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