feat!: cache last tree structure to simplify events
Things like key up/down dont require the items anymore to be used. Instead a cached last state from last render is used.
This commit is contained in:
+4
-4
@@ -142,11 +142,11 @@ fn run_app<B: Backend>(terminal: &mut Terminal<B>, mut app: App) -> std::io::Res
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KeyCode::Char('\n' | ' ') => app.state.toggle_selected(),
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KeyCode::Left => app.state.key_left(),
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KeyCode::Right => app.state.key_right(),
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KeyCode::Down => app.state.key_down(&app.items),
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KeyCode::Up => app.state.key_up(&app.items),
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KeyCode::Down => app.state.key_down(),
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KeyCode::Up => app.state.key_up(),
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KeyCode::Esc => app.state.select(Vec::new()),
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KeyCode::Home => app.state.select_first(&app.items),
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KeyCode::End => app.state.select_last(&app.items),
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KeyCode::Home => app.state.select_first(),
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KeyCode::End => app.state.select_last(),
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KeyCode::PageDown => app.state.scroll_down(3),
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KeyCode::PageUp => app.state.scroll_up(3),
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_ => false,
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+4
-30
@@ -56,35 +56,9 @@ where
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result
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}
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#[cfg(test)]
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fn get_example_tree_items() -> Vec<TreeItem<'static, &'static str>> {
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vec![
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TreeItem::new_leaf("a", "Alfa"),
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TreeItem::new(
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"b",
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"Bravo",
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vec![
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TreeItem::new_leaf("c", "Charlie"),
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TreeItem::new(
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"d",
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"Delta",
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vec![
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TreeItem::new_leaf("e", "Echo"),
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TreeItem::new_leaf("f", "Foxtrot"),
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],
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)
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.expect("all item identifiers are unique"),
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TreeItem::new_leaf("g", "Golf"),
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],
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)
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.expect("all item identifiers are unique"),
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TreeItem::new_leaf("h", "Hotel"),
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]
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}
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#[test]
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fn get_opened_nothing_opened_is_top_level() {
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let items = get_example_tree_items();
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let items = TreeItem::example();
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let opened = HashSet::new();
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let result = flatten(&opened, &items);
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let result_text = result
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@@ -96,7 +70,7 @@ fn get_opened_nothing_opened_is_top_level() {
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#[test]
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fn get_opened_wrong_opened_is_only_top_level() {
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let items = get_example_tree_items();
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let items = TreeItem::example();
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let mut opened = HashSet::new();
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opened.insert(vec!["a"]);
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opened.insert(vec!["b", "d"]);
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@@ -110,7 +84,7 @@ fn get_opened_wrong_opened_is_only_top_level() {
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#[test]
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fn get_opened_one_is_opened() {
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let items = get_example_tree_items();
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let items = TreeItem::example();
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let mut opened = HashSet::new();
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opened.insert(vec!["b"]);
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let result = flatten(&opened, &items);
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@@ -123,7 +97,7 @@ fn get_opened_one_is_opened() {
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#[test]
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fn get_opened_all_opened() {
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let items = get_example_tree_items();
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let items = TreeItem::example();
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let mut opened = HashSet::new();
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opened.insert(vec!["b"]);
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opened.insert(vec!["b", "d"]);
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+8
-6
@@ -191,6 +191,7 @@ where
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}
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let visible = state.flatten(&self.items);
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state.last_biggest_index = visible.len().saturating_sub(1);
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if visible.is_empty() {
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return;
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}
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@@ -206,7 +207,7 @@ where
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};
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// Ensure last line is still visible
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let mut start = state.offset.min(visible.len().saturating_sub(1));
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let mut start = state.offset.min(state.last_biggest_index);
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if let Some(ensure_index_in_view) = ensure_index_in_view {
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start = start.min(ensure_index_in_view);
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@@ -260,11 +261,8 @@ where
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let mut current_height = 0;
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let has_selection = !state.selected.is_empty();
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#[allow(clippy::cast_possible_truncation)]
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for flattened in visible.into_iter().skip(state.offset).take(end - start) {
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let Flattened {
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ref identifier,
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item,
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} = flattened;
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for flattened in visible.iter().skip(state.offset).take(end - start) {
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let Flattened { identifier, item } = flattened;
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let x = area.x;
