feat: server status protocol path implemented

This commit is contained in:
Tamipes 2025-11-29 18:31:14 +01:00
parent b75eec70e0
commit b14d3b599d
10 changed files with 544 additions and 79 deletions

11
Cargo.lock generated
View file

@ -1147,6 +1147,7 @@ dependencies = [
"tokio",
"tokio-stream",
"tracing",
"tracing-error",
"tracing-subscriber",
]
@ -1723,6 +1724,16 @@ dependencies = [
"valuable",
]
[[package]]
name = "tracing-error"
version = "0.2.1"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "8b1581020d7a273442f5b45074a6a57d5757ad0a47dac0e9f0bd57b81936f3db"
dependencies = [
"tracing",
"tracing-subscriber",
]
[[package]]
name = "tracing-log"
version = "0.2.0"

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@ -20,6 +20,7 @@ tokio-stream = { version = "0.1.9", features = ["net"] }
# Error tracing?
tracing = "0.1.36"
tracing-subscriber = {version = "0.3.17", features = ["env-filter"]}
tracing-error = "0.2.1"
# Needed to parse data to yaml in kubectl
serde = "1.0.130"

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@ -1,41 +0,0 @@
use k8s_openapi::api::apps::v1::Deployment;
use kube::{
api::{ListParams, ObjectList},
runtime::reflector::Lookup,
Api, Client, ResourceExt,
};
pub struct Cache {
deployments: Api<Deployment>,
}
impl Cache {
pub fn create() -> Option<Cache> {
let kubeconfig = kube::config::Kubeconfig::read().unwrap();
let client = Client::try_from(kubeconfig).unwrap();
let deployments: Api<Deployment> = Api::default_namespaced(client);
return Some(Cache { deployments });
}
pub async fn get_deploys(&self) -> ObjectList<Deployment> {
// let lp: ListParams = ListParams::default();
let lp: ListParams = ListParams::default().labels("tami.moe/minecraft");
self.deployments.list(&lp).await.unwrap()
}
pub async fn query_addr(&self, addr: String) -> Option<String> {
let deploys = self.get_deploys().await;
let result = deploys
.iter()
.find(|x| filter_label_value(x, addr.clone()))?;
Some(result.name()?.to_string())
}
}
fn filter_label_value(dep: &Deployment, str: String) -> bool {
dep.labels()
.values()
.filter(|x| x.as_str() == str.as_str())
.count()
> 0
}

