Updated authenticator TOTP
- Added security check for previouse used codes - Allow TOTP codes with 1 step back and forward when there is a time drift. This means in total 3 codes could be valid. But only newer codes then the previouse used codes are excepted after that.
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ALTER TABLE twofactor ADD COLUMN last_used INTEGER NOT NULL DEFAULT 0;
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ALTER TABLE twofactor ADD COLUMN last_used INTEGER NOT NULL DEFAULT 0;
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ALTER TABLE twofactor ADD COLUMN last_used INTEGER NOT NULL DEFAULT 0;
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@ -77,7 +77,7 @@ fn activate_authenticator(data: JsonUpcase<EnableAuthenticatorData>, headers: He
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let twofactor = TwoFactor::new(user.uuid.clone(), type_, key.to_uppercase());
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// Validate the token provided with the key
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validate_totp_code(token, &twofactor.data)?;
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validate_totp_code(&user.uuid, token, &twofactor.data, &conn)?;
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_generate_recover_code(&mut user, &conn);
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twofactor.save(&conn)?;
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@ -94,27 +94,69 @@ fn activate_authenticator_put(data: JsonUpcase<EnableAuthenticatorData>, headers
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activate_authenticator(data, headers, conn)
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}
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pub fn validate_totp_code_str(totp_code: &str, secret: &str) -> EmptyResult {
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pub fn validate_totp_code_str(user_uuid: &str, totp_code: &str, secret: &str, conn: &DbConn) -> EmptyResult {
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let totp_code: u64 = match totp_code.parse() {
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Ok(code) => code,
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_ => err!("TOTP code is not a number"),
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};
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validate_totp_code(totp_code, secret)
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validate_totp_code(user_uuid, totp_code, secret, &conn)
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}
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pub fn validate_totp_code(totp_code: u64, secret: &str) -> EmptyResult {
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use oath::{totp_raw_now, HashType};
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pub fn validate_totp_code(user_uuid: &str, totp_code: u64, secret: &str, conn: &DbConn) -> EmptyResult {
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use oath::{totp_raw_custom_time, HashType};
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use std::time::{UNIX_EPOCH, SystemTime};
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let decoded_secret = match BASE32.decode(secret.as_bytes()) {
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Ok(s) => s,
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Err(_) => err!("Invalid TOTP secret"),
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};
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let generated = totp_raw_now(&decoded_secret, 6, 0, 30, &HashType::SHA1);
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if generated != totp_code {
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err!("Invalid TOTP code");
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let mut twofactor = TwoFactor::find_by_user_and_type(&user_uuid, TwoFactorType::Authenticator as i32, &conn)?;
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// Get the current system time in UNIX Epoch (UTC)
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let current_time: u64 = SystemTime::now().duration_since(UNIX_EPOCH)
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.expect("Earlier than 1970-01-01 00:00:00 UTC").as_secs();
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// First check the current time for a valid token.
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let time_step_now = (current_time / 30) as i32;
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let generated_now = totp_raw_custom_time(&decoded_secret, 6, 0, 30, current_time, &HashType::SHA1);
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if generated_now == totp_code && time_step_now > twofactor.last_used {
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twofactor.last_used = time_step_now;
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twofactor.save(&conn)?;
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return Ok(());
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} else if generated_now == totp_code && time_step_now <= twofactor.last_used {
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warn!("This or a future TOTP code has already been used!");
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err!("Invalid TOTP code!");
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}
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Ok(())
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// Check for time drifted codes
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// First check the previous TOTP code
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let time_step_prev = ((current_time - 30) / 30) as i32;
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let generated_prev = totp_raw_custom_time(&decoded_secret, 6, 0, 30, current_time - 30, &HashType::SHA1);
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if generated_prev == totp_code && time_step_prev > twofactor.last_used {
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info!("TOTP Time drift detected. Token is valide for one step on the past.");
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twofactor.last_used = time_step_prev;
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twofactor.save(&conn)?;
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return Ok(());
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} else if generated_prev == totp_code && time_step_prev <= twofactor.last_used {
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warn!("This or a future TOTP code has already been used!");
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err!("Invalid TOTP code!");
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}
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// Second check the next TOTP code
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let time_step_next = ((current_time + 30) / 30) as i32;
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let generated_next = totp_raw_custom_time(&decoded_secret, 6, 0, 30, current_time + 30, &HashType::SHA1);
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if generated_next == totp_code && time_step_next > twofactor.last_used {
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info!("TOTP Time drift detected. Token is valide for one step on the future.");
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twofactor.last_used = time_step_next;
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twofactor.save(&conn)?;
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return Ok(());
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} else if generated_next == totp_code && time_step_next <= twofactor.last_used {
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warn!("This or a previous TOTP code has already been used!");
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err!("Invalid TOTP code!");
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}
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// Else no valide code received, deny access
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err!("Invalid TOTP code!");
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}
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@ -197,7 +197,7 @@ fn twofactor_auth(
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let mut remember = data.two_factor_remember.unwrap_or(0);
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match TwoFactorType::from_i32(selected_id) {
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Some(TwoFactorType::Authenticator) => _tf::authenticator::validate_totp_code_str(twofactor_code, &selected_data?)?,
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Some(TwoFactorType::Authenticator) => _tf::authenticator::validate_totp_code_str(user_uuid, twofactor_code, &selected_data?, conn)?,
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Some(TwoFactorType::U2f) => _tf::u2f::validate_u2f_login(user_uuid, twofactor_code, conn)?,
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Some(TwoFactorType::YubiKey) => _tf::yubikey::validate_yubikey_login(twofactor_code, &selected_data?)?,
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Some(TwoFactorType::Duo) => _tf::duo::validate_duo_login(data.username.as_ref().unwrap(), twofactor_code, conn)?,
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@ -19,6 +19,7 @@ pub struct TwoFactor {
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pub atype: i32,
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pub enabled: bool,
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pub data: String,
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pub last_used: i32,
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}
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#[allow(dead_code)]
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@ -47,6 +48,7 @@ impl TwoFactor {
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atype: atype as i32,
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enabled: true,
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data,
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last_used: 0,
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}
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}
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@ -92,6 +92,7 @@ table! {
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atype -> Integer,
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enabled -> Bool,
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data -> Text,
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last_used -> Integer,
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}
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}
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@ -92,6 +92,7 @@ table! {
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atype -> Integer,
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enabled -> Bool,
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data -> Text,
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last_used -> Integer,
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}
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}
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@ -92,6 +92,7 @@ table! {
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atype -> Integer,
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enabled -> Bool,
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data -> Text,
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last_used -> Integer,
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}
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}
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