This commit is contained in:
lda
2026-04-11 16:04:14 +07:00 Unverified
parent a945d4933e
commit 524ade16ec
7 changed files with 611 additions and 405 deletions
+2
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@@ -1 +1,3 @@
We work towards clean, modular, maintainable design, clear documentation... im not the best at this thing, so you help me.
DRY: spawn subagents.
+185
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@@ -0,0 +1,185 @@
use axum::Json;
use axum::extract::{Path as AxumPath, State};
use axum::http::StatusCode;
use axum::response::IntoResponse;
use serde::{Deserialize, Serialize};
use uuid::Uuid;
use wakey_agent::protocol::{AgentCommand, ErrorPayload, RequestId, ServerMessage};
use crate::runtime::{AgentReply, AppState};
#[derive(Debug, Deserialize)]
pub struct EnrollRequest {
pub enroll_token: String,
}
#[derive(Debug, Serialize)]
pub struct EnrollResponse {
pub agent_id: String,
pub agent_token: String,
pub server_url: String,
}
#[derive(Debug, Serialize)]
pub struct AgentStatus {
pub agent_id: String,
pub connected: bool,
}
#[derive(Debug, Deserialize)]
pub struct RelayCommandRequest {
pub command: AgentCommand,
pub timeout_ms: Option<u64>,
}
#[derive(Debug, Serialize)]
pub struct RelayCommandResponse {
pub request_id: String,
pub status: String,
#[serde(skip_serializing_if = "Option::is_none")]
pub result: Option<serde_json::Value>,
#[serde(skip_serializing_if = "Option::is_none")]
pub error: Option<ErrorPayload>,
}
pub async fn healthz() -> &'static str {
"ok"
}
pub async fn enroll(
State(state): State<AppState>,
Json(req): Json<EnrollRequest>,
) -> Result<impl IntoResponse, (StatusCode, Json<serde_json::Value>)> {
match state.store.enroll(&req.enroll_token).await {
Ok(issued) => Ok((
StatusCode::OK,
Json(EnrollResponse {
agent_id: issued.agent_id,
agent_token: issued.agent_token,
server_url: state.public_url,
}),
)),
Err(err) => Err(json_error(
StatusCode::UNAUTHORIZED,
"enrollment_rejected",
&err.to_string(),
)),
}
}
pub async fn list_agents(
State(state): State<AppState>,
) -> Result<impl IntoResponse, (StatusCode, Json<serde_json::Value>)> {
let enrolled = state.store.list_agents().await;
let sessions = state.sessions.read().await;
let agents = enrolled
.into_iter()
.map(|agent_id| AgentStatus {
connected: sessions.contains_key(&agent_id),
agent_id,
})
.collect::<Vec<_>>();
Ok((StatusCode::OK, Json(agents)))
}
pub async fn run_command(
State(state): State<AppState>,
AxumPath(agent_id): AxumPath<String>,
Json(req): Json<RelayCommandRequest>,
) -> Result<impl IntoResponse, (StatusCode, Json<serde_json::Value>)> {
let request_id_string = format!("req-{}", Uuid::new_v4());
let request_id = RequestId::try_from(request_id_string.clone()).map_err(|err| {
json_error(
StatusCode::INTERNAL_SERVER_ERROR,
"invalid_request_id",
&err,
)
})?;
let tx = {
let sessions = state.sessions.read().await;
sessions.get(&agent_id).cloned()
}
.ok_or_else(|| {
json_error(
StatusCode::NOT_FOUND,
"agent_not_connected",
"agent is not connected",
)
})?;
let (pending_tx, pending_rx) = tokio::sync::oneshot::channel();
state
.pending
.lock()
.await
.insert(request_id_string.clone(), pending_tx);
if let Err(err) = tx.send(ServerMessage::Command {
request_id,
command: req.command,
}) {
state.pending.lock().await.remove(&request_id_string);
return Err(json_error(
StatusCode::BAD_GATEWAY,
"agent_send_failed",
&format!("failed to send command to agent: {err}"),
));
}
let timeout = std::time::Duration::from_millis(
req.timeout_ms
.unwrap_or(state.command_timeout.as_millis() as u64)
.max(1),
);
let outcome = tokio::time::timeout(timeout, pending_rx).await;
