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cursive_split_panel/
view.rs

1use super::{split_panel::*, which::*};
2
3use {
4    cursive::{direction::*, event::*, theme::*, view::*, *},
5    std::cmp::*,
6};
7
8const TYPE_NAME: &str = "SplitPanel";
9
10const TOP_LEFT: &str = "┌";
11const BOTTOM_LEFT: &str = "└";
12const TOP_RIGHT: &str = "┐";
13const BOTTOM_RIGHT: &str = "┘";
14const VERTICAL: &str = "│";
15const VERTICAL_THICK: &str = "┃";
16const HORIZONTAL: &str = "─";
17const HORIZONTAL_THICK: &str = "━";
18const TOP_HINGE: &str = "┰";
19const BOTTOM_HINGE: &str = "┸";
20const LEFT_HINGE: &str = "┝";
21const RIGHT_HINGE: &str = "┥";
22
23impl View for SplitPanel {
24    fn type_name(&self) -> &'static str {
25        TYPE_NAME
26    }
27
28    fn focus_view(&mut self, selector: &Selector) -> Result<EventResult, ViewNotFound> {
29        // TODO: we are losing the focus_view callback
30        if self.front.view.focus_view(selector).is_ok() {
31            Ok(self.set_focus(Some(WhichPane::Front)))
32        } else if self.back.view.focus_view(selector).is_ok() {
33            Ok(self.set_focus(Some(WhichPane::Back)))
34        } else {
35            Err(ViewNotFound)
36        }
37    }
38
39    fn take_focus(&mut self, source: Direction) -> Result<EventResult, CannotFocus> {
40        match source.relative(self.orientation).unwrap_or(Relative::Front) {
41            Relative::Front => match self.front.view.take_focus(source) {
42                Ok(event_result) => Ok(event_result),
43                Err(_) => self.back.view.take_focus(source),
44            },
45
46            Relative::Back => match self.back.view.take_focus(source) {
47                Ok(event_result) => Ok(event_result),
48                Err(_) => self.front.view.take_focus(source),
49            },
50        }
51    }
52
53    fn needs_relayout(&self) -> bool {
54        self.needs_relayout || self.front.view.needs_relayout() || self.back.view.needs_relayout()
55    }
56
57    fn layout(&mut self, mut size: Vec2) {
58        self.size = Some(size);
59
60        // Extent (not including border)
61        if self.border {
62            size = size - (2, 2);
63        }
64        let extent = *size.get(self.orientation);
65
66        // Divider
67        let divider = self.layout_divider(extent);
68
69        // Front
70        self.front.start = 0;
71        self.front.extent = divider;
72
73        // Back
74        self.back.start = divider + 1;
75        if self.back.start >= extent {
76            // No room for back, so we will effectively disable it
77            self.back.start = 0;
78            self.back.extent = 0;
79        } else {
80            self.back.extent = extent - self.back.start;
81        }
82
83        self.front.layout(size, self.orientation);
84        self.back.layout(size, self.orientation);
85
86        self.needs_relayout = false;
87    }
88
89    fn required_size(&mut self, constraint: Vec2) -> Vec2 {
90        let front = self.front.view.required_size(constraint);
91        let back = self.back.view.required_size(constraint);
92
93        let size = Vec2::from(match self.orientation {
94            Orientation::Horizontal => (front.x + back.x, max(front.y, back.y)),
95            Orientation::Vertical => (max(front.x, back.x), front.y + back.y),
96        });
97
98        if self.border {
99            // Add border and divider
100            size + match self.orientation {
101                Orientation::Horizontal => (3, 2),
102                Orientation::Vertical => (2, 3),
103            }
104        } else {
105            // Add divider
106            size + match self.orientation {
107                Orientation::Horizontal => (1, 0),
108                Orientation::Vertical => (0, 1),
109            }
110        }
111    }
112
113    fn important_area(&self, size: Vec2) -> Rect {
114        match self.focus {
115            Some(WhichPane::Front) => self.front.important_area(size, self.orientation, self.border),
116            Some(WhichPane::Back) => self.back.important_area(size, self.orientation, self.border),
117            None => Rect::from_size((0, 0), size),
118        }
119    }
120
121    fn on_event(&mut self, event: Event) -> EventResult {
122        match event {
123            Event::Mouse { offset, position, event } => {
124                if self.moving_divider {
125                    if matches!(event, MouseEvent::Release(_)) {
126                        self.moving_divider = false;
127                    } else if let Some(position) = position.checked_sub(offset) {
128                        let mut divider = *position.get(self.orientation);
129                        if self.border && divider != 0 {
130                            divider -= 1;
131                        }
132                        self.set_divider(divider);
133                    }
134                    EventResult::consumed()
135                } else if self.is_start_moving_divider(offset, position, event) {
136                    self.moving_divider = true;
137                    EventResult::consumed()
138                } else if let Some((offset, position)) =
139                    self.front.to_local_mouse_event(offset, position, self.orientation, self.border, self.size)
140                {
141                    if event.grabs_focus() {
142                        // TODO: we are losing the on_event(Event::FocusLost) callback
143                        self.set_focus(Some(WhichPane::Front));
144                    }
145                    self.front.view.on_event(Event::Mouse { offset, position, event })
146                } else if let Some((offset, position)) =
147                    self.back.to_local_mouse_event(offset, position, self.orientation, self.border, self.size)
148                {
149                    if event.grabs_focus() {
150                        // TODO: we are losing the on_event(Event::FocusLost) callback
151                        self.set_focus(Some(WhichPane::Back));
152                    }
153                    self.back.view.on_event(Event::Mouse { offset, position, event })
154                } else {
155                    // TODO: on divider?
