396 lines
13 KiB
Rust
396 lines
13 KiB
Rust
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/*! Various useful components that can be used in a generic fashion.
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*/
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use super::*;
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/// A horizontally split in half container.
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pub struct HSplit {
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top: Entity,
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bottom: Entity,
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ratio: usize, // bottom/whole height * 100
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}
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impl HSplit {
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pub fn new(top: Entity, bottom: Entity, ratio: usize) -> Self {
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HSplit {
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top: top,
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bottom: bottom,
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ratio: ratio,
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}
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}
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}
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impl Component for HSplit {
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fn draw(&mut self, grid: &mut CellBuffer, area: Area, context: &mut Context) {
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if !is_valid_area!(area) {
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return;
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}
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let upper_left = upper_left!(area);
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let bottom_right = bottom_right!(area);
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let total_rows = get_y(bottom_right) - get_y(upper_left);
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let bottom_entity_height = (self.ratio*total_rows )/100;
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let mid = get_y(upper_left) + total_rows - bottom_entity_height;
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for i in get_x(upper_left)..=get_x(bottom_right) {
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grid[(i, mid)].set_ch('─');
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}
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let _ = self.top.component.draw(grid,
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(upper_left, (get_x(bottom_right), get_y(upper_left) + mid-1)),
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context);
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let _ = self.bottom.component.draw(grid,
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((get_x(upper_left), get_y(upper_left) + mid), bottom_right),
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context);
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grid[bottom_right].set_ch('b');
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}
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fn process_event(&mut self, event: &UIEvent, context: &mut Context) {
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self.top.rcv_event(event, context);
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self.bottom.rcv_event(event, context);
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}
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fn is_dirty(&self) -> bool {
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self.top.component.is_dirty() || self.bottom.component.is_dirty()
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}
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}
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/// A vertically split in half container.
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pub struct VSplit {
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left: Entity,
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right: Entity,
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/// This is the width of the right container to the entire width.
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ratio: usize, // right/(container width) * 100
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}
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impl VSplit {
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pub fn new(left: Entity, right: Entity, ratio: usize) -> Self {
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VSplit {
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left: left,
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right: right,
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ratio: ratio,
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}
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}
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}
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impl Component for VSplit {
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fn draw(&mut self, grid: &mut CellBuffer, area: Area, context: &mut Context) {
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if !is_valid_area!(area) {
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return;
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}
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let upper_left = upper_left!(area);
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let bottom_right = bottom_right!(area);
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let total_cols = get_x(bottom_right) - get_x(upper_left);
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let right_entity_width = (self.ratio*total_cols )/100;
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let mid = get_x(bottom_right) - right_entity_width;
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if get_y(upper_left)> 1 {
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let c = grid.get(mid, get_y(upper_left)-1).map(|a| a.ch()).unwrap_or_else(|| ' ');
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match c {
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HORZ_BOUNDARY => {
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grid[(mid, get_y(upper_left)-1)].set_ch(LIGHT_DOWN_AND_HORIZONTAL);
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},
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_ => {},
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}
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}
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for i in get_y(upper_left)..=get_y(bottom_right) {
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grid[(mid, i)].set_ch(VERT_BOUNDARY);
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grid[(mid, i)].set_fg(Color::Default);
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grid[(mid, i)].set_bg(Color::Default);
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}
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if get_y(bottom_right)> 1 {
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let c = grid.get(mid, get_y(bottom_right)-1).map(|a| a.ch()).unwrap_or_else(|| ' ');
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match c {
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HORZ_BOUNDARY => {
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grid[(mid, get_y(bottom_right)+1)].set_ch(LIGHT_UP_AND_HORIZONTAL);
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},
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_ => {},
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}
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}
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let _ = self.left.component.draw(grid,
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(upper_left, (mid-1, get_y(bottom_right))),
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context);
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let _ = self.right.component.draw(grid,
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((mid+1, get_y(upper_left)), bottom_right),
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context);
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}
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fn process_event(&mut self, event: &UIEvent, context: &mut Context) {
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self.left.rcv_event(event, context);
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self.right.rcv_event(event, context);
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}
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fn is_dirty(&self) -> bool {
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self.left.component.is_dirty() || self.right.component.is_dirty()
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}
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}
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/// A pager for text.
