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unit: add DPP test for mutual authentication

This commit is contained in:
James Prestwood 2023-10-26 13:26:51 -07:00 committed by Denis Kenzior
parent 5b49ea4e2d
commit b3071dfd15

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@ -182,6 +182,46 @@ struct dpp_test_vector {
const char *ke; const char *ke;
const char *mx; const char *mx;
const char *nx; const char *nx;
const char *lx;
};
/*
* B.1 Test Vectors for DPP Authentication Using P-256 for
* Mutual Authentication
*/
static struct dpp_test_vector mutual_p256 = {
.i_proto_public = "50a532ae2a07207276418d2fa630295d45569be425aa634f02014d00a7d1f61a"
"e14f35a5a858bccad90d126c46594c49ef82655e78888e15a32d916ac2172491",
.i_proto_private = "a87de9afbb406c96e5f79a3df895ecac3ad406f95da66314c8cb3165e0c61783",
/*
* The spec uses a 31 octet Y value, a zero byte was prepended to the
* Y value here otherwise the point cannot be created
*/
.i_boot_public = "88b37ed91938b5197097808a6244847617892046d93b9501afd48fa0f148dfde"
"00f73b6991287884a9c9a33f8e0691f14d44b59811e9d8242d010270b0d33ec0",
.i_boot_private = "15b2a83c5a0a38b61f2aa8200ee4994b8afdc01c58507d10d0a38f7eedf051bb",
.i_nonce = "13f4602a16daeb69712263b9c46cba31",
.i_auth = "d34944bb4b1f05caebda762c6e4ae034c819ec2f62a57dcfade2473876e007b2",
.i_asn1 = "3039301306072a8648ce3d020106082a8648ce3d0301070322000288b37ed919"
"38b5197097808a6244847617892046d93b9501afd48fa0f148dfde",
.r_proto_public = "5e3fb3576884887f17c3203d8a3a6c2fac722ef0e2201b61ac73bc655c709a90"
"2d4b030669fb9eff8b0a79fa7c1a172ac2a92c626256963f9274dc90682c81e5",
.r_proto_private = "f798ed2e19286f6a6efe210b1863badb99af2a14b497634dbfd2a97394fb5aa5",
.r_boot_public = "09c585a91b4df9fd25a045201885c39cc5cfae397ddaeda957dec57fa0e3503f"
"52bf05968198a2f92883e96a386d767579883302dbf292105c90a43694c2fd5c",
.r_boot_private = "54ce181a98525f217216f59b245f60e9df30ac7f6b26c939418cfc3c42d1afa0",
.r_nonce = "3d0cfb011ca916d796f7029ff0b43393",
.r_auth = "a725abe6dc66ccf3aa3d6d61a19932fcbb0799ed09ff78e5bc6d4ea5ef8e8670",
.r_asn1 = "3039301306072a8648ce3d020106082a8648ce3d0301070322000209c585a91b"
"4df9fd25a045201885c39cc5cfae397ddaeda957dec57fa0e3503f",
.k1 = "3d832a02ed6d7fc1dc96d2eceab738cf01c0028eb256be33d5a21a720bfcf949",
.k2 = "ca08bdeeef838ddf897a5f01f20bb93dc5a895cb86788ca8c00a7664899bc310",
.ke = "b6db65526c9a0174c3bed56f7e614f3a656233c078693249ac3516425127e5d5",
.mx = "dde2878117d69745be4f916a2dd14269d783d1d788c603bb8746beabbd1dbbbc",
.nx = "92118478b75c21c2c59340c842b5bce560a535f60bc37a75fe390d738c58d8e8",
.lx = "fb737234c973cc3a36e64e5170a32f12089d198c73c2fd85a53d0b282530fd02"
}; };
/* /*
@ -232,6 +272,8 @@ static void test_key_derivation(const void *data)
uint64_t tmp[L_ECC_MAX_DIGITS * 2]; uint64_t tmp[L_ECC_MAX_DIGITS * 2];
const struct l_ecc_curve *curve = l_ecc_curve_from_ike_group(19); const struct l_ecc_curve *curve = l_ecc_curve_from_ike_group(19);
_auto_(l_ecc_point_free) struct l_ecc_point *i_boot_public = NULL;
_auto_(l_ecc_scalar_free) struct l_ecc_scalar *i_boot_private = NULL;
_auto_(l_ecc_point_free) struct l_ecc_point *i_proto_public = NULL; _auto_(l_ecc_point_free) struct l_ecc_point *i_proto_public = NULL;
_auto_(l_ecc_point_free) struct l_ecc_point *r_boot_public = NULL; _auto_(l_ecc_point_free) struct l_ecc_point *r_boot_public = NULL;
_auto_(l_ecc_scalar_free) struct l_ecc_scalar *r_boot_private = NULL; _auto_(l_ecc_scalar_free) struct l_ecc_scalar *r_boot_private = NULL;
@ -239,6 +281,7 @@ static void test_key_derivation(const void *data)
_auto_(l_ecc_point_free) struct l_ecc_point *r_proto_public = NULL; _auto_(l_ecc_point_free) struct l_ecc_point *r_proto_public = NULL;
_auto_(l_ecc_scalar_free) struct l_ecc_scalar *m = NULL; _auto_(l_ecc_scalar_free) struct l_ecc_scalar *m = NULL;
_auto_(l_ecc_scalar_free) struct l_ecc_scalar *n = NULL; _auto_(l_ecc_scalar_free) struct l_ecc_scalar *n = NULL;
_auto_(l_ecc_point_free) struct l_ecc_point *l = NULL;