let response = match outcome {
Ok(Ok(AgentReply::Result(result))) => RelayCommandResponse {
request_id: request_id_string,
status: "ok".into(),
result: Some(result),
error: None,
},
Ok(Ok(AgentReply::Error(error))) => RelayCommandResponse {
request_id: request_id_string,
status: "error".into(),
result: None,
error: Some(error),
},
Ok(Err(_)) => {
return Err(json_error(
StatusCode::BAD_GATEWAY,
"agent_response_dropped",
"agent response channel dropped",
));
}
Err(_) => {
state.pending.lock().await.remove(&request_id_string);
return Err(json_error(
StatusCode::GATEWAY_TIMEOUT,
"agent_timeout",
"agent did not answer before timeout",
));
}
};
Ok((StatusCode::OK, Json(response)))
}
pub fn json_error(
status: StatusCode,
code: &str,
message: &str,
) -> (StatusCode, Json<serde_json::Value>) {
(
status,
Json(serde_json::json!({
"error": {
"code": code,
"message": message,
}
})),
)
}
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@@ -0,0 +1,67 @@
use std::net::SocketAddr;
use std::path::PathBuf;
use clap::{ArgAction, Args, Parser, Subcommand};
pub const DEFAULT_STATE_FILE: &str = "/var/lib/wakey-control-plane/state.json";
pub const DEFAULT_PID_FILE: &str = "/var/run/wakey-control-plane.pid";
#[derive(Parser)]
#[command(name = "wakey-control-plane")]
#[command(version, about = "Control plane server for wakey-agent fleets")]
pub struct Cli {
#[arg(short = 'v', long = "verbose", action = ArgAction::Count, global = true)]
pub verbose: u8,
#[command(subcommand)]
pub command: Command,
}
#[derive(Subcommand)]
pub enum Command {
/// Run the control-plane daemon.
Serve(ServeArgs),
/// Create a new enroll token for provisioning a router.
IssueEnrollToken(IssueEnrollTokenArgs),
/// Send SIGHUP to an already-running daemon.
Reload(ReloadArgs),
}
#[derive(Args, Clone)]
pub struct ServeArgs {
#[arg(long, default_value = "0.0.0.0:8080")]
pub bind: SocketAddr,
#[arg(long, default_value = "http://127.0.0.1:8080")]
pub public_url: String,
#[arg(long, default_value = DEFAULT_STATE_FILE)]
pub state_file: PathBuf,
#[arg(long = "enroll-token")]
pub enroll_tokens: Vec<String>,
#[arg(long, default_value_t = 30_000)]
pub command_timeout_ms: u64,
#[arg(long, default_value = DEFAULT_PID_FILE)]
pub pid_file: PathBuf,
}
#[derive(Args)]
pub struct IssueEnrollTokenArgs {
#[arg(long, default_value = DEFAULT_STATE_FILE)]
pub state_file: PathBuf,
#[arg(long = "enroll-token")]
pub enroll_tokens: Vec<String>,
#[arg(long)]
pub public_url: Option<String>,
}
#[derive(Args)]
pub struct ReloadArgs {
#[arg(long, default_value = DEFAULT_PID_FILE)]
pub pid_file: PathBuf,
}
+11 -405
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@@ -1,416 +1,22 @@
mod api;
mod cli;
mod runtime;
mod state;
mod tracing;
mod ws;
use std::collections::HashMap;
use std::net::SocketAddr;
use std::sync::Arc;
use std::time::Duration;
use ::tracing::{debug, info, warn};
use anyhow::{Context, Result};
use axum::extract::ws::{Message, WebSocket, WebSocketUpgrade};
use axum::extract::{Path, State};
use axum::http::StatusCode;
use axum::response::IntoResponse;
use axum::routing::{get, post};
use axum::{Json, Router};
use clap::{ArgAction, Parser};
use futures_util::{SinkExt, StreamExt};
use serde::{Deserialize, Serialize};
use tokio::net::TcpListener;
use tokio::sync::{Mutex, RwLock, mpsc, oneshot};
use uuid::Uuid;
use wakey_agent::protocol::{AgentCommand, ErrorPayload, RequestId, ServerMessage};
#[derive(Parser)]
#[command(name = "wakey-control-plane")]
#[command(version, about = "Control plane server for wakey-agent fleets")]
struct Cli {
#[arg(short = 'v', long = "verbose", action = ArgAction::Count, global = true)]
verbose: u8,
