use core::fmt;
use core::hash::{Hash, Hasher};
use core::ops::{Bound, RangeBounds};
use core::ptr;
use core::str;
use crate::position;
#[derive(Clone, Copy)]
pub struct Span<'i> {
input: &'i str,
start: usize,
end: usize,
}
impl<'i> Span<'i> {
pub(crate) fn new_internal(input: &str, start: usize, end: usize) -> Span<'_> {
debug_assert!(input.get(start..end).is_some());
Span { input, start, end }
}
pub fn new(input: &str, start: usize, end: usize) -> Option<Span<'_>> {
if input.get(start..end).is_some() {
Some(Span { input, start, end })
} else {
None
}
}
pub fn get(&self, range: impl RangeBounds<usize>) -> Option<Span<'i>> {
let start = match range.start_bound() {
Bound::Included(offset) => *offset,
Bound::Excluded(offset) => *offset + 1,
Bound::Unbounded => 0,
};
let end = match range.end_bound() {
Bound::Included(offset) => *offset + 1,
Bound::Excluded(offset) => *offset,
Bound::Unbounded => self.as_str().len(),
};
self.as_str().get(start..end).map(|_| Span {
input: self.input,
start: self.start + start,
end: self.start + end,
})
}
#[inline]
pub fn start(&self) -> usize {
self.start
}
#[inline]
pub fn end(&self) -> usize {
self.end
}
#[inline]
pub fn start_pos(&self) -> position::Position<'i> {
position::Position::new_internal(self.input, self.start)
}
#[inline]
pub fn end_pos(&self) -> position::Position<'i> {
position::Position::new_internal(self.input, self.end)
}
#[inline]
pub fn split(self) -> (position::Position<'i>, position::Position<'i>) {
let pos1 = position::Position::new_internal(self.input, self.start);
let pos2 = position::Position::new_internal(self.input, self.end);
(pos1, pos2)
}
#[inline]
pub fn as_str(&self) -> &'i str {
&self.input[self.start..self.end]
}
pub fn get_input(&self) -> &'i str {
self.input
}
#[inline]
pub fn lines(&self) -> Lines<'_> {
Lines {
inner: self.lines_span(),
}
}
pub fn lines_span(&self) -> LinesSpan<'_> {
LinesSpan {
span: self,
pos: self.start,
}
}
}
impl fmt::Debug for Span<'_> {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
let range = self.start..self.end;
f.debug_struct("Span")
.field("str", &self.as_str())
.field("range", &range)
.finish()
}
}
impl<'i> PartialEq for Span<'i> {
fn eq(&self, other: &Span<'i>) -> bool {
ptr::eq(self.input, other.input) && self.start == other.start && self.end == other.end
}
}
impl Eq for Span<'_> {}
impl Hash for Span<'_> {
fn hash<H: Hasher>(&self, state: &mut H) {
(self.input as *const str).hash(state);
self.start.hash(state);
self.end.hash(state);
}
}
pub fn merge_spans<'i>(a: &Span<'i>, b: &Span<'i>) -> Option<Span<'i>> {
if a.end() >= b.start() && a.start() <= b.end() {
Span::new(
a.get_input(),
core::cmp::min(a.start(), b.start()),
core::cmp::max(a.end(), b.end()),
)
} else {
None
}
}
pub struct LinesSpan<'i> {
span: &'i Span<'i>,
pos: usize,
}
impl<'i> Iterator for LinesSpan<'i> {
type Item = Span<'i>;
fn next(&mut self) -> Option<Self::Item> {
if self.pos > self.span.end {
return None;
}
let pos = position::Position::new(self.span.input, self.pos)?;
if pos.at_end() {
return None;
}
let line_start = pos.find_line_start();
self.pos = pos.find_line_end();
Span::new(self.span.input, line_start, self.pos)
}
}
pub struct Lines<'i> {
inner: LinesSpan<'i>,
}
impl<'i> Iterator for Lines<'i> {
type Item = &'i str;
fn next(&mut self) -> Option<Self::Item> {
self.inner.next().map(|span| span.as_str())
}
}
#[cfg(test)]
mod tests {
use super::*;
use alloc::borrow::ToOwned;
use alloc::vec::Vec;
#[test]
fn get() {
let input = "abc123abc";
