For a while now WebAuthn has replaced u2f. And since web-vault v2.27.0 the connector files for u2f have been removed. Also, on the official bitwarden server the endpoint to `/two-factor/get-u2f` results in a 404. - Removed all u2f code except the migration code from u2f to WebAuthnpull/2398/head
parent
6643e83b61
commit
fb0c23b71f
@ -1,353 +0,0 @@
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use once_cell::sync::Lazy;
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use rocket::serde::json::Json;
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use rocket::Route;
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use serde_json::Value;
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use u2f::{
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messages::{RegisterResponse, SignResponse, U2fSignRequest},
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protocol::{Challenge, U2f},
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register::Registration,
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};
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use crate::{
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api::{
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core::two_factor::_generate_recover_code, ApiResult, EmptyResult, JsonResult, JsonUpcase, NumberOrString,
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PasswordData,
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},
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auth::Headers,
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db::{
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models::{TwoFactor, TwoFactorType},
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DbConn,
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},
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error::Error,
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CONFIG,
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};
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const U2F_VERSION: &str = "U2F_V2";
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static APP_ID: Lazy<String> = Lazy::new(|| format!("{}/app-id.json", &CONFIG.domain()));
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static U2F: Lazy<U2f> = Lazy::new(|| U2f::new(APP_ID.clone()));
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pub fn routes() -> Vec<Route> {
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routes![generate_u2f, generate_u2f_challenge, activate_u2f, activate_u2f_put, delete_u2f,]
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}
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#[post("/two-factor/get-u2f", data = "<data>")]
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async fn generate_u2f(data: JsonUpcase<PasswordData>, headers: Headers, conn: DbConn) -> JsonResult {
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if !CONFIG.domain_set() {
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err!("`DOMAIN` environment variable is not set. U2F disabled")
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}
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let data: PasswordData = data.into_inner().data;
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if !headers.user.check_valid_password(&data.MasterPasswordHash) {
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err!("Invalid password");
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}
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let (enabled, keys) = get_u2f_registrations(&headers.user.uuid, &conn).await?;
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let keys_json: Vec<Value> = keys.iter().map(U2FRegistration::to_json).collect();
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Ok(Json(json!({
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"Enabled": enabled,
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"Keys": keys_json,
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"Object": "twoFactorU2f"
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})))
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}
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#[post("/two-factor/get-u2f-challenge", data = "<data>")]
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async fn generate_u2f_challenge(data: JsonUpcase<PasswordData>, headers: Headers, conn: DbConn) -> JsonResult {
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let data: PasswordData = data.into_inner().data;
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if !headers.user.check_valid_password(&data.MasterPasswordHash) {
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err!("Invalid password");
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}
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let _type = TwoFactorType::U2fRegisterChallenge;
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let challenge = _create_u2f_challenge(&headers.user.uuid, _type, &conn).await.challenge;
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Ok(Json(json!({
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"UserId": headers.user.uuid,
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"AppId": APP_ID.to_string(),
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"Challenge": challenge,
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"Version": U2F_VERSION,
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})))
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}
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#[derive(Deserialize, Debug)]
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#[allow(non_snake_case)]
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struct EnableU2FData {
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Id: NumberOrString,
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// 1..5
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Name: String,
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MasterPasswordHash: String,
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DeviceResponse: String,
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}
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// This struct is referenced from the U2F lib
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// because it doesn't implement Deserialize
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#[derive(Serialize, Deserialize)]
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#[serde(rename_all = "camelCase")]
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#[serde(remote = "Registration")]
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struct RegistrationDef {
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key_handle: Vec<u8>,
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pub_key: Vec<u8>,
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attestation_cert: Option<Vec<u8>>,
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device_name: Option<String>,
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}
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#[derive(Serialize, Deserialize)]
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pub struct U2FRegistration {
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pub id: i32,
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pub name: String,
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#[serde(with = "RegistrationDef")]
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pub reg: Registration,
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pub counter: u32,
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compromised: bool,
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pub migrated: Option<bool>,
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}
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impl U2FRegistration {
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fn to_json(&self) -> Value {
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json!({
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"Id": self.id,
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"Name": self.name,
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"Compromised": self.compromised,
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})
