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opaque-vx/examples/simple_login.rs
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feat: upgrade crypto ecosystem to latest RustCrypto stack (#1)
Upgrade all core cryptographic dependencies to their latest versions:

Dependencies:
- digest: 0.10 to 0.11
- elliptic-curve: 0.13 to 0.14
- hkdf: 0.12 to 0.13
- hmac: 0.12 to 0.13
- rand: 0.8 to 0.10
- rand_chacha: 0.3 to 0.10
- sha2: 0.10 to 0.11
- getrandom: 0.2 to 0.4 (WASM)
- ml-kem: 0.3.0-rc.0 to 0.3
- ecdsa: 0.16 to 0.17.0-rc.23
- rfc6979: 0.4 to 0.6 (now internal to ecdsa)
- p256/p384/p521: 0.13 to 0.14.0-rc.15
- curve25519-dalek: 4 to 5.0.0-rc
- ed25519-dalek: 2 to 3.0.0-rc
- cryptoki: 0.9 to 0.12
- rustyline: 17 to 18
- scrypt: 0.11 to 0.12
- voprf replaced by voprf-vx 1.0.0-pre.0

Migration changes:
- generic-array 0.14 to 1.4 with hybrid-array 0.4 interop
- ArrayLength<u8> to ArrayLength (generic-array 1.x)
- Added ConcatExt trait to disambiguate from [T]::concat
- Replaced Hmac with SimpleHmac for digest 0.11 compatibility
- Added OutputSize<H>: ArrayLength bounds throughout Hash trait
- Converted hybrid_array::Array between GenericArray at API boundaries
- Updated GroupEncoding Repr bound to hybrid_array::Array
- ECDSA sign now uses ecdsa::hazmat::sign_prehashed_rfc6979
- Removed direct rfc6979 dependency (handled by ecdsa internally)
- Replaced bincode with postcard for no_std serialization
- Re-exported hybrid_array from crate root

Other changes:
- Renamed crate to opaque-vx
- Increased MSRV to 1.89
- Added cryptography to Cargo.toml categories
- Removed Facebook-specific contributions from CONTRIBUTING.md
- Removed v3 to v4 migration test
- Removed unstable rustfmt configurations for stable compatibility

Reviewed-on: #1
Co-authored-by: UneBaguette <[email protected]>
Co-committed-by: UneBaguette <[email protected]>
2026-07-01 11:52:12 +02:00

