel Pégourié-Gonnardcbbb0f02019-11-04 13:02:04 +0100914 uECC_vli_set(result, Rx[0]);
915 uECC_vli_set(result + num_words, Ry[0]);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300916}
917
Manuel Pégourié-Gonnard27926d62019-11-04 11:26:46 +0100918static uECC_word_t regularize_k(const uECC_word_t * const k, uECC_word_t *k0,
Manuel Pégourié-Gonnard3645ac92019-11-04 11:39:18 +0100919 uECC_word_t *k1)
Jarno Lamsa18987a42019-04-24 15:40:43 +0300920{
921
Manuel Pégourié-Gonnard78a7e352019-11-04 12:31:06 +0100922 wordcount_t num_n_words = NUM_ECC_WORDS;
923 bitcount_t num_n_bits = NUM_ECC_BITS;
Manuel Pégourié-Gonnard3645ac92019-11-04 11:39:18 +0100924 const uECC_Curve curve = uECC_secp256r1();
Jarno Lamsa18987a42019-04-24 15:40:43 +0300925
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100926 uECC_word_t carry = uECC_vli_add(k0, k, curve->n) ||
Jarno Lamsa18987a42019-04-24 15:40:43 +0300927 (num_n_bits < ((bitcount_t)num_n_words * uECC_WORD_SIZE * 8) &&
928 uECC_vli_testBit(k0, num_n_bits));
929
Manuel Pégourié-Gonnard02d9d212019-11-04 12:37:08 +0100930 uECC_vli_add(k1, k0, curve->n);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300931
932 return carry;
933}
934
Manuel Pégourié-Gonnardef238282019-11-04 11:19:30 +0100935int EccPoint_mult_safer(uECC_word_t * result, const uECC_word_t * point,
936 const uECC_word_t * scalar, uECC_Curve curve)
937{
938 uECC_word_t tmp[NUM_ECC_WORDS];
939 uECC_word_t s[NUM_ECC_WORDS];
940 uECC_word_t *k2[2] = {tmp, s};
Manuel Pégourié-Gonnard78a7e352019-11-04 12:31:06 +0100941 wordcount_t num_words = NUM_ECC_WORDS;
Manuel Pégourié-Gonnardef238282019-11-04 11:19:30 +0100942 uECC_word_t carry;
943 uECC_word_t *initial_Z = 0;
944 int r;
945
Manuel Pégourié-Gonnard3645ac92019-11-04 11:39:18 +0100946 if (curve != uECC_secp256r1())
947 return 0;
948
Manuel Pégourié-Gonnardef238282019-11-04 11:19:30 +0100949 /* Regularize the bitcount for the private key so that attackers cannot use a
950 * side channel attack to learn the number of leading zeros. */
Manuel Pégourié-Gonnard3645ac92019-11-04 11:39:18 +0100951 carry = regularize_k(scalar, tmp, s);
Manuel Pégourié-Gonnardef238282019-11-04 11:19:30 +0100952
953 /* If an RNG function was specified, get a random initial Z value to
954 * protect against side-channel attacks such as Template SPA */
955 if (g_rng_function) {
956 if (!uECC_generate_random_int(k2[carry], curve->p, num_words)) {
957 r = 0;
958 goto clear_and_out;
959 }
960 initial_Z = k2[carry];
961 }
962
Manuel Pégourié-Gonnard3645ac92019-11-04 11:39:18 +0100963 EccPoint_mult(result, point, k2[!carry], initial_Z);
Manuel Pégourié-Gonnardef238282019-11-04 11:19:30 +0100964 r = 1;
965
966clear_and_out:
967 /* erasing temporary buffer used to store secret: */
968 mbedtls_platform_zeroize(k2, sizeof(k2));
969 mbedtls_platform_zeroize(tmp, sizeof(tmp));
