use std::collections::HashMap;
use std::num::NonZeroUsize;
use std::sync::Arc;
use std::time::{Duration, Instant};
use koan_core::auth::{self, Role};
use koan_core::db::pool::Pool;
use koan_core::db::queries::auth as auth_queries;
use lru::LruCache;
use parking_lot::{Condvar, Mutex};
use sha2::{Digest, Sha256};
const REMEMBER: Duration = Duration::from_secs(600);
const WAIT_FOR_CHECK: Duration = Duration::from_secs(5);
fn max_checks() -> usize {
std::thread::available_parallelism().map_or(2, |n| n.get().clamp(2, 8))
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum Refused {
Wrong,
Busy,
}
#[derive(Default)]
struct Check {
outcome: Mutex<Option<bool>>,
done: Condvar,
}
pub struct PasswordVerifier {
pool: Arc<Pool>,
verified: Mutex<LruCache<[u8; 32], Instant>>,
checking: Mutex<HashMap<[u8; 32], Arc<Check>>>,
max_checks: usize,
sealing: Option<[u8; 32]>,
}
impl PasswordVerifier {
pub fn new(pool: Arc<Pool>) -> Self {
let sealing = auth::subsonic_key()
.inspect_err(|e| log::warn!("Subsonic token auth for accounts is off: {e}"))
.ok();
Self::with_key(pool, sealing)
}
pub fn with_key(pool: Arc<Pool>, sealing: Option<[u8; 32]>) -> Self {
Self {
pool,
verified: Mutex::new(LruCache::new(NonZeroUsize::new(256).expect("non-zero"))),
checking: Mutex::new(HashMap::new()),
max_checks: max_checks(),
sealing,
}
}
pub fn verify_token(
&self,
username: &str,
token: &str,
salt: &str,
) -> Result<(i64, Role), Refused> {
use subtle::ConstantTimeEq;
let password = (|| {
let key = self.sealing.as_ref()?;
let sealed =
auth_queries::sealed_password(&self.pool.get().ok()?.conn, username).ok()??;
auth::open_password(key, username, &sealed)
})()
.ok_or(Refused::Wrong)?;
let expected = format!("{:x}", md5::compute(format!("{password}{salt}")));
if !bool::from(
token
.to_ascii_lowercase()
.as_bytes()
.ct_eq(expected.as_bytes()),
) {
return Err(Refused::Wrong);
}
self.verify(username, &password)
}
pub fn has_sealed(&self, username: &str) -> bool {
self.sealing.is_some()
&& self
.pool
.get()
.ok()
.and_then(|db| auth_queries::sealed_password(&db.conn, username).ok())
.flatten()
.is_some()
}
pub fn verify(&self, username: &str, password: &str) -> Result<(i64, Role), Refused> {
let db = self.pool.get().map_err(|_| Refused::Wrong)?;
let user =
auth_queries::get_user_by_username(&db.conn, username).map_err(|_| Refused::Wrong)?;
let hash = user.as_ref().map_or_else(
|| super::routes::dummy_password_hash(),
|u| u.password_hash.as_str(),
);
let key: [u8; 32] = Sha256::new()
.chain_update(username)
.chain_update([0])
.chain_update(password)
.chain_update([0])
.chain_update(hash)
.finalize()
.into();
let fresh = self
.verified
.lock()
.get(&key)
.is_some_and(|at| at.elapsed() < REMEMBER);
if !fresh {
if !self.check(key, password, hash)? {
return Err(Refused::Wrong);
}
if let Some(k) = &self.sealing
&& user.is_some()
&& let Ok(sealed) = auth::seal_password(k, username, password)
{
let _ = auth_queries::set_sealed_password(&db.conn, username, &sealed);
}
}
user.map(|u| (u.id, u.role)).ok_or(Refused::Wrong)
}
fn check(&self, key: [u8; 32], password: &str, hash: &str) -> Result<bool, Refused> {
let (check, running) = {
let mut checking = self.checking.lock();
match checking.get(&key) {
Some(check) => (check.clone(), true),
None if checking.len() >= self.max_checks => return Err(Refused::Busy),
None => {
let check = Arc::new(Check::default());
checking.insert(key, check.clone());
(check, false)
}
}
};
if running {
let deadline = Instant::now() + WAIT_FOR_CHECK;
let mut outcome = check.outcome.lock();
while outcome.is_none() && !check.done.wait_until(&mut outcome, deadline).timed_out() {}
return outcome.ok_or(Refused::Busy);
}
let ok = auth::verify_password(password, hash).is_ok();