#[arg(long, default_value = "0.0.0.0:8080")]
bind: SocketAddr,
#[arg(long, default_value = "http://127.0.0.1:8080")]
public_url: String,
#[arg(long, default_value = "/var/lib/wakey-control-plane/state.json")]
state_file: std::path::PathBuf,
#[arg(long = "enroll-token")]
enroll_tokens: Vec<String>,
#[arg(long, default_value_t = 30_000)]
command_timeout_ms: u64,
}
#[derive(Clone)]
struct AppState {
store: Arc<state::Store>,
sessions: Arc<RwLock<HashMap<String, mpsc::UnboundedSender<ServerMessage>>>>,
pending: Arc<Mutex<HashMap<String, oneshot::Sender<AgentReply>>>>,
public_url: String,
command_timeout: Duration,
}
enum AgentReply {
Result(serde_json::Value),
Error(ErrorPayload),
}
#[derive(Debug, Deserialize)]
#[serde(tag = "type", rename_all = "snake_case")]
enum IncomingClientMessage {
Hello {
agent_id: String,
},
Auth {
agent_id: String,
agent_token: String,
},
Heartbeat {
agent_id: String,
},
Result {
request_id: RequestId,
result: serde_json::Value,
},
Error {
request_id: RequestId,
error: ErrorPayload,
},
}
#[derive(Debug, Deserialize)]
struct EnrollRequest {
enroll_token: String,
}
#[derive(Debug, Serialize)]
struct EnrollResponse {
agent_id: String,
agent_token: String,
server_url: String,
}
#[derive(Debug, Serialize)]
struct AgentStatus {
agent_id: String,
connected: bool,
}
#[derive(Debug, Deserialize)]
struct RelayCommandRequest {
command: AgentCommand,
timeout_ms: Option<u64>,
}
#[derive(Debug, Serialize)]
struct RelayCommandResponse {
request_id: String,
status: String,
#[serde(skip_serializing_if = "Option::is_none")]
result: Option<serde_json::Value>,
#[serde(skip_serializing_if = "Option::is_none")]
error: Option<ErrorPayload>,
}
use anyhow::Result;
use clap::Parser;
use cli::{Cli, Command};
#[tokio::main]
async fn main() -> Result<()> {
let cli = Cli::parse();
tracing::init(cli.verbose);
let store = state::Store::load_or_init(&cli.state_file, cli.enroll_tokens)
.await
.with_context(|| format!("failed to initialize store {}", cli.state_file.display()))?;
let app_state = AppState {
store: Arc::new(store),
sessions: Arc::new(RwLock::new(HashMap::new())),
pending: Arc::new(Mutex::new(HashMap::new())),
public_url: cli.public_url.trim_end_matches('/').to_string(),
command_timeout: Duration::from_millis(cli.command_timeout_ms.max(1)),
};
let app = Router::new()
.route("/healthz", get(healthz))
.route("/api/v1/agents/enroll", post(enroll))
.route("/api/v1/agent/ws", get(agent_ws))
.route("/api/v1/control/agents", get(list_agents))
.route(
"/api/v1/control/agents/{agent_id}/command",
post(run_command),
)
.with_state(app_state);
info!(bind = %cli.bind, "starting control-plane server");
let listener = TcpListener::bind(cli.bind).await?;
axum::serve(listener, app).await?;
Ok(())
}
async fn healthz() -> &'static str {
"ok"
}
async fn enroll(
State(state): State<AppState>,
Json(req): Json<EnrollRequest>,
) -> Result<impl IntoResponse, (StatusCode, Json<serde_json::Value>)> {
match state.store.enroll(&req.enroll_token).await {
Ok(issued) => Ok((
StatusCode::OK,
Json(EnrollResponse {
agent_id: issued.agent_id,
agent_token: issued.agent_token,
server_url: state.public_url,
}),
)),
Err(err) => Err(json_error(
StatusCode::UNAUTHORIZED,
"enrollment_rejected",
&err.to_string(),
)),
match cli.command {
Command::Serve(args) => runtime::serve(args).await,
Command::IssueEnrollToken(args) => runtime::issue_enroll_token(args).await,
Command::Reload(args) => runtime::reload_daemon(&args.pid_file),
}
}
async fn list_agents(
State(state): State<AppState>,
) -> Result<impl IntoResponse, (StatusCode, Json<serde_json::Value>)> {
let enrolled = state.store.list_agents().await;