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let y = area.y + current_height;
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@@ -324,6 +322,10 @@ where
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buf.set_style(area, self.highlight_style);
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}
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}
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state.last_visible_identifiers = visible
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.into_iter()
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.map(|flattened| flattened.identifier)
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.collect();
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}
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}
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@@ -141,6 +141,34 @@ where
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}
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}
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impl TreeItem<'static, &'static str> {
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#[cfg(test)]
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pub(crate) fn example() -> Vec<Self> {
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vec![
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TreeItem::new_leaf("a", "Alfa"),
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TreeItem::new(
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"b",
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"Bravo",
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vec![
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TreeItem::new_leaf("c", "Charlie"),
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TreeItem::new(
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"d",
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"Delta",
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vec![
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TreeItem::new_leaf("e", "Echo"),
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TreeItem::new_leaf("f", "Foxtrot"),
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],
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)
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.expect("all item identifiers are unique"),
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TreeItem::new_leaf("g", "Golf"),
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],
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)
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.expect("all item identifiers are unique"),
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TreeItem::new_leaf("h", "Hotel"),
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]
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}
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}
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#[test]
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#[should_panic = "duplicate identifiers"]
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fn tree_item_new_errors_with_duplicate_identifiers() {
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+44
-48
@@ -16,12 +16,14 @@ use crate::tree_item::TreeItem;
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///
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/// let mut state = TreeState::<Identifier>::default();
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/// ```
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#[derive(Debug, Default, Clone)]
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#[derive(Debug, Default)]
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pub struct TreeState<Identifier> {
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pub(super) offset: usize,
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pub(super) opened: HashSet<Vec<Identifier>>,
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pub(super) selected: Vec<Identifier>,
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pub(super) ensure_selected_in_view_on_next_render: bool,
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pub(super) last_biggest_index: usize,
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pub(super) last_visible_identifiers: Vec<Vec<Identifier>>,
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}
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impl<Identifier> TreeState<Identifier>
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@@ -38,6 +40,11 @@ where
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self.opened.iter().cloned().collect()
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}
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#[must_use]
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pub fn selected(&self) -> Vec<Identifier> {
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self.selected.clone()
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}
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/// Get a flat list of all visible (= below open) [`TreeItem`]s with this `TreeState`.
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#[must_use]
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pub fn flatten<'a>(
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@@ -47,11 +54,6 @@ where
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flatten(&self.opened, items)
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}
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#[must_use]
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pub fn selected(&self) -> Vec<Identifier> {
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self.selected.clone()
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}
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/// Selects the given identifier.
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///
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/// Returns `true` when the selection changed.
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@@ -128,22 +130,24 @@ where
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/// Select the first node.
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///
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/// Returns `true` when the selection changed.
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pub fn select_first(&mut self, items: &[TreeItem<Identifier>]) -> bool {
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let identifier = items
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pub fn select_first(&mut self) -> bool {
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let identifier = self
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.last_visible_identifiers
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.first()
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.map_or(Vec::new(), |item| vec![item.identifier.clone()]);
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.cloned()
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.unwrap_or_default();
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self.select(identifier)
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}
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/// Select the last visible node.
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///
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/// Returns `true` when the selection changed.
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pub fn select_last(&mut self, items: &[TreeItem<Identifier>]) -> bool {
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let visible = self.flatten(items);
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let new_identifier = visible
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.into_iter()
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pub fn select_last(&mut self) -> bool {
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let new_identifier = self
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.last_visible_identifiers
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.last()
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.map_or(Vec::new(), |flattened| flattened.identifier);
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.cloned()
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.unwrap_or_default();
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self.select(new_identifier)
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}
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@@ -152,17 +156,13 @@ where
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/// Returns `true` when the selection changed.
