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900 lines
30 KiB
Rust
900 lines
30 KiB
Rust
use libremetaverse::interfaces::IMessage;
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use libremetaverse::messages::linden::{
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EnableSimulatorMessage, EnableSimulatorMessageSimulatorInfoBlock,
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};
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use libremetaverse::packets::{
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DisableSimulatorPacket, Packet, PacketAckPacket, PacketAckPacketPacketsBlock, PacketType,
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RegionHandshakePacket, RegionHandshakeReplyPacket, StartPingCheckPacket, UseCircuitCodePacket,
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};
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use libremetaverse::{
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CapsEventDictionary, CapsEventQueueCallback, GridClient, Helpers, NetworkManager,
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NetworkManagerDisconnectType, PacketEventDictionary, Simulator,
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};
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use libremetaverse_types::compat::{EventHandler, Uri};
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use std::net::{IpAddr, Ipv4Addr, SocketAddr, UdpSocket};
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use std::sync::atomic::{AtomicBool, AtomicUsize, Ordering};
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use std::sync::mpsc::{Receiver, Sender, channel};
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use std::sync::{Arc, Barrier, Mutex, Weak};
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use std::thread::{self, JoinHandle};
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use std::time::{Duration, Instant};
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fn block_on<F: std::future::Future>(future: F) -> F::Output {
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use std::task::{Context, Poll, Wake, Waker};
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struct ThreadWake(thread::Thread);
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impl Wake for ThreadWake {
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fn wake(self: Arc<Self>) {
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self.0.unpark();
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}
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}
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let waker = Waker::from(Arc::new(ThreadWake(thread::current())));
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let mut context = Context::from_waker(&waker);
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let mut future = std::pin::pin!(future);
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loop {
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match future.as_mut().poll(&mut context) {
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Poll::Ready(output) => return output,
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Poll::Pending => thread::park(),
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}
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}
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}
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fn loopback(port: u16) -> SocketAddr {
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SocketAddr::new(IpAddr::V4(Ipv4Addr::LOCALHOST), port)
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}
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fn simulator(client: &GridClient) -> Simulator {
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Simulator::new(
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client.clone(),
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loopback(13000),
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0x1000,
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Some(256),
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Some(256),
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)
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.expect("simulator")
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}
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fn base_packet(packet_type: PacketType) -> Packet {
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Packet::build_packet_with_packet_type(packet_type).expect("base packet")
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}
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fn wait_until(mut condition: impl FnMut() -> bool) {
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let deadline = Instant::now() + Duration::from_secs(2);
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while !condition() {
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assert!(Instant::now() < deadline, "condition timed out");
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thread::sleep(Duration::from_millis(2));
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}
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}
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#[test]
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fn packet_callbacks_preserve_filtering_order_async_policy_and_reentrancy() {
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let client = GridClient::new().expect("client");
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let sim = simulator(&client);
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let events = Arc::new(PacketEventDictionary::new(client).expect("packet events"));
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let order = Arc::new(Mutex::new(Vec::new()));
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let default_order = Arc::clone(&order);
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events
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.register_event(
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PacketType::Default,
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Arc::new(move |_| default_order.lock().unwrap().push("default")),
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false,
