dynamo_runtime/pipeline/network/ingress/
http_endpoint.rs1use super::*;
7use crate::SystemHealth;
8use crate::config::HealthStatus;
9use crate::logging::TraceParent;
10use anyhow::Result;
11use axum::{
12 Router,
13 body::Bytes,
14 extract::{Path, State as AxumState},
15 http::{HeaderMap, StatusCode},
16 response::IntoResponse,
17 routing::post,
18};
19use dashmap::DashMap;
20use hyper_util::rt::{TokioExecutor, TokioIo};
21use hyper_util::server::conn::auto::Builder as Http2Builder;
22use hyper_util::service::TowerToHyperService;
23use parking_lot::Mutex;
24use std::net::SocketAddr;
25use std::sync::atomic::{AtomicU64, Ordering};
26use tokio::sync::{Notify, RwLock};
27use tokio_util::sync::CancellationToken;
28use tower_http::trace::TraceLayer;
29use tracing::Instrument;
30
31const DEFAULT_RPC_ROOT_PATH: &str = "/v1/rpc";
33
34pub const VERSION: &str = env!("CARGO_PKG_VERSION");
36
37pub struct SharedHttpServer {
39 handlers: Arc<DashMap<String, Arc<EndpointHandler>>>,
40 bind_addr: SocketAddr,
41 actual_addr: RwLock<Option<SocketAddr>>,
42 cancellation_token: CancellationToken,
43}
44
45struct EndpointHandler {
47 service_handler: Arc<dyn PushWorkHandler>,
48 instance_id: u64,
49 namespace: Arc<String>,
50 component_name: Arc<String>,
51 endpoint_name: Arc<String>,
52 system_health: Arc<Mutex<SystemHealth>>,
53 inflight: Arc<AtomicU64>,
54 notify: Arc<Notify>,
55}
56
57impl SharedHttpServer {
58 pub fn new(bind_addr: SocketAddr, cancellation_token: CancellationToken) -> Arc<Self> {
59 Arc::new(Self {
60 handlers: Arc::new(DashMap::new()),
61 bind_addr,
62 actual_addr: RwLock::new(None),
63 cancellation_token,
64 })
65 }
66
67 pub fn actual_address(&self) -> Option<SocketAddr> {
69 self.actual_addr.try_read().ok().and_then(|g| *g)
70 }
71
72 #[allow(clippy::too_many_arguments)]
74 pub async fn register_endpoint(
75 &self,
76 subject: String,
77 service_handler: Arc<dyn PushWorkHandler>,
78 instance_id: u64,
79 namespace: String,
80 component_name: String,
81 endpoint_name: String,
82 system_health: Arc<Mutex<SystemHealth>>,
83 ) -> Result<()> {
84 let handler = Arc::new(EndpointHandler {
85 service_handler,
86 instance_id,
87 namespace: Arc::new(namespace),
88 component_name: Arc::new(component_name),
89 endpoint_name: Arc::new(endpoint_name.clone()),
90 system_health: system_health.clone(),
91 inflight: Arc::new(AtomicU64::new(0)),
92 notify: Arc::new(Notify::new()),
93 });
94
95 let subject_clone = subject.clone();
97 self.handlers.insert(subject, handler);
98
99 system_health.lock().set_endpoint_registered(&endpoint_name);
100
101 tracing::debug!("Registered endpoint handler for subject: {subject_clone}");
102 Ok(())
103 }
104
105 pub async fn unregister_endpoint(&self, subject: &str, endpoint_name: &str) {
107 if let Some((_, handler)) = self.handlers.remove(subject) {
108 handler
109 .system_health
110 .lock()
111 .set_endpoint_health_status(endpoint_name, HealthStatus::NotReady);
112 tracing::debug!(
113 endpoint_name = %endpoint_name,
114 subject = %subject,
115 "Unregistered HTTP endpoint handler"
116 );
117
118 let inflight_count = handler.inflight.load(Ordering::SeqCst);
119 if inflight_count > 0 {
120 tracing::info!(
121 endpoint_name = %endpoint_name,
122 inflight_count = inflight_count,
123 "Waiting for inflight HTTP requests to complete"
124 );
125 while handler.inflight.load(Ordering::SeqCst) > 0 {
126 handler.notify.notified().await;
127 }
128 tracing::info!(
129 endpoint_name = %endpoint_name,
130 "All inflight HTTP requests completed"
131 );
132 }
133 }
134 }
135
136 pub async fn bind_and_start(self: Arc<Self>) -> Result<SocketAddr> {
140 let rpc_root_path = std::env::var("DYN_HTTP_RPC_ROOT_PATH")
141 .unwrap_or_else(|_| DEFAULT_RPC_ROOT_PATH.to_string());
142 let route_pattern = format!("{}/{{*endpoint}}", rpc_root_path);
143
144 let app = Router::new()
145 .route(&route_pattern, post(handle_shared_request))
146 .layer(TraceLayer::new_for_http())
147 .with_state(self.clone());
148
149 let listener = tokio::net::TcpListener::bind(&self.bind_addr).await?;
150 let actual_addr = listener.local_addr()?;
151
152 tracing::info!(
153 requested = %self.bind_addr,
154 actual = %actual_addr,
155 rpc_root = %rpc_root_path,
156 "HTTP/2 endpoint server bound"
157 );
158
