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No files matched your search
@@ -109,6 +109,18 @@ impl<const SHIFT: u32> Fixed<SHIFT> {
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})
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}
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/// The first step at or above `v`, where [`Self::from_f32`] takes the
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/// nearest one and is below it half the time. For a bound that has to
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/// admit the value it came from: a measurement rounded down is a bound
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/// that leaves out the thing it was measured from.
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pub const fn ceil_from_f32(v: f32) -> Self {
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let nearest = Self::from_f32(v);
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match nearest.to_f32() < v {
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true => nearest.next_up(),
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false => nearest,
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}
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}
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/// From a number as it is written in source -- `16`, `1.5` -- which is
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/// the other place a value enters the grid.
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pub fn from_num(v: impl UiNum) -> Self {
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@@ -372,6 +384,12 @@ impl<const SHIFT: u32> FixedVec2<SHIFT> {
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Self::new(Fixed::from_f32(v.x), Fixed::from_f32(v.y))
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}
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/// The first step at or above each part, for a measurement reported as a
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/// box: what it occupies is not less than what was measured.
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pub fn ceil_from_f32(v: Vec2) -> Self {
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Self::new(Fixed::ceil_from_f32(v.x), Fixed::ceil_from_f32(v.y))
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}
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pub fn to_f32(self) -> Vec2 {
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Vec2::new(self.x.to_f32(), self.y.to_f32())
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}
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@@ -488,6 +506,25 @@ mod tests {
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assert_eq!(Px::from_int(100) / Rel::from_f32(0.5), Px::from_int(200));
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}
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/// The bound a greedy line break needs: the width it was measured at is
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/// not on the grid, and the narrowest box the break still holds for is
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/// the step at or above it, never the one below.
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#[test]
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fn a_ceiling_never_lands_below_the_number_it_came_from() {
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let step = 1.0 / (1 << PX_SHIFT) as f32;
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for n in 0..64 {
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let v = 189.0 + n as f32 * step / 3.0;
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let up = Px::ceil_from_f32(v);
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assert!(up.to_f32() >= v, "{up:?} is below {v}");
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assert!(
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up.to_f32() - v < step,
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"{up:?} is more than a step above {v}"
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);
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}
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// An exact step is its own ceiling.
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assert_eq!(Px::ceil_from_f32(189.5), Px::from_f32(189.5));
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}
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#[test]
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fn a_number_from_outside_is_clamped_to_the_grid() {
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assert_eq!(Px::from_f32(1e12), Px::MAX);
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@@ -107,13 +107,6 @@ impl Default for TextAttrs {
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}
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}
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/// How far below the longest line a width may fall and still be answered by
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/// the break in hand. A parent that offers a child the length it reported
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/// composes that length back through the box chain, so the two differ in the
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/// last bits -- and at exactly the longest line, that decides whether a line
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/// fits. Sub-pixel, so no break it admits is one a reader could see.
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const BREAK_EPSILON_PX: f32 = 0.05;
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/// Keeps text and its corresponding layout from getting out of sync.
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pub struct TextBuffer {
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text: String,
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@@ -200,15 +193,19 @@ impl TextBuffer {
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// A greedy break at one width is the same break at every width down
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// to the longest line it produced: each line still fits, and none can
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||||
// take a word that would not fit in the wider box. So the layout in
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||||
// hand already answers, and re-breaking would only be a chance to
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// disagree with itself -- which is what happens when a parent offers
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// a child the length that child just reported, and the two land
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||||
// either side of a float.
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// hand already answers, and re-breaking would only be work.
|
||||
//
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// At the longest line exactly, with no margin below it. A narrower
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||||
// width really does break differently, so answering one from the
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||||
// break in hand is how a warm tree keeps lines a cold tree would
|
||||
// never produce. The margin was here because a text reports the
|
||||
// width it used and a parent hands that back; the report is the step
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||||
// at or above its longest line now, so what comes back fits.
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if let Some(key) = &self.layout_key
|
||||
&& key.attrs == *attrs
|
||||
&& let (Some(broke_at), Some(want)) = (key.max_width, width)
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||||
&& want <= broke_at
|
||||
&& want + BREAK_EPSILON_PX >= self.layout.width()
|
||||
&& want >= self.layout.width()
|
||||
{
|
||||
#[cfg(feature = "layout-diagnostics")]
|
||||
diag::bump(Counter::TextShapeHits);
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||||
|
||||
+19
-41
@@ -139,30 +139,20 @@ impl<'a> Painter<'a> {
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||||
id: &'s StrongWidget<W>,
|
||||
region: UiRegion,
|
||||
) -> DrawResult<'s, 'a, W> {
|
||||
self.widget_at(id, region, region.size(), [false; 2])
|
||||
self.widget_at(id, region, [false; 2])
|
||||
}
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||||
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||||
/// Draws a widget in `region`, saying what the answer means.
