persistent memberships (#49)

Reviewed-on: lavina/lavina#49
This commit is contained in:
Nikita Vilunov 2024-04-15 09:06:10 +00:00
parent 57b6af8732
commit 0105a5b710
10 changed files with 284 additions and 72 deletions

View File

@ -7,16 +7,16 @@
//! //!
//! A player actor is a serial handler of commands from a single player. It is preferable to run all per-player validations in the player actor, //! A player actor is a serial handler of commands from a single player. It is preferable to run all per-player validations in the player actor,
//! so that they don't overload the room actor. //! so that they don't overload the room actor.
use std::{ use std::collections::{HashMap, HashSet};
collections::{HashMap, HashSet}, use std::sync::Arc;
sync::{Arc, RwLock},
};
use prometheus::{IntGauge, Registry as MetricsRegistry}; use prometheus::{IntGauge, Registry as MetricsRegistry};
use serde::Serialize; use serde::Serialize;
use tokio::sync::mpsc::{channel, Receiver, Sender}; use tokio::sync::mpsc::{channel, Receiver, Sender};
use tokio::sync::RwLock;
use crate::prelude::*; use crate::prelude::*;
use crate::repo::Storage;
use crate::room::{RoomHandle, RoomId, RoomInfo, RoomRegistry}; use crate::room::{RoomHandle, RoomId, RoomInfo, RoomRegistry};
use crate::table::{AnonTable, Key as AnonKey}; use crate::table::{AnonTable, Key as AnonKey};
@ -208,36 +208,41 @@ pub enum Updates {
#[derive(Clone)] #[derive(Clone)]
pub struct PlayerRegistry(Arc<RwLock<PlayerRegistryInner>>); pub struct PlayerRegistry(Arc<RwLock<PlayerRegistryInner>>);
impl PlayerRegistry { impl PlayerRegistry {
pub fn empty(room_registry: RoomRegistry, metrics: &mut MetricsRegistry) -> Result<PlayerRegistry> { pub fn empty(
room_registry: RoomRegistry,
storage: Storage,
metrics: &mut MetricsRegistry,
) -> Result<PlayerRegistry> {
let metric_active_players = IntGauge::new("chat_players_active", "Number of alive player actors")?; let metric_active_players = IntGauge::new("chat_players_active", "Number of alive player actors")?;
metrics.register(Box::new(metric_active_players.clone()))?; metrics.register(Box::new(metric_active_players.clone()))?;
let inner = PlayerRegistryInner { let inner = PlayerRegistryInner {
room_registry, room_registry,
storage,
players: HashMap::new(), players: HashMap::new(),
metric_active_players, metric_active_players,
}; };
Ok(PlayerRegistry(Arc::new(RwLock::new(inner)))) Ok(PlayerRegistry(Arc::new(RwLock::new(inner))))
} }
pub async fn get_or_create_player(&mut self, id: PlayerId) -> PlayerHandle { pub async fn get_or_launch_player(&mut self, id: &PlayerId) -> PlayerHandle {
let mut inner = self.0.write().unwrap(); let mut inner = self.0.write().await;
if let Some((handle, _)) = inner.players.get(&id) { if let Some((handle, _)) = inner.players.get(id) {
handle.clone() handle.clone()
} else { } else {
let (handle, fiber) = Player::launch(id.clone(), inner.room_registry.clone()); let (handle, fiber) = Player::launch(id.clone(), inner.room_registry.clone(), inner.storage.clone()).await;
inner.players.insert(id, (handle.clone(), fiber)); inner.players.insert(id.clone(), (handle.clone(), fiber));
inner.metric_active_players.inc(); inner.metric_active_players.inc();
handle handle
} }
} }
pub async fn connect_to_player(&mut self, id: PlayerId) -> PlayerConnection { pub async fn connect_to_player(&mut self, id: &PlayerId) -> PlayerConnection {
let player_handle = self.get_or_create_player(id).await; let player_handle = self.get_or_launch_player(id).await;
player_handle.subscribe().await player_handle.subscribe().await
} }
pub async fn shutdown_all(&mut self) -> Result<()> { pub async fn shutdown_all(&mut self) -> Result<()> {
let mut inner = self.0.write().unwrap(); let mut inner = self.0.write().await;
for (i, (k, j)) in inner.players.drain() { for (i, (k, j)) in inner.players.drain() {
k.send(ActorCommand::Stop).await; k.send(ActorCommand::Stop).await;
drop(k); drop(k);
@ -252,6 +257,8 @@ impl PlayerRegistry {
/// The player registry state representation. /// The player registry state representation.