let sessions = state.sessions.read().await;
let agents = enrolled
.into_iter()
.map(|agent_id| AgentStatus {
connected: sessions.contains_key(&agent_id),
agent_id,
})
.collect::<Vec<_>>();
Ok((StatusCode::OK, Json(agents)))
}
async fn run_command(
State(state): State<AppState>,
Path(agent_id): Path<String>,
Json(req): Json<RelayCommandRequest>,
) -> Result<impl IntoResponse, (StatusCode, Json<serde_json::Value>)> {
let request_id_string = format!("req-{}", Uuid::new_v4());
let request_id = RequestId::try_from(request_id_string.clone()).map_err(|err| {
json_error(
StatusCode::INTERNAL_SERVER_ERROR,
"invalid_request_id",
&err,
)
})?;
let tx = {
let sessions = state.sessions.read().await;
sessions.get(&agent_id).cloned()
}
.ok_or_else(|| {
json_error(
StatusCode::NOT_FOUND,
"agent_not_connected",
"agent is not connected",
)
})?;
let (pending_tx, pending_rx) = oneshot::channel();
state
.pending
.lock()
.await
.insert(request_id_string.clone(), pending_tx);
if let Err(err) = tx.send(ServerMessage::Command {
request_id,
command: req.command,
}) {
state.pending.lock().await.remove(&request_id_string);
return Err(json_error(
StatusCode::BAD_GATEWAY,
"agent_send_failed",
&format!("failed to send command to agent: {err}"),
));
}
let timeout = Duration::from_millis(
req.timeout_ms
.unwrap_or(state.command_timeout.as_millis() as u64)
.max(1),
);
let outcome = tokio::time::timeout(timeout, pending_rx).await;
let response = match outcome {
Ok(Ok(AgentReply::Result(result))) => RelayCommandResponse {
request_id: request_id_string,
status: "ok".into(),
result: Some(result),
error: None,
},
Ok(Ok(AgentReply::Error(error))) => RelayCommandResponse {
request_id: request_id_string,
status: "error".into(),
result: None,
error: Some(error),
},
Ok(Err(_)) => {
return Err(json_error(
StatusCode::BAD_GATEWAY,
"agent_response_dropped",
"agent response channel dropped",
));
}
Err(_) => {
state.pending.lock().await.remove(&request_id_string);
return Err(json_error(
StatusCode::GATEWAY_TIMEOUT,
"agent_timeout",
"agent did not answer before timeout",
));
}
};
Ok((StatusCode::OK, Json(response)))
}
async fn agent_ws(ws: WebSocketUpgrade, State(state): State<AppState>) -> impl IntoResponse {
ws.on_upgrade(move |socket| handle_agent_socket(state, socket))
}
async fn handle_agent_socket(state: AppState, socket: WebSocket) {
let (mut write, mut read) = socket.split();
let (tx, mut rx) = mpsc::unbounded_channel::<ServerMessage>();
let writer = tokio::spawn(async move {
while let Some(msg) = rx.recv().await {
let encoded = match serde_json::to_string(&msg) {
Ok(s) => s,
Err(err) => {
warn!(error = %err, "failed to encode server websocket message");
continue;
}
};
if let Err(err) = write.send(Message::Text(encoded.into())).await {
warn!(error = %err, "failed to send websocket message");
break;
}
}
});
let mut authed_agent_id: Option<String> = None;
loop {
let frame = read.next().await;
let msg = match frame {
Some(Ok(msg)) => msg,
Some(Err(err)) => {
warn!(error = %err, "agent websocket receive error");
break;
}
None => break,
};
match msg {
Message::Text(text) => {
if let Err(err) = process_agent_text(&state, &tx, &mut authed_agent_id, &text).await
{
warn!(error = %err, "closing agent websocket due to protocol/auth error");
break;
}
}
Message::Ping(_) => {}
Message::Pong(_) => {}
Message::Close(_) => break,
Message::Binary(_) => {
debug!("ignoring unexpected binary websocket frame");
}
}
}
if let Some(agent_id) = authed_agent_id {
info!(agent_id = %agent_id, "agent disconnected");
state.sessions.write().await.remove(&agent_id);
}
writer.abort();
}
async fn process_agent_text(
