Carry a length as a rule beside a widget, not a widget around it
`.width()` built a `SetSize` whose whole job was to answer `size_hint`, so every declared length cost a widget, an `ActiveData` and a link of chain to say one number. It is now a `SizeRule` per axis on `WidgetData`, beside `region_node`, resolved by `Painter` where the widget is drawn. `SetSize` and `MaxSize` are gone; `MaxSize` had no caller but its own builders. That settles which of two answers is the size. A rule wins on the axis it names and the `Size` returned by `draw` answers the rest, applied once in `draw_inner` rather than by each widget that could carry one -- so the widget under a rule never learns of it. `Painter::size_hint` reads the rule first for the same reason: a rule that beats what a widget would draw has to beat what it says about itself. `declared_lens` still falls back to a non-leftover `size_hint`, which is how an image or a gap gets its own pixel size rather than the whole offer. That is the offer's business rather than a declaration's, and it falls away when a widget occupies its reported size inside the box it was offered. `known` and `declared` are separate because a share is a length to whoever divides one and not to whoever composes a box: `.width(leftover(3))` is known without drawing but cannot narrow anything. Checked: fmt, clippy, 85 tests, and 100 generated seeds agreeing warm against cold in 67.6 s. `minimal`, `text` and `view` render byte-identical at 1920x1200; `tabs` differs only in the widget count it prints about itself, which is two wrapper types smaller.
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@@ -1,25 +0,0 @@
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use crate::prelude::*;
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pub struct MaxSize {
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pub inner: StrongWidget,
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pub x: Option<Len>,
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pub y: Option<Len>,
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}
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impl Widget for MaxSize {
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fn draw(&mut self, painter: &mut Painter) -> Size {
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let child = painter.widget(&self.inner).size();
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let own = painter.px_size();
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Size {
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x: capped(child.x, self.x, own.x),
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y: capped(child.y, self.y, own.y),
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}
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}
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}
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fn capped(len: Len, max: Option<Len>, own: f32) -> Len {
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match max {
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Some(max) if len.apply_leftover().to_px(own) > max.apply_leftover().to_px(own) => max,
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_ => len,
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}
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}
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@@ -1,19 +1,15 @@
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mod align;
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mod layer;
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mod max_size;
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mod offset;
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mod pad;
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mod scroll;
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mod set_size;
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mod span;
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mod stack;
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pub use align::*;
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pub use layer::*;
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pub use max_size::*;
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pub use offset::*;
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pub use pad::*;
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pub use scroll::*;
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pub use set_size::*;
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pub use span::*;
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pub use stack::*;
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@@ -1,30 +0,0 @@
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use crate::prelude::*;
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pub struct SetSize {
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pub inner: StrongWidget,
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pub x: Option<Len>,
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pub y: Option<Len>,
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}
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impl Widget for SetSize {
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fn draw(&mut self, painter: &mut Painter) -> Size {
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// Nothing to apply: a declared length is taken where this widget is
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// drawn, so the box it has already is that length, and `leftover` is a
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// share only whoever divides a length can work out. Both reach them
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// through `size_hint`.
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let child = painter.widget(&self.inner).size();
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Size {
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x: self.x.unwrap_or(child.x),
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y: self.y.unwrap_or(child.y),
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}
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}
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/// A declared axis is known without looking at the child, which is what
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/// lets a span lay out around `.height(leftover(1))` without drawing it.
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fn size_hint(&self, axis: Axis) -> Option<Len> {
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match axis {
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Axis::X => self.x,
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Axis::Y => self.y,
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}
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}
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}
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+23
-33
@@ -39,48 +39,38 @@ widget_trait! {
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}
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}
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fn sized(self, size: impl Into<Size>) -> impl WidgetFn<Rsc, SetSize> {
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fn sized(self, size: impl Into<Size>) -> impl WidgetIdFn<Rsc, WL::Widget> {
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let size = size.into();
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move |state| SetSize {
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inner: self.add_strong(state),
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x: Some(size.x),
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y: Some(size.y),
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move |state| {
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let id = self.add(state);
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let widgets = &mut state.ui_mut().widgets;
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widgets.set_size_rule(id, Axis::X, SizeRule::Exact(size.x));
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widgets.set_size_rule(id, Axis::Y, SizeRule::Exact(size.y));
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id
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}
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}
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fn max_width(self, len: impl Into<Len>) -> impl WidgetFn<Rsc, MaxSize> {
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fn width(self, len: impl Into<Len>) -> impl WidgetIdFn<Rsc, WL::Widget> {
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let len = len.into();
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move |state| MaxSize {
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inner: self.add_strong(state),
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x: Some(len),
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y: None,
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move |state| {
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let id = self.add(state);
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state
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.ui_mut()
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.widgets
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.set_size_rule(id, Axis::X, SizeRule::Exact(len));
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id
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}
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}
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fn max_height(self, len: impl Into<Len>) -> impl WidgetFn<Rsc, MaxSize> {
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fn height(self, len: impl Into<Len>) -> impl WidgetIdFn<Rsc, WL::Widget> {
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let len = len.into();
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move |state| MaxSize {
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inner: self.add_strong(state),
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x: None,
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y: Some(len),
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}
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}
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fn width(self, len: impl Into<Len>) -> impl WidgetFn<Rsc, SetSize> {
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let len = len.into();
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move |state| SetSize {
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inner: self.add_strong(state),
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x: Some(len),
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y: None,
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}
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}
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fn height(self, len: impl Into<Len>) -> impl WidgetFn<Rsc, SetSize> {
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let len = len.into();
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move |state| SetSize {
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inner: self.add_strong(state),
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x: None,
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y: Some(len),
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move |state| {
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let id = self.add(state);
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state
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.ui_mut()
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.widgets
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.set_size_rule(id, Axis::Y, SizeRule::Exact(len));
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id
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}
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}
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