mirror of
https://github.com/dani-garcia/vaultwarden
synced 2024-11-13 21:41:43 +01:00
338 lines
12 KiB
Rust
338 lines
12 KiB
Rust
use rocket::request::{Form, FormItems, FromForm};
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use rocket::Route;
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use rocket_contrib::json::Json;
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use serde_json::Value;
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use num_traits::FromPrimitive;
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use crate::db::models::*;
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use crate::db::DbConn;
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use crate::util::{self, JsonMap};
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use crate::api::{ApiResult, EmptyResult, JsonResult};
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use crate::auth::ClientIp;
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use crate::CONFIG;
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pub fn routes() -> Vec<Route> {
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routes![login]
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}
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#[post("/connect/token", data = "<data>")]
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fn login(data: Form<ConnectData>, conn: DbConn, ip: ClientIp) -> JsonResult {
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let data: ConnectData = data.into_inner();
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match data.grant_type.as_ref() {
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"refresh_token" => {
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_check_is_some(&data.refresh_token, "refresh_token cannot be blank")?;
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_refresh_login(data, conn)
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}
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"password" => {
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_check_is_some(&data.client_id, "client_id cannot be blank")?;
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_check_is_some(&data.password, "password cannot be blank")?;
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_check_is_some(&data.scope, "scope cannot be blank")?;
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_check_is_some(&data.username, "username cannot be blank")?;
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_check_is_some(&data.device_identifier, "device_identifier cannot be blank")?;
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_check_is_some(&data.device_name, "device_name cannot be blank")?;
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_check_is_some(&data.device_type, "device_type cannot be blank")?;
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_password_login(data, conn, ip)
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}
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t => err!("Invalid type", t),
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}
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}
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fn _refresh_login(data: ConnectData, conn: DbConn) -> JsonResult {
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// Extract token
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let token = data.refresh_token.unwrap();
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// Get device by refresh token
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let mut device = match Device::find_by_refresh_token(&token, &conn) {
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Some(device) => device,
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None => err!("Invalid refresh token"),
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};
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// COMMON
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let user = User::find_by_uuid(&device.user_uuid, &conn).unwrap();
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let orgs = UserOrganization::find_by_user(&user.uuid, &conn);
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let (access_token, expires_in) = device.refresh_tokens(&user, orgs);
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device.save(&conn)?;
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Ok(Json(json!({
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"access_token": access_token,
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"expires_in": expires_in,
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"token_type": "Bearer",
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"refresh_token": device.refresh_token,
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"Key": user.key,
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"PrivateKey": user.private_key,
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})))
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}
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fn _password_login(data: ConnectData, conn: DbConn, ip: ClientIp) -> JsonResult {
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// Validate scope
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let scope = data.scope.as_ref().unwrap();
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if scope != "api offline_access" {
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err!("Scope not supported")
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}
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// Get the user
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let username = data.username.as_ref().unwrap();
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let user = match User::find_by_mail(username, &conn) {
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Some(user) => user,
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None => err!(
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"Username or password is incorrect. Try again",
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format!("IP: {}. Username: {}.", ip.ip, username)
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),
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};
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// Check password
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let password = data.password.as_ref().unwrap();
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if !user.check_valid_password(password) {
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err!(
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"Username or password is incorrect. Try again",
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format!("IP: {}. Username: {}.", ip.ip, username)