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||||
///
|
||||
/// `reports_of` is what a fraction the child reports is a fraction of, as
|
||||
/// lengths of this widget's own box. It is the box the child was given
|
||||
/// wherever that box is the child's whole area -- a pad's inset, a stack
|
||||
/// child, a scroll's content -- and a span passes its own extent along
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||||
/// the row instead: it offers each child the room left from its cursor,
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||||
/// because a text has to wrap at the width actually there, while
|
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/// `rel(0.5)` still means half the span wherever the child sits in it.
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///
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||||
/// A `decided` axis is one where this box was chosen from the widget's
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/// own answer. On those the answer is not placed inside the box again: it
|
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/// already is the box, and a fraction taken of it a second time would
|
||||
/// shrink it twice. A container uses that where it hands back exactly
|
||||
/// what a child asked for -- a span placing a child at the length it
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/// reported, a scroll giving its content the content's own length.
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||||
/// Draws a widget in a box this widget chose from the widget's own
|
||||
/// answer along the `decided` axes. On those the answer is not placed
|
||||
/// inside the box again: it already is the box, and a fraction the
|
||||
/// widget reported, taken of this box a second time, would shrink it
|
||||
/// twice. A container uses this where it hands back exactly what a child
|
||||
/// asked for -- a span placing a child at the length it reported, a
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/// scroll giving its content the content's own length.
|
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pub fn widget_at<'s, W: ?Sized>(
|
||||
&'s mut self,
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||||
id: &'s StrongWidget<W>,
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||||
region: UiRegion,
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||||
reports_of: UiVec2,
|
||||
decided: [bool; 2],
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||||
) -> DrawResult<'s, 'a, W> {
|
||||
let region_node = self.rsc.widgets().is_region_node(id.id());
|
||||
@@ -232,10 +222,18 @@ impl<'a> Painter<'a> {
|
||||
for (axis, under) in AXES.into_iter().zip(self.under.iter_mut()) {
|
||||
*under = under.and(holds[axis as usize].through(local.axis(axis).len()));
|
||||
}
|
||||
// The answer as it was given. A fraction in it is a fraction of this
|
||||
// widget's box, which is the same thing a rule beside the child
|
||||
// means and the same thing for every box this widget hands out: a
|
||||
// span offers each child the room left from its cursor, because a
|
||||
// text has to wrap at the width actually there, and `rel(0.5)` is
|
||||
// still half the span. Padding is outside what it pads for the same
|
||||
// reason -- inset the fraction and a child's `rel` would mean the
|
||||
// inner box while its `px` meant the outer one.
|
||||
DrawResult {
|
||||
child: id,
|
||||
painter: self,
|
||||
size: in_parent_frame(size, reports_of, declared),
|
||||
size,
|
||||
}
|
||||
}
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||||
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||||
@@ -269,14 +267,12 @@ impl<'a> Painter<'a> {
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||||
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||||
/// A child's length in the box it is about to be offered, if it can be
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||||
/// had without drawing it: from its hint, or from a drawing it already
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||||
/// has that holds for that box. `reports_of` is what a fraction in the
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||||
/// answer is a fraction of, as it is for [`Self::widget_at`].
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||||
/// has that holds for that box.
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||||
pub fn known_len<W: ?Sized>(
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||||
&mut self,
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||||
child: &StrongWidget<W>,
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||||
axis: Axis,
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||||
region: UiRegion,
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||||
reports_of: UiVec2,
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||||
) -> Option<LayoutLen> {
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||||
let declared = self.declared_lens(child);
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||||
let align = self.rsc.widgets().alignment(child.id());
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||||
@@ -302,7 +298,7 @@ impl<'a> Painter<'a> {
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||||
for (axis, under) in AXES.into_iter().zip(self.under.iter_mut()) {
|
||||
*under = under.and(holds[axis as usize].through(local.axis(axis).len()));
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||||
}
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||||
Some(in_parent_frame(size, reports_of, declared).axis(axis))
|
||||
Some(size.axis(axis))
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||||
}
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||||
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||||
/// Whether this is the first box a child is asked about in during a draw
|
||||
@@ -521,24 +517,6 @@ impl PrimitiveLike for &TextureHandle {
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||||
}
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||||
}
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||||
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||||
/// A child's answer as lengths of the parent's own box. A widget reports a
|
||||
/// fraction, and `reports_of` is the length that fraction is of: the box the
|
||||
/// child was given wherever that is the child's whole area, and the parent's
|
||||
/// own extent wherever the box is a positional remainder, as a span's is
|
||||
/// after an earlier child. Pixels come through untouched either way, being
|
||||
/// that many pixels wherever they end up. A declared axis is already the
|
||||
/// parent's: it resolved the rule in its own box, and the rule is what the
|
||||
/// report says.
