teksilo_core/widget.rs
1// SPDX-License-Identifier: MPL-2.0
2// SPDX-FileCopyrightText: 2026 FernTech
3
4use teksilo_canvas::{Canvas, Point, Rect, Size, SizeProposal};
5
6use crate::accessibility::AccessNodeBuilder;
7use crate::widget_id::WidgetId;
8
9mod cursor;
10mod event_context;
11mod layout_context;
12mod paint_context;
13
14pub use cursor::CursorIcon;
15pub use event_context::EventContext;
16pub use layout_context::{LayoutContext, StackAxis};
17pub use paint_context::{PaintContext, WidgetPlacement, WidgetTreeView};
18
19pub(crate) use event_context::{DismissScope, ShortcutMutation, TreeMutation};
20pub(crate) use layout_context::LayoutExtras;
21
22/// A child that is either pre-registered (ID) or waiting to be inserted.
23/// Used by the inline `child()` builder pattern: deferred children are stored
24/// inside the container and resolved recursively when `BuildContext::add()`
25/// inserts the container into the arena.
26pub enum PendingChild {
27 /// Already in the arena — use this ID directly.
28 Id(WidgetId),
29 /// Not yet in the arena — insert during resolution.
30 Deferred(Box<dyn Widget>),
31}
32
33impl std::fmt::Debug for PendingChild {
34 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
35 match self {
36 PendingChild::Id(id) => write!(f, "PendingChild::Id({:?})", id),
37 PendingChild::Deferred(_) => f.write_str("PendingChild::Deferred(..)"),
38 }
39 }
40}
41
42/// A widget's reply to a parent's layout query.
43///
44/// Carries four quantities that together describe how the widget participates
45/// in a stack's space distribution along the layout's main axis:
46///
47/// - `size` — the widget's wanted/ideal size; the floor for **growth**.
48/// - `flex` — positive-slack **grow** weight. `0.0` = rigid (no claim on
49/// surplus); `> 0.0` = wants a share of surplus proportional to its weight.
50/// - `min` — the hard floor for **compression**. A parent must never shrink
51/// the widget below this. Defaults to `size` (i.e. "I do not shrink").
52/// - `shrink` — negative-slack **shrink** weight. `0.0` = will not compress
53/// (the widget overflows before it shrinks); `> 0.0` = absorbs a share of an
54/// over-constraint deficit proportional to its weight, down to `min`.
55///
56/// `flex` and `shrink` are independent — as in CSS flexbox (`flex-grow` vs
57/// `flex-shrink`), a widget may grow but not shrink, or shrink but not grow.
58/// Most widgets just return a `Size`; the `From<Size>` impl wraps it as fully
59/// rigid (`flex = 0`, `shrink = 0`, `min = size`). Grow-bearing widgets
60/// (`Spacer`, `Expand`) use [`LayoutResponse::flexible`]; shrink-bearing ones
61/// (`Shrinkable`, single-line `TextWidget`) use [`LayoutResponse::shrinkable`].
62#[derive(Debug, Clone, Copy, PartialEq)]
63pub struct LayoutResponse {
64 pub size: Size,
65 pub flex: f32,
66 pub min: Size,
67 pub shrink: f32,
68}
69
70impl LayoutResponse {
71 pub const ZERO: Self = Self {
72 size: Size::ZERO,
73 flex: 0.0,
74 min: Size::ZERO,
75 shrink: 0.0,
76 };
77
78 /// A fully rigid response: wanted `size`, no growth, no compression
79 /// (`min == size`).
80 pub fn rigid(size: Size) -> Self {
81 Self {
82 size,
83 flex: 0.0,
84 min: size,
85 shrink: 0.0,
86 }
87 }
88
89 /// A grow-bearing response: wanted `size` with grow weight `flex`. Does
90 /// not shrink (`min == size`).
91 pub fn flexible(size: Size, flex: f32) -> Self {
92 Self {
93 size,
94 flex: flex.max(0.0),
95 min: size,
96 shrink: 0.0,
97 }
98 }
99
100 /// A shrink-bearing response: wanted `size`, compressible down to `min`
101 /// with shrink weight `shrink`. Does not grow (`flex == 0`). `min` is
102 /// clamped componentwise to be no larger than `size`.
