use range::Range;
use {
ret_err,
update,
DebugId,
ParseResult,
Rule,
Tokenizer,
TokenizerState,
};
#[derive(Clone)]
pub struct Lines {
pub rule: Rule,
pub debug_id: DebugId,
}
impl Lines {
pub fn parse(
&self,
tokenizer: &mut Tokenizer,
state: &TokenizerState,
mut chars: &[char],
start_offset: usize
) -> ParseResult<TokenizerState> {
let mut offset = start_offset;
let mut state = state.clone();
let mut opt_error = None;
loop {
let len = chars.iter()
.take_while(|&c| *c != '\n' && c.is_whitespace())
.count();
if len == chars.len() {
offset += len;
break;
}
else if chars[len] == '\n' {
chars = &chars[len + 1..];
offset += len + 1;
} else {
state = match self.rule.parse(tokenizer, &state, chars, offset) {
Err(err) => { return Err(ret_err(err, opt_error)); }
Ok((range, state, err)) => {
update(range, err, &mut chars, &mut offset, &mut opt_error);
state
}
};
}
}
Ok((Range::new(start_offset, offset - start_offset), state, opt_error))
}
}
#[cfg(test)]
mod tests {
use super::super::*;
use range::Range;
use std::rc::Rc;
#[test]
fn fail() {
let text = "
1
2
3
\"error\"
4
";
let chars: Vec<char> = text.chars().collect();
let mut tokenizer = Tokenizer::new();
let s = TokenizerState::new();
let lines = Lines {
debug_id: 0,
rule: Rule::Number(Number {
debug_id: 1,
property: None,
}),
};
let res = lines.parse(&mut tokenizer, &s, &chars, 0);
assert_eq!(res, Err((Range::new(10, 0), ParseError::ExpectedNumber(1))));
}
#[test]
fn success() {
let text = "
1
2
3
4
";
let chars: Vec<char> = text.chars().collect();
let mut tokenizer = Tokenizer::new();
let s = TokenizerState::new();
let val: Rc<String> = Rc::new("val".into());
let lines = Lines {
debug_id: 0,
rule: Rule::Number(Number {
debug_id: 1,
property: Some(val.clone()),
}),
};
let res = lines.parse(&mut tokenizer, &s, &chars, 0);
assert_eq!(res, Ok((Range::new(0, 13), TokenizerState(4), None)));
}
}