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)
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.unwrap();
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let specific_order = Arc::clone(&order);
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events
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.register_event(
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PacketType::StartPingCheck,
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Arc::new(move |_| specific_order.lock().unwrap().push("specific")),
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false,
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)
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.unwrap();
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events
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.invoke_raise_event(
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PacketType::StartPingCheck,
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base_packet(PacketType::StartPingCheck),
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sim.clone(),
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)
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.unwrap();
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assert_eq!(*order.lock().unwrap(), ["default", "specific"]);
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order.lock().unwrap().clear();
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events
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.invoke_raise_event(
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PacketType::CompletePingCheck,
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base_packet(PacketType::CompletePingCheck),
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sim.clone(),
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)
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.unwrap();
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assert_eq!(*order.lock().unwrap(), ["default"]);
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let reentrant_count = Arc::new(AtomicUsize::new(0));
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let weak_events: Weak<PacketEventDictionary> = Arc::downgrade(&events);
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let count = Arc::clone(&reentrant_count);
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let reentrant: EventHandler<_> = Arc::new(move |_| {
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count.fetch_add(1, Ordering::Relaxed);
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if let Some(events) = weak_events.upgrade() {
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events
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.register_event(PacketType::UseCircuitCode, Arc::new(|_| {}), false)
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.unwrap();
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}
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});
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events
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.register_event(PacketType::UseCircuitCode, reentrant, false)
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.unwrap();
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events
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.invoke_raise_event(
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PacketType::UseCircuitCode,
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base_packet(PacketType::UseCircuitCode),
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sim.clone(),
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)
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.unwrap();
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assert_eq!(reentrant_count.load(Ordering::Relaxed), 1);
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let async_events = PacketEventDictionary::new(sim.client.clone()).unwrap();
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let removed_async: EventHandler<_> = Arc::new(|_| {});
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async_events
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.register_event(PacketType::StartPingCheck, Arc::clone(&removed_async), true)
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.unwrap();
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let caller_thread = thread::current().id();
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let (thread_sender, thread_receiver) = channel();
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async_events
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.register_event(
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PacketType::StartPingCheck,
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Arc::new(move |_| thread_sender.send(thread::current().id()).unwrap()),
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false,
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)
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.unwrap();
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async_events
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.unregister_event(PacketType::StartPingCheck, removed_async)
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.unwrap();
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async_events
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.invoke_raise_event(
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PacketType::StartPingCheck,
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base_packet(PacketType::StartPingCheck),
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sim,
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)
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.unwrap();
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assert_ne!(
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thread_receiver
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.recv_timeout(Duration::from_secs(1))
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.unwrap(),
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caller_thread,
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"C# keeps a packet type asynchronous after its first async registration"
