1use std::{
2 future::Future,
3 marker::PhantomData,
4 sync::{Arc, Mutex},
5};
6
7use futures::{SinkExt, StreamExt};
8use rmcp::{
9 service::{RoleServer, RxJsonRpcMessage, ServiceRole, TxJsonRpcMessage},
10 transport::Transport,
11};
12use serde::{Serialize, de::DeserializeOwned};
13use thiserror::Error;
14use tokio::{
15 io::{AsyncRead, AsyncWrite},
16 sync::Mutex as AsyncMutex,
17};
18use tokio_util::{
19 bytes::{Buf, BufMut, BytesMut},
20 codec::{Decoder, Encoder, FramedRead, FramedWrite},
21};
22
23#[derive(Clone, Copy, Debug, Eq, PartialEq)]
24enum WireProtocol {
25 JsonLine,
26 ContentLength,
27}
28
29#[derive(Debug, Clone)]
30struct SharedProtocol(Arc<Mutex<Option<WireProtocol>>>);
31
32impl SharedProtocol {
33 fn new() -> Self {
34 Self(Arc::new(Mutex::new(None)))
35 }
36
37 fn get(&self) -> Option<WireProtocol> {
38 *self
39 .0
40 .lock()
41 .unwrap_or_else(std::sync::PoisonError::into_inner)
42 }
43
44 fn set_if_unset(&self, protocol: WireProtocol) {
45 let mut guard = self
46 .0
47 .lock()
48 .unwrap_or_else(std::sync::PoisonError::into_inner);
49 if guard.is_none() {
50 *guard = Some(protocol);
51 }
52 }
53}
54
55pub type TransportWriter<Role, W> =
56 FramedWrite<W, HybridJsonRpcMessageCodec<TxJsonRpcMessage<Role>>>;
57
58pub struct HybridStdioTransport<Role: ServiceRole, R: AsyncRead, W: AsyncWrite> {
59 read: FramedRead<R, HybridJsonRpcMessageCodec<RxJsonRpcMessage<Role>>>,
60 write: Arc<AsyncMutex<Option<TransportWriter<Role, W>>>>,
61}
62
63impl<Role: ServiceRole, R, W> HybridStdioTransport<Role, R, W>
64where
65 R: Send + AsyncRead + Unpin,
66 W: Send + AsyncWrite + Unpin + 'static,
67{
68 pub fn new(read: R, write: W) -> Self {
69 let protocol = SharedProtocol::new();
70 let read = FramedRead::new(
71 read,
72 HybridJsonRpcMessageCodec::<RxJsonRpcMessage<Role>>::new(protocol.clone()),
73 );
74 let write = Arc::new(AsyncMutex::new(Some(FramedWrite::new(
75 write,
76 HybridJsonRpcMessageCodec::<TxJsonRpcMessage<Role>>::new(protocol),
77 ))));
78 Self { read, write }
79 }
80}
81
82impl<R, W> HybridStdioTransport<RoleServer, R, W>
83where
84 R: Send + AsyncRead + Unpin,
85 W: Send + AsyncWrite + Unpin + 'static,
86{
87 pub fn new_server(read: R, write: W) -> Self {
88 Self::new(read, write)
89 }
90}
91
92impl<Role: ServiceRole, R, W> Transport<Role> for HybridStdioTransport<Role, R, W>
93where
94 R: Send + AsyncRead + Unpin,
95 W: Send + AsyncWrite + Unpin + 'static,
96{
97 type Error = std::io::Error;
98
99 fn send(
100 &mut self,
101 item: TxJsonRpcMessage<Role>,
102 ) -> impl Future<Output = Result<(), Self::Error>> + Send + 'static {
103 let lock = self.write.clone();
104 async move {
105 let mut write = lock.lock().await;
106 if let Some(ref mut write) = *write {
107 write.send(item).await.map_err(Into::into)
108 } else {
109 Err(std::io::Error::new(
110 std::io::ErrorKind::NotConnected,
111 "Transport is closed",
112 ))
113 }
114 }
115 }
116
117 fn receive(&mut self) -> impl Future<Output = Option<RxJsonRpcMessage<Role>>> + Send {
118 let next = self.read.next();
119 async {
120 next.await.and_then(|result| {
121 result
122 .inspect_err(|error| {
123 tracing::error!("Error reading from stream: {}", error);
124 })
125 .ok()
126 })
127 }
128 }
129
130 async fn close(&mut self) -> Result<(), Self::Error> {
131 let mut write = self.write.lock().await;
