| Jarno Lamsa | 18987a4 | 2019-04-24 15:40:43 +0300 | [diff] [blame] | 1 | /* ec_dsa.c - TinyCrypt implementation of EC-DSA */ | 
|  | 2 |  | 
|  | 3 | /* Copyright (c) 2014, Kenneth MacKay | 
|  | 4 | * All rights reserved. | 
|  | 5 | * | 
|  | 6 | * Redistribution and use in source and binary forms, with or without | 
|  | 7 | * modification, are permitted provided that the following conditions are met: | 
|  | 8 | *  * Redistributions of source code must retain the above copyright notice, | 
|  | 9 | *    this list of conditions and the following disclaimer. | 
|  | 10 | *  * Redistributions in binary form must reproduce the above copyright notice, | 
|  | 11 | *    this list of conditions and the following disclaimer in the documentation | 
|  | 12 | *    and/or other materials provided with the distribution. | 
|  | 13 | * | 
|  | 14 | * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" | 
|  | 15 | * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | 
|  | 16 | * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | 
|  | 17 | * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE | 
|  | 18 | * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR | 
|  | 19 | * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF | 
|  | 20 | * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS | 
|  | 21 | * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN | 
|  | 22 | * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) | 
|  | 23 | * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE | 
|  | 24 | * POSSIBILITY OF SUCH DAMAGE.*/ | 
|  | 25 |  | 
|  | 26 | /* | 
|  | 27 | *  Copyright (C) 2017 by Intel Corporation, All Rights Reserved. | 
|  | 28 | * | 
|  | 29 | *  Redistribution and use in source and binary forms, with or without | 
|  | 30 | *  modification, are permitted provided that the following conditions are met: | 
|  | 31 | * | 
|  | 32 | *    - Redistributions of source code must retain the above copyright notice, | 
|  | 33 | *     this list of conditions and the following disclaimer. | 
|  | 34 | * | 
|  | 35 | *    - Redistributions in binary form must reproduce the above copyright | 
|  | 36 | *    notice, this list of conditions and the following disclaimer in the | 
|  | 37 | *    documentation and/or other materials provided with the distribution. | 
|  | 38 | * | 
|  | 39 | *    - Neither the name of Intel Corporation nor the names of its contributors | 
|  | 40 | *    may be used to endorse or promote products derived from this software | 
|  | 41 | *    without specific prior written permission. | 
|  | 42 | * | 
|  | 43 | *  THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" | 
|  | 44 | *  AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | 
|  | 45 | *  IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | 
