#![allow(unused_imports, unused_variables, dead_code)] use std::io::{self, Write}; use bytes::{BufMut, Bytes, BytesMut}; use tokio_codec::{Decoder, Encoder}; use super::decoder::{PayloadDecoder, PayloadItem, RequestDecoder}; use super::encoder::{ResponseEncoder, ResponseLength}; use body::Body; use error::ParseError; use helpers; use http::header::{HeaderValue, CONNECTION, CONTENT_LENGTH, DATE, TRANSFER_ENCODING}; use http::{Method, Version}; use request::{Request, RequestPool}; use response::Response; bitflags! { struct Flags: u8 { const HEAD = 0b0000_0001; const UPGRADE = 0b0000_0010; const KEEPALIVE = 0b0000_0100; const KEEPALIVE_ENABLED = 0b0001_0000; } } const AVERAGE_HEADER_SIZE: usize = 30; /// Http response pub enum OutMessage { /// Http response message Response(Response), /// Payload chunk Payload(Bytes), } /// Incoming http/1 request #[derive(Debug)] pub enum InMessage { /// Request Message(Request), /// Request with payload MessageWithPayload(Request), /// Payload chunk Chunk(Bytes), /// End of payload Eof, } /// HTTP/1 Codec pub struct Codec { decoder: RequestDecoder, payload: Option, version: Version, // encoder part flags: Flags, written: u64, headers_size: u32, te: ResponseEncoder, } impl Codec { /// Create HTTP/1 codec. /// /// `keepalive_enabled` how response `connection` header get generated. pub fn new(keepalive_enabled: bool) -> Self { Codec::with_pool(RequestPool::pool(), keepalive_enabled) } /// Create HTTP/1 codec with request's pool pub(crate) fn with_pool( pool: &'static RequestPool, keepalive_enabled: bool, ) -> Self { let flags = if keepalive_enabled { Flags::KEEPALIVE_ENABLED } else { Flags::empty() }; Codec { decoder: RequestDecoder::with_pool(pool), payload: None, version: Version::HTTP_11, flags, written: 0, headers_size: 0, te: ResponseEncoder::default(), } } fn written(&self) -> u64 { self.written } pub fn upgrade(&self) -> bool { self.flags.contains(Flags::UPGRADE) } pub fn keepalive(&self) -> bool { self.flags.contains(Flags::KEEPALIVE) } fn encode_response( &mut self, mut msg: Response, buffer: &mut BytesMut, ) -> io::Result<()> { // prepare transfer encoding self.te .update(&mut msg, self.flags.contains(Flags::HEAD), self.version); let ka = self.flags.contains(Flags::KEEPALIVE_ENABLED) && msg .keep_alive() .unwrap_or_else(|| self.flags.contains(Flags::KEEPALIVE)); // Connection upgrade let version = msg.version().unwrap_or_else(|| self.version); if msg.upgrade() { self.flags.insert(Flags::UPGRADE); self.flags.remove(Flags::KEEPALIVE); msg.headers_mut() .insert(CONNECTION, HeaderValue::from_static("upgrade")); } // keep-alive else if ka { self.flags.insert(Flags::KEEPALIVE); if version < Version::HTTP_11 { msg.headers_mut() .insert(CONNECTION, HeaderValue::from_static("keep-alive")); } } else if version >= Version::HTTP_11 { self.flags.remove(Flags::KEEPALIVE); msg.headers_mut() .insert(CONNECTION, HeaderValue::from_static("close")); } let body = msg.replace_body(Body::Empty); // render message { let reason = msg.reason().as_bytes(); if let Body::Binary(ref bytes) = body { buffer.reserve( 256 + msg.headers().len() * AVERAGE_HEADER_SIZE + bytes.len() + reason.len(), ); } else { buffer.reserve( 256 + msg.headers().len() * AVERAGE_HEADER_SIZE + reason.len(), ); } // status line helpers::write_status_line(version, msg.status().as_u16(), buffer); buffer.extend_from_slice(reason); // content length match self.te.length { ResponseLength::Chunked => { buffer.extend_from_slice(b"\r\ntransfer-encoding: chunked\r\n") } ResponseLength::Zero => { buffer.extend_from_slice(b"\r\ncontent-length: 0\r\n") } ResponseLength::Length(len) => { helpers::write_content_length(len, buffer) } ResponseLength::Length64(len) => { buffer.extend_from_slice(b"\r\ncontent-length: "); write!(buffer.writer(), "{}", len)?; buffer.extend_from_slice(b"\r\n"); } ResponseLength::None => buffer.extend_from_slice(b"\r\n"), } // write headers let mut pos = 0; let mut has_date = false; let mut remaining = buffer.remaining_mut(); let mut buf = unsafe { &mut *(buffer.bytes_mut() as *mut [u8]) }; for (key, value) in msg.headers() { match *key { TRANSFER_ENCODING => continue, CONTENT_LENGTH => match self.te.length { ResponseLength::None => (), _ => continue, }, DATE => { has_date = true; } _ => (), } let v = value.as_ref(); let k = key.as_str().as_bytes(); let len = k.len() + v.len() + 4; if len > remaining { unsafe { buffer.advance_mut(pos); } pos = 0; buffer.reserve(len); remaining = buffer.remaining_mut(); unsafe { buf = &mut *(buffer.bytes_mut() as *mut _); } } buf[pos..pos + k.len()].copy_from_slice(k); pos += k.len(); buf[pos..pos + 2].copy_from_slice(b": "); pos += 2; buf[pos..pos + v.len()].copy_from_slice(v); pos += v.len(); buf[pos..pos + 2].copy_from_slice(b"\r\n"); pos += 2; remaining -= len; } unsafe { buffer.advance_mut(pos); } // optimized date header, set_date writes \r\n if !has_date { // self.settings.set_date(&mut buffer, true); buffer.extend_from_slice(b"\r\n"); } else { // msg eof buffer.extend_from_slice(b"\r\n"); } self.headers_size = buffer.len() as u32; } if let Body::Binary(bytes) = body { self.written = bytes.len() as u64; // buffer.write(bytes.as_ref())?; buffer.extend_from_slice(bytes.as_ref()); } else { // capacity, makes sense only for streaming or actor // self.buffer_capacity = msg.write_buffer_capacity(); msg.replace_body(body); } Ok(()) } } impl Decoder for Codec { type Item = InMessage; type Error = ParseError; fn decode(&mut self, src: &mut BytesMut) -> Result, Self::Error> { if self.payload.is_some() { Ok(match self.payload.as_mut().unwrap().decode(src)? { Some(PayloadItem::Chunk(chunk)) => Some(InMessage::Chunk(chunk)), Some(PayloadItem::Eof) => Some(InMessage::Eof), None => None, }) } else if let Some((req, payload)) = self.decoder.decode(src)? { self.flags .set(Flags::HEAD, req.inner.method == Method::HEAD); self.version = req.inner.version; if self.flags.contains(Flags::KEEPALIVE_ENABLED) { self.flags.set(Flags::KEEPALIVE, req.keep_alive()); } self.payload = payload; if self.payload.is_some() { Ok(Some(InMessage::MessageWithPayload(req))) } else { Ok(Some(InMessage::Message(req))) } } else { Ok(None) } } } impl Encoder for Codec { type Item = OutMessage; type Error = io::Error; fn encode( &mut self, item: Self::Item, dst: &mut BytesMut, ) -> Result<(), Self::Error> { match item { OutMessage::Response(res) => { self.written = 0; self.encode_response(res, dst)?; } OutMessage::Payload(bytes) => { dst.extend_from_slice(&bytes); } } Ok(()) } }