state: &AppState,
tx: &mpsc::UnboundedSender<ServerMessage>,
authed_agent_id: &mut Option<String>,
text: &str,
) -> Result<()> {
let message: IncomingClientMessage =
serde_json::from_str(text).context("invalid client websocket payload")?;
match message {
IncomingClientMessage::Hello { agent_id } => {
debug!(agent_id = %agent_id, "agent hello received");
}
IncomingClientMessage::Auth {
agent_id,
agent_token,
} => {
if !state
.store
.verify_agent_token(&agent_id, &agent_token)
.await
{
anyhow::bail!("agent auth rejected");
}
state
.sessions
.write()
.await
.insert(agent_id.clone(), tx.clone());
*authed_agent_id = Some(agent_id.clone());
info!(agent_id = %agent_id, "agent authenticated");
}
IncomingClientMessage::Heartbeat { agent_id } => {
if authed_agent_id.as_deref() != Some(agent_id.as_str()) {
anyhow::bail!("heartbeat for unauthenticated or mismatched agent");
}
debug!(agent_id = %agent_id, "heartbeat received");
}
IncomingClientMessage::Result { request_id, result } => {
if authed_agent_id.is_none() {
anyhow::bail!("result before auth");
}
let key = request_id.as_str().to_string();
if let Some(waiter) = state.pending.lock().await.remove(&key) {
let _ = waiter.send(AgentReply::Result(result));
}
}
IncomingClientMessage::Error { request_id, error } => {
if authed_agent_id.is_none() {
anyhow::bail!("error before auth");
}
let key = request_id.as_str().to_string();
if let Some(waiter) = state.pending.lock().await.remove(&key) {
let _ = waiter.send(AgentReply::Error(error));
}
}
}
Ok(())
}
fn json_error(
status: StatusCode,
code: &str,
message: &str,
) -> (StatusCode, Json<serde_json::Value>) {
(
status,
Json(serde_json::json!({
"error": {
"code": code,
"message": message,
}
})),
)
}
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use std::collections::HashMap;
use std::path::Path;
use std::sync::Arc;
use std::time::Duration;
use anyhow::{Context, Result};
use axum::Router;
use axum::routing::{get, post};
use tokio::net::TcpListener;
use tokio::sync::{Mutex, RwLock, mpsc, oneshot};
use tracing::{info, warn};
use wakey_agent::protocol::{ErrorPayload, ServerMessage};
use crate::api;
use crate::cli::{IssueEnrollTokenArgs, ServeArgs};
use crate::state;
use crate::ws;
#[derive(Clone)]
pub struct AppState {
pub store: Arc<state::Store>,
pub sessions: Arc<RwLock<HashMap<String, mpsc::UnboundedSender<ServerMessage>>>>,
pub pending: Arc<Mutex<HashMap<String, oneshot::Sender<AgentReply>>>>,
pub public_url: String,
pub command_timeout: Duration,
}
pub enum AgentReply {
Result(serde_json::Value),
Error(ErrorPayload),
}
pub async fn serve(args: ServeArgs) -> Result<()> {
write_pid_file(&args.pid_file)?;
let store = state::Store::load_or_init(&args.state_file, args.enroll_tokens)
.await
.with_context(|| format!("failed to initialize store {}", args.state_file.display()))?;
let app_state = AppState {
store: Arc::new(store),
sessions: Arc::new(RwLock::new(HashMap::new())),
pending: Arc::new(Mutex::new(HashMap::new())),
public_url: args.public_url.trim_end_matches('/').to_string(),
command_timeout: Duration::from_millis(args.command_timeout_ms.max(1)),
};
let app = Router::new()
.route("/healthz", get(api::healthz))
.route("/api/v1/agents/enroll", post(api::enroll))
.route("/api/v1/agent/ws", get(ws::agent_ws))
.route("/api/v1/control/agents", get(api::list_agents))
.route(
"/api/v1/control/agents/{agent_id}/command",
post(api::run_command),
)
.with_state(app_state.clone());
info!(bind = %args.bind, pid_file = %args.pid_file.display(), "starting control-plane server");
let listener = TcpListener::bind(args.bind).await?;
let mut server = tokio::spawn(async move {
