Files
opaque-vx/src/tests/opaque_ke_test.rs
T

599 lines
24 KiB
Rust

// Copyright (c) Facebook, Inc. and its affiliates.
//
// This source code is licensed under the MIT license found in the
// LICENSE file in the root directory of this source tree.
use crate::{
ciphersuite::CipherSuite,
errors::*,
group::Group,
key_exchange::tripledh::{TripleDH, NONCE_LEN},
keypair::{Key, KeyPair, SizedBytes, X25519KeyPair},
opaque::*,
slow_hash::NoOpHash,
tests::mock_rng::CycleRng,
};
use curve25519_dalek::edwards::EdwardsPoint;
use generic_array::GenericArray;
use rand_core::{OsRng, RngCore};
use serde_json::Value;
use std::convert::TryFrom;
// Tests
// =====
struct X255193dhNoSlowHash;
impl CipherSuite for X255193dhNoSlowHash {
type Group = EdwardsPoint;
type KeyFormat = X25519KeyPair;
type KeyExchange = TripleDH;
type Hash = sha2::Sha256;
type SlowHash = NoOpHash;
}
pub struct TestVectorParameters {
pub client_s_pk: Vec<u8>,
pub client_s_sk: Vec<u8>,
pub client_e_pk: Vec<u8>,
pub client_e_sk: Vec<u8>,
pub server_s_pk: Vec<u8>,
pub server_s_sk: Vec<u8>,
pub server_e_pk: Vec<u8>,
pub server_e_sk: Vec<u8>,
pub id_u: Vec<u8>,
pub id_s: Vec<u8>,
pub password: Vec<u8>,
pub blinding_factor: Vec<u8>,
pub oprf_key: Vec<u8>,
pub envelope_nonce: Vec<u8>,
pub client_nonce: Vec<u8>,
pub server_nonce: Vec<u8>,
pub r1: Vec<u8>,
pub r2: Vec<u8>,
pub r3: Vec<u8>,
pub l1: Vec<u8>,
pub l2: Vec<u8>,
pub l3: Vec<u8>,
client_registration_state: Vec<u8>,
server_registration_state: Vec<u8>,
client_login_state: Vec<u8>,
server_login_state: Vec<u8>,
pub password_file: Vec<u8>,
pub export_key: Vec<u8>,
pub shared_secret: Vec<u8>,
}
static TEST_VECTOR: &str = r#"
{
"client_s_pk": "7489b55c78b380db87d664178e5a020eb2f9bbeac0a44f6fb034ccba8de4a934",
"client_s_sk": "f0499a6c8bac723debd497b672c2d89ed2d96fd190fce247e0dd3019dce8ec59",
"client_e_pk": "c87afc8a9dc82c93dc6fa9d27654c6b909de929e542e94a87ffb7b3256190a46",
"client_e_sk": "107078f8e2ddd88c3d37e611ae932d798403e475f52a6695639999f963063576",
"server_s_pk": "764f186883a88353586c2427bfbe0ff3e5a0f56af414b0c42a5a300fc426ba4d",
"server_s_sk": "c089cb11e78ea8923cc25857ba51fd5da820079a9a2b377bc87dcd496b563e5c",
"server_e_pk": "05d99649994c006a508b996d11a94f52ae68cca44087bdd69602dfceb92d950c",
"server_e_sk": "70c4df069c1a7b70c16cf6409157674c3f8adfd0919f9dd67a254cf167c7e87f",
"id_u": "696455",
"id_s": "696453",
"password": "70617373776f7264",
"blinding_factor": "c5629094a160136e99012cf9c8eb19d9d62f87cadf846636bd175064a78b2d00",
"oprf_key": "f431dcb851f3c8202b9dd1a06d8d32434bbab88de4fdd079452faf2359a8d408",
"envelope_nonce": "be38985f7e04dab53e0bddf32cc9eeb64d7f072e089650b681ba4bb04bcfaeb2",
"client_nonce": "0c51879d4ae4cbd047fbf1ba9c7512c25c8d809486f5e6018dff8c525d9f41f1",
"server_nonce": "c896afa11787f8374bbeb3876151bcf4b75c9511a70be3dddce7606a353f3bc3",
"r1": "01000027000369645500201d540787a850896d3c7407e5a2c17729772170dae61640872aeca109d64d4581",
"r2": "02000028002033f9c4bdfe3d2597cbf0c86db2b0b3e81a4400ad4c9618372f6e24d89229d9a4000001010103",