_auto_(l_ecc_point_free) struct l_ecc_point *from_asn1 = NULL; _auto_(l_ecc_point_free) struct l_ecc_point *from_asn1 = NULL;
uint64_t k1[L_ECC_MAX_DIGITS]; uint64_t k1[L_ECC_MAX_DIGITS];
uint64_t k2[L_ECC_MAX_DIGITS]; uint64_t k2[L_ECC_MAX_DIGITS];
@ -262,6 +305,20 @@ static void test_key_derivation(const void *data)
tmp, 64); tmp, 64);
assert(r_boot_public); assert(r_boot_public);
if (vector->i_boot_public) {
HEX2BUF(vector->i_boot_public, tmp, 64);
i_boot_public = l_ecc_point_from_data(curve,
L_ECC_POINT_TYPE_FULL,
tmp, 64);
assert(i_boot_public);
}
if (vector->i_boot_private) {
HEX2BUF(vector->i_boot_private, tmp, 32);
i_boot_private = l_ecc_scalar_new(curve, tmp, 32);
assert(i_boot_private);
}
HEX2BUF(vector->r_asn1, tmp, sizeof(tmp)); HEX2BUF(vector->r_asn1, tmp, sizeof(tmp));
asn1 = dpp_point_to_asn1(r_boot_public, &asn1_len); asn1 = dpp_point_to_asn1(r_boot_public, &asn1_len);
@ -272,6 +329,19 @@ static void test_key_derivation(const void *data)
assert(asn1_len == 59); assert(asn1_len == 59);
assert(memcmp(tmp, asn1, asn1_len) == 0); assert(memcmp(tmp, asn1, asn1_len) == 0);
if (vector->i_asn1) {
HEX2BUF(vector->i_asn1, tmp, sizeof(tmp));
asn1 = dpp_point_to_asn1(i_boot_public, &asn1_len);
from_asn1 = dpp_point_from_asn1(asn1, asn1_len);
assert(l_ecc_points_are_equal(from_asn1, i_boot_public));
assert(asn1_len == 59);
assert(memcmp(tmp, asn1, asn1_len) == 0);
}
HEX2BUF(vector->r_proto_public, tmp, 64); HEX2BUF(vector->r_proto_public, tmp, 64);
r_proto_public = l_ecc_point_from_data(curve, r_proto_public = l_ecc_point_from_data(curve,
L_ECC_POINT_TYPE_FULL, L_ECC_POINT_TYPE_FULL,
@ -300,18 +370,37 @@ static void test_key_derivation(const void *data)
l_ecc_scalar_get_data(n, tmp, sizeof(tmp)); l_ecc_scalar_get_data(n, tmp, sizeof(tmp));
CHECK_FROM_STR(vector->nx, tmp, 32); CHECK_FROM_STR(vector->nx, tmp, 32);
if (vector->lx) {
/* Check initiator derivation */
l = dpp_derive_li(r_boot_public, r_proto_public,
i_boot_private);
assert(l);
l_ecc_point_get_x(l, tmp, sizeof(tmp));
CHECK_FROM_STR(vector->lx, tmp, 32);
l_ecc_point_free(l);
l = NULL;
/* Check responder derivation */
l = dpp_derive_lr(r_boot_private, r_proto_private,
i_boot_public);
assert(l);
l_ecc_point_get_x(l, tmp, sizeof(tmp));
CHECK_FROM_STR(vector->lx, tmp, 32);
}
HEX2BUF(vector->i_nonce, i_nonce, 16); HEX2BUF(vector->i_nonce, i_nonce, 16);
HEX2BUF(vector->r_nonce, r_nonce, 16); HEX2BUF(vector->r_nonce, r_nonce, 16);
dpp_derive_ke(i_nonce, r_nonce, m, n, NULL, ke); dpp_derive_ke(i_nonce, r_nonce, m, n, l, ke);
CHECK_FROM_STR(vector->ke, ke, 32); CHECK_FROM_STR(vector->ke, ke, 32);
dpp_derive_r_auth(i_nonce, r_nonce, 16, i_proto_public, r_proto_public, dpp_derive_r_auth(i_nonce, r_nonce, 16, i_proto_public, r_proto_public,
NULL, r_boot_public, r_auth); i_boot_public, r_boot_public, r_auth);
CHECK_FROM_STR(vector->r_auth, r_auth, 32); CHECK_FROM_STR(vector->r_auth, r_auth, 32);
dpp_derive_i_auth(r_nonce, i_nonce, 16, r_proto_public, i_proto_public, dpp_derive_i_auth(r_nonce, i_nonce, 16, r_proto_public, i_proto_public,
r_boot_public, NULL, i_auth); r_boot_public, i_boot_public, i_auth);
CHECK_FROM_STR(vector->i_auth, i_auth, 32); CHECK_FROM_STR(vector->i_auth, i_auth, 32);
} }
@ -320,9 +409,14 @@ int main(int argc, char *argv[])
l_test_init(&argc, &argv); l_test_init(&argc, &argv);
if (l_checksum_is_supported(L_CHECKSUM_SHA256, true) && if (l_checksum_is_supported(L_CHECKSUM_SHA256, true) &&
l_getrandom_is_supported()) l_getrandom_is_supported()) {
l_test_add("DPP test key derivation", test_key_derivation, l_test_add("DPP test responder-only key derivation",
test_key_derivation,
&responder_only_p256); &responder_only_p256);
l_test_add("DPP test mutual key derivation",
test_key_derivation,
&mutual_p256);
}
l_test_add("DPP URI parse", test_uri_parse, &all_values); l_test_add("DPP URI parse", test_uri_parse, &all_values);
l_test_add("DPP URI no type", test_uri_parse, &no_type); l_test_add("DPP URI no type", test_uri_parse, &no_type);