let span = Span::new(input, 3, input.len()).unwrap();
assert_eq!(span.as_str(), "123abc");
assert_eq!(span.input, input);
let span1 = span.get(..=2);
assert!(span1.is_some());
assert_eq!(span1.unwrap().input, input);
assert_eq!(span1.unwrap().as_str(), "123");
let span2 = span.get(..);
assert!(span2.is_some());
assert_eq!(span2.unwrap().input, input);
assert_eq!(span2.unwrap().as_str(), "123abc");
let span3 = span.get(3..);
assert!(span3.is_some());
assert_eq!(span3.unwrap().input, input);
assert_eq!(span3.unwrap().as_str(), "abc");
let span4 = span.get(0..0);
assert!(span4.is_some());
assert_eq!(span4.unwrap().input, input);
assert_eq!(span4.unwrap().as_str(), "");
}
#[test]
fn get_fails() {
let input = "abc";
let span = Span::new(input, 0, input.len()).unwrap();
let span1 = span.get(0..100);
assert!(span1.is_none());
let span2 = span.get(100..200);
assert!(span2.is_none());
}
#[test]
fn span_comp() {
let input = "abc\ndef\nghi";
let span = Span::new(input, 1, 7).unwrap();
let span2 = Span::new(input, 50, 51);
assert!(span2.is_none());
let span3 = Span::new(input, 0, 8).unwrap();
assert!(span != span3);
}
#[test]
fn split() {
let input = "a";
let start = position::Position::from_start(input);
let mut end = start;
assert!(end.skip(1));
let span = start.clone().span(&end.clone());
assert_eq!(span.split(), (start, end));
}
#[test]
fn lines_mid() {
let input = "abc\ndef\nghi";
let span = Span::new(input, 1, 7).unwrap();
let lines: Vec<_> = span.lines().collect();
let lines_span: Vec<_> = span.lines_span().map(|span| span.as_str()).collect();
assert_eq!(lines.len(), 2);
assert_eq!(lines[0], "abc\n".to_owned());
assert_eq!(lines[1], "def\n".to_owned());
assert_eq!(lines, lines_span) }
#[test]
fn lines_eof() {
let input = "abc\ndef\nghi";
let span = Span::new(input, 5, 11).unwrap();
assert!(span.end_pos().at_end());
assert_eq!(span.end(), 11);
let lines: Vec<_> = span.lines().collect();
let lines_span: Vec<_> = span.lines_span().map(|span| span.as_str()).collect();
assert_eq!(lines.len(), 2);
assert_eq!(lines[0], "def\n".to_owned());
assert_eq!(lines[1], "ghi".to_owned());
assert_eq!(lines, lines_span) }
#[test]
fn lines_span() {
let input = "abc\ndef\nghi";
let span = Span::new(input, 1, 7).unwrap();
let lines_span: Vec<_> = span.lines_span().collect();
let lines: Vec<_> = span.lines().collect();
assert_eq!(lines_span.len(), 2);
assert_eq!(lines_span[0], Span::new(input, 0, 4).unwrap());
assert_eq!(lines_span[1], Span::new(input, 4, 8).unwrap());
assert_eq!(
lines_span
.iter()
.map(|span| span.as_str())
.collect::<Vec<_>>(),
lines
);
}
#[test]
fn get_input_of_span() {
let input = "abc\ndef\nghi";
let span = Span::new(input, 1, 7).unwrap();
assert_eq!(span.get_input(), input);
}
#[test]
fn merge_contiguous() {
let input = "abc\ndef\nghi";
let span1 = Span::new(input, 1, 7).unwrap();
let span2 = Span::new(input, 7, 11).unwrap();
let merged = merge_spans(&span1, &span2).unwrap();
assert_eq!(merged, Span::new(input, 1, 11).unwrap());
}
#[test]
fn merge_overlapping() {
let input = "abc\ndef\nghi";
let span1 = Span::new(input, 1, 7).unwrap();
let span2 = Span::new(input, 5, 11).unwrap();
let merged = merge_spans(&span1, &span2).unwrap();
assert_eq!(merged, Span::new(input, 1, 11).unwrap());
}
#[test]
fn merge_non_contiguous() {
let input = "abc\ndef\nghi";
let span1 = Span::new(input, 1, 7).unwrap();
let span2 = Span::new(input, 8, 11).unwrap();
let merged = merge_spans(&span1, &span2);
assert!(merged.is_none());
}
}