"r3": "030000aebe38985f7e04dab53e0bddf32cc9eeb64d7f072e089650b681ba4bb04bcfaeb20023441a15c5ccbbf863e0db5e03c6edc63696b05d83a66e4aa3e10aa1320936fe8357bc250023030020764f186883a88353586c2427bfbe0ff3e5a0f56af414b0c42a5a300fc426ba4d00208229fa7e73d11f6935de9d5aae17ab5ec77d6cff8d8456437a8098bb54aa9b9300207489b55c78b380db87d664178e5a020eb2f9bbeac0a44f6fb034ccba8de4a934",
"l1": "04000027000369645500201d540787a850896d3c7407e5a2c17729772170dae61640872aeca109d64d45810c51879d4ae4cbd047fbf1ba9c7512c25c8d809486f5e6018dff8c525d9f41f1c87afc8a9dc82c93dc6fa9d27654c6b909de929e542e94a87ffb7b3256190a46",
"l2": "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",
"l3": "6ba92c16abdd010bc8e9a5175d639512f8b270767d4b7198d03a985935e7da6d",
"client_registration_state": "00036964550003696453c5629094a160136e99012cf9c8eb19d9d62f87cadf846636bd175064a78b2d0070617373776f7264",
"client_login_state": "00036964550003696453c5629094a160136e99012cf9c8eb19d9d62f87cadf846636bd175064a78b2d00107078f8e2ddd88c3d37e611ae932d798403e475f52a6695639999f9630635760c51879d4ae4cbd047fbf1ba9c7512c25c8d809486f5e6018dff8c525d9f41f123c1c83fbf2a84c442b079fcacff55b13a4aebf9ba326e992c83b550afbb0c8770617373776f7264",
"server_registration_state": "f431dcb851f3c8202b9dd1a06d8d32434bbab88de4fdd079452faf2359a8d408",
"server_login_state": "72486032f6ff6f079144a891fdcb5ca63ede147f327313437c6bf2fd79d08b1faf03840b6c031f7afb66e2740ae064fc140c9aec2ac42295a6d1201d6ad5cdc641d81a7e3805c996ff9fb15fbcd4eddb528a3622f0f4488bca04bace6d740ee3",
"password_file": "f431dcb851f3c8202b9dd1a06d8d32434bbab88de4fdd079452faf2359a8d4087489b55c78b380db87d664178e5a020eb2f9bbeac0a44f6fb034ccba8de4a934be38985f7e04dab53e0bddf32cc9eeb64d7f072e089650b681ba4bb04bcfaeb20023441a15c5ccbbf863e0db5e03c6edc63696b05d83a66e4aa3e10aa1320936fe8357bc250023030020764f186883a88353586c2427bfbe0ff3e5a0f56af414b0c42a5a300fc426ba4d00208229fa7e73d11f6935de9d5aae17ab5ec77d6cff8d8456437a8098bb54aa9b93",
"export_key": "c2bc61bafeb9ab541fa362dc154c7a07dab8479e486da2daf9408438d9dc562f",
"shared_secret": "41d81a7e3805c996ff9fb15fbcd4eddb528a3622f0f4488bca04bace6d740ee3"
}
"#;
fn decode(values: &Value, key: &str) -> Option<Vec<u8>> {
values[key]
.as_str()
.and_then(|s| hex::decode(&s.to_string()).ok())
}
fn populate_test_vectors(values: &Value) -> TestVectorParameters {
TestVectorParameters {
client_s_pk: decode(&values, "client_s_pk").unwrap(),
client_s_sk: decode(&values, "client_s_sk").unwrap(),
client_e_pk: decode(&values, "client_e_pk").unwrap(),
client_e_sk: decode(&values, "client_e_sk").unwrap(),
server_s_pk: decode(&values, "server_s_pk").unwrap(),
server_s_sk: decode(&values, "server_s_sk").unwrap(),
server_e_pk: decode(&values, "server_e_pk").unwrap(),
server_e_sk: decode(&values, "server_e_sk").unwrap(),
id_u: decode(&values, "id_u").unwrap(),
id_s: decode(&values, "id_s").unwrap(),
password: decode(&values, "password").unwrap(),
blinding_factor: decode(&values, "blinding_factor").unwrap(),
oprf_key: decode(&values, "oprf_key").unwrap(),
envelope_nonce: decode(&values, "envelope_nonce").unwrap(),
client_nonce: decode(&values, "client_nonce").unwrap(),
server_nonce: decode(&values, "server_nonce").unwrap(),
r1: decode(&values, "r1").unwrap(),
r2: decode(&values, "r2").unwrap(),
r3: decode(&values, "r3").unwrap(),
l1: decode(&values, "l1").unwrap(),
l2: decode(&values, "l2").unwrap(),
l3: decode(&values, "l3").unwrap(),