132 drop(write.take());
133 Ok(())
134 }
135}
136
137#[derive(Debug, Clone)]
138pub struct HybridJsonRpcMessageCodec<T> {
139 _marker: PhantomData<fn() -> T>,
140 next_index: usize,
141 max_length: usize,
142 is_discarding: bool,
143 protocol: SharedProtocol,
144}
145
146impl<T> HybridJsonRpcMessageCodec<T> {
147 fn new(protocol: SharedProtocol) -> Self {
148 Self {
149 _marker: PhantomData,
150 next_index: 0,
151 max_length: 32 * 1024 * 1024, is_discarding: false,
153 protocol,
154 }
155 }
156}
157
158fn without_carriage_return(s: &[u8]) -> &[u8] {
159 if let Some(&b'\r') = s.last() {
160 &s[..s.len() - 1]
161 } else {
162 s
163 }
164}
165
166fn is_standard_method(method: &str) -> bool {
167 matches!(
168 method,
169 "initialize"
170 | "ping"
171 | "prompts/get"
172 | "prompts/list"
173 | "resources/list"
174 | "resources/read"
175 | "resources/subscribe"
176 | "resources/unsubscribe"
177 | "resources/templates/list"
178 | "tools/call"
179 | "tools/list"
180 | "completion/complete"
181 | "logging/setLevel"
182 | "roots/list"
183 | "sampling/createMessage"
184 ) || is_standard_notification(method)
185}
186
187fn is_standard_notification(method: &str) -> bool {
188 matches!(
189 method,
190 "notifications/cancelled"
191 | "notifications/initialized"
192 | "notifications/message"
193 | "notifications/progress"
194 | "notifications/prompts/list_changed"
195 | "notifications/resources/list_changed"
196 | "notifications/resources/updated"
197 | "notifications/roots/list_changed"
198 | "notifications/tools/list_changed"
199 )
200}
201
202fn should_ignore_notification(json_value: &serde_json::Value, method: &str) -> bool {
203 let is_notification = json_value.get("id").is_none();
204 if is_notification && !is_standard_method(method) {
205 tracing::trace!(
206 "Ignoring non-MCP notification '{}' for compatibility",
207 method
208 );
209 return true;
210 }
211
212 matches!(
213 (
214 method.starts_with("notifications/"),
215 is_standard_notification(method)
216 ),
217 (true, false)
218 )
219}
220
221fn try_parse_with_compatibility<T: DeserializeOwned>(
222 payload: &[u8],
223 context: &str,
224) -> Result<Option<T>, HybridCodecError> {
225 if let Ok(line_str) = std::str::from_utf8(payload) {
226 match serde_json::from_slice(payload) {
227 Ok(item) => Ok(Some(item)),
228 Err(error) => {
229 if let Ok(json_value) = serde_json::from_str::<serde_json::Value>(line_str)
230 && let Some(method) =
231 json_value.get("method").and_then(serde_json::Value::as_str)
232 && should_ignore_notification(&json_value, method)
233 {
234 return Ok(None);
235 }
236
237 tracing::debug!(
238 "Failed to parse message {}: {} | Error: {}",
239 context,
240 line_str,
241 error
242 );
243 Err(HybridCodecError::Serde(error))
244 }
245 }
246 } else {
247 serde_json::from_slice(payload)
248 .map(Some)
249 .map_err(HybridCodecError::Serde)
250 }
251}
252
253#[derive(Debug, Error)]
254pub enum HybridCodecError {
255 #[error("max line length exceeded")]
256 MaxLineLengthExceeded,
257 #[error("missing Content-Length header")]
258 MissingContentLength,
259 #[error("invalid Content-Length value: {0}")]
260 InvalidContentLength(String),
261 #[error("invalid header frame: {0}")]
262 InvalidHeaderFrame(String),
263 #[error("serde error {0}")]
264 Serde(#[from] serde_json::Error),
265 #[error("io error {0}")]
266 Io(#[from] std::io::Error),
