1use std::{
2 cell::{Cell, Ref, RefCell, RefMut},
3 collections::HashMap,
4 rc::Rc,
5};
6
7use cranpose_core::{
8 Composer, NodeError, NodeId, Phase, SlotId, SlotTable, SlotsHost, SubcomposeState,
9};
10use cranpose_foundation::{
11 InvalidationKind, ModifierInvalidation, NodeCapabilities, SemanticsConfiguration,
12};
13pub use cranpose_ui_layout::{Constraints, MeasureResult, Placement};
14use smallvec::SmallVec;
15use web_time::Instant;
16
17use crate::{
18 layout::MeasuredNode,
19 modifier::{Modifier, ModifierChainHandle, ModifierNodeSlices, Point, ResolvedModifiers, Size},
20 widgets::nodes::{
21 LayoutNode, LayoutNodeCacheHandles, LayoutState, allocate_virtual_node_id, is_virtual_node,
22 register_layout_node,
23 },
24};
25
26fn subcompose_telemetry_enabled() -> bool {
27 cranpose_core::env_flag!("CRANPOSE_SUBCOMPOSE_TELEMETRY")
28}
29
30#[derive(Clone, Copy, Debug)]
31pub struct SubcomposeChild {
32 node_id: NodeId,
33 measured_size: Option<Size>,
34}
35
36impl SubcomposeChild {
37 pub fn new(node_id: NodeId) -> Self {
38 Self {
39 node_id,
40 measured_size: None,
41 }
42 }
43
44 pub fn with_size(node_id: NodeId, size: Size) -> Self {
45 Self {
46 node_id,
47 measured_size: Some(size),
48 }
49 }
50
51 pub fn node_id(&self) -> NodeId {
52 self.node_id
53 }
54
55 pub fn size(&self) -> Size {
56 self.measured_size.unwrap_or(Size {
57 width: 0.0,
58 height: 0.0,
59 })
60 }
61
62 pub fn width(&self) -> f32 {
63 self.size().width
64 }
65
66 pub fn height(&self) -> f32 {
67 self.size().height
68 }
69
70 pub fn set_size(&mut self, size: Size) {
71 self.measured_size = Some(size);
72 }
73}
74
75impl PartialEq for SubcomposeChild {
76 fn eq(&self, other: &Self) -> bool {
77 self.node_id == other.node_id
78 }
79}
80
81pub type SubcomposePlaceable = cranpose_ui_layout::Placeable;
82
83type CachedMeasureBatchRegistrar<'a> =
84 Box<dyn FnMut(&[NodeId], Constraints, &mut Vec<Option<Size>>) + 'a>;
85type RetainedMeasureLookup<'a> = Box<dyn FnMut(NodeId) -> Option<Rc<MeasuredNode>> + 'a>;
86type RetainedMeasureRegistrar<'a> = Box<dyn FnMut(&[Rc<MeasuredNode>]) + 'a>;
87
88pub(crate) struct CachedBatchMeasureInputs<'a> {
89 pub(crate) measurer: Box<dyn FnMut(NodeId, Constraints) -> Size + 'a>,
90 pub(crate) cached_measure_batch_registrar: CachedMeasureBatchRegistrar<'a>,
91 pub(crate) retained_measure_lookup: RetainedMeasureLookup<'a>,
92 pub(crate) retained_measure_registrar: RetainedMeasureRegistrar<'a>,
93 pub(crate) error: &'a RefCell<Option<NodeError>>,
94}
95
96pub trait SubcomposeLayoutScope: cranpose_ui_layout::MeasureScope {
98 fn constraints(&self) -> Constraints;
99
100 fn layout<I>(&mut self, width: f32, height: f32, placements: I) -> MeasureResult
101 where
102 I: IntoIterator<Item = Placement>,
103 {
104 MeasureResult::new(Size { width, height }, placements.into_iter().collect())
105 }
106}
107
108pub trait SubcomposeMeasureScope: SubcomposeLayoutScope {
110 fn subcompose<K, Content>(
125 &mut self,
126 slot_id: SlotId,
127 key: K,
128 content: Content,
129 ) -> Vec<SubcomposeChild>
130 where
131 K: PartialEq + 'static,
132 Content: FnMut() + 'static;
133
134 fn measure(&mut self, child: SubcomposeChild, constraints: Constraints) -> SubcomposePlaceable;
136
137 fn node_has_no_parent(&self, node_id: NodeId) -> bool;
140}
141
142pub struct SubcomposeMeasureScopeImpl<'a> {
144 composer: Composer,
145 density_scope: crate::density::DensityMeasureScope,
146 state: &'a mut SubcomposeState,
147 constraints: Constraints,
148 measurer: Box<dyn FnMut(NodeId, Constraints) -> Size + 'a>,
149 cached_measure_batch_registrar: CachedMeasureBatchRegistrar<'a>,
150 retained_measure_lookup: RetainedMeasureLookup<'a>,
151 retained_measure_registrar: RetainedMeasureRegistrar<'a>,
152 error: &'a RefCell<Option<NodeError>>,
153 parent_handle: SubcomposeLayoutNodeHandle,
154 root_id: NodeId,
155 placement_scratch: Vec<Placement>,
156 cached_measure_node_scratch: Vec<NodeId>,
157 cached_measure_size_scratch: Vec<Option<Size>>,
158 cached_measure_missing_scratch: Vec<NodeId>,
159 registered_measurement_node_ids: Vec<NodeId>,
160 pending_commands_applied: bool,
161 #[cfg(debug_assertions)]
162 shadow_stash: Option<(Vec<NodeId>, Vec<NodeId>)>,
163}
164
165thread_local! {
166 static CLEAN_SLOT_SKIPS: std::cell::Cell<u64> = const { std::cell::Cell::new(0) };
167}
168
169fn record_clean_slot_skip() {
170 CLEAN_SLOT_SKIPS.with(|count| count.set(count.get() + 1));
171}
172
173pub fn clean_slot_skip_count() -> u64 {
177 CLEAN_SLOT_SKIPS.with(Cell::get)
178}
179
180struct SubcomposeMeasureScopeInit<'a> {
181 composer: Composer,
182 density: crate::density::Density,
183 state: &'a mut SubcomposeState,
184 constraints: Constraints,
185 measurer: Box<dyn FnMut(NodeId, Constraints) -> Size + 'a>,
186 cached_measure_batch_registrar: CachedMeasureBatchRegistrar<'a>,
187 retained_measure_lookup: RetainedMeasureLookup<'a>,
188 retained_measure_registrar: RetainedMeasureRegistrar<'a>,
189 error: &'a RefCell<Option<NodeError>>,
190 parent_handle: SubcomposeLayoutNodeHandle,
191 root_id: NodeId,
192 placement_scratch: Vec<Placement>,
193}
194
195impl<'a> SubcomposeMeasureScopeImpl<'a> {
196 pub(crate) fn root_id(&self) -> NodeId {
197 self.root_id
198 }
199
200 fn new(init: SubcomposeMeasureScopeInit<'a>) -> Self {
201 Self {
202 composer: init.composer,
203 density_scope: crate::density::DensityMeasureScope::new(init.density),
204 state: init.state,
205 constraints: init.constraints,
206 measurer: init.measurer,
207 cached_measure_batch_registrar: init.cached_measure_batch_registrar,
208 retained_measure_lookup: init.retained_measure_lookup,
209 retained_measure_registrar: init.retained_measure_registrar,
210 error: init.error,
211 parent_handle: init.parent_handle,
212 root_id: init.root_id,
213 placement_scratch: init.placement_scratch,
214 cached_measure_node_scratch: Vec::new(),
