1use cranpose_ui::FocusDirection;
2
3use super::*;
4
5impl<R> SurfaceMut<'_, R>
6where
7 R: Renderer,
8 R::Error: Debug,
9{
10 fn pointer_event(
11 &self,
12 kind: PointerEventKind,
13 position: Point,
14 global_position: Point,
15 event_time: PointerEventTime,
16 ) -> PointerEvent {
17 let screen_position = self.surface().screen_origin.map(|origin| Point {
18 x: origin.x + global_position.x,
19 y: origin.y + global_position.y,
20 });
21 let mut event = PointerEvent::new(kind, position, global_position)
22 .with_time_ms(event_time.platform_time_ms)
23 .with_animation_time_nanos(event_time.animation_time_nanos)
24 .with_screen_position(screen_position);
25 event.modifiers = self.shell.app.modifiers;
26 event
27 }
28
29 fn resolve_gesture_targets(
30 &self,
31 pointer: PointerId,
32 ) -> Vec<<<R as Renderer>::Scene as RenderScene>::HitTarget> {
33 self.resolve_hit_path(pointer)
34 }
35
36 fn resolve_hit_path(
37 &self,
38 pointer: PointerId,
39 ) -> Vec<<<R as Renderer>::Scene as RenderScene>::HitTarget> {
40 let Some(node_ids) = self.surface().hit_path_tracker.dispatch_order(pointer) else {
41 return Vec::new();
42 };
43
44 let scene = self.surface().renderer.scene();
45 let targets: Vec<_> = node_ids
46 .iter()
47 .filter_map(|&id| scene.find_target(id))
48 .collect();
49 log::trace!(
50 target: "cranpose::input",
51 "resolve_hit_path pointer={pointer:?} cached={node_ids:?} resolved_count={}",
52 targets.len()
53 );
54 targets
55 }
56
57 fn dispatch_targets<I>(&mut self, targets: I, event: PointerEvent, stop_on_consume: bool)
58 where
59 I: IntoIterator<Item = <<R as Renderer>::Scene as RenderScene>::HitTarget>,
60 {
61 let mut applier = self.shell.app.composition.applier_mut();
62 for target in targets {
63 let node_id = target.node_id();
64 target.dispatch_with_applier(&mut applier, event.clone());
65 log::trace!(
66 target: "cranpose::input",
67 "dispatch {:?} node={} consumed={} stop_on_consume={}",
68 event.kind,
69 node_id,
70 event.is_consumed(),
71 stop_on_consume,
72 );
73 if stop_on_consume && event.is_consumed() {
74 break;
75 }
76 }
77 event.finish_post_dispatch();
78 }
79
80 fn dispatch_to_hits(
81 &mut self,
82 hits: &[<<R as Renderer>::Scene as RenderScene>::HitTarget],
83 event: PointerEvent,
84 ) -> bool {
85 let capture_paths = hits
86 .iter()
87 .map(cranpose_render_common::HitTestTarget::capture_path)
88 .collect::<Vec<_>>();
89 let targets = crate::hit_path_tracker::dispatch_order_for_paths(&capture_paths)
90 .into_iter()
91 .filter_map(|node_id| self.surface().renderer.scene().find_target(node_id))
92 .collect::<Vec<_>>();
93
94 self.dispatch_targets(targets, event.clone(), true);
95
96 event.is_consumed()
97 }
98
99 pub fn set_pointer_source(&mut self, source: PointerSource) {
105 self.surface_mut().pointer_source = source;
106 }
107
108 pub fn pointer_source(&self) -> PointerSource {
110 self.surface().pointer_source
111 }
112
113 pub fn set_cursor(&mut self, x: f32, y: f32) -> bool {
114 self.set_cursor_at_time(x, y, None)
115 }
116
117 pub fn set_cursor_at_time(&mut self, x: f32, y: f32, time_ms: Option<i64>) -> bool {
124 let event_time = self.shell.app.realtime_pointer_event_time(time_ms);
125 self.set_cursor_at_event_time(x, y, event_time)
126 }
127
128 pub fn set_cursor_at_event_time(
130 &mut self,
131 x: f32,
132 y: f32,
133 event_time: PointerEventTime,
134 ) -> bool {
135 let _event_handler = enter_event_handler_scope();
136 let app_context = Rc::clone(&self.shell.app.app_context);
137 let result = app_context.enter(|| {
138 run_in_mutable_snapshot(|| self.set_cursor_inner(x, y, event_time)).unwrap_or(false)
139 });
140 self.route_drag_and_drop();
141 if result {
142 self.mark_dirty();
143 }
144 log::trace!(
145 target: "cranpose::input",
146 "set_cursor ({x:.2},{y:.2}) time_ms={:?} animation_time_nanos={} -> {result}",
147 event_time.platform_time_ms,
148 event_time.animation_time_nanos,
149 );
150 result
151 }
152
153 fn set_cursor_inner(&mut self, x: f32, y: f32, event_time: PointerEventTime) -> bool {
154 self.surface_mut().cursor = (x, y);
155 if self.inspector_move(x, y) {
156 return true;
157 }
158
159 if self.surface().buttons_pressed != PointerButtons::NONE {
160 if self.surface().hit_path_tracker.has_path(PointerId::PRIMARY) {
161 let targets = self.resolve_gesture_targets(PointerId::PRIMARY);
162 if !targets.is_empty() {
163 let event = self
164 .pointer_event(
165 PointerEventKind::Move,
166 Point { x, y },
167 Point { x, y },
168 event_time,
169 )
170 .with_buttons(self.surface().buttons_pressed)
171 .with_source(self.surface().pointer_source);
172 self.dispatch_targets(targets, event, false);
173 return true;
174 }
175
176 return false;
177 }
178
179 return false;
180 }
181
182 let hits = if self.inspector_blocks_pointer(x, y) {
183 Vec::new()
184 } else {
185 self.surface().renderer.scene().hit_test(x, y)
186 };
187 let new_ids: Vec<NodeId> = hits
188 .iter()
189 .map(cranpose_render_common::HitTestTarget::node_id)
190 .collect();
191
192 let pos = Point { x, y };
193 let previously_hovered = self.surface().hovered_nodes.clone();
194 for old_id in previously_hovered {
195 if !new_ids.contains(&old_id)
196 && let Some(target) = self.surface().renderer.scene().find_target(old_id)
197 {
198 let exit_event = self
199 .pointer_event(PointerEventKind::Exit, pos, pos, event_time)
200 .with_buttons(self.surface().buttons_pressed)
201 .with_source(self.surface().pointer_source);
202 self.dispatch_targets(std::iter::once(target), exit_event, false);
203 }
204 }
205
206 for hit in &hits {
207 if !self.surface().hovered_nodes.contains(&hit.node_id()) {
208 let enter_event = self
209 .pointer_event(PointerEventKind::Enter, pos, pos, event_time)
210 .with_buttons(self.surface().buttons_pressed)
211 .with_source(self.surface().pointer_source);
212 self.dispatch_targets(std::iter::once(hit.clone()), enter_event, false);
213 }
214 }
215
216 self.surface_mut().hovered_nodes = new_ids;
217 self.apply_hovered_pointer_icon(&hits);
218
219 if !hits.is_empty() {
220 let event = self
221 .pointer_event(PointerEventKind::Move, pos, pos, event_time)
222 .with_buttons(self.surface().buttons_pressed)
223 .with_source(self.surface().pointer_source);