259
src/kube_cache.rs Normal file
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@ -0,0 +1,259 @@
use std::{fmt, sync::Arc};
use k8s_openapi::api::{apps::v1::Deployment, core::v1::Service};
use kube::{
api::{ListParams, ObjectList},
runtime::reflector::Lookup,
Api, Client, ResourceExt,
};
use tokio::{net::TcpStream, sync::Mutex};
use crate::{
kube_cache,
packets::{serverbound::handshake::Handshake, Packet, SendPacket},
OpaqueError,
};
#[derive(Debug)]
pub struct Cache {
deployments: Api<Deployment>,
services: Api<Service>,
}
impl Cache {
pub fn create() -> Option<Cache> {
let kubeconfig = kube::config::Kubeconfig::read().unwrap();
let client = Client::try_from(kubeconfig).unwrap();
let deployments: Api<Deployment> = Api::default_namespaced(client.clone());
let services: Api<Service> = Api::default_namespaced(client);
return Some(Cache {
deployments,
services,
});
}
pub async fn get_dep(&self, name: &str) -> Result<Deployment, kube::Error> {
self.deployments.get(name).await
}
pub async fn get_srv(&self, name: &str) -> Result<Service, kube::Error> {
self.services.get(name).await
}
pub async fn get_deploys(&self) -> ObjectList<Deployment> {
// let lp: ListParams = ListParams::default();
let lp: ListParams = ListParams::default().labels("tami.moe/minecraft");
self.deployments.list(&lp).await.unwrap()
}
pub async fn get_srvs(&self) -> ObjectList<Service> {
// let lp: ListParams = ListParams::default();
let lp: ListParams = ListParams::default().labels("tami.moe/minecraft");
self.services.list(&lp).await.unwrap()
}
pub async fn query_dep_addr(&self, addr: &str) -> Option<String> {
let deploys = self.get_deploys().await;
let result = deploys.iter().find(|x| filter_label_value(x, addr))?;
Some(result.name()?.to_string())
}
pub async fn query_srv_addr(&self, addr: &str) -> Option<String> {
let deploys = self.get_srvs().await;
let result = deploys.iter().find(|x| filter_label_value(x, addr))?;
Some(result.name()?.to_string())
}
// pub fn set_dep(
// &self,
// name: &str,
// pp: &PatchParams,
// ) -> impl std::future::Future<Output = Result<Deployment, kube::Error>> {
// let patch = Patch;
// self.deployments.patch(name, pp, patch)
// }
}
pub struct KubeServer {
dep: Deployment,
srv: Service,
}
impl fmt::Debug for KubeServer {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
f.debug_struct("KubeServer")
.field(
"dep",
&self
.dep
.metadata
.clone()
.name
.unwrap_or("#error#".to_string()),
)
.field(
"srv",
&self
.srv
.metadata
.clone()
.name
.unwrap_or("#error#".to_string()),
)
.finish()
}
}
impl KubeServer {
#[tracing::instrument(name = "KubeServer::create", level = "info", skip(cache, server_addr))]
pub async fn create(
cache: Arc<Mutex<kube_cache::Cache>>,
server_addr: &str,
) -> Result<Self, OpaqueError> {
let cache_guard = cache.lock().await;
let dep_name = match cache_guard.query_dep_addr(server_addr).await {
Some(x) => x,
None => {
return Err(OpaqueError::create(&format!(
"Failed to find deployment name by addr"
)))
}
};
let srv_name = match cache_guard.query_srv_addr(server_addr).await {
Some(x) => x,
None => {
return Err(OpaqueError::create(&format!(
"Failed to find service name by addr"
)))
}
};
let deployment = cache_guard.get_dep(&dep_name).await.map_err(|x| {
format!(
"Failed to query cache for deployment with dep_name err:{}",
x.to_string()
)
})?;
let service = cache_guard.get_srv(&srv_name).await.map_err(|x| {
format!(
"Failed to query cache for service with dep_name err:{}",
x.to_string()
)
})?;
drop(cache_guard);
tracing::info!("found kubernetes deployment & service");
return Ok(Self {
dep: deployment,
srv: service,
});
}
fn get_port(&self) -> Option<i32> {
let a = self.srv.clone().spec.unwrap().ports.unwrap();
let port = a.iter().find(|x| x.name.clone().unwrap() == "mc-router")?;
port.node_port
}
#[tracing::instrument(level = "info")]
pub async fn get_server_status(&self) -> Result<ServerDeploymentStatus, OpaqueError> {
let mut status = match self.dep.clone().status {
Some(x) => x,
None => {
return Err(OpaqueError::create(
"failed to get status of deployment for checking replicas",
))
}
};
let total_replicas = status
.replicas
.get_or_insert_with(|| {
tracing::trace!("total_replicas failed to get");
-1
})
.clone();
let available_replicas = status
.available_replicas
.get_or_insert_with(|| {
tracing::trace!("available_replicas failed to get");
-1
})
.clone();
let ready_replicas = status
.ready_replicas
.get_or_insert_with(|| {
tracing::trace!("ready_replicas failed to get");
-1
})
.clone();
tracing::debug!("total_replicas: {total_replicas} available_replicas: {available_replicas} ready_replicas : {ready_replicas }");
if total_replicas > 0 {
if ready_replicas > 0 {
//TODO: add Connectable check
return match self.query_server_connectable().await {
Ok(()) => Ok(ServerDeploymentStatus::Connectable),
Err(_) => Ok(ServerDeploymentStatus::PodOk),
};
}
return Ok(ServerDeploymentStatus::Starting);
} else {
return Ok(ServerDeploymentStatus::Offline);
}
}
async fn query_server_connectable(&self) -> Result<(), OpaqueError> {
let port = self
.get_port()
.ok_or_else(|| "failed to get port from service")?;
let server_stream = TcpStream::connect(format!("localhost:{port}"))
.await
.map_err(|_| "Failed to connect to minecraft server")?;
tracing::trace!(
"successfully connected to backend server; (connectibility check) {:?}",
server_stream.peer_addr()
);
Ok(())
}
pub async fn proxy_status(
&self,
handshake: &Handshake,
status_request: &Packet,
client_stream: &mut TcpStream,
) -> Result<(), OpaqueError> {
let port = self
.get_port()
.ok_or_else(|| "failed to get port from service")?;
let mut server_stream = TcpStream::connect(format!("localhost:{port}"))
.await
.map_err(|_| "Failed to connect to minecraft server")?;
handshake
.send_packet(&mut server_stream)
.await
.map_err(|_| "Failed to forward handshake packet to minecraft server")?;
status_request
.send_packet(&mut server_stream)
.await
.map_err(|_| "Failed to forward status request packet to minecraft server")?;
let data_amount = tokio::io::copy_bidirectional(client_stream, &mut server_stream)
.await
.map_err(|e| {
format!(
"Error during bidirectional copy between server and client; err={:?}",
e
)
})?;
tracing::info!("data exchanged while proxing: {:?}", data_amount);
Ok(())
}
}
fn filter_label_value<R>(dep: &&R, str: &str) -> bool
where
R: ResourceExt,
{
dep.labels().values().filter(|x| x.as_str() == str).count() > 0
}
#[derive(Debug)]
pub enum ServerDeploymentStatus {
Connectable,
Starting,
PodOk,
Offline,
}

