mirror of
https://github.com/fafhrd91/actix-web
synced 2024-11-24 08:22:59 +01:00
429 lines
12 KiB
Rust
429 lines
12 KiB
Rust
use std::{fmt, mem};
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use std::io::{Write, Error, ErrorKind};
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use std::iter::FromIterator;
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use bytes::BytesMut;
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use wsproto::{OpCode, CloseCode};
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fn apply_mask(buf: &mut [u8], mask: &[u8; 4]) {
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let iter = buf.iter_mut().zip(mask.iter().cycle());
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for (byte, &key) in iter {
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*byte ^= key
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}
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}
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/// A struct representing a `WebSocket` frame.
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#[derive(Debug, Clone)]
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pub(crate) struct Frame {
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finished: bool,
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rsv1: bool,
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rsv2: bool,
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rsv3: bool,
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opcode: OpCode,
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mask: Option<[u8; 4]>,
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payload: Vec<u8>,
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}
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impl Frame {
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/// Desctructe frame
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pub fn unpack(self) -> (bool, OpCode, Vec<u8>) {
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(self.finished, self.opcode, self.payload)
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}
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/// Get the length of the frame.
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/// This is the length of the header + the length of the payload.
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#[inline]
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pub fn len(&self) -> usize {
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let mut header_length = 2;
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let payload_len = self.payload.len();
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if payload_len > 125 {
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if payload_len <= u16::max_value() as usize {
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header_length += 2;
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} else {
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header_length += 8;
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}
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}
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if self.mask.is_some() {
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header_length += 4;
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}
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header_length + payload_len
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}
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/// Create a new data frame.
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#[inline]
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pub fn message(data: Vec<u8>, code: OpCode, finished: bool) -> Frame {
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Frame {
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finished: finished,
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opcode: code,
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payload: data,
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.. Frame::default()
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}
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}
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/// Create a new Close control frame.
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#[inline]
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pub fn close(code: CloseCode, reason: &str) -> Frame {
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let raw: [u8; 2] = unsafe {
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let u: u16 = code.into();
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mem::transmute(u.to_be())
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};
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let payload = if let CloseCode::Empty = code {
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Vec::new()
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} else {
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Vec::from_iter(
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raw[..].iter()
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.chain(reason.as_bytes().iter())
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.cloned())
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};
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Frame {
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payload: payload,
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.. Frame::default()
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}
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}
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/// Parse the input stream into a frame.
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pub fn parse(buf: &mut BytesMut) -> Result<Option<Frame>, Error> {
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let mut idx = 2;
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let (frame, length) = {
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let mut size = buf.len();
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if size < 2 {
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return Ok(None)
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}
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let mut head = [0u8; 2];
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size -= 2;
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head.copy_from_slice(&buf[..2]);
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trace!("Parsed headers {:?}", head);
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let first = head[0];
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let second = head[1];
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trace!("First: {:b}", first);
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trace!("Second: {:b}", second);
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let finished = first & 0x80 != 0;
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let rsv1 = first & 0x40 != 0;
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let rsv2 = first & 0x20 != 0;
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let rsv3 = first & 0x10 != 0;
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let opcode = OpCode::from(first & 0x0F);
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trace!("Opcode: {:?}", opcode);
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let masked = second & 0x80 != 0;
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trace!("Masked: {:?}", masked);
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let mut header_length = 2;
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let mut length = u64::from(second & 0x7F);
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if length == 126 {
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if size < 2 {
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return Ok(None)
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}
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let mut length_bytes = [0u8; 2];
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length_bytes.copy_from_slice(&buf[idx..idx+2]);
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size -= 2;
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idx += 2;
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length = u64::from(unsafe{
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let mut wide: u16 = mem::transmute(length_bytes);
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wide = u16::from_be(wide);
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wide});
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header_length += 2;
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} else if length == 127 {
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if size < 8 {
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return Ok(None)
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}
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let mut length_bytes = [0u8; 8];
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length_bytes.copy_from_slice(&buf[idx..idx+8]);
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size -= 8;
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idx += 8;