struct PlayerRegistryInner { struct PlayerRegistryInner {
room_registry: RoomRegistry, room_registry: RoomRegistry,
storage: Storage,
/// Active player actors.
players: HashMap<PlayerId, (PlayerHandle, JoinHandle<Player>)>, players: HashMap<PlayerId, (PlayerHandle, JoinHandle<Player>)>,
metric_active_players: IntGauge, metric_active_players: IntGauge,
} }
@ -259,32 +266,49 @@ struct PlayerRegistryInner {
/// Player actor inner state representation. /// Player actor inner state representation.
struct Player { struct Player {
player_id: PlayerId, player_id: PlayerId,
storage_id: u32,
connections: AnonTable<Sender<Updates>>, connections: AnonTable<Sender<Updates>>,
my_rooms: HashMap<RoomId, RoomHandle>, my_rooms: HashMap<RoomId, RoomHandle>,
banned_from: HashSet<RoomId>, banned_from: HashSet<RoomId>,
rx: Receiver<ActorCommand>, rx: Receiver<ActorCommand>,
handle: PlayerHandle, handle: PlayerHandle,
rooms: RoomRegistry, rooms: RoomRegistry,
storage: Storage,
} }
impl Player { impl Player {
fn launch(player_id: PlayerId, rooms: RoomRegistry) -> (PlayerHandle, JoinHandle<Player>) { async fn launch(player_id: PlayerId, rooms: RoomRegistry, storage: Storage) -> (PlayerHandle, JoinHandle<Player>) {
let (tx, rx) = channel(32); let (tx, rx) = channel(32);
let handle = PlayerHandle { tx }; let handle = PlayerHandle { tx };
let handle_clone = handle.clone(); let handle_clone = handle.clone();
let storage_id = storage.retrieve_user_id_by_name(player_id.as_inner()).await.unwrap().unwrap();
let player = Player { let player = Player {
player_id, player_id,
storage_id,
// connections are empty when the actor is just started
connections: AnonTable::new(), connections: AnonTable::new(),
// room handlers will be loaded later in the started task
my_rooms: HashMap::new(), my_rooms: HashMap::new(),
banned_from: HashSet::from([RoomId::from("Empty").unwrap()]), // TODO implement and load bans
banned_from: HashSet::new(),
rx, rx,
handle, handle,
rooms, rooms,
storage,
}; };
let fiber = tokio::task::spawn(player.main_loop()); let fiber = tokio::task::spawn(player.main_loop());
(handle_clone, fiber) (handle_clone, fiber)
} }
async fn main_loop(mut self) -> Self { async fn main_loop(mut self) -> Self {
let rooms = self.storage.get_rooms_of_a_user(self.storage_id).await.unwrap();
for room_id in rooms {
let room = self.rooms.get_room(&room_id).await;
if let Some(room) = room {
self.my_rooms.insert(room_id, room);
} else {
tracing::error!("Room #{room_id:?} not found");
}
}
while let Some(cmd) = self.rx.recv().await { while let Some(cmd) = self.rx.recv().await {
match cmd { match cmd {
ActorCommand::AddConnection { sender, promise } => { ActorCommand::AddConnection { sender, promise } => {
@ -372,7 +396,8 @@ impl Player {
todo!(); todo!();
} }
}; };
room.subscribe(self.player_id.clone(), self.handle.clone()).await; room.add_member(&self.player_id, self.storage_id).await;
room.subscribe(&self.player_id, self.handle.clone()).await;
self.my_rooms.insert(room_id.clone(), room.clone()); self.my_rooms.insert(room_id.clone(), room.clone());
let room_info = room.get_room_info().await; let room_info = room.get_room_info().await;
let update = Updates::RoomJoined { let update = Updates::RoomJoined {
@ -387,6 +412,7 @@ impl Player {
let room = self.my_rooms.remove(&room_id); let room = self.my_rooms.remove(&room_id);
if let Some(room) = room { if let Some(room) = room {
room.unsubscribe(&self.player_id).await; room.unsubscribe(&self.player_id).await;
room.remove_member(&self.player_id, self.storage_id).await;
} }
let update = Updates::RoomLeft { let update = Updates::RoomLeft {
room_id, room_id,
@ -396,12 +422,11 @@ impl Player {
} }
async fn send_message(&mut self, connection_id: ConnectionId, room_id: RoomId, body: Str) { async fn send_message(&mut self, connection_id: ConnectionId, room_id: RoomId, body: Str) {
