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use crate::graphemes::{nth_next_grapheme_boundary, nth_prev_grapheme_boundary, RopeGraphemes};
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use crate::{coords_at_pos, pos_at_coords, ChangeSet, Position, Range, Rope, RopeSlice, Selection};
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#[derive(Copy, Clone, PartialEq, Eq)]
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pub enum Direction {
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Forward,
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Backward,
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}
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pub fn move_horizontally(
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text: RopeSlice,
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range: Range,
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dir: Direction,
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count: usize,
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extend: bool,
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) -> Range {
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let pos = range.head;
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let line = text.char_to_line(pos);
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// TODO: we can optimize clamping by passing in RopeSlice limited to current line. that way
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// we stop calculating past start/end of line.
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let pos = match dir {
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Direction::Backward => {
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let start = text.line_to_char(line);
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nth_prev_grapheme_boundary(text, pos, count).max(start)
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}
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Direction::Forward => {
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// Line end is pos at the start of next line - 1
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let end = text.line_to_char(line + 1).saturating_sub(1);
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nth_next_grapheme_boundary(text, pos, count).min(end)
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}
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};
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Range::new(if extend { range.anchor } else { pos }, pos)
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}
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pub fn move_vertically(
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text: RopeSlice,
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range: Range,
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dir: Direction,
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count: usize,
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extend: bool,
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) -> Range {
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let Position { row, col } = coords_at_pos(text, range.head);
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let horiz = range.horiz.unwrap_or(col as u32);
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let new_line = match dir {
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Direction::Backward => row.saturating_sub(count),
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Direction::Forward => std::cmp::min(
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row.saturating_add(count),
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text.len_lines().saturating_sub(2),
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),
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};
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// convert to 0-indexed, subtract another 1 because len_chars() counts \n
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let new_line_len = text.line(new_line).len_chars().saturating_sub(2);
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let new_col = std::cmp::min(horiz as usize, new_line_len);
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let pos = pos_at_coords(text, Position::new(new_line, new_col));
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let mut range = Range::new(if extend { range.anchor } else { pos }, pos);
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range.horiz = Some(horiz);
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range
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}
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pub fn move_next_word_start(slice: RopeSlice, mut begin: usize, count: usize) -> Option<Range> {
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let mut end = begin;
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for _ in 0..count {
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if begin + 1 == slice.len_chars() {
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return None;
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}
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let mut ch = slice.char(begin);
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let next = slice.char(begin + 1);
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// if we're at the end of a word, or on whitespce right before new one
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if categorize(ch) != categorize(next) {
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begin += 1;
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}
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if !skip_over_next(slice, &mut begin, |ch| ch == '\n') {
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return None;
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};
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ch = slice.char(begin);
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end = begin + 1;
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if is_word(ch) {
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skip_over_next(slice, &mut end, is_word);
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} else if is_punctuation(ch) {
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skip_over_next(slice, &mut end, is_punctuation);
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}
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skip_over_next(slice, &mut end, char::is_whitespace);
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}
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Some(Range::new(begin, end - 1))
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}
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pub fn move_prev_word_start(slice: RopeSlice, mut begin: usize, count: usize) -> Option<Range> {
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let mut with_end = false;
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let mut end = begin;
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for _ in 0..count {
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if begin == 0 {
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return None;
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}
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let ch = slice.char(begin);
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let prev = slice.char(begin - 1);
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if categorize(ch) != categorize(prev) {
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begin -= 1;
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}
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// return if not skip while?