View file

@ -4,17 +4,24 @@
use std::{net::SocketAddr, sync::Arc};
use tokio::net::{TcpListener, TcpStream};
use tracing::instrument;
use tokio::sync::Mutex;
use tracing_subscriber::{prelude::*, EnvFilter};
use crate::packets::Packet;
use crate::kube_cache::{KubeServer, ServerDeploymentStatus};
use crate::opaque_error::OpaqueError;
use crate::packets::clientbound::status::StatusStructNew;
use crate::packets::serverbound::handshake::Handshake;
use crate::packets::{Packet, SendPacket};
mod KubeCache;
mod kube_cache;
mod mc_server;
mod opaque_error;
mod packets;
mod types;
#[tokio::main]
async fn main() {
// ---- Tracing setup ----
// tracing_subscriber::fmt::init();
let fmt_layer = tracing_subscriber::fmt::layer()
.with_target(false)
@ -23,13 +30,14 @@ async fn main() {
tracing_subscriber::registry()
.with(fmt_layer)
.with(filter_layer)
.with(tracing_error::ErrorLayer::default())
.init();
let commit_hash: &'static str = env!("COMMIT_HASH");
tracing::info!("COMMIT_HASH: {}", commit_hash);
let cache = KubeCache::Cache::create().unwrap();
let arc_cache = Arc::new(cache);
let cache = kube_cache::Cache::create().unwrap();
let arc_cache = Arc::new(Mutex::new(cache));
tracing::info!("kube api initialized");
let listener = TcpListener::bind("0.0.0.0:25565").await.unwrap();
@ -40,45 +48,125 @@ async fn main() {
let acc = arc_cache.clone();
tokio::spawn(async move {
if let Err(e) = process_socket(socket, addr, acc).await {
tracing::error!("socket error: {e:?}");
tracing::info!(
addr = format!("{}:{}", addr.ip().to_string(), addr.port().to_string()),
"Client connected"
);
if let Err(e) = process_connection(socket, addr, acc).await {
tracing::error!(
message = format!("Client disconnected"),
addr = format!("{}:{}", addr.ip().to_string(), addr.port().to_string()),
trace = format!("{}", e.get_span_trace()),
err = format!("{}", e.context)
);
} else {
tracing::info!(
addr = format!("{}:{}", addr.ip().to_string(), addr.port().to_string()),
"Client disconnected"
);
}
});
}
}
#[instrument(level = "trace", skip(cache, stream))]
async fn process_socket(
mut stream: TcpStream,
#[tracing::instrument(level = "info", skip(cache, client_stream))]
async fn process_connection(
mut client_stream: TcpStream,
addr: SocketAddr,
cache: Arc<KubeCache::Cache>,
) -> Result<(), ()> {
tracing::info!(
addr = format!("{}:{}", addr.ip().to_string(), addr.port().to_string()),
"Client connected"
);
let client_packet = match Packet::parse(&mut stream).await {
cache: Arc<Mutex<kube_cache::Cache>>,
) -> Result<(), OpaqueError> {
let client_packet = match Packet::parse(&mut client_stream).await {
Some(x) => x,
None => {
tracing::trace!("Client HANDSHAKE -> bad packet; Disconnecting...");
return Ok(());
}
};
tracing::info!(
addr = format!("{}:{}", addr.ip().to_string(), addr.port().to_string()),
"Client disconnected"
);
todo!()
}
// ----- Debug tools -----
// let mc_deployments = cache.get_deploys().await;
// for dep in mc_deployments.iter() {
// println!("{:?}", dep.labels().values())
// }
// // println!("{:?}", mc_deployments);
// println!("count: {}", mc_deployments.iter().count());
// println!(
// "{:?}",
// cache.query_addr("ferret.tami.moe".to_string()).await
// );
// --- Handshake ---
let handshake;
let server_state;
if client_packet.id.get_int() != 0 {