103 pub fn shrinkable(size: Size, min: Size, shrink: f32) -> Self {
104 Self {
105 size,
106 flex: 0.0,
107 min: Size::new(min.width.min(size.width), min.height.min(size.height)),
108 shrink: shrink.max(0.0),
109 }
110 }
111
112 /// Builder: set the grow weight on an existing response.
113 pub fn with_flex(mut self, flex: f32) -> Self {
114 self.flex = flex.max(0.0);
115 self
116 }
117
118 /// Builder: set the shrink weight on an existing response.
119 pub fn with_shrink(mut self, shrink: f32) -> Self {
120 self.shrink = shrink.max(0.0);
121 self
122 }
123
124 /// Builder: set the compression floor (clamped componentwise ≤ `size`).
125 pub fn with_min(mut self, min: Size) -> Self {
126 self.min = Size::new(
127 min.width.min(self.size.width),
128 min.height.min(self.size.height),
129 );
130 self
131 }
132}
133
134impl From<Size> for LayoutResponse {
135 fn from(size: Size) -> Self {
136 Self {
137 size,
138 flex: 0.0,
139 min: size,
140 shrink: 0.0,
141 }
142 }
143}
144
145/// The full Widget trait for Level 2 (custom rendering) widgets.
146pub trait Widget: std::fmt::Debug + std::any::Any {
147 /// Concrete type name of this widget (e.g.
148 /// `"teksilo_widgets::button::Button"`). The default implementation
149 /// resolves at the impl site via `std::any::type_name::<Self>()`,
150 /// so calls through `&dyn Widget` correctly dispatch to the
151 /// monomorphized fn for the concrete type — getting the
152 /// concrete name through the vtable without per-impl boilerplate.
153 ///
154 /// Used by [`crate::widget_tree::WidgetTree::widget_type_histogram`]
155 /// for the `widget.census` telemetry event. Custom
156 /// widgets that wrap their state in a generic struct may
157 /// override to give analytics a stable name independent of the
158 /// generic parameter.
159 fn type_name(&self) -> &'static str {
160 std::any::type_name::<Self>()
161 }
162
163 /// Compose child widgets. Called once after the widget is placed in the
164 /// arena, and again on environment change (theme switch, locale switch).
165 /// Takes `&mut self` — store child IDs, signal handles, any state needed later.
166 /// Returns the list of root child IDs (empty for leaf widgets).
167 fn build(
168 &mut self,
169 _ctx: &mut crate::build_context::BuildContext,
170 ) -> Vec<crate::widget_id::WidgetId> {
171 Vec::new()
172 }
173
174 /// Respond to the parent's size proposal with this widget's wanted size,
175 /// grow/shrink weights, and compression floor (see [`LayoutResponse`]).
176 ///
177 /// Most widgets just return a `Size` (auto-converts via `From<Size>` to a
178 /// fully rigid response). Grow-bearing widgets (`Spacer`, `Expand`) return
179 /// a non-zero `flex`; shrink-bearing widgets (`Shrinkable`, single-line
180 /// `TextWidget`) return a non-zero `shrink` with a `min` floor.
181 ///
182 /// The parent honors `size` as a floor for growth and distributes positive
183 /// slack proportional to `flex`; when over-constrained it distributes the
184 /// deficit proportional to `shrink`, never below `min`.
185 ///
186 /// **Determinism / height-for-width contract.** This must be a *deterministic
187 /// function of the widget's state and the `proposal`*: two calls with the
188 /// same proposal in one layout pass must return the same value. The result
189 /// must be correct *for the proposal given* — in particular a
190 /// height-for-width widget queried with `{width: Some(w), height: None}`
191 /// must return its height *at width `w`*. The framework memoizes results per
192 /// `(widget, proposal)` within a pass (see
193 /// [`cacheable_layout`](Self::cacheable_layout)) to keep negotiation O(n).