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}
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}
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// This struct is copied from the U2F lib
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// to add an optional error code
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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struct RegisterResponseCopy {
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pub registration_data: String,
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pub version: String,
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pub client_data: String,
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pub error_code: Option<NumberOrString>,
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}
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impl From<RegisterResponseCopy> for RegisterResponse {
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fn from(r: RegisterResponseCopy) -> RegisterResponse {
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RegisterResponse {
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registration_data: r.registration_data,
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version: r.version,
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client_data: r.client_data,
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}
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}
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}
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#[post("/two-factor/u2f", data = "<data>")]
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async fn activate_u2f(data: JsonUpcase<EnableU2FData>, headers: Headers, conn: DbConn) -> JsonResult {
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let data: EnableU2FData = data.into_inner().data;
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let mut user = headers.user;
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if !user.check_valid_password(&data.MasterPasswordHash) {
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err!("Invalid password");
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}
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let tf_type = TwoFactorType::U2fRegisterChallenge as i32;
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let tf_challenge = match TwoFactor::find_by_user_and_type(&user.uuid, tf_type, &conn).await {
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Some(c) => c,
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None => err!("Can't recover challenge"),
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};
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let challenge: Challenge = serde_json::from_str(&tf_challenge.data)?;
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tf_challenge.delete(&conn).await?;
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let response: RegisterResponseCopy = serde_json::from_str(&data.DeviceResponse)?;
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let error_code = response.error_code.clone().map_or("0".into(), NumberOrString::into_string);
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if error_code != "0" {
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err!("Error registering U2F token")
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}
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let registration = U2F.register_response(challenge, response.into())?;
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let full_registration = U2FRegistration {
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id: data.Id.into_i32()?,
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name: data.Name,
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reg: registration,
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compromised: false,
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counter: 0,
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migrated: None,
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};
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let mut regs = get_u2f_registrations(&user.uuid, &conn).await?.1;
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// TODO: Check that there is no repeat Id
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regs.push(full_registration);
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save_u2f_registrations(&user.uuid, ®s, &conn).await?;
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_generate_recover_code(&mut user, &conn).await;
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let keys_json: Vec<Value> = regs.iter().map(U2FRegistration::to_json).collect();
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Ok(Json(json!({
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"Enabled": true,
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"Keys": keys_json,
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"Object": "twoFactorU2f"
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})))
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}
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#[put("/two-factor/u2f", data = "<data>")]
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async fn activate_u2f_put(data: JsonUpcase<EnableU2FData>, headers: Headers, conn: DbConn) -> JsonResult {
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activate_u2f(data, headers, conn).await
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}
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#[derive(Deserialize, Debug)]
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#[allow(non_snake_case)]
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struct DeleteU2FData {
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Id: NumberOrString,
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MasterPasswordHash: String,
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}
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#[delete("/two-factor/u2f", data = "<data>")]
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async fn delete_u2f(data: JsonUpcase<DeleteU2FData>, headers: Headers, conn: DbConn) -> JsonResult {
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let data: DeleteU2FData = data.into_inner().data;
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let id = data.Id.into_i32()?;
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if !headers.user.check_valid_password(&data.MasterPasswordHash) {
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err!("Invalid password");
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}
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let type_ = TwoFactorType::U2f as i32;
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let mut tf = match TwoFactor::find_by_user_and_type(&headers.user.uuid, type_, &conn).await {
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Some(tf) => tf,
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None => err!("U2F data not found!"),
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};
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let mut data: Vec<U2FRegistration> = match serde_json::from_str(&tf.data) {
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Ok(d) => d,
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Err(_) => err!("Error parsing U2F data"),
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};
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data.retain(|r| r.id != id);
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let new_data_str = serde_json::to_string(&data)?;
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tf.data = new_data_str;
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tf.save(&conn).await?;
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let keys_json: Vec<Value> = data.iter().map(U2FRegistration::to_json).collect();
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Ok(Json(json!({
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"Enabled": true,
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"Keys": keys_json,
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"Object": "twoFactorU2f"
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})))
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}