267}
268
269impl From<HybridCodecError> for std::io::Error {
270 fn from(value: HybridCodecError) -> Self {
271 match value {
272 HybridCodecError::MaxLineLengthExceeded
273 | HybridCodecError::MissingContentLength
274 | HybridCodecError::InvalidContentLength(_)
275 | HybridCodecError::InvalidHeaderFrame(_) => {
276 std::io::Error::new(std::io::ErrorKind::InvalidData, value)
277 }
278 HybridCodecError::Serde(error) => error.into(),
279 HybridCodecError::Io(error) => error,
280 }
281 }
282}
283
284fn looks_like_content_length_frame(buf: &BytesMut) -> bool {
285 let prefix = &buf[..buf.len().min(32)];
286 prefix
287 .windows(b"content-length".len())
288 .next()
289 .is_some_and(|candidate| candidate.eq_ignore_ascii_case(b"content-length"))
290}
291
292fn find_header_terminator(buf: &BytesMut) -> Option<(usize, usize)> {
293 if let Some(index) = buf.windows(4).position(|window| window == b"\r\n\r\n") {
294 return Some((index, 4));
295 }
296 buf.windows(2)
297 .position(|window| window == b"\n\n")
298 .map(|index| (index, 2))
299}
300
301fn parse_content_length(header: &str) -> Result<usize, HybridCodecError> {
302 for raw_line in header.lines() {
303 let line = raw_line.trim_end_matches('\r');
304 let Some((name, value)) = line.split_once(':') else {
305 continue;
306 };
307 if name.trim().eq_ignore_ascii_case("content-length") {
308 return value
309 .trim()
310 .parse::<usize>()
311 .map_err(|_| HybridCodecError::InvalidContentLength(value.trim().to_string()));
312 }
313 }
314
315 Err(HybridCodecError::MissingContentLength)
316}
317
318impl<T: DeserializeOwned> HybridJsonRpcMessageCodec<T> {
319 fn decode_content_length(&mut self, buf: &mut BytesMut) -> Result<Option<T>, HybridCodecError> {
320 loop {
323 let Some((header_end, delimiter_len)) = find_header_terminator(buf) else {
324 return Ok(None);
325 };
326
327 let header = std::str::from_utf8(&buf[..header_end])
328 .map_err(|error| HybridCodecError::InvalidHeaderFrame(error.to_string()))?;
329 let content_length = parse_content_length(header)?;
330 if content_length > self.max_length {
331 return Err(HybridCodecError::MaxLineLengthExceeded);
332 }
333 let body_start = header_end + delimiter_len;
334 let frame_len = body_start
335 .checked_add(content_length)
336 .ok_or(HybridCodecError::MaxLineLengthExceeded)?;
337 if buf.len() < frame_len {
338 return Ok(None);
339 }
340
341 let frame = buf.split_to(frame_len);
342 let payload = &frame[body_start..];
343 self.protocol.set_if_unset(WireProtocol::ContentLength);
344
345 match try_parse_with_compatibility(payload, "decode_content_length") {
346 Ok(Some(item)) => return Ok(Some(item)),
347 Ok(None) => {}
349 Err(err) => {
353 tracing::warn!("skipping malformed Content-Length frame: {err}");
354 }
355 }
356 }
357 }
358
359 fn decode_json_line(&mut self, buf: &mut BytesMut) -> Result<Option<T>, HybridCodecError> {
360 loop {
361 let read_to = std::cmp::min(self.max_length.saturating_add(1), buf.len());
362 let newline_offset = buf[self.next_index..read_to]
363 .iter()
364 .position(|byte| *byte == b'\n');
365
366 match (self.is_discarding, newline_offset) {
367 (true, Some(offset)) => {
368 buf.advance(offset + self.next_index + 1);
369 self.is_discarding = false;
370 self.next_index = 0;
371 }
372 (true, None) => {
373 buf.advance(read_to);
374 self.next_index = 0;
