42     "FFFFFFFFFFFFFFFFC90FDAA22168C234C4C6628B80DC1CD1" \ 
   43     "29024E088A67CC74020BBEA63B139B22514A08798E3404DD" \ 
   44     "EF9519B3CD3A431B302B0A6DF25F14374FE1356D6D51C245" \ 
   45     "E485B576625E7EC6F44C42E9A637ED6B0BFF5CB6F406B7ED" \ 
   46     "EE386BFB5A899FA5AE9F24117C4B1FE649286651ECE65381" \ 
   50     "7FFFFFFFFFFFFFFFE487ED5110B4611A62633145C06E0E68" \ 
   51     "948127044533E63A0105DF531D89CD9128A5043CC71A026E" \ 
   52     "F7CA8CD9E69D218D98158536F92F8A1BA7F09AB6B6A8E122" \ 
   53     "F242DABB312F3F637A262174D31BF6B585FFAE5B7A035BF6" \ 
   54     "F71C35FDAD44CFD2D74F9208BE258FF324943328F67329C0" \ 
   60         bn = av_malloc(sizeof(*bn));    \ 
   69 #define bn_set_word(bn, w)          mpz_set_ui(bn, w) 
   70 #define bn_cmp(a, b)                mpz_cmp(a, b) 
   71 #define bn_copy(to, from)           mpz_set(to, from) 
   72 #define bn_sub_word(bn, w)          mpz_sub_ui(bn, bn, w) 
   73 #define bn_cmp_1(bn)                mpz_cmp_ui(bn, 1) 
   74 #define bn_num_bytes(bn)            (mpz_sizeinbase(bn, 2) + 7) / 8 
   75 #define bn_bn2bin(bn, buf, len)                     \ 
   77         memset(buf, 0, len);                        \ 
   78         if (bn_num_bytes(bn) <= len)                \ 
   79             mpz_export(buf, NULL, 1, 1, 0, 0, bn);  \ 
   81 #define bn_bin2bn(bn, buf, len)                     \ 
   85             mpz_import(bn, len, 1, 1, 0, 0, buf);   \ 
   87 #define bn_hex2bn(bn, buf, ret)                     \ 
   91             ret = (mpz_set_str(bn, buf, 16) == 0);  \ 
   95 #define bn_random(bn, num_bits)                       \ 
   97         int bits = num_bits;                          \ 
   99         for (bits = num_bits; bits > 0; bits -= 32) { \ 
  100             mpz_mul_2exp(bn, bn, 32);                 \ 
  101             mpz_add_ui(bn, bn, av_get_random_seed()); \ 
  103         mpz_fdiv_r_2exp(bn, bn, num_bits);            \ 
  105 static int bn_modexp(FFBigNum bn, FFBigNum y, FFBigNum q, FFBigNum 
p)
 
  107     mpz_powm(bn, y, q, p);
 
  113         if (!gcry_control(GCRYCTL_INITIALIZATION_FINISHED_P)) { \ 
  114             if (!gcry_check_version("1.5.4"))                   \ 
  115                 return AVERROR(EINVAL);                         \ 
  116             gcry_control(GCRYCTL_DISABLE_SECMEM, 0);            \ 
  117             gcry_control(GCRYCTL_INITIALIZATION_FINISHED, 0);   \ 
  119         bn = gcry_mpi_new(1);                                   \ 
  121 #define bn_free(bn)                 gcry_mpi_release(bn) 
  122 #define bn_set_word(bn, w)          gcry_mpi_set_ui(bn, w) 
  123 #define bn_cmp(a, b)                gcry_mpi_cmp(a, b) 
  124 #define bn_copy(to, from)           gcry_mpi_set(to, from) 
  125 #define bn_sub_word(bn, w)          gcry_mpi_sub_ui(bn, bn, w) 
  126 #define bn_cmp_1(bn)                gcry_mpi_cmp_ui(bn, 1) 
  127 #define bn_num_bytes(bn)            (gcry_mpi_get_nbits(bn) + 7) / 8 
  128 #define bn_bn2bin(bn, buf, len)     gcry_mpi_print(GCRYMPI_FMT_USG, buf, len, NULL, bn) 
  129 #define bn_bin2bn(bn, buf, len)     gcry_mpi_scan(&bn, GCRYMPI_FMT_USG, buf, len, NULL) 
  130 #define bn_hex2bn(bn, buf, ret)     ret = (gcry_mpi_scan(&bn, GCRYMPI_FMT_HEX, buf, 0, 0) == 0) 
  131 #define bn_random(bn, num_bits)     gcry_mpi_randomize(bn, num_bits, GCRY_WEAK_RANDOM) 
  132 static int bn_modexp(FFBigNum bn, FFBigNum y, FFBigNum q, FFBigNum 
p)
 