224 self.dispatch_targets(hits, event, true);
225 true
226 } else {
227 false
228 }
229 }
230
231 pub fn accessibility_activate(&mut self, node_id: NodeId, canvas_key: Option<u64>) -> bool {
237 let event_time = self.shell.app.realtime_pointer_event_time(None);
238 let _event_handler = enter_event_handler_scope();
239 let app_context = Rc::clone(&self.shell.app.app_context);
240 let result = app_context.enter(|| {
241 run_in_mutable_snapshot(|| self.activate_node(node_id, canvas_key, event_time))
242 .unwrap_or(false)
243 });
244 if result {
245 self.mark_dirty();
246 }
247 result
248 }
249
250 fn activate_node(
251 &mut self,
252 node_id: NodeId,
253 canvas_key: Option<u64>,
254 event_time: PointerEventTime,
255 ) -> bool {
256 let target = {
257 let (app, surface) = self.parts();
258 surface
259 .semantics_tree_for_input(app)
260 .and_then(|tree| activation_target(tree.root(), node_id, canvas_key))
261 };
262 let (target_id, canvas_bounds) = match target {
263 Some(ActivationTarget::Direct(action)) => {
264 action.invoke();
265 return true;
266 }
267 Some(ActivationTarget::Edit(node_id)) => {
268 self.activate();
269 return cranpose_ui::request_focus_from_platform(node_id);
270 }
271 Some(ActivationTarget::Pointer(node_id, bounds)) => (node_id, bounds),
272 None => return false,
273 };
274 let position =
275 self.with_layout_tree(|tree| activation_input(tree?.root(), target_id, canvas_bounds));
276 let Some((position, local, handlers)) = position else {
277 return false;
278 };
279 for kind in [PointerEventKind::Down, PointerEventKind::Up] {
280 let event = self.pointer_event(kind, local, position, event_time);
281 handlers.dispatch_pointer_event(event.clone());
282 event.finish_post_dispatch();
283 }
284 true
285 }
286
287 pub fn pointer_pressed(&mut self) -> bool {
288 self.pointer_pressed_at_time(None)
289 }
290
291 pub fn pointer_pressed_at_time(&mut self, time_ms: Option<i64>) -> bool {
294 let event_time = self.shell.app.realtime_pointer_event_time(time_ms);
295 self.pointer_pressed_at_event_time(event_time)
296 }
297
298 pub fn pointer_pressed_at_event_time(&mut self, event_time: PointerEventTime) -> bool {
300 let (cursor_x, cursor_y) = self.surface().cursor;
301 if self.inspector_press(cursor_x, cursor_y) {
302 return true;
303 }
304 if self.dev_overlay_press(cursor_x, cursor_y) {
305 return true;
306 }
307 let _event_handler = enter_event_handler_scope();
308 let app_context = Rc::clone(&self.shell.app.app_context);
309 let result = app_context.enter(|| {
310 run_in_mutable_snapshot(|| self.pointer_pressed_inner(event_time)).unwrap_or(false)
311 });
312 if result {
313 self.mark_dirty();
314 }
315 log::trace!(
316 target: "cranpose::input",
317 "pointer_pressed time_ms={:?} animation_time_nanos={} -> {result}",
318 event_time.platform_time_ms,
319 event_time.animation_time_nanos,
320 );
321 result
322 }
323
324 fn pointer_pressed_inner(&mut self, event_time: PointerEventTime) -> bool {
325 self.activate();
326 self.note_focus_moved_by_keyboard(false);
327 self.surface_mut()
328 .buttons_pressed
329 .insert(PointerButton::Primary);
330
331 let (cursor_x, cursor_y) = self.surface().cursor;
332 let mut hits = self.surface().renderer.scene().hit_test(cursor_x, cursor_y);
333 if self.surface().pointer_source.is_touch_like()
334 && let Some(near) = self
335 .surface()
336 .renderer
337 .scene()
338 .hit_test_near(cursor_x, cursor_y)
339 && hits.iter().all(|hit| {
340 hit.node_id() != near.node_id() && near.capture_path().contains(&hit.node_id())
341 })
342 {
343 hits.insert(0, near);
344 }
345 if hits.is_empty() {
346 self.surface_mut()
347 .hit_path_tracker
348 .remove_path(PointerId::PRIMARY);
349 false
350 } else {
351 let event = self
352 .pointer_event(
353 PointerEventKind::Down,
354 Point {
355 x: self.surface().cursor.0,
356 y: self.surface().cursor.1,
357 },
358 Point {
359 x: self.surface().cursor.0,
360 y: self.surface().cursor.1,
361 },
362 event_time,
363 )
364 .with_buttons(self.surface().buttons_pressed)
365 .with_source(self.surface().pointer_source);
366
367 let mut delivered_capture_paths = Vec::new();
368 let (app, surface) = self.parts();
369 let mut applier = app.composition.applier_mut();
370 for hit in hits {
371 let node_id = hit.node_id();
372 delivered_capture_paths.push(hit.capture_path());
373 hit.dispatch_with_applier(&mut applier, event.clone());
374 log::trace!(
375 target: "cranpose::input",
376 "dispatch {:?} node={} consumed={} stop_on_consume=true",
377 event.kind,
378 node_id,
379 event.is_consumed(),
380 );
381 if event.is_consumed() {
382 break;
383 }
384 }
385
386 surface
387 .hit_path_tracker
388 .add_hit_path(PointerId::PRIMARY, delivered_capture_paths);
389 log::trace!(
390 target: "cranpose::input",
391 "pointer_pressed_inner cached_hit_path={:?}",
392 surface.hit_path_tracker.get_path(PointerId::PRIMARY),
393 );
394
395 true
396 }
397 }
398
399 pub fn pointer_released(&mut self) -> bool {
400 self.pointer_released_at_time(None)
401 }
402
403 pub fn pointer_released_at_position(&mut self, x: f32, y: f32) -> bool {
416 self.pointer_released_at_position_time(x, y, None)
417 }
418
419 pub fn pointer_released_at_position_time(
423 &mut self,
424 x: f32,
425 y: f32,
426 time_ms: Option<i64>,
427 ) -> bool {
428 let event_time = self.shell.app.realtime_pointer_event_time(time_ms);
429 self.pointer_released_at_position_event_time(x, y, event_time)
430 }
431
432 pub fn pointer_released_at_position_event_time(
434 &mut self,
435 x: f32,
436 y: f32,
437 event_time: PointerEventTime,
438 ) -> bool {
439 let _event_handler = enter_event_handler_scope();
440 let app_context = Rc::clone(&self.shell.app.app_context);
441 let result = app_context.enter(|| {
442 run_in_mutable_snapshot(|| {
443 self.surface_mut().cursor = (x, y);
444 self.pointer_released_inner(event_time)
445 })
446 .unwrap_or(false)
447 });
448 self.route_drag_and_drop();
449 if result {
450 self.mark_dirty();
451 }
452 log::trace!(
453 target: "cranpose::input",
454 "pointer_released_at_position ({x:.2},{y:.2}) time_ms={:?} animation_time_nanos={} -> {result}",
455 event_time.platform_time_ms,
456 event_time.animation_time_nanos,
457 );
458 result
459 }