375 if buf.is_empty() {
376 return Ok(None);
377 }
378 }
379 (false, Some(offset)) => {
380 let newline_index = offset + self.next_index;
381 self.next_index = 0;
382 let line = buf.split_to(newline_index + 1);
383 let line = &line[..line.len() - 1];
384 let payload = without_carriage_return(line);
385 self.protocol.set_if_unset(WireProtocol::JsonLine);
386
387 match try_parse_with_compatibility(payload, "decode_json_line") {
388 Ok(Some(item)) => return Ok(Some(item)),
389 Ok(None) => {}
391 Err(err) => {
400 tracing::warn!("skipping malformed JSON-RPC line: {err}");
401 }
402 }
403 }
404 (false, None) if buf.len() > self.max_length => {
405 self.is_discarding = true;
406 return Err(HybridCodecError::MaxLineLengthExceeded);
407 }
408 (false, None) => {
409 self.next_index = read_to;
410 return Ok(None);
411 }
412 }
413 }
414 }
415}
416
417impl<T: DeserializeOwned> Decoder for HybridJsonRpcMessageCodec<T> {
418 type Item = T;
419 type Error = HybridCodecError;
420
421 fn decode(&mut self, buf: &mut BytesMut) -> Result<Option<T>, HybridCodecError> {
422 match self.protocol.get() {
423 Some(WireProtocol::ContentLength) => self.decode_content_length(buf),
424 Some(WireProtocol::JsonLine) => self.decode_json_line(buf),
425 None => {
426 if looks_like_content_length_frame(buf) {
427 self.decode_content_length(buf)
428 } else {
429 self.decode_json_line(buf)
430 }
431 }
432 }
433 }
434
435 fn decode_eof(&mut self, buf: &mut BytesMut) -> Result<Option<T>, HybridCodecError> {
436 match self.protocol.get() {
437 Some(WireProtocol::ContentLength) if !buf.is_empty() => self.decode_content_length(buf),
438 _ => Ok(if let Some(frame) = self.decode(buf)? {
439 Some(frame)
440 } else {
441 self.next_index = 0;
442 if buf.is_empty() || buf == &b"\r"[..] {
443 None
444 } else {
445 let line = buf.split_to(buf.len());
446 let payload = without_carriage_return(&line);
447 match try_parse_with_compatibility(payload, "decode_eof") {
450 Ok(item) => item,
451 Err(err) => {
452 tracing::warn!("discarding malformed trailing frame at EOF: {err}");
453 None
454 }
455 }
456 }
457 }),
458 }
459 }
460}
461
462impl<T: Serialize> Encoder<T> for HybridJsonRpcMessageCodec<T> {
463 type Error = HybridCodecError;
464
465 fn encode(&mut self, item: T, buf: &mut BytesMut) -> Result<(), HybridCodecError> {
466 let payload = serde_json::to_vec(&item)?;
467
468 match self.protocol.get().unwrap_or(WireProtocol::ContentLength) {
469 WireProtocol::ContentLength => {
470 buf.extend_from_slice(
471 format!("Content-Length: {}\r\n\r\n", payload.len()).as_bytes(),
472 );
473 buf.extend_from_slice(&payload);
474 }
475 WireProtocol::JsonLine => {
476 buf.extend_from_slice(&payload);
477 buf.put_u8(b'\n');
478 }
479 }
480
481 Ok(())
482 }
483}
484
485#[cfg(test)]
486mod tests {
487 use super::*;
488
489 use tokio_util::bytes::BytesMut;
490
491 fn sample_message() -> serde_json::Value {
492 serde_json::json!({
493 "jsonrpc": "2.0",
494 "id": 1,
495 "method": "initialize",
496 "params": {
497 "protocolVersion": "2024-11-05",
498 "capabilities": {},
499 "clientInfo": {
500 "name": "probe",
501 "version": "0.0.0"
502 }
503 }
504 })
505 }
506
507 #[test]
508 fn decodes_json_line_and_marks_protocol() {
509 let protocol = SharedProtocol::new();
510 let mut codec = HybridJsonRpcMessageCodec::<serde_json::Value>::new(protocol.clone());