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||||
fn in_parent_frame(size: Size, reports_of: UiVec2, declared: [Option<LayoutLen>; 2]) -> Size {
|
||||
let mut size = size;
|
||||
for (axis, declared) in AXES.into_iter().zip(declared) {
|
||||
if declared.is_none() {
|
||||
*size.axis_mut(axis) = size.axis(axis).within_len(reports_of.axis(axis));
|
||||
}
|
||||
}
|
||||
size
|
||||
}
|
||||
|
||||
/// What a widget declares a length of its box to be. `leftover` is not one: a
|
||||
/// share of what is left over is only a length to the widget dividing one,
|
||||
/// so it passes up in the size instead.
|
||||
|
||||
+43
-21
@@ -55,6 +55,9 @@ pub struct UiRenderState {
|
||||
/// Whether this frame contains a declared-length change, so any dirty
|
||||
/// dependent replaces its answer too.
|
||||
replace_answers: bool,
|
||||
/// Widgets waiting for an ancestor to draw them, so the walk down the
|
||||
/// depths does not pick one up again at its own depth.
|
||||
deferred: crate::util::HashSet<WidgetId>,
|
||||
pub moves: Moves,
|
||||
}
|
||||
|
||||
@@ -68,6 +71,7 @@ impl UiRenderState {
|
||||
slots: Default::default(),
|
||||
answer_invalid: Default::default(),
|
||||
replace_answers: false,
|
||||
deferred: Default::default(),
|
||||
moves: Default::default(),
|
||||
resized: false,
|
||||
}
|
||||
@@ -827,19 +831,34 @@ impl UiRenderState {
|
||||
pub fn redraw_updates(&mut self, rsc: &mut dyn UiRsc) {
|
||||
#[cfg(feature = "layout-diagnostics")]
|
||||
let _layout = diag::timer(TimerKind::IncrementalLayout);
|
||||
// Deepest first: a reader whose children have all settled asks each
|
||||
// once, where any other order has it lay out again for whatever
|
||||
// settles under it afterwards. Equal-depth widgets are independent,
|
||||
// so their order does not matter.
|
||||
while let Some(id) = {
|
||||
let dirty = rsc.widgets().needs_redraw.iter().copied();
|
||||
dirty.max_by_key(|&id| self.depth(id))
|
||||
} {
|
||||
// Deepest first, and strictly: a widget that cannot settle where it
|
||||
// is defers to its parent rather than drawing the parent from
|
||||
// inside itself. It marks the parent, stays marked, and waits here
|
||||
// until the walk reaches its parent's depth.
|
||||
//
|
||||
// What that buys is that nothing shallower is ever drawn while
|
||||
// anything deeper is still dirty. A parent drawing can therefore
|
||||
// trust every answer it reads without descending to check whether
|
||||
// something below is about to change it -- which is the whole class
|
||||
// of defect where a widget settles inside its parent's draw, clears
|
||||
// its mark there, and tells nobody its answer moved.
|
||||
loop {
|
||||
let next = rsc
|
||||
.widgets()
|
||||
.needs_redraw
|
||||
.iter()
|
||||
.copied()
|
||||
.filter(|id| !self.deferred.contains(id))
|
||||
.max_by_key(|&id| self.depth(id));
|
||||
let Some(id) = next else { break };
|
||||
#[cfg(feature = "layout-diagnostics")]
|
||||
diag::bump(Counter::QueuePops);
|
||||
self.redraw(id, rsc);
|
||||
if !self.redraw(id, rsc) {
|
||||
self.deferred.insert(id);
|
||||
}
|
||||
}
|
||||
self.deferred.clear();
|
||||
}
|
||||
|
||||
fn depth(&self, id: WidgetId) -> usize {
|
||||
#[cfg(feature = "layout-diagnostics")]
|
||||
@@ -923,11 +942,13 @@ impl UiRenderState {
|
||||
}
|
||||
|
||||
/// Settles a dirty widget: asks it again where its parent asked, and
|
||||
/// tells the parent if the answer changed.
|
||||
pub fn redraw(&mut self, id: WidgetId, rsc: &mut dyn UiRsc) {
|
||||
/// tells the parent if the answer changed. `false` where the question is
|
||||
/// its parent's rather than its own, which leaves it marked for the
|
||||
/// parent to draw when the walk reaches that depth.
