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experiment: Fix ECC key handling.
Signed-off-by: NIIBE Yutaka <gniibe@fsij.org>
This commit is contained in:
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2b08e84849
commit
9948f3c133
@ -103,7 +103,7 @@ get_keygrip (int pubkey_algo, const char *curve, gcry_mpi_t *pkey,
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if (pkalgo)
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{
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pubkey = openpgp_ecc_parse_pubkey (pkalgo, curve, pkey[0]);
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pubkey = openpgp_ecc_parse_key (pkalgo, curve, pkey[0]);
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err = gcry_sexp_build (&s_pkey, NULL, format, curve, pubkey);
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gcry_mpi_release (pubkey);
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}
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@ -189,8 +189,8 @@ convert_secret_key (gcry_sexp_t *r_key, int pubkey_algo, gcry_mpi_t *skey,
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if (pkalgo)
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{
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pubkey = openpgp_ecc_parse_pubkey (pkalgo, curve, skey[0]);
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seckey = openpgp_ecc_parse_seckey (pkalgo, curve, skey[1]);
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pubkey = openpgp_ecc_parse_key (pkalgo, curve, skey[0]);
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seckey = openpgp_ecc_parse_key (pkalgo, curve, skey[1]);
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err = gcry_sexp_build (&s_skey, NULL, format, curve, pubkey, seckey);
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gcry_mpi_release (pubkey);
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gcry_mpi_release (seckey);
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@ -23,45 +23,28 @@
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#include "util.h"
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#include "openpgpdefs.h"
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/*
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* Parse the key (pubkey or seckey), and return real version of the
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* key; That is, for Ed448/X448, return key with prefix removed.
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*/
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gcry_mpi_t
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openpgp_ecc_parse_pubkey (pubkey_algo_t pkalgo, const char *curve,
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gcry_mpi_t pubkey)
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openpgp_ecc_parse_key (pubkey_algo_t pkalgo, const char *curve,
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gcry_mpi_t key)
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{
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unsigned int nbits = 0;
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unsigned char *buf = NULL;
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if ((pkalgo == PUBKEY_ALGO_EDDSA && !strcmp (curve, "Ed448"))
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|| (pkalgo == PUBKEY_ALGO_ECDH && !strcmp (curve, "X448")))
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buf = gcry_mpi_get_opaque (pubkey, &nbits);
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buf = gcry_mpi_get_opaque (key, &nbits);
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/* Either Ed448/X448 non-prefixed or not Ed448/X448. */
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if (nbits == 0
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|| (pkalgo == PUBKEY_ALGO_EDDSA && (nbits+7)/8 == (448 + 8)/8)
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|| (pkalgo == PUBKEY_ALGO_ECDH && (nbits+7)/8 == 448/8))
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return gcry_mpi_copy (pubkey);
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if (pkalgo == PUBKEY_ALGO_EDDSA)
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return gcry_mpi_set_opaque_copy (NULL, buf+1, 8 + 448);
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else
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return gcry_mpi_set_opaque_copy (NULL, buf+1, 448);
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}
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gcry_mpi_t
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openpgp_ecc_parse_seckey (pubkey_algo_t pkalgo, const char *curve,
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gcry_mpi_t seckey)
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{
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unsigned int nbits = 0;
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unsigned char *buf = NULL;
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if ((pkalgo == PUBKEY_ALGO_EDDSA && !strcmp (curve, "Ed448"))
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|| (pkalgo == PUBKEY_ALGO_ECDH && !strcmp (curve, "X448")))
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buf = gcry_mpi_get_opaque (seckey, &nbits);
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if (nbits == 0
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|| (pkalgo == PUBKEY_ALGO_EDDSA && (nbits+7)/8 == (448 + 8)/8)
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|| (pkalgo == PUBKEY_ALGO_ECDH && (nbits+7)/8 == 448/8))
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return gcry_mpi_copy (seckey);
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return gcry_mpi_copy (key);
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/* Ed448 or X448 prefixed. */
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if (pkalgo == PUBKEY_ALGO_EDDSA)
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return gcry_mpi_set_opaque_copy (NULL, buf+1, 8 + 448);
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else
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@ -240,9 +240,7 @@ enum gcry_pk_algos map_openpgp_pk_to_gcry (pubkey_algo_t algo);
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/*-- openpgp-misc.c --*/
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gcry_mpi_t openpgp_ecc_parse_pubkey (pubkey_algo_t pkalgo, const char *curve,
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gcry_mpi_t pubkey);
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gcry_mpi_t openpgp_ecc_parse_seckey (pubkey_algo_t pkalgo, const char *curve_oid,
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gcry_mpi_t seckey);
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gcry_mpi_t openpgp_ecc_parse_key (pubkey_algo_t pkalgo, const char *curve,
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gcry_mpi_t key);
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#endif /*GNUPG_COMMON_OPENPGPDEFS_H*/
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@ -1068,8 +1068,8 @@ keygrip_from_pk (PKT_public_key *pk, unsigned char *array)
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err = gpg_error_from_syserror ();
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else
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{
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gcry_mpi_t pubkey = openpgp_ecc_parse_pubkey (pk->pubkey_algo,
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curve, pk->pkey[1]);
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gcry_mpi_t pubkey = openpgp_ecc_parse_key (pk->pubkey_algo,
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curve, pk->pkey[1]);
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err = gcry_sexp_build (&s_pkey, NULL,
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pk->pubkey_algo == PUBKEY_ALGO_EDDSA?