axum::serve(listener, app)
.await
.context("control-plane server exited unexpectedly")
});
#[cfg(unix)]
{
use tokio::signal::unix::{SignalKind, signal};
let mut hup = signal(SignalKind::hangup()).context("failed to install SIGHUP handler")?;
loop {
tokio::select! {
_ = tokio::signal::ctrl_c() => {
info!("ctrl-c received; shutting down control-plane");
server.abort();
break;
}
_ = hup.recv() => {
match app_state.store.reload_from_disk().await {
Ok(()) => info!("reloaded state from disk"),
Err(err) => warn!(error = %err, "failed to reload state from disk"),
}
}
join = &mut server => {
let _ = remove_pid_file(&args.pid_file);
return join.context("control-plane join failed")?;
}
}
}
}
#[cfg(not(unix))]
{
tokio::signal::ctrl_c()
.await
.context("failed waiting for ctrl-c")?;
server.abort();
}
let _ = remove_pid_file(&args.pid_file);
Ok(())
}
pub async fn issue_enroll_token(args: IssueEnrollTokenArgs) -> Result<()> {
let store = state::Store::load_or_init(&args.state_file, args.enroll_tokens)
.await
.with_context(|| format!("failed to initialize store {}", args.state_file.display()))?;
let token = store.issue_enroll_token().await?;
println!("enroll_token={token}");
if let Some(url) = args.public_url {
let base = url.trim_end_matches('/');
println!("agent_command=wakey-agent enroll --server-url {base} --enroll-token {token}");
}
Ok(())
}
pub fn reload_daemon(pid_file: &Path) -> Result<()> {
let pid = read_pid(pid_file)?;
send_hup(pid)
}
fn write_pid_file(path: &Path) -> Result<()> {
if let Some(parent) = path.parent() {
std::fs::create_dir_all(parent)
.with_context(|| format!("failed to create pid dir {}", parent.display()))?;
}
std::fs::write(path, format!("{}\n", std::process::id()))
.with_context(|| format!("failed to write pid file {}", path.display()))
}
fn remove_pid_file(path: &Path) -> Result<()> {
match std::fs::remove_file(path) {
Ok(()) => Ok(()),
Err(err) if err.kind() == std::io::ErrorKind::NotFound => Ok(()),
Err(err) => {
Err(err).with_context(|| format!("failed to remove pid file {}", path.display()))
}
}
}
fn read_pid(path: &Path) -> Result<i32> {
let raw = std::fs::read_to_string(path)
.with_context(|| format!("failed to read pid file {}", path.display()))?;
let pid = raw
.trim()
.parse::<i32>()
.with_context(|| format!("invalid pid in {}", path.display()))?;
if pid <= 0 {
anyhow::bail!("invalid non-positive pid {pid}");
}
Ok(pid)
}
fn send_hup(pid: i32) -> Result<()> {
let status = std::process::Command::new("kill")
.arg("-HUP")
.arg(pid.to_string())
.status()
.context("failed to invoke kill -HUP")?;
if !status.success() {
anyhow::bail!("kill -HUP failed for pid {pid}");
}
Ok(())
}
+24
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@@ -70,6 +70,30 @@ impl Store {
})
}
pub async fn issue_enroll_token(&self) -> Result<String> {
let token = format!("enr-{}", Uuid::new_v4());
let mut state = self.state.write().await;
state.enroll_tokens.insert(token.clone());
drop(state);
self.save().await?;
Ok(token)
}
pub async fn reload_from_disk(&self) -> Result<()> {
if !self.path.exists() {
return Ok(());
}
let raw = tokio::fs::read_to_string(&self.path)
.await
.with_context(|| format!("failed to read store {}", self.path.display()))?;
let decoded = serde_json::from_str::<PersistedState>(&raw)
.with_context(|| format!("failed to decode store {}", self.path.display()))?;
*self.state.write().await = decoded;
Ok(())
}
pub async fn verify_agent_token(&self, agent_id: &str, token: &str) -> bool {
self.state
.read()
+157
View File
@@ -0,0 +1,157 @@
use anyhow::{Context, Result};
use axum::extract::State;
use axum::extract::ws::{Message, WebSocket, WebSocketUpgrade};