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);
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}
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#[test]
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fn synchronous_specific_dispatch_suppresses_default_async_chain_like_reference() {
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let mixed_events = PacketEventDictionary::new(GridClient::new().unwrap()).unwrap();
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let (default_sender, default_receiver) = channel();
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mixed_events
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.register_event(
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PacketType::Default,
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Arc::new(move |_| default_sender.send(()).unwrap()),
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true,
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)
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.unwrap();
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let specific_calls = Arc::new(AtomicUsize::new(0));
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let calls = Arc::clone(&specific_calls);
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mixed_events
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.register_event(
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PacketType::StartPingCheck,
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Arc::new(move |_| {
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calls.fetch_add(1, Ordering::Relaxed);
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}),
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false,
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)
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.unwrap();
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mixed_events
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.invoke_raise_event(
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PacketType::StartPingCheck,
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base_packet(PacketType::StartPingCheck),
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simulator(&mixed_events.client),
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)
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.unwrap();
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assert_eq!(specific_calls.load(Ordering::Relaxed), 1);
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assert!(
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default_receiver
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.recv_timeout(Duration::from_millis(50))
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.is_err(),
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"C# returns after a synchronous specific chain without queuing the default async chain"
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);
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}
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struct TestCapsMessage;
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impl IMessage for TestCapsMessage {}
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#[test]
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fn caps_callbacks_are_ordered_and_subscription_guards_unregister() {
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let client = GridClient::new().expect("client");
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let sim = simulator(&client);
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let events = CapsEventDictionary::new(client).expect("CAPS events");
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let order = Arc::new(Mutex::new(Vec::new()));
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let default_order = Arc::clone(&order);
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let default = CapsEventQueueCallback::from_handler(move |_, _, _| {
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default_order.lock().unwrap().push("default");
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});
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let specific_order = Arc::clone(&order);
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let specific = CapsEventQueueCallback::from_handler(move |_, _, _| {
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specific_order.lock().unwrap().push("specific");
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});
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let default_guard = events.subscribe(String::new(), default);
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let specific_guard = events.subscribe("EnableSimulator".into(), specific);
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events.invoke_raise_event("EnableSimulator", &TestCapsMessage, sim.clone());
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assert_eq!(*order.lock().unwrap(), ["default", "specific"]);
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drop(specific_guard);
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order.lock().unwrap().clear();
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events.invoke_raise_event("EnableSimulator", &TestCapsMessage, sim);
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assert_eq!(*order.lock().unwrap(), ["default"]);
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drop(default_guard);
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}
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#[test]
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fn concurrent_registration_and_removal_is_deterministic() {
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const CALLBACKS: usize = 16;
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let client = GridClient::new().expect("client");
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let sim = simulator(&client);
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let events = Arc::new(PacketEventDictionary::new(client).unwrap());
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let barrier = Arc::new(Barrier::new(CALLBACKS + 1));
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let calls = Arc::new(AtomicUsize::new(0));