|  | 46 | *  ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE | 
|  | 47 | *  LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR | 
|  | 48 | *  CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF | 
|  | 49 | *  SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS | 
|  | 50 | *  INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN | 
|  | 51 | *  CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) | 
|  | 52 | *  ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE | 
|  | 53 | *  POSSIBILITY OF SUCH DAMAGE. | 
|  | 54 | */ | 
|  | 55 |  | 
| Manuel Pégourié-Gonnard | afdc1b5 | 2019-05-09 11:24:11 +0200 | [diff] [blame] | 56 | #if defined(MBEDTLS_USE_TINYCRYPT) | 
| Jarno Lamsa | 18987a4 | 2019-04-24 15:40:43 +0300 | [diff] [blame] | 57 | #include <tinycrypt/ecc.h> | 
|  | 58 | #include <tinycrypt/ecc_dsa.h> | 
|  | 59 |  | 
|  | 60 | #if default_RNG_defined | 
|  | 61 | static uECC_RNG_Function g_rng_function = &default_CSPRNG; | 
|  | 62 | #else | 
|  | 63 | static uECC_RNG_Function g_rng_function = 0; | 
|  | 64 | #endif | 
|  | 65 |  | 
|  | 66 | static void bits2int(uECC_word_t *native, const uint8_t *bits, | 
|  | 67 | unsigned bits_size, uECC_Curve curve) | 
|  | 68 | { | 
|  | 69 | unsigned num_n_bytes = BITS_TO_BYTES(curve->num_n_bits); | 
|  | 70 | unsigned num_n_words = BITS_TO_WORDS(curve->num_n_bits); | 
|  | 71 | int shift; | 
|  | 72 | uECC_word_t carry; | 
|  | 73 | uECC_word_t *ptr; | 
|  | 74 |  | 
|  | 75 | if (bits_size > num_n_bytes) { | 
|  | 76 | bits_size = num_n_bytes; | 
|  | 77 | } | 
|  | 78 |  | 
|  | 79 | uECC_vli_clear(native, num_n_words); | 
|  | 80 | uECC_vli_bytesToNative(native, bits, bits_size); | 
|  | 81 | if (bits_size * 8 <= (unsigned)curve->num_n_bits) { | 
|  | 82 | return; | 
|  | 83 | } | 
|  | 84 | shift = bits_size * 8 - curve->num_n_bits; | 
|  | 85 | carry = 0; | 
|  | 86 | ptr = native + num_n_words; | 
|  | 87 | while (ptr-- > native) { | 
|  | 88 | uECC_word_t temp = *ptr; | 
|  | 89 | *ptr = (temp >> shift) | carry; | 
|  | 90 | carry = temp << (uECC_WORD_BITS - shift); | 
|  | 91 | } | 
|  | 92 |  | 
|  | 93 | /* Reduce mod curve_n */ | 
|  | 94 | if (uECC_vli_cmp_unsafe(curve->n, native, num_n_words) != 1) { | 
|  | 95 | uECC_vli_sub(native, native, curve->n, num_n_words); | 
|  | 96 | } | 
|  | 97 | } | 
|  | 98 |  | 
|  | 99 | int uECC_sign_with_k(const uint8_t *private_key, const uint8_t *message_hash, | 
|  | 100 | unsigned hash_size, uECC_word_t *k, uint8_t *signature, | 
|  | 101 | uECC_Curve curve) | 
|  | 102 | { | 
|  | 103 |  | 
|  | 104 | uECC_word_t tmp[NUM_ECC_WORDS]; | 
|  | 105 | uECC_word_t s[NUM_ECC_WORDS]; | 
|  | 106 | uECC_word_t *k2[2] = {tmp, s}; | 
|  | 107 | uECC_word_t p[NUM_ECC_WORDS * 2]; | 
|  | 108 | uECC_word_t carry; | 
|  | 109 | wordcount_t num_words = curve->num_words; | 