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@ -1806,8 +1806,7 @@ pubkey_nbits( int algo, gcry_mpi_t *key )
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else
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{
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const char *curve_name = openpgp_oid_to_curve (curve, 1);
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gcry_mpi_t pubkey = openpgp_ecc_parse_pubkey (algo,
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curve_name, key[1]);
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gcry_mpi_t pubkey = openpgp_ecc_parse_key (algo, curve_name, key[1]);
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rc = gcry_sexp_build (&sexp, NULL,
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"(public-key(ecc(curve%s)(q%m)))",
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12
g10/pkglue.c
12
g10/pkglue.c
@ -194,7 +194,7 @@ pk_verify (pubkey_algo_t pkalgo, gcry_mpi_t hash,
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gcry_mpi_t pubkey;
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const char *curve_name = openpgp_oid_to_curve (curve, 1);
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pubkey = openpgp_ecc_parse_pubkey (pkalgo, curve_name, pkey[1]);
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pubkey = openpgp_ecc_parse_key (pkalgo, curve_name, pkey[1]);
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if (openpgp_oid_is_ed25519 (pkey[0]))
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fmt = "(public-key(ecc(curve %s)(flags eddsa)(q%m)))";
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else
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@ -418,7 +418,7 @@ pk_encrypt (pubkey_algo_t algo, gcry_mpi_t *resarr, gcry_mpi_t data,
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gcry_mpi_t pubkey;
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const char *curve_name = openpgp_oid_to_curve (curve, 1);
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pubkey = openpgp_ecc_parse_pubkey (algo, curve_name, pkey[1]);
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pubkey = openpgp_ecc_parse_key (algo, curve_name, pkey[1]);
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/* Now use the ephemeral secret to compute the shared point. */
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rc = gcry_sexp_build (&s_pkey, NULL,
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with_djb_tweak_flag ?
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@ -543,8 +543,8 @@ pk_check_secret_key (pubkey_algo_t pkalgo, gcry_mpi_t *skey)
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gcry_mpi_t seckey;
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const char *curve_name = openpgp_oid_to_curve (curve, 1);
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pubkey = openpgp_ecc_parse_pubkey (pkalgo, curve_name, skey[1]);
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seckey = openpgp_ecc_parse_seckey (pkalgo, curve_name, skey[2]);
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pubkey = openpgp_ecc_parse_key (pkalgo, curve_name, skey[1]);
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seckey = openpgp_ecc_parse_key (pkalgo, curve_name, skey[2]);
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rc = gcry_sexp_build (&s_skey, NULL,
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"(private-key(ecc(curve%s)(q%m)(d%m)))",
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curve_name, pubkey, seckey);
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@ -565,8 +565,8 @@ pk_check_secret_key (pubkey_algo_t pkalgo, gcry_mpi_t *skey)
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gcry_mpi_t seckey;
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const char *curve_name = openpgp_oid_to_curve (curve, 1);
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pubkey = openpgp_ecc_parse_pubkey (pkalgo, curve_name, skey[1]);
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seckey = openpgp_ecc_parse_seckey (pkalgo, curve_name, skey[2]);
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pubkey = openpgp_ecc_parse_key (pkalgo, curve_name, skey[1]);
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seckey = openpgp_ecc_parse_key (pkalgo, curve_name, skey[2]);
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if (openpgp_oid_is_ed25519 (skey[0]))
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fmt = "(private-key(ecc(curve %s)(flags eddsa)(q%m)(d%m)))";
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else
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