156                    EventResult::Ignored
157                }
158            }
159
160            Event::Shift(Key::Left) | Event::Shift(Key::Up) => self.move_divider(-1),
161            Event::Shift(Key::Right) | Event::Shift(Key::Down) => self.move_divider(1),
162
163            event => match self.focus {
164                Some(WhichPane::Front) => self.front.view.on_event(event),
165                Some(WhichPane::Back) => self.back.view.on_event(event),
166                None => {
167                    // TODO: we are losing the on_event(Event::FocusLost) callback
168                    self.set_focus(Some(WhichPane::Front));
169                    self.front.view.on_event(event)
170                }
171            },
172        }
173    }
174
175    fn call_on_any(&mut self, selector: &Selector, callback: AnyCb) {
176        self.front.view.call_on_any(selector, callback);
177        self.back.view.call_on_any(selector, callback);
178    }
179
180    fn draw(&self, printer: &Printer) {
181        let mut _shrinked = None;
182        let printer = if self.draw_lines(printer) {
183            _shrinked = Some(printer.shrinked_centered((2, 2)));
184            &_shrinked.expect("shrinked")
185        } else {
186            printer
187        };
188
189        self.front.draw(printer, self.orientation, self.is_focused(WhichPane::Front));
190        self.back.draw(printer, self.orientation, self.is_focused(WhichPane::Back));
191    }
192}
193
194impl SplitPanel {
195    // Whether a pane is focused.
196    fn is_focused(&self, which: WhichPane) -> bool {
197        self.focus.map(|focus| focus == which).unwrap_or_default()
198    }
199
200    // Set the focused pane (and un-focus the old one).
201    fn set_focus(&mut self, focus: Option<WhichPane>) -> EventResult {
202        let old_focus = self.focus;
203        self.focus = focus;
204        if self.focus != old_focus
205            && let Some(old_focus) = old_focus
206        {
207            return match old_focus {
208                WhichPane::Front => self.front.view.on_event(Event::FocusLost),
209                WhichPane::Back => self.back.view.on_event(Event::FocusLost),
210            };
211        }
212
213        EventResult::consumed()
214    }
215
216    // Whether we click on the divider to start moving it.
217    fn is_start_moving_divider(&self, offset: Vec2, position: Vec2, event: MouseEvent) -> bool {
218        if event.button().is_none() || self.moving_divider || !self.movable_divider {
219            return false;
220        }
221
222        if let Some(mut divider) = self.divider
223            && let Some(size) = self.size
224            && size.x != 0
225            && size.y != 0
226            && let Some(position) = position.checked_sub(offset)
227        {
228            if self.border {
229                divider += 1;
230                let corner = size - (1, 1);
231                match self.orientation {
232                    Orientation::Horizontal => position.y > 0 && position.y < corner.y && position.x == divider,
233                    Orientation::Vertical => position.x > 0 && position.x < corner.x && position.y == divider,
234                }
235            } else {
236                match self.orientation {
237                    Orientation::Horizontal => position.x == divider,
238                    Orientation::Vertical => position.y == divider,
239                }
240            }
241        } else {
242            false
243        }
244    }
245
246    // Move the divider (if allowed).