460
461 pub fn pointer_released_at_time(&mut self, time_ms: Option<i64>) -> bool {
464 let event_time = self.shell.app.realtime_pointer_event_time(time_ms);
465 self.pointer_released_at_event_time(event_time)
466 }
467
468 pub fn pointer_released_at_event_time(&mut self, event_time: PointerEventTime) -> bool {
470 let _event_handler = enter_event_handler_scope();
471 let app_context = Rc::clone(&self.shell.app.app_context);
472 let result = app_context.enter(|| {
473 run_in_mutable_snapshot(|| self.pointer_released_inner(event_time)).unwrap_or(false)
474 });
475 self.route_drag_and_drop();
476 if result {
477 self.mark_dirty();
478 }
479 log::trace!(
480 target: "cranpose::input",
481 "pointer_released time_ms={:?} animation_time_nanos={} -> {result}",
482 event_time.platform_time_ms,
483 event_time.animation_time_nanos,
484 );
485 result
486 }
487
488 fn pointer_released_inner(&mut self, event_time: PointerEventTime) -> bool {
489 if self.surface_mut().inspector.release_pointer() {
490 return true;
491 }
492 self.release_app_pointer(event_time)
493 }
494
495 fn release_app_pointer(&mut self, event_time: PointerEventTime) -> bool {
496 self.surface_mut()
497 .buttons_pressed
498 .remove(PointerButton::Primary);
499 let corrected_buttons = self.surface().buttons_pressed;
500 let targets = self.resolve_gesture_targets(PointerId::PRIMARY);
501
502 self.surface_mut()
503 .hit_path_tracker
504 .remove_path(PointerId::PRIMARY);
505
506 if !targets.is_empty() {
507 let event = self
508 .pointer_event(
509 PointerEventKind::Up,
510 Point {
511 x: self.surface().cursor.0,
512 y: self.surface().cursor.1,
513 },
514 Point {
515 x: self.surface().cursor.0,
516 y: self.surface().cursor.1,
517 },
518 event_time,
519 )
520 .with_buttons(corrected_buttons)
521 .with_source(self.surface().pointer_source);
522
523 self.dispatch_targets(targets, event, false);
524 true
525 } else {
526 false
527 }
528 }
529
530 pub fn secondary_pointer_pressed(
539 &mut self,
540 pointer_id: u64,
541 x: f32,
542 y: f32,
543 time_ms: Option<i64>,
544 ) -> bool {
545 let event_time = self.shell.app.realtime_pointer_event_time(time_ms);
546 self.dispatch_secondary_pointer(PointerEventKind::Down, pointer_id, x, y, event_time)
547 }
548
549 pub fn secondary_pointer_moved(
551 &mut self,
552 pointer_id: u64,
553 x: f32,
554 y: f32,
555 time_ms: Option<i64>,
556 ) -> bool {
557 let event_time = self.shell.app.realtime_pointer_event_time(time_ms);
558 self.dispatch_secondary_pointer(PointerEventKind::Move, pointer_id, x, y, event_time)
559 }
560
561 pub fn secondary_pointer_released(
563 &mut self,
564 pointer_id: u64,
565 x: f32,
566 y: f32,
567 time_ms: Option<i64>,
568 ) -> bool {
569 let event_time = self.shell.app.realtime_pointer_event_time(time_ms);
570 self.dispatch_secondary_pointer(PointerEventKind::Up, pointer_id, x, y, event_time)
571 }
572
573 fn dispatch_secondary_pointer(
574 &mut self,
575 kind: PointerEventKind,
576 pointer_id: u64,
577 x: f32,
578 y: f32,
579 event_time: PointerEventTime,
580 ) -> bool {
581 if pointer_id == 0 {
582 log::warn!(
583 target: "cranpose::input",
584 "secondary pointer dispatch called with the primary pointer id"
585 );
586 return false;
587 }
588
589 let _event_handler = enter_event_handler_scope();
590 let app_context = Rc::clone(&self.shell.app.app_context);
591 let result = app_context.enter(|| {
592 run_in_mutable_snapshot(|| {
593 if !self.surface().hit_path_tracker.has_path(PointerId::PRIMARY) {
594 return false;
595 }
596 let targets = self.resolve_gesture_targets(PointerId::PRIMARY);
597 if targets.is_empty() {
598 return false;
599 }
600 let pos = Point { x, y };
601 let event = self
602 .pointer_event(kind, pos, pos, event_time)
603 .with_buttons(self.surface().buttons_pressed)
604 .with_id(pointer_id)
605 .with_source(self.surface().pointer_source);
606 self.dispatch_targets(targets, event, false);
607 true
608 })
609 .unwrap_or(false)
610 });
611 if result {
612 self.mark_dirty();
613 }
614 log::trace!(
615 target: "cranpose::input",
616 "secondary_pointer {kind:?} id={pointer_id} ({x:.2},{y:.2}) time_ms={:?} animation_time_nanos={} -> {result}",
617 event_time.platform_time_ms,
618 event_time.animation_time_nanos,
619 );
620 result
621 }
622
623 pub fn pointer_zoomed(&mut self, zoom_factor: f32) -> bool {
629 let event_time = self.shell.app.realtime_pointer_event_time(None);
630 let _event_handler = enter_event_handler_scope();
631 let app_context = Rc::clone(&self.shell.app.app_context);
632 let result = app_context.enter(|| {
633 run_in_mutable_snapshot(|| self.pointer_zoomed_inner(zoom_factor, event_time))
634 .unwrap_or(false)
635 });
636 if result {
637 self.mark_dirty();
638 }
639 log::trace!(
640 target: "cranpose::input",
641 "pointer_zoomed factor={zoom_factor:.4} -> {result}"
642 );
643 result
644 }
645
646 fn pointer_zoomed_inner(&mut self, zoom_factor: f32, event_time: PointerEventTime) -> bool {
647 if !zoom_factor.is_finite() || zoom_factor <= 0.0 || zoom_factor == 1.0 {
648 return false;
649 }
650
651 let hits = self
652 .surface()
653 .renderer
654 .scene()
655 .hit_test(self.surface().cursor.0, self.surface().cursor.1);
656 if hits.is_empty() {
657 return false;
658 }
659
660 let pos = Point {
661 x: self.surface().cursor.0,
662 y: self.surface().cursor.1,
663 };
664 let event = self
665 .pointer_event(PointerEventKind::Zoom, pos, pos, event_time)
666 .with_buttons(self.surface().buttons_pressed)
667 .with_zoom_delta(zoom_factor)
668 .with_source(self.surface().pointer_source);
669
670 self.dispatch_to_hits(&hits, event)
671 }
672
673 pub fn wheel_scrolled(&mut self, wheel: crate::WheelScroll) -> bool {
698 if self.inspector_scroll(wheel.delta.y) {
699 return true;
700 }
701 if wheel.is_zoom() {
702 let zoom_factor = wheel.zoom_factor();
703 log::trace!(
704 target: "cranpose::input",
705 "wheel zoom factor={zoom_factor:.4}"
706 );
707 return self.pointer_zoomed(zoom_factor);
708 }
709
710 let rotary =
711 RotaryScrollEvent::from_wheel_pixels(wheel.delta.y, wheel.delta.x, wheel.uptime_millis);
712 if self.rotary_scrolled(rotary) {
713 return true;
714 }
715
716 let delta = wheel.scroll_delta();
717 log::trace!(
718 target: "cranpose::input",