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let (guard_sender, guard_receiver) = channel();
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thread::scope(|scope| {
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for _ in 0..CALLBACKS {
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let events = Arc::clone(&events);
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let barrier = Arc::clone(&barrier);
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let calls = Arc::clone(&calls);
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let guard_sender = guard_sender.clone();
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scope.spawn(move || {
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let guard = events.subscribe(
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PacketType::StartPingCheck,
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Arc::new(move |_| {
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calls.fetch_add(1, Ordering::Relaxed);
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}),
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false,
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);
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guard_sender.send(guard).unwrap();
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barrier.wait();
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});
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}
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barrier.wait();
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});
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drop(guard_sender);
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let guards: Vec<_> = guard_receiver.into_iter().collect();
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events
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.invoke_raise_event(
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PacketType::StartPingCheck,
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base_packet(PacketType::StartPingCheck),
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sim.clone(),
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)
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.unwrap();
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assert_eq!(calls.load(Ordering::Relaxed), CALLBACKS);
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drop(guards);
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calls.store(0, Ordering::Relaxed);
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events
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.invoke_raise_event(
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PacketType::StartPingCheck,
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base_packet(PacketType::StartPingCheck),
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sim,
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)
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.unwrap();
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assert_eq!(calls.load(Ordering::Relaxed), 0);
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}
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#[test]
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fn sim_connecting_can_cancel_without_leaking_collection_state() {
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let client = GridClient::new().expect("client");
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let manager = NetworkManager::new(client).expect("manager");
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let guard = manager.subscribe_sim_connecting(Arc::new(|mut args| args.set_cancel(true)));
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let connected = manager
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.connect_with_ip_end_point_u_int64_boolean_uri_u_int32_u_int32(
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loopback(9),
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0x2000,
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true,
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Some(Uri("http://caps.invalid/seed".into())),
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512,
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256,
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)
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.unwrap();
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assert!(connected.is_none());
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assert!(manager.simulators.is_empty());
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assert!(
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manager.connected(),
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"C# marks the manager connected before raising the cancellable event"
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);
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assert!(manager.current_sim().is_none());
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drop(guard);
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}
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enum ServerCommand {
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Ping,
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Disable,
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Stop,
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}
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#[derive(Debug, Eq, PartialEq)]
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enum ServerReport {
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Ack(u32),
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Circuit(u32),
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HandshakeReply(u32),
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Ping(u8),
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}
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struct FakeServer {
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endpoint: SocketAddr,
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commands: Sender<ServerCommand>,
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reports: Receiver<ServerReport>,