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unsafe { length = mem::transmute(length_bytes); }
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length = u64::from_be(length);
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header_length += 8;
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}
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trace!("Payload length: {}", length);
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let mask = if masked {
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let mut mask_bytes = [0u8; 4];
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if size < 4 {
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return Ok(None)
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} else {
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header_length += 4;
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size -= 4;
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mask_bytes.copy_from_slice(&buf[idx..idx+4]);
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idx += 4;
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Some(mask_bytes)
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}
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} else {
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None
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};
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let length = length as usize;
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if size < length {
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return Ok(None)
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}
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let mut data = Vec::with_capacity(length);
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if length > 0 {
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data.extend_from_slice(&buf[idx..idx+length]);
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}
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// Disallow bad opcode
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if let OpCode::Bad = opcode {
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return Err(
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Error::new(
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ErrorKind::Other,
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format!("Encountered invalid opcode: {}", first & 0x0F)))
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}
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// control frames must have length <= 125
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match opcode {
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OpCode::Ping | OpCode::Pong if length > 125 => {
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return Err(
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Error::new(
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ErrorKind::Other,
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format!("Rejected WebSocket handshake.Received control frame with length: {}.", length)))
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}
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OpCode::Close if length > 125 => {
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debug!("Received close frame with payload length exceeding 125. Morphing to protocol close frame.");
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return Ok(Some(Frame::close(CloseCode::Protocol, "Received close frame with payload length exceeding 125.")))
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}
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_ => ()
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}
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// unmask
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if let Some(ref mask) = mask {
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apply_mask(&mut data, mask);
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}
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let frame = Frame {
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finished: finished,
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rsv1: rsv1,
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rsv2: rsv2,
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rsv3: rsv3,
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opcode: opcode,
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mask: mask,
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payload: data,
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};
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(frame, header_length + length)
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};
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buf.split_to(length);
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Ok(Some(frame))
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}
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/// Write a frame out to a buffer
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pub fn format<W>(&mut self, w: &mut W) -> Result<(), Error>
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where W: Write
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{
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let mut one = 0u8;
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let code: u8 = self.opcode.into();
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if self.finished {
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one |= 0x80;
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}
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if self.rsv1 {
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one |= 0x40;
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}
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if self.rsv2 {
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one |= 0x20;
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}
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if self.rsv3 {
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one |= 0x10;
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}
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one |= code;
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let mut two = 0u8;
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if self.mask.is_some() {
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two |= 0x80;
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}
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if self.payload.len() < 126 {
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two |= self.payload.len() as u8;
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let headers = [one, two];
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try!(w.write_all(&headers));
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} else if self.payload.len() <= 65_535 {
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two |= 126;
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let length_bytes: [u8; 2] = unsafe {
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let short = self.payload.len() as u16;
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mem::transmute(short.to_be())
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};
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let headers = [one, two, length_bytes[0], length_bytes[1]];
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try!(w.write_all(&headers));
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} else {
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two |= 127;
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let length_bytes: [u8; 8] = unsafe {
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let long = self.payload.len() as u64;
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mem::transmute(long.to_be())
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};
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let headers = [
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one,
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two,
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length_bytes[0],
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length_bytes[1],
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length_bytes[2],
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length_bytes[3],
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length_bytes[4],
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length_bytes[5],
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length_bytes[6],
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length_bytes[7],
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];
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try!(w.write_all(&headers));
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}
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if self.mask.is_some() {
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let mask = self.mask.take().unwrap();
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apply_mask(&mut self.payload, &mask);
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try!(w.write_all(&mask));