if ok {
self.verified.lock().put(key, Instant::now());
}
*check.outcome.lock() = Some(ok);
check.done.notify_all();
self.checking.lock().remove(&key);
Ok(ok)
}
}
#[cfg(test)]
mod tests {
use super::*;
use koan_core::db::connection::Database;
fn verifier() -> (PasswordVerifier, tempfile::TempDir) {
let dir = tempfile::tempdir().unwrap();
let path = dir.path().join("test.db");
let db = Database::open(&path).unwrap();
koan_core::db::schema::create_tables(&db.conn).unwrap();
auth_queries::create_user(&db.conn, "mate", "hunter22", Role::Readonly).unwrap();
(
PasswordVerifier::with_key(Arc::new(Pool::new(path)), Some([7; 32])),
dir,
)
}
#[test]
fn right_password_gives_the_users_role() {
let (v, _dir) = verifier();
assert_eq!(v.verify("mate", "hunter22"), Ok((1, Role::Readonly)));
assert_eq!(v.verify("mate", "hunter22"), Ok((1, Role::Readonly)));
}
#[test]
fn token_auth_works_once_a_password_sign_in_sealed_it() {
let (v, _dir) = verifier();
let token = |pw: &str, salt: &str| format!("{:x}", md5::compute(format!("{pw}{salt}")));
assert_eq!(
v.verify_token("mate", &token("hunter22", "abc"), "abc"),
Err(Refused::Wrong)
);
assert!(!v.has_sealed("mate"));
v.verify("mate", "hunter22").unwrap();
assert!(v.has_sealed("mate"));
assert_eq!(
v.verify_token("mate", &token("hunter22", "abc"), "abc"),
Ok((1, Role::Readonly))
);
assert_eq!(
v.verify_token("mate", &token("hunter2", "abc"), "abc"),
Err(Refused::Wrong)
);
assert_eq!(
v.verify_token("nobody", &token("hunter22", "abc"), "abc"),
Err(Refused::Wrong)
);
}
#[test]
fn a_password_changed_elsewhere_makes_the_sealed_copy_fail() {
let (v, dir) = verifier();
v.verify("mate", "hunter22").unwrap();
let db = Database::open(&dir.path().join("test.db")).unwrap();
auth_queries::update_password(&db.conn, "mate", "correct horse").unwrap();
let token = format!("{:x}", md5::compute("hunter22salt"));
assert_eq!(v.verify_token("mate", &token, "salt"), Err(Refused::Wrong));
}
#[test]
fn a_sealed_password_opens_only_for_its_user_and_key() {
let sealed = auth::seal_password(&[1; 32], "mate", "hunter22").unwrap();
assert_eq!(
auth::open_password(&[1; 32], "mate", &sealed).as_deref(),
Some("hunter22")
);
assert_eq!(auth::open_password(&[1; 32], "owner", &sealed), None);
assert_eq!(auth::open_password(&[2; 32], "mate", &sealed), None);
}
#[test]
fn wrong_password_or_unknown_user_is_refused() {
let (v, _dir) = verifier();
assert_eq!(v.verify("mate", "hunter2"), Err(Refused::Wrong));
assert_eq!(v.verify("nobody", "hunter22"), Err(Refused::Wrong));
}
#[test]
fn checks_beyond_the_ceiling_are_refused_without_running() {
let (mut v, _dir) = verifier();
v.max_checks = 1;
assert!(v.verify("mate", "hunter22").is_ok());
v.checking.lock().insert([0; 32], Arc::default());
assert_eq!(v.verify("nobody", "guess"), Err(Refused::Busy));
assert_eq!(v.verify("mate", "hunter2"), Err(Refused::Busy));
assert_eq!(v.verify("mate", "hunter22"), Ok((1, Role::Readonly)));
}
#[test]
fn a_burst_of_one_sign_in_waits_for_a_single_check() {
let (mut v, _dir) = verifier();
v.max_checks = 1;
let v = Arc::new(v);
let burst: Vec<_> = (0..8)
.map(|_| {
let v = v.clone();
std::thread::spawn(move || v.verify("mate", "hunter22"))
})
.collect();
for t in burst {
assert_eq!(t.join().unwrap(), Ok((1, Role::Readonly)));
}
}
#[test]
fn a_changed_password_forgets_the_old_one() {
let (v, dir) = verifier();
assert!(v.verify("mate", "hunter22").is_ok());
let db = Database::open(&dir.path().join("test.db")).unwrap();
auth_queries::update_password(&db.conn, "mate", "correct horse").unwrap();
assert_eq!(v.verify("mate", "hunter22"), Err(Refused::Wrong));
assert_eq!(v.verify("mate", "correct horse"), Ok((1, Role::Readonly)));
}
}