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///
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/// This can be useful for mouse clicks.
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pub fn select_visible_index(
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&mut self,
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items: &[TreeItem<Identifier>],
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new_index: usize,
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) -> bool {
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let visible = self.flatten(items);
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let new_index = new_index.min(visible.len().saturating_sub(1));
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let new_identifier = visible
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.into_iter()
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.nth(new_index)
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.map_or(Vec::new(), |flattened| flattened.identifier);
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pub fn select_visible_index(&mut self, new_index: usize) -> bool {
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let new_index = new_index.min(self.last_biggest_index);
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let new_identifier = self
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.last_visible_identifiers
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.get(new_index)
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.cloned()
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.unwrap_or_default();
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self.select(new_identifier)
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}
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@@ -174,35 +174,27 @@ where
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///
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/// ```
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/// # use tui_tree_widget::TreeState;
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/// # let items = vec![];
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/// # type Identifier = usize;
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/// # let mut state = TreeState::<Identifier>::default();
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/// // Move the selection one down
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/// state.select_visible_relative(&items, |current| {
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/// state.select_visible_relative(|current| {
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/// current.map_or(0, |current| current.saturating_add(1))
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/// });
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/// ```
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///
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/// For more examples take a look into the source code of [`key_up`](Self::key_up) or [`key_down`](Self::key_down).
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/// They are implemented with this method.
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pub fn select_visible_relative<F>(
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&mut self,
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items: &[TreeItem<Identifier>],
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change_function: F,
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) -> bool
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pub fn select_visible_relative<F>(&mut self, change_function: F) -> bool
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where
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F: FnOnce(Option<usize>) -> usize,
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{
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let visible = self.flatten(items);
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let current_identifier = self.selected();
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let visible = &self.last_visible_identifiers;
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let current_identifier = &self.selected;
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let current_index = visible
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.iter()
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.position(|flattened| flattened.identifier == current_identifier);
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let new_index = change_function(current_index).min(visible.len().saturating_sub(1));
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let new_identifier = visible
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.into_iter()
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.nth(new_index)
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.map_or(Vec::new(), |flattened| flattened.identifier);
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.position(|identifier| identifier == current_identifier);
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let new_index = change_function(current_index).min(self.last_biggest_index);
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let new_identifier = visible.get(new_index).cloned().unwrap_or_default();
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self.select(new_identifier)
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}
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@@ -223,19 +215,23 @@ where
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/// Scroll the specified amount of lines down
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///
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/// In contrast to [`scroll_up()`](Self::scroll_up) this can not return whether the view position changed or not as the actual change is determined on render.
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/// Always returns `true`.
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/// Returns `true` when the scroll position changed.
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/// Returns `false` when the scrolling has reached the last [`TreeItem`].
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pub fn scroll_down(&mut self, lines: usize) -> bool {
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self.offset = self.offset.saturating_add(lines);
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true
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let before = self.offset;
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self.offset = self
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.offset
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.saturating_add(lines)
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.min(self.last_biggest_index);
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before != self.offset
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}
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/// Handles the up arrow key.
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/// Moves up in the current depth or to its parent.
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///
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/// Returns `true` when the selection changed.
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pub fn key_up(&mut self, items: &[TreeItem<Identifier>]) -> bool {
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self.select_visible_relative(items, |current| {
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pub fn key_up(&mut self) -> bool {
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self.select_visible_relative(|current| {
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current.map_or(usize::MAX, |current| current.saturating_sub(1))
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})
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}
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@@ -244,8 +240,8 @@ where
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/// Moves down in the current depth or into a child node.
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///
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/// Returns `true` when the selection changed.
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pub fn key_down(&mut self, items: &[TreeItem<Identifier>]) -> bool {
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self.select_visible_relative(items, |current| {
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pub fn key_down(&mut self) -> bool {
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self.select_visible_relative(|current| {
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current.map_or(0, |current| current.saturating_add(1))
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})
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}
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