|  | 110 | wordcount_t num_n_words = BITS_TO_WORDS(curve->num_n_bits); | 
|  | 111 | bitcount_t num_n_bits = curve->num_n_bits; | 
|  | 112 |  | 
|  | 113 | /* Make sure 0 < k < curve_n */ | 
|  | 114 | if (uECC_vli_isZero(k, num_words) || | 
|  | 115 | uECC_vli_cmp(curve->n, k, num_n_words) != 1) { | 
|  | 116 | return 0; | 
|  | 117 | } | 
|  | 118 |  | 
|  | 119 | carry = regularize_k(k, tmp, s, curve); | 
|  | 120 | EccPoint_mult(p, curve->G, k2[!carry], 0, num_n_bits + 1, curve); | 
|  | 121 | if (uECC_vli_isZero(p, num_words)) { | 
|  | 122 | return 0; | 
|  | 123 | } | 
|  | 124 |  | 
|  | 125 | /* If an RNG function was specified, get a random number | 
|  | 126 | to prevent side channel analysis of k. */ | 
|  | 127 | if (!g_rng_function) { | 
|  | 128 | uECC_vli_clear(tmp, num_n_words); | 
|  | 129 | tmp[0] = 1; | 
|  | 130 | } | 
|  | 131 | else if (!uECC_generate_random_int(tmp, curve->n, num_n_words)) { | 
|  | 132 | return 0; | 
|  | 133 | } | 
|  | 134 |  | 
|  | 135 | /* Prevent side channel analysis of uECC_vli_modInv() to determine | 
|  | 136 | bits of k / the private key by premultiplying by a random number */ | 
|  | 137 | uECC_vli_modMult(k, k, tmp, curve->n, num_n_words); /* k' = rand * k */ | 
|  | 138 | uECC_vli_modInv(k, k, curve->n, num_n_words);       /* k = 1 / k' */ | 
|  | 139 | uECC_vli_modMult(k, k, tmp, curve->n, num_n_words); /* k = 1 / k */ | 
|  | 140 |  | 
|  | 141 | uECC_vli_nativeToBytes(signature, curve->num_bytes, p); /* store r */ | 
|  | 142 |  | 
|  | 143 | /* tmp = d: */ | 
|  | 144 | uECC_vli_bytesToNative(tmp, private_key, BITS_TO_BYTES(curve->num_n_bits)); | 
|  | 145 |  | 
|  | 146 | s[num_n_words - 1] = 0; | 
|  | 147 | uECC_vli_set(s, p, num_words); | 
|  | 148 | uECC_vli_modMult(s, tmp, s, curve->n, num_n_words); /* s = r*d */ | 
|  | 149 |  | 
|  | 150 | bits2int(tmp, message_hash, hash_size, curve); | 
|  | 151 | uECC_vli_modAdd(s, tmp, s, curve->n, num_n_words); /* s = e + r*d */ | 
|  | 152 | uECC_vli_modMult(s, s, k, curve->n, num_n_words);  /* s = (e + r*d) / k */ | 
|  | 153 | if (uECC_vli_numBits(s, num_n_words) > (bitcount_t)curve->num_bytes * 8) { | 
|  | 154 | return 0; | 
|  | 155 | } | 
|  | 156 |  | 
|  | 157 | uECC_vli_nativeToBytes(signature + curve->num_bytes, curve->num_bytes, s); | 
|  | 158 | return 1; | 
|  | 159 | } | 
|  | 160 |  | 
|  | 161 | int uECC_sign(const uint8_t *private_key, const uint8_t *message_hash, | 
|  | 162 | unsigned hash_size, uint8_t *signature, uECC_Curve curve) | 
|  | 163 | { | 
|  | 164 | uECC_word_t _random[2*NUM_ECC_WORDS]; | 
|  | 165 | uECC_word_t k[NUM_ECC_WORDS]; | 
|  | 166 | uECC_word_t tries; | 
|  | 167 |  | 
|  | 168 | for (tries = 0; tries < uECC_RNG_MAX_TRIES; ++tries) { | 
|  | 169 | /* Generating _random uniformly at random: */ | 
|  | 170 | uECC_RNG_Function rng_function = uECC_get_rng(); | 
