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@ -1,3 +1,5 @@
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use std::fmt::Display;
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use crate::{search, Range, Selection};
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use crate::{search, Range, Selection};
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use ropey::RopeSlice;
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use ropey::RopeSlice;
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@ -11,6 +13,27 @@ pub const PAIRS: &[(char, char)] = &[
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('(', ')'),
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('(', ')'),
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];
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];
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#[derive(Debug, PartialEq)]
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pub enum Error {
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PairNotFound,
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CursorOverlap,
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RangeExceedsText,
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CursorOnAmbiguousPair,
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}
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impl Display for Error {
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fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
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f.write_str(match *self {
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Error::PairNotFound => "Surround pair not found around all cursors",
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Error::CursorOverlap => "Cursors overlap for a single surround pair range",
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Error::RangeExceedsText => "Cursor range exceeds text length",
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Error::CursorOnAmbiguousPair => "Cursor on ambiguous surround pair",
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})
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}
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}
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type Result<T> = std::result::Result<T, Error>;
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/// Given any char in [PAIRS], return the open and closing chars. If not found in
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/// Given any char in [PAIRS], return the open and closing chars. If not found in
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/// [PAIRS] return (ch, ch).
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/// [PAIRS] return (ch, ch).
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///
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///
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@ -37,31 +60,36 @@ pub fn find_nth_pairs_pos(
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ch: char,
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ch: char,
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range: Range,
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range: Range,
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n: usize,
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n: usize,
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) -> Option<(usize, usize)> {
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) -> Result<(usize, usize)> {
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if text.len_chars() < 2 || range.to() >= text.len_chars() {
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if text.len_chars() < 2 {
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return None;
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return Err(Error::PairNotFound);
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}
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if range.to() >= text.len_chars() {
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return Err(Error::RangeExceedsText);
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}
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}
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let (open, close) = get_pair(ch);
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let (open, close) = get_pair(ch);
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let pos = range.cursor(text);
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let pos = range.cursor(text);
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if open == close {
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let (open, close) = if open == close {
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if Some(open) == text.get_char(pos) {
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if Some(open) == text.get_char(pos) {
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// Cursor is directly on match char. We return no match
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// Cursor is directly on match char. We return no match
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// because there's no way to know which side of the char
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// because there's no way to know which side of the char
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// we should be searching on.
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// we should be searching on.
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return None;
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return Err(Error::CursorOnAmbiguousPair);
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}
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}
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Some((
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(
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search::find_nth_prev(text, open, pos, n)?,
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search::find_nth_prev(text, open, pos, n),
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search::find_nth_next(text, close, pos, n)?,
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search::find_nth_next(text, close, pos, n),
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))
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)
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} else {
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} else {
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Some((
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(
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find_nth_open_pair(text, open, close, pos, n)?,
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find_nth_open_pair(text, open, close, pos, n),
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find_nth_close_pair(text, open, close, pos, n)?,
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find_nth_close_pair(text, open, close, pos, n),
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))
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)
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}
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};
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Option::zip(open, close).ok_or(Error::PairNotFound)
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}
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}
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fn find_nth_open_pair(
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fn find_nth_open_pair(
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@ -151,17 +179,17 @@ pub fn get_surround_pos(
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selection: &Selection,
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selection: &Selection,
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ch: char,
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ch: char,
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skip: usize,
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skip: usize,
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) -> Option<Vec<usize>> {
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) -> Result<Vec<usize>> {
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let mut change_pos = Vec::new();
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let mut change_pos = Vec::new();
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for &range in selection {
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for &range in selection {
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let (open_pos, close_pos) = find_nth_pairs_pos(text, ch, range, skip)?;
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let (open_pos, close_pos) = find_nth_pairs_pos(text, ch, range, skip)?;
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if change_pos.contains(&open_pos) || change_pos.contains(&close_pos) {
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if change_pos.contains(&open_pos) || change_pos.contains(&close_pos) {
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return None;
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return Err(Error::CursorOverlap);
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}
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}
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change_pos.extend_from_slice(&[open_pos, close_pos]);
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change_pos.extend_from_slice(&[open_pos, close_pos]);
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}
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}
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Some(change_pos)
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Ok(change_pos)
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}
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}
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#[cfg(test)]
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#[cfg(test)]
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@ -175,7 +203,7 @@ mod test {
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#[allow(clippy::type_complexity)]
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#[allow(clippy::type_complexity)]
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fn check_find_nth_pair_pos(
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fn check_find_nth_pair_pos(
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text: &str,
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text: &str,
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cases: Vec<(usize, char, usize, Option<(usize, usize)>)>,
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cases: Vec<(usize, char, usize, Result<(usize, usize)>)>,
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) {
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) {