215 cached_measure_size_scratch: Vec::new(),
216 cached_measure_missing_scratch: Vec::new(),
217 registered_measurement_node_ids: Vec::new(),
218 pending_commands_applied: false,
219 #[cfg(debug_assertions)]
220 shadow_stash: None,
221 }
222 }
223
224 fn register_measurement_node_id(&mut self, node_id: NodeId) {
225 if !self.registered_measurement_node_ids.contains(&node_id) {
226 self.registered_measurement_node_ids.push(node_id);
227 }
228 }
229
230 fn into_placement_scratch(self) -> Vec<Placement> {
231 self.placement_scratch
232 }
233
234 pub(crate) fn layout_with_placement_builder(
235 &mut self,
236 width: f32,
237 height: f32,
238 build: impl FnOnce(&mut Vec<Placement>),
239 ) -> MeasureResult {
240 self.placement_scratch.clear();
241 build(&mut self.placement_scratch);
242 MeasureResult::new(
243 Size { width, height },
244 std::mem::take(&mut self.placement_scratch),
245 )
246 }
247
248 fn record_error(&self, err: NodeError) {
249 let mut slot = self.error.borrow_mut();
250 if slot.is_none() {
251 eprintln!("[SubcomposeLayout] Error suppressed: {err:?}");
252 *slot = Some(err);
253 }
254 }
255
256 fn owner_chain_deactivation_epoch(&self) -> u64 {
257 self.parent_handle
258 .inner
259 .borrow()
260 .captured_context
261 .as_ref()
262 .map_or(
263 0,
264 cranpose_core::CapturedCompositionContext::owner_chain_deactivation_epoch,
265 )
266 }
267
268 fn ensure_pending_commands_applied(&mut self) -> bool {
269 if self.pending_commands_applied {
270 return true;
271 }
272
273 let telemetry_start = subcompose_telemetry_enabled().then(Instant::now);
274 if let Err(err) = self.composer.apply_pending_commands() {
275 self.record_error(err);
276 return false;
277 }
278 if let Some(start) = telemetry_start {
279 log::warn!(
280 "[subcompose-telemetry] apply_pending_commands_ms={:.2}",
281 start.elapsed().as_secs_f64() * 1000.0
282 );
283 }
284
285 self.pending_commands_applied = true;
286 true
287 }
288
289 fn perform_subcompose<Content>(&mut self, slot_id: SlotId, content: Content) -> Vec<NodeId>
290 where
291 Content: FnMut() + 'static,
292 {
293 let telemetry_start = subcompose_telemetry_enabled().then(Instant::now);
294 let mut inner = self.parent_handle.inner.borrow_mut();
295
296 let (virtual_node_id, is_rebound) =
297 if let Some((node_id, rebound)) = self.state.take_node_from_reusables(slot_id) {
298 (node_id, rebound)
299 } else {
300 let id = allocate_virtual_node_id();
301 let node = LayoutNode::new_virtual();
302 if let Err(e) = self
303 .composer
304 .register_virtual_node(id, Box::new(node.clone()))
305 {
306 eprintln!("[Subcompose] Failed to register virtual node {id}: {e:?}");
307 }
308 register_layout_node(id, &node);
309
310 inner.virtual_nodes.insert(id, Rc::new(node));
311 inner.children.push(id);
312 (id, false)
313 };
314
315 self.composer.record_subcompose_child(virtual_node_id);
316
317 if let Some(v_node) = inner.virtual_nodes.get(&virtual_node_id) {
318 v_node.set_parent(self.root_id);
319 }
320
321 drop(inner);
322
323 let children = self.compose_into_slot(slot_id, virtual_node_id, content);
324 if is_rebound {
325 self.composer.record_rebound_slot_children(&children);
326 }
327 if let Some(start) = telemetry_start {
328 log::warn!(
329 "[subcompose-telemetry] slot={} reused={} children={} subcompose_ms={:.2}",
330 slot_id.raw(),
331 is_rebound,
332 children.len(),
333 start.elapsed().as_secs_f64() * 1000.0
334 );
335 }
336 children
337 }
338
339 fn compose_into_slot<Content>(
340 &mut self,
341 slot_id: SlotId,
342 virtual_node_id: NodeId,
343 content: Content,
344 ) -> Vec<NodeId>
345 where
346 Content: FnMut() + 'static,
347 {
348 let content_holder = self.state.callback_holder(slot_id);
349 content_holder.update(content);
350
351 let _ = self
352 .composer
353 .with_node_mut::<LayoutNode, _>(virtual_node_id, |node| {
354 node.set_parent(self.root_id);
355 });
356
357 let slot_host = self.state.get_or_create_slots(slot_id);
358 self.parent_handle.note_slot_host(&slot_host);
359 let scopes = self
360 .composer
361 .subcompose_slot(&slot_host, Some(virtual_node_id), move |_| {
362 compose_subcompose_slot_content(content_holder);
363 })
364 .map(|((), scopes)| scopes)
365 .unwrap_or_default();
366 self.pending_commands_applied = false;
367
368 let owner_epoch = self.owner_chain_deactivation_epoch();
369 self.state
370 .register_active(slot_id, &[virtual_node_id], &scopes);
371 self.state.mark_slot_composed_current(slot_id, owner_epoch);
372
373 self.composer.get_node_children(virtual_node_id).to_vec()
374 }
375
376 fn activate_clean_retained_slot(&mut self, slot_id: SlotId) -> Option<Vec<NodeId>> {
377 if self.state.has_pending_precompositions(slot_id) {
378 return None;
379 }
380 if !self
381 .state
382 .slot_content_generation_current(slot_id, self.owner_chain_deactivation_epoch())
383 {
384 return None;
385 }
386 if !self.ensure_pending_commands_applied() {
387 return None;
388 }
389 let virtual_node_ids = self.state.activate_current_active_slot(slot_id)?;
390
391 {
392 let inner = self.parent_handle.inner.borrow();
393 for virtual_node_id in &virtual_node_ids {
394 self.composer.record_subcompose_child(*virtual_node_id);
395 if let Some(v_node) = inner.virtual_nodes.get(virtual_node_id) {
396 v_node.set_parent(self.root_id);
397 }
398 }
399 }
400 for virtual_node_id in &virtual_node_ids {
401 let _ = self
402 .composer
403 .with_node_mut::<LayoutNode, _>(*virtual_node_id, |node| {
404 node.set_parent(self.root_id);
405 });
406 }
407
408 let mut children = Vec::new();
409 for virtual_node_id in &virtual_node_ids {
410 children.extend(self.composer.get_node_children(*virtual_node_id));
411 }
412 record_clean_slot_skip();
413
414 #[cfg(debug_assertions)]
415 {
416 self.shadow_stash = Some((virtual_node_ids, children.clone()));
417 }
418
419 Some(children)
420 }
421
422 #[cfg(debug_assertions)]