970 mbedtls_platform_zeroize(s, sizeof(s));
971
972 return r;
973}
974
Jarno Lamsa18987a42019-04-24 15:40:43 +0300975uECC_word_t EccPoint_compute_public_key(uECC_word_t *result,
976 uECC_word_t *private_key,
977 uECC_Curve curve)
978{
979
980 uECC_word_t tmp1[NUM_ECC_WORDS];
981 uECC_word_t tmp2[NUM_ECC_WORDS];
982 uECC_word_t *p2[2] = {tmp1, tmp2};
983 uECC_word_t carry;
984
Manuel Pégourié-Gonnard3645ac92019-11-04 11:39:18 +0100985 if (curve != uECC_secp256r1())
986 return 0;
987
Jarno Lamsa18987a42019-04-24 15:40:43 +0300988 /* Regularize the bitcount for the private key so that attackers cannot
989 * use a side channel attack to learn the number of leading zeros. */
Manuel Pégourié-Gonnard3645ac92019-11-04 11:39:18 +0100990 carry = regularize_k(private_key, tmp1, tmp2);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300991
Manuel Pégourié-Gonnard3645ac92019-11-04 11:39:18 +0100992 EccPoint_mult(result, curve->G, p2[!carry], 0);
Jarno Lamsa18987a42019-04-24 15:40:43 +0300993
994 if (EccPoint_isZero(result, curve)) {
995 return 0;
996 }
997 return 1;
998}
999
1000/* Converts an integer in uECC native format to big-endian bytes. */
1001void uECC_vli_nativeToBytes(uint8_t *bytes, int num_bytes,
1002 const unsigned int *native)
1003{
1004 wordcount_t i;
1005 for (i = 0; i < num_bytes; ++i) {
1006 unsigned b = num_bytes - 1 - i;
1007 bytes[i] = native[b / uECC_WORD_SIZE] >> (8 * (b % uECC_WORD_SIZE));
1008 }
1009}
1010
1011/* Converts big-endian bytes to an integer in uECC native format. */
1012void uECC_vli_bytesToNative(unsigned int *native, const uint8_t *bytes,
1013 int num_bytes)
1014{
1015 wordcount_t i;
Manuel Pégourié-Gonnard94e48492019-11-04 12:47:28 +01001016 uECC_vli_clear(native);
Jarno Lamsa18987a42019-04-24 15:40:43 +03001017 for (i = 0; i < num_bytes; ++i) {
1018 unsigned b = num_bytes - 1 - i;
1019 native[b / uECC_WORD_SIZE] |=
1020 (uECC_word_t)bytes[i] << (8 * (b % uECC_WORD_SIZE));
1021 }
1022}
1023
1024int uECC_generate_random_int(uECC_word_t *random, const uECC_word_t *top,
1025 wordcount_t num_words)
1026{
1027 uECC_word_t mask = (uECC_word_t)-1;
1028 uECC_word_t tries;
Manuel Pégourié-Gonnard2bf5a122019-11-04 12:56:59 +01001029 bitcount_t num_bits = uECC_vli_numBits(top);
Jarno Lamsa18987a42019-04-24 15:40:43 +03001030
1031 if (!g_rng_function) {
1032 return 0;
1033 }
1034
1035 for (tries = 0; tries < uECC_RNG_MAX_TRIES; ++tries) {
1036 if (!g_rng_function((uint8_t *)random, num_words * uECC_WORD_SIZE)) {
1037 return 0;
1038 }
1039 random[num_words - 1] &=
1040 mask >> ((bitcount_t)(num_words * uECC_WORD_SIZE * 8 - num_bits));
Manuel Pégourié-Gonnardf3899fc2019-11-04 12:44:43 +01001041 if (!uECC_vli_isZero(random) &&
Jarno Lamsa18987a42019-04-24 15:40:43 +03001042 uECC_vli_cmp(top, random, num_words) == 1) {
1043 return 1;
1044 }
1045 }
1046 return 0;
1047}
1048
1049