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let doc = Rope::from(text);
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let doc = Rope::from(text);
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let slice = doc.slice(..);
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let slice = doc.slice(..);
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@ -196,13 +224,13 @@ mod test {
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"some (text) here",
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"some (text) here",
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vec![
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vec![
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// cursor on [t]ext
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// cursor on [t]ext
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(6, '(', 1, Some((5, 10))),
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(6, '(', 1, Ok((5, 10))),
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(6, ')', 1, Some((5, 10))),
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(6, ')', 1, Ok((5, 10))),
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// cursor on so[m]e
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// cursor on so[m]e
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(2, '(', 1, None),
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(2, '(', 1, Err(Error::PairNotFound)),
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// cursor on bracket itself
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// cursor on bracket itself
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(5, '(', 1, Some((5, 10))),
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(5, '(', 1, Ok((5, 10))),
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(10, '(', 1, Some((5, 10))),
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(10, '(', 1, Ok((5, 10))),
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],
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],
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);
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);
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}
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}
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@ -213,9 +241,9 @@ mod test {
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"(so (many (good) text) here)",
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"(so (many (good) text) here)",
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vec![
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vec![
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// cursor on go[o]d
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// cursor on go[o]d
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(13, '(', 1, Some((10, 15))),
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(13, '(', 1, Ok((10, 15))),
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(13, '(', 2, Some((4, 21))),
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(13, '(', 2, Ok((4, 21))),
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(13, '(', 3, Some((0, 27))),
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(13, '(', 3, Ok((0, 27))),
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],
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],
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);
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);
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}
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}
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@ -226,11 +254,11 @@ mod test {
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"'so 'many 'good' text' here'",
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"'so 'many 'good' text' here'",
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vec![
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vec![
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// cursor on go[o]d
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// cursor on go[o]d
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(13, '\'', 1, Some((10, 15))),
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(13, '\'', 1, Ok((10, 15))),
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(13, '\'', 2, Some((4, 21))),
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(13, '\'', 2, Ok((4, 21))),
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(13, '\'', 3, Some((0, 27))),
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(13, '\'', 3, Ok((0, 27))),
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// cursor on the quotes
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// cursor on the quotes
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(10, '\'', 1, None),
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(10, '\'', 1, Err(Error::CursorOnAmbiguousPair)),
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],
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],
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)
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)
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}
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}
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@ -241,8 +269,8 @@ mod test {
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"((so)((many) good (text))(here))",
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"((so)((many) good (text))(here))",
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vec![
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vec![
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// cursor on go[o]d
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// cursor on go[o]d
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(15, '(', 1, Some((5, 24))),
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(15, '(', 1, Ok((5, 24))),
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(15, '(', 2, Some((0, 31))),
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(15, '(', 2, Ok((0, 31))),
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],
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],
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)
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)
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}
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}
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@ -253,9 +281,9 @@ mod test {
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"(so [many {good} text] here)",
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"(so [many {good} text] here)",
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vec![
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vec![
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// cursor on go[o]d
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// cursor on go[o]d
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(13, '{', 1, Some((10, 15))),
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(13, '{', 1, Ok((10, 15))),
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(13, '[', 1, Some((4, 21))),
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(13, '[', 1, Ok((4, 21))),
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(13, '(', 1, Some((0, 27))),
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(13, '(', 1, Ok((0, 27))),
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],
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],
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)
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)
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}
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}
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@ -285,11 +313,10 @@ mod test {
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let selection =
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let selection =
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Selection::new(SmallVec::from_slice(&[Range::point(2), Range::point(9)]), 0);
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Selection::new(SmallVec::from_slice(&[Range::point(2), Range::point(9)]), 0);
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// cursor on s[o]me, c[h]ars
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// cursor on s[o]me, c[h]ars
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assert_eq!(
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assert_eq!(
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get_surround_pos(slice, &selection, '(', 1),
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get_surround_pos(slice, &selection, '(', 1),
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None // different surround chars
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Err(Error::PairNotFound) // different surround chars
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);
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);
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let selection = Selection::new(
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let selection = Selection::new(
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@ -299,7 +326,15 @@ mod test {
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// cursor on [x]x, newli[n]e
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// cursor on [x]x, newli[n]e
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assert_eq!(
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assert_eq!(
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get_surround_pos(slice, &selection, '(', 1),
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get_surround_pos(slice, &selection, '(', 1),
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None // overlapping surround chars
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Err(Error::PairNotFound) // overlapping surround chars
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);
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let selection =
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Selection::new(SmallVec::from_slice(&[Range::point(2), Range::point(3)]), 0);
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// cursor on s[o][m]e
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assert_eq!(
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get_surround_pos(slice, &selection, '[', 1),
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Err(Error::CursorOverlap)
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);
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);
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}
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}
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}
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}
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