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)
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}
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// On iOS, device_type sends "iOS", on others it sends a number
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let device_type = util::try_parse_string(data.device_type.as_ref()).unwrap_or(0);
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let device_id = data.device_identifier.clone().expect("No device id provided");
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let device_name = data.device_name.clone().expect("No device name provided");
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// Find device or create new
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let mut device = match Device::find_by_uuid(&device_id, &conn) {
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Some(device) => {
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// Check if owned device, and recreate if not
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if device.user_uuid != user.uuid {
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info!("Device exists but is owned by another user. The old device will be discarded");
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Device::new(device_id, user.uuid.clone(), device_name, device_type)
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} else {
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device
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}
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}
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None => Device::new(device_id, user.uuid.clone(), device_name, device_type),
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};
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let twofactor_token = twofactor_auth(&user.uuid, &data.clone(), &mut device, &conn)?;
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// Common
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let user = User::find_by_uuid(&device.user_uuid, &conn).unwrap();
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let orgs = UserOrganization::find_by_user(&user.uuid, &conn);
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let (access_token, expires_in) = device.refresh_tokens(&user, orgs);
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device.save(&conn)?;
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let mut result = json!({
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"access_token": access_token,
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"expires_in": expires_in,
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"token_type": "Bearer",
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"refresh_token": device.refresh_token,
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"Key": user.key,
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"PrivateKey": user.private_key,
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//"TwoFactorToken": "11122233333444555666777888999"
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});
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if let Some(token) = twofactor_token {
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result["TwoFactorToken"] = Value::String(token);
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}
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info!("User {} logged in successfully. IP: {}", username, ip.ip);
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Ok(Json(result))
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}
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fn twofactor_auth(
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user_uuid: &str,
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data: &ConnectData,
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device: &mut Device,
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conn: &DbConn,
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) -> ApiResult<Option<String>> {
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let twofactors = TwoFactor::find_by_user(user_uuid, conn);
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let providers: Vec<_> = twofactors.iter().map(|tf| tf.type_).collect();
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// No twofactor token if twofactor is disabled
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if twofactors.is_empty() {
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return Ok(None);
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}
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let provider = data.two_factor_provider.unwrap_or(providers[0]); // If we aren't given a two factor provider, asume the first one
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let twofactor_code = match data.two_factor_token {
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Some(ref code) => code,
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None => err_json!(_json_err_twofactor(&providers, user_uuid, conn)?),
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};
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let twofactor = twofactors.iter().filter(|tf| tf.type_ == provider).nth(0);
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match TwoFactorType::from_i32(provider) {
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Some(TwoFactorType::Remember) => {
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match device.twofactor_remember {
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Some(ref remember) if remember == twofactor_code => return Ok(None), // No twofactor token needed here
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_ => err_json!(_json_err_twofactor(&providers, user_uuid, conn)?),
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}
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}
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Some(TwoFactorType::Authenticator) => {
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let twofactor = match twofactor {
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Some(tf) => tf,
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None => err!("TOTP not enabled"),
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};
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let totp_code: u64 = match twofactor_code.parse() {
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Ok(code) => code,
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_ => err!("Invalid TOTP code"),
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};
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if !twofactor.check_totp_code(totp_code) {
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err_json!(_json_err_twofactor(&providers, user_uuid, conn)?)
