Ask whether a rule gives the length, not whether there is one
`Painter::ruled` answered "is there a rule beside me on this axis", which is the same question as "is my report moot" only while `Exact` is the only rule there is. `Min`, `Max` and `Clamp` are queued, and under one of those the answer is still the widget's to give and a span across itself still has to read its children -- so the name would have been true and the meaning wrong, which is the worst way for a predicate to age. It is `has_exact_size` now, over `SizeRule::exact` rather than `known`. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
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@@ -222,7 +222,7 @@ impl<'a> Painter<'a> {
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let widgets = self.rsc.widgets();
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// A rule is the answer where there is one: it wins over whatever the
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// widget would draw, so it has to win over what the widget says too.
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let hint = widgets.size_rules(id.id()).axis(axis).known().or_else(|| {
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let hint = widgets.size_rules(id.id()).axis(axis).exact().or_else(|| {
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widgets
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.get_dyn(id.id())
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.and_then(|widget| widget.size_hint(axis))
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@@ -360,17 +360,21 @@ impl<'a> Painter<'a> {
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self.rsc.widgets().alignment(self.id)
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}
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/// Whether a rule beside this widget settles its length on `axis`, which
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/// makes whatever it reports for that axis moot. The widget under a rule
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/// does not otherwise learn of it -- this is for a container deciding
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/// whether reading its children across an axis is worth anything, since
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/// reading one is also what makes its own size depend on it.
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pub fn ruled(&self, axis: Axis) -> bool {
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/// Whether a rule beside this widget gives its length on `axis` outright,
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/// which makes whatever it reports for that axis moot. A rule that only
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/// bounds the length is not one of these: the answer is still the
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/// widget's to give, and something still has to work it out.
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///
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/// The widget under a rule does not otherwise learn of it -- this is for
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/// a container deciding whether reading its children across an axis is
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/// worth anything, since reading one is also what makes its own size
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/// depend on it.
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pub fn has_exact_size(&self, axis: Axis) -> bool {
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self.rsc
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.widgets()
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.size_rules(self.id)
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.axis(axis)
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.known()
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.exact()
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.is_some()
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}
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@@ -29,11 +29,12 @@ impl SizeRule {
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}
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}
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/// The length this rule fixes, whether or not it can narrow a box. A
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/// share is a length the widget's parent still has to divide, so it is
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/// known here and resolved there -- unlike `declared`, which is only the
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/// ones that give a box directly.
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pub fn known(&self) -> Option<LayoutLen> {
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/// The length this rule gives outright, whatever the widget reports --
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/// which makes the widget's answer on that axis moot. A share counts: it
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/// is a length the widget's parent still has to divide, so it is exact
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/// here and resolved there, unlike `declared`, which is only the ones
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/// that give a box directly.
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pub fn exact(&self) -> Option<LayoutLen> {
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match self {
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Self::Free => None,
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Self::Exact(len) => Some(*len),
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@@ -80,9 +80,11 @@ impl Widget for Span {
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}
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// Across itself a span is as long as its longest child -- unless a
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// rule beside it already says how long it is, and then reading them
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// answers nothing and makes its size depend on theirs for it.
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let shrinks = !painter.ruled(!axis);
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// rule beside it gives that length outright, and then reading them
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// answers nothing and makes its size depend on theirs for it. A rule
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// that only bounds the length does not count: the answer is still
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// this span's to give.
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let shrinks = !painter.has_exact_size(!axis);
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// What the fixed parts and the gaps before here take, which is a sum
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// of lengths and exact, and how much of the leftover weight is
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// spoken for. A position is one from the other rather than a step
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+1
-1
@@ -178,7 +178,7 @@ fn reshuffle(
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/// it has to be buildable from what the failure printed.
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fn describe(id: WidgetId, h: &Harness) -> String {
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let rules = h.rsc.widgets().size_rules(id);
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let rule = |r: SizeRule| match r.known() {
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let rule = |r: SizeRule| match r.exact() {
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Some(len) => format!("{len}"),
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None => "-".into(),
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};
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