719 "wheel delta ({:.2},{:.2}) alt={}",
720 delta.x,
721 delta.y,
722 wheel.modifiers.alt
723 );
724 self.pointer_scrolled(delta.x, delta.y)
725 }
726
727 pub fn pointer_scrolled(&mut self, delta_x: f32, delta_y: f32) -> bool {
735 if self.inspector_scroll(delta_y) {
736 return true;
737 }
738 let event_time = self.shell.app.realtime_pointer_event_time(None);
739 let _event_handler = enter_event_handler_scope();
740 let app_context = Rc::clone(&self.shell.app.app_context);
741 let result = app_context.enter(|| {
742 run_in_mutable_snapshot(|| self.pointer_scrolled_inner(delta_x, delta_y, event_time))
743 .unwrap_or(false)
744 });
745 if result {
746 self.mark_dirty();
747 }
748 log::trace!(
749 target: "cranpose::input",
750 "pointer_scrolled ({delta_x:.2},{delta_y:.2}) -> {result}"
751 );
752 result
753 }
754
755 fn pointer_scrolled_inner(
756 &mut self,
757 delta_x: f32,
758 delta_y: f32,
759 event_time: PointerEventTime,
760 ) -> bool {
761 if delta_x.abs() <= f32::EPSILON && delta_y.abs() <= f32::EPSILON {
762 return false;
763 }
764
765 let hits = self
766 .surface()
767 .renderer
768 .scene()
769 .hit_test(self.surface().cursor.0, self.surface().cursor.1);
770 if hits.is_empty() {
771 return false;
772 }
773
774 let event = self
775 .pointer_event(
776 PointerEventKind::Scroll,
777 Point {
778 x: self.surface().cursor.0,
779 y: self.surface().cursor.1,
780 },
781 Point {
782 x: self.surface().cursor.0,
783 y: self.surface().cursor.1,
784 },
785 event_time,
786 )
787 .with_buttons(self.surface().buttons_pressed)
788 .with_scroll_delta(Point {
789 x: delta_x,
790 y: delta_y,
791 })
792 .with_source(self.surface().pointer_source);
793
794 self.dispatch_to_hits(&hits, event)
795 }
796
797 pub fn set_on_rotary_scroll<F>(&mut self, handler: F)
808 where
809 F: Fn(RotaryScrollEvent) -> bool + 'static,
810 {
811 self.surface_mut().on_rotary_scroll = Some(Rc::new(handler));
812 }
813
814 pub fn clear_on_rotary_scroll(&mut self) {
816 self.surface_mut().on_rotary_scroll = None;
817 }
818
819 pub fn rotary_scrolled_by_detents(&mut self, detents: f32, uptime_millis: u64) -> bool {
825 let factor = self.shell.app.rotary_scroll_factor;
826 self.rotary_scrolled(RotaryScrollEvent::from_detents(
827 detents,
828 factor,
829 factor,
830 uptime_millis,
831 ))
832 }
833
834 pub fn rotary_scrolled(&mut self, event: RotaryScrollEvent) -> bool {
855 let _event_handler = enter_event_handler_scope();
856 let app_context = Rc::clone(&self.shell.app.app_context);
857 let result = app_context.enter(|| {
858 run_in_mutable_snapshot(|| self.rotary_scrolled_inner(event)).unwrap_or(false)
859 });
860 if result {
861 self.mark_dirty();
862 }
863 log::trace!(
864 target: "cranpose::input",
865 "rotary_scrolled v={:.2} h={:.2} uptime={} -> {result}",
866 event.vertical_scroll_pixels,
867 event.horizontal_scroll_pixels,
868 event.uptime_millis,
869 );
870 result
871 }
872
873 fn rotary_scrolled_inner(&mut self, rotary: RotaryScrollEvent) -> bool {
874 if rotary.is_empty() {
875 return false;
876 }
877
878 let bubble_order = self.rotary_dispatch_order();
879 let position = Point {
880 x: self.surface().cursor.0,
881 y: self.surface().cursor.1,
882 };
883
884 if !bubble_order.is_empty() {
885 let capture_targets = bubble_order
886 .iter()
887 .rev()
888 .filter_map(|&node_id| self.surface().renderer.scene().find_target(node_id))
889 .collect::<Vec<_>>();
890 let mut capture_event =
891 PointerEvent::rotary(PointerEventKind::RotaryScrollPre, rotary, position);
892 capture_event.modifiers = self.shell.app.modifiers;
893 self.dispatch_targets(capture_targets, capture_event.clone(), true);
894 if capture_event.is_consumed() {
895 return true;
896 }
897
898 let bubble_targets = bubble_order
899 .iter()
900 .filter_map(|&node_id| self.surface().renderer.scene().find_target(node_id))
901 .collect::<Vec<_>>();
902 let mut bubble_event =
903 PointerEvent::rotary(PointerEventKind::RotaryScroll, rotary, position);
904 bubble_event.modifiers = self.shell.app.modifiers;
905 self.dispatch_targets(bubble_targets, bubble_event.clone(), true);
906 if bubble_event.is_consumed() {
907 return true;
908 }
909 }
910
911 if let Some(handler) = self.surface().on_rotary_scroll.clone() {
912 return handler(rotary);
913 }
914
915 false
916 }
917
918 fn rotary_dispatch_order(&self) -> Vec<NodeId> {
919 if let Some(focused) = cranpose_ui::active_focus_target()
920 && let Some(target) = self.surface().renderer.scene().find_target(focused)
921 {
922 let path = target.capture_path();
923 if !path.is_empty() {
924 return crate::hit_path_tracker::dispatch_order_for_paths(&[path]);
925 }
926 }
927
928 let hits = self
929 .surface()
930 .renderer
931 .scene()
932 .hit_test(self.surface().cursor.0, self.surface().cursor.1);
933 if hits.is_empty() {
934 return Vec::new();
935 }
936 let capture_paths = hits
937 .iter()
938 .map(cranpose_render_common::HitTestTarget::capture_path)
939 .collect::<Vec<_>>();
940 crate::hit_path_tracker::dispatch_order_for_paths(&capture_paths)
941 }
942
943 pub fn cancel_gesture(&mut self) {
949 let event_time = self.shell.app.realtime_pointer_event_time(None);
950 let _event_handler = enter_event_handler_scope();
951 let app_context = Rc::clone(&self.shell.app.app_context);
952 let _ = app_context.enter(|| {
953 run_in_mutable_snapshot(|| {
954 self.cancel_gesture_inner(event_time);
955 })
956 });
957 self.route_drag_and_drop();
958 }
959
960 fn route_drag_and_drop(&mut self) {
961 let app_context = Rc::clone(&self.shell.app.app_context);
962 let source = self.index;
963 let shell = &mut *self.shell;
964 let routed = app_context.enter(|| {
965 run_in_mutable_snapshot(|| {
966 app_context
967 .drag_and_drop()
968 .route(|point| shell.drag_and_drop_target_at(point, source))
969 })
970 .unwrap_or(false)
971 });
972 if routed {
973 shell.mark_all_dirty();
974 }
975 }
976
977 pub fn cancel_gesture_unless_pressed(&mut self) {
986 if self.surface().buttons_pressed != PointerButtons::NONE
987 || self.surface().inspector.pointer_captured
988 {
989 return;
990 }
991 self.cancel_gesture();
992 }
993
994 fn cancel_gesture_inner(&mut self, event_time: PointerEventTime) {
995 self.surface_mut().inspector.cancel_pointer();
