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| Author | SHA1 | Date | |
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cadfba05dd | ||
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38b3a81053 |
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@@ -73,21 +73,6 @@ impl Holds {
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}
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}
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/// What a box has to be for a part of it, this many pixels shorter, to
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/// stay in this range: the range moved by that much, an end that was
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/// unbounded staying so.
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pub const fn longer_by(self, px: Px) -> Self {
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let lo = match self.lo.raw() == Px::MIN.raw() {
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true => self.lo,
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false => self.lo.add(px),
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};
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let hi = match self.hi.raw() == Px::MAX.raw() {
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true => self.hi,
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false => self.hi.add(px),
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};
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Self { lo, hi }
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}
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const fn raws(lo: i64, hi: i64) -> Self {
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Self {
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lo: Px::from_raw(narrow(lo)),
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+37
-50
@@ -267,36 +267,32 @@ 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
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.size_rules(id.id())
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.axis(axis)
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.exact()
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.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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})
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.map(|hint| hint.within_len(self.frame.axis(axis)));
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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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});
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let frame = self.frame.axis(axis);
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let resolved = hint.map(|hint| hint.within_len(frame));
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#[cfg(feature = "layout-diagnostics")]
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diag::hint_read(id.id(), self.id, axis, hint);
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match hint {
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Some(hint) => {
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#[cfg(feature = "layout-diagnostics")]
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diag::bump(Counter::HintHits);
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self.depend_on(id);
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// A fraction was just resolved against this frame, so what
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// this draw does with it is a function of the frame's length.
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if hint.rel != Rel::ZERO {
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self.frame_own_len[axis as usize] = Some(self.frame.axis(axis));
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}
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Some(hint)
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}
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None => {
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#[cfg(feature = "layout-diagnostics")]
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diag::bump(Counter::HintMisses);
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None
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{
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diag::hint_read(id.id(), self.id, axis, resolved);
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diag::bump(match resolved {
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Some(_) => Counter::HintHits,
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None => Counter::HintMisses,
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});
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}
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if let Some(hint) = hint {
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self.depend_on(id);
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// Resolving a fraction against this frame makes this draw a
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// function of the frame's length. The fraction to ask about is
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// the child's own: resolved against a frame of pixels, none is
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// left to see it by.
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if hint.rel != Rel::ZERO {
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self.frame_own_len[axis as usize] = Some(frame);
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}
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}
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resolved
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}
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fn depend_on<W: ?Sized>(&mut self, child: &StrongWidget<W>) {
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@@ -593,29 +589,20 @@ impl Painter<'_> {
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result.extent[n] = holds.extent[n];
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result.extent_len[n] = holds.extent_len[n];
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}
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// Its box is this widget's own less the inset. Where that is
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// pixels, its box is exactly that many shorter in any window,
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// so what it holds for is a range on this widget's box moved
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// by them, and a length it pinned is this widget's length
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// less them. An inset with a fraction in it is a different
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// number of pixels in each window, and taking it off a length
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// rounds once more than taking it off pixels does: there the
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// child's box is a fixed expression of this one, so this
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// widget's length is pinned and the range goes on the window
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// through the child's box, the way a slot's does.
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(Part::Inset { lead, trail }, false) => {
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let inset = lead + trail;
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match inset.rel == Rel::ZERO {
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true => {
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result.extent[n] = holds.extent[n].longer_by(inset.px);
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result.extent_len[n] = holds.extent_len[n].map(|pinned| pinned + inset);
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}
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false => {
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result.window[n] = result.window[n]
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.and(holds.extent[n].through(extent.axis(axis).len()));
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result.extent_len[n] = Some(self.extent.axis(axis).len());
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}
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}
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// Its box is a part of this widget's own box, in that box's
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// own lengths, so what it holds for maps back through that
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// part into a range on this widget's box. A length it pinned
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// is this widget's length less the part's pixels where the
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// part is the whole of the box less pixels, which is the one
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// shape that inverts exactly; any other part pins this
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// widget's own length.
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(Part::Of(span), false) => {
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let part_len = span.len();
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result.extent[n] = holds.extent[n].through(part_len);
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result.extent_len[n] = holds.extent_len[n].map(|pinned| match part_len.rel {
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Rel::ONE => pinned - Len::from_parts(Rel::ZERO, part_len.px),
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_ => self.extent.axis(axis).len(),
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});
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}
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// Its box is a length this widget decided, from its own
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// frame or from a sibling's answer: no length of this
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@@ -12,13 +12,12 @@ pub enum Part {
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/// here is a fraction of the window and not of the box -- the whole of a
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/// box is [`Self::All`], not a `rel(1.0)` span.
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From(UiSpan),
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/// The box less a window length at each end, which is what a container
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/// that insets one speaks -- padding, or a row asking a child in the
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/// room left from its cursor. Neither end names the box's length, so a
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/// container can say "from here to my end" without reading how long it
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/// is, and a box chosen from its own answer does not feed back into the
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/// answer.
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Inset { lead: Len, trail: Len },
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/// A part of the box in its own coordinates, which is what a container
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/// that insets one speaks: taking eleven pixels off the end needs no
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/// length, where saying the same thing in window lengths would make the
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/// container read its own box -- and a box chosen from its own answer
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/// then feeds back into the answer.
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Of(UiSpan),
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/// A box of this length, wherever in the parent's box the child's own
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/// alignment puts it, and that same length as its frame. Unlike `From`,
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/// it is a length decided from above rather than a place along a
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@@ -33,7 +32,7 @@ impl Part {
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match self {
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Self::All => extent,
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Self::From(span) => UiSpan::new(extent.start + span.start, extent.start + span.end),
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Self::Inset { lead, trail } => UiSpan::new(extent.start + lead, extent.end - trail),
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Self::Of(span) => span.within(&extent),
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Self::Sized(len) => {
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let start = extent.start + (extent.len() - len).scale(align.rel());
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UiSpan::new(start, start + len)
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@@ -20,10 +20,10 @@ impl Widget for Pad {
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// The two stay distinct -- the box can be narrower still, where a row
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// asked this widget in the room left, and a text wraps at that.