return Err(OpaqueError::create(
"Client HANDSHAKE -> bad packet; Disconnecting...",
));
}
handshake = packets::serverbound::handshake::Handshake::parse(client_packet)
.await
.ok_or_else(|| "Handshake request from client failed to parse".to_string())?;
server_state = handshake.get_next_state();
match server_state {
packets::ProtocolState::Status => {
handle_status(
&mut client_stream,
cache,
handshake.get_server_address(),
&handshake,
)
.await?;
}
packets::ProtocolState::Login => todo!(),
packets::ProtocolState::Transfer => todo!(),
_ => todo!(),
};
Ok(())
}
#[tracing::instrument(level = "info", skip(client_stream, cache, handshake))]
async fn handle_status(
client_stream: &mut TcpStream,
cache: Arc<Mutex<kube_cache::Cache>>,
server_addr: String,
handshake: &Handshake,
) -> Result<(), OpaqueError> {
tracing::debug!(handshake = ?handshake);
let client_packet = Packet::parse(client_stream)
.await
.ok_or_else(|| "Could not parse client_packet".to_string())?;
match client_packet.id.get_int() {
0 => tracing::info!("Client STATUS: {:#x} Status Request", 0),
_ => {
return Err(OpaqueError::create(&format!(
"Client STATUS: {:#x} Unknown Id -> Shutdown",
client_packet.id.get_int(),
)))
}
};
let kube_server = KubeServer::create(cache, &server_addr).await?;
let status: ServerDeploymentStatus = kube_server.get_server_status().await?;
tracing::info!("kube server status: {:?}", status);
let commit_hash: &'static str = env!("COMMIT_HASH");
let mut status_struct = StatusStructNew::create();
status_struct.version.protocol = handshake.protocol_version.get_int();
match status {
ServerDeploymentStatus::Connectable => {
return kube_server
.proxy_status(handshake, &client_packet, client_stream)
.await
}
ServerDeploymentStatus::Starting | ServerDeploymentStatus::PodOk => {
status_struct.players.max = 1;
status_struct.players.online = 1;
status_struct.description.text = format!("§aServer is starting...§r please wait\n - §dTami§r with §d<3§r §8(rev: {commit_hash})§r");
}
ServerDeploymentStatus::Offline => {
status_struct.players.max = 1;
status_struct.description.text = format!("Server is currently §onot§r running. \n§aJoin to start it!§r - §dTami§r with §d<3§r §8(rev: {commit_hash})§r");
}
};
let status_res =
packets::clientbound::status::StatusResponse::set_json(Box::new(status_struct)).await;
status_res
.send_packet(client_stream)
.await
.map_err(|_| "Failed to send status packet")?;
mc_server::handle_ping(client_stream).await?;
Ok(())
}

28
src/mc_server.rs Normal file
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@ -0,0 +1,28 @@
use tokio::net::TcpStream;
use crate::{
packets::{Packet, SendPacket},
OpaqueError,
};
#[tracing::instrument(skip(client_stream))]
pub async fn handle_ping(client_stream: &mut TcpStream) -> Result<(), OpaqueError> {
// --- Respond to ping packet ---
let ping_packet = Packet::parse(client_stream)
.await
.ok_or("Ping packett failed to parse")?;
match ping_packet.id.get_int() {
1 => Ok(ping_packet
.send_packet(client_stream)
.await
.map_err(|_| "Failed to send ping")?),
_ => {
return Err(OpaqueError::create(&format!(
"Expected ping packet, got: {}",
ping_packet.id.get_int()
)));
}
}
}
// pub async fn handle_redirect(client_stream: &mut TcpStream) -> Result<(), OpaqueError> {}