423 fn shadow_verify_clean_slot<Content>(&mut self, slot_id: SlotId, content: Content)
424 where
425 Content: FnMut() + 'static,
426 {
427 let Some((virtual_node_ids, skipped_children)) = self.shadow_stash.take() else {
428 return;
429 };
430 if virtual_node_ids.len() != 1 {
431 return;
432 }
433 let composed = self.compose_into_slot(slot_id, virtual_node_ids[0], content);
434 assert!(
435 composed == skipped_children,
436 "clean-slot skip diverged for slot {slot_id:?}: recomposing produced root \
437 children {composed:?} but the retained slot held {skipped_children:?}. The slot content \
438 read a value that changed between measure passes without any \
439 invalidation path — make that value reactive state, or part of \
440 the subcompose capture key",
441 );
442 }
443
444 pub(crate) fn activate_exact_retained_slot_with_known_children(
445 &mut self,
446 slot_id: SlotId,
447 known_children: &[u64],
448 ) -> Option<(Vec<SubcomposeChild>, bool)> {
449 for &node_id in known_children {
450 NodeId::try_from(node_id).ok()?;
451 }
452
453 let virtual_node_ids = match self.activate_current_active_slot_roots(slot_id) {
454 Some(virtual_node_ids) => {
455 for virtual_node_id in &virtual_node_ids {
456 self.composer.record_subcompose_child(*virtual_node_id);
457 }
458 virtual_node_ids
459 }
460 None => self.activate_recycled_exact_retained_slot_roots(slot_id)?,
461 };
462
463 if !self.ensure_pending_commands_applied() {
464 return None;
465 }
466
467 let mut activated_children = Vec::with_capacity(known_children.len());
468 for virtual_node_id in virtual_node_ids {
469 activated_children.extend(
470 self.composer
471 .get_node_children(virtual_node_id)
472 .iter()
473 .copied()
474 .map(SubcomposeChild::new),
475 );
476 }
477 let children_match = activated_children
478 .iter()
479 .map(|child| child.node_id() as u64)
480 .eq(known_children.iter().copied());
481 Some((activated_children, children_match))
482 }
483
484 fn activate_current_active_slot_roots(&mut self, slot_id: SlotId) -> Option<Vec<NodeId>> {
485 self.state.activate_current_active_slot(slot_id)
486 }
487
488 fn activate_recycled_exact_retained_slot_roots(
489 &mut self,
490 slot_id: SlotId,
491 ) -> Option<Vec<NodeId>> {
492 let activation = self.state.take_exact_slot_activation(slot_id)?;
493 let virtual_node_ids = activation.nodes;
494 let scopes = activation.scopes;
495 let reactivate_scopes = activation.reactivate_scopes;
496
497 if reactivate_scopes {
498 let inner = self.parent_handle.inner.borrow();
499 for virtual_node_id in &virtual_node_ids {
500 self.composer.record_subcompose_child(*virtual_node_id);
501 if let Some(v_node) = inner.virtual_nodes.get(virtual_node_id) {
502 v_node.set_parent(self.root_id);
503 }
504 }
505 for virtual_node_id in &virtual_node_ids {
506 let _ = self
507 .composer
508 .with_node_mut::<LayoutNode, _>(*virtual_node_id, |node| {
509 node.set_parent(self.root_id);
510 });
511 }
512 } else {
513 for virtual_node_id in &virtual_node_ids {
514 self.composer.record_subcompose_child(*virtual_node_id);
515 }
516 }
517
518 self.state.register_active_with_scope_reactivation(
519 slot_id,
520 &virtual_node_ids,
521 &scopes,
522 reactivate_scopes,
523 );
524 Some(virtual_node_ids)
525 }
526}
527
528impl SubcomposeLayoutScope for SubcomposeMeasureScopeImpl<'_> {
529 fn constraints(&self) -> Constraints {
530 self.constraints
531 }
532
533 fn layout<I>(&mut self, width: f32, height: f32, placements: I) -> MeasureResult
534 where
535 I: IntoIterator<Item = Placement>,
536 {
537 self.layout_with_placement_builder(width, height, |scratch| {
538 scratch.extend(placements);
539 })
540 }
541}
542
543impl cranpose_ui_layout::MeasureScope for SubcomposeMeasureScopeImpl<'_> {
544 fn density(&self) -> f32 {
545 self.density_scope.density()
546 }
547
548 fn font_scale(&self) -> f32 {
549 self.density_scope.font_scale()
550 }
551}
552
553impl SubcomposeMeasureScope for SubcomposeMeasureScopeImpl<'_> {
554 fn subcompose<K, Content>(
555 &mut self,
556 slot_id: SlotId,
557 key: K,
558 content: Content,
559 ) -> Vec<SubcomposeChild>
560 where
561 K: PartialEq + 'static,
562 Content: FnMut() + 'static,
563 {
564 if self.state.retained_capture_key_matches(slot_id, &key)
565 && let Some(children) = self.activate_clean_retained_slot(slot_id)
566 {
567 #[cfg(debug_assertions)]
568 self.shadow_verify_clean_slot(slot_id, content);
569 return children.into_iter().map(SubcomposeChild::new).collect();
570 }
571 self.state.store_retained_capture_key(slot_id, key);
572 let nodes = self.perform_subcompose(slot_id, content);
573 nodes.into_iter().map(SubcomposeChild::new).collect()
574 }
575
576 fn measure(&mut self, child: SubcomposeChild, constraints: Constraints) -> SubcomposePlaceable {
577 if self.error.borrow().is_some() {
578 return SubcomposePlaceable::value(0.0, 0.0, child.node_id);
579 }
580
581 let telemetry_start = subcompose_telemetry_enabled().then(Instant::now);
582 if !self.ensure_pending_commands_applied() {
583 return SubcomposePlaceable::value(0.0, 0.0, child.node_id);
584 }
585
586 let size = (self.measurer)(child.node_id, constraints);
587 self.register_measurement_node_id(child.node_id);
588 if let Some(start) = telemetry_start {
589 log::warn!(
590 "[subcompose-telemetry] child={} measure_ms={:.2} size=({:.2},{:.2})",
591 child.node_id,
592 start.elapsed().as_secs_f64() * 1000.0,
593 size.width,
594 size.height
595 );
596 }
597 SubcomposePlaceable::value(size.width, size.height, child.node_id)
598 }
599
600 fn node_has_no_parent(&self, node_id: NodeId) -> bool {
601 self.composer.node_has_no_parent(node_id)
602 }
603}
604
605impl SubcomposeMeasureScopeImpl<'_> {
606 pub fn active_slots_count(&self) -> usize {
610 self.state.active_slots_count()
611 }
612
613 pub fn reusable_slots_count(&self) -> usize {
617 self.state.reusable_slots_count()
618 }
619