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async fn _create_u2f_challenge(user_uuid: &str, type_: TwoFactorType, conn: &DbConn) -> Challenge {
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let challenge = U2F.generate_challenge().unwrap();
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TwoFactor::new(user_uuid.into(), type_, serde_json::to_string(&challenge).unwrap())
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.save(conn)
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.await
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.expect("Error saving challenge");
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challenge
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}
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async fn save_u2f_registrations(user_uuid: &str, regs: &[U2FRegistration], conn: &DbConn) -> EmptyResult {
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TwoFactor::new(user_uuid.into(), TwoFactorType::U2f, serde_json::to_string(regs)?).save(conn).await
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}
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async fn get_u2f_registrations(user_uuid: &str, conn: &DbConn) -> Result<(bool, Vec<U2FRegistration>), Error> {
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let type_ = TwoFactorType::U2f as i32;
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let (enabled, regs) = match TwoFactor::find_by_user_and_type(user_uuid, type_, conn).await {
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Some(tf) => (tf.enabled, tf.data),
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None => return Ok((false, Vec::new())), // If no data, return empty list
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};
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let data = match serde_json::from_str(®s) {
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Ok(d) => d,
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Err(_) => {
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// If error, try old format
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let mut old_regs = _old_parse_registrations(®s);
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if old_regs.len() != 1 {
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err!("The old U2F format only allows one device")
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}
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// Convert to new format
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let new_regs = vec![U2FRegistration {
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id: 1,
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name: "Unnamed U2F key".into(),
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reg: old_regs.remove(0),
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compromised: false,
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counter: 0,
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migrated: None,
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}];
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// Save new format
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save_u2f_registrations(user_uuid, &new_regs, conn).await?;
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new_regs
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}
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};
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Ok((enabled, data))
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}
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fn _old_parse_registrations(registations: &str) -> Vec<Registration> {
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#[derive(Deserialize)]
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struct Helper(#[serde(with = "RegistrationDef")] Registration);
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let regs: Vec<Value> = serde_json::from_str(registations).expect("Can't parse Registration data");
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regs.into_iter().map(|r| serde_json::from_value(r).unwrap()).map(|Helper(r)| r).collect()
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}
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pub async fn generate_u2f_login(user_uuid: &str, conn: &DbConn) -> ApiResult<U2fSignRequest> {
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let challenge = _create_u2f_challenge(user_uuid, TwoFactorType::U2fLoginChallenge, conn).await;
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let registrations: Vec<_> = get_u2f_registrations(user_uuid, conn).await?.1.into_iter().map(|r| r.reg).collect();
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if registrations.is_empty() {
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err!("No U2F devices registered")
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}
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Ok(U2F.sign_request(challenge, registrations))
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}
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pub async fn validate_u2f_login(user_uuid: &str, response: &str, conn: &DbConn) -> EmptyResult {
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let challenge_type = TwoFactorType::U2fLoginChallenge as i32;
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let tf_challenge = TwoFactor::find_by_user_and_type(user_uuid, challenge_type, conn).await;
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let challenge = match tf_challenge {
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Some(tf_challenge) => {
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let challenge: Challenge = serde_json::from_str(&tf_challenge.data)?;
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tf_challenge.delete(conn).await?;
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challenge
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}
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None => err!("Can't recover login challenge"),
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};
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let response: SignResponse = serde_json::from_str(response)?;
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let mut registrations = get_u2f_registrations(user_uuid, conn).await?.1;
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if registrations.is_empty() {
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err!("No U2F devices registered")
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}
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for reg in &mut registrations {
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let response = U2F.sign_response(challenge.clone(), reg.reg.clone(), response.clone(), reg.counter);
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match response {
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Ok(new_counter) => {
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reg.counter = new_counter;
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save_u2f_registrations(user_uuid, ®istrations, conn).await?;
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return Ok(());
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}
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Err(u2f::u2ferror::U2fError::CounterTooLow) => {
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reg.compromised = true;
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save_u2f_registrations(user_uuid, ®istrations, conn).await?;
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err!("This device might be compromised!");
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}
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Err(e) => {
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warn!("E {:#}", e);
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// break;
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}
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}
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}
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err!("error verifying response")
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}
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Loading…
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