Updated client.rs with better prod

This commit is contained in:
2025-09-14 15:48:29 +02:00
parent a4ce0c0589
commit 46b7a60dd4
+264 -113
View File
@@ -1,7 +1,8 @@
use std::{ use std::{
hash::{Hash, Hasher}, hash::{Hash, Hasher},
io::{Read, Write}, io::{self, Read, Write},
net::TcpStream, net::TcpStream,
time::Duration,
}; };
use anyhow::anyhow; use anyhow::anyhow;
@@ -13,54 +14,303 @@ pub mod handshake {
use base64::Engine; use base64::Engine;
use base64::engine::general_purpose::STANDARD as Base64; use base64::engine::general_purpose::STANDARD as Base64;
use sha1::{Digest, Sha1}; use sha1::{Digest, Sha1};
use std::io::{Read, Write}; use std::collections::HashMap;
use std::io::{BufRead, BufReader, Write};
use std::net::TcpStream; use std::net::TcpStream;
const WS_GUID: &str = "258EAFA5-E914-47DA-95CA-C5AB0DC85B11"; const WS_GUID: &str = "258EAFA5-E914-47DA-95CA-C5AB0DC85B11";
pub fn handle_websocket_handshake(stream: &mut TcpStream) -> std::io::Result<()> { pub fn handle_websocket_handshake(stream: &mut TcpStream) -> std::io::Result<()> {
let mut buffer = [0; 1024]; let mut reader = BufReader::new(stream.try_clone()?);
let size = stream.read(&mut buffer)?; let mut request_line = String::new();
let request = String::from_utf8_lossy(&buffer[..size]); reader.read_line(&mut request_line)?;
let key_line = request if !request_line.starts_with("GET") {
.lines() return Err(std::io::Error::new(
.find(|line| line.to_lowercase().starts_with("sec-websocket-key")) std::io::ErrorKind::InvalidData,
.ok_or_else(|| { "Invalid HTTP method",
));
}
let mut headers = HashMap::new();
let mut line = String::new();
loop {
line.clear();
let bytes = reader.read_line(&mut line)?;
if bytes == 0 || line == "\r\n" {
break;
}
if let Some((k, v)) = line.split_once(':') {
headers.insert(k.trim().to_lowercase(), v.trim().to_string());
}
}
let key = headers.get("sec-websocket-key").ok_or_else(|| {
std::io::Error::new(std::io::ErrorKind::InvalidData, "Missing Sec-WebSocket-Key") std::io::Error::new(std::io::ErrorKind::InvalidData, "Missing Sec-WebSocket-Key")
})?; })?;
let key = key_line.splitn(2, ':').nth(1).unwrap().trim(); if headers.get("upgrade").map(|v| v.to_lowercase()) != Some("websocket".to_string()) {
return Err(std::io::Error::new(
std::io::ErrorKind::InvalidData,
"Missing or invalid Upgrade header",
));
}
if !headers
.get("connection")
.map(|v| v.to_lowercase().contains("upgrade"))
.unwrap_or(false)
{
return Err(std::io::Error::new(
std::io::ErrorKind::InvalidData,
"Missing or invalid Connection header",
));
}
// Optional: validate Sec-WebSocket-Version == 13 (most common)
if let Some(ver) = headers.get("sec-websocket-version") {
if ver.trim() != "13" {
return Err(std::io::Error::new(
std::io::ErrorKind::InvalidData,
"Unsupported Sec-WebSocket-Version",
));
}
}
// Compute accept key
let mut hasher = Sha1::new(); let mut hasher = Sha1::new();
hasher.update(key.as_bytes()); hasher.update(key.as_bytes());
hasher.update(WS_GUID.as_bytes()); hasher.update(WS_GUID.as_bytes());
let hash = hasher.finalize(); let hash = hasher.finalize();
let accept_key = Base64.encode(hash); let accept_key = Base64.encode(hash);
// Note: include Sec-WebSocket-Protocol handling if you support subprotocols
let response = format!( let response = format!(
"HTTP/1.1 101 Switching Protocols\r\n\ "HTTP/1.1 101 Switching Protocols\r\n\
Upgrade: websocket\r\n\ Upgrade: websocket\r\n\
Connection: Upgrade\r\n\ Connection: Upgrade\r\n\
Sec-WebSocket-Accept: {}\r\n\r\n", Sec-WebSocket-Accept: {}\r\n\
Sec-WebSocket-Version: 13\r\n\r\n",
accept_key accept_key
); );
stream.write_all(response.as_bytes())?; stream.write_all(response.as_bytes())?;
stream.flush()?; stream.flush()?;
Ok(()) Ok(())
} }
} }
pub struct Client(TcpStream); pub struct Client(pub TcpStream);
impl Client { impl Client {
/// Create a client with no timeouts
pub fn new(mut stream: TcpStream) -> crate::Result<Self> { pub fn new(mut stream: TcpStream) -> crate::Result<Self> {
handshake::handle_websocket_handshake(&mut stream)?; handshake::handle_websocket_handshake(&mut stream)?;
Ok(Client(stream)) Ok(Client(stream))
} }
/// Create a client and set read/write timeouts (useful in prod)
pub fn with_timeouts(
mut stream: TcpStream,
read_timeout: Option<Duration>,
write_timeout: Option<Duration>,
) -> crate::Result<Self> {
if let Some(t) = read_timeout {
stream.set_read_timeout(Some(t))?;
}
if let Some(t) = write_timeout {
stream.set_write_timeout(Some(t))?;
}
handshake::handle_websocket_handshake(&mut stream)?;
Ok(Client(stream))
}
/// Send a close frame and flush. `code` is a WebSocket close code (e.g., 1000 normal).