let room = self.rooms.get_room(&room_id).await; let Some(room) = self.my_rooms.get(&room_id) else {
if let Some(room) = room {
room.send_message(self.player_id.clone(), body.clone()).await;
} else {
tracing::info!("no room found"); tracing::info!("no room found");
} return;
};
room.send_message(&self.player_id, body.clone()).await;
let update = Updates::NewMessage { let update = Updates::NewMessage {
room_id, room_id,
author_id: self.player_id.clone(), author_id: self.player_id.clone(),
@ -411,12 +436,11 @@ impl Player {
} }
async fn change_topic(&mut self, connection_id: ConnectionId, room_id: RoomId, new_topic: Str) { async fn change_topic(&mut self, connection_id: ConnectionId, room_id: RoomId, new_topic: Str) {
let room = self.rooms.get_room(&room_id).await; let Some(room) = self.my_rooms.get(&room_id) else {
if let Some(mut room) = room {
room.set_topic(self.player_id.clone(), new_topic.clone()).await;
} else {
tracing::info!("no room found"); tracing::info!("no room found");
} return;
};
room.set_topic(&self.player_id, new_topic.clone()).await;
let update = Updates::RoomTopicChanged { room_id, new_topic }; let update = Updates::RoomTopicChanged { room_id, new_topic };
self.broadcast_update(update, connection_id).await; self.broadcast_update(update, connection_id).await;
} }

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@ -11,6 +11,9 @@ use tokio::sync::Mutex;
use crate::prelude::*; use crate::prelude::*;
mod room;
mod user;
#[derive(Deserialize, Debug, Clone)] #[derive(Deserialize, Debug, Clone)]
pub struct StorageConfig { pub struct StorageConfig {
pub db_path: String, pub db_path: String,
@ -48,7 +51,7 @@ impl Storage {
Ok(res) Ok(res)
} }
pub async fn retrieve_room_by_name(&mut self, name: &str) -> Result<Option<StoredRoom>> { pub async fn retrieve_room_by_name(&self, name: &str) -> Result<Option<StoredRoom>> {
let mut executor = self.conn.lock().await; let mut executor = self.conn.lock().await;
let res = sqlx::query_as( let res = sqlx::query_as(
"select id, name, topic, message_count "select id, name, topic, message_count

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@ -0,0 +1,33 @@
use anyhow::Result;
use crate::repo::Storage;
impl Storage {
pub async fn add_room_member(&self, room_id: u32, player_id: u32) -> Result<()> {
let mut executor = self.conn.lock().await;
sqlx::query(
"insert into memberships(user_id, room_id, status)
values (?, ?, 1);",
)
.bind(player_id)
.bind(room_id)
.execute(&mut *executor)
.await?;
Ok(())
}
pub async fn remove_room_member(&self, room_id: u32, player_id: u32) -> Result<()> {
let mut executor = self.conn.lock().await;
sqlx::query(
"delete from memberships
where user_id = ? and room_id = ?;",
)
.bind(player_id)
.bind(room_id)
.execute(&mut *executor)
.await?;
Ok(())
}
}

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@ -0,0 +1,30 @@
use anyhow::Result;
use crate::repo::Storage;
use crate::room::RoomId;
impl Storage {
pub async fn retrieve_user_id_by_name(&self, name: &str) -> Result<Option<u32>> {
let mut executor = self.conn.lock().await;
let res: Option<(u32,)> = sqlx::query_as("select u.id from users u where u.name = ?;")
.bind(name)
.fetch_optional(&mut *executor)
.await?;
Ok(res.map(|(id,)| id))
}
pub async fn get_rooms_of_a_user(&self, user_id: u32) -> Result<Vec<RoomId>> {
let mut executor = self.conn.lock().await;
let res: Vec<(String,)> = sqlx::query_as(
"select r.name
from memberships m inner join rooms r on m.room_id = r.id
where m.user_id = ?;",
)
.bind(user_id)
.fetch_all(&mut *executor)
.await?;
res.into_iter().map(|(room_id,)| RoomId::from(room_id)).collect()
}
}

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@ -1,4 +1,5 @@
//! Domain of rooms — chats with multiple participants. //! Domain of rooms — chats with multiple participants.