|
||||
pub fn redraw(&mut self, id: WidgetId, rsc: &mut dyn UiRsc) -> bool {
|
||||
rsc.widgets_mut().needs_redraw.remove(&id);
|
||||
let Some(active) = self.active.get(&id) else {
|
||||
return;
|
||||
return true;
|
||||
};
|
||||
// Its parent resolved its declared lengths into its box and decided
|
||||
// whether to draw it at all, so a change to either is the parent's
|
||||
@@ -947,14 +968,15 @@ impl UiRenderState {
|
||||
at = self.active[&next].parent;
|
||||
}
|
||||
}
|
||||
// Both stay marked: the parent because it has this to draw, and
|
||||
// this because the parent must draw it rather than keep what it
|
||||
// has. The mark comes off in `draw_at`, where the parent draws.
|
||||
rsc.widgets_mut().needs_redraw.insert(id);
|
||||
self.redraw(parent, rsc);
|
||||
// Whatever the parent did not draw again is nothing it holds now.
|
||||
rsc.widgets_mut().needs_redraw.remove(&id);
|
||||
return;
|
||||
rsc.widgets_mut().needs_redraw.insert(parent);
|
||||
return false;
|
||||
}
|
||||
if !active.drawn {
|
||||
return;
|
||||
return true;
|
||||
}
|
||||
// Nothing above the root resolved its rules or its alignment, so its
|
||||
// box is its own to work out again against the output. Every other
|
||||
@@ -969,7 +991,7 @@ impl UiRenderState {
|
||||
diag::bump(Counter::LocalRedraws);
|
||||
let old = self.remove(id, false, rsc);
|
||||
self.draw_inner(id, region, info, old, rsc);
|
||||
return;
|
||||
return true;
|
||||
};
|
||||
let (given_px, offered_px) = self.asked_px(id);
|
||||
// Asked again in the box its parent gave it, which is the question
|
||||
@@ -979,9 +1001,8 @@ impl UiRenderState {
|
||||
// on is its lengths, so the same lengths elsewhere is one question.
|
||||
if given_px != offered_px {
|
||||
rsc.widgets_mut().needs_redraw.insert(id);
|
||||
self.redraw(parent, rsc);
|
||||
rsc.widgets_mut().needs_redraw.remove(&id);
|
||||
return;
|
||||
rsc.widgets_mut().needs_redraw.insert(parent);
|
||||
return false;
|
||||
}
|
||||
let info = DrawInfo {
|
||||
layer: active.layer,
|
||||
@@ -1014,6 +1035,7 @@ impl UiRenderState {
|
||||
}
|
||||
rsc.widgets_mut().needs_redraw.insert(parent);
|
||||
}
|
||||
true
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
+7
-3
@@ -28,10 +28,14 @@ impl DefaultAppState for State {
|
||||
.pad(16)
|
||||
.background(panel());
|
||||
|
||||
// Each one takes the whole width, because `text_align` puts the
|
||||
// glyphs somewhere in the box the text is given and a text that
|
||||
// reports the width of its own glyphs is given exactly that.
|
||||
let label = |text: &str, align| wtext(text).size(24).text_align(align).width(rel(1.0));
|
||||
let aligned = (
|
||||
wtext("left").size(24).text_align(Align::LEFT),
|
||||
wtext("centred").size(24).text_align(Align::CENTER),
|
||||
wtext("right").size(24).text_align(Align::RIGHT),
|
||||
label("left", Align::LEFT),
|
||||
label("centred", Align::H_CENTER),
|
||||
label("right", Align::RIGHT),
|
||||
)
|
||||
.span(Dir::DOWN)
|
||||
.gap(8)
|
||||
|
||||
@@ -9,10 +9,10 @@ impl Widget for Pad {
|
||||
fn draw(&mut self, painter: &mut Painter) -> Size {
|
||||
// The inner's own alignment, not the near edge. This reports the
|
||||
// inner's size plus the padding, so where the box is that answer the
|
||||
// inset box is exactly the inner and alignment has no room to move
|
||||
// it; where the box is bigger -- a share of a row, a rule over this
|
||||
// widget -- the slack is the inner's to sit in, and forcing the near
|
||||
// edge pinned it to a corner it had not asked for.
|
||||
// inner is exactly what it asked for and alignment has no room to
|
||||
// move it; where the box is bigger -- a share of a row, a rule over
|
||||
// this widget -- the slack is the inner's to sit in, and forcing the
|
||||
// near edge pinned it to a corner it had not asked for.