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handle: Option<JoinHandle<()>>,
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}
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impl Drop for FakeServer {
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fn drop(&mut self) {
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let _ = self.commands.send(ServerCommand::Stop);
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if let Some(handle) = self.handle.take() {
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let _ = handle.join();
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}
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}
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}
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fn packet_type(bytes: &[u8]) -> Option<PacketType> {
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let mut packet_end = i32::try_from(bytes.len()).ok()?.checked_sub(1)?;
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Packet::build_packet_with_bytes_int32_bytes(bytes.to_vec(), &mut packet_end, vec![0; 8192])
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.ok()
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.map(|packet| packet.type_)
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}
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fn ack(sequence: u32) -> Vec<u8> {
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let mut packet = PacketAckPacket::new_with_constructor().unwrap();
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packet.packets = vec![PacketAckPacketPacketsBlock { id: sequence }];
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let mut bytes = packet.to_bytes_with_method().unwrap();
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bytes[0] &= !(Helpers::MSG_RELIABLE | Helpers::MSG_ZEROCODED);
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bytes
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}
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fn serve_ping_command(
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socket: &UdpSocket,
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client_endpoint: SocketAddr,
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report_sender: &Sender<ServerReport>,
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buffer: &mut [u8],
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) {
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let mut ping = StartPingCheckPacket::new_with_constructor().unwrap();
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ping.ping_id.ping_id = 42;
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ping.ping_id.oldest_unacked = 1;
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let mut bytes = ping.to_bytes_with_method().unwrap();
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bytes[0] &= !Helpers::MSG_ZEROCODED;
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bytes[0] |= Helpers::MSG_RELIABLE;
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bytes[1..5].copy_from_slice(&99_u32.to_be_bytes());
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socket.send_to(&bytes, client_endpoint).unwrap();
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loop {
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let (length, _) = socket.recv_from(buffer).expect("ping response");
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match packet_type(&buffer[..length]) {
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Some(PacketType::PacketAck) => {
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let mut position = 0;
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let response =
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PacketAckPacket::new_with_bytes_int32(buffer[..length].to_vec(), &mut position)
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.unwrap();
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assert_eq!(response.packets.len(), 1);
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report_sender
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.send(ServerReport::Ack(response.packets[0].id))
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.unwrap();
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}
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Some(PacketType::CompletePingCheck) => {
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let mut position = 0;
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let response =
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libremetaverse::packets::CompletePingCheckPacket::new_with_bytes_int32(
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buffer[..length].to_vec(),
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&mut position,
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)
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.unwrap();
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report_sender
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.send(ServerReport::Ping(response.ping_id.ping_id))
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.unwrap();
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break;
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}
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_ => {}
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}
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}
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}
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fn spawn_fake_server() -> FakeServer {
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let socket = UdpSocket::bind(loopback(0)).expect("fake UDP server");
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socket
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.set_read_timeout(Some(Duration::from_secs(2)))
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.unwrap();
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let endpoint = socket.local_addr().unwrap();
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let (command_sender, command_receiver) = channel();
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let (report_sender, report_receiver) = channel();
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let handle = thread::spawn(move || {