73
src/opaque_error.rs Normal file
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@ -0,0 +1,73 @@
use std::{error::Error, fmt};
use tracing_error::SpanTrace;
#[derive(Debug)]
pub struct OpaqueError {
span_trace: SpanTrace,
pub context: String,
}
impl fmt::Display for OpaqueError {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
// optional: only print span trace if requested "{:#}"
if f.alternate() {
let mut vec = Vec::new();
self.span_trace.with_spans(|metadata, _fields| {
vec.push(metadata.name());
true
});
if vec.len() > 1 {
write!(f, "trace = {}", vec.pop().unwrap())?;
}
vec.reverse();
for s in vec {
write!(f, "::{}", s)?;
}
};
write!(f, " {}", self.context)?;
Ok(())
}
}
impl Error for OpaqueError {}
impl OpaqueError {
pub fn create(str: &str) -> OpaqueError {
Self {
span_trace: SpanTrace::capture(),
context: str.to_string(),
}
}
pub fn get_span_trace(&self) -> String {
let mut vec = Vec::new();
self.span_trace.with_spans(|metadata, _fields| {
vec.push(metadata.name());
true
});
vec.iter().rfold(String::new(), |mut acc, x| {
if acc.len() != 0 {
acc.push_str("::");
}
acc.push_str(x);
acc
})
}
}
impl From<String> for OpaqueError {
fn from(value: String) -> Self {
Self {
span_trace: SpanTrace::capture(),
context: value,
}
}
}
impl From<&str> for OpaqueError {
fn from(value: &str) -> Self {
Self {
span_trace: SpanTrace::capture(),
context: value.to_string(),
}
}
}

View file

@ -137,7 +137,7 @@ impl StatusResponse {
}
None
}
pub async fn set_json(json: Box<dyn StatusTrait>) -> StatusResponse {
pub async fn set_json(json: Box<dyn StatusTrait + Send>) -> StatusResponse {
let vec = VarString::from(json.get_string()).move_data().unwrap();
StatusResponse::parse(Packet::from_bytes(0, vec).unwrap())
.await

View file

@ -122,3 +122,29 @@ impl Packet {
// }
// }
}
#[derive(Copy, Clone, PartialEq)]
pub enum ProtocolState {
Handshaking,
Status,
Login,
Transfer,
Configuration,
Play,
ShutDown,
}
impl ToString for ProtocolState {
fn to_string(&self) -> String {
match self {
ProtocolState::Handshaking => "Hanshake",
ProtocolState::Status => "Status",
ProtocolState::Login => "Login",
ProtocolState::Configuration => "Configuration ",
ProtocolState::Play => "Play",
ProtocolState::ShutDown => "Shutdown",
ProtocolState::Transfer => "Transfer",
}
.to_string()
}
}

View file

@ -1,7 +1,7 @@
use tokio::{io::AsyncWriteExt, net::TcpStream};
use crate::{
packets::{Packet, SendPacket},
packets::{Packet, ProtocolState, SendPacket},
types::{UShort, VarInt, VarString},
};
@ -13,6 +13,16 @@ pub struct Handshake {
pub next_state: VarInt,
all: Vec<u8>,
}
impl std::fmt::Debug for Handshake {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
f.debug_struct("Handshake")
.field("protocol_version", &self.protocol_version.get_int())
.field("server_address", &self.server_address.get_value())
.field("server_port", &self.server_port.get_value())
.field("next_state", &self.next_state.get_int())
.finish()
}
}
impl Handshake {
pub async fn parse(packet: Packet) -> Option<Handshake> {
@ -21,6 +31,11 @@ impl Handshake {
let server_address = VarString::parse(&mut reader).await?;
let server_port = UShort::parse(&mut reader).await?;
let next_state = VarInt::parse(&mut reader).await?;
// If you remove this, also fix get_next_state() to return an Option<>
if next_state.get_int() > 3 || next_state.get_int() < 0 {
return None;
}
Some(Handshake {
protocol_version,
server_address,
@ -32,8 +47,13 @@ impl Handshake {
pub fn get_server_address(&self) -> String {
self.server_address.get_value()
}
pub fn get_next_state(&self) -> i32 {
self.next_state.get_int()
pub fn get_next_state(&self) -> ProtocolState {
match self.next_state.get_int() {
1 => ProtocolState::Status,
2 => ProtocolState::Login,
3 => ProtocolState::Transfer,
_ => unreachable!(),
}
}
pub fn create(