620 pub(crate) fn slot_is_retained(&self, slot_id: SlotId) -> bool {
622 self.state.slot_is_retained(slot_id)
623 }
624
625 pub fn register_content_type(&mut self, slot_id: SlotId, content_type: u64) {
631 self.state.register_content_type(slot_id, content_type);
632 }
633
634 pub fn update_content_type(&mut self, slot_id: SlotId, content_type: Option<u64>) {
640 self.state.update_content_type(slot_id, content_type);
641 }
642
643 pub(crate) fn set_reusable_pool_limits(&mut self, per_type: usize, untyped: usize) {
644 self.state.set_reusable_pool_limits(per_type, untyped);
645 }
646
647 pub(crate) fn focused_slot(&self) -> Option<SlotId> {
648 let mut node_id = crate::active_focus_target()?;
649 while node_id != self.root_id {
650 if let Some(slot) = self.state.active_slot_for_node(node_id) {
651 return Some(slot);
652 }
653 node_id = self.composer.node_parent(node_id).ok()??;
654 }
655 None
656 }
657
658 pub(crate) fn recycle_active_slots_where(&mut self, predicate: impl FnMut(SlotId) -> bool) {
659 let disposed = self.state.recycle_active_slots_where(predicate);
660 debug_assert!(
661 disposed.is_empty(),
662 "lazy subcompose reusable pool limits must retain recycled active slots"
663 );
664 }
665
666 pub fn was_last_slot_reused(&self) -> Option<bool> {
674 self.state.was_last_slot_reused()
675 }
676
677 pub(crate) fn measure_retained(
678 &mut self,
679 child: SubcomposeChild,
680 constraints: Constraints,
681 ) -> (SubcomposePlaceable, Option<Rc<MeasuredNode>>) {
682 let placeable = self.measure(child, constraints);
683 let retained = (self.retained_measure_lookup)(child.node_id);
684 (placeable, retained)
685 }
686
687 pub(crate) fn register_retained_measurements(&mut self, measurements: &[Rc<MeasuredNode>]) {
688 if measurements.is_empty() {
689 return;
690 }
691
692 for measured in measurements {
693 self.register_measurement_node_id(measured.node_id());
694 }
695 (self.retained_measure_registrar)(measurements);
696 }
697
698 pub(crate) fn children_need_relayout(&mut self, children: &[SubcomposeChild]) -> bool {
699 if !self.ensure_pending_commands_applied() {
700 return true;
701 }
702
703 let mut root_ids = smallvec::SmallVec::<[NodeId; 8]>::new();
704 root_ids.extend(children.iter().map(SubcomposeChild::node_id));
705 self.composer.nodes_need_measure(&root_ids) || self.composer.nodes_need_layout(&root_ids)
706 }
707
708 pub(crate) fn ensure_cached_measurement_node_ids<I>(
709 &mut self,
710 node_ids: I,
711 constraints: Constraints,
712 ) -> usize
713 where
714 I: IntoIterator<Item = NodeId>,
715 {
716 if self.error.borrow().is_some() || !self.ensure_pending_commands_applied() {
717 return 0;
718 }
719
720 self.cached_measure_node_scratch.clear();
721 self.cached_measure_node_scratch.extend(
722 node_ids
723 .into_iter()
724 .filter(|node_id| !self.registered_measurement_node_ids.contains(node_id)),
725 );
726 if self.cached_measure_node_scratch.is_empty() {
727 return 0;
728 }
729
730 self.cached_measure_size_scratch.clear();
731 (self.cached_measure_batch_registrar)(
732 &self.cached_measure_node_scratch,
733 constraints,
734 &mut self.cached_measure_size_scratch,
735 );
736 self.cached_measure_size_scratch
737 .resize(self.cached_measure_node_scratch.len(), None);
738
739 let mut cached_count = 0;
740 self.cached_measure_missing_scratch.clear();
741 for index in 0..self.cached_measure_node_scratch.len() {
742 let node_id = self.cached_measure_node_scratch[index];
743 if self.cached_measure_size_scratch[index].is_some() {
744 cached_count += 1;
745 self.register_measurement_node_id(node_id);
746 } else {
747 self.cached_measure_missing_scratch.push(node_id);
748 }
749 }
750
751 let mut missing = std::mem::take(&mut self.cached_measure_missing_scratch);
752 for node_id in missing.drain(..) {
753 let _ = self.measure(SubcomposeChild::new(node_id), constraints);
754 }
755 self.cached_measure_missing_scratch = missing;
756
757 cached_count
758 }
759}
760
761fn compose_subcompose_slot_content(holder: cranpose_core::CallbackHolder) {
762 cranpose_core::with_current_composer(|composer| {
763 let holder_for_recompose = holder.clone();
764 composer.set_recompose_callback(move |_composer| {
765 compose_subcompose_slot_content(holder_for_recompose.clone());
766 });
767 });
768
769 let invoke = holder.clone_rc();
770 invoke();
771}
772
773pub type MeasurePolicy =
774 dyn for<'scope> Fn(&mut SubcomposeMeasureScopeImpl<'scope>, Constraints) -> MeasureResult;
775
776pub struct SubcomposeLayoutNode {
778 inner: Rc<RefCell<SubcomposeLayoutNodeInner>>,
779 parent: Cell<Option<NodeId>>,
780 id: Cell<Option<NodeId>>,
781 needs_measure: Cell<bool>,
782 needs_layout: Cell<bool>,
783 needs_semantics: Cell<bool>,
784 needs_redraw: Cell<bool>,
785 needs_pointer_pass: Cell<bool>,
786 needs_focus_sync: Cell<bool>,
787 virtual_children_count: Cell<usize>,
788 layout_state: RefCell<LayoutState>,
789 cache_handles: LayoutNodeCacheHandles,
790 modifier_slices_snapshot: RefCell<Rc<ModifierNodeSlices>>,
791 modifier_slices_dirty: Cell<bool>,
792}
793
794impl SubcomposeLayoutNode {
795 pub fn new(modifier: Modifier, measure_policy: Rc<MeasurePolicy>) -> Self {
796 let inner = Rc::new(RefCell::new(SubcomposeLayoutNodeInner::new(measure_policy)));
797 let node = Self {
798 inner,
799 parent: Cell::new(None),
800 id: Cell::new(None),
801 needs_measure: Cell::new(true),
802 needs_layout: Cell::new(true),
803 needs_semantics: Cell::new(true),
804 needs_redraw: Cell::new(true),
805 needs_pointer_pass: Cell::new(false),
806 needs_focus_sync: Cell::new(false),
807 virtual_children_count: Cell::new(0),
808 layout_state: RefCell::new(LayoutState::default()),
809 cache_handles: LayoutNodeCacheHandles::default(),
810 modifier_slices_snapshot: RefCell::new(Rc::default()),
811 modifier_slices_dirty: Cell::new(true),
812 };
813 let (invalidations, _) = node.inner.borrow_mut().set_modifier_collect(modifier);