  134     gcry_mpi_powm(bn, y, q, p);
 
  138 #define bn_new(bn)                  bn = BN_new() 
  139 #define bn_free(bn)                 BN_free(bn) 
  140 #define bn_set_word(bn, w)          BN_set_word(bn, w) 
  141 #define bn_cmp(a, b)                BN_cmp(a, b) 
  142 #define bn_copy(to, from)           BN_copy(to, from) 
  143 #define bn_sub_word(bn, w)          BN_sub_word(bn, w) 
  144 #define bn_cmp_1(bn)                BN_cmp(bn, BN_value_one()) 
  145 #define bn_num_bytes(bn)            BN_num_bytes(bn) 
  146 #define bn_bn2bin(bn, buf, len)     BN_bn2bin(bn, buf) 
  147 #define bn_bin2bn(bn, buf, len)     bn = BN_bin2bn(buf, len, 0) 
  148 #define bn_hex2bn(bn, buf, ret)     ret = BN_hex2bn(&bn, buf) 
  149 #define bn_random(bn, num_bits)     BN_rand(bn, num_bits, 0, 0) 
  150 static int bn_modexp(FFBigNum bn, FFBigNum y, FFBigNum q, FFBigNum 
p)
 
  152     BN_CTX *
ctx = BN_CTX_new();
 
  155     if (!BN_mod_exp(bn, y, q, p, ctx)) {
 
  164 #define MAX_BYTES 18000 
  166 #define dh_new()                    av_mallocz(sizeof(FF_DH)) 
  172     num_bytes = bn_num_bytes(dh->
p) - 1;
 
  173     if (num_bytes <= 0 || num_bytes > 
MAX_BYTES)
 
  179     bn_random(dh->
priv_key, 8 * num_bytes);
 
  194                           uint32_t secret_key_len, 
uint8_t *secret_key)
 
  203     if ((ret = bn_modexp(k, pub_key_bn, dh->
priv_key, dh->
p)) < 0) {
 
  207     bn_bn2bin(k, secret_key, secret_key_len);
 
  211     return secret_key_len;
 
  252     if ((ret = bn_modexp(bn, y, q, p)) < 0)
 
  278     bn_hex2bn(dh->
p, 
P1024, ret);
 
  282     bn_set_word(dh->
g, 2);
 
  303         bn_hex2bn(q1, 
Q1024, ret);
 
  324     len = bn_num_bytes(dh->
pub_key);
 
  325     if (len <= 0 || len > pub_key_len)
 
  329     memset(pub_key, 0, pub_key_len);
 
  330     bn_bn2bin(dh->
pub_key, pub_key + pub_key_len - len, len);
 
  336                                     int pub_key_len, 
uint8_t *secret_key,
 
  343     bn_bin2bn(pub_key_bn, pub_key, pub_key_len);
 
  348     bn_hex2bn(q1, 
Q1024, ret);
 
uint32_t p[AV_BF_ROUNDS+2]
 
int ff_dh_write_public_key(FF_DH *dh, uint8_t *pub_key, int pub_key_len)
Write the public key into the given buffer. 
 
static int dh_is_valid_public_key(FFBigNum y, FFBigNum p, FFBigNum q)
 
Memory handling functions. 
 
int ff_dh_compute_shared_secret_key(FF_DH *dh, const uint8_t *pub_key, int pub_key_len, uint8_t *secret_key, int secret_key_len)
Compute the shared secret key from the private FF_DH value and the other party's public value...
 
void ff_dh_free(FF_DH *dh)
Free a Diffie-Hellmann context. 
 
static const uint8_t q1[256]
 
Macro definitions for various function/variable attributes. 
 
int ff_dh_generate_public_key(FF_DH *dh)
Generate a public key. 
 
static int dh_compute_key(FF_DH *dh, FFBigNum pub_key_bn, uint32_t secret_key_len, uint8_t *secret_key)
 
av_cold FF_DH * ff_dh_init(int key_len)
Initialize a Diffie-Hellmann context. 
 
static FFBigNum dh_generate_key(FF_DH *dh)