996 let targets = self.resolve_gesture_targets(PointerId::PRIMARY);
997
998 self.surface_mut().hit_path_tracker.clear();
999 self.surface_mut().buttons_pressed = PointerButtons::NONE;
1000
1001 if !targets.is_empty() {
1002 let event = self
1003 .pointer_event(
1004 PointerEventKind::Cancel,
1005 Point {
1006 x: self.surface().cursor.0,
1007 y: self.surface().cursor.1,
1008 },
1009 Point {
1010 x: self.surface().cursor.0,
1011 y: self.surface().cursor.1,
1012 },
1013 event_time,
1014 )
1015 .with_source(self.surface().pointer_source);
1016
1017 self.dispatch_targets(targets, event, false);
1018 }
1019
1020 let pos = Point {
1021 x: self.surface().cursor.0,
1022 y: self.surface().cursor.1,
1023 };
1024 let hovered_nodes = self.surface().hovered_nodes.clone();
1025 for node_id in hovered_nodes {
1026 if let Some(target) = self.surface().renderer.scene().find_target(node_id) {
1027 let exit_event = self
1028 .pointer_event(PointerEventKind::Exit, pos, pos, event_time)
1029 .with_source(self.surface().pointer_source);
1030 self.dispatch_targets(std::iter::once(target), exit_event, false);
1031 }
1032 }
1033 self.surface_mut().hovered_nodes.clear();
1034 self.surface().pointer_icon.set(PointerIcon::DEFAULT);
1035 }
1036
1037 fn apply_hovered_pointer_icon(
1038 &self,
1039 hits: &[<<R as Renderer>::Scene as RenderScene>::HitTarget],
1040 ) {
1041 let icon = hits
1042 .iter()
1043 .find_map(HitTestTarget::pointer_icon)
1044 .unwrap_or(PointerIcon::DEFAULT);
1045 self.surface().pointer_icon.set(icon);
1046 }
1047
1048 fn on_focus_key(&mut self, event: &KeyEvent) -> bool {
1049 if !plain_key_down(event) || event.key_code != KeyCode::Tab {
1050 return false;
1051 }
1052 self.on_group_navigation_key(event)
1053 }
1054
1055 fn on_group_navigation_key(&mut self, event: &KeyEvent) -> bool {
1056 let focused = cranpose_ui::active_focus_target();
1057 let target = self.with_layout_tree(|tree| {
1058 cranpose_ui::keyboard_focus_target(
1059 tree?,
1060 focused,
1061 event.key_code,
1062 event.modifiers.shift,
1063 )
1064 });
1065 let Some(target) = target else {
1066 return false;
1067 };
1068 let moved =
1069 run_in_mutable_snapshot(|| cranpose_ui::request_focus_from_platform(target.node_id))
1070 .unwrap_or(false);
1071 if moved {
1072 self.mark_dirty();
1073 self.note_focus_moved_by_keyboard(true);
1074 if target.activate {
1075 self.on_activation_key(&KeyEvent::key_down(KeyCode::Space, " "));
1076 }
1077 }
1078 moved
1079 }
1080
1081 fn on_activation_key(&mut self, event: &KeyEvent) -> bool {
1082 if !plain_key_down(event)
1083 || !matches!(event.key_code, KeyCode::Enter | KeyCode::Space)
1084 || cranpose_ui::text_field_focus::has_focused_field()
1085 {
1086 return false;
1087 }
1088 let Some(focused) = cranpose_ui::active_focus_target() else {
1089 return false;
1090 };
1091 let activated = self.accessibility_activate(focused, None);
1092 self.note_focus_moved_by_keyboard(true);
1093 activated
1094 }
1095
1096 fn on_arrow_key(&mut self, event: &KeyEvent) -> bool {
1097 if !plain_key_down(event) || cranpose_ui::text_field_focus::has_focused_field() {
1098 return false;
1099 }
1100 if self.on_group_navigation_key(event) {
1101 return true;
1102 }
1103 let direction = match event.key_code {
1104 KeyCode::ArrowLeft => FocusDirection::Left,
1105 KeyCode::ArrowRight => FocusDirection::Right,
1106 KeyCode::ArrowUp => FocusDirection::Up,
1107 KeyCode::ArrowDown => FocusDirection::Down,
1108 _ => return false,
1109 };
1110 let Some(focused) = cranpose_ui::active_focus_target() else {
1111 return false;
1112 };
1113 let order = self.with_layout_tree(|layout_tree| {
1114 let layout_tree = layout_tree?;
1115 let group = cranpose_ui::selectable_group_of(layout_tree, focused)?;
1116 Some(cranpose_ui::collect_focus_order_under(layout_tree, group))
1117 });
1118 order.is_some_and(|order| self.move_focus_in_order(order, direction))
1119 }
1120
1121 fn note_focus_moved_by_keyboard(&mut self, keyboard: bool) {
1122 if cranpose_ui::set_keyboard_focus_visible(keyboard) {
1123 cranpose_ui::request_render_invalidation();
1124 self.mark_dirty();
1125 }
1126 }
1127
1128 fn on_escape_key(&mut self, event: &KeyEvent) -> bool {
1129 if event.event_type != KeyEventType::KeyDown || event.key_code != KeyCode::Escape {
1130 return false;
1131 }
1132 self.dismiss_top_modal_in_context()
1133 }
1134
1135 pub fn dismiss_top_modal(&mut self) -> bool {
1138 let _event_handler = enter_event_handler_scope();
1139 let app_context = Rc::clone(&self.shell.app.app_context);
1140 app_context.enter(|| self.dismiss_top_modal_in_context())
1141 }
1142
1143 fn dismiss_top_modal_in_context(&mut self) -> bool {
1144 let closed = run_in_mutable_snapshot(|| {
1145 if cranpose_ui::modal_depth() > 0 {
1146 cranpose_ui::dispatch_modal_back()
1147 } else {
1148 cranpose_ui::dismiss_top_popup()
1149 }
1150 })
1151 .unwrap_or(false);
1152 if closed {
1153 self.mark_dirty();
1154 }
1155 closed
1156 }
1157
1158 pub fn move_focus_in_context(&mut self, direction: FocusDirection) -> bool {
1161 let order = self.with_layout_tree(|layout_tree| {
1162 layout_tree
1163 .map(cranpose_ui::collect_focus_order)
1164 .unwrap_or_default()
1165 });
1166 self.move_focus_in_order(order, direction)
1167 }
1168
1169 fn move_focus_in_order(
1170 &mut self,
1171 order: Vec<cranpose_ui::FocusEntry>,
1172 direction: FocusDirection,
1173 ) -> bool {
1174 cranpose_ui::set_focus_order(order);
1175 let moved = run_in_mutable_snapshot(|| cranpose_ui::FocusManager.move_focus(direction))
1176 .unwrap_or(false);
1177 if moved {
1178 self.mark_dirty();
1179 self.note_focus_moved_by_keyboard(true);
1180 }
1181 moved
1182 }
1183
1184 pub fn on_key_event(&mut self, event: &KeyEvent) -> bool {
1185 let _event_handler = enter_event_handler_scope();
1186 let app_context = Rc::clone(&self.shell.app.app_context);
1187 app_context.enter(|| self.on_key_event_inner(event))
1188 }
1189
1190 fn on_key_event_inner(&mut self, event: &KeyEvent) -> bool {
1191 if self.inspector_key(event) {
1192 return true;
1193 }
1194 use KeyEventType::KeyDown;
1195
1196 if event.event_type == KeyDown && event.modifiers.command_or_ctrl() {
1197 #[cfg(all(
1198 feature = "clipboard-native",
