mirror of
https://github.com/GraphiteEditor/Graphite.git
synced 2026-09-15 22:28:10 +08:00
927 lines
35 KiB
Rust
927 lines
35 KiB
Rust
//! Pilot record nodes over the production graphic types: element-space
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//! expanders whose ragged nesting lives inside `Graphic` values, ahead of the
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//! flip. Wiring is by hand until the compiler pass constructs layouts.
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use core_types::attribute::{Attr, Transform};
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use core_types::context::{DeriveCtx, ExtractIndex, IndexLink, InjectIndex};
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use core_types::extent::{ExtentIn, LevelIn, ListIn, ValueIn};
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use core_types::gpoll::{Extent, GPoll, GraphError, Interrupt};
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use core_types::{ATTR_TRANSFORM, Color, Ctx};
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use glam::DAffine2;
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use graphic_types::Vector;
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use graphic_types::graphic::Graphic;
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use raster_types::{CPU, Raster};
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use vector_types::{GradientStop, GradientStops};
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/// Whether the walk can descend into a group: the run holds `Graphic`
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/// elements.
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pub(crate) fn group_expands(group: &core_types::record::Group) -> bool {
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group.content.typed_lanes::<Graphic>().is_some()
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}
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pub(crate) fn group_leaf_count(group: &core_types::record::Group, fully_flatten: bool, depth: usize) -> usize {
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let lanes = group.content.typed_lanes::<Graphic>().expect("guarded by group_expands");
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(0..lanes.len()).map(|lane| leaf_count(lanes.element_ref(lane), fully_flatten, depth + 1)).sum()
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}
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pub(crate) fn group_locate<'e>(group: &core_types::record::Group<'e>, transform: DAffine2, fully_flatten: bool, depth: usize, remaining: &mut usize) -> Option<(Graphic<'e>, DAffine2)> {
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let item = &group.content;
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let lanes = item.typed_lanes::<Graphic>().expect("guarded by group_expands");
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let offset = item.layout().offset_of(ATTR_TRANSFORM, 0);
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(0..lanes.len()).find_map(|lane| {
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// SAFETY: the offset comes from the item's own layout.
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let lane_transform = offset.map(|offset| unsafe { item.lanes().get(lane).rec().read::<DAffine2>(offset) }).unwrap_or(DAffine2::IDENTITY);
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locate(lanes.element_ref(lane), transform * lane_transform, fully_flatten, depth + 1, remaining)
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})
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}
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/// Leaf rows a graphic expands to: its children's counts when the walk
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/// descends (top rows always, deeper groups only in a full flatten), one for
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/// itself otherwise.
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pub(crate) fn leaf_count(graphic: &Graphic, fully_flatten: bool, depth: usize) -> usize {
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match graphic {
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Graphic::Graphic(children) if fully_flatten || depth == 0 => (0..children.len())
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.map(|index| children.element(index).map_or