github.com/ethereumproject/go-ethereum@v5.5.2+incompatible/crypto/secp256k1/libsecp256k1/src/eckey_impl.h (about) 1 /********************************************************************** 2 * Copyright (c) 2013, 2014 Pieter Wuille * 3 * Distributed under the MIT software license, see the accompanying * 4 * file COPYING or http://www.opensource.org/licenses/mit-license.php.* 5 **********************************************************************/ 6 7 #ifndef _SECP256K1_ECKEY_IMPL_H_ 8 #define _SECP256K1_ECKEY_IMPL_H_ 9 10 #include "eckey.h" 11 12 #include "scalar.h" 13 #include "field.h" 14 #include "group.h" 15 #include "ecmult_gen.h" 16 17 static int secp256k1_eckey_pubkey_parse(secp256k1_ge *elem, const unsigned char *pub, size_t size) { 18 if (size == 33 && (pub[0] == 0x02 || pub[0] == 0x03)) { 19 secp256k1_fe x; 20 return secp256k1_fe_set_b32(&x, pub+1) && secp256k1_ge_set_xo_var(elem, &x, pub[0] == 0x03); 21 } else if (size == 65 && (pub[0] == 0x04 || pub[0] == 0x06 || pub[0] == 0x07)) { 22 secp256k1_fe x, y; 23 if (!secp256k1_fe_set_b32(&x, pub+1) || !secp256k1_fe_set_b32(&y, pub+33)) { 24 return 0; 25 } 26 secp256k1_ge_set_xy(elem, &x, &y); 27 if ((pub[0] == 0x06 || pub[0] == 0x07) && secp256k1_fe_is_odd(&y) != (pub[0] == 0x07)) { 28 return 0; 29 } 30 return secp256k1_ge_is_valid_var(elem); 31 } else { 32 return 0; 33 } 34 } 35 36 static int secp256k1_eckey_pubkey_serialize(secp256k1_ge *elem, unsigned char *pub, size_t *size, unsigned int flags) { 37 if (secp256k1_ge_is_infinity(elem)) { 38 return 0; 39 } 40 secp256k1_fe_normalize_var(&elem->x); 41 secp256k1_fe_normalize_var(&elem->y); 42 secp256k1_fe_get_b32(&pub[1], &elem->x); 43 if (flags & SECP256K1_EC_COMPRESSED) { 44 *size = 33; 45 pub[0] = 0x02 | (secp256k1_fe_is_odd(&elem->y) ? 0x01 : 0x00); 46 } else { 47 *size = 65; 48 pub[0] = 0x04; 49 secp256k1_fe_get_b32(&pub[33], &elem->y); 50 } 51 return 1; 52 } 53 54 static int secp256k1_eckey_privkey_parse(secp256k1_scalar *key, const unsigned char *privkey, size_t privkeylen) { 55 unsigned char c[32] = {0}; 56 const unsigned char *end = privkey + privkeylen; 57 int lenb = 0; 58 int len = 0; 59 int overflow = 0; 60 /* sequence header */ 61 if (end < privkey+1 || *privkey != 0x30) { 62 return 0; 63 } 64 privkey++; 65 /* sequence length constructor */ 66 if (end < privkey+1 || !(*privkey & 0x80)) { 67 return 0; 68 } 69 lenb = *privkey & ~0x80; privkey++; 70 if (lenb < 1 || lenb > 2) { 71 return 0; 72 } 73 if (end < privkey+lenb) { 74 return 0; 75 } 76 /* sequence length */ 77 len = privkey[lenb-1] | (lenb > 1 ? privkey[lenb-2] << 8 : 0); 78 privkey += lenb; 79 if (end < privkey+len) { 80 return 0; 81 } 82 /* sequence element 0: version number (=1) */ 83 if (end < privkey+3 || privkey[0] != 0x02 || privkey[1] != 0x01 || privkey[2] != 0x01) { 84 return 0; 85 } 86 privkey += 3; 87 /* sequence element 1: octet string, up to 32 bytes */ 88 if (end < privkey+2 || privkey[0] != 0x04 || privkey[1] > 0x20 || end < privkey+2+privkey[1]) { 89 return 0; 90 } 91 memcpy(c + 32 - privkey[1], privkey + 2, privkey[1]); 92 secp256k1_scalar_set_b32(key, c, &overflow); 93 memset(c, 0, 32); 94 return !overflow; 95 } 96 97 static int secp256k1_eckey_privkey_serialize(const secp256k1_ecmult_gen_context *ctx, unsigned char *privkey, size_t *privkeylen, const secp256k1_scalar *key, unsigned int flags) { 98 secp256k1_gej rp; 99 secp256k1_ge r; 100 size_t pubkeylen = 0; 101 secp256k1_ecmult_gen(ctx, &rp, key); 102 secp256k1_ge_set_gej(&r, &rp); 103 if (flags & SECP256K1_EC_COMPRESSED) { 104 static const unsigned char begin[] = { 105 0x30,0x81,0xD3,0x02,0x01,0x01,0x04,0x20 106 }; 107 static const unsigned char middle[] = { 108 0xA0,0x81,0x85,0x30,0x81,0x82,0x02,0x01,0x01,0x30,0x2C,0x06,0x07,0x2A,0x86,0x48, 109 