|
||||
let inner = painter
|
||||
.widget_within(&self.inner, self.padding.region())
|
||||
.size();
|
||||
@@ -29,6 +29,45 @@ impl Widget for Pad {
|
||||
}
|
||||
}
|
||||
|
||||
/// Room taken off the inside rather than added round the outside: the child
|
||||
/// draws in what is left once both edges are gone, and this widget is
|
||||
/// exactly as long as the box it was given.
|
||||
///
|
||||
/// So `rel(1.0)` under an [`Inset`] is the room inside it, where the same
|
||||
/// rule under a [`Pad`] is the pad's whole box and overflows it by the
|
||||
/// padding. Both are wanted; which one a layout means is which widget it
|
||||
/// reaches for.
|
||||
pub struct Inset {
|
||||
pub padding: Padding,
|
||||
pub inner: StrongWidget,
|
||||
}
|
||||
|
||||
impl Widget for Inset {
|
||||
fn draw(&mut self, painter: &mut Painter) -> Size {
|
||||
let region = self.padding.inset_region();
|
||||
let inner = painter.widget_within(&self.inner, region).size();
|
||||
// What a fraction the child reported is a fraction of is this
|
||||
// widget's to say, and it says the room inside: the child asked for
|
||||
// a part of the box it drew in, and that box is shorter than this
|
||||
// one by both edges. Then the edges go back on, so this widget is
|
||||
// its child and the room taken off around it.
|
||||
let (x, y) = (
|
||||
inner.x.within_len(region.x.len()),
|
||||
inner.y.within_len(region.y.len()),
|
||||
);
|
||||
Size {
|
||||
x: LayoutLen {
|
||||
px: x.px + self.padding.left + self.padding.right,
|
||||
..x
|
||||
},
|
||||
y: LayoutLen {
|
||||
px: y.px + self.padding.top + self.padding.bottom,
|
||||
..y
|
||||
},
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
pub struct Padding {
|
||||
pub left: Px,
|
||||
pub right: Px,
|
||||
@@ -53,7 +92,24 @@ impl Padding {
|
||||
bottom: amt,
|
||||
}
|
||||
}
|
||||
/// The box a [`Pad`] gives its child: as long as the pad's own, moved in
|
||||
/// by the near edge. Padding is outside what it pads, so a fraction the
|
||||
/// child asks for is a fraction of the same length whether a rule beside
|
||||
/// it states one or it reports one, and its pixels are the same pixels.
|
||||
/// Shrinking the box instead would make `rel` mean the inner box while
|
||||
/// `px` meant the outer one. [`Inset`] is the widget that shrinks.
|
||||
pub fn region(&self) -> UiRegion {
|
||||
let mut region = UiRegion::FULL;
|
||||
region.x.start.px += self.left;
|
||||
region.y.start.px += self.top;
|
||||
region.x.end.px += self.left;
|
||||
region.y.end.px += self.top;
|
||||
region
|
||||
}
|
||||
|
||||
/// The box an [`Inset`] gives its child: shorter than its own by both
|
||||
/// edges, so what the child fills is the room left inside.
|
||||
pub fn inset_region(&self) -> UiRegion {
|
||||
let mut region = UiRegion::FULL;
|
||||
region.x.start.px += self.left;
|
||||
region.y.start.px += self.top;
|
||||
|
||||
@@ -14,8 +14,7 @@ impl Widget for Scroll {
|
||||
let container_len = painter.px_len(self.axis);
|
||||
// Draw in the whole container only when its scrolling-axis length is
|
||||
// not already known, then draw it at the scrolled offset.
|
||||
let whole = UiRegion::FULL;
|
||||
let answer_len = match painter.known_len(&self.inner, self.axis, whole, whole.size()) {
|
||||
let answer_len = match painter.known_len(&self.inner, self.axis, UiRegion::FULL) {
|
||||
Some(len) => len,
|
||||
None => painter.widget(&self.inner).size().axis(self.axis),
|
||||
};
|
||||
@@ -64,7 +63,7 @@ impl Widget for Scroll {
|
||||
region = region.offset(offset);
|
||||
region.axis_mut(self.axis).end = region.axis(self.axis).start.offset(self.content_len);
|
||||
}
|
||||
painter.widget_at(&self.inner, region, region.size(), [true; 2]);
|
||||
painter.widget_at(&self.inner, region, [true; 2]);
|
||||
// What it occupies is its box, on both axes: it clips its content to
|
||||
// that box, so it can neither take less of one nor honestly ask for
|
||||
// more. The content's length is what it scrolls through, not what it
|
||||
|
||||
@@ -21,14 +21,12 @@ impl Widget for Span {
|
||||
}
|
||||
let region = UiRegion::from_axis(axis, span, UiSpan::FULL);
|
||||
// Offered the room left from the cursor, because a text has to
|
||||
// wrap at the width actually there, but reporting a fraction of
|
||||
// the whole row: `rel(0.5)` is half the span whatever else is in
|
||||
// it and wherever this child sits among them.