pub fn send_close(&self, code: u16, reason: &str) -> crate::Result<()> {
let mut stream = self.0.try_clone()?;
// control frames must be <= 125 bytes
let mut payload = Vec::new();
payload.extend_from_slice(&code.to_be_bytes());
payload.extend_from_slice(reason.as_bytes());
if payload.len() > 125 {
return Err(anyhow!("close reason too long").into());
}
let mut frame = Vec::with_capacity(2 + payload.len());
frame.push(0x88); // FIN=1, opcode=0x8 (Close)
frame.push(payload.len() as u8); // server->client MUST NOT mask
frame.extend_from_slice(&payload);
stream.write_all(&frame)?;
stream.flush()?;
Ok(())
}
/// Send a pong with given payload (control frames must be <=125)
fn send_pong(&self, payload: &[u8]) -> crate::Result<()> {
let mut stream = self.0.try_clone()?;
if payload.len() > 125 {
return Err(anyhow!("pong payload too long").into());
}
let mut frame = Vec::with_capacity(2 + payload.len());
frame.push(0x8A); // FIN=1, opcode=0xA (Pong)
frame.push(payload.len() as u8);
frame.extend_from_slice(payload);
stream.write_all(&frame)?;
stream.flush()?;
Ok(())
}
/// Send a text/binary frame (server->client must NOT mask)
pub fn send<T: Serialize>(&self, m: T) -> crate::Result<()> {
let mut stream = self.0.try_clone()?;
let payload = serde_json::to_string(&m)?;
let payload_bytes = payload.as_bytes();
let len = payload_bytes.len();
let mut header = Vec::new();
header.push(0x81); // FIN=1, opcode=0x1 (text)
if len < 126 {
header.push(len as u8);
} else if len <= 65535 {
header.push(126);
header.extend_from_slice(&(len as u16).to_be_bytes());
} else {
header.push(127);
header.extend_from_slice(&(len as u64).to_be_bytes());
}
stream.write_all(&header)?;
stream.write_all(payload_bytes)?;
stream.flush()?;
Ok(())
}
/// Read a full WebSocket message, handling fragmentation and control frames.
///
/// Returns:
/// - Ok(Some(WsMessage)) on an application message (text/binary)
/// - Ok(None) if the connection should be closed (close received / read EOF)
/// - Err on protocol or IO errors.
pub fn read(&self) -> crate::Result<Option<WsMessage<ClientMessage>>> {
let mut stream = self.0.try_clone()?;
let mut message_payload = Vec::new();
loop {
// read the 2-byte header
let mut header = [0u8; 2];
if let Err(e) = stream.read_exact(&mut header) {
if e.kind() == io::ErrorKind::UnexpectedEof || e.kind() == io::ErrorKind::BrokenPipe
{
return Ok(None); // treat EOF as closed
}
return Err(e.into());
}
let fin = header[0] & 0x80 != 0;
let opcode = header[0] & 0x0F;
let masked = header[1] & 0x80 != 0;
let mut payload_len = (header[1] & 0x7F) as u64;
// Extended payload lengths
if payload_len == 126 {
let mut ext_len = [0u8; 2];
stream.read_exact(&mut ext_len)?;
payload_len = u16::from_be_bytes(ext_len) as u64;
} else if payload_len == 127 {
let mut ext_len = [0u8; 8];
stream.read_exact(&mut ext_len)?;
payload_len = u64::from_be_bytes(ext_len);
}
// Mask key (client→server MUST be masked)
let mut mask = [0u8; 4];
if masked {
stream.read_exact(&mut mask)?;
} else {
let _ = self.send_close(1002, "Client frames must be masked");
return Ok(None);
}
// Control frame checks
if matches!(opcode, 0x8 | 0x9 | 0xA) {
if payload_len > 125 {
let _ = self.send_close(1002, "Control frame too large");
return Ok(None);
}
if !fin {
let _ = self.send_close(1002, "Control frames must not be fragmented");
return Ok(None);
}
}
// Read payload + unmask
let mut payload = vec![0u8; payload_len as usize];
if payload_len > 0 {
stream.read_exact(&mut payload)?;
for i in 0..payload.len() {
payload[i] ^= mask[i % 4];
}
}
match opcode {