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}
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try!(w.write_all(&self.payload));
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Ok(())
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}
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}
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impl Default for Frame {
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fn default() -> Frame {
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Frame {
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finished: true,
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rsv1: false,
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rsv2: false,
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rsv3: false,
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opcode: OpCode::Close,
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mask: None,
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payload: Vec::new(),
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}
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}
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}
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impl fmt::Display for Frame {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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write!(f,
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"
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<FRAME>
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final: {}
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reserved: {} {} {}
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opcode: {}
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length: {}
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payload length: {}
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payload: 0x{}
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</FRAME>",
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self.finished,
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self.rsv1,
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self.rsv2,
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self.rsv3,
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self.opcode,
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// self.mask.map(|mask| format!("{:?}", mask)).unwrap_or("NONE".into()),
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self.len(),
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self.payload.len(),
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self.payload.iter().map(|byte| format!("{:x}", byte)).collect::<String>())
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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#[test]
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fn test_parse() {
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let mut buf = BytesMut::from(&[0b00000001u8, 0b00000001u8][..]);
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assert!(Frame::parse(&mut buf).unwrap().is_none());
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buf.extend(b"1");
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let frame = Frame::parse(&mut buf).unwrap().unwrap();
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println!("FRAME: {}", frame);
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assert!(!frame.finished);
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assert_eq!(frame.opcode, OpCode::Text);
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assert_eq!(frame.payload, &b"1"[..]);
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}
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#[test]
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fn test_parse_length0() {
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let mut buf = BytesMut::from(&[0b00000001u8, 0b00000000u8][..]);
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let frame = Frame::parse(&mut buf).unwrap().unwrap();
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assert!(!frame.finished);
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assert_eq!(frame.opcode, OpCode::Text);
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assert!(frame.payload.is_empty());
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}
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#[test]
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fn test_parse_length2() {
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let mut buf = BytesMut::from(&[0b00000001u8, 126u8][..]);
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assert!(Frame::parse(&mut buf).unwrap().is_none());
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buf.extend(&[0u8, 4u8][..]);
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buf.extend(b"1234");
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let frame = Frame::parse(&mut buf).unwrap().unwrap();
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assert!(!frame.finished);
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assert_eq!(frame.opcode, OpCode::Text);
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assert_eq!(frame.payload, &b"1234"[..]);
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}
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#[test]
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fn test_parse_length4() {
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let mut buf = BytesMut::from(&[0b00000001u8, 127u8][..]);
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assert!(Frame::parse(&mut buf).unwrap().is_none());
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buf.extend(&[0u8, 0u8, 0u8, 0u8, 0u8, 0u8, 0u8, 4u8][..]);
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buf.extend(b"1234");
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let frame = Frame::parse(&mut buf).unwrap().unwrap();
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assert!(!frame.finished);
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assert_eq!(frame.opcode, OpCode::Text);
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assert_eq!(frame.payload, &b"1234"[..]);
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}
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#[test]
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fn test_parse_frame_mask() {
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let mut buf = BytesMut::from(&[0b00000001u8, 0b10000001u8][..]);
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buf.extend(b"0001");
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buf.extend(b"1");
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let frame = Frame::parse(&mut buf).unwrap().unwrap();
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assert!(!frame.finished);
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assert_eq!(frame.opcode, OpCode::Text);
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assert_eq!(frame.payload, vec![1u8]);
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}
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#[test]
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fn test_ping_frame() {
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let mut frame = Frame::message(Vec::from("data"), OpCode::Ping, true);
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let mut buf = Vec::new();
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frame.format(&mut buf).unwrap();
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let mut v = vec![137u8, 4u8];
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v.extend(b"data");
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assert_eq!(buf, v);
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}
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#[test]
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fn test_pong_frame() {
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let mut frame = Frame::message(Vec::from("data"), OpCode::Pong, true);
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let mut buf = Vec::new();
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frame.format(&mut buf).unwrap();
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let mut v = vec![138u8, 4u8];
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v.extend(b"data");
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assert_eq!(buf, v);
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}
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#[test]
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fn test_close_frame() {
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let mut frame = Frame::close(CloseCode::Normal, "data");
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let mut buf = Vec::new();
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frame.format(&mut buf).unwrap();
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let mut v = vec![136u8, 6u8, 3u8, 232u8];
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v.extend(b"data");
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assert_eq!(buf, v);
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}
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}
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