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teksilo_widgets/primitives/
max_size.rs

1// SPDX-License-Identifier: MPL-2.0
2// SPDX-FileCopyrightText: 2026 FernTech
3
4//! MaxSize — a layout modifier that caps a child to a maximum width and/or height.
5//!
6//! The child is proposed the lesser of the parent's proposal and the configured
7//! maximum on each axis; the reported size is then clamped again so a child that
8//! intrinsically overshoots the cap is always contained. Axes with no maximum set
9//! are passed through unchanged.
10//!
11//! `MaxSize` clips its child when a maximum is active (`clips_children() == true`)
12//! so content that still overflows after layout does not bleed into adjacent widgets.
13//! Maximum values can be static or bound to a reactive [`Signal<f32>`](teksilo_core::signal::Signal)
14//! for animated or data-driven constraints.
15//!
16//! For the inverse operation (ensuring a minimum size) see [`MinSize`](super::MinSize).
17//!
18//! ```rust
19//! # use teksilo_widgets::primitives::{MaxSize, TextWidget};
20//! # use teksilo_i18n::lit;
21//! // Cap a text widget to 240 logical pixels wide.
22//! let _w = MaxSize::width(240.0)
23//!     .child(TextWidget::new(lit!("This text will not exceed 240 dp.")));
24//! ```
25
26use teksilo_canvas::{Rect, Size, SizeProposal};
27use teksilo_core::accessibility::AccessNodeBuilder;
28use teksilo_core::signal::Prop;
29use teksilo_core::widget::{LayoutContext, PaintContext, PendingChild, Widget, WidgetPlacement};
30use teksilo_core::widget_id::WidgetId;
31
32/// Layout modifier that enforces a maximum width and/or height on a single child widget.
33///
34/// Constraints can be static or bound to a reactive `Signal<f32>` for dynamic resizing.
35#[derive(Debug)]
36pub struct MaxSize {
37    child_id: Option<WidgetId>,
38    pending_child: Option<PendingChild>,
39    max_width: Option<Prop<f32>>,
40    max_height: Option<Prop<f32>>,
41}
42
43impl MaxSize {
44    /// Cap both axes: the child's width will not exceed `width` and its height will not exceed `height`.
45    pub fn new(width: f32, height: f32) -> Self {
46        Self {
47            child_id: None,
48            pending_child: None,
49            max_width: Some(Prop::Static(width)),
50            max_height: Some(Prop::Static(height)),
51        }
52    }
53
54    /// Cap only the width axis; the height axis is unconstrained by this modifier.
55    pub fn width(width: f32) -> Self {
56        Self {
57            child_id: None,
58            pending_child: None,
59            max_width: Some(Prop::Static(width)),
60            max_height: None,
61        }
62    }
63
64    /// Cap only the height axis; the width axis is unconstrained by this modifier.
65    pub fn height(height: f32) -> Self {
66        Self {
67            child_id: None,
68            pending_child: None,
69            max_width: None,
70            max_height: Some(Prop::Static(height)),
71        }
72    }
73
74    /// Bind max width to a reactive state.
75    pub fn max_width(mut self, state: impl Into<Prop<f32>>) -> Self {
76        self.max_width = Some(state.into());
77        self
78    }
79
80    /// Bind max height to a reactive state.
81    pub fn max_height(mut self, state: impl Into<Prop<f32>>) -> Self {
82        self.max_height = Some(state.into());
83        self
84    }
85
86    /// Set child by pre-registered ID.
87    pub fn child_id(mut self, id: WidgetId) -> Self {
88        self.pending_child = Some(PendingChild::Id(id));
89        self
90    }
91
92    /// Set an inline child widget (deferred insertion).