|  | 171 | if (!rng_function || | 
|  | 172 | !rng_function((uint8_t *)_random, 2*NUM_ECC_WORDS*uECC_WORD_SIZE)) { | 
|  | 173 | return 0; | 
|  | 174 | } | 
|  | 175 |  | 
|  | 176 | // computing k as modular reduction of _random (see FIPS 186.4 B.5.1): | 
|  | 177 | uECC_vli_mmod(k, _random, curve->n, BITS_TO_WORDS(curve->num_n_bits)); | 
|  | 178 |  | 
|  | 179 | if (uECC_sign_with_k(private_key, message_hash, hash_size, k, signature, | 
|  | 180 | curve)) { | 
|  | 181 | return 1; | 
|  | 182 | } | 
|  | 183 | } | 
|  | 184 | return 0; | 
|  | 185 | } | 
|  | 186 |  | 
|  | 187 | static bitcount_t smax(bitcount_t a, bitcount_t b) | 
|  | 188 | { | 
|  | 189 | return (a > b ? a : b); | 
|  | 190 | } | 
|  | 191 |  | 
|  | 192 | int uECC_verify(const uint8_t *public_key, const uint8_t *message_hash, | 
|  | 193 | unsigned hash_size, const uint8_t *signature, | 
|  | 194 | uECC_Curve curve) | 
|  | 195 | { | 
|  | 196 |  | 
|  | 197 | uECC_word_t u1[NUM_ECC_WORDS], u2[NUM_ECC_WORDS]; | 
|  | 198 | uECC_word_t z[NUM_ECC_WORDS]; | 
|  | 199 | uECC_word_t sum[NUM_ECC_WORDS * 2]; | 
|  | 200 | uECC_word_t rx[NUM_ECC_WORDS]; | 
|  | 201 | uECC_word_t ry[NUM_ECC_WORDS]; | 
|  | 202 | uECC_word_t tx[NUM_ECC_WORDS]; | 
|  | 203 | uECC_word_t ty[NUM_ECC_WORDS]; | 
|  | 204 | uECC_word_t tz[NUM_ECC_WORDS]; | 
|  | 205 | const uECC_word_t *points[4]; | 
|  | 206 | const uECC_word_t *point; | 
|  | 207 | bitcount_t num_bits; | 
|  | 208 | bitcount_t i; | 
|  | 209 |  | 
|  | 210 | uECC_word_t _public[NUM_ECC_WORDS * 2]; | 
|  | 211 | uECC_word_t r[NUM_ECC_WORDS], s[NUM_ECC_WORDS]; | 
|  | 212 | wordcount_t num_words = curve->num_words; | 
|  | 213 | wordcount_t num_n_words = BITS_TO_WORDS(curve->num_n_bits); | 
|  | 214 |  | 
|  | 215 | rx[num_n_words - 1] = 0; | 
|  | 216 | r[num_n_words - 1] = 0; | 
|  | 217 | s[num_n_words - 1] = 0; | 
|  | 218 |  | 
|  | 219 | uECC_vli_bytesToNative(_public, public_key, curve->num_bytes); | 
|  | 220 | uECC_vli_bytesToNative(_public + num_words, public_key + curve->num_bytes, | 
|  | 221 | curve->num_bytes); | 
|  | 222 | uECC_vli_bytesToNative(r, signature, curve->num_bytes); | 
|  | 223 | uECC_vli_bytesToNative(s, signature + curve->num_bytes, curve->num_bytes); | 
|  | 224 |  | 
|  | 225 | /* r, s must not be 0. */ | 
|  | 226 | if (uECC_vli_isZero(r, num_words) || uECC_vli_isZero(s, num_words)) { | 
|  | 227 | return 0; | 
|  | 228 | } | 
|  | 229 |  | 
|  | 230 | /* r, s must be < n. */ | 
|  | 231 | if (uECC_vli_cmp_unsafe(curve->n, r, num_n_words) != 1 || | 
|  | 232 | uECC_vli_cmp_unsafe(curve->n, s, num_n_words) != 1) { | 
|  | 233 | return 0; | 
|  | 234 | } | 
|  | 235 |  | 
|  | 236 | /* Calculate u1 and u2. */ | 
|  | 237 | uECC_vli_modInv(z, s, curve->n, num_n_words); /* z = 1/s */ | 
|  | 238 | u1[num_n_words - 1] = 0; | 
|  | 239 | bits2int(u1, message_hash, hash_size, curve); | 