client_registration_state: decode(&values, "client_registration_state").unwrap(),
client_login_state: decode(&values, "client_login_state").unwrap(),
server_registration_state: decode(&values, "server_registration_state").unwrap(),
server_login_state: decode(&values, "server_login_state").unwrap(),
password_file: decode(&values, "password_file").unwrap(),
export_key: decode(&values, "export_key").unwrap(),
shared_secret: decode(&values, "shared_secret").unwrap(),
}
}
fn stringify_test_vectors(p: &TestVectorParameters) -> String {
let mut s = String::new();
s.push_str("{\n");
s.push_str(format!("\"client_s_pk\": \"{}\",\n", hex::encode(&p.client_s_pk)).as_str());
s.push_str(format!("\"client_s_sk\": \"{}\",\n", hex::encode(&p.client_s_sk)).as_str());
s.push_str(format!("\"client_e_pk\": \"{}\",\n", hex::encode(&p.client_e_pk)).as_str());
s.push_str(format!("\"client_e_sk\": \"{}\",\n", hex::encode(&p.client_e_sk)).as_str());
s.push_str(format!("\"server_s_pk\": \"{}\",\n", hex::encode(&p.server_s_pk)).as_str());
s.push_str(format!("\"server_s_sk\": \"{}\",\n", hex::encode(&p.server_s_sk)).as_str());
s.push_str(format!("\"server_e_pk\": \"{}\",\n", hex::encode(&p.server_e_pk)).as_str());
s.push_str(format!("\"server_e_sk\": \"{}\",\n", hex::encode(&p.server_e_sk)).as_str());
s.push_str(format!("\"id_u\": \"{}\",\n", hex::encode(&p.id_u)).as_str());
s.push_str(format!("\"id_s\": \"{}\",\n", hex::encode(&p.id_s)).as_str());
s.push_str(format!("\"password\": \"{}\",\n", hex::encode(&p.password)).as_str());
s.push_str(
format!(
"\"blinding_factor\": \"{}\",\n",
hex::encode(&p.blinding_factor)
)
.as_str(),
);
s.push_str(format!("\"oprf_key\": \"{}\",\n", hex::encode(&p.oprf_key)).as_str());
s.push_str(
format!(
"\"envelope_nonce\": \"{}\",\n",
hex::encode(&p.envelope_nonce)
)
.as_str(),
);
s.push_str(format!("\"client_nonce\": \"{}\",\n", hex::encode(&p.client_nonce)).as_str());
s.push_str(format!("\"server_nonce\": \"{}\",\n", hex::encode(&p.server_nonce)).as_str());
s.push_str(format!("\"r1\": \"{}\",\n", hex::encode(&p.r1)).as_str());
s.push_str(format!("\"r2\": \"{}\",\n", hex::encode(&p.r2)).as_str());
s.push_str(format!("\"r3\": \"{}\",\n", hex::encode(&p.r3)).as_str());
s.push_str(format!("\"l1\": \"{}\",\n", hex::encode(&p.l1)).as_str());
s.push_str(format!("\"l2\": \"{}\",\n", hex::encode(&p.l2)).as_str());
s.push_str(format!("\"l3\": \"{}\",\n", hex::encode(&p.l3)).as_str());
s.push_str(
format!(
"\"client_registration_state\": \"{}\",\n",
hex::encode(&p.client_registration_state)
)
.as_str(),
);
s.push_str(
format!(
"\"client_login_state\": \"{}\",\n",
hex::encode(&p.client_login_state)
)
.as_str(),
);
s.push_str(
format!(
"\"server_registration_state\": \"{}\",\n",
hex::encode(&p.server_registration_state)
)
.as_str(),
);
s.push_str(
format!(
"\"server_login_state\": \"{}\",\n",
hex::encode(&p.server_login_state)
)
.as_str(),
);
s.push_str(
format!(
"\"password_file\": \"{}\",\n",
hex::encode(&p.password_file)
)
.as_str(),
);
s.push_str(format!("\"export_key\": \"{}\",\n", hex::encode(&p.export_key)).as_str());
s.push_str(format!("\"shared_secret\": \"{}\"\n", hex::encode(&p.shared_secret)).as_str());
s.push_str("}\n");