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}
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}
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Some(TwoFactorType::U2f) => {
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use crate::api::core::two_factor;
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two_factor::validate_u2f_login(user_uuid, &twofactor_code, conn)?;
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}
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Some(TwoFactorType::YubiKey) => {
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use crate::api::core::two_factor;
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two_factor::validate_yubikey_login(user_uuid, twofactor_code, conn)?;
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}
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_ => err!("Invalid two factor provider"),
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}
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if data.two_factor_remember.unwrap_or(0) == 1 {
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Ok(Some(device.refresh_twofactor_remember()))
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} else {
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device.delete_twofactor_remember();
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Ok(None)
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}
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}
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fn _json_err_twofactor(providers: &[i32], user_uuid: &str, conn: &DbConn) -> ApiResult<Value> {
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use crate::api::core::two_factor;
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let mut result = json!({
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"error" : "invalid_grant",
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"error_description" : "Two factor required.",
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"TwoFactorProviders" : providers,
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"TwoFactorProviders2" : {} // { "0" : null }
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});
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for provider in providers {
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result["TwoFactorProviders2"][provider.to_string()] = Value::Null;
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match TwoFactorType::from_i32(*provider) {
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Some(TwoFactorType::Authenticator) => { /* Nothing to do for TOTP */ }
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Some(TwoFactorType::U2f) if CONFIG.domain_set() => {
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let request = two_factor::generate_u2f_login(user_uuid, conn)?;
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let mut challenge_list = Vec::new();
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for key in request.registered_keys {
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let mut challenge_map = JsonMap::new();
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challenge_map.insert("appId".into(), Value::String(request.app_id.clone()));
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challenge_map.insert("challenge".into(), Value::String(request.challenge.clone()));
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challenge_map.insert("version".into(), Value::String(key.version));
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challenge_map.insert("keyHandle".into(), Value::String(key.key_handle.unwrap_or_default()));
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challenge_list.push(Value::Object(challenge_map));
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}
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let mut map = JsonMap::new();
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use serde_json;
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let challenge_list_str = serde_json::to_string(&challenge_list).unwrap();
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map.insert("Challenges".into(), Value::String(challenge_list_str));
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result["TwoFactorProviders2"][provider.to_string()] = Value::Object(map);
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}
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Some(tf_type @ TwoFactorType::YubiKey) => {
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let twofactor = match TwoFactor::find_by_user_and_type(user_uuid, tf_type as i32, &conn) {
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Some(tf) => tf,
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None => err!("No YubiKey devices registered"),
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};
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let yubikey_metadata: two_factor::YubikeyMetadata =
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serde_json::from_str(&twofactor.data).expect("Can't parse Yubikey Metadata");
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let mut map = JsonMap::new();
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map.insert("Nfc".into(), Value::Bool(yubikey_metadata.Nfc));
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result["TwoFactorProviders2"][provider.to_string()] = Value::Object(map);
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}
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_ => {}
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}
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}
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Ok(result)
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}
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#[derive(Debug, Clone, Default)]
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#[allow(non_snake_case)]
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struct ConnectData {
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grant_type: String, // refresh_token, password
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// Needed for grant_type="refresh_token"
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refresh_token: Option<String>,
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// Needed for grant_type="password"
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client_id: Option<String>, // web, cli, desktop, browser, mobile
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password: Option<String>,
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scope: Option<String>,
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username: Option<String>,
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device_identifier: Option<String>,
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device_name: Option<String>,
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device_type: Option<String>,
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// Needed for two-factor auth
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two_factor_provider: Option<i32>,
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two_factor_token: Option<String>,
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two_factor_remember: Option<i32>,
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}
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impl<'f> FromForm<'f> for ConnectData {
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type Error = String;
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fn from_form(items: &mut FormItems<'f>, _strict: bool) -> Result<Self, Self::Error> {
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let mut form = Self::default();
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for item in items {
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let (key, value) = item.key_value_decoded();
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let mut normalized_key = key.to_lowercase();
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normalized_key.retain(|c| c != '_'); // Remove '_'
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match normalized_key.as_ref() {
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"granttype" => form.grant_type = value,
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"refreshtoken" => form.refresh_token = Some(value),
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"clientid" => form.client_id = Some(value),
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"password" => form.password = Some(value),
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"scope" => form.scope = Some(value),
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"username" => form.username = Some(value),
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"deviceidentifier" => form.device_identifier = Some(value),
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"devicename" => form.device_name = Some(value),
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"devicetype" => form.device_type = Some(value),
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"twofactorprovider" => form.two_factor_provider = value.parse().ok(),
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"twofactortoken" => form.two_factor_token = Some(value),
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"twofactorremember" => form.two_factor_remember = value.parse().ok(),
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key => warn!("Detected unexpected parameter during login: {}", key),
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}
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}
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Ok(form)
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}
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}
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fn _check_is_some<T>(value: &Option<T>, msg: &str) -> EmptyResult {
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if value.is_none() {
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err!(msg)
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}
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Ok(())
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}
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