use axum::response::IntoResponse;
use futures_util::{SinkExt, StreamExt};
use serde::Deserialize;
use tokio::sync::mpsc;
use tracing::{debug, info, warn};
use wakey_agent::protocol::{ErrorPayload, RequestId, ServerMessage};
use crate::runtime::{AgentReply, AppState};
#[derive(Debug, Deserialize)]
#[serde(tag = "type", rename_all = "snake_case")]
enum IncomingClientMessage {
Hello {
agent_id: String,
},
Auth {
agent_id: String,
agent_token: String,
},
Heartbeat {
agent_id: String,
},
Result {
request_id: RequestId,
result: serde_json::Value,
},
Error {
request_id: RequestId,
error: ErrorPayload,
},
}
pub async fn agent_ws(ws: WebSocketUpgrade, State(state): State<AppState>) -> impl IntoResponse {
ws.on_upgrade(move |socket| handle_agent_socket(state, socket))
}
async fn handle_agent_socket(state: AppState, socket: WebSocket) {
let (mut write, mut read) = socket.split();
let (tx, mut rx) = mpsc::unbounded_channel::<ServerMessage>();
let writer = tokio::spawn(async move {
while let Some(msg) = rx.recv().await {
let encoded = match serde_json::to_string(&msg) {
Ok(s) => s,
Err(err) => {
warn!(error = %err, "failed to encode server websocket message");
continue;
}
};
if let Err(err) = write.send(Message::Text(encoded.into())).await {
warn!(error = %err, "failed to send websocket message");
break;
}
}
});
let mut authed_agent_id: Option<String> = None;
loop {
let frame = read.next().await;
let msg = match frame {
Some(Ok(msg)) => msg,
Some(Err(err)) => {
warn!(error = %err, "agent websocket receive error");
break;
}
None => break,
};
match msg {
Message::Text(text) => {
if let Err(err) = process_agent_text(&state, &tx, &mut authed_agent_id, &text).await
{
warn!(error = %err, "closing agent websocket due to protocol/auth error");
break;
}
}
Message::Ping(_) => {}
Message::Pong(_) => {}
Message::Close(_) => break,
Message::Binary(_) => {
debug!("ignoring unexpected binary websocket frame");
}
}
}
if let Some(agent_id) = authed_agent_id {
info!(agent_id = %agent_id, "agent disconnected");
state.sessions.write().await.remove(&agent_id);
}
writer.abort();
}
async fn process_agent_text(
state: &AppState,
tx: &mpsc::UnboundedSender<ServerMessage>,
authed_agent_id: &mut Option<String>,
text: &str,
) -> Result<()> {
let message: IncomingClientMessage =
serde_json::from_str(text).context("invalid client websocket payload")?;
match message {
IncomingClientMessage::Hello { agent_id } => {
debug!(agent_id = %agent_id, "agent hello received");
}
IncomingClientMessage::Auth {
agent_id,
agent_token,
} => {
if !state
.store
.verify_agent_token(&agent_id, &agent_token)
.await
{
anyhow::bail!("agent auth rejected");
}
state
.sessions
.write()
.await
.insert(agent_id.clone(), tx.clone());
*authed_agent_id = Some(agent_id.clone());
info!(agent_id = %agent_id, "agent authenticated");
}
IncomingClientMessage::Heartbeat { agent_id } => {
if authed_agent_id.as_deref() != Some(agent_id.as_str()) {
anyhow::bail!("heartbeat for unauthenticated or mismatched agent");
}
debug!(agent_id = %agent_id, "heartbeat received");
}
IncomingClientMessage::Result { request_id, result } => {
if authed_agent_id.is_none() {
anyhow::bail!("result before auth");
}
let key = request_id.as_str().to_string();
if let Some(waiter) = state.pending.lock().await.remove(&key) {
let _ = waiter.send(AgentReply::Result(result));
}
}
IncomingClientMessage::Error { request_id, error } => {
if authed_agent_id.is_none() {
anyhow::bail!("error before auth");
}
let key = request_id.as_str().to_string();
if let Some(waiter) = state.pending.lock().await.remove(&key) {
let _ = waiter.send(AgentReply::Error(error));
}
}
}
Ok(())
}