260 lines
9.4 KiB
Rust

// Copyright (c) Meta Platforms, Inc. and affiliates.
//
// This source code is dual-licensed under either the MIT license found in the
// LICENSE-MIT file in the root directory of this source tree or the Apache
// License, Version 2.0 found in the LICENSE-APACHE file in the root directory
// of this source tree. You may select, at your option, one of the above-listed
// licenses.
//! Demonstrates a simple client-server password-based login protocol using
//! OPAQUE, over a command-line interface
//!
//! The client-server interactions are executed in a three-step protocol within
//! the account_registration (for password registration) and account_login (for
//! password login) functions. These steps must be performed in the specific
//! sequence outlined in each of these functions.
//!
//! The CipherSuite trait allows the application to configure the primitives
//! used by OPAQUE, but must be kept consistent across the steps of the
//! protocol.
//!
//! In a more realistic client-server interaction, the client must send messages
//! over "the wire" to the server. These bytes are serialized and explicitly
//! annotated in the below functions.
use opaque_vx::argon2::Argon2;
use opaque_vx::ciphersuite::CipherSuite;
use opaque_vx::hybrid_array::Array;
use opaque_vx::rand::rngs::SysRng;
use opaque_vx::{
ClientLogin, ClientLoginFinishParameters, ClientRegistration,
ClientRegistrationFinishParameters, CredentialFinalization, CredentialRequest,
CredentialResponse, RegistrationRequest, RegistrationResponse, RegistrationUpload, ServerLogin,
ServerLoginParameters, ServerRegistration, ServerRegistrationLen, ServerSetup,
};
use rand_core::UnwrapErr;
use rustyline::Editor;
use rustyline::error::ReadlineError;
use rustyline::history::DefaultHistory;
use std::collections::HashMap;
use std::process::exit;
// The ciphersuite trait allows to specify the underlying primitives that will
// be used in the OPAQUE protocol
#[allow(dead_code)]
struct DefaultCipherSuite;
#[cfg(feature = "ristretto255")]
impl CipherSuite for DefaultCipherSuite {
type OprfCs = opaque_vx::Ristretto255;
type KeyExchange = opaque_vx::TripleDh<opaque_vx::Ristretto255, sha2::Sha512>;
type Ksf = Argon2<'static>;
}
#[cfg(not(feature = "ristretto255"))]
impl CipherSuite for DefaultCipherSuite {
type OprfCs = p256::NistP256;
type KeyExchange = opaque_vx::TripleDh<p256::NistP256, sha2::Sha256>;
type Ksf = Argon2<'static>;
}
// Password-based registration between a client and server
fn account_registration(
server_setup: &ServerSetup<DefaultCipherSuite>,
username: String,
password: String,
) -> Array<u8, ServerRegistrationLen<DefaultCipherSuite>> {
let mut client_rng = UnwrapErr(SysRng);
let client_registration_start_result =
ClientRegistration::<DefaultCipherSuite>::start(&mut client_rng, password.as_bytes())
.unwrap();
let registration_request_bytes = client_registration_start_result.message.serialize();
// Client sends registration_request_bytes to server
let server_registration_start_result = ServerRegistration::<DefaultCipherSuite>::start(
server_setup,
RegistrationRequest::deserialize(&registration_request_bytes).unwrap(),
username.as_bytes(),
)
.unwrap();
let registration_response_bytes = server_registration_start_result.message.serialize();
// Server sends registration_response_bytes to client
let client_finish_registration_result = client_registration_start_result
.state
.finish(
&mut client_rng,
password.as_bytes(),
RegistrationResponse::deserialize(&registration_response_bytes).unwrap(),
ClientRegistrationFinishParameters::default(),
)
.unwrap();
let message_bytes = client_finish_registration_result.message.serialize();
// Client sends message_bytes to server
let password_file = ServerRegistration::finish(
RegistrationUpload::<DefaultCipherSuite>::deserialize(&message_bytes).unwrap(),
);
password_file.serialize().into_ha0_4()
}
// Password-based login between a client and server
fn account_login(
server_setup: &ServerSetup<DefaultCipherSuite>,
username: String,
password: String,
password_file_bytes: &[u8],
) -> bool {
let mut client_rng = UnwrapErr(SysRng);
let client_login_start_result =
ClientLogin::<DefaultCipherSuite>::start(&mut client_rng, password.as_bytes()).unwrap();
let credential_request_bytes = client_login_start_result.message.serialize();
// Client sends credential_request_bytes to server
let password_file =
ServerRegistration::<DefaultCipherSuite>::deserialize(password_file_bytes).unwrap();
let mut server_rng = UnwrapErr(SysRng);
let server_login_start_result = ServerLogin::start(
&mut server_rng,
server_setup,
Some(password_file),
CredentialRequest::deserialize(&credential_request_bytes).unwrap(),
username.as_bytes(),
ServerLoginParameters::default(),
)
.unwrap();
let credential_response_bytes = server_login_start_result.message.serialize();
// Server sends credential_response_bytes to client
let result = client_login_start_result.state.finish(
&mut client_rng,
password.as_bytes(),
CredentialResponse::deserialize(&credential_response_bytes).unwrap(),
ClientLoginFinishParameters::default(),
);
if result.is_err() {
// Client-detected login failure
return false;
}
let client_login_finish_result = result.unwrap();
let credential_finalization_bytes = client_login_finish_result.message.serialize();
// Client sends credential_finalization_bytes to server
let server_login_finish_result = server_login_start_result
.state
.finish(
CredentialFinalization::deserialize(&credential_finalization_bytes).unwrap(),
ServerLoginParameters::default(),
)
.unwrap();
client_login_finish_result.session_key == server_login_finish_result.session_key
}
fn main() {
let mut rng = UnwrapErr(SysRng);
let server_setup = ServerSetup::<DefaultCipherSuite>::new(&mut rng);
let mut rl = Editor::<(), _>::new().unwrap();
let mut registered_users =
HashMap::<String, Array<u8, ServerRegistrationLen<DefaultCipherSuite>>>::new();
loop {
println!(
"\nCurrently registered usernames: {:?}\n",
registered_users.keys()
);
println!("Enter an option (1 or 2):");
println!("1) Register a user");
println!("2) Login as a user\n");
let readline = rl.readline("> ");
match readline {
Ok(line) => {
if line != "1" && line != "2" {
println!("Error: Invalid option (either specify 1 or 2)");
continue;
}
let (username, password) = get_two_strings("Username", "Password", &mut rl, None);
match line.as_ref() {
"1" => {
registered_users.insert(
username.clone(),
account_registration(&server_setup, username, password),
);
continue;
}
"2" => match registered_users.get(&username) {
Some(password_file_bytes) => {
if account_login(&server_setup, username, password, password_file_bytes)
{
println!("\nLogin success!");
} else {
// Note that at this point, the client knows whether or not the
// login succeeded. In this example, we simply rely on
// client-reported result of login, but in a real client-server
// implementation, the server may not know the outcome of login yet,
// and extra care must be taken to ensure that the server can learn
// the outcome as well.
println!("\nIncorrect password, please try again.");
}
}
None => println!("Error: Could not find username registered"),
},
_ => exit(0),
}
}
Err(err) => {
handle_error(err);
exit(0)
}
}
}
}
// Helper functions
// Handle readline errors
fn handle_error(err: ReadlineError) {
match err {
ReadlineError::Interrupted => {
println!("CTRL-C");
}
ReadlineError::Eof => {
println!("CTRL-D");
}
err => {
println!("Error: {err:?}");
}
}
}
// A function run on the client which extracts two strings from the CLI
fn get_two_strings(
s1: &str,
s2: &str,
rl: &mut Editor<(), DefaultHistory>,
string1: Option<String>,
) -> (String, String) {
let query = if string1.is_none() { s1 } else { s2 };
let readline = rl.readline(&format!("{query}: "));
match readline {
Ok(line) => match string1 {
Some(x) => (x, line),
None => get_two_strings(s1, s2, rl, Some(line)),
},
Err(err) => {
handle_error(err);
exit(0)
}
}
}