0xCE,0x3D,0x01,0x01,0x02,0x21,0x00,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF, 110 0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF, 111 0xFF,0xFF,0xFE,0xFF,0xFF,0xFC,0x2F,0x30,0x06,0x04,0x01,0x00,0x04,0x01,0x07,0x04, 112 0x21,0x02,0x79,0xBE,0x66,0x7E,0xF9,0xDC,0xBB,0xAC,0x55,0xA0,0x62,0x95,0xCE,0x87, 113 0x0B,0x07,0x02,0x9B,0xFC,0xDB,0x2D,0xCE,0x28,0xD9,0x59,0xF2,0x81,0x5B,0x16,0xF8, 114 0x17,0x98,0x02,0x21,0x00,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF, 115 0xFF,0xFF,0xFF,0xFF,0xFE,0xBA,0xAE,0xDC,0xE6,0xAF,0x48,0xA0,0x3B,0xBF,0xD2,0x5E, 116 0x8C,0xD0,0x36,0x41,0x41,0x02,0x01,0x01,0xA1,0x24,0x03,0x22,0x00 117 }; 118 unsigned char *ptr = privkey; 119 memcpy(ptr, begin, sizeof(begin)); ptr += sizeof(begin); 120 secp256k1_scalar_get_b32(ptr, key); ptr += 32; 121 memcpy(ptr, middle, sizeof(middle)); ptr += sizeof(middle); 122 if (!secp256k1_eckey_pubkey_serialize(&r, ptr, &pubkeylen, 1)) { 123 return 0; 124 } 125 ptr += pubkeylen; 126 *privkeylen = ptr - privkey; 127 } else { 128 static const unsigned char begin[] = { 129 0x30,0x82,0x01,0x13,0x02,0x01,0x01,0x04,0x20 130 }; 131 static const unsigned char middle[] = { 132 0xA0,0x81,0xA5,0x30,0x81,0xA2,0x02,0x01,0x01,0x30,0x2C,0x06,0x07,0x2A,0x86,0x48, 133 0xCE,0x3D,0x01,0x01,0x02,0x21,0x00,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF, 134 0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF, 135 0xFF,0xFF,0xFE,0xFF,0xFF,0xFC,0x2F,0x30,0x06,0x04,0x01,0x00,0x04,0x01,0x07,0x04, 136 0x41,0x04,0x79,0xBE,0x66,0x7E,0xF9,0xDC,0xBB,0xAC,0x55,0xA0,0x62,0x95,0xCE,0x87, 137 0x0B,0x07,0x02,0x9B,0xFC,0xDB,0x2D,0xCE,0x28,0xD9,0x59,0xF2,0x81,0x5B,0x16,0xF8, 138 0x17,0x98,0x48,0x3A,0xDA,0x77,0x26,0xA3,0xC4,0x65,0x5D,0xA4,0xFB,0xFC,0x0E,0x11, 139 0x08,0xA8,0xFD,0x17,0xB4,0x48,0xA6,0x85,0x54,0x19,0x9C,0x47,0xD0,0x8F,0xFB,0x10, 140 0xD4,0xB8,0x02,0x21,0x00,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF, 141 0xFF,0xFF,0xFF,0xFF,0xFE,0xBA,0xAE,0xDC,0xE6,0xAF,0x48,0xA0,0x3B,0xBF,0xD2,0x5E, 142 0x8C,0xD0,0x36,0x41,0x41,0x02,0x01,0x01,0xA1,0x44,0x03,0x42,0x00 143 }; 144 unsigned char *ptr = privkey; 145 memcpy(ptr, begin, sizeof(begin)); ptr += sizeof(begin); 146 secp256k1_scalar_get_b32(ptr, key); ptr += 32; 147 memcpy(ptr, middle, sizeof(middle)); ptr += sizeof(middle); 148 if (!secp256k1_eckey_pubkey_serialize(&r, ptr, &pubkeylen, 0)) { 149 return 0; 150 } 151 ptr += pubkeylen; 152 *privkeylen = ptr - privkey; 153 } 154 return 1; 155 } 156 157 static int secp256k1_eckey_privkey_tweak_add(secp256k1_scalar *key, const secp256k1_scalar *tweak) { 158 secp256k1_scalar_add(key, key, tweak); 159 if (secp256k1_scalar_is_zero(key)) { 160 return 0; 161 } 162 return 1; 163 } 164 165 static int secp256k1_eckey_pubkey_tweak_add(const secp256k1_ecmult_context *ctx, secp256k1_ge *key, const secp256k1_scalar *tweak) { 166 secp256k1_gej pt; 167 secp256k1_scalar one; 168 secp256k1_gej_set_ge(&pt, key); 169 secp256k1_scalar_set_int(&one, 1); 170 secp256k1_ecmult(ctx, &pt, &pt, &one, tweak); 171 172 if (secp256k1_gej_is_infinity(&pt)) { 173 return 0; 174 } 175 secp256k1_ge_set_gej(key, &pt); 176 return 1; 177 } 178 179 static int secp256k1_eckey_privkey_tweak_mul(secp256k1_scalar *key, const secp256k1_scalar *tweak) { 180 if (secp256k1_scalar_is_zero(tweak)) { 181 return 0; 182 } 183 184 secp256k1_scalar_mul(key, key, tweak); 185 return 1; 186 } 187 188 static int secp256k1_eckey_pubkey_tweak_mul(const secp256k1_ecmult_context *ctx, secp256k1_ge *key, const secp256k1_scalar *tweak) { 189 secp256k1_scalar zero; 190 secp256k1_gej pt; 191 if (secp256k1_scalar_is_zero(tweak)) { 192 return 0; 193 } 194 195 secp256k1_scalar_set_int(&zero, 0); 196 secp256k1_gej_set_ge(&pt, key); 197 secp256k1_ecmult(ctx, &pt, &pt, tweak, &zero); 198 secp256k1_ge_set_gej(key, &pt); 199 return 1; 200 } 201 202 #endif