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https://github.com/dani-garcia/vaultwarden
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Add support for API keys
This is mainly useful for CLI-based login automation.
This commit is contained in:
parent
8ba6e61fd5
commit
69ee4a70b4
13 changed files with 164 additions and 7 deletions
0
migrations/mysql/2022-01-17-234911_add_api_key/down.sql
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migrations/mysql/2022-01-17-234911_add_api_key/down.sql
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migrations/mysql/2022-01-17-234911_add_api_key/up.sql
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migrations/mysql/2022-01-17-234911_add_api_key/up.sql
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@ -0,0 +1,2 @@
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ALTER TABLE users
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ADD COLUMN api_key VARCHAR(255);
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@ -0,0 +1,2 @@
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ALTER TABLE users
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ADD COLUMN api_key TEXT;
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migrations/sqlite/2022-01-17-234911_add_api_key/down.sql
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migrations/sqlite/2022-01-17-234911_add_api_key/down.sql
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migrations/sqlite/2022-01-17-234911_add_api_key/up.sql
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migrations/sqlite/2022-01-17-234911_add_api_key/up.sql
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@ -0,0 +1,2 @@
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ALTER TABLE users
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ADD COLUMN api_key TEXT;
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@ -34,6 +34,8 @@ pub fn routes() -> Vec<rocket::Route> {
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password_hint,
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prelogin,
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verify_password,
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api_key,
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rotate_api_key,
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]
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}
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@ -647,15 +649,17 @@ fn prelogin(data: JsonUpcase<PreloginData>, conn: DbConn) -> Json<Value> {
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"KdfIterations": kdf_iter
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}))
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}
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// https://github.com/bitwarden/server/blob/master/src/Api/Models/Request/Accounts/SecretVerificationRequestModel.cs
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#[derive(Deserialize)]
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#[allow(non_snake_case)]
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struct VerifyPasswordData {
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struct SecretVerificationRequest {
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MasterPasswordHash: String,
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}
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#[post("/accounts/verify-password", data = "<data>")]
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fn verify_password(data: JsonUpcase<VerifyPasswordData>, headers: Headers) -> EmptyResult {
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let data: VerifyPasswordData = data.into_inner().data;
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fn verify_password(data: JsonUpcase<SecretVerificationRequest>, headers: Headers) -> EmptyResult {
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let data: SecretVerificationRequest = data.into_inner().data;
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let user = headers.user;
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if !user.check_valid_password(&data.MasterPasswordHash) {
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@ -664,3 +668,32 @@ fn verify_password(data: JsonUpcase<VerifyPasswordData>, headers: Headers) -> Em
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Ok(())
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}
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fn _api_key(data: JsonUpcase<SecretVerificationRequest>, rotate: bool, headers: Headers, conn: DbConn) -> JsonResult {
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let data: SecretVerificationRequest = 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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if rotate || user.api_key.is_none() {
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user.api_key = Some(crypto::generate_api_key());
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user.save(&conn).expect("Error saving API key");
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}
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Ok(Json(json!({
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"ApiKey": user.api_key,
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"Object": "apiKey",
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})))
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}
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#[post("/accounts/api-key", data = "<data>")]
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fn api_key(data: JsonUpcase<SecretVerificationRequest>, headers: Headers, conn: DbConn) -> JsonResult {
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_api_key(data, false, headers, conn)
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}
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#[post("/accounts/rotate-api-key", data = "<data>")]
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fn rotate_api_key(data: JsonUpcase<SecretVerificationRequest>, headers: Headers, conn: DbConn) -> JsonResult {
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_api_key(data, true, headers, conn)
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}
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@ -43,6 +43,13 @@ fn login(data: Form<ConnectData>, conn: DbConn, ip: ClientIp) -> JsonResult {
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_password_login(data, conn, &ip)
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}
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"client_credentials" => {
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_check_is_some(&data.client_id, "client_id cannot be blank")?;
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_check_is_some(&data.client_secret, "client_secret cannot be blank")?;
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_check_is_some(&data.scope, "scope cannot be blank")?;
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_api_key_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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@ -178,6 +185,75 @@ fn _password_login(data: ConnectData, conn: DbConn, ip: &ClientIp) -> JsonResult
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Ok(Json(result))
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}
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fn _api_key_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" {
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err!("Scope not supported")
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}
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// Ratelimit the login
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crate::ratelimit::check_limit_login(&ip.ip)?;
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// Get the user via the client_id
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let client_id = data.client_id.as_ref().unwrap();
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let user_uuid = match client_id.strip_prefix("user.") {
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Some(uuid) => uuid,
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None => err!("Malformed client_id", format!("IP: {}.", ip.ip)),
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};
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let user = match User::find_by_uuid(user_uuid, &conn) {
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Some(user) => user,
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None => err!("Invalid client_id", format!("IP: {}.", ip.ip)),
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};
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// Check if the user is disabled
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if !user.enabled {
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err!("This user has been disabled (API key login)", format!("IP: {}. Username: {}.", ip.ip, user.email))
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}
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// Check API key. Note that API key logins bypass 2FA.