194 ///
195 /// Side effects are permitted **as long as they are idempotent** — the cache
196 /// may skip them on a repeat query, so a side effect (e.g. snapshotting
197 /// measured state into a `Signal`) must be safe to run any number of times
198 /// ≥ 1 per pass and leave the same final state. Most measuring widgets
199 /// (`Collapse`, `SceneView`, inspector tabs) satisfy this with a guarded or
200 /// overwriting set. A side effect that must run on *every* call (e.g. a call
201 /// counter) is non-idempotent — opt out via `cacheable_layout`.
202 fn layout_response(&self, proposal: SizeProposal, ctx: &LayoutContext) -> LayoutResponse;
203
204 /// Whether this widget's [`layout_response`](Self::layout_response) may be
205 /// memoized by the per-pass layout cache. Defaults to `true`.
206 ///
207 /// Override to `false` only when `layout_response` has a **non-idempotent**
208 /// side effect that must run on every call (a call counter, a one-shot
209 /// trigger). Idempotent side effects — the common case, e.g. overwriting a
210 /// measured size into a `Signal` — do **not** need to opt out: the cache may
211 /// skip a redundant identical-proposal repeat, but the value was already
212 /// written and the final state is correct. The debug inspector's
213 /// `BoundsTracker` opts out defensively (its whole-tree snapshot is the
214 /// payload, not a by-product of sizing).
215 fn cacheable_layout(&self) -> bool {
216 true
217 }
218
219 /// Position children within the allocated bounds.
220 ///
221 /// Called for **every active widget on every layout pass** — including
222 /// leaves, which receive an empty `children` slice. It is therefore also the
223 /// canonical *"here are your final, parent-assigned bounds"* hook, and the
224 /// only one that runs during layout: `layout_response` sees a *proposal*, not
225 /// the outcome, and `paint` runs too late for anything the renderer consumes
226 /// before it (a node-level transform scope, a text engine's viewport).
227 ///
228 /// A widget whose bounds feed such a thing must read them here, not in
229 /// `paint`. `SceneView` is the motivating case: it folds `bounds.origin` into
230 /// the view transform the render walker pushes *around* its subtree, so a
231 /// scene that learned its origin only at paint time drew its content offset
232 /// by `-bounds.origin` — an error that then scaled with zoom.
233 ///
234 /// **If you mutate interior state here, keep the write and its consequences
235 /// together.** This hook runs *before* `paint`, so writing a field that
236 /// `paint` later uses as a compare-then-act change detector will silently
237 /// blind that detector. (Both text engines were bitten: `place_children` set
238 /// the `viewport_width` that `paint` compared against, so `paint` concluded
239 /// "unchanged" and skipped the `engine.set_viewport` + relayout it owed.)
240 /// Route such writes through one idempotent helper that both hooks call.
241 ///
242 /// **Do not `Signal::set` here at [`BindingLevel::Relayout`] or
243 /// [`Rebuild`](crate::binding::BindingLevel::Rebuild).** This runs inside the
244 /// layout pass, so dirtying the tree from it re-enters layout. A plain
245 /// `Cell`/`RefCell` (what the colour-picker leaves use to cache their bounds
246 /// for hit-testing) or a `RepaintOnly` signal is fine.
247 ///
248 /// [`BindingLevel::Relayout`]: crate::binding::BindingLevel::Relayout
249 fn place_children(
250 &self,
251 _bounds: Rect,
252 _proposal: SizeProposal,
253 _children: &mut [WidgetPlacement],
254 _ctx: &LayoutContext,
255 ) {
256 // Leaf widgets have no children to place.
257 }
258
259 /// Draw the widget's visual representation.
260 fn paint(&self, _bounds: Rect, _canvas: &mut Canvas, _ctx: &PaintContext) {
261 // Default: nothing to paint (layout-only containers).
262 }
263
264 /// Whether this widget wants its [`after_paint`](Self::after_paint)
265 /// hook to fire each frame. Returning `false` (the default) saves
266 /// a virtual call per widget per frame for the vast majority of
267 /// widgets that don't aggregate descendant geometry.