use std::collections::HashSet;
use std::{collections::HashMap, hash::Hash, sync::Arc}; use std::{collections::HashMap, hash::Hash, sync::Arc};
use prometheus::{IntGauge, Registry as MetricRegistry}; use prometheus::{IntGauge, Registry as MetricRegistry};
@ -48,27 +49,9 @@ impl RoomRegistry {
pub async fn get_or_create_room(&mut self, room_id: RoomId) -> Result<RoomHandle> { pub async fn get_or_create_room(&mut self, room_id: RoomId) -> Result<RoomHandle> {
let mut inner = self.0.write().await; let mut inner = self.0.write().await;
if let Some(room_handle) = inner.rooms.get(&room_id) { if let Some(room_handle) = inner.get_or_load_room(&room_id).await? {
// room was already loaded into memory
log::debug!("Room {} was loaded already", &room_id.0);
Ok(room_handle.clone()) Ok(room_handle.clone())
} else if let Some(stored_room) = inner.storage.retrieve_room_by_name(&*room_id.0).await? {
// room exists, but was not loaded
log::debug!("Loading room {}...", &room_id.0);
let room = Room {
storage_id: stored_room.id,
room_id: room_id.clone(),
subscriptions: HashMap::new(), // TODO figure out how to populate subscriptions
topic: stored_room.topic.into(),
message_count: stored_room.message_count,
storage: inner.storage.clone(),
};
let room_handle = RoomHandle(Arc::new(AsyncRwLock::new(room)));
inner.rooms.insert(room_id, room_handle.clone());
inner.metric_active_rooms.inc();
Ok(room_handle)
} else { } else {
// room does not exist, create it and load
log::debug!("Creating room {}...", &room_id.0); log::debug!("Creating room {}...", &room_id.0);
let topic = "New room"; let topic = "New room";
let id = inner.storage.create_new_room(&*room_id.0, &*topic).await?; let id = inner.storage.create_new_room(&*room_id.0, &*topic).await?;
@ -76,6 +59,7 @@ impl RoomRegistry {
storage_id: id, storage_id: id,
room_id: room_id.clone(), room_id: room_id.clone(),
subscriptions: HashMap::new(), subscriptions: HashMap::new(),
members: HashSet::new(),
topic: topic.into(), topic: topic.into(),
message_count: 0, message_count: 0,
storage: inner.storage.clone(), storage: inner.storage.clone(),
@ -88,9 +72,8 @@ impl RoomRegistry {
} }
pub async fn get_room(&self, room_id: &RoomId) -> Option<RoomHandle> { pub async fn get_room(&self, room_id: &RoomId) -> Option<RoomHandle> {
let inner = self.0.read().await; let mut inner = self.0.write().await;
let res = inner.rooms.get(room_id); inner.get_or_load_room(room_id).await.unwrap()
res.map(|r| r.clone())
} }
pub async fn get_all_rooms(&self) -> Vec<RoomInfo> { pub async fn get_all_rooms(&self) -> Vec<RoomInfo> {
@ -113,17 +96,66 @@ struct RoomRegistryInner {
storage: Storage, storage: Storage,
} }
impl RoomRegistryInner {
async fn get_or_load_room(&mut self, room_id: &RoomId) -> Result<Option<RoomHandle>> {
if let Some(room_handle) = self.rooms.get(room_id) {
log::debug!("Room {} was loaded already", &room_id.0);
Ok(Some(room_handle.clone()))
} else if let Some(stored_room) = self.storage.retrieve_room_by_name(&*room_id.0).await? {
log::debug!("Loading room {}...", &room_id.0);
let room = Room {
storage_id: stored_room.id,
room_id: room_id.clone(),
subscriptions: HashMap::new(),
members: HashSet::new(), // TODO load members from storage
topic: stored_room.topic.into(),
message_count: stored_room.message_count,
storage: self.storage.clone(),
};
let room_handle = RoomHandle(Arc::new(AsyncRwLock::new(room)));
self.rooms.insert(room_id.clone(), room_handle.clone());
self.metric_active_rooms.inc();
Ok(Some(room_handle))
} else {
tracing::debug!("Room {} does not exist", &room_id.0);