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skip_over_prev(slice, &mut begin, |ch| ch == '\n');
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end = begin;
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with_end = skip_over_prev(slice, &mut end, char::is_whitespace);
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// refetch
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let ch = slice.char(end);
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if is_word(ch) {
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with_end = skip_over_prev(slice, &mut end, is_word);
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} else if is_punctuation(ch) {
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with_end = skip_over_prev(slice, &mut end, is_punctuation);
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}
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}
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Some(Range::new(begin, if with_end { end } else { end + 1 }))
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}
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pub fn move_next_word_end(slice: RopeSlice, mut begin: usize, count: usize) -> Option<Range> {
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let mut end = begin;
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for _ in 0..count {
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if begin + 2 >= slice.len_chars() {
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return None;
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}
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let ch = slice.char(begin);
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let next = slice.char(begin + 1);
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if categorize(ch) != categorize(next) {
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begin += 1;
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}
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if !skip_over_next(slice, &mut begin, |ch| ch == '\n') {
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return None;
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};
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end = begin;
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skip_over_next(slice, &mut end, char::is_whitespace);
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// refetch
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let ch = slice.char(end);
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if is_word(ch) {
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skip_over_next(slice, &mut end, is_word);
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} else if is_punctuation(ch) {
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skip_over_next(slice, &mut end, is_punctuation);
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}
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}
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Some(Range::new(begin, end - 1))
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}
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// ---- util ------------
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// used for by-word movement
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#[inline]
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pub(crate) fn is_word(ch: char) -> bool {
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ch.is_alphanumeric() || ch == '_'
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}
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#[inline]
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pub(crate) fn is_punctuation(ch: char) -> bool {
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use unicode_general_category::{get_general_category, GeneralCategory};
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matches!(
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get_general_category(ch),
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GeneralCategory::OtherPunctuation
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| GeneralCategory::OpenPunctuation
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| GeneralCategory::ClosePunctuation
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| GeneralCategory::InitialPunctuation
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| GeneralCategory::FinalPunctuation
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| GeneralCategory::ConnectorPunctuation
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| GeneralCategory::DashPunctuation
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| GeneralCategory::MathSymbol
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| GeneralCategory::CurrencySymbol
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| GeneralCategory::ModifierSymbol
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)
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}
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#[derive(Debug, Eq, PartialEq)]
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pub(crate) enum Category {
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Whitespace,
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Eol,
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Word,
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Punctuation,
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Unknown,
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}
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#[inline]
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pub(crate) fn categorize(ch: char) -> Category {
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if ch == '\n' {
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Category::Eol
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} else if ch.is_whitespace() {
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Category::Whitespace
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} else if is_word(ch) {
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Category::Word
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} else if is_punctuation(ch) {
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Category::Punctuation
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} else {
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Category::Unknown
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}
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}
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#[inline]
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/// Returns true if there are more characters left after the new position.
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pub fn skip_over_next<F>(slice: RopeSlice, pos: &mut usize, fun: F) -> bool
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where
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F: Fn(char) -> bool,
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{
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let mut chars = slice.chars_at(*pos);
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#[allow(clippy::while_let_on_iterator)]
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while let Some(ch) = chars.next() {
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if !fun(ch) {
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break;
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}
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*pos += 1;
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}
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chars.next().is_some()
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}
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#[inline]
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/// Returns true if the final pos matches the predicate.
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pub fn skip_over_prev<F>(slice: RopeSlice, pos: &mut usize, fun: F) -> bool
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where
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F: Fn(char) -> bool,
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{
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// need to +1 so that prev() includes current char
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let mut chars = slice.chars_at(*pos + 1);
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#[allow(clippy::while_let_on_iterator)]
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while let Some(ch) = chars.prev() {
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if !fun(ch) {
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break;
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}
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*pos = pos.saturating_sub(1);
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}
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fun(slice.char(*pos))
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}
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#[cfg(test)]
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mod test {
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use super::*;
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#[test]
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fn test_vertical_move() {
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let text = Rope::from("abcd\nefg\nwrs");
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let slice = text.slice(..);
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let pos = pos_at_coords(slice, (0, 4).into());
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let range = Range::new(pos, pos);
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assert_eq!(
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coords_at_pos(
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slice,
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move_vertically(slice, range, Direction::Forward, 1, false).head
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),
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(1, 2).into()
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);
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}
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#[test]
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fn test_categorize() {
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const WORD_TEST_CASE: &'static str =
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"_hello_world_あいうえおー12345678901234567890";
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const PUNCTUATION_TEST_CASE: &'static str = "!\"#$%&\'()*+,-./:;<=>?@[\\]^`{|}~!”#$%&’()*+、。:;<=>?@「」^`{|}~";
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const WHITESPACE_TEST_CASE: &'static str = " ";
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assert_eq!(Category::Eol, categorize('\n'));
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for ch in WHITESPACE_TEST_CASE.chars() {
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assert_eq!(
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Category::Whitespace,
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categorize(ch),
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"Testing '{}', but got `{:?}` instead of `Category::Whitespace`",
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ch,
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categorize(ch)
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);
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}
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for ch in WORD_TEST_CASE.chars() {
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assert_eq!(
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Category::Word,
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categorize(ch),
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"Testing '{}', but got `{:?}` instead of `Category::Word`",
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ch,
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categorize(ch)
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);
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}
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for ch in PUNCTUATION_TEST_CASE.chars() {
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assert_eq!(
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Category::Punctuation,
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categorize(ch),
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"Testing '{}', but got `{:?}` instead of `Category::Punctuation`",
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ch,
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categorize(ch)
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);
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}
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}
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}
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