268 ///
269 /// Same opt-in pattern as
270 /// [`wants_descendant_redirects`](Self::wants_descendant_redirects).
271 fn wants_after_paint(&self) -> bool {
272 false
273 }
274
275 /// Called once per frame after this widget's subtree has finished
276 /// painting. Receives a read-only view of the layout-resolved
277 /// arena so a parent can read its descendants' final bounds —
278 /// e.g. `TitleBar` aggregates its drag region and control-button
279 /// rects into a single `HitRegions` payload for the Windows
280 /// backend's `WM_NCHITTEST`.
281 ///
282 /// Walk order is depth-first **post**-order: a parent's
283 /// `after_paint` runs after every descendant's `paint` has
284 /// committed.
285 ///
286 /// Default: empty. Only widgets that override
287 /// [`wants_after_paint`](Self::wants_after_paint) and return `true`
288 /// see this called.
289 fn after_paint(&self, _view: &WidgetTreeView<'_>, _ctx: &PaintContext) {}
290
291 /// Whether this widget wants its [`post_paint`](Self::post_paint)
292 /// hook to fire each frame. Returning `false` (the default) saves a
293 /// virtual call per widget per frame for the vast majority of widgets
294 /// that don't draw a foreground over their children.
295 ///
296 /// Same opt-in pattern as [`wants_after_paint`](Self::wants_after_paint).
297 fn wants_post_paint(&self) -> bool {
298 false
299 }
300
301 /// Draw a foreground layer *over* this widget's children.
302 ///
303 /// The normal [`paint`](Self::paint) emits a widget's draws *before*
304 /// its children — a backdrop. `post_paint` emits *after* the entire
305 /// child subtree, so its draws land on top. This is the supported way
306 /// for a composing widget to paint over its own descendants:
307 /// inset shadows, a focus ring that must overlay content, a scrim, or
308 /// `SceneView`'s "over" lightweight band (selection lasso, highlighted
309 /// connectors).
310 ///
311 /// Runs inside the same clip / transform / opacity / blur scopes as
312 /// the widget and its children, so a foreground decoration pans,
313 /// scales and clips consistently with the subtree it covers. It is
314 /// paint-only — no hit-testing and no accessibility node; for
315 /// interactive overlays that must escape the widget's bounds, use the
316 /// overlay system instead.
317 ///
318 /// Default: empty. Only widgets that override
319 /// [`wants_post_paint`](Self::wants_post_paint) and return `true` see
320 /// this called.
321 fn post_paint(&self, _bounds: Rect, _canvas: &mut Canvas, _ctx: &PaintContext) {}
322
323 /// Declare this widget's accessibility identity.
324 fn accessibility(&self, _builder: &mut AccessNodeBuilder) {}
325
326 /// Whether this widget wants the AT walker to consult its
327 /// [`a11y_redirect_descendant`](Self::a11y_redirect_descendant)
328 /// hook for *every* descendant during AT tree emission, not
329 /// just its direct arena children.
330 ///
331 /// Returning `true` opts this widget into ancestor-chain
332 /// queries: as the walker iterates each descendant's parent
333 /// to decide where the descendant's `NodeId` lands in the AT
334 /// tree, it walks up the arena from that parent and asks
335 /// every ancestor with this flag set. First `Some(_)` wins
336 /// (closest ancestor takes priority — same precedence as a
337 /// CSS-like cascade).
338 ///
339 /// Returning `false` (the default) makes the walker pay the
340 /// O(depth) ancestor walk only for trees that genuinely need
341 /// it. Only opt in if your widget actively places
342 /// non-direct-child descendant `NodeId`s in its own
343 /// `accessibility()` emission — `teksilo_scene::SceneView` is
344 /// the canonical example.
345 ///
346 /// Default: `false`.
347 fn wants_descendant_redirects(&self) -> bool {
348 false
349 }
350
351 /// Optional redirection hook for AT-tree placement of a child.