|
||||
let len = match painter.known_len(child, axis, region, UiVec2::FULL_SIZE) {
|
||||
// wrap at the width actually there, while what it reports is a
|
||||
// fraction of the whole row: `rel(0.5)` is half the span
|
||||
// whatever else is in it and wherever this child sits.
|
||||
let len = match painter.known_len(child, axis, region) {
|
||||
Some(len) => len,
|
||||
None => painter
|
||||
.widget_at(child, region, UiVec2::FULL_SIZE, [false; 2])
|
||||
.len(axis),
|
||||
None => painter.widget_at(child, region, [false; 2]).len(axis),
|
||||
};
|
||||
cursor.px += len.px + self.gap;
|
||||
cursor.rel += len.rel;
|
||||
@@ -128,12 +126,7 @@ impl Widget for Span {
|
||||
// Along the row this box is the child's own answer, so the answer
|
||||
// is not placed in it again; across it the child sits where its
|
||||
// alignment says.
|
||||
let placed = painter.widget_at(
|
||||
child,
|
||||
region,
|
||||
UiVec2::FULL_SIZE,
|
||||
[axis == Axis::X, axis == Axis::Y],
|
||||
);
|
||||
let placed = painter.widget_at(child, region, [axis == Axis::X, axis == Axis::Y]);
|
||||
if shrinks {
|
||||
let used = placed.len(!axis);
|
||||
// Choosing between a fixed and a relative length from the
|
||||
|
||||
@@ -35,7 +35,7 @@ impl Widget for Stack {
|
||||
// child is handed a box that owes nothing to its own answer, and
|
||||
// where it sits in one bigger than itself is its own business.
|
||||
match sizing == Some(i) {
|
||||
true => painter.widget_at(child, region, region.size(), [true; 2]),
|
||||
true => painter.widget_at(child, region, [true; 2]),
|
||||
false => painter.widget_within(child, region),
|
||||
};
|
||||
}
|
||||
|
||||
+12
-2
@@ -55,8 +55,13 @@ impl TextView {
|
||||
// line up to the one it was made at: each line still fits, and none
|
||||
// could take a word that did not fit in the wider box. A line too
|
||||
// long to fit at all says nothing about narrower boxes.
|
||||
//
|
||||
// The step at or above that longest line rather than the nearest
|
||||
// one, since the shaper measures in floats: the nearest step is
|
||||
// under the line half the time, and a range starting there admits a
|
||||
// box the line does not fit in, where the break is not this one.
|
||||
if let Some(width) = width {
|
||||
painter.holds(Axis::X, Px::from_f32(text.size.x).min(width)..=width);
|
||||
painter.holds(Axis::X, Px::ceil_from_f32(text.size.x).min(width)..=width);
|
||||
}
|
||||
text
|
||||
}
|
||||
@@ -78,7 +83,12 @@ impl TextView {
|
||||
|
||||
let tex = self.render(painter);
|
||||
let region = tex.size.align(align);
|
||||
let size = Size::px(tex.size);
|
||||
// The step at or above what the shaper measured, so a parent that
|
||||
// hands back the length this reports hands back a box the longest
|
||||
// line fits in. Rounded to the nearest step it is half the time a
|
||||
// hair under that line, and the break made in it is not the break a
|
||||
// cold layout makes there.
|
||||
let size = Size::from_px(PxVec2::ceil_from_f32(tex.size));
|
||||
let within = region.within(&painter.region());
|
||||
painter.glyphs(tex, within);
|
||||
(region, size)
|
||||
|
||||
@@ -12,6 +12,16 @@ widget_trait! {
|
||||
}
|
||||
}
|
||||
|
||||
fn inset(self, padding: impl Into<Padding>) -> impl WidgetFn<Rsc, Inset> {
|
||||
// Room taken off the inside, where `pad` adds it round the outside:
|
||||
// this is as long as the box it is given and the child fills what is
|
||||
// left of it.
|
||||
|state| Inset {
|
||||
padding: padding.into(),
|
||||
inner: self.add_strong(state),
|
||||
}
|
||||
}
|
||||
|
||||
fn align(self, align: impl Into<Align>) -> impl WidgetIdFn<Rsc, WL::Widget> {
|
||||
// An axis left out keeps whatever it had, which is centered unless
|
||||
// something else set it.