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/// `Pager` holds its own content in its own `CellBuffer` and when `draw` is called, it draws the
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/// current view of the text. It is responsible for scrolling etc.
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pub struct Pager {
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cursor_pos: usize,
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height: usize,
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width: usize,
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dirty: bool,
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content: CellBuffer,
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}
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// TODO: Make the `new` method content agnostic.
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impl Pager {
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pub fn new(mail: &Envelope, pager_filter: Option<String>) -> Self {
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let mut text = mail.get_body().get_text();
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if let Some(bin) = pager_filter {
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use std::io::Write;
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use std::process::{Command, Stdio};
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eprintln!("{}", bin);
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let mut filter_child = Command::new(bin)
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.stdin(Stdio::piped())
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.stdout(Stdio::piped())
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.spawn()
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.expect("Failed to start pager filter process");
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{
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let mut stdin =
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filter_child.stdin.as_mut().expect("failed to open stdin");
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stdin.write_all(text.as_bytes()).expect("Failed to write to stdin");
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}
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text = String::from_utf8_lossy(&filter_child.wait_with_output().expect("Failed to wait on filter").stdout).to_string();
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}
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let lines: Vec<&str> = text.trim().split('\n').collect();
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let height = lines.len();
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let width = lines.iter().map(|l| l.len()).max().unwrap_or(0);
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let mut content = CellBuffer::new(width, height, Cell::with_char(' '));
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Pager::print_string(&mut content, &text);
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Pager {
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cursor_pos: 0,
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height: height,
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width: width,
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dirty: true,
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content: content,
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}
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}
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pub fn new_from_str(s: &str) -> Self {
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let lines: Vec<&str> = s.trim().split('\n').collect();
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let height = lines.len();
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let width = lines.iter().map(|l| l.len()).max().unwrap_or(0);
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let mut content = CellBuffer::new(width, height, Cell::with_char(' '));
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Pager::print_string(&mut content, s);
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Pager {
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cursor_pos: 0,
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height: height,
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width: width,
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dirty: true,
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content: content,
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}
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}
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pub fn print_string(content: &mut CellBuffer, s: &str) {
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let lines: Vec<&str> = s.trim().split('\n').collect();
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let width = lines.iter().map(|l| l.len()).max().unwrap_or(0);
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if width > 0 {
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for (i, l) in lines.iter().enumerate() {
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write_string_to_grid(l,
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content,
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Color::Default,
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Color::Default,
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((0, i), (width -1, i)),
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true);
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}
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}
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}
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}
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impl Component for Pager {
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fn draw(&mut self, grid: &mut CellBuffer, area: Area, context: &mut Context) {
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if !is_valid_area!(area) {
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return;
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}
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if !self.is_dirty() {
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return;
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}
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let upper_left = upper_left!(area);
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let bottom_right = bottom_right!(area);
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self.dirty = false;
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if self.height == 0 || self.height == self.cursor_pos || self.width == 0 {
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return;
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}
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clear_area(grid,
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(upper_left, bottom_right));
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context.dirty_areas.push_back((upper_left, bottom_right));
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//let pager_context: usize = context.settings.pager.pager_context;
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//let pager_stop: bool = context.settings.pager.pager_stop;
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//let rows = get_y(bottom_right) - get_y(upper_left);
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//let page_length = rows / self.height;
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copy_area(grid, &self.content, area, ((0, self.cursor_pos), (self.width - 1, self.height - 1)));
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context.dirty_areas.push_back(area);
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}
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fn process_event(&mut self, event: &UIEvent, _context: &mut Context) {
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match event.event_type {
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UIEventType::Input(Key::Char('k')) => {
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if self.cursor_pos > 0 {
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self.cursor_pos -= 1;
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self.dirty = true;
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}
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},
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UIEventType::Input(Key::Char('j')) => {
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if self.height > 0 && self.cursor_pos < self.height - 1 {
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self.cursor_pos += 1;
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self.dirty = true;
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}
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},
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UIEventType::ChangeMode(UIMode::Normal) => {
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self.dirty = true;
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},
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UIEventType::Resize => {
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self.dirty = true;
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},
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_ => {
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},
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}
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}
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fn is_dirty(&self) -> bool {
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self.dirty
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}
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}
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/// Status bar.