352 ///
353 /// The accessibility walker calls this on the immediate arena
354 /// parent of each child — and, if the parent
355 /// [`wants_descendant_redirects`](Self::wants_descendant_redirects)
356 /// returns `false`, on every opt-in ancestor walking up the
357 /// arena from that parent. First `Some(_)` wins, scanned
358 /// bottom-up (closest ancestor takes priority). Returning
359 /// `Some(_)` tells the walker that this widget has *already*
360 /// placed `descendant`'s `NodeId` somewhere else (typically
361 /// under a synthetic node it emitted in its own
362 /// `accessibility()` call), and the walker should NOT add it
363 /// to its arena parent's children list.
364 ///
365 /// The returned `NodeId` is informational — it identifies the
366 /// new logical parent in case the walker wants to bookkeep
367 /// (e.g., dedupe). The walker does not validate that
368 /// `descendant`'s NodeId is actually in that target's children
369 /// list; it is the implementing widget's responsibility to
370 /// have placed it there during its `accessibility()` emission
371 /// (e.g. via `AccessNodeBuilder::attach_scene_child_under`).
372 ///
373 /// Used by `teksilo_scene::SceneView` to graft heavyweight
374 /// `Widget` items into an app-declared logical AT tree.
375 /// Other layered containers can adopt the same pattern.
376 ///
377 /// Default: `None` — no redirection.
378 fn a11y_redirect_descendant(
379 &self,
380 _self_id: WidgetId,
381 _descendant: WidgetId,
382 ) -> Option<accesskit::NodeId> {
383 None
384 }
385
386 /// Suggest an accessible title to an enclosing container that
387 /// wraps this widget as content — typically a modal / dialog
388 /// shell that wants to propagate the inner content's visible
389 /// title as the shell's own accessible name.
390 ///
391 /// Example: `ModalContainer` wraps a `DialogContent`. The
392 /// container owns the `Role::Dialog` node and needs a name;
393 /// `DialogContent` overrides this method to return its own
394 /// `title` string. The container queries this on its pending
395 /// content at build time and uses the result if set.
396 ///
397 /// Default: `None` — widgets that don't carry a natural
398 /// title don't need to override.
399 fn accessible_title_hint(&self) -> Option<String> {
400 None
401 }
402
403 /// Optional hint that directs initial focus to a specific
404 /// descendant when this widget is the root of a deferred-built
405 /// modal surface.
406 ///
407 /// The modal presentation pipeline consults this after building
408 /// the content subtree, in priority order: the caller's
409 /// `ModalRequest::focus_target` → the content widget's
410 /// `initial_focus_hint` → `first_focusable_descendant`.
411 /// `MessageBox` overrides this to return the widget id of its
412 /// configured default button, so platform-native button orderings
413 /// (Cancel-left + Default-right-but-focused) work without
414 /// forcing the default button to be the first focusable
415 /// descendant in tree-walk order.
416 ///
417 /// Default: `None` — widgets that don't need to direct initial
418 /// focus to a non-first-focusable descendant don't override.
419 fn initial_focus_hint(&self) -> Option<WidgetId> {
420 None
421 }
422
423 /// Return the child widget IDs that this widget manages.
424 fn children(&self) -> Vec<WidgetId> {
425 Vec::new()
426 }
427
428 /// Optional override for the child ORDER presented to assistive
429 /// technology, when it must differ from the paint / z-order child
430 /// order returned by [`children`](Self::children).
431 ///
432 /// Return `None` (the default) to let the accessibility walker use the
433 /// arena's child order — correct for almost every widget. Return
434 /// `Some(ids)` to reorder (or restrict) how children appear in the AT
435 /// tree and in the linear Tab reading order, WITHOUT affecting layout or
436 /// paint. `TableView` / `TreeTableView` use this to read the header
437 /// before the body rows even though they build the body first so it
438 /// paints beneath the header (WCAG 1.3.2 Meaningful Sequence).
