mirror of
https://github.com/typst/typst
synced 2025-05-14 04:56:26 +08:00
320 lines
9.7 KiB
Rust
320 lines
9.7 KiB
Rust
use super::{AlignNode, Spacing};
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use crate::library::prelude::*;
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use crate::library::text::ParNode;
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/// Arrange nodes and spacing along an axis.
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#[derive(Debug, Hash)]
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pub struct StackNode {
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/// The stacking direction.
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pub dir: Dir,
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/// The spacing between non-spacing children.
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pub spacing: Option<Spacing>,
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/// The children to be stacked.
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pub children: Vec<StackChild>,
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}
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#[node]
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impl StackNode {
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fn construct(_: &mut Vm, args: &mut Args) -> SourceResult<Content> {
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Ok(Content::block(Self {
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dir: args.named("dir")?.unwrap_or(Dir::TTB),
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spacing: args.named("spacing")?,
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children: args.all()?,
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}))
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}
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}
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impl Layout for StackNode {
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fn layout(
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&self,
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world: Tracked<dyn World>,
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regions: &Regions,
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styles: StyleChain,
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) -> SourceResult<Vec<Frame>> {
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let mut layouter = StackLayouter::new(self.dir, regions, styles);
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// Spacing to insert before the next node.
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let mut deferred = None;
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for child in &self.children {
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match child {
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StackChild::Spacing(kind) => {
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layouter.layout_spacing(*kind);
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deferred = None;
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}
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StackChild::Node(node) => {
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if let Some(kind) = deferred {
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layouter.layout_spacing(kind);
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}
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layouter.layout_node(world, node, styles)?;
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deferred = self.spacing;
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}
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}
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}
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Ok(layouter.finish())
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}
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}
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/// A child of a stack node.
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#[derive(Hash)]
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pub enum StackChild {
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/// Spacing between other nodes.
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Spacing(Spacing),
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/// An arbitrary node.
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Node(LayoutNode),
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}
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impl Debug for StackChild {
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fn fmt(&self, f: &mut Formatter) -> fmt::Result {
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match self {
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Self::Spacing(kind) => kind.fmt(f),
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Self::Node(node) => node.fmt(f),
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}
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}
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}
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castable! {
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StackChild,
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Expected: "relative length, fraction, or content",
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Value::Length(v) => Self::Spacing(Spacing::Relative(v.into())),
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Value::Ratio(v) => Self::Spacing(Spacing::Relative(v.into())),
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Value::Relative(v) => Self::Spacing(Spacing::Relative(v)),
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Value::Fraction(v) => Self::Spacing(Spacing::Fractional(v)),
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Value::Content(v) => Self::Node(v.pack()),
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}
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/// Performs stack layout.
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pub struct StackLayouter<'a> {
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/// The stacking direction.
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dir: Dir,
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/// The axis of the stacking direction.
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axis: Axis,
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/// The regions to layout children into.
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regions: Regions,
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/// The inherited styles.
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styles: StyleChain<'a>,
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/// Whether the stack itself should expand to fill the region.
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expand: Axes<bool>,
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/// The full size of the current region that was available at the start.
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full: Size,
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/// The generic size used by the frames for the current region.
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used: Gen<Abs>,
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/// The sum of fractions in the current region.
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fr: Fr,
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/// Already layouted items whose exact positions are not yet known due to
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/// fractional spacing.
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items: Vec<StackItem>,
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/// Finished frames for previous regions.
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finished: Vec<Frame>,
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}
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/// A prepared item in a stack layout.
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enum StackItem {
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/// Absolute spacing between other items.
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Absolute(Abs),
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/// Fractional spacing between other items.
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Fractional(Fr),
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/// A frame for a layouted child node.
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Frame(Frame, Align),
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}
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impl<'a> StackLayouter<'a> {
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/// Create a new stack layouter.
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pub fn new(dir: Dir, regions: &Regions, styles: StyleChain<'a>) -> Self {
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let axis = dir.axis();
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let expand = regions.expand;
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let full = regions.first;
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// Disable expansion along the block axis for children.
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let mut regions = regions.clone();
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regions.expand.set(axis, false);
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Self {
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dir,
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axis,
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regions,
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styles,
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expand,
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full,
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used: Gen::zero(),
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fr: Fr::zero(),
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items: vec![],
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finished: vec![],
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}
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}
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/// Add spacing along the spacing direction.
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pub fn layout_spacing(&mut self, spacing: Spacing) {
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match spacing {
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Spacing::Relative(v) => {
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// Resolve the spacing and limit it to the remaining space.