511 let payload = serde_json::to_vec(&sample_message()).unwrap();
512 let mut buf = BytesMut::from(&payload[..]);
513 buf.put_u8(b'\n');
514
515 let item = codec.decode(&mut buf).unwrap();
516 assert!(item.is_some());
517 assert_eq!(protocol.get(), Some(WireProtocol::JsonLine));
518 }
519
520 #[test]
521 fn decodes_content_length_and_marks_protocol() {
522 let protocol = SharedProtocol::new();
523 let mut codec = HybridJsonRpcMessageCodec::<serde_json::Value>::new(protocol.clone());
524 let payload = serde_json::to_vec(&sample_message()).unwrap();
525 let mut frame = BytesMut::new();
526 frame.extend_from_slice(format!("Content-Length: {}\r\n\r\n", payload.len()).as_bytes());
527 frame.extend_from_slice(&payload);
528
529 let item = codec.decode(&mut frame).unwrap();
530 assert!(item.is_some());
531 assert_eq!(protocol.get(), Some(WireProtocol::ContentLength));
532 }
533
534 #[test]
535 fn encodes_using_content_length_when_protocol_is_detected() {
536 let protocol = SharedProtocol::new();
537 protocol.set_if_unset(WireProtocol::ContentLength);
538 let mut codec = HybridJsonRpcMessageCodec::<serde_json::Value>::new(protocol);
539 let mut buf = BytesMut::new();
540 codec
541 .encode(
542 serde_json::json!({"jsonrpc":"2.0","id":1,"result":{"ok":true}}),
543 &mut buf,
544 )
545 .unwrap();
546
547 assert!(
548 std::str::from_utf8(&buf)
549 .unwrap()
550 .starts_with("Content-Length: ")
551 );
552 }
553
554 #[test]
555 fn decode_skips_malformed_json_line_and_recovers() {
556 let protocol = SharedProtocol::new();
560 let mut codec = HybridJsonRpcMessageCodec::<serde_json::Value>::new(protocol);
561 let good = serde_json::to_vec(&sample_message()).unwrap();
562 let mut buf = BytesMut::new();
563 buf.extend_from_slice(b"{ this is : not valid json }\n");
564 buf.extend_from_slice(&good);
565 buf.put_u8(b'\n');
566
567 let item = codec
568 .decode(&mut buf)
569 .expect("a malformed line must not be a hard transport error");
570 assert!(item.is_some(), "valid frame after a bad line must decode");
571 }
572
573 #[test]
574 fn decode_malformed_json_line_alone_is_not_a_transport_error() {
575 let protocol = SharedProtocol::new();
577 let mut codec = HybridJsonRpcMessageCodec::<serde_json::Value>::new(protocol);
578 let mut buf = BytesMut::from(&b"{ not valid json }\n"[..]);
579
580 let item = codec
581 .decode(&mut buf)
582 .expect("a malformed line must not be a hard transport error");
583 assert!(item.is_none());
584 }
585
586 #[test]
587 fn decode_skips_malformed_content_length_frame_and_recovers() {
588 let protocol = SharedProtocol::new();
591 protocol.set_if_unset(WireProtocol::ContentLength);
592 let mut codec = HybridJsonRpcMessageCodec::<serde_json::Value>::new(protocol);
593
594 let bad_body = b"{ not json }";
595 let good_body = serde_json::to_vec(&sample_message()).unwrap();
596 let mut buf = BytesMut::new();
597 buf.extend_from_slice(format!("Content-Length: {}\r\n\r\n", bad_body.len()).as_bytes());
598 buf.extend_from_slice(bad_body);
599 buf.extend_from_slice(format!("Content-Length: {}\r\n\r\n", good_body.len()).as_bytes());
600 buf.extend_from_slice(&good_body);
601
602 let item = codec
603 .decode(&mut buf)
604 .expect("a malformed CL frame must not be a hard transport error");
605 assert!(item.is_some(), "valid CL frame after a bad one must decode");
606 }
607}