s
}
fn generate_parameters<CS: CipherSuite>() -> TestVectorParameters
where
// Unsightly constraints due to the (required) use of the SizedBytes
// instance for KP in ServerRegistration::start. See also the impl
// Tryfrom<&[u8]> for ServerRegistration (those are the same constraints).
<<CS::KeyFormat as KeyPair>::Repr as SizedBytes>::Len:
std::ops::Add<<<CS::KeyFormat as KeyPair>::Repr as SizedBytes>::Len>,
generic_array::typenum::Sum<
<<CS::KeyFormat as KeyPair>::Repr as SizedBytes>::Len,
<<CS::KeyFormat as KeyPair>::Repr as SizedBytes>::Len,
>: generic_array::ArrayLength<u8>,
{
let mut rng = OsRng;
// Inputs
let server_s_kp = CS::generate_random_keypair(&mut rng).unwrap();
let server_e_kp = CS::generate_random_keypair(&mut rng).unwrap();
let client_s_kp = CS::generate_random_keypair(&mut rng).unwrap();
let client_e_kp = CS::generate_random_keypair(&mut rng).unwrap();
let id_u = b"idU";
let id_s = b"idS";
let password = b"password";
let mut blinding_factor_raw = [0u8; 64];
rng.fill_bytes(&mut blinding_factor_raw);
let mut oprf_key_raw = [0u8; 32];
rng.fill_bytes(&mut oprf_key_raw);
let mut envelope_nonce = [0u8; 32];
rng.fill_bytes(&mut envelope_nonce);
let mut client_nonce = [0u8; NONCE_LEN];
rng.fill_bytes(&mut client_nonce);
let mut server_nonce = [0u8; NONCE_LEN];
rng.fill_bytes(&mut server_nonce);
let mut blinding_factor_registration_rng = CycleRng::new(blinding_factor_raw.to_vec());
let (r1, client_registration) = ClientRegistration::<CS>::start_with_user_and_server_name(
id_u,
id_s,
password,
&mut blinding_factor_registration_rng,
)
.unwrap();
let r1_bytes = r1.serialize().to_vec();
let blinding_factor_bytes =
CS::Group::scalar_as_bytes(&client_registration.token.blind).clone();
let client_registration_state = client_registration.to_bytes().to_vec();
let mut oprf_key_rng = CycleRng::new(oprf_key_raw.to_vec());
let (r2, server_registration) = ServerRegistration::<CS>::start(r1, &mut oprf_key_rng).unwrap();
let r2_bytes = r2.serialize().to_vec();
let oprf_key_bytes = CS::Group::scalar_as_bytes(&server_registration.oprf_key).clone();
let server_registration_state = server_registration.to_bytes().to_vec();
let mut client_s_sk_and_nonce: Vec<u8> = Vec::new();
client_s_sk_and_nonce.extend_from_slice(&client_s_kp.private().to_arr());
client_s_sk_and_nonce.extend_from_slice(&envelope_nonce);
let mut finish_registration_rng = CycleRng::new(client_s_sk_and_nonce);
let (r3, export_key_registration) = client_registration
.finish(r2, server_s_kp.public(), &mut finish_registration_rng)
.unwrap();
let r3_bytes = r3.serialize().to_vec();
let password_file = server_registration.finish(r3).unwrap();
let password_file_bytes = password_file.to_bytes();
let mut client_login_start: Vec<u8> = Vec::new();
client_login_start.extend_from_slice(&blinding_factor_raw);
client_login_start.extend_from_slice(&client_e_kp.private().to_arr());
client_login_start.extend_from_slice(&client_nonce);
let mut client_login_start_rng = CycleRng::new(client_login_start);
let (l1, client_login) = ClientLogin::<CS>::start_with_user_and_server_name(
id_u,
id_s,
password,
&mut client_login_start_rng,
)
.unwrap();
let l1_bytes = l1.serialize().to_vec();