Ok(None)
}
}
}
#[derive(Clone)] #[derive(Clone)]
pub struct RoomHandle(Arc<AsyncRwLock<Room>>); pub struct RoomHandle(Arc<AsyncRwLock<Room>>);
impl RoomHandle { impl RoomHandle {
pub async fn subscribe(&self, player_id: PlayerId, player_handle: PlayerHandle) { pub async fn subscribe(&self, player_id: &PlayerId, player_handle: PlayerHandle) {
let mut lock = self.0.write().await; let mut lock = self.0.write().await;
lock.add_subscriber(player_id, player_handle).await; tracing::info!("Adding a subscriber to a room");
lock.subscriptions.insert(player_id.clone(), player_handle);
}
pub async fn add_member(&self, player_id: &PlayerId, player_storage_id: u32) {
let mut lock = self.0.write().await;
tracing::info!("Adding a new member to a room");
let room_storage_id = lock.storage_id;
lock.storage.add_room_member(room_storage_id, player_storage_id).await.unwrap();
lock.members.insert(player_id.clone());
let update = Updates::RoomJoined {
room_id: lock.room_id.clone(),
new_member_id: player_id.clone(),
};
lock.broadcast_update(update, player_id).await;
} }
pub async fn unsubscribe(&self, player_id: &PlayerId) { pub async fn unsubscribe(&self, player_id: &PlayerId) {
let mut lock = self.0.write().await; let mut lock = self.0.write().await;
lock.subscriptions.remove(player_id); lock.subscriptions.remove(player_id);
}
pub async fn remove_member(&self, player_id: &PlayerId, player_storage_id: u32) {
let mut lock = self.0.write().await;
tracing::info!("Removing a member from a room");
let room_storage_id = lock.storage_id;
lock.storage.remove_room_member(room_storage_id, player_storage_id).await.unwrap();
lock.members.remove(player_id);
let update = Updates::RoomLeft { let update = Updates::RoomLeft {
room_id: lock.room_id.clone(), room_id: lock.room_id.clone(),
former_member_id: player_id.clone(), former_member_id: player_id.clone(),
@ -131,7 +163,7 @@ impl RoomHandle {
lock.broadcast_update(update, player_id).await; lock.broadcast_update(update, player_id).await;
} }
pub async fn send_message(&self, player_id: PlayerId, body: Str) { pub async fn send_message(&self, player_id: &PlayerId, body: Str) {
let mut lock = self.0.write().await; let mut lock = self.0.write().await;
let res = lock.send_message(player_id, body).await; let res = lock.send_message(player_id, body).await;
if let Err(err) = res { if let Err(err) = res {
@ -148,14 +180,14 @@ impl RoomHandle {
} }
} }
pub async fn set_topic(&mut self, changer_id: PlayerId, new_topic: Str) { pub async fn set_topic(&self, changer_id: &PlayerId, new_topic: Str) {
let mut lock = self.0.write().await; let mut lock = self.0.write().await;
lock.topic = new_topic.clone(); lock.topic = new_topic.clone();
let update = Updates::RoomTopicChanged { let update = Updates::RoomTopicChanged {
room_id: lock.room_id.clone(), room_id: lock.room_id.clone(),
new_topic: new_topic.clone(), new_topic: new_topic.clone(),
}; };
lock.broadcast_update(update, &changer_id).await; lock.broadcast_update(update, changer_id).await;
} }
} }
@ -166,23 +198,15 @@ struct Room {
room_id: RoomId, room_id: RoomId,
/// Player actors on the local node which are subscribed to this room's updates. /// Player actors on the local node which are subscribed to this room's updates.
subscriptions: HashMap<PlayerId, PlayerHandle>, subscriptions: HashMap<PlayerId, PlayerHandle>,
/// Members of the room.
members: HashSet<PlayerId>,
/// The total number of messages. Used to calculate the id of the new message. /// The total number of messages. Used to calculate the id of the new message.