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let mut buffer = [0_u8; 4096];
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let (length, client_endpoint) = socket.recv_from(&mut buffer).expect("UseCircuitCode");
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assert_eq!(
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packet_type(&buffer[..length]),
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Some(PacketType::UseCircuitCode)
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);
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let mut position = 0;
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let use_circuit =
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UseCircuitCodePacket::new_with_bytes_int32(buffer[..length].to_vec(), &mut position)
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.expect("decode UseCircuitCode");
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report_sender
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.send(ServerReport::Circuit(use_circuit.circuit_code.code))
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.unwrap();
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let sequence = u32::from_be_bytes(buffer[1..5].try_into().unwrap());
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socket.send_to(&ack(sequence), client_endpoint).unwrap();
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let mut handshake = RegionHandshakePacket::new_with_constructor().unwrap();
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handshake.region_info.sim_name = b"Fake Region".to_vec();
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let mut bytes = handshake.to_bytes_with_method().unwrap();
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bytes[0] &= !(Helpers::MSG_RELIABLE | Helpers::MSG_ZEROCODED);
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socket.send_to(&bytes, client_endpoint).unwrap();
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loop {
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let (length, _) = socket.recv_from(&mut buffer).expect("handshake reply");
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let received_type = packet_type(&buffer[..length]);
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if received_type == Some(PacketType::RegionHandshakeReply) {
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let mut position = 0;
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let mut packet_end = i32::try_from(length).unwrap() - 1;
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let mut zero_buffer = vec![0_u8; 8192];
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let mut response = RegionHandshakeReplyPacket::new_with_constructor().unwrap();
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response
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|
.from_bytes_with_bytes_int32_int32_bytes(
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buffer[..length].to_vec(),
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&mut position,
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&mut packet_end,
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Some(&mut zero_buffer),
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)
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.unwrap();
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report_sender
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.send(ServerReport::HandshakeReply(response.region_info.flags))
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.unwrap();
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break;
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}
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|
}
|
|
|
|
while let Ok(command) = command_receiver.recv() {
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match command {
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ServerCommand::Ping => {
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serve_ping_command(&socket, client_endpoint, &report_sender, &mut buffer);
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}
|
|
ServerCommand::Disable => {
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let disable = DisableSimulatorPacket::new_with_constructor().unwrap();
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let mut bytes = disable.to_bytes_with_method().unwrap();
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bytes[0] &= !(Helpers::MSG_RELIABLE | Helpers::MSG_ZEROCODED);
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socket.send_to(&bytes, client_endpoint).unwrap();
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}
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ServerCommand::Stop => break,
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}
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}
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});
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FakeServer {
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endpoint,
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commands: command_sender,
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reports: report_receiver,
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handle: Some(handle),
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}
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}
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|
|
fn spawn_ack_only_server() -> (SocketAddr, JoinHandle<()>) {
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|
let socket = UdpSocket::bind(loopback(0)).expect("ACK-only UDP server");
|
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socket
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.set_read_timeout(Some(Duration::from_secs(2)))
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.unwrap();
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let endpoint = socket.local_addr().unwrap();
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let handle = thread::spawn(move || {
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let mut buffer = [0_u8; 4096];
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let (length, client_endpoint) = socket.recv_from(&mut buffer).expect("UseCircuitCode");