1199 not(target_arch = "wasm32"),
1200 not(target_os = "android"),
1201 not(target_os = "ios")
1202 ))]
1203 {
1204 match event.key_code {
1205 KeyCode::C => {
1206 if let Some(text) = self.on_copy_inner() {
1207 cranpose_ui::clipboard_session::clipboard_write_text(&text);
1208 return true;
1209 }
1210 }
1211 KeyCode::X => {
1212 if let Some(text) = self.on_cut_inner() {
1213 cranpose_ui::clipboard_session::clipboard_write_text(&text);
1214 self.mark_dirty();
1215 self.shell.app.request_layout_pass();
1216 return true;
1217 }
1218 }
1219 KeyCode::V => {
1220 if let Some(text) = cranpose_ui::clipboard_session::clipboard_read_text()
1221 && self.on_paste_inner(&text)
1222 {
1223 return true;
1224 }
1225 }
1226 _ => {}
1227 }
1228 }
1229 }
1230
1231 if self.on_focus_key(event) {
1232 return true;
1233 }
1234
1235 if self.on_escape_key(event) {
1236 return true;
1237 }
1238
1239 if self.on_activation_key(event) || self.on_arrow_key(event) {
1240 return true;
1241 }
1242
1243 let handled = if cranpose_ui::text_field_focus::has_focused_field() {
1244 run_in_mutable_snapshot(|| cranpose_ui::text_field_focus::dispatch_key_event(event))
1245 } else {
1246 run_in_mutable_snapshot(|| cranpose_ui::dispatch_unhandled_key_event(event))
1247 }
1248 .unwrap_or(false);
1249
1250 if handled {
1251 self.mark_dirty();
1252 self.shell.app.request_layout_pass();
1253 }
1254
1255 handled
1256 }
1257
1258 pub fn on_paste(&mut self, text: &str) -> bool {
1262 if self.inspector_owns_keyboard() {
1263 return true;
1264 }
1265 let _event_handler = enter_event_handler_scope();
1266 let app_context = Rc::clone(&self.shell.app.app_context);
1267 app_context.enter(|| self.on_paste_inner(text))
1268 }
1269
1270 fn on_paste_inner(&mut self, text: &str) -> bool {
1271 let handled =
1272 run_in_mutable_snapshot(|| cranpose_ui::text_field_focus::dispatch_paste(text))
1273 .unwrap_or(false);
1274
1275 if handled {
1276 self.mark_dirty();
1277 self.shell.app.request_layout_pass();
1278 }
1279
1280 handled
1281 }
1282
1283 pub fn on_copy(&mut self) -> Option<String> {
1287 let app_context = Rc::clone(&self.shell.app.app_context);
1288 if self.inspector_owns_keyboard() {
1289 return None;
1290 }
1291 app_context.enter(|| self.on_copy_inner())
1292 }
1293
1294 fn on_copy_inner(&mut self) -> Option<String> {
1295 cranpose_ui::text_field_focus::dispatch_copy()
1296 }
1297
1298 pub fn on_cut(&mut self) -> Option<String> {
1302 let _event_handler = enter_event_handler_scope();
1303 if self.inspector_owns_keyboard() {
1304 return None;
1305 }
1306 let app_context = Rc::clone(&self.shell.app.app_context);
1307 app_context.enter(|| self.on_cut_inner())
1308 }
1309
1310 fn on_cut_inner(&mut self) -> Option<String> {
1311 let text =
1312 run_in_mutable_snapshot(cranpose_ui::text_field_focus::dispatch_cut).unwrap_or(None);
1313
1314 if text.is_some() {
1315 self.mark_dirty();
1316 self.shell.app.request_layout_pass();
1317 }
1318
1319 text
1320 }
1321
1322 pub fn on_ime_preedit(&mut self, text: &str, cursor: Option<(usize, usize)>) -> bool {
1330 if self.inspector_owns_keyboard() {
1331 return true;
1332 }
1333 let _event_handler = enter_event_handler_scope();
1334 let app_context = Rc::clone(&self.shell.app.app_context);
1335 app_context.enter(|| self.on_ime_preedit_inner(text, cursor))
1336 }
1337
1338 fn on_ime_preedit_inner(&mut self, text: &str, cursor: Option<(usize, usize)>) -> bool {
1339 let handled = run_in_mutable_snapshot(|| {
1340 cranpose_ui::text_field_focus::dispatch_ime_preedit(text, cursor)
1341 })
1342 .unwrap_or(false);
1343
1344 if handled {
1345 self.mark_dirty();
1346 self.shell.app.request_layout_pass();
1347 }
1348
1349 handled
1350 }
1351
1352 pub fn on_ime_finish_composing(&mut self) -> bool {
1356 if self.inspector_owns_keyboard() {
1357 return true;
1358 }
1359 let _event_handler = enter_event_handler_scope();
1360 let app_context = Rc::clone(&self.shell.app.app_context);
1361 app_context.enter(|| self.on_ime_finish_composing_inner())
1362 }
1363
1364 fn on_ime_finish_composing_inner(&mut self) -> bool {
1365 let handled =
1366 run_in_mutable_snapshot(cranpose_ui::text_field_focus::dispatch_ime_finish_composing)
1367 .unwrap_or(false);
1368
1369 if handled {
1370 self.mark_dirty();
1371 self.shell.app.request_layout_pass();
1372 }
1373
1374 handled
1375 }
1376
1377 pub fn on_ime_set_composing_region(&mut self, start_bytes: usize, end_bytes: usize) -> bool {
1381 if self.inspector_owns_keyboard() {
1382 return true;
1383 }
1384 let _event_handler = enter_event_handler_scope();
1385 let app_context = Rc::clone(&self.shell.app.app_context);
1386 app_context.enter(|| {
1387 let handled = run_in_mutable_snapshot(|| {
1388 cranpose_ui::text_field_focus::dispatch_ime_set_composing_region(
1389 start_bytes,
1390 end_bytes,
1391 )
1392 })
1393 .unwrap_or(false);
1394
1395 if handled {
1396 self.mark_dirty();
1397 self.shell.app.request_layout_pass();
1398 }
1399
1400 handled
1401 })
1402 }
1403
1404 pub fn on_ime_set_selection(&mut self, start_bytes: usize, end_bytes: usize) -> bool {
1409 if self.inspector_owns_keyboard() {
1410 return true;
1411 }
1412 let _event_handler = enter_event_handler_scope();
1413 let app_context = Rc::clone(&self.shell.app.app_context);
1414 app_context.enter(|| {
1415 let handled = run_in_mutable_snapshot(|| {
1416 cranpose_ui::text_field_focus::dispatch_ime_set_selection(start_bytes, end_bytes)
1417 })
1418 .unwrap_or(false);
1419
1420 if handled {
1421 self.mark_dirty();
1422 }
1423
1424 handled
1425 })
1426 }
1427
1428 pub fn ime_editor_state(&mut self) -> Option<cranpose_ui::text_field_focus::ImeEditorState> {
1432 let app_context = Rc::clone(&self.shell.app.app_context);
1433 app_context.enter(cranpose_ui::text_field_focus::focused_editor_state)
1434 }
1435
1436 pub fn ime_caret_geometry(
1440 &mut self,
1441 ) -> Option<cranpose_ui::text_field_focus::ImeCaretGeometry> {
1442 let app_context = Rc::clone(&self.shell.app.app_context);
1443 app_context.enter(cranpose_ui::text_field_focus::focused_caret_geometry)
1444 }
1445
1446 pub fn clear_text_field_focus(&mut self) {
1449 let _event_handler = enter_event_handler_scope();