message_count: u32, message_count: u32,
topic: Str, topic: Str,
storage: Storage, storage: Storage,
} }
impl Room { impl Room {
async fn add_subscriber(&mut self, player_id: PlayerId, player_handle: PlayerHandle) { async fn send_message(&mut self, author_id: &PlayerId, body: Str) -> Result<()> {
tracing::info!("Adding a subscriber to room");
self.subscriptions.insert(player_id.clone(), player_handle);
let update = Updates::RoomJoined {
room_id: self.room_id.clone(),
new_member_id: player_id.clone(),
};
self.broadcast_update(update, &player_id).await;
}
async fn send_message(&mut self, author_id: PlayerId, body: Str) -> Result<()> {
tracing::info!("Adding a message to room"); tracing::info!("Adding a message to room");
self.storage.insert_message(self.storage_id, self.message_count, &body, &*author_id.as_inner()).await?; self.storage.insert_message(self.storage_id, self.message_count, &body, &*author_id.as_inner()).await?;
self.message_count += 1; self.message_count += 1;
@ -191,7 +215,7 @@ impl Room {
author_id: author_id.clone(), author_id: author_id.clone(),
body, body,
}; };
self.broadcast_update(update, &author_id).await; self.broadcast_update(update, author_id).await;
Ok(()) Ok(())
} }

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@ -392,7 +392,7 @@ async fn handle_registered_socket<'a>(
log::info!("Handling registered user: {user:?}"); log::info!("Handling registered user: {user:?}");
let player_id = PlayerId::from(user.nickname.clone())?; let player_id = PlayerId::from(user.nickname.clone())?;
let mut connection = players.connect_to_player(player_id.clone()).await; let mut connection = players.connect_to_player(&player_id).await;
let text: Str = format!("Welcome to {} Server", &config.server_name).into(); let text: Str = format!("Welcome to {} Server", &config.server_name).into();
ServerMessage { ServerMessage {

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@ -111,7 +111,36 @@ impl TestServer {
}) })
.await?; .await?;
let rooms = RoomRegistry::new(&mut metrics, storage.clone()).unwrap(); let rooms = RoomRegistry::new(&mut metrics, storage.clone()).unwrap();
let players = PlayerRegistry::empty(rooms.clone(), &mut metrics).unwrap(); let players = PlayerRegistry::empty(rooms.clone(), storage.clone(), &mut metrics).unwrap();
let server = launch(config, players.clone(), rooms.clone(), metrics.clone(), storage.clone()).await.unwrap();
Ok(TestServer {
metrics,
storage,
rooms,
players,
server,
})
}
async fn reboot(mut self) -> Result<TestServer> {
let config = ServerConfig {
listen_on: "127.0.0.1:0".parse().unwrap(),
server_name: "testserver".into(),
};
let TestServer {
mut metrics,
mut storage,
rooms,
mut players,
server,
} = self;
server.terminate().await?;
players.shutdown_all().await.unwrap();
drop(players);
drop(rooms);
let mut metrics = MetricsRegistry::new();
let rooms = RoomRegistry::new(&mut metrics, storage.clone()).unwrap();
let players = PlayerRegistry::empty(rooms.clone(), storage.clone(), &mut metrics).unwrap();
let server = launch(config, players.clone(), rooms.clone(), metrics.clone(), storage.clone()).await.unwrap(); let server = launch(config, players.clone(), rooms.clone(), metrics.clone(), storage.clone()).await.unwrap();
Ok(TestServer { Ok(TestServer {
metrics, metrics,
@ -152,6 +181,76 @@ async fn scenario_basic() -> Result<()> {
Ok(()) Ok(())
} }
#[tokio::test]
async fn scenario_join_and_reboot() -> Result<()> {
let mut server = TestServer::start().await?;
// test scenario
server.storage.create_user("tester").await?;
server.storage.set_password("tester", "password").await?;
let mut stream = TcpStream::connect(server.server.addr).await?;
let mut s = TestScope::new(&mut stream);
// Open a connection and join a channel
s.send("PASS password").await?;
s.send("NICK tester").await?;
s.send("USER UserName 0 * :Real Name").await?;
s.expect_server_introduction("tester").await?;
s.expect_nothing().await?;
s.send("JOIN #test").await?;
s.expect(":tester JOIN #test").await?;
s.expect(":testserver 332 tester #test :New room").await?;
s.expect(":testserver 353 tester = #test :tester").await?;
s.expect(":testserver 366 tester #test :End of /NAMES list").await?;
s.send("PRIVMSG #test :Hello").await?;
s.send("QUIT :Leaving").await?;
s.expect(":testserver ERROR :Leaving the server").await?;
s.expect_eof().await?;
stream.shutdown().await?;
// Open a new connection and expect to be force-joined to the channel
let mut stream = TcpStream::connect(server.server.addr).await?;
let mut s = TestScope::new(&mut stream);
async fn test(s: &mut TestScope<'_>) -> Result<()> {
s.send("PASS password").await?;
s.send("NICK tester").await?;
s.send("USER UserName 0 * :Real Name").await?;
s.expect_server_introduction("tester").await?;
s.expect(":tester JOIN #test").await?;
s.expect(":testserver 332 tester #test :New room").await?;
s.expect(":testserver 353 tester = #test :tester").await?;
s.expect(":testserver 366 tester #test :End of /NAMES list").await?;
s.send("QUIT :Leaving").await?;
s.expect(":testserver ERROR :Leaving the server").await?;
s.expect_eof().await?;
Ok(())
}
test(&mut s).await?;
stream.shutdown().await?;
// Reboot the server
let server = server.reboot().await?;
// Open a new connection and expect to be force-joined to the channel
let mut stream = TcpStream::connect(server.server.addr).await?;
let mut s = TestScope::new(&mut stream);
test(&mut s).await?;
stream.shutdown().await?;
// wrap up
server.server.terminate().await?;
Ok(())
}
#[tokio::test] #[tokio::test]
async fn scenario_force_join_msg() -> Result<()> { async fn scenario_force_join_msg() -> Result<()> {
let mut server = TestServer::start().await?; let mut server = TestServer::start().await?;
@ -407,7 +506,6 @@ async fn scenario_cap_sasl_fail() -> Result<()> {
#[tokio::test] #[tokio::test]
async fn terminate_socket_scenario() -> Result<()> { async fn terminate_socket_scenario() -> Result<()> {
let mut server = TestServer::start().await?; let mut server = TestServer::start().await?;
let address: SocketAddr = ("127.0.0.1:0".parse().unwrap());
// test scenario // test scenario

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@ -207,7 +207,7 @@ async fn handle_socket(
authenticated = socket_auth(&mut xml_reader, &mut xml_writer, &mut reader_buf, &mut storage, &hostname) => { authenticated = socket_auth(&mut xml_reader, &mut xml_writer, &mut reader_buf, &mut storage, &hostname) => {
match authenticated { match authenticated {
Ok(authenticated) => { Ok(authenticated) => {
let mut connection = players.connect_to_player(authenticated.player_id.clone()).await; let mut connection = players.connect_to_player(&authenticated.player_id).await;
socket_final( socket_final(
&mut xml_reader, &mut xml_reader,
&mut xml_writer, &mut xml_writer,

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@ -143,7 +143,7 @@ impl TestServer {
}) })
.await?; .await?;
let rooms = RoomRegistry::new(&mut metrics, storage.clone()).unwrap(); let rooms = RoomRegistry::new(&mut metrics, storage.clone()).unwrap();
let players = PlayerRegistry::empty(rooms.clone(), &mut metrics).unwrap(); let players = PlayerRegistry::empty(rooms.clone(), storage.clone(), &mut metrics).unwrap();
let server = launch(config, players.clone(), rooms.clone(), metrics.clone(), storage.clone()).await.unwrap(); let server = launch(config, players.clone(), rooms.clone(), metrics.clone(), storage.clone()).await.unwrap();
Ok(TestServer { Ok(TestServer {
metrics, metrics,

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@ -52,7 +52,7 @@ async fn main() -> Result<()> {
let mut metrics = MetricsRegistry::new(); let mut metrics = MetricsRegistry::new();
let storage = Storage::open(storage_config).await?; let storage = Storage::open(storage_config).await?;
let rooms = RoomRegistry::new(&mut metrics, storage.clone())?; let rooms = RoomRegistry::new(&mut metrics, storage.clone())?;
let mut players = PlayerRegistry::empty(rooms.clone(), &mut metrics)?; let mut players = PlayerRegistry::empty(rooms.clone(), storage.clone(), &mut metrics)?;
let telemetry_terminator = http::launch(telemetry_config, metrics.clone(), rooms.clone(), storage.clone()).await?; let telemetry_terminator = http::launch(telemetry_config, metrics.clone(), rooms.clone(), storage.clone()).await?;
let irc = projection_irc::launch( let irc = projection_irc::launch(
irc_config, irc_config,