let client_login_state = client_login.to_bytes().to_vec();
let mut server_e_sk_rng = CycleRng::new(server_e_kp.private().to_arr().to_vec());
let (l2, server_login) = ServerLogin::<CS>::start(
password_file,
server_s_kp.private(),
l1,
&mut server_e_sk_rng,
)
.unwrap();
let l2_bytes = l2.serialize().to_vec();
let server_login_state = server_login.to_bytes().to_vec();
let mut client_e_sk_rng = CycleRng::new(client_e_kp.private().to_arr().to_vec());
let (l3, client_shared_secret, _export_key_login) = client_login
.finish(l2, server_s_kp.public(), &mut client_e_sk_rng)
.unwrap();
let l3_bytes = l3.to_bytes().to_vec();
TestVectorParameters {
client_s_pk: client_s_kp.public().to_arr().to_vec(),
client_s_sk: client_s_kp.private().to_arr().to_vec(),
client_e_pk: client_e_kp.public().to_arr().to_vec(),
client_e_sk: client_e_kp.private().to_arr().to_vec(),
server_s_pk: server_s_kp.public().to_arr().to_vec(),
server_s_sk: server_s_kp.private().to_arr().to_vec(),
server_e_pk: server_e_kp.public().to_arr().to_vec(),
server_e_sk: server_e_kp.private().to_arr().to_vec(),
id_u: id_u.to_vec(),
id_s: id_s.to_vec(),
password: password.to_vec(),
blinding_factor: blinding_factor_bytes.to_vec(),
oprf_key: oprf_key_bytes.to_vec(),
envelope_nonce: envelope_nonce.to_vec(),
client_nonce: client_nonce.to_vec(),
server_nonce: server_nonce.to_vec(),
r1: r1_bytes,
r2: r2_bytes,
r3: r3_bytes,
l1: l1_bytes,
l2: l2_bytes,
l3: l3_bytes,
password_file: password_file_bytes,
client_registration_state,
server_registration_state,
client_login_state,
server_login_state,
shared_secret: client_shared_secret,
export_key: export_key_registration.to_vec(),
}
}
#[test]
fn generate_test_vectors() {
let parameters = generate_parameters::<X255193dhNoSlowHash>();
println!("{}", stringify_test_vectors(&parameters));
}
// For fixing the blinding factor
fn postprocess_blinding_factor<G: Group>(_: G::Scalar) -> G::Scalar {
let parameters = populate_test_vectors(&serde_json::from_str(TEST_VECTOR).unwrap());
G::from_scalar_slice(GenericArray::from_slice(&parameters.blinding_factor[..])).unwrap()
}
#[test]
fn test_r1() -> Result<(), PakeError> {
let parameters = populate_test_vectors(&serde_json::from_str(TEST_VECTOR).unwrap());
let mut rng = OsRng;
let (r1, client_registration) = ClientRegistration::<X255193dhNoSlowHash>::start_with_user_and_server_name_and_postprocessing(
&parameters.id_u,
&parameters.id_s,
&parameters.password,
&mut rng,
postprocess_blinding_factor::<<X255193dhNoSlowHash as CipherSuite>::Group>,
)
.unwrap();
assert_eq!(hex::encode(&parameters.r1), hex::encode(r1.serialize()));
assert_eq!(
hex::encode(&parameters.client_registration_state),
hex::encode(client_registration.to_bytes())
);
Ok(())
}
#[test]
fn test_r2() -> Result<(), PakeError> {
let parameters = populate_test_vectors(&serde_json::from_str(TEST_VECTOR).unwrap());
let mut oprf_key_rng = CycleRng::new(parameters.oprf_key);
let (r2, server_registration) = ServerRegistration::<X255193dhNoSlowHash>::start(
RegisterFirstMessage::deserialize(&parameters.r1[..]).unwrap(),
&mut oprf_key_rng,
)
.unwrap();
assert_eq!(hex::encode(parameters.r2), hex::encode(r2.serialize()));
assert_eq!(
hex::encode(&parameters.server_registration_state),