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let inset = |lead: Px, trail: Px| {
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Place::Within(Part::Inset {
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lead: Len::from_parts(Rel::ZERO, lead),
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trail: Len::from_parts(Rel::ZERO, trail),
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})
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Place::Within(Part::Of(UiSpan::new(
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Len::from_parts(Rel::ZERO, lead),
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Len::from_parts(Rel::ONE, -trail),
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)))
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};
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let place = [
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inset(self.padding.left, self.padding.right),
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+17
-43
@@ -10,18 +10,13 @@ pub struct Span {
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impl Widget for Span {
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fn draw(&mut self, painter: &mut Painter) -> Size {
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let axis = self.dir.axis;
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// The room left from the cursor to the row's end, said without the
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// row's length: a child measured in it does not make this drawing
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// depend on how long the row is.
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let room_from = |cursor: Len| match self.dir.sign {
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Sign::Pos => Part::Inset {
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lead: cursor,
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trail: Len::ZERO,
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},
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Sign::Neg => Part::Inset {
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lead: Len::ZERO,
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trail: cursor,
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},
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// The row: this span's own box, as a length of the frame its children
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// are laid out against. Its start is nothing's business -- a slot is
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// a length from it -- so what this reads is the length alone.
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let far = painter.extent_len(axis);
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let along = |from: Len, to: Len| match self.dir.sign {
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Sign::Pos => UiSpan::new(from, to),
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Sign::Neg => UiSpan::new(far - to, far - from),
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};
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// Across itself the child sits where its own alignment says, in the
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// whole of the row: a span is what contains its children there, and
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@@ -33,28 +28,24 @@ impl Widget for Span {
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// given whatever else is in it and wherever this child sits among
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// them; what a drawn child is asked in is the room left from the
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// cursor, because a text has to wrap at the width actually there.
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// This is the one ask a drawn fixed child gets: its slot is its
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// answer, and the drawing is moved there once the shares are known.
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// A hinted child is asked once, in its slot.
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let mut cursor = Len::rel_min();
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let mut lens = Vec::with_capacity(self.children.len());
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let mut measured = Vec::with_capacity(self.children.len());
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let mut drawn_across = Vec::with_capacity(self.children.len());
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for child in &self.children {
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let size = match painter.size_hint(child, axis) {
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let len = match painter.size_hint(child, axis) {
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Some(len) => {
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measured.push(None);
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drawn_across.push(None);
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len
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}
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None => {
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let room = Place::Within(room_from(cursor));
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let room = Place::Within(Part::From(along(cursor, far)));
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let size = painter
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.widget_at(child, [None; 2], axis.pair(room, across))
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.size();
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measured.push(Some(size));
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drawn_across.push(Some(size.axis(!axis)));
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size.axis(axis)
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}
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};
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let len = size;
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cursor.px += len.px + self.gap;
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cursor.rel += len.rel;
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lens.push(len);
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@@ -71,25 +62,9 @@ impl Widget for Span {
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|sum, len| sum + *len,
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);
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// The row: this span's own box as a length of the window, read only
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// where a slot depends on it -- shares divide what is left of it,
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// and a negative row counts from its end. Reading it pins the
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// drawing to this length; a positive row of fixed children is not
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// pinned and holds for any length its children do. Its start is
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// nothing's business: a slot is a length from it.
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let far = (total.leftover > Weight::ZERO || self.dir.sign == Sign::Neg)
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.then(|| painter.extent_len(axis));
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let along = |from: Len, to: Len| match self.dir.sign {
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Sign::Pos => UiSpan::new(from, to),
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Sign::Neg => {
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let far = far.expect("a negative row reads its length");
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UiSpan::new(far - to, far - from)
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}
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};
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// What is left for the shares to divide: the row less everything
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// fixed, as a length of the frame rather than a number of pixels.
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// Nothing where there are no shares, and nothing reads it there.
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let room = far.map_or(Len::ZERO, |far| far - Len::from_parts(total.rel, total.px));
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let room = far - Len::from_parts(total.rel, total.px);
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// Whether anything is left over is a question in pixels: `rel(0.5)`
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// beside 300 px is full at 600 and overfull at 400. Asked of `room`
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// itself, and answered back through the same expression, so the
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@@ -125,8 +100,7 @@ impl Widget for Span {
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let mut taken = Weight::ZERO;
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let mut start = Len::rel_min();
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let mut ortho = LayoutLen::ZERO;
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for ((child, len), measured) in self.children.iter().zip(&lens).zip(&measured) {
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let len = *len;
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for ((child, &len), &across_len) in self.children.iter().zip(&lens).zip(&drawn_across) {
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// A child asking for nothing but a part of what is left over,
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// when nothing is, is not drawn at all. One that also asked for
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// pixels or a fraction keeps those and overflows.
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@@ -156,10 +130,10 @@ impl Widget for Span {
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if len.leftover > Weight::ZERO && shares {
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narrow[axis as usize] = Some(slot.len());
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}
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let used = match (measured, narrow[axis as usize]) {
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(Some(size), None) => {
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let used = match (across_len, narrow[axis as usize]) {
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(Some(across_len), None) => {
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painter.place_at(child, place);
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size.axis(!axis)
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across_len
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}
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_ => painter.widget_at(child, narrow, place).len(!axis),
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};
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