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assert_eq!(
|
|
packet_type(&buffer[..length]),
|
|
Some(PacketType::UseCircuitCode)
|
|
);
|
|
let sequence = u32::from_be_bytes(buffer[1..5].try_into().unwrap());
|
|
socket.send_to(&ack(sequence), client_endpoint).unwrap();
|
|
});
|
|
(endpoint, handle)
|
|
}
|
|
|
|
fn assert_ping_exchange(server: &FakeServer, packet_receiver: &Receiver<PacketType>) {
|
|
server.commands.send(ServerCommand::Ping).unwrap();
|
|
assert_eq!(
|
|
packet_receiver
|
|
.recv_timeout(Duration::from_secs(1))
|
|
.unwrap(),
|
|
PacketType::StartPingCheck
|
|
);
|
|
assert_eq!(
|
|
server.reports.recv_timeout(Duration::from_secs(1)).unwrap(),
|
|
ServerReport::Ack(99)
|
|
);
|
|
assert_eq!(
|
|
server.reports.recv_timeout(Duration::from_secs(1)).unwrap(),
|
|
ServerReport::Ping(42)
|
|
);
|
|
}
|
|
|
|
fn assert_reuse_preserves_connected_override(
|
|
manager: &mut NetworkManager,
|
|
server: &FakeServer,
|
|
simulator: &Simulator,
|
|
) {
|
|
manager.set_connected(false);
|
|
let reused = manager
|
|
.connect_with_ip_end_point_u_int64_boolean_uri_u_int32_u_int32(
|
|
server.endpoint,
|
|
simulator.handle,
|
|
false,
|
|
None,
|
|
simulator.size_x,
|
|
simulator.size_y,
|
|
)
|
|
.unwrap()
|
|
.unwrap();
|
|
assert_eq!(reused, simulator.clone());
|
|
assert!(
|
|
!manager.connected(),
|
|
"C# does not alter manager Connected when reusing a connected simulator"
|
|
);
|
|
manager.set_connected(true);
|
|
}
|
|
|
|
#[test]
|
|
fn fake_server_drives_circuit_handshake_ping_disable_and_disconnect_reasons() {
|
|
let server = spawn_fake_server();
|
|
let client = GridClient::new().expect("client");
|
|
let mut manager = NetworkManager::new(client).expect("manager");
|
|
manager.set_circuit_code(0x1122_3344);
|
|
let (changed_sender, changed_receiver) = channel();
|
|
let (connected_sender, connected_receiver) = channel();
|
|
let (packet_sender, packet_receiver) = channel();
|
|
let (sim_disconnected_sender, sim_disconnected_receiver) = channel();
|
|
let (disconnected_sender, disconnected_receiver) = channel();
|
|
let guards = [
|
|
manager.subscribe_sim_changed(Arc::new(move |args| {
|
|
changed_sender
|
|
.send(args.previous_simulator().is_none())
|
|
.unwrap();
|
|
})),
|
|
manager.subscribe_sim_connected(Arc::new(move |args| {
|
|
connected_sender.send(args.simulator().handle).unwrap();
|
|
})),
|
|
manager.subscribe_sim_disconnected(Arc::new(move |args| {
|
|
sim_disconnected_sender
|
|
.send((args.reason(), args.was_connected()))
|
|
.unwrap();
|
|
})),
|
|
manager.subscribe_disconnected(Arc::new(move |args| {
|
|
disconnected_sender.send(args.reason()).unwrap();
|
|
})),
|
|
];
|
|
manager
|
|
.register_callback_with_packet_type_event_handler_boolean(
|
|
PacketType::StartPingCheck,
|
|
Arc::new(move |args| packet_sender.send(args.packet().type_).unwrap()),
|
|
false,
|
|
)
|
|
.unwrap();
|
|
|
|
let seed = Uri("http://caps.invalid/seed".into());
|
|
let sim = manager
|
|
.connect_with_ip_end_point_u_int64_boolean_uri_u_int32_u_int32(
|
|
server.endpoint,
|
|
0x1234_0000,
|
|
true,
|
|
Some(seed.clone()),
|
|
512,
|
|
256,
|
|
)
|
|
.unwrap()
|
|
.expect("connected simulator");
|
|
|
|
assert_eq!(
|
|
server.reports.recv_timeout(Duration::from_secs(1)).unwrap(),
|
|
ServerReport::Circuit(0x1122_3344)
|
|
);
|
|
assert!(
|
|
changed_receiver
|
|
.recv_timeout(Duration::from_secs(1))
|
|
.unwrap()
|
|
);
|
|
assert_eq!(
|
|
connected_receiver
|
|
.recv_timeout(Duration::from_secs(1))
|
|
.unwrap(),
|
|
sim.handle
|
|
);
|
|
assert_eq!(manager.current_sim(), Some(sim.clone()));
|
|
assert_eq!(sim.seed_capability(), Some(seed));
|
|
assert_eq!(sim.size_x, 512);
|
|
assert_eq!(sim.size_y, 256);
|
|
wait_until(|| sim.handshake_complete());
|
|
assert_eq!(
|
|
server.reports.recv_timeout(Duration::from_secs(1)).unwrap(),
|
|
ServerReport::HandshakeReply(0x1 | 0x2 | 0x4)
|
|
);
|
|
|
|
assert_reuse_preserves_connected_override(&mut manager, &server, &sim);
|
|
|
|
assert_ping_exchange(&server, &packet_receiver);
|
|
|
|
server.commands.send(ServerCommand::Disable).unwrap();
|
|
assert_eq!(
|
|
sim_disconnected_receiver
|
|
.recv_timeout(Duration::from_secs(1))
|
|
.unwrap(),
|
|
(NetworkManagerDisconnectType::NetworkTimeout, true)
|
|
);
|
|
assert_eq!(
|
|
disconnected_receiver
|
|
.recv_timeout(Duration::from_secs(1))
|
|
.unwrap(),
|
|
NetworkManagerDisconnectType::SimShutdown
|
|
);
|
|
assert!(manager.simulators.is_empty());
|
|
assert!(manager.current_sim().is_none());
|
|
assert!(!manager.connected());
|
|
drop(guards);
|
|
}
|
|
|
|
#[test]
|
|
fn concurrent_disconnect_emits_each_transition_once() {
|
|
const CALLERS: usize = 12;
|
|
let server = spawn_fake_server();
|
|
let client = GridClient::new().expect("client");
|
|
let mut manager = NetworkManager::new(client).expect("manager");
|
|
manager.set_circuit_code(7);
|
|
let sim_disconnects = Arc::new(AtomicUsize::new(0));
|
|
let global_disconnects = Arc::new(AtomicUsize::new(0));
|
|
let sim_count = Arc::clone(&sim_disconnects);
|
|
let sim_guard = manager.subscribe_sim_disconnected(Arc::new(move |args| {
|
|
assert!(args.was_connected());
|
|
sim_count.fetch_add(1, Ordering::Relaxed);
|
|
}));
|
|
let global_count = Arc::clone(&global_disconnects);
|
|
let global_guard = manager.subscribe_disconnected(Arc::new(move |_| {
|
|
global_count.fetch_add(1, Ordering::Relaxed);
|
|
}));
|
|
let sim = manager
|
|
.connect_with_ip_end_point_u_int64_boolean_uri_u_int32_u_int32(
|
|
server.endpoint,
|
|
9,
|
|
true,
|
|
None,
|
|
256,
|
|
256,
|
|
)
|
|
.unwrap()
|
|
.unwrap();
|
|
let manager = Arc::new(manager);
|
|
let barrier = Arc::new(Barrier::new(CALLERS));
|
|
|
|
thread::scope(|scope| {
|
|
for _ in 0..CALLERS {
|
|
let manager = Arc::clone(&manager);
|
|
let simulator = sim.clone();
|
|
let barrier = Arc::clone(&barrier);
|
|
scope.spawn(move || {
|
|
barrier.wait();
|
|
manager.disconnect_sim(simulator, false).unwrap();
|
|
});
|
|
}
|
|
});
|
|
|
|
assert_eq!(sim_disconnects.load(Ordering::Relaxed), 1);
|
|
assert_eq!(global_disconnects.load(Ordering::Relaxed), 1);
|
|
assert!(manager.simulators.is_empty());
|
|
assert!(!manager.connected());
|
|
drop(sim_guard);
|
|
drop(global_guard);
|
|
}
|
|
|
|
#[test]
|
|
fn sim_disconnected_callback_can_reenter_disconnect_without_deadlock() {