1450 let app_context = Rc::clone(&self.shell.app.app_context);
1451 app_context.enter(cranpose_ui::text_field_focus::clear_focus);
1452 self.mark_dirty();
1453 self.shell.app.request_layout_pass();
1454 }
1455
1456 pub fn on_ime_delete_surrounding(&mut self, before_bytes: usize, after_bytes: usize) -> bool {
1459 if self.inspector_owns_keyboard() {
1460 return true;
1461 }
1462 let _event_handler = enter_event_handler_scope();
1463 let app_context = Rc::clone(&self.shell.app.app_context);
1464 app_context.enter(|| self.on_ime_delete_surrounding_inner(before_bytes, after_bytes))
1465 }
1466
1467 fn on_ime_delete_surrounding_inner(&mut self, before_bytes: usize, after_bytes: usize) -> bool {
1468 let handled = run_in_mutable_snapshot(|| {
1469 cranpose_ui::text_field_focus::dispatch_delete_surrounding(before_bytes, after_bytes)
1470 })
1471 .unwrap_or(false);
1472
1473 if handled {
1474 self.mark_dirty();
1475 self.shell.app.request_layout_pass();
1476 }
1477
1478 handled
1479 }
1480}
1481
1482impl<R> AppShell<R>
1483where
1484 R: Renderer,
1485 R::Error: Debug,
1486{
1487 pub fn set_modifiers(&mut self, modifiers: Modifiers) {
1496 self.app.modifiers = Some(modifiers);
1497 }
1498
1499 pub fn modifiers(&self) -> Option<Modifiers> {
1503 self.app.modifiers
1504 }
1505
1506 pub fn rotary_scroll_factor(&self) -> f32 {
1509 self.app.rotary_scroll_factor
1510 }
1511
1512 pub fn set_rotary_scroll_factor(&mut self, factor: f32) {
1521 if factor.is_finite() && factor > 0.0 {
1522 self.app.rotary_scroll_factor = factor;
1523 }
1524 }
1525
1526 pub fn notify_app_paused(&mut self) {
1533 let app_context = Rc::clone(&self.app.app_context);
1534 app_context.enter(cranpose_ui::text_input_session::notify_app_paused);
1535 }
1536
1537 pub fn notify_app_resumed(&mut self) -> bool {
1545 let app_context = Rc::clone(&self.app.app_context);
1546 app_context.enter(cranpose_ui::text_input_session::notify_app_resumed)
1547 }
1548
1549 #[cfg(all(
1550 feature = "clipboard-native",
1551 target_os = "linux",
1552 not(target_arch = "wasm32")
1553 ))]
1554 pub fn set_primary_selection(&mut self, text: &str) {
1555 use arboard::{LinuxClipboardKind, SetExtLinux};
1556 if let Some(ref mut clipboard) = self.app.clipboard {
1557 let result = clipboard
1558 .set()
1559 .clipboard(LinuxClipboardKind::Primary)
1560 .text(text.to_string());
1561 if let Err(e) = result {
1562 log::debug!("Primary selection set failed: {e:?}");
1563 }
1564 }
1565 }
1566
1567 #[cfg(not(all(
1568 feature = "clipboard-native",
1569 target_os = "linux",
1570 not(target_arch = "wasm32")
1571 )))]
1572 pub fn set_primary_selection(&mut self, _text: &str) {}
1573
1574 #[cfg(all(
1575 feature = "clipboard-native",
1576 target_os = "linux",
1577 not(target_arch = "wasm32")
1578 ))]
1579 pub fn get_primary_selection(&mut self) -> Option<String> {
1580 use arboard::{GetExtLinux, LinuxClipboardKind};
1581 if let Some(ref mut clipboard) = self.app.clipboard {
1582 clipboard
1583 .get()
1584 .clipboard(LinuxClipboardKind::Primary)
1585 .text()
1586 .ok()
1587 } else {
1588 None
1589 }
1590 }
1591
1592 #[cfg(not(all(
1593 feature = "clipboard-native",
1594 target_os = "linux",
1595 not(target_arch = "wasm32")
1596 )))]
1597 pub fn get_primary_selection(&mut self) -> Option<String> {
1598 None
1599 }
1600
1601 pub fn sync_selection_to_primary(&mut self) {
1604 #[cfg(all(target_os = "linux", not(target_arch = "wasm32")))]
1605 {
1606 if let Some(text) = self.on_copy() {
1607 self.set_primary_selection(&text);
1608 }
1609 }
1610 }
1611
1612 pub fn set_pointer_source(&mut self, source: PointerSource) {
1614 self.primary().set_pointer_source(source);
1615 }
1616
1617 pub fn pointer_source(&self) -> PointerSource {
1619 self.surfaces[0].pointer_source
1620 }
1621
1622 pub fn set_cursor(&mut self, x: f32, y: f32) -> bool {
1624 self.primary().set_cursor(x, y)
1625 }
1626
1627 pub fn set_cursor_at_time(&mut self, x: f32, y: f32, time_ms: Option<i64>) -> bool {
1629 self.primary().set_cursor_at_time(x, y, time_ms)
1630 }
1631
1632 pub fn set_cursor_at_event_time(
1634 &mut self,
1635 x: f32,
1636 y: f32,
1637 event_time: PointerEventTime,
1638 ) -> bool {
1639 self.primary().set_cursor_at_event_time(x, y, event_time)
1640 }
1641
1642 pub fn pointer_pressed(&mut self) -> bool {
1644 self.primary().pointer_pressed()
1645 }
1646
1647 pub fn accessibility_activate(&mut self, node_id: NodeId, canvas_key: Option<u64>) -> bool {
1649 self.primary().accessibility_activate(node_id, canvas_key)
1650 }
1651
1652 pub fn pointer_pressed_at_time(&mut self, time_ms: Option<i64>) -> bool {
1654 self.primary().pointer_pressed_at_time(time_ms)
1655 }
1656
1657 pub fn pointer_pressed_at_event_time(&mut self, event_time: PointerEventTime) -> bool {
1659 self.primary().pointer_pressed_at_event_time(event_time)
1660 }
1661
1662 pub fn pointer_released(&mut self) -> bool {
1664 self.primary().pointer_released()
1665 }
1666
1667 pub fn pointer_released_at_position(&mut self, x: f32, y: f32) -> bool {
1669 self.primary().pointer_released_at_position(x, y)
1670 }
1671
1672 pub fn pointer_released_at_position_time(
1675 &mut self,
1676 x: f32,
1677 y: f32,
1678 time_ms: Option<i64>,
1679 ) -> bool {
1680 self.primary()
1681 .pointer_released_at_position_time(x, y, time_ms)
1682 }
1683
1684 pub fn pointer_released_at_position_event_time(
1687 &mut self,
1688 x: f32,
1689 y: f32,
1690 event_time: PointerEventTime,
1691 ) -> bool {
1692 self.primary()
1693 .pointer_released_at_position_event_time(x, y, event_time)
1694 }
1695
1696 pub fn pointer_released_at_time(&mut self, time_ms: Option<i64>) -> bool {
1698 self.primary().pointer_released_at_time(time_ms)
1699 }
1700
1701 pub fn pointer_released_at_event_time(&mut self, event_time: PointerEventTime) -> bool {
1703 self.primary().pointer_released_at_event_time(event_time)
1704 }
1705
1706 pub fn secondary_pointer_pressed(
1708 &mut self,
1709 pointer_id: u64,
1710 x: f32,
1711 y: f32,
1712 time_ms: Option<i64>,
1713 ) -> bool {
1714 self.primary()
1715 .secondary_pointer_pressed(pointer_id, x, y, time_ms)
1716 }
1717
1718 pub fn secondary_pointer_moved(
1720 &mut self,
1721 pointer_id: u64,
1722 x: f32,
1723 y: f32,
1724 time_ms: Option<i64>,