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let resolved =
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v.resolve(self.styles).relative_to(self.regions.base.get(self.axis));
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let remaining = self.regions.first.get_mut(self.axis);
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let limited = resolved.min(*remaining);
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*remaining -= limited;
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self.used.main += limited;
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self.items.push(StackItem::Absolute(resolved));
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}
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Spacing::Fractional(v) => {
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self.fr += v;
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self.items.push(StackItem::Fractional(v));
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}
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}
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}
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/// Layout an arbitrary node.
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pub fn layout_node(
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&mut self,
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world: Tracked<dyn World>,
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node: &LayoutNode,
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styles: StyleChain,
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) -> SourceResult<()> {
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if self.regions.is_full() {
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self.finish_region();
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}
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// Block-axis alignment of the `AlignNode` is respected
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// by the stack node.
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let align = node
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.downcast::<AlignNode>()
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.and_then(|node| node.aligns.get(self.axis))
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.map(|align| align.resolve(styles))
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.unwrap_or_else(|| {
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if let Some(Content::Styled(styled)) = node.downcast::<Content>() {
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let map = &styled.1;
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if map.contains(ParNode::ALIGN) {
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return StyleChain::with_root(&styled.1).get(ParNode::ALIGN);
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}
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}
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self.dir.start().into()
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});
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let frames = node.layout(world, &self.regions, styles)?;
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let len = frames.len();
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for (i, mut frame) in frames.into_iter().enumerate() {
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// Set the generic block role.
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frame.apply_role(Role::GenericBlock);
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// Grow our size, shrink the region and save the frame for later.
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let size = frame.size();
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let size = match self.axis {
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Axis::X => Gen::new(size.y, size.x),
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Axis::Y => Gen::new(size.x, size.y),
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};
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self.used.main += size.main;
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self.used.cross.set_max(size.cross);
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*self.regions.first.get_mut(self.axis) -= size.main;
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self.items.push(StackItem::Frame(frame, align));
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if i + 1 < len {
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self.finish_region();
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}
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}
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Ok(())
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}
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/// Advance to the next region.
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pub fn finish_region(&mut self) {
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// Determine the size of the stack in this region dependening on whether
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// the region expands.
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let used = self.used.to_axes(self.axis);
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let mut size = self.expand.select(self.full, used);
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// Expand fully if there are fr spacings.
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let full = self.full.get(self.axis);
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let remaining = full - self.used.main;
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if self.fr.get() > 0.0 && full.is_finite() {
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self.used.main = full;
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size.set(self.axis, full);
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}
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let mut output = Frame::new(size);
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let mut cursor = Abs::zero();
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let mut ruler: Align = self.dir.start().into();
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// Place all frames.
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for item in self.items.drain(..) {
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match item {
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StackItem::Absolute(v) => cursor += v,
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StackItem::Fractional(v) => cursor += v.share(self.fr, remaining),
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StackItem::Frame(frame, align) => {
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if self.dir.is_positive() {
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ruler = ruler.max(align);
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} else {
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ruler = ruler.min(align);
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}
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// Align along the block axis.
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let parent = size.get(self.axis);
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let child = frame.size().get(self.axis);
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let block = ruler.position(parent - self.used.main)
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+ if self.dir.is_positive() {
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cursor
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} else {
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self.used.main - child - cursor
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};
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let pos = Gen::new(Abs::zero(), block).to_point(self.axis);
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cursor += child;
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output.push_frame(pos, frame);
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}
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}
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}
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// Advance to the next region.
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self.regions.next();
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self.full = self.regions.first;
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self.used = Gen::zero();
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self.fr = Fr::zero();
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self.finished.push(output);
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}
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/// Finish layouting and return the resulting frames.
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pub fn finish(mut self) -> Vec<Frame> {
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self.finish_region();
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self.finished
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}
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}
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/// A container with a main and cross component.
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#[derive(Default, Copy, Clone, Eq, PartialEq, Hash)]
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pub struct Gen<T> {
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/// The main component.
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pub cross: T,
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/// The cross component.
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pub main: T,
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}
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impl<T> Gen<T> {
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/// Create a new instance from the two components.
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pub const fn new(cross: T, main: T) -> Self {
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Self { cross, main }
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}
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/// Convert to the specific representation, given the current main axis.
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pub fn to_axes(self, main: Axis) -> Axes<T> {
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match main {
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Axis::X => Axes::new(self.main, self.cross),
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Axis::Y => Axes::new(self.cross, self.main),
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}
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}
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}
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impl Gen<Abs> {
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/// The zero value.
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pub fn zero() -> Self {
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Self { cross: Abs::zero(), main: Abs::zero() }
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}
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/// Convert to a point.
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pub fn to_point(self, main: Axis) -> Point {
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self.to_axes(main).to_point()
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}
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}
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