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pub struct StatusBar {
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container: Entity,
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status: String,
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ex_buffer: String,
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mode: UIMode,
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height: usize,
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dirty: bool,
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}
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impl StatusBar {
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pub fn new(container: Entity) -> Self {
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StatusBar {
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container: container,
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status: String::with_capacity(256),
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ex_buffer: String::with_capacity(256),
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dirty: true,
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mode: UIMode::Normal,
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height: 1,
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}
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}
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fn draw_status_bar(&mut self, grid: &mut CellBuffer, area: Area, context: &mut Context) {
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clear_area(grid, area);
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write_string_to_grid(&self.status,
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grid,
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Color::Byte(123),
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Color::Byte(26),
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area, false);
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change_colors(grid, area, Color::Byte(123), Color::Byte(26));
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context.dirty_areas.push_back(area);
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}
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fn draw_execute_bar(&mut self, grid: &mut CellBuffer, area: Area, context: &mut Context) {
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clear_area(grid, area);
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write_string_to_grid(&self.ex_buffer,
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grid,
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Color::Byte(219),
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Color::Byte(88),
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area, false);
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change_colors(grid, area, Color::Byte(219), Color::Byte(88));
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context.dirty_areas.push_back(area);
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}
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}
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impl Component for StatusBar {
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fn draw(&mut self, grid: &mut CellBuffer, area: Area, context: &mut Context) {
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if !is_valid_area!(area) {
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return;
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}
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let upper_left = upper_left!(area);
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let bottom_right = bottom_right!(area);
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let total_rows = get_y(bottom_right) - get_y(upper_left);
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if total_rows <= self.height {
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return;
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}
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let height = self.height;
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let _ = self.container.component.draw(grid,
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(upper_left, (get_x(bottom_right), get_y(bottom_right) - height)),
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context);
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if !self.is_dirty() {
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return;
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}
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self.dirty = false;
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self.draw_status_bar(grid, (set_y(upper_left, get_y(bottom_right)), bottom_right), context);
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match self.mode {
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UIMode::Normal => {
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},
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UIMode::Execute => {
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self.draw_execute_bar(grid,
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(set_y(upper_left, get_y(bottom_right) - height + 1), set_y(bottom_right, get_y(bottom_right) - height+1)),
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context);
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},
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}
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}
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fn process_event(&mut self, event: &UIEvent, context: &mut Context) {
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self.container.rcv_event(event, context);
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match event.event_type {
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UIEventType::RefreshMailbox((idx_a, idx_f)) => {
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let m = &context.accounts[idx_a][idx_f].as_ref().unwrap().as_ref().unwrap();
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self.status = format!("{} |Mailbox: {}, Messages: {}, New: {}", self.mode, m.folder.get_name(), m.collection.len(), m.collection.iter().filter(|e| !e.is_seen()).count());
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self.dirty = true;
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},
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UIEventType::ChangeMode(m) => {
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let offset = self.status.find('|').unwrap_or(self.status.len());
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self.status.replace_range(..offset, &format!("{} ", m));
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self.dirty = true;
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self.mode = m;
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match m {
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UIMode::Normal => {
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self.height = 1;
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context.replies.push_back(UIEvent { id: 0, event_type: UIEventType::Command(self.ex_buffer.clone())});
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self.ex_buffer.clear()
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},
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UIMode::Execute => {
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self.height = 2;
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},
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};
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},
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UIEventType::ExInput(Key::Char(c)) => {
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self.dirty = true;
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self.ex_buffer.push(c);
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},
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UIEventType::Resize => {
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self.dirty = true;
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},
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_ => {},
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}
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}
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fn is_dirty(&self) -> bool {
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self.dirty || self.container.component.is_dirty()
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}
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}
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// A box with a text content.
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pub struct TextBox {
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content: String,
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}
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impl TextBox {
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pub fn new(s: String) -> Self {
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TextBox {
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content: s,
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}
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}
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}
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impl Component for TextBox {
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fn draw(&mut self, grid: &mut CellBuffer, area: Area, context: &mut Context) {
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}
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fn process_event(&mut self, event: &UIEvent, context: &mut Context) {
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return;
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}
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}
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