439 fn accessibility_children(&self) -> Option<Vec<WidgetId>> {
440 None
441 }
442
443 /// Downcast hook. Default implementation returns `None`; concrete
444 /// widgets override with `Some(self)` when they want to expose
445 /// their concrete type to test-level introspection or reflection.
446 /// The trait already bounds on `std::any::Any` so concrete types
447 /// satisfy the `'static` requirement.
448 fn as_any(&self) -> Option<&dyn std::any::Any> {
449 None
450 }
451
452 /// Mutable counterpart of [`as_any`](Self::as_any). Default
453 /// returns `None`; widgets that want to expose mutable state to
454 /// tests (e.g. so a test can mutate a `Scene` inside a
455 /// `SceneView` post-layout) override with `Some(self)`. Should
456 /// follow the same opt-in pattern as `as_any`: only widgets
457 /// that opt into `&` introspection should opt into `&mut`.
458 fn as_any_mut(&mut self) -> Option<&mut dyn std::any::Any> {
459 None
460 }
461
462 /// Whether this widget clips its children to its bounds.
463 fn clips_children(&self) -> bool {
464 false
465 }
466
467 /// The rectangle (in **absolute tree coordinates**) that best *represents*
468 /// this widget when the framework reveals it into an ancestor scroll area on
469 /// focus gain. Returning `None` (the default) reveals the widget's whole
470 /// bounds — correct for most controls.
471 ///
472 /// A widget that can be much taller than a viewport — a `RichTextEditor`
473 /// grown inside a page `ScrollArea`, a `ListView` / `TreeView` taller than
474 /// its scroller — should override this to return the sub-rectangle the user
475 /// actually cares about (the caret line, the selected row). Otherwise
476 /// [`scroll_focused_into_view`](crate::widget_tree::WidgetTree) reveals the
477 /// *entire* box, which for a tall widget scrolls the page to its bottom on a
478 /// click that only meant to place the caret near the top. The returned rect
479 /// feeds the same ancestor-only `scroll_rect_into_view` engine the caret /
480 /// selection follow uses (the focused widget itself is excluded), so it
481 /// never double-scrolls against the widget's own internal follow.
482 ///
483 /// `bounds` is this widget's current absolute rectangle as the arena stores
484 /// it, so an override can place its interior rect without depending on a
485 /// paint-set origin.
486 fn focus_reveal_rect(&self, _bounds: Rect) -> Option<Rect> {
487 None
488 }
489
490 /// Whether the point lies inside this widget's *actual* shape, not
491 /// just its rectangular bounds. Consulted by hit-testing right after
492 /// the bounds check: returning `false` for a point that *is* inside
493 /// the bounding box makes the widget transparent to the click there,
494 /// so it **falls through** to whatever sibling is painted underneath
495 /// (the same machinery as a fully pass-through node, but shape-aware).
496 ///
497 /// Both arguments are in the widget's bounds space: `local_point` is
498 /// the point being tested and `bounds` is this widget's rectangle, so
499 /// a non-rectangular widget can test the point against its silhouette.
500 ///
501 /// The default returns `true` for any in-bounds point (a plain
502 /// rectangle), so every existing widget is unaffected. Override for
503 /// irregular shapes — an ellipse / cloud scene node, a circular
504 /// handle — so a click lands on the shape you see, not its bounding
505 /// box, and clicks in the transparent corners reach the node beneath.
506 /// This mirrors the lightweight tier's `SceneItem::shape_contains`.
507 fn hit_shape(&self, _local_point: Point, _bounds: Rect) -> bool {
508 true
509 }
510
511 /// How `rebuild_single_widget` treats this widget's existing children
512 /// when re-running its `build()`.
513 ///
514 /// **`false` (default) — re-derive.** Rebuild is "tear down and
515 /// reconstruct": every old child subtree is destroyed up front, then
516 /// `build()` produces a fresh set. The right semantic for data-driven
517 /// widgets like `Repeater` / `ListView` that rebuild their children from
518 /// current model state with fresh `WidgetId`s. A `false` widget must NOT
519 /// re-attach an old child id — it has already been destroyed.