|
||||
|
||||
+25
-8
@@ -82,11 +82,13 @@ fn a_text_in_a_span_wraps_at_the_room_left_rather_than_the_whole_row() {
|
||||
assert!(crowded > whole_row, "{crowded} against {whole_row}");
|
||||
}
|
||||
|
||||
/// The same reading through a pad: its inset is the whole box less the
|
||||
/// padding, so half of the inset plus the padding is half the box plus one
|
||||
/// padding, not two.
|
||||
/// Padding is outside what it pads, so a fraction under one is a fraction of
|
||||
/// the box the padding is measured from: half of a 400 px row is 200, and
|
||||
/// the pad is that plus both edges. Inset it instead and `rel` would mean the
|
||||
/// inner box while `px` meant the outer one, which is the one thing a length
|
||||
/// may not do.
|
||||
#[test]
|
||||
fn a_pad_reports_a_fraction_of_its_inset_as_a_fraction_of_its_box() {
|
||||
fn a_pad_is_outside_the_fraction_its_child_asked_for() {
|
||||
let mut h = Harness::new((400, 100));
|
||||
let inner = rect(Color::GREEN).width(rel(0.5)).add(&mut h.rsc);
|
||||
let padded = (inner,).span(Dir::RIGHT).pad(10).add(&mut h.rsc);
|
||||
@@ -95,8 +97,23 @@ fn a_pad_reports_a_fraction_of_its_inset_as_a_fraction_of_its_box() {
|
||||
// placed inside it by its own alignment, which is not what is under test.
|
||||
h.set_root((padded, tail).span(Dir::RIGHT).width(rel(1.0)));
|
||||
|
||||
assert_corners!(h, padded, (0, 0), (210, 100));
|
||||
assert_corners!(h, tail, (210, 0), (310, 100));
|
||||
assert_corners!(h, padded, (0, 0), (220, 100));
|
||||
assert_corners!(h, tail, (220, 0), (320, 100));
|
||||
}
|
||||
|
||||
/// The other half of the pair: an inset takes its room off the inside, so it
|
||||
/// is exactly as long as the box it was given and the fraction its child
|
||||
/// asked for is a fraction of what is left inside. Half of the 380 left in a
|
||||
/// 400 px row is 190, and the inset is the whole 400.
|
||||
#[test]
|
||||
fn an_inset_is_inside_the_fraction_its_child_asked_for() {
|
||||
let mut h = Harness::new((400, 100));
|
||||
let inner = rect(Color::GREEN).width(rel(0.5)).add(&mut h.rsc);
|
||||
let inset = (inner,).span(Dir::RIGHT).inset(10).add(&mut h.rsc);
|
||||
h.set_root((inset,).span(Dir::RIGHT).width(rel(1.0)));
|
||||
|
||||
assert_corners!(h, inset, (0, 0), (200, 100));
|
||||
assert_corners!(h, inner, (10, 0), (200, 100));
|
||||
}
|
||||
|
||||
#[test]
|
||||
@@ -237,7 +254,7 @@ fn a_moved_subtree_takes_its_children_with_it() {
|
||||
let mut h = Harness::new((400, 400));
|
||||
let first = rect(Color::RED).height(40).add(&mut h.rsc);
|
||||
let inner = rect(Color::BLUE).add(&mut h.rsc);
|
||||
let row = inner.pad(10).height(40).region_node().add(&mut h.rsc);
|
||||
let row = inner.inset(10).height(40).region_node().add(&mut h.rsc);
|
||||
// 80 of fixed rows in a 400 window, so the span takes 80 and sits in the
|
||||
// middle of what it was given.
|
||||
h.set_root((first, row).span(Dir::DOWN));
|
||||
@@ -280,7 +297,7 @@ fn a_box_with_a_fixed_length_can_be_stretched_on_its_other_axis() {
|
||||
// impossible to take out of: recovering a fraction of a box needs a
|
||||
// relative extent, and it has none on that axis.
|
||||
let inner = rect(Color::BLUE).add(&mut h.rsc);
|
||||
let row = inner.pad(10).height(40).add(&mut h.rsc);
|
||||
let row = inner.inset(10).height(40).add(&mut h.rsc);
|
||||
let filler = rect(Color::GREEN).add(&mut h.rsc);
|
||||
// This column is an item in a row, so it takes the width left for it
|
||||
// rather than asking for a full row-width in addition to the bar.