159 *self.actual_addr.write().await = Some(actual_addr);
161
162 let cancellation_token = self.cancellation_token.clone();
163
164 tokio::spawn(async move {
166 loop {
167 tokio::select! {
168 accept_result = listener.accept() => {
169 match accept_result {
170 Ok((stream, _addr)) => {
171 let app_clone = app.clone();
172 let cancel_clone = cancellation_token.clone();
173
174 tokio::spawn(async move {
175 let http2_builder = Http2Builder::new(TokioExecutor::new());
176
177 let io = TokioIo::new(stream);
178 let tower_service = app_clone.into_service();
179 let hyper_service = TowerToHyperService::new(tower_service);
180
181 tokio::select! {
182 result = http2_builder.serve_connection(io, hyper_service) => {
183 if let Err(e) = result {
184 tracing::debug!("HTTP/2 connection error: {e}");
185 }
186 }
187 _ = cancel_clone.cancelled() => {
188 tracing::trace!("Connection cancelled");
189 }
190 }
191 });
192 }
193 Err(e) => {
194 tracing::error!("Failed to accept connection: {e}");
195 }
196 }
197 }
198 _ = cancellation_token.cancelled() => {
199 tracing::info!("SharedHttpServer received cancellation signal, shutting down");
200 return;
201 }
202 }
203 }
204 });
205
206 Ok(actual_addr)
207 }
208
209 pub async fn wait_for_inflight(&self) {
211 for handler in self.handlers.iter() {
212 while handler.value().inflight.load(Ordering::SeqCst) > 0 {
213 tokio::time::sleep(tokio::time::Duration::from_millis(100)).await;
214 }
215 }
216 }
217}
218
219async fn handle_shared_request(
221 AxumState(server): AxumState<Arc<SharedHttpServer>>,
222 Path(endpoint_path): Path<String>,
223 headers: HeaderMap,
224 body: Bytes,
225) -> impl IntoResponse {
226 let handler = match server.handlers.get(&endpoint_path) {
228 Some(h) => h.clone(),
229 None => {
230 tracing::warn!("No handler found for endpoint: {endpoint_path}");
231 return (StatusCode::NOT_FOUND, "Endpoint not found");
232 }
233 };
234
235 handler.inflight.fetch_add(1, Ordering::SeqCst);
237
238 let traceparent = TraceParent::from_axum_headers(&headers);
240
241 let service_handler = handler.service_handler.clone();
243 let inflight = handler.inflight.clone();
244 let notify = handler.notify.clone();
245 let namespace = handler.namespace.clone();
246 let component_name = handler.component_name.clone();
247 let endpoint_name = handler.endpoint_name.clone();
248 let instance_id = handler.instance_id;
249
250 tokio::spawn(async move {
251 tracing::trace!(instance_id, "handling new HTTP request");
252 let result = service_handler
253 .handle_payload(body, traceparent.request_id.clone())
254 .instrument(tracing::info_span!(
255 "handle_payload",
256 component = component_name.as_ref(),
257 endpoint = endpoint_name.as_ref(),
258 namespace = namespace.as_ref(),
259 instance_id = instance_id,
260 trace_id = traceparent.trace_id,
261 parent_id = traceparent.parent_id,
262 x_request_id = traceparent.x_request_id,
263 request_id = traceparent.request_id,
264 tracestate = traceparent.tracestate
265 ))
266 .await;
267 match result {
268 Ok(_) => {
269 tracing::trace!(instance_id, "request handled successfully");
270 }
271 Err(e) => {
272 tracing::warn!("Failed to handle request: {}", e.to_string());
273 }
274 }
275
276 inflight.fetch_sub(1, Ordering::SeqCst);
278 notify.notify_one();
279 });
280
281 (StatusCode::ACCEPTED, "")
283}
284
285impl TraceParent {
287 pub fn from_axum_headers(headers: &HeaderMap) -> Self {
288 let mut traceparent = TraceParent::default();
289
290 if let Some(value) = headers.get("traceparent")
291 && let Ok(s) = value.to_str()
292 {
293 traceparent.trace_id = Some(s.to_string());
294 }
295
296 if let Some(value) = headers.get("tracestate")
297 && let Ok(s) = value.to_str()
298 {
299 traceparent.tracestate = Some(s.to_string());
300 }
301
302 if let Some(value) = headers.get("x-request-id")
303 && let Ok(s) = value.to_str()
304 {
305 traceparent.x_request_id = Some(s.to_string());
306 }
307
308 if let Some(s) = headers
310 .get("request-id")
311 .and_then(|v| v.to_str().ok())
312 .filter(|s| uuid::Uuid::parse_str(s).is_ok())
313 {
314 traceparent.request_id = Some(s.to_string());
315 } else if let Some(s) = headers
316 .get("x-dynamo-request-id")
317 .and_then(|v| v.to_str().ok())
318 .filter(|s| uuid::Uuid::parse_str(s).is_ok())
319 {
