object_rainbow/impls/
char.rs1use crate::*;
2
3impl ToOutput for char {
4 fn to_output(&self, output: &mut impl Output) {
5 if output.is_real() {
6 let mut buf = [0; 4];
7 self.encode_utf8(&mut buf).to_output(output);
8 }
9 }
10}
11
12impl<I: ParseInput> Parse<I> for char {
13 fn parse(input: I) -> crate::Result<Self> {
14 Self::parse_as_inline(input)
15 }
16}
17
18impl<I: ParseInput> ParseInline<I> for char {
19 fn parse_inline(input: &mut I) -> crate::Result<Self> {
20 let c0 = input.parse_inline::<u8>()?;
21 if c0 & 0b11000000 != 0b11000000 {
22 let c = str::from_utf8(&[c0])
23 .map_err(crate::Error::parse)?
24 .chars()
25 .next()
26 .unwrap();
27 return Ok(c);
28 }
29 let c1 = input.parse_inline::<u8>()?;
30 if c0 & 0b00100000 == 0 {
31 let c = str::from_utf8(&[c0, c1])
32 .map_err(crate::Error::parse)?
33 .chars()
34 .next()
35 .unwrap();
36 return Ok(c);
37 }
38 let c2 = input.parse_inline::<u8>()?;
39 if c0 & 0b00010000 == 0 {
40 let c = str::from_utf8(&[c0, c1, c2])
41 .map_err(crate::Error::parse)?
42 .chars()
43 .next()
44 .unwrap();
45 return Ok(c);
46 }
47 let c3 = input.parse_inline::<u8>()?;
48 let c = str::from_utf8(&[c0, c1, c2, c3])
49 .map_err(crate::Error::parse)?
50 .chars()
51 .next()
52 .unwrap();
53 Ok(c)
54 }
55}
56
57impl InlineOutput for char {}
58impl Tagged for char {}
59impl ListHashes for char {}
60impl Topological for char {}
61
62#[test]
63fn reparse() -> crate::Result<()> {
64 assert_eq!('x'.reparse()?, 'x');
65 assert_eq!('ч'.reparse()?, 'ч');
66 Ok(())
67}