|  | 240 | uECC_vli_modMult(u1, u1, z, curve->n, num_n_words); /* u1 = e/s */ | 
|  | 241 | uECC_vli_modMult(u2, r, z, curve->n, num_n_words); /* u2 = r/s */ | 
|  | 242 |  | 
|  | 243 | /* Calculate sum = G + Q. */ | 
|  | 244 | uECC_vli_set(sum, _public, num_words); | 
|  | 245 | uECC_vli_set(sum + num_words, _public + num_words, num_words); | 
|  | 246 | uECC_vli_set(tx, curve->G, num_words); | 
|  | 247 | uECC_vli_set(ty, curve->G + num_words, num_words); | 
|  | 248 | uECC_vli_modSub(z, sum, tx, curve->p, num_words); /* z = x2 - x1 */ | 
|  | 249 | XYcZ_add(tx, ty, sum, sum + num_words, curve); | 
|  | 250 | uECC_vli_modInv(z, z, curve->p, num_words); /* z = 1/z */ | 
|  | 251 | apply_z(sum, sum + num_words, z, curve); | 
|  | 252 |  | 
|  | 253 | /* Use Shamir's trick to calculate u1*G + u2*Q */ | 
|  | 254 | points[0] = 0; | 
|  | 255 | points[1] = curve->G; | 
|  | 256 | points[2] = _public; | 
|  | 257 | points[3] = sum; | 
|  | 258 | num_bits = smax(uECC_vli_numBits(u1, num_n_words), | 
|  | 259 | uECC_vli_numBits(u2, num_n_words)); | 
|  | 260 |  | 
|  | 261 | point = points[(!!uECC_vli_testBit(u1, num_bits - 1)) | | 
|  | 262 | ((!!uECC_vli_testBit(u2, num_bits - 1)) << 1)]; | 
|  | 263 | uECC_vli_set(rx, point, num_words); | 
|  | 264 | uECC_vli_set(ry, point + num_words, num_words); | 
|  | 265 | uECC_vli_clear(z, num_words); | 
|  | 266 | z[0] = 1; | 
|  | 267 |  | 
|  | 268 | for (i = num_bits - 2; i >= 0; --i) { | 
|  | 269 | uECC_word_t index; | 
|  | 270 | curve->double_jacobian(rx, ry, z, curve); | 
|  | 271 |  | 
|  | 272 | index = (!!uECC_vli_testBit(u1, i)) | ((!!uECC_vli_testBit(u2, i)) << 1); | 
|  | 273 | point = points[index]; | 
|  | 274 | if (point) { | 
|  | 275 | uECC_vli_set(tx, point, num_words); | 
|  | 276 | uECC_vli_set(ty, point + num_words, num_words); | 
|  | 277 | apply_z(tx, ty, z, curve); | 
|  | 278 | uECC_vli_modSub(tz, rx, tx, curve->p, num_words); /* Z = x2 - x1 */ | 
|  | 279 | XYcZ_add(tx, ty, rx, ry, curve); | 
|  | 280 | uECC_vli_modMult_fast(z, z, tz, curve); | 
|  | 281 | } | 
|  | 282 | } | 
|  | 283 |  | 
|  | 284 | uECC_vli_modInv(z, z, curve->p, num_words); /* Z = 1/Z */ | 
|  | 285 | apply_z(rx, ry, z, curve); | 
|  | 286 |  | 
|  | 287 | /* v = x1 (mod n) */ | 
|  | 288 | if (uECC_vli_cmp_unsafe(curve->n, rx, num_n_words) != 1) { | 
|  | 289 | uECC_vli_sub(rx, rx, curve->n, num_n_words); | 
|  | 290 | } | 
|  | 291 |  | 
|  | 292 | /* Accept only if v == r. */ | 
|  | 293 | return (int)(uECC_vli_equal(rx, r, num_words) == 0); | 
|  | 294 | } | 
| Jarno Lamsa | 4613220 | 2019-04-29 14:29:52 +0300 | [diff] [blame] | 295 | #else | 
| Manuel Pégourié-Gonnard | afdc1b5 | 2019-05-09 11:24:11 +0200 | [diff] [blame] | 296 | typedef int mbedtls_dummy_tinycrypt_def; | 
|  | 297 | #endif /* MBEDTLS_USE_TINYCRYPT */ |