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let client_secret = data.client_secret.as_ref().unwrap();
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if !user.check_valid_api_key(client_secret) {
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err!("Incorrect client_secret", format!("IP: {}. Username: {}.", ip.ip, user.email))
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}
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let (mut device, new_device) = get_device(&data, &conn, &user);
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if CONFIG.mail_enabled() && new_device {
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let now = Utc::now().naive_utc();
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if let Err(e) = mail::send_new_device_logged_in(&user.email, &ip.ip.to_string(), &now, &device.name) {
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error!("Error sending new device email: {:#?}", e);
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if CONFIG.require_device_email() {
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err!("Could not send login notification email. Please contact your administrator.")
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}
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}
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}
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// Common
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let orgs = UserOrganization::find_confirmed_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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info!("User {} logged in successfully via API key. IP: {}", user.email, ip.ip);
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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.akey,
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"PrivateKey": user.private_key,
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"Kdf": user.client_kdf_type,
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"KdfIterations": user.client_kdf_iter,
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"ResetMasterPassword": false, // TODO: Same as above
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"scope": "api",
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"unofficialServer": true,
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})))
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}
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/// Retrieves an existing device or creates a new device from ConnectData and the User
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fn get_device(data: &ConnectData, conn: &DbConn, user: &User) -> (Device, bool) {
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// On iOS, device_type sends "iOS", on others it sends a number
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@ -374,17 +450,20 @@ fn _json_err_twofactor(providers: &[i32], user_uuid: &str, conn: &DbConn) -> Api
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Ok(result)
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}
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// https://github.com/bitwarden/jslib/blob/master/common/src/models/request/tokenRequest.ts
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// https://github.com/bitwarden/mobile/blob/master/src/Core/Models/Request/TokenRequest.cs
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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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// refresh_token, password, client_credentials (API key)
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grant_type: String,
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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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// Needed for grant_type = "password" | "client_credentials"
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client_id: Option<String>, // web, cli, desktop, browser, mobile
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client_secret: Option<String>, // API key login (cli only)
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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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@ -414,6 +493,7 @@ impl<'f> FromForm<'f> for ConnectData {
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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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"clientsecret" => form.client_secret = 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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@ -51,6 +51,28 @@ pub fn get_random(mut array: Vec<u8>) -> Vec<u8> {
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array
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}
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/// Generates a random string over a specified alphabet.
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pub fn get_random_string(alphabet: &[u8], num_chars: usize) -> String {
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// Ref: https://rust-lang-nursery.github.io/rust-cookbook/algorithms/randomness.html
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use rand::Rng;
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let mut rng = rand::thread_rng();
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(0..num_chars)
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.map(|_| {
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let i = rng.gen_range(0..alphabet.len());
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alphabet[i] as char
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})
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.collect()
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}
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/// Generates a random alphanumeric string.
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pub fn get_random_string_alphanum(num_chars: usize) -> String {
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const ALPHABET: &[u8] = b"ABCDEFGHIJKLMNOPQRSTUVWXYZ\
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abcdefghijklmnopqrstuvwxyz\
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0123456789";
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get_random_string(ALPHABET, num_chars)
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}
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pub fn generate_id(num_bytes: usize) -> String {
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HEXLOWER.encode(&get_random(vec![0; num_bytes]))
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}
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Ok(token)
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}
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/// Generates a personal API key.
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/// Upstream uses 30 chars, which is ~178 bits of entropy.
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pub fn generate_api_key() -> String {
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get_random_string_alphanum(30)
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}
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//
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// Constant time compare
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//
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@ -44,8 +44,9 @@ db_object! {
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pub client_kdf_type: i32,
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pub client_kdf_iter: i32,
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}
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pub api_key: Option<String>,
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}
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#[derive(Identifiable, Queryable, Insertable)]
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#[table_name = "invitations"]
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client_kdf_type: Self::CLIENT_KDF_TYPE_DEFAULT,
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client_kdf_iter: Self::CLIENT_KDF_ITER_DEFAULT,
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api_key: None,
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}
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}
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}
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}
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pub fn check_valid_api_key(&self, key: &str) -> bool {
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matches!(self.api_key, Some(ref api_key) if crate::crypto::ct_eq(api_key, key))
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}
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/// Set the password hash generated
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/// And resets the security_stamp. Based upon the allow_next_route the security_stamp will be different.
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///
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@ -178,6 +178,7 @@ table! {
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excluded_globals -> Text,
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client_kdf_type -> Integer,
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client_kdf_iter -> Integer,
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api_key -> Nullable<Text>,
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}
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}
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@ -178,6 +178,7 @@ table! {
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excluded_globals -> Text,
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client_kdf_type -> Integer,
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client_kdf_iter -> Integer,
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api_key -> Nullable<Text>,
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}
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}
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@ -178,6 +178,7 @@ table! {
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excluded_globals -> Text,
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client_kdf_type -> Integer,
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client_kdf_iter -> Integer,
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api_key -> Nullable<Text>,
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}
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}
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