93    pub fn child(mut self, widget: impl Widget + 'static) -> Self {
94        self.pending_child = Some(PendingChild::Deferred(Box::new(widget)));
95        self
96    }
97}
98
99impl Widget for MaxSize {
100    fn build(&mut self, ctx: &mut teksilo_core::build_context::BuildContext) -> Vec<WidgetId> {
101        if let Some(pending) = self.pending_child.take() {
102            self.child_id = Some(match pending {
103                PendingChild::Id(id) => id,
104                PendingChild::Deferred(w) => ctx.add_boxed(w),
105            });
106        }
107        let self_id = ctx.self_id();
108        let registry = ctx.binding_registry();
109        if let Some(ref w) = self.max_width {
110            w.register_if_bound(
111                self_id,
112                registry,
113                teksilo_core::binding::BindingLevel::Relayout,
114            );
115        }
116        if let Some(ref h) = self.max_height {
117            h.register_if_bound(
118                self_id,
119                registry,
120                teksilo_core::binding::BindingLevel::Relayout,
121            );
122        }
123        self.child_id.into_iter().collect()
124    }
125
126    fn layout_response(
127        &self,
128        proposal: SizeProposal,
129        ctx: &LayoutContext,
130    ) -> teksilo_core::widget::LayoutResponse {
131        let max_w = self.max_width.as_ref().map(|r| r.get());
132        let max_h = self.max_height.as_ref().map(|r| r.get());
133
134        let clamped_proposal = SizeProposal {
135            width: match (proposal.width, max_w) {
136                (Some(w), Some(max)) => Some(w.min(max)),
137                (None, Some(max)) => Some(max),
138                (w, None) => w,
139            },
140            height: match (proposal.height, max_h) {
141                (Some(h), Some(max)) => Some(h.min(max)),
142                (None, Some(max)) => Some(max),
143                (h, None) => h,
144            },
145        };
146
147        let child_size = self
148            .child_id
149            .and_then(|id| ctx.child_size(id, clamped_proposal))
150            .unwrap_or(Size::ZERO);
151
152        let w = match max_w {
153            Some(max) => child_size.width.min(max),
154            None => child_size.width,
155        };
156        let h = match max_h {
157            Some(max) => child_size.height.min(max),
158            None => child_size.height,
159        };
160        Size::new(w, h).into()
161    }
162
163    fn place_children(
164        &self,
165        bounds: Rect,
166        _proposal: SizeProposal,
167        children: &mut [WidgetPlacement],
168        _ctx: &LayoutContext,
169    ) {
170        for child in children.iter_mut() {
171            child.origin = bounds.origin();
172            child.size = bounds.size();
173        }
174    }
175
176    fn paint(&self, _bounds: Rect, _canvas: &mut teksilo_canvas::Canvas, _ctx: &PaintContext) {}
177
178    fn clips_children(&self) -> bool {
179        self.max_width.is_some() || self.max_height.is_some()
180    }
181
182    fn accessibility(&self, builder: &mut AccessNodeBuilder) {
183        builder.set_hidden();
184    }
185
186    fn children(&self) -> Vec<WidgetId> {
187        self.child_id.into_iter().collect()
188    }
189}
190
191#[cfg(test)]
192mod tests {
193    use super::*;
194    use teksilo_core::signal::Signal;
195    use teksilo_core::widget_tree::WidgetTree;
196
197    #[derive(Debug)]
198    struct FixedLeaf(f32, f32);
199    impl Widget for FixedLeaf {
200        fn layout_response(
201            &self,
202            _proposal: SizeProposal,
203            _ctx: &LayoutContext,
204        ) -> teksilo_core::widget::LayoutResponse {
205            Size::new(self.0, self.1).into()
206        }
207    }
208
209    #[test]
210    fn clamps_large_child_to_maximum() {
211        let mut tree = WidgetTree::new();
212        let child = tree.add(FixedLeaf(800.0, 600.0));
213        let max = tree.add(MaxSize::new(400.0, 300.0).child_id(child));
214        tree.layout(SizeProposal::unspecified());
215
216        let mb = tree.bounds(max);
217        assert!((mb.width - 400.0).abs() < 0.01);
218        assert!((mb.height - 300.0).abs() < 0.01);
219    }
220
221    #[test]
222    fn small_child_is_not_clamped() {
223        let mut tree = WidgetTree::new();
224        let child = tree.add(FixedLeaf(100.0, 50.0));
225        let max = tree.add(MaxSize::new(400.0, 300.0).child_id(child));
226        tree.layout(SizeProposal::unspecified());
227
228        let mb = tree.bounds(max);
229        assert!((mb.width - 100.0).abs() < 0.01);
230        assert!((mb.height - 50.0).abs() < 0.01);
231    }
232
233    #[test]
234    fn max_width_only() {
235        let mut tree = WidgetTree::new();
236        let child = tree.add(FixedLeaf(800.0, 50.0));
237        let max = tree.add(MaxSize::width(400.0).child_id(child));
238        tree.layout(SizeProposal::unspecified());
239
240        let mb = tree.bounds(max);
241        assert!((mb.width - 400.0).abs() < 0.01);
242        assert!((mb.height - 50.0).abs() < 0.01);
243    }
244
245    #[test]
246    fn max_width_dynamic() {
247        let max_w = Signal::new(400.0_f32);
248        let mut tree = WidgetTree::new();
249        let child = tree.add(FixedLeaf(800.0, 50.0));
250        let max = tree.add(
251            MaxSize::width(9999.0)
252                .max_width(max_w.clone())
253                .child_id(child),
254        );
255        tree.layout(SizeProposal::unspecified());
256        assert!((tree.bounds(max).width - 400.0).abs() < 0.01);
257
258        max_w.set(200.0);
259        tree.layout(SizeProposal::unspecified());
260        assert!((tree.bounds(max).width - 200.0).abs() < 0.01);
261    }
262}