hex::encode(server_registration.to_bytes())
);
Ok(())
}
#[test]
fn test_r3() -> Result<(), PakeError> {
let parameters = populate_test_vectors(&serde_json::from_str(TEST_VECTOR).unwrap());
let client_s_sk_and_nonce: Vec<u8> =
[parameters.client_s_sk, parameters.envelope_nonce].concat();
let mut finish_registration_rng = CycleRng::new(client_s_sk_and_nonce);
let (r3, export_key_registration) = ClientRegistration::<X255193dhNoSlowHash>::try_from(
&parameters.client_registration_state[..],
)
.unwrap()
.finish(
RegisterSecondMessage::deserialize(&parameters.r2[..]).unwrap(),
&Key::try_from(&parameters.server_s_pk[..]).unwrap(),
&mut finish_registration_rng,
)
.unwrap();
assert_eq!(hex::encode(parameters.r3), hex::encode(r3.serialize()));
assert_eq!(
hex::encode(parameters.export_key),
hex::encode(export_key_registration.to_vec())
);
Ok(())
}
#[test]
fn test_password_file() -> Result<(), PakeError> {
let parameters = populate_test_vectors(&serde_json::from_str(TEST_VECTOR).unwrap());
let server_registration = ServerRegistration::<X255193dhNoSlowHash>::try_from(
&parameters.server_registration_state[..],
)
.unwrap();
let password_file = server_registration
.finish(RegisterThirdMessage::deserialize(&parameters.r3[..]).unwrap())
.unwrap();
assert_eq!(
hex::encode(parameters.password_file),
hex::encode(password_file.to_bytes())
);
Ok(())
}
#[test]
fn test_l1() -> Result<(), PakeError> {
let parameters = populate_test_vectors(&serde_json::from_str(TEST_VECTOR).unwrap());
let client_login_start = [
vec![0u8; 64], // FIXME: don't hardcode this
parameters.client_e_sk,
parameters.client_nonce,
]
.concat();
let mut client_login_start_rng = CycleRng::new(client_login_start);
let (l1, client_login) =
ClientLogin::<X255193dhNoSlowHash>::start_with_user_and_server_name_and_postprocessing(
&parameters.id_u,
&parameters.id_s,
&parameters.password,
&mut client_login_start_rng,
postprocess_blinding_factor::<<X255193dhNoSlowHash as CipherSuite>::Group>,
)
.unwrap();
assert_eq!(hex::encode(&parameters.l1), hex::encode(l1.serialize()));
assert_eq!(
hex::encode(&parameters.client_login_state),
hex::encode(client_login.to_bytes())
);
Ok(())
}
#[test]
fn test_l2() -> Result<(), PakeError> {
let parameters = populate_test_vectors(&serde_json::from_str(TEST_VECTOR).unwrap());
let mut server_e_sk_rng = CycleRng::new(parameters.server_e_sk);
let (l2, server_login) = ServerLogin::<X255193dhNoSlowHash>::start(
ServerRegistration::try_from(&parameters.password_file[..]).unwrap(),
&Key::try_from(&parameters.server_s_sk[..]).unwrap(),
LoginFirstMessage::<X255193dhNoSlowHash>::deserialize(&parameters.l1[..]).unwrap(),
&mut server_e_sk_rng,
)
.unwrap();
assert_eq!(hex::encode(&parameters.l2), hex::encode(l2.serialize()));
assert_eq!(
hex::encode(&parameters.server_login_state),
hex::encode(server_login.to_bytes())
);
Ok(())
}
#[test]
fn test_l3() -> Result<(), PakeError> {
let parameters = populate_test_vectors(&serde_json::from_str(TEST_VECTOR).unwrap());
let mut client_e_sk_rng = CycleRng::new(parameters.client_e_sk.to_vec());
let (l3, shared_secret, export_key_login) =
ClientLogin::<X255193dhNoSlowHash>::try_from(&parameters.client_login_state[..])