520 ///
521 /// **`true` — reconcile.** `build()` re-attaches (by id) the children it
522 /// keeps and drops the rest. The framework keeps every re-attached child's
523 /// subtree intact — focus, scroll offset, text contents, signal
524 /// subscriptions all survive — and destroys only the old children the new
525 /// build dropped *and* did not re-parent elsewhere. This is the mode for
526 /// widgets that memoize stateful children across rebuilds:
527 ///
528 /// * `Switcher` keeps every mounted page alive so switching tabs doesn't
529 /// wipe the inactive pages' state.
530 /// * `SceneView` re-pushes the same heavyweight scene-widget ids each
531 /// rebuild (draining drag-to-move / marquee commits) — they must stay
532 /// attached or the cards "disappear" on every drag end.
533 /// * `TabWidget` / `DockingLayout` / `CompositeTooltip` re-attach memoized
534 /// panes / a one-shot body widget that cannot be reconstructed.
535 /// * `MenuBar` re-derives its menu triggers fresh each build (the model may
536 /// have changed — the reconcile reaps the superseded ones) while keeping
537 /// its memoized leading/trailing slot widgets, so a stateful slot control
538 /// survives a model-version rebuild.
539 ///
540 /// The reconcile follows **authoritative parent pointers**, so a kept
541 /// subtree that `build()` re-parents *out* of a dropped sibling and into
542 /// the new tree survives — it is not swept via the dropped sibling's now
543 /// stale `children` list. Dropped children are genuinely destroyed (state
544 /// unmounted, arena slots freed), not left as stranded, still-active
545 /// orphans.
546 fn preserves_children_on_rebuild(&self) -> bool {
547 false
548 }
549
550 /// Whether this widget, used as tooltip content, currently has anything
551 /// worth showing.
552 ///
553 /// Consulted by `WidgetTree` just before a dwell matures into an overlay.
554 /// Returning `false` cancels the show — the anchor simply has no tooltip
555 /// this time — so a blank or unresolved string does not pop an empty
556 /// chromed bubble, which reads as a rendering fault rather than as
557 /// "nothing to say here".
558 ///
559 /// Defaults to `true`: content that hosts an arbitrary widget tree (a
560 /// chart, a progress row) is meaningful without any text, and a custom
561 /// content widget must never be suppressed by a check it did not opt into.
562 /// Only widgets whose *whole* payload is a string — `TooltipWidget` — have
563 /// a well-defined notion of being empty.
564 fn tooltip_has_content(&self) -> bool {
565 true
566 }
567
568 /// Declare the rebindable keyboard shortcuts this widget exposes,
569 /// *without* installing handlers. The framework calls this at
570 /// arena insertion time (before `build()`) and at certain lazy
571 /// boundaries (e.g. `Switcher` walks declarations on its
572 /// not-yet-mounted `Pending` slots), so settings UIs and the
573 /// `ShortcutRegistry` see the keystrokes the moment the owning
574 /// container mounts — even if `build()` hasn't run.
575 ///
576 /// Pair this with `BuildContext::register_shortcut` in `build()`
577 /// to install the matching `on_activate` handler: the build-time
578 /// registration *upserts* the declared entry, preserving any user
579 /// override and the declared keystrokes while attaching the
580 /// closure that actually fires.
581 ///
582 /// The returned shortcuts may omit `on_activate` (a metadata-only
583 /// declaration). When matched at dispatch time without a
584 /// registered handler, the framework synthesizes a no-parameter
585 /// intent from the shortcut's id — same path as a build-time
586 /// registration with `on_activate: None`.
587 ///
588 /// Default: empty (no declared shortcuts).
589 fn declare_shortcuts(&self) -> Vec<crate::shortcut::Shortcut> {
590 Vec::new()
591 }
592
593 /// Extract attached handler set from a `WidgetWithHandlers` wrapper.
594 /// Called during arena insertion to transfer handlers to the `WidgetNode`.
595 /// Default: returns `None` (no attached handlers).
596 fn take_handler_set(&mut self) -> Option<crate::widget_builder::HandlerSet> {
597 None
598 }
599}