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@ -234,6 +234,84 @@ impl<T: Item + 'static> FilePicker<T> {
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.collect();
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.collect();
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}
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}
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pub fn score(&mut self) {
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let pattern = self.prompt.line();
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if pattern == &self.previous_pattern.0 {
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return;
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}
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let (query, is_refined) = self
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.previous_pattern
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.1
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.refine(pattern, &self.previous_pattern.0);
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if pattern.is_empty() {
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// Fast path for no pattern.
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self.matches.clear();
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self.matches
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.extend(self.options.iter().enumerate().map(|(index, option)| {
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let text = option.filter_text(&self.editor_data);
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PickerMatch {
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index,
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score: 0,
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len: text.chars().count(),
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}
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}));
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} else if is_refined {
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// optimization: if the pattern is a more specific version of the previous one
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// then we can score the filtered set.
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self.matches.retain_mut(|pmatch| {
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let option = &self.options[pmatch.index];
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let text = option.sort_text(&self.editor_data);
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match query.fuzzy_match(&text, &self.matcher) {
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Some(s) => {
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// Update the score
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pmatch.score = s;
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true
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}
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None => false,
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}
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});
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self.matches.sort_unstable();
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} else {
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self.force_score();
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}
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// reset cursor position
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self.cursor = 0;
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let pattern = self.prompt.line();
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self.previous_pattern.0.clone_from(pattern);
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self.previous_pattern.1 = query;
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}
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pub fn force_score(&mut self) {
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let pattern = self.prompt.line();
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let query = FuzzyQuery::new(pattern);
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self.matches.clear();
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self.matches.extend(
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self.options
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.iter()
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.enumerate()
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.filter_map(|(index, option)| {
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let text = option.filter_text(&self.editor_data);
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query
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.fuzzy_match(&text, &self.matcher)
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.map(|score| PickerMatch {
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index,
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score,
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len: text.chars().count(),
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})
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}),
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);
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self.matches.sort_unstable();
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}
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fn current_file(&self, editor: &Editor) -> Option<FileLocation> {
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fn current_file(&self, editor: &Editor) -> Option<FileLocation> {
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self.picker
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self.picker
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.selection()
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.selection()
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@ -569,81 +647,11 @@ impl<T: Item> Picker<T> {
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}
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}
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pub fn score(&mut self) {
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pub fn score(&mut self) {
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let pattern = self.prompt.line();
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unimplemented!()
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if pattern == &self.previous_pattern.0 {
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return;
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}
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let (query, is_refined) = self
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.previous_pattern
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.1
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.refine(pattern, &self.previous_pattern.0);
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if pattern.is_empty() {
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// Fast path for no pattern.
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self.matches.clear();
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self.matches
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.extend(self.options.iter().enumerate().map(|(index, option)| {
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let text = option.filter_text(&self.editor_data);
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PickerMatch {
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index,
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score: 0,
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len: text.chars().count(),
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}
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}));
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} else if is_refined {
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|
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// optimization: if the pattern is a more specific version of the previous one
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|
|
|
|
|
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// then we can score the filtered set.
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|
|
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self.matches.retain_mut(|pmatch| {
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let option = &self.options[pmatch.index];
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let text = option.sort_text(&self.editor_data);
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match query.fuzzy_match(&text, &self.matcher) {
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Some(s) => {
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// Update the score
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pmatch.score = s;
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true
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}
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None => false,
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}
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});
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self.matches.sort_unstable();
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} else {
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self.force_score();
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}
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// reset cursor position
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self.cursor = 0;
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let pattern = self.prompt.line();
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self.previous_pattern.0.clone_from(pattern);
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self.previous_pattern.1 = query;
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}
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}
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pub fn force_score(&mut self) {
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pub fn force_score(&mut self) {
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let pattern = self.prompt.line();
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unimplemented!()
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let query = FuzzyQuery::new(pattern);
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self.matches.clear();
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self.matches.extend(
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self.options
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.iter()
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.enumerate()
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.filter_map(|(index, option)| {
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let text = option.filter_text(&self.editor_data);
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query
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.fuzzy_match(&text, &self.matcher)
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.map(|score| PickerMatch {
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index,
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score,
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len: text.chars().count(),
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})
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}),
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);
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self.matches.sort_unstable();
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}
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}
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/// Move the cursor by a number of lines, either down (`Forward`) or up (`Backward`)
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/// Move the cursor by a number of lines, either down (`Forward`) or up (`Backward`)
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