.unwrap()
.finish(
LoginSecondMessage::<X255193dhNoSlowHash>::deserialize(&parameters.l2[..]).unwrap(),
&Key::try_from(&parameters.server_s_pk[..])?,
&mut client_e_sk_rng,
)
.unwrap();
assert_eq!(
hex::encode(&parameters.shared_secret),
hex::encode(&shared_secret)
);
assert_eq!(hex::encode(&parameters.l3), hex::encode(l3.to_bytes()));
assert_eq!(
hex::encode(&parameters.export_key),
hex::encode(export_key_login)
);
Ok(())
}
#[test]
fn test_server_login_finish() -> Result<(), ProtocolError> {
let parameters = populate_test_vectors(&serde_json::from_str(TEST_VECTOR).unwrap());
let shared_secret =
ServerLogin::<X255193dhNoSlowHash>::try_from(&parameters.server_login_state[..])
.unwrap()
.finish(LoginThirdMessage::try_from(&parameters.l3[..])?)
.unwrap();
assert_eq!(
hex::encode(parameters.shared_secret),
hex::encode(shared_secret)
);
Ok(())
}
fn test_complete_flow(
registration_password: &[u8],
login_password: &[u8],
) -> Result<(), ProtocolError> {
let mut client_rng = OsRng;
let mut server_rng = OsRng;
let server_kp = X255193dhNoSlowHash::generate_random_keypair(&mut server_rng)?;
let (register_m1, client_state) =
ClientRegistration::<X255193dhNoSlowHash>::start(registration_password, &mut client_rng)?;
let (register_m2, server_state) =
ServerRegistration::<X255193dhNoSlowHash>::start(register_m1, &mut server_rng)?;
let (register_m3, registration_export_key) =
client_state.finish(register_m2, server_kp.public(), &mut client_rng)?;
let p_file = server_state.finish(register_m3)?;
let (login_m1, client_login_state) =
ClientLogin::<X255193dhNoSlowHash>::start(login_password, &mut client_rng)?;
let (login_m2, server_login_state) = ServerLogin::<X255193dhNoSlowHash>::start(
p_file,
&server_kp.private(),
login_m1,
&mut server_rng,
)?;
let client_login_result =
client_login_state.finish(login_m2, &server_kp.public(), &mut client_rng);
if hex::encode(registration_password) == hex::encode(login_password) {
let (login_m3, client_shared_secret, login_export_key) = client_login_result?;
let server_shared_secret = server_login_state.finish(login_m3)?;
assert_eq!(
hex::encode(server_shared_secret),
hex::encode(client_shared_secret)
);
assert_eq!(
hex::encode(registration_export_key),
hex::encode(login_export_key)
);
} else {
let res = matches!(
client_login_result,
Err(ProtocolError::VerificationError(
PakeError::InvalidLoginError
))
);
assert!(res);
}
Ok(())
}
#[test]
fn test_complete_flow_success() -> Result<(), ProtocolError> {
test_complete_flow(b"good password", b"good password")
}
#[test]
fn test_complete_flow_fail() -> Result<(), ProtocolError> {
test_complete_flow(b"good password", b"bad password")
}