|
||||
|
||||
@@ -462,7 +462,7 @@ fn a_change_two_levels_under_its_reader_still_reaches_it() {
|
||||
let (leaf, _) = counted(&mut h, Size::px((100, 100).into()), true);
|
||||
let padded = leaf.pad(10).add(&mut h.rsc);
|
||||
let below = rect(Color::RED).add(&mut h.rsc);
|
||||
h.set_root((padded, below).span(Dir::DOWN).pad(12));
|
||||
h.set_root((padded, below).span(Dir::DOWN).inset(12));
|
||||
assert_corners!(h, below, (12, 132), (388, 388));
|
||||
|
||||
h.rsc[leaf].size = Size::px((100, 200).into());
|
||||
|
||||
@@ -7,7 +7,8 @@
|
||||
//! neither: one box length, composed two ways, landing either side of the
|
||||
//! boundary that decided whether a child was drawn at all, and two boxes
|
||||
//! reached through a region node's own entry rather than through the offer
|
||||
//! that node was given.
|
||||
//! that node was given. The last is a wrapping text handed back the width
|
||||
//! it measured, rounded to a step below the line it measured there.
|
||||
|
||||
use iris::harness::Harness;
|
||||
use iris::prelude::*;
|
||||
@@ -554,3 +555,62 @@ fn a_widget_under_a_region_node_is_asked_in_the_box_that_node_was_offered() {
|
||||
}
|
||||
assert!(wrong.is_empty(), "{}", wrong.join("\n"));
|
||||
}
|
||||
|
||||
const PARAGRAPH: &str = "Wrapping shapes one source into as many lines as the \
|
||||
box leaves room for, so a paragraph's height is an answer and not a setting.";
|
||||
|
||||
/// Eight widgets, shrunk from a 118-widget tree (seed 1121, depth 4,
|
||||
/// `shuffle-swap-for-three`). The stack takes its size from the span above,
|
||||
/// the span takes its width from the longest line of the texts in it, and
|
||||
/// the text below the span is then wrapped at that width -- so a width the
|
||||
/// shaper measured comes back to it as the box to break in.
|
||||
fn plant_a_measured_width(h: &mut Harness, swapped: bool) -> (WeakWidget<Span>, WidgetId) {
|
||||
let first: StrongWidget = rect(Color::YELLOW).add_strong(&mut h.rsc);
|
||||
let mut inner = Span::empty(Dir::UP);
|
||||
inner.children = match swapped {
|
||||
true => swapped_in(h),
|
||||
false => vec![first],
|
||||
};
|
||||
let inner = inner.height(142).add(&mut h.rsc);
|
||||
let text = wtext(PARAGRAPH).size(16).wrap(true).add(&mut h.rsc);
|
||||
let stack = Stack {
|
||||
children: vec![inner.add_strong(&mut h.rsc), text.add_strong(&mut h.rsc)],
|
||||
size: StackSize::Child(0),
|
||||
}
|
||||
.add(&mut h.rsc);
|
||||
h.set_root((stack,).span(Dir::DOWN).width(195));
|
||||
(inner, text.id())
|
||||
}
|
||||
|
||||
/// What the span holds once its children have been swapped, which is what
|
||||
/// the warm tree is changed to and what the cold one is grown with.
|
||||
fn swapped_in(h: &mut Harness) -> Vec<StrongWidget> {
|
||||
let paragraph = |h: &mut Harness| -> StrongWidget {
|
||||
wtext(PARAGRAPH).size(16).wrap(true).add_strong(&mut h.rsc)
|
||||
};
|
||||
vec![
|
||||
paragraph(h),
|
||||
rect(Color::YELLOW).add_strong(&mut h.rsc),
|
||||
paragraph(h),
|
||||
]
|
||||
}
|
||||
|
||||
/// A text handed back the width it measured breaks there the way it broke
|
||||
/// when it measured it. The width the shaper answers is not on the grid, and
|
||||
/// a report rounded to the nearest step is under the longest line half the
|
||||
/// time: a warm tree then keeps a break made in a wider box while a cold one
|
||||
/// makes a narrower break in the same box, and the paragraph gains a line.
|
||||
#[test]
|
||||
fn a_text_is_given_back_a_box_the_line_it_measured_fits_in() {
|
||||
let mut warm = Harness::new((900, 1200));
|
||||
let (inner, text) = plant_a_measured_width(&mut warm, false);
|
||||
warm.frame();
|
||||
warm.rsc[inner].children = swapped_in(&mut warm);
|
||||
warm.frame();
|
||||
|
||||
let mut cold = Harness::new((900, 1200));
|
||||
let (_, cold_text) = plant_a_measured_width(&mut cold, true);
|
||||
cold.frame();
|
||||
|
||||
assert_eq!(warm.region(&text), cold.region(&cold_text));
|
||||
}
|
||||
Reference in new issue
Block a user