1050int uECC_valid_point(const uECC_word_t *point, uECC_Curve curve)
1051{
1052 uECC_word_t tmp1[NUM_ECC_WORDS];
1053 uECC_word_t tmp2[NUM_ECC_WORDS];
1054 wordcount_t num_words = curve->num_words;
1055
1056 /* The point at infinity is invalid. */
1057 if (EccPoint_isZero(point, curve)) {
1058 return -1;
1059 }
1060
1061 /* x and y must be smaller than p. */
Manuel Pégourié-Gonnarda7521912019-11-04 14:31:35 +01001062 if (uECC_vli_cmp_unsafe(curve->p, point) != 1 ||
1063 uECC_vli_cmp_unsafe(curve->p, point + num_words) != 1) {
Jarno Lamsa18987a42019-04-24 15:40:43 +03001064 return -2;
1065 }
1066
Manuel Pégourié-Gonnardc3ec14c2019-11-04 12:12:00 +01001067 uECC_vli_modMult_fast(tmp1, point + num_words, point + num_words);
Jarno Lamsa18987a42019-04-24 15:40:43 +03001068 curve->x_side(tmp2, point, curve); /* tmp2 = x^3 + ax + b */
1069
1070 /* Make sure that y^2 == x^3 + ax + b */
Manuel Pégourié-Gonnard2eca3d32019-11-04 14:33:09 +01001071 if (uECC_vli_equal(tmp1, tmp2) != 0)
Jarno Lamsa18987a42019-04-24 15:40:43 +03001072 return -3;
1073
1074 return 0;
1075}
1076
1077int uECC_valid_public_key(const uint8_t *public_key, uECC_Curve curve)
1078{
1079
1080 uECC_word_t _public[NUM_ECC_WORDS * 2];
1081
1082 uECC_vli_bytesToNative(_public, public_key, curve->num_bytes);
1083 uECC_vli_bytesToNative(
1084 _public + curve->num_words,
1085 public_key + curve->num_bytes,
1086 curve->num_bytes);
1087
Manuel Pégourié-Gonnarda7521912019-11-04 14:31:35 +01001088 if (memcmp(_public, curve->G, NUM_ECC_WORDS * 2) == 0) {
Jarno Lamsa18987a42019-04-24 15:40:43 +03001089 return -4;
1090 }
1091
1092 return uECC_valid_point(_public, curve);
1093}
1094
1095int uECC_compute_public_key(const uint8_t *private_key, uint8_t *public_key,
1096 uECC_Curve curve)
1097{
1098
1099 uECC_word_t _private[NUM_ECC_WORDS];
1100 uECC_word_t _public[NUM_ECC_WORDS * 2];
1101
1102 uECC_vli_bytesToNative(
1103 _private,
1104 private_key,
1105 BITS_TO_BYTES(curve->num_n_bits));
1106
1107 /* Make sure the private key is in the range [1, n-1]. */
Manuel Pégourié-Gonnardf3899fc2019-11-04 12:44:43 +01001108 if (uECC_vli_isZero(_private)) {
Jarno Lamsa18987a42019-04-24 15:40:43 +03001109 return 0;
1110 }
1111
1112 if (uECC_vli_cmp(curve->n, _private, BITS_TO_WORDS(curve->num_n_bits)) != 1) {
1113 return 0;
1114 }
1115
1116 /* Compute public key. */
1117 if (!EccPoint_compute_public_key(_public, _private, curve)) {
1118 return 0;
1119 }
1120
1121 uECC_vli_nativeToBytes(public_key, curve->num_bytes, _public);
1122 uECC_vli_nativeToBytes(
1123 public_key +
1124 curve->num_bytes, curve->num_bytes, _public + curve->num_words);
1125 return 1;
1126}
Jarno Lamsa46132202019-04-29 14:29:52 +03001127#else
Manuel Pégourié-Gonnardafdc1b52019-05-09 11:24:11 +02001128typedef int mbedtls_dummy_tinycrypt_def;
1129#endif /* MBEDTLS_USE_TINYCRYPT */
Jarno Lamsa18987a42019-04-24 15:40:43 +03001130