1725 ) -> bool {
1726 self.primary()
1727 .secondary_pointer_moved(pointer_id, x, y, time_ms)
1728 }
1729
1730 pub fn secondary_pointer_released(
1732 &mut self,
1733 pointer_id: u64,
1734 x: f32,
1735 y: f32,
1736 time_ms: Option<i64>,
1737 ) -> bool {
1738 self.primary()
1739 .secondary_pointer_released(pointer_id, x, y, time_ms)
1740 }
1741
1742 pub fn pointer_zoomed(&mut self, zoom_factor: f32) -> bool {
1744 self.primary().pointer_zoomed(zoom_factor)
1745 }
1746
1747 pub fn wheel_scrolled(&mut self, wheel: crate::WheelScroll) -> bool {
1749 self.primary().wheel_scrolled(wheel)
1750 }
1751
1752 pub fn pointer_scrolled(&mut self, delta_x: f32, delta_y: f32) -> bool {
1754 self.primary().pointer_scrolled(delta_x, delta_y)
1755 }
1756
1757 pub fn set_on_rotary_scroll<F>(&mut self, handler: F)
1759 where
1760 F: Fn(RotaryScrollEvent) -> bool + 'static,
1761 {
1762 self.primary().set_on_rotary_scroll(handler);
1763 }
1764
1765 pub fn clear_on_rotary_scroll(&mut self) {
1767 self.primary().clear_on_rotary_scroll();
1768 }
1769
1770 pub fn rotary_scrolled_by_detents(&mut self, detents: f32, uptime_millis: u64) -> bool {
1772 self.primary()
1773 .rotary_scrolled_by_detents(detents, uptime_millis)
1774 }
1775
1776 pub fn rotary_scrolled(&mut self, event: RotaryScrollEvent) -> bool {
1778 self.primary().rotary_scrolled(event)
1779 }
1780
1781 pub fn cancel_gesture(&mut self) {
1783 self.primary().cancel_gesture();
1784 }
1785
1786 pub fn cancel_gesture_unless_pressed(&mut self) {
1788 self.primary().cancel_gesture_unless_pressed();
1789 }
1790
1791 pub fn refresh_pointer_icon(&self) {
1795 self.surfaces[0].pointer_icon.refresh();
1796 }
1797
1798 pub fn take_pointer_icon_change(&self) -> Option<PointerIcon> {
1805 self.surfaces[0].pointer_icon.take_change()
1806 }
1807
1808 pub fn set_platform_text_input(
1815 &mut self,
1816 handler: Rc<dyn cranpose_ui::PlatformTextInputHandler>,
1817 ) {
1818 self.primary().set_platform_text_input(handler);
1819 }
1820
1821 pub fn dismiss_top_modal(&mut self) -> bool {
1823 self.primary().dismiss_top_modal()
1824 }
1825
1826 pub fn move_focus_in_context(&mut self, direction: FocusDirection) -> bool {
1828 self.primary().move_focus_in_context(direction)
1829 }
1830
1831 pub fn on_key_event(&mut self, event: &KeyEvent) -> bool {
1833 self.primary().on_key_event(event)
1834 }
1835
1836 pub fn on_paste(&mut self, text: &str) -> bool {
1838 self.primary().on_paste(text)
1839 }
1840
1841 pub fn on_copy(&mut self) -> Option<String> {
1843 self.primary().on_copy()
1844 }
1845
1846 pub fn on_cut(&mut self) -> Option<String> {
1848 self.primary().on_cut()
1849 }
1850
1851 pub fn on_ime_preedit(&mut self, text: &str, cursor: Option<(usize, usize)>) -> bool {
1853 self.primary().on_ime_preedit(text, cursor)
1854 }
1855
1856 pub fn on_ime_finish_composing(&mut self) -> bool {
1858 self.primary().on_ime_finish_composing()
1859 }
1860
1861 pub fn on_ime_set_composing_region(&mut self, start_bytes: usize, end_bytes: usize) -> bool {
1863 self.primary()
1864 .on_ime_set_composing_region(start_bytes, end_bytes)
1865 }
1866
1867 pub fn on_ime_set_selection(&mut self, start_bytes: usize, end_bytes: usize) -> bool {
1869 self.primary().on_ime_set_selection(start_bytes, end_bytes)
1870 }
1871
1872 pub fn ime_editor_state(&mut self) -> Option<cranpose_ui::text_field_focus::ImeEditorState> {
1874 self.primary().ime_editor_state()
1875 }
1876
1877 pub fn ime_caret_geometry(
1879 &mut self,
1880 ) -> Option<cranpose_ui::text_field_focus::ImeCaretGeometry> {
1881 self.primary().ime_caret_geometry()
1882 }
1883
1884 pub fn clear_text_field_focus(&mut self) {
1886 self.primary().clear_text_field_focus();
1887 }
1888
1889 pub fn on_ime_delete_surrounding(&mut self, before_bytes: usize, after_bytes: usize) -> bool {
1891 self.primary()
1892 .on_ime_delete_surrounding(before_bytes, after_bytes)
1893 }
1894}
1895
1896enum ActivationTarget {
1897 Direct(cranpose_foundation::SemanticsCustomAction),
1898 Edit(NodeId),
1899 Pointer(NodeId, Option<Rect>),
1900}
1901
1902fn activation_target(
1903 node: &cranpose_ui::SemanticsNode,
1904 node_id: NodeId,
1905 canvas_key: Option<u64>,
1906) -> Option<ActivationTarget> {
1907 if node.hidden {
1908 return None;
1909 }
1910 if node.node_id != node_id {
1911 return node
1912 .children
1913 .iter()
1914 .find_map(|child| activation_target(child, node_id, canvas_key));
1915 }
1916 if !node.enabled {
1917 return None;
1918 }
1919 if let Some(key) = canvas_key {
1920 let child = node.canvas_children.iter().find(|child| child.key == key)?;
1921 return (child.enabled && child.clickable)
1922 .then_some(ActivationTarget::Pointer(node_id, Some(child.bounds)));
1923 }
1924 if let Some(action) = &node.on_click {
1925 return Some(ActivationTarget::Direct(action.clone()));
1926 }
1927 if node.editable_text && node.focusable {
1928 return Some(ActivationTarget::Edit(node_id));
1929 }
1930 node.actions.first().map(|action| match action {
1931 cranpose_ui::SemanticsAction::Click { handler } => {
1932 ActivationTarget::Pointer(handler.node_id(), None)
1933 }
1934 })
1935}
1936
1937fn activation_input(
1938 root: &LayoutBox,
1939 node_id: NodeId,
1940 canvas_bounds: Option<Rect>,
1941) -> Option<(Point, Point, Rc<cranpose_ui::ModifierNodeSlices>)> {
1942 if root.node_id != node_id {
1943 return root
1944 .children
1945 .iter()
1946 .find_map(|child| activation_input(child, node_id, canvas_bounds));
1947 }
1948 let bounds = canvas_bounds.map_or(root.rect, |bounds| Rect {
1949 x: root.rect.x + bounds.x,
1950 y: root.rect.y + bounds.y,
1951 ..bounds
1952 });
1953 let position = Point {
1954 x: bounds.x + bounds.width * 0.5,
1955 y: bounds.y + bounds.height * 0.5,
1956 };
1957 let local = Point {
1958 x: position.x - root.rect.x,
1959 y: position.y - root.rect.y,
1960 };
1961 (bounds.width > 0.0 && bounds.height > 0.0 && position.x.is_finite() && position.y.is_finite())
1962 .then(|| (position, local, Rc::clone(&root.node_data.modifier_slices)))
1963}
1964
1965fn plain_key_down(event: &KeyEvent) -> bool {
1966 event.event_type == KeyEventType::KeyDown
1967 && !event.modifiers.ctrl
1968 && !event.modifiers.meta
1969 && !event.modifiers.alt
1970}