247    fn move_divider(&mut self, delta: isize) -> EventResult {
248        if !self.movable_divider {
249            return EventResult::Ignored;
250        }
251
252        match self.divider {
253            Some(divider) => {
254                if delta > 0 {
255                    self.set_divider(divider + delta as usize);
256                } else if let Some(divider) = divider.checked_add_signed(delta) {
257                    self.set_divider(divider);
258                }
259            }
260
261            None => self.set_divider(0),
262        }
263
264        EventResult::consumed()
265    }
266
267    // Layout the divider.
268    fn layout_divider(&mut self, extent: usize) -> usize {
269        match self.divider {
270            Some(divider) => {
271                if divider >= extent {
272                    if extent == 0 {
273                        // There won't immediately be room for front and back
274                        self.set_divider(0);
275                    } else {
276                        // There won't immediately be room for back
277                        self.set_divider(extent - 1);
278                    }
279                }
280            }
281
282            // Default to middle
283            None => self.set_divider(extent / 2),
284        }
285
286        self.divider.expect("divider")
287    }
288
289    // Draw border and divider.
290    //
291    // Returns true if a border was drawn.
292    fn draw_lines(&self, printer: &Printer) -> bool {
293        let Some(mut divider) = self.divider else {
294            // This would only happen if we try to draw before layout
295            return false;
296        };
297
298        if printer.size.x == 0 || printer.size.y == 0 {
299            return false;
300        }
301
302        let corner = printer.size - (1, 1);
303
304        if self.border {
305            divider += 1;
306
307            // Border corners
308            printer.print((0, 0), TOP_LEFT);
309            printer.print((corner.x, 0), TOP_RIGHT);
310            printer.print((0, corner.y), BOTTOM_LEFT);
311            printer.print(corner, BOTTOM_RIGHT);
312
313            let mut _divider_printer = None;
314            let divider_printer = if self.moving_divider {
315                let mut divider_printer = printer.clone();
316                divider_printer.set_effect(Effect::Reverse);
317                _divider_printer = Some(divider_printer);
318                &_divider_printer.expect("divider_printer")
319            } else {
320                printer
321            };
322
323            match self.orientation {
324                Orientation::Horizontal => {
325                    // Hinges
326                    printer.print((divider, 0), TOP_HINGE);
327                    printer.print((divider, corner.y), BOTTOM_HINGE);
328
329                    if let Some(length) = divider.checked_sub(1) {
330                        // Top border
331                        printer.print_hline((1, 0), length, HORIZONTAL);
332                        // Bottom border
333                        printer.print_hline((1, corner.y), length, HORIZONTAL);
334                    }
335
336                    if let Some(length) = corner.x.checked_sub(divider + 1) {
337                        // Top border
338                        printer.print_hline((divider + 1, 0), length, HORIZONTAL);
339                        // Bottom border
340                        printer.print_hline((divider + 1, corner.y), length, HORIZONTAL);
341                    }
342
343                    if let Some(length) = corner.y.checked_sub(1) {
344                        // Left border
345                        printer.print_vline((0, 1), length, VERTICAL);
346                        // Divider
347                        divider_printer.print_vline((divider, 1), length, VERTICAL_THICK);
348                        // Right border
349                        printer.print_vline((corner.x, 1), length, VERTICAL);
350                    }
351                }
352
353                Orientation::Vertical => {
354                    // Hinges
355                    printer.print((0, divider), LEFT_HINGE);
356                    printer.print((corner.x, divider), RIGHT_HINGE);
357
358                    if let Some(length) = divider.checked_sub(1) {
359                        // Left border
360                        printer.print_vline((0, 1), length, VERTICAL);
361                        // Right border
362                        printer.print_vline((corner.x, 1), length, VERTICAL);
363                    }
364
365                    if let Some(length) = corner.y.checked_sub(divider + 1) {
366                        // Left border
367                        printer.print_vline((0, divider + 1), length, VERTICAL);
368                        // Right border
369                        printer.print_vline((corner.x, divider + 1), length, VERTICAL);
370                    }
371
372                    if let Some(length) = corner.x.checked_sub(1) {
373                        // Top border
374                        printer.print_hline((1, 0), length, HORIZONTAL);
375                        // Divider
376                        divider_printer.print_hline((1, divider), length, HORIZONTAL_THICK);
377                        // Bottom border
378                        printer.print_hline((1, corner.y), length, HORIZONTAL);
379                    }
380                }
381            }
382
383            true
384        } else {
385            match self.orientation {
386                Orientation::Horizontal => printer.print_vline((divider, 0), corner.y, VERTICAL),
387                Orientation::Vertical => printer.print_vline((divider, 0), corner.y, VERTICAL),
388            }
389
390            false
391        }
392    }
393}