814 node.dispatch_modifier_invalidations(&invalidations, NodeCapabilities::empty());
815 node.note_host_to_the_composition_that_made_it();
816 node
817 }
818
819 fn note_host_to_the_composition_that_made_it(&self) {
820 let host = Rc::clone(&self.inner.borrow().slots);
821 cranpose_core::note_nested_slots_host(&host);
822 }
823
824 pub fn with_content_type_policy(modifier: Modifier, measure_policy: Rc<MeasurePolicy>) -> Self {
830 let mut inner_data = SubcomposeLayoutNodeInner::new(measure_policy);
831 inner_data
832 .state
833 .set_policy(Box::new(cranpose_core::ContentTypeReusePolicy::new()));
834 let inner = Rc::new(RefCell::new(inner_data));
835 let node = Self {
836 inner,
837 parent: Cell::new(None),
838 id: Cell::new(None),
839 needs_measure: Cell::new(true),
840 needs_layout: Cell::new(true),
841 needs_semantics: Cell::new(true),
842 needs_redraw: Cell::new(true),
843 needs_pointer_pass: Cell::new(false),
844 needs_focus_sync: Cell::new(false),
845 virtual_children_count: Cell::new(0),
846 layout_state: RefCell::new(LayoutState::default()),
847 cache_handles: LayoutNodeCacheHandles::default(),
848 modifier_slices_snapshot: RefCell::new(Rc::default()),
849 modifier_slices_dirty: Cell::new(true),
850 };
851 let (invalidations, _) = node.inner.borrow_mut().set_modifier_collect(modifier);
852 node.dispatch_modifier_invalidations(&invalidations, NodeCapabilities::empty());
853 node.note_host_to_the_composition_that_made_it();
854 node
855 }
856
857 pub fn handle(&self) -> SubcomposeLayoutNodeHandle {
858 SubcomposeLayoutNodeHandle {
859 inner: Rc::clone(&self.inner),
860 }
861 }
862
863 #[doc(hidden)]
864 pub fn debug_scope_ids_by_slot(&self) -> Vec<(u64, Vec<usize>)> {
865 self.inner.borrow().state.debug_scope_ids_by_slot()
866 }
867
868 #[doc(hidden)]
869 pub fn debug_slot_table_for_slot(
870 &self,
871 slot_id: cranpose_core::SlotId,
872 ) -> Option<Vec<cranpose_core::SlotDebugEntry>> {
873 self.inner.borrow().state.debug_slot_table_for_slot(slot_id)
874 }
875
876 #[doc(hidden)]
877 pub fn debug_slot_table_groups_for_slot(
878 &self,
879 slot_id: cranpose_core::SlotId,
880 ) -> Option<Vec<cranpose_core::subcompose::DebugSlotGroup>> {
881 self.inner
882 .borrow()
883 .state
884 .debug_slot_table_groups_for_slot(slot_id)
885 }
886
887 pub fn set_measure_policy(&mut self, policy: Rc<MeasurePolicy>) {
888 let mut inner = self.inner.borrow_mut();
889 if Rc::ptr_eq(&inner.measure_policy, &policy) {
890 return;
891 }
892 inner.set_measure_policy(policy);
893 drop(inner);
894 self.invalidate_subcomposition();
895 }
896
897 pub fn set_captured_context(&mut self, context: cranpose_core::CapturedCompositionContext) {
899 self.inner.borrow_mut().captured_context = Some(context);
900 }
901
902 pub fn set_density(&mut self, density: crate::density::Density) {
908 let mut inner = self.inner.borrow_mut();
909 if inner.density != density {
910 inner.density = density;
911 drop(inner);
912 self.mark_needs_measure();
913 }
914 }
915
916 pub fn set_modifier(&mut self, modifier: Modifier) {
917 let prev_caps = self.modifier_capabilities();
918 let (invalidations, modifier_changed) = {
919 let mut inner = self.inner.borrow_mut();
920 inner.set_modifier_collect(modifier)
921 };
922 self.dispatch_modifier_invalidations(&invalidations, prev_caps);
923 self.modifier_slices_dirty.set(true);
924 if modifier_changed {
925 self.request_semantics_update();
926 }
927 }
928
929 fn update_modifier_slices_cache(&self) {
930 let inner = self.inner.borrow();
931 let mut snapshot = self.modifier_slices_snapshot.borrow_mut();
932 crate::modifier::collect_modifier_slices_into_shared(
933 inner.modifier_chain.chain(),
934 &mut snapshot,
935 );
936 self.modifier_slices_dirty.set(false);
937 }
938
939 pub(crate) fn mark_modifier_slices_dirty(&self) {
940 self.modifier_slices_dirty.set(true);
941 }
942
943 pub fn set_debug_modifiers(&mut self, enabled: bool) {
944 self.inner.borrow_mut().set_debug_modifiers(enabled);
945 }
946
947 pub fn modifier(&self) -> Modifier {
948 self.handle().modifier()
949 }
950
951 pub fn resolved_modifiers(&self) -> ResolvedModifiers {
952 self.inner.borrow().resolved_modifiers
953 }
954
955 pub fn layout_state(&self) -> LayoutState {
957 self.layout_state.borrow().clone()
958 }
959
960 pub(crate) fn cache_handles(&self) -> LayoutNodeCacheHandles {
961 self.cache_handles.clone()
962 }
963
964 pub fn set_position(&self, position: Point) {
967 self.layout_state.borrow_mut().place(position);
968 }
969
970 pub fn set_measured_size(&self, size: Size) {
974 self.layout_state.borrow_mut().set_size(size);
975 }
976
977 pub fn clear_placed(&self) {
979 self.layout_state.borrow_mut().clear_placed();
980 }
981
982 pub fn semantics_configuration(&self) -> Option<SemanticsConfiguration> {
984 crate::modifier::collect_semantics_from_chain(self.inner.borrow().modifier_chain.chain())
985 }
986
987 pub fn semantics_reach(&self) -> cranpose_foundation::SemanticsReach {
989 crate::modifier::semantics_reach_of_chain(self.inner.borrow().modifier_chain.chain())
990 }
991
992 pub fn modifier_slices_snapshot(&self) -> Rc<ModifierNodeSlices> {
994 if self.modifier_slices_dirty.get() {
995 self.update_modifier_slices_cache();
996 }
997 self.modifier_slices_snapshot.borrow().clone()
998 }
999
1000 pub fn state(&self) -> Ref<'_, SubcomposeState> {
1001 Ref::map(self.inner.borrow(), |inner| &inner.state)
1002 }
1003
1004 pub fn state_mut(&self) -> RefMut<'_, SubcomposeState> {
1005 RefMut::map(self.inner.borrow_mut(), |inner| &mut inner.state)
1006 }
1007
1008 pub fn invalidate_subcomposition(&self) {
1009 self.inner.borrow().state.invalidate_scopes();
1010 self.mark_needs_measure();
1011 if let Some(id) = self.id.get() {
1012 cranpose_core::bubble_measure_dirty_in_composer(id);
1013 }
1014 }
1015
1016 pub fn request_measure_recompose(&self) {
