extern crate tokio_codec; extern crate bytes; use bytes::{BytesMut, Bytes, BufMut}; use tokio_codec::{BytesCodec, LinesCodec, Decoder, Encoder}; #[test] fn bytes_decoder() { let mut codec = BytesCodec::new(); let buf = &mut BytesMut::new(); buf.put_slice(b"abc"); assert_eq!("abc", codec.decode(buf).unwrap().unwrap()); assert_eq!(None, codec.decode(buf).unwrap()); assert_eq!(None, codec.decode(buf).unwrap()); buf.put_slice(b"a"); assert_eq!("a", codec.decode(buf).unwrap().unwrap()); } #[test] fn bytes_encoder() { let mut codec = BytesCodec::new(); // Default capacity of BytesMut #[cfg(target_pointer_width = "64")] const INLINE_CAP: usize = 4 * 8 - 1; #[cfg(target_pointer_width = "32")] const INLINE_CAP: usize = 4 * 4 - 1; let mut buf = BytesMut::new(); codec.encode(Bytes::from_static(&[0; INLINE_CAP + 1]), &mut buf).unwrap(); // Default capacity of Framed Read const INITIAL_CAPACITY: usize = 8 * 1024; let mut buf = BytesMut::with_capacity(INITIAL_CAPACITY); codec.encode(Bytes::from_static(&[0; INITIAL_CAPACITY + 1]), &mut buf).unwrap(); } #[test] fn lines_decoder() { let mut codec = LinesCodec::new(); let buf = &mut BytesMut::new(); buf.reserve(200); buf.put("line 1\nline 2\r\nline 3\n\r\n\r"); assert_eq!("line 1", codec.decode(buf).unwrap().unwrap()); assert_eq!("line 2", codec.decode(buf).unwrap().unwrap()); assert_eq!("line 3", codec.decode(buf).unwrap().unwrap()); assert_eq!("", codec.decode(buf).unwrap().unwrap()); assert_eq!(None, codec.decode(buf).unwrap()); assert_eq!(None, codec.decode_eof(buf).unwrap()); buf.put("k"); assert_eq!(None, codec.decode(buf).unwrap()); assert_eq!("\rk", codec.decode_eof(buf).unwrap().unwrap()); assert_eq!(None, codec.decode(buf).unwrap()); assert_eq!(None, codec.decode_eof(buf).unwrap()); } #[test] fn lines_decoder_max_length() { const MAX_LENGTH: usize = 6; let mut codec = LinesCodec::with_max_length(MAX_LENGTH); let buf = &mut BytesMut::new(); buf.reserve(200); buf.put("line 1 is too long\nline 2\r\nline 3\n\r\n\r"); assert!(codec.decode(buf).is_err()); assert!(codec.decode(buf).is_err()); let line = codec.decode(buf).unwrap().unwrap(); assert!(line.len() <= MAX_LENGTH, "{:?}.len() <= {:?}", line, MAX_LENGTH); assert_eq!("line 2", line); let line = codec.decode(buf).unwrap().unwrap(); assert!(line.len() <= MAX_LENGTH, "{:?}.len() <= {:?}", line, MAX_LENGTH); assert_eq!("line 3", line); let line = codec.decode(buf).unwrap().unwrap(); assert!(line.len() <= MAX_LENGTH, "{:?}.len() <= {:?}", line, MAX_LENGTH); assert_eq!("", line); assert_eq!(None, codec.decode(buf).unwrap()); assert_eq!(None, codec.decode_eof(buf).unwrap()); buf.put("k"); assert_eq!(None, codec.decode(buf).unwrap()); let line = codec.decode_eof(buf).unwrap().unwrap(); assert!(line.len() <= MAX_LENGTH, "{:?}.len() <= {:?}", line, MAX_LENGTH); assert_eq!("\rk", line); assert_eq!(None, codec.decode(buf).unwrap()); assert_eq!(None, codec.decode_eof(buf).unwrap()); // Line that's one character too long. This could cause an out of bounds // error if we peek at the next characters using slice indexing. buf.put("aaabbbc"); assert!(codec.decode(buf).is_err()); } #[test] fn lines_decoder_max_length_underrun() { const MAX_LENGTH: usize = 6; let mut codec = LinesCodec::with_max_length(MAX_LENGTH); let buf = &mut BytesMut::new(); buf.put("line "); assert_eq!(None, codec.decode(buf).unwrap()); buf.put("too l"); assert_eq!(None, codec.decode(buf).unwrap()); buf.put("ong\n"); assert_eq!("line too long", codec.decode(buf).unwrap().unwrap()); } #[test] fn lines_encoder() { let mut codec = LinesCodec::new(); let mut buf = BytesMut::new(); codec.encode(String::from("line 1"), &mut buf).unwrap(); assert_eq!("line 1\n", buf); codec.encode(String::from("line 2"), &mut buf).unwrap(); assert_eq!("line 1\nline 2\n", buf); }