187 lines
6.2 KiB
Rust
187 lines
6.2 KiB
Rust
use std::collections::HashMap;
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use std::path::PathBuf;
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use std::sync::Arc;
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use tokio::signal::unix::{signal, SignalKind};
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use tokio::sync::watch;
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use anyhow::{anyhow, bail, Result};
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use async_trait::async_trait;
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use crate::config::*;
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use crate::login::*;
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use crate::storage;
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pub struct ContextualUserEntry {
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pub username: String,
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pub config: UserEntry,
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}
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#[derive(Default)]
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pub struct UserDatabase {
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users: HashMap<String, Arc<ContextualUserEntry>>,
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users_by_email: HashMap<String, Arc<ContextualUserEntry>>,
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}
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pub struct StaticLoginProvider {
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user_db: watch::Receiver<UserDatabase>,
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in_memory_store: storage::in_memory::MemDb,
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}
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pub async fn update_user_list(config: PathBuf, up: watch::Sender<UserDatabase>) -> Result<()> {
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let mut stream = signal(SignalKind::user_defined1())
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.expect("failed to install SIGUSR1 signal hander for reload");
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loop {
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let ulist: UserList = match read_config(config.clone()) {
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Ok(x) => x,
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Err(e) => {
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tracing::warn!(path=%config.as_path().to_string_lossy(), error=%e, "Unable to load config");
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stream.recv().await;
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continue;
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}
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};
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let users = ulist
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.into_iter()
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.map(|(username, config)| {
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(
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username.clone(),
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Arc::new(ContextualUserEntry { username, config }),
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)
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})
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.collect::<HashMap<_, _>>();
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let mut users_by_email = HashMap::new();
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for (_, u) in users.iter() {
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for m in u.config.email_addresses.iter() {
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if users_by_email.contains_key(m) {
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tracing::warn!("Several users have the same email address: {}", m);
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stream.recv().await;
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continue;
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}
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users_by_email.insert(m.clone(), u.clone());
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}
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}
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tracing::info!("{} users loaded", users.len());
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up.send(UserDatabase {
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users,
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users_by_email,
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})
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.context("update user db config")?;
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stream.recv().await;
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tracing::info!("Received SIGUSR1, reloading");
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}
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}
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impl StaticLoginProvider {
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pub async fn new(config: LoginStaticConfig) -> Result<Self> {
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let (tx, mut rx) = watch::channel(UserDatabase::default());
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tokio::spawn(update_user_list(config.user_list, tx));
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rx.changed().await?;
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Ok(Self {
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user_db: rx,
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in_memory_store: storage::in_memory::MemDb::new(),
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})
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}
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}
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#[async_trait]
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impl LoginProvider for StaticLoginProvider {
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async fn login(&self, username: &str, password: &str) -> Result<Credentials> {
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tracing::debug!(user=%username, "login");
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let user = {
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let user_db = self.user_db.borrow();
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match user_db.users.get(username) {
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None => bail!("User {} does not exist", username),
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Some(u) => u.clone(),
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}
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};
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tracing::debug!(user=%username, "verify password");
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if !verify_password(password, &user.config.password)? {
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bail!("Wrong password");
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}
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tracing::debug!(user=%username, "fetch keys");
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let storage: storage::Builder = match &user.config.storage {
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StaticStorage::InMemory => self.in_memory_store.builder(username).await,
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StaticStorage::Garage(grgconf) => {
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storage::garage::GarageBuilder::new(storage::garage::GarageConf {
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region: grgconf.aws_region.clone(),
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k2v_endpoint: grgconf.k2v_endpoint.clone(),
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s3_endpoint: grgconf.s3_endpoint.clone(),
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aws_access_key_id: grgconf.aws_access_key_id.clone(),
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aws_secret_access_key: grgconf.aws_secret_access_key.clone(),
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bucket: grgconf.bucket.clone(),
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})?
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}
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};
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let cr = CryptoRoot(user.config.crypto_root.clone());
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let keys = cr.crypto_keys(password)?;
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tracing::debug!(user=%username, "logged");
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Ok(Credentials { storage, keys })
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}
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async fn public_login(&self, email: &str) -> Result<PublicCredentials> {
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let user = {
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let user_db = self.user_db.borrow();
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match user_db.users_by_email.get(email) {
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None => bail!("Email {} does not exist", email),
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Some(u) => u.clone(),
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}
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};
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tracing::debug!(user=%user.username, "public_login");
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let storage: storage::Builder = match &user.config.storage {
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StaticStorage::InMemory => self.in_memory_store.builder(&user.username).await,
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StaticStorage::Garage(grgconf) => {
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storage::garage::GarageBuilder::new(storage::garage::GarageConf {
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region: grgconf.aws_region.clone(),
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k2v_endpoint: grgconf.k2v_endpoint.clone(),
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s3_endpoint: grgconf.s3_endpoint.clone(),
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aws_access_key_id: grgconf.aws_access_key_id.clone(),
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aws_secret_access_key: grgconf.aws_secret_access_key.clone(),
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bucket: grgconf.bucket.clone(),
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})?
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}
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};
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let cr = CryptoRoot(user.config.crypto_root.clone());
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let public_key = cr.public_key()?;
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Ok(PublicCredentials {
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storage,
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public_key,
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})
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}
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}
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pub fn hash_password(password: &str) -> Result<String> {
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use argon2::{
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password_hash::{rand_core::OsRng, PasswordHasher, SaltString},
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Argon2,
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};
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let salt = SaltString::generate(&mut OsRng);
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let argon2 = Argon2::default();
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Ok(argon2
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.hash_password(password.as_bytes(), &salt)
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.map_err(|e| anyhow!("Argon2 error: {}", e))?
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.to_string())
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}
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pub fn verify_password(password: &str, hash: &str) -> Result<bool> {
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use argon2::{
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password_hash::{PasswordHash, PasswordVerifier},
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Argon2,
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};
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let parsed_hash =
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PasswordHash::new(hash).map_err(|e| anyhow!("Invalid hashed password: {}", e))?;
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Ok(Argon2::default()
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.verify_password(password.as_bytes(), &parsed_hash)
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.is_ok())
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}
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