1017 self.mark_needs_measure();
1018 if let Some(id) = self.id.get() {
1019 cranpose_core::bubble_measure_dirty_in_composer(id);
1020 }
1021 }
1022
1023 pub fn with_active_children<R>(&self, f: impl FnOnce(&[NodeId]) -> R) -> R {
1026 f(&self.inner.borrow().last_placements)
1027 }
1028
1029 pub fn mark_needs_measure(&self) {
1031 self.needs_measure.set(true);
1032 self.needs_layout.set(true);
1033 }
1034
1035 pub fn mark_needs_layout_flag(&self) {
1037 self.needs_layout.set(true);
1038 }
1039
1040 pub fn mark_needs_redraw(&self) {
1042 self.needs_redraw.set(true);
1043 if let Some(id) = self.id.get() {
1044 crate::schedule_draw_repass(id);
1045 }
1046 crate::request_render_invalidation();
1047 }
1048
1049 pub fn needs_measure(&self) -> bool {
1051 self.needs_measure.get()
1052 }
1053
1054 pub(crate) fn clear_needs_measure(&self) {
1055 self.needs_measure.set(false);
1056 }
1057
1058 pub(crate) fn clear_needs_layout(&self) {
1059 self.needs_layout.set(false);
1060 }
1061
1062 pub fn mark_needs_semantics(&self) {
1064 self.needs_semantics.set(true);
1065 }
1066
1067 pub(crate) fn clear_needs_semantics(&self) {
1068 self.needs_semantics.set(false);
1069 }
1070
1071 #[cfg(test)]
1072 pub(crate) fn clear_needs_semantics_for_tests(&self) {
1073 self.clear_needs_semantics();
1074 }
1075
1076 pub fn needs_redraw(&self) -> bool {
1078 self.needs_redraw.get()
1079 }
1080
1081 pub fn clear_needs_redraw(&self) {
1082 self.needs_redraw.set(false);
1083 }
1084
1085 pub fn mark_needs_pointer_pass(&self) {
1087 self.needs_pointer_pass.set(true);
1088 }
1089
1090 pub fn needs_pointer_pass(&self) -> bool {
1092 self.needs_pointer_pass.get()
1093 }
1094
1095 pub fn clear_needs_pointer_pass(&self) {
1097 self.needs_pointer_pass.set(false);
1098 }
1099
1100 pub fn mark_needs_focus_sync(&self) {
1102 self.needs_focus_sync.set(true);
1103 }
1104
1105 pub fn needs_focus_sync(&self) -> bool {
1107 self.needs_focus_sync.get()
1108 }
1109
1110 pub fn clear_needs_focus_sync(&self) {
1112 self.needs_focus_sync.set(false);
1113 }
1114
1115 fn request_semantics_update(&self) {
1116 let already_dirty = self.needs_semantics.replace(true);
1117 if already_dirty {
1118 return;
1119 }
1120
1121 if let Some(id) = self.id.get() {
1122 cranpose_core::queue_semantics_invalidation(id);
1123 }
1124 }
1125
1126 pub fn modifier_capabilities(&self) -> NodeCapabilities {
1128 self.inner.borrow().modifier_capabilities
1129 }
1130
1131 pub fn has_layout_modifier_nodes(&self) -> bool {
1132 self.modifier_capabilities()
1133 .contains(NodeCapabilities::LAYOUT)
1134 }
1135
1136 pub fn has_draw_modifier_nodes(&self) -> bool {
1137 self.modifier_capabilities()
1138 .contains(NodeCapabilities::DRAW)
1139 }
1140
1141 pub fn has_pointer_input_modifier_nodes(&self) -> bool {
1142 self.modifier_capabilities()
1143 .contains(NodeCapabilities::POINTER_INPUT)
1144 }
1145
1146 pub fn has_semantics_modifier_nodes(&self) -> bool {
1147 self.modifier_capabilities()
1148 .contains(NodeCapabilities::SEMANTICS)
1149 }
1150
1151 pub fn has_focus_modifier_nodes(&self) -> bool {
1152 self.modifier_capabilities()
1153 .contains(NodeCapabilities::FOCUS)
1154 }
1155
1156 fn dispatch_modifier_invalidations(
1157 &self,
1158 invalidations: &[ModifierInvalidation],
1159 prev_caps: NodeCapabilities,
1160 ) {
1161 let curr_caps = self.modifier_capabilities();
1162 for invalidation in invalidations {
1163 self.modifier_slices_dirty.set(true);
1164 let invalidation_caps = invalidation.capabilities();
1165 let has_capability = |capability| {
1166 curr_caps.contains(capability)
1167 || prev_caps.contains(capability)
1168 || invalidation_caps.contains(capability)
1169 };
1170 match invalidation.kind() {
1171 InvalidationKind::Layout => {
1172 if has_capability(NodeCapabilities::LAYOUT) {
1173 self.mark_needs_measure();
1174 }
1175 }
1176 InvalidationKind::Draw => {
1177 if has_capability(NodeCapabilities::DRAW) {
1178 self.mark_needs_redraw();
1179 }
1180 }
1181 InvalidationKind::PointerInput => {
1182 if has_capability(NodeCapabilities::POINTER_INPUT) {
1183 self.mark_needs_pointer_pass();
1184 crate::request_pointer_invalidation();
1185 if let Some(id) = self.id.get() {
1186 crate::schedule_pointer_repass(id);
1187 }
1188 }
1189 }
1190 InvalidationKind::Semantics => {
1191 self.request_semantics_update();
1192 }
1193 InvalidationKind::Focus => {
1194 if has_capability(NodeCapabilities::FOCUS) {
1195 self.mark_needs_focus_sync();
1196 crate::request_focus_invalidation();
1197 if let Some(id) = self.id.get() {
1198 crate::schedule_focus_invalidation(id);
1199 }
1200 }
1201 }
1202 }
1203 }
1204 }
1205}
1206
1207impl cranpose_core::Node for SubcomposeLayoutNode {
1208 fn mount(&mut self) {
1209 let mut inner = self.inner.borrow_mut();
1210 let (chain, mut context) = inner.modifier_chain.chain_and_context_mut();
1211 chain.repair_chain();
1212 chain.attach_nodes(&mut *context);
1213 }
1214
1215 fn unmount(&mut self) {
1216 self.inner
1217 .borrow_mut()
1218 .modifier_chain
1219 .chain_mut()
1220 .detach_nodes();
1221 }
1222
1223 fn insert_child(&mut self, child: NodeId) -> bool {
1224 let mut inner = self.inner.borrow_mut();
1225 if inner.children.contains(&child) {
1226 return false;
1227 }
1228 if is_virtual_node(child) {
1229 let count = self.virtual_children_count.get();
1230 self.virtual_children_count.set(count + 1);
1231 }
1232 inner.children.push(child);
1233 true
1234 }
1235
1236 fn remove_child(&mut self, child: NodeId) -> bool {
1237 let mut inner = self.inner.borrow_mut();
1238 let before = inner.children.len();
1239 inner.children.retain(|&id| id != child);
1240 let removed = inner.children.len() < before;
1241 if removed && is_virtual_node(child) {
1242 let count = self.virtual_children_count.get();
1243 if count > 0 {
1244 self.virtual_children_count.set(count - 1);
1245 }
1246 }
1247 removed
1248 }
1249