320 traceparent.request_id = Some(s.to_string());
321 }
322
323 traceparent
324 }
325}
326
327#[async_trait::async_trait]
329impl super::unified_server::RequestPlaneServer for SharedHttpServer {
330 async fn register_endpoint(
331 &self,
332 endpoint_name: String,
333 service_handler: Arc<dyn PushWorkHandler>,
334 instance_id: u64,
335 namespace: String,
336 component_name: String,
337 system_health: Arc<Mutex<SystemHealth>>,
338 ) -> Result<()> {
339 self.register_endpoint(
341 endpoint_name.clone(),
342 service_handler,
343 instance_id,
344 namespace,
345 component_name,
346 endpoint_name,
347 system_health,
348 )
349 .await
350 }
351
352 async fn unregister_endpoint(&self, endpoint_name: &str) -> Result<()> {
353 self.unregister_endpoint(endpoint_name, endpoint_name).await;
354 Ok(())
355 }
356
357 fn address(&self) -> String {
358 let addr = self.actual_address().unwrap_or(self.bind_addr);
359 format!("http://{}:{}", addr.ip(), addr.port())
360 }
361
362 fn transport_name(&self) -> &'static str {
363 "http"
364 }
365
366 fn is_healthy(&self) -> bool {
367 true
370 }
371}
372
373#[cfg(test)]
374mod tests {
375 use super::*;
376
377 #[test]
378 fn test_traceparent_from_axum_headers() {
379 let mut headers = HeaderMap::new();
380 headers.insert("traceparent", "test-trace-id".parse().unwrap());
381 headers.insert("tracestate", "test-state".parse().unwrap());
382 headers.insert("x-request-id", "req-123".parse().unwrap());
383 headers.insert(
384 "x-dynamo-request-id",
385 "550e8400-e29b-41d4-a716-446655440000".parse().unwrap(),
386 );
387
388 let traceparent = TraceParent::from_axum_headers(&headers);
389 assert_eq!(traceparent.trace_id, Some("test-trace-id".to_string()));
390 assert_eq!(traceparent.tracestate, Some("test-state".to_string()));
391 assert_eq!(traceparent.x_request_id, Some("req-123".to_string()));
392 assert_eq!(
393 traceparent.request_id,
394 Some("550e8400-e29b-41d4-a716-446655440000".to_string())
395 );
396 }
397
398 #[test]
399 fn test_shared_http_server_creation() {
400 use std::net::{IpAddr, Ipv4Addr};
401 let bind_addr = SocketAddr::new(IpAddr::V4(Ipv4Addr::new(127, 0, 0, 1)), 0);
402 let token = CancellationToken::new();
403
404 let server = SharedHttpServer::new(bind_addr, token);
405 assert!(server.handlers.is_empty());
406 }
407
408 #[tokio::test]
409 async fn test_bind_and_start_assigns_os_port() {
410 use std::net::{IpAddr, Ipv4Addr};
411 let bind_addr = SocketAddr::new(IpAddr::V4(Ipv4Addr::new(127, 0, 0, 1)), 0);
412 let token = CancellationToken::new();
413
414 let server = SharedHttpServer::new(bind_addr, token.clone());
415 let actual_addr = server.clone().bind_and_start().await.unwrap();
416
417 assert_ne!(actual_addr.port(), 0);
419
420 assert_eq!(server.actual_address(), Some(actual_addr));
422
423 let addr_str =
425 <SharedHttpServer as super::unified_server::RequestPlaneServer>::address(&*server);
426 assert!(addr_str.contains(&actual_addr.port().to_string()));
427
428 token.cancel();
429 }
430
431 #[tokio::test]
432 async fn test_two_servers_get_different_ports() {
433 use std::net::{IpAddr, Ipv4Addr};
434 let addr = SocketAddr::new(IpAddr::V4(Ipv4Addr::new(127, 0, 0, 1)), 0);
435
436 let token1 = CancellationToken::new();
437 let token2 = CancellationToken::new();
438
439 let server1 = SharedHttpServer::new(addr, token1.clone());
440 let server2 = SharedHttpServer::new(addr, token2.clone());
441
442 let actual1 = server1.clone().bind_and_start().await.unwrap();
443 let actual2 = server2.clone().bind_and_start().await.unwrap();
444
445 assert_ne!(actual1.port(), actual2.port());
447
448 token1.cancel();
449 token2.cancel();
450 }
451
452 #[tokio::test]
453 async fn test_bind_and_start_with_explicit_port() {
454 use std::net::{IpAddr, Ipv4Addr};
455
456 let listener = tokio::net::TcpListener::bind("127.0.0.1:0").await.unwrap();
458 let free_port = listener.local_addr().unwrap().port();
459 drop(listener); let bind_addr = SocketAddr::new(IpAddr::V4(Ipv4Addr::new(127, 0, 0, 1)), free_port);
462 let token = CancellationToken::new();
463
464 let server = SharedHttpServer::new(bind_addr, token.clone());
465 let actual_addr = server.clone().bind_and_start().await.unwrap();
466
467 assert_eq!(actual_addr.port(), free_port);
469
470 token.cancel();
471 }
472}