0x0 | 0x1 | 0x2 => {
// Continuation / Text / Binary
message_payload.extend(payload);
if fin {
break; // got full message
} else {
continue; // wait for more fragments
}
}
0x8 => {
// Close
let (code, reason) = if payload.len() >= 2 {
let code = u16::from_be_bytes([payload[0], payload[1]]);
let reason = if payload.len() > 2 {
String::from_utf8_lossy(&payload[2..]).into_owned()
} else {
String::new()
};
(code, reason)
} else {
(1000, String::new())
};
let _ = self.send_close(code, &reason);
return Ok(None);
}
0x9 => {
// Ping → respond with Pong
let _ = self.send_pong(&payload);
continue;
}
0xA => {
// Pong → ignore
continue;
}
_ => {
let _ = self.send_close(1002, "Unsupported opcode");
return Ok(None);
}
}
}
// Try parsing JSON into ClientMessage
let message = match String::from_utf8(message_payload.clone()) {
Ok(text) => match serde_json::from_str(&text) {
Ok(msg) => WsMessage::Message(msg),
Err(_) => WsMessage::String(text),
},
Err(_) => WsMessage::Binary(message_payload),
};
Ok(Some(message))
}
} }
impl Clone for Client { impl Clone for Client {
@@ -82,102 +332,3 @@ impl Hash for Client {
self.0.peer_addr().unwrap().hash(state); self.0.peer_addr().unwrap().hash(state);
} }
} }
impl Client {
/// Read a full WebSocket message, handling fragmentation (FIN)
pub fn read(&self) -> crate::Result<Option<WsMessage<ClientMessage>>> {
let mut stream = &self.0;
let mut message_payload = Vec::new();
let mut final_frame = false;
while !final_frame {
let mut header = [0u8; 2];
if stream.read_exact(&mut header).is_err() {
return Ok(None); // connection closed
}
let fin = header[0] & 0x80 != 0;
let opcode = header[0] & 0x0F;
let masked = header[1] & 0x80 != 0;
let mut payload_len = (header[1] & 0x7F) as u64;
// Extended payload lengths
if payload_len == 126 {
let mut ext_len = [0u8; 2];
stream.read_exact(&mut ext_len)?;
payload_len = u16::from_be_bytes(ext_len) as u64;
} else if payload_len == 127 {
let mut ext_len = [0u8; 8];
stream.read_exact(&mut ext_len)?;
payload_len = u64::from_be_bytes(ext_len);
}
// Mask key (client → server)
let mut mask = [0u8; 4];
if masked {
stream.read_exact(&mut mask)?;
}
// Read payload
let mut payload = vec![0u8; payload_len as usize];
stream.read_exact(&mut payload)?;
if masked {
for i in 0..payload.len() {
payload[i] ^= mask[i % 4];
}
}
match opcode {
0x0 | 0x1 | 0x2 => {
// Continuation / Text / Binary
message_payload.extend(payload);
}
0x8 => return Ok(None), // Close
0x9 => continue, // Ping → ignore
0xA => continue, // Pong → ignore
_ => return Err(anyhow!("Unsupported WebSocket opcode: {}", opcode).into()),
}
final_frame = fin;
}
// Try parsing JSON into ClientMessage
let message = match String::from_utf8(message_payload.clone()) {
Ok(text) => match serde_json::from_str(&text) {
Ok(msg) => WsMessage::Message(msg),
Err(_) => WsMessage::String(text),
},
Err(_) => WsMessage::Binary(message_payload),
};
Ok(Some(message))
}
/// Send a JSON-serializable object as a WebSocket text frame
pub fn send<T: Serialize>(&self, m: T) -> crate::Result<()> {
let payload = serde_json::to_string(&m)?;
let payload_bytes = payload.as_bytes();
let mut stream = self.0.try_clone()?;
let mut header = Vec::new();
header.push(0x81); // FIN=1, opcode=0x1 (text)
let len = payload_bytes.len();
if len < 126 {
header.push(len as u8);
} else if len <= 65535 {
header.push(126);
header.extend_from_slice(&(len as u16).to_be_bytes());
} else {
header.push(127);
header.extend_from_slice(&(len as u64).to_be_bytes());
}
stream.write_all(&header)?;
stream.write_all(payload_bytes)?;
stream.flush()?;
Ok(())
}
}