1250 fn move_child(&mut self, from: usize, to: usize) {
1251 let mut inner = self.inner.borrow_mut();
1252 if from == to || from >= inner.children.len() {
1253 return;
1254 }
1255 let child = inner.children.remove(from);
1256 let target = to.min(inner.children.len());
1257 inner.children.insert(target, child);
1258 }
1259
1260 fn update_children(&mut self, children: &[NodeId]) {
1261 let mut inner = self.inner.borrow_mut();
1262 inner.children.clear();
1263 inner.children.extend_from_slice(children);
1264 }
1265
1266 fn collect_children_into(&self, out: &mut SmallVec<[NodeId; 8]>) {
1267 out.clear();
1268 self.with_active_children(|children| out.extend_from_slice(children));
1269 }
1270
1271 fn collect_owned_children_into(&self, out: &mut SmallVec<[NodeId; 8]>) {
1272 out.clear();
1273 out.extend_from_slice(&self.inner.borrow().children);
1274 }
1275
1276 fn set_node_id(&mut self, id: NodeId) {
1277 self.id.set(Some(id));
1278 self.layout_state.borrow_mut().set_node_id(id);
1279 {
1280 let mut inner = self.inner.borrow_mut();
1281 inner.node_id = Some(id);
1282 inner.modifier_chain.set_node_id(Some(id));
1283 }
1284 self.modifier_slices_dirty.set(true);
1286 }
1287
1288 fn on_attached_to_parent(&mut self, parent: NodeId) {
1289 self.parent.set(Some(parent));
1290 }
1291
1292 fn on_removed_from_parent(&mut self) {
1293 self.parent.set(None);
1294 self.inner.borrow().state.bump_content_generation();
1295 }
1296
1297 fn parent(&self) -> Option<NodeId> {
1298 self.parent.get()
1299 }
1300
1301 fn mark_needs_layout(&self) {
1302 self.needs_layout.set(true);
1303 }
1304
1305 fn needs_layout(&self) -> bool {
1306 self.needs_layout.get()
1307 }
1308
1309 fn mark_needs_measure(&self) {
1310 self.needs_measure.set(true);
1311 self.needs_layout.set(true);
1312 }
1313
1314 fn needs_measure(&self) -> bool {
1315 self.needs_measure.get()
1316 }
1317
1318 fn mark_needs_semantics(&self) {
1319 self.needs_semantics.set(true);
1320 }
1321
1322 fn needs_semantics(&self) -> bool {
1323 self.needs_semantics.get()
1324 }
1325
1326 fn set_parent_for_bubbling(&mut self, parent: NodeId) {
1327 if self.parent.get().is_none() {
1328 self.parent.set(Some(parent));
1329 }
1330 }
1331}
1332
1333#[derive(Clone)]
1334pub struct SubcomposeLayoutNodeHandle {
1335 inner: Rc<RefCell<SubcomposeLayoutNodeInner>>,
1336}
1337
1338impl SubcomposeLayoutNodeHandle {
1339 pub(crate) fn note_slot_host(&self, slot_host: &Rc<cranpose_core::SlotsHost>) {
1340 let Ok(inner) = self.inner.try_borrow() else {
1341 return;
1342 };
1343 if Rc::ptr_eq(&inner.slots, slot_host) {
1344 return;
1345 }
1346 inner.slots.note_nested_host(slot_host);
1347 }
1348
1349 pub(crate) fn measured_children_scratch(
1350 &self,
1351 ) -> Rc<RefCell<HashMap<NodeId, Rc<MeasuredNode>>>> {
1352 let scratch = {
1353 let inner = self.inner.borrow();
1354 Rc::clone(&inner.measured_children_scratch)
1355 };
1356 scratch.borrow_mut().clear();
1357 scratch
1358 }
1359
1360 pub fn modifier(&self) -> Modifier {
1361 self.inner.borrow().modifier.clone()
1362 }
1363
1364 pub fn layout_properties(&self) -> crate::modifier::LayoutProperties {
1365 self.resolved_modifiers().layout_properties()
1366 }
1367
1368 pub fn resolved_modifiers(&self) -> ResolvedModifiers {
1369 self.inner.borrow().resolved_modifiers
1370 }
1371
1372 pub fn total_offset(&self) -> Point {
1373 self.resolved_modifiers().offset()
1374 }
1375
1376 pub fn modifier_capabilities(&self) -> NodeCapabilities {
1377 self.inner.borrow().modifier_capabilities
1378 }
1379
1380 pub fn has_layout_modifier_nodes(&self) -> bool {
1381 self.modifier_capabilities()
1382 .contains(NodeCapabilities::LAYOUT)
1383 }
1384
1385 pub fn has_draw_modifier_nodes(&self) -> bool {
1386 self.modifier_capabilities()
1387 .contains(NodeCapabilities::DRAW)
1388 }
1389
1390 pub fn has_pointer_input_modifier_nodes(&self) -> bool {
1391 self.modifier_capabilities()
1392 .contains(NodeCapabilities::POINTER_INPUT)
1393 }
1394
1395 pub fn has_semantics_modifier_nodes(&self) -> bool {
1396 self.modifier_capabilities()
1397 .contains(NodeCapabilities::SEMANTICS)
1398 }
1399
1400 pub fn has_focus_modifier_nodes(&self) -> bool {
1401 self.modifier_capabilities()
1402 .contains(NodeCapabilities::FOCUS)
1403 }
1404
1405 pub fn set_debug_modifiers(&self, enabled: bool) {
1406 self.inner.borrow_mut().set_debug_modifiers(enabled);
1407 }
1408
1409 pub fn measure<'a>(
1410 &self,
1411 composer: &Composer,
1412 node_id: NodeId,
1413 constraints: Constraints,
1414 measurer: Box<dyn FnMut(NodeId, Constraints) -> Size + 'a>,
1415 mut cached_measure_registrar: Box<dyn FnMut(NodeId, Constraints) -> Option<Size> + 'a>,
1416 error: &'a RefCell<Option<NodeError>>,
1417 ) -> Result<MeasureResult, NodeError> {
1418 self.measure_with_cached_batch(
1419 composer,
1420 node_id,
1421 constraints,
1422 CachedBatchMeasureInputs {
1423 measurer,
1424 cached_measure_batch_registrar: Box::new(
1425 move |node_ids, child_constraints, out| {
1426 out.clear();
1427 out.reserve(node_ids.len());
1428 for &child_id in node_ids {
1429 out.push(cached_measure_registrar(child_id, child_constraints));
1430 }
1431 },
1432 ),
1433 retained_measure_lookup: Box::new(|_| None),
1434 retained_measure_registrar: Box::new(|_| {}),
1435 error,
1436 },
1437 )
1438 }
1439
1440 pub(crate) fn measure_with_cached_batch(
1441 &self,
1442 composer: &Composer,
1443 node_id: NodeId,
1444 constraints: Constraints,
1445 callbacks: CachedBatchMeasureInputs<'_>,
1446 ) -> Result<MeasureResult, NodeError> {
1447 let CachedBatchMeasureInputs {
1448 measurer,
1449 cached_measure_batch_registrar,
1450 retained_measure_lookup,
1451 retained_measure_registrar,
1452 error,
1453 } = callbacks;
1454 let (policy, mut state, slots_host, placement_scratch, captured_context, density) = {
1455 let mut inner = self.inner.borrow_mut();
1456 let policy = Rc::clone(&inner.measure_policy);