|
|
let server = spawn_fake_server();
|
|
let client = GridClient::new().expect("client");
|
|
let mut manager = NetworkManager::new(client).expect("manager");
|
|
manager.set_circuit_code(8);
|
|
let simulator = manager
|
|
.connect_with_ip_end_point_u_int64_boolean_uri_u_int32_u_int32(
|
|
server.endpoint,
|
|
10,
|
|
true,
|
|
None,
|
|
256,
|
|
256,
|
|
)
|
|
.unwrap()
|
|
.unwrap();
|
|
let manager = Arc::new(manager);
|
|
let weak_manager = Arc::downgrade(&manager);
|
|
let callback_completed = Arc::new(AtomicBool::new(false));
|
|
let completed = Arc::clone(&callback_completed);
|
|
let guard = manager.subscribe_sim_disconnected(Arc::new(move |args| {
|
|
let manager = weak_manager.upgrade().expect("manager during callback");
|
|
manager
|
|
.disconnect_sim(args.simulator(), false)
|
|
.expect("reentrant disconnect");
|
|
completed.store(true, Ordering::Release);
|
|
}));
|
|
|
|
manager.disconnect_sim(simulator, false).unwrap();
|
|
|
|
assert!(callback_completed.load(Ordering::Acquire));
|
|
assert!(manager.simulators.is_empty());
|
|
assert!(!manager.connected());
|
|
drop(guard);
|
|
}
|
|
|
|
#[test]
|
|
fn keepalive_requires_two_silent_intervals_before_network_timeout() {
|
|
let server = spawn_fake_server();
|
|
let client = GridClient::new().expect("client");
|
|
let mut manager = NetworkManager::new(client).expect("manager");
|
|
manager.set_circuit_code(11);
|
|
let (disconnected_sender, disconnected_receiver) = channel();
|
|
let guard = manager.subscribe_disconnected(Arc::new(move |args| {
|
|
disconnected_sender.send(args.reason()).unwrap();
|
|
}));
|
|
let sim = manager
|
|
.connect_with_ip_end_point_u_int64_boolean_uri_u_int32_u_int32(
|
|
server.endpoint,
|
|
12,
|
|
true,
|
|
None,
|
|
256,
|
|
256,
|
|
)
|
|
.unwrap()
|
|
.unwrap();
|
|
wait_until(|| sim.handshake_complete());
|
|
|
|
manager.poll_keepalive();
|
|
assert!(manager.connected());
|
|
assert!(
|
|
disconnected_receiver
|
|
.recv_timeout(Duration::from_millis(50))
|
|
.is_err()
|
|
);
|
|
|
|
manager.poll_keepalive();
|
|
assert_eq!(
|
|
disconnected_receiver
|
|
.recv_timeout(Duration::from_secs(1))
|
|
.unwrap(),
|
|
NetworkManagerDisconnectType::NetworkTimeout
|
|
);
|
|
assert!(!manager.connected());
|
|
assert!(manager.current_sim().is_none());
|
|
drop(guard);
|
|
}
|
|
|
|
#[test]
|
|
fn enable_simulator_caps_event_adds_each_new_region_once() {
|
|
let first_server = spawn_fake_server();
|
|
let second_server = spawn_fake_server();
|
|
let mut client = GridClient::new().expect("client");
|
|
client.settings().agent_settings_mut().multiple_sims = true;
|
|
let mut manager = NetworkManager::new(client).expect("manager");
|
|
manager.set_circuit_code(17);
|
|
let current = manager
|
|
.connect_with_ip_end_point_u_int64_boolean_uri_u_int32_u_int32(
|
|
first_server.endpoint,
|
|
18,
|
|
true,
|
|
None,
|
|
256,
|
|
256,
|
|
)
|
|
.unwrap()
|
|
.unwrap();
|
|
|
|
let mut message = EnableSimulatorMessage::new().unwrap();
|
|
let mut info = EnableSimulatorMessageSimulatorInfoBlock::new().unwrap();
|
|
info.ip = second_server.endpoint.ip();
|
|
info.port = i32::from(second_server.endpoint.port());
|
|
info.region_handle = 19;
|
|
info.region_size_x = 1024;
|
|
info.region_size_y = 512;
|
|
message.simulators = vec![info];
|
|
|
|
manager.dispatch_caps_event("EnableSimulator", &message, current.clone());
|
|
manager.dispatch_caps_event("EnableSimulator", &message, current);
|
|
|
|
assert_eq!(manager.simulators.len(), 2);
|
|
let added = manager
|
|
.find_simulator_with_ip_end_point(second_server.endpoint)
|
|
.unwrap()
|
|
.expect("enabled simulator");
|
|
assert_eq!(added.handle, 19);
|
|
assert_eq!(added.size_x, 1024);
|
|
assert_eq!(added.size_y, 512);
|
|
assert_eq!(
|
|
second_server
|
|
.reports
|
|
.recv_timeout(Duration::from_secs(1))
|
|
.unwrap(),
|
|
ServerReport::Circuit(17)
|
|
);
|
|
assert_eq!(
|
|
second_server
|
|
.reports
|
|
.recv_timeout(Duration::from_secs(1))
|
|
.unwrap(),
|
|
ServerReport::HandshakeReply(0x1 | 0x2 | 0x4)
|
|
);
|
|
|
|
manager
|
|
.shutdown_with_disconnect_type(NetworkManagerDisconnectType::ClientInitiated)
|
|
.unwrap();
|
|
}
|
|
|
|
#[test]
|
|
fn async_connect_and_shutdown_do_not_require_an_ambient_tokio_runtime() {
|
|
let server = spawn_fake_server();
|
|
let client = GridClient::new().expect("client");
|
|
let mut manager = NetworkManager::new(client).expect("manager");
|
|
manager.set_circuit_code(23);
|
|
|
|
let simulator = block_on(
|
|
manager.connect_with_ip_end_point_u_int64_boolean_uri_u_int32_u_int32_20e51cc0(
|
|
server.endpoint,
|
|
24,
|
|
true,
|
|
None,
|
|
256,
|
|
256,
|
|
),
|
|
)
|
|
.unwrap()
|
|
.expect("async connection");
|
|
|
|
assert!(simulator.connected());
|
|
assert_eq!(manager.current_sim(), Some(simulator));
|
|
block_on(manager.shutdown_with_disconnect_type_string_7641243c(
|
|
NetworkManagerDisconnectType::ClientInitiated,
|
|
"ClientInitiated".into(),
|
|
))
|
|
.unwrap();
|
|
assert!(!manager.connected());
|
|
}
|
|
|
|
#[test]
|
|
fn handshake_timeout_preserves_reference_connect_result_and_shutdown_tears_down_current_sim() {
|
|
let (endpoint, server) = spawn_ack_only_server();
|
|
let mut client = GridClient::new().expect("client");
|
|
client.settings().timing().login_timeout = 25;
|
|
let mut manager = NetworkManager::new(client).expect("manager");
|
|
manager.set_circuit_code(25);
|
|
let sim_disconnects = Arc::new(AtomicUsize::new(0));
|
|
let disconnect_count = Arc::clone(&sim_disconnects);
|
|
let guard = manager.subscribe_sim_disconnected(Arc::new(move |_| {
|
|
disconnect_count.fetch_add(1, Ordering::Relaxed);
|
|
}));
|
|
|
|
let simulator = manager
|
|
.connect_with_ip_end_point_u_int64_boolean_uri_u_int32_u_int32(
|
|
endpoint, 26, true, None, 256, 256,
|
|
)
|
|
.unwrap()
|
|
.expect("C# returns the UDP-connected simulator after handshake timeout");
|
|
server.join().unwrap();
|
|
|
|
assert!(!simulator.handshake_complete());
|
|
assert!(manager.simulators.is_empty());
|
|
assert_eq!(manager.current_sim(), Some(simulator.clone()));
|
|
manager
|
|
.shutdown_with_disconnect_type(NetworkManagerDisconnectType::ClientInitiated)
|
|
.unwrap();
|
|
assert!(!simulator.connected());
|
|
assert_eq!(sim_disconnects.load(Ordering::Relaxed), 1);
|
|
drop(guard);
|
|
}
|