1457 let state = std::mem::take(&mut inner.state);
1458 let slots_host = Rc::clone(&inner.slots);
1459 let placement_scratch = std::mem::take(&mut inner.placement_scratch);
1460 let captured_context = inner.captured_context.clone();
1461 let density = inner.density;
1462 (
1463 policy,
1464 state,
1465 slots_host,
1466 placement_scratch,
1467 captured_context,
1468 density,
1469 )
1470 };
1471 state.begin_pass();
1472
1473 let previous = composer.phase();
1474 if !matches!(previous, Phase::Measure | Phase::Layout) {
1475 composer.enter_phase(Phase::Measure);
1476 }
1477
1478 let constraints_copy = constraints;
1479 let fallback_context;
1480 let context = if let Some(context) = captured_context.as_ref() {
1481 context
1482 } else {
1483 fallback_context = composer.capture_composition_context();
1484 &fallback_context
1485 };
1486 let ((result, placement_scratch), _) = composer.subcompose_slot_with_context(
1487 &slots_host,
1488 Some(node_id),
1489 context,
1490 |inner_composer| {
1491 let mut scope = SubcomposeMeasureScopeImpl::new(SubcomposeMeasureScopeInit {
1492 composer: inner_composer.clone(),
1493 density,
1494 state: &mut state,
1495 constraints: constraints_copy,
1496 measurer,
1497 cached_measure_batch_registrar,
1498 retained_measure_lookup,
1499 retained_measure_registrar,
1500 error,
1501 parent_handle: self.clone(),
1502 root_id: node_id,
1503 placement_scratch,
1504 });
1505 let result = (policy)(&mut scope, constraints_copy);
1506 (result, scope.into_placement_scratch())
1507 },
1508 )?;
1509
1510 state.finish_pass();
1511
1512 if previous != composer.phase() {
1513 composer.enter_phase(previous);
1514 }
1515
1516 {
1517 let mut inner = self.inner.borrow_mut();
1518 inner.state = state;
1519 inner.placement_scratch = placement_scratch;
1520
1521 inner.replace_placed_children(
1522 result.placements.iter().map(|placement| placement.node_id),
1523 );
1524 }
1525
1526 Ok(result)
1527 }
1528
1529 pub(crate) fn recycle_placement_scratch(&self, mut placements: Vec<Placement>) {
1530 placements.clear();
1531 let mut inner = self.inner.borrow_mut();
1532 if placements.capacity() > inner.placement_scratch.capacity() {
1533 inner.placement_scratch = placements;
1534 }
1535 }
1536
1537 pub fn set_active_children<I>(&self, children: I)
1538 where
1539 I: IntoIterator<Item = NodeId>,
1540 {
1541 self.inner.borrow_mut().replace_placed_children(children);
1542 }
1543}
1544
1545struct SubcomposeLayoutNodeInner {
1546 modifier: Modifier,
1547 modifier_chain: ModifierChainHandle,
1548 resolved_modifiers: ResolvedModifiers,
1549 modifier_capabilities: NodeCapabilities,
1550 state: SubcomposeState,
1551 measure_policy: Rc<MeasurePolicy>,
1552 children: Vec<NodeId>,
1553 slots: Rc<SlotsHost>,
1554 debug_modifiers: bool,
1555 virtual_nodes: HashMap<NodeId, Rc<LayoutNode>>,
1556 node_id: Option<NodeId>,
1557 last_placements: Vec<NodeId>,
1558 placement_scratch: Vec<Placement>,
1559 measured_children_scratch: Rc<RefCell<HashMap<NodeId, Rc<MeasuredNode>>>>,
1560 captured_context: Option<cranpose_core::CapturedCompositionContext>,
1561 density: crate::density::Density,
1562}
1563
1564impl SubcomposeLayoutNodeInner {
1565 fn replace_placed_children<I>(&mut self, children: I)
1576 where
1577 I: IntoIterator<Item = NodeId>,
1578 {
1579 let mut changed = false;
1580 let mut count = 0usize;
1581 for child in children {
1582 match self.last_placements.get(count) {
1583 Some(&placed) if placed == child => {}
1584 Some(_) => {
1585 self.last_placements[count] = child;
1586 changed = true;
1587 }
1588 None => {
1589 self.last_placements.push(child);
1590 changed = true;
1591 }
1592 }
1593 count += 1;
1594 }
1595 if self.last_placements.len() > count {
1596 self.last_placements.truncate(count);
1597 changed = true;
1598 }
1599 if changed && let Some(id) = self.node_id {
1600 crate::render_state::record_geometry_scene_node(id);
1601 }
1602 }
1603
1604 fn new(measure_policy: Rc<MeasurePolicy>) -> Self {
1605 Self {
1606 modifier: Modifier::empty(),
1607 modifier_chain: ModifierChainHandle::new(),
1608 resolved_modifiers: ResolvedModifiers::default(),
1609 modifier_capabilities: NodeCapabilities::default(),
1610 state: SubcomposeState::default(),
1611 measure_policy,
1612 children: Vec::new(),
1613 slots: Rc::new(SlotsHost::new(SlotTable::default())),
1614 debug_modifiers: false,
1615 virtual_nodes: HashMap::new(),
1616 node_id: None,
1617 last_placements: Vec::new(),
1618 placement_scratch: Vec::new(),
1619 measured_children_scratch: Rc::new(RefCell::new(HashMap::default())),
1620 captured_context: None,
1621 density: crate::density::Density::default(),
1622 }
1623 }
1624
1625 fn set_measure_policy(&mut self, policy: Rc<MeasurePolicy>) {
1626 self.measure_policy = policy;
1627 if let Err(err) = self.slots.reset() {
1628 log::error!(
1629 "failed to reset root measurement slots after measure policy update: {err}"
1630 );
1631 }
1632 }
1633
1634 fn set_modifier_collect(&mut self, modifier: Modifier) -> (Vec<ModifierInvalidation>, bool) {
1635 let modifier_changed = !self.modifier.structural_eq(&modifier);
1636 self.modifier = modifier;
1637 self.modifier_chain.set_debug_logging(self.debug_modifiers);
1638 let modifier_local_invalidations = self.modifier_chain.update(&self.modifier);
1639 self.resolved_modifiers = self.modifier_chain.resolved_modifiers();
1640 self.modifier_capabilities = self.modifier_chain.capabilities();
1641
1642 let mut invalidations = self.modifier_chain.take_invalidations();
1643 invalidations.extend(modifier_local_invalidations);
1644
1645 (invalidations, modifier_changed)
1646 }
1647
1648 fn set_debug_modifiers(&mut self, enabled: bool) {
1649 self.debug_modifiers = enabled;
1650 self.modifier_chain.set_debug_logging(enabled);
1651 }
1652}
1653
1654#[cfg(test)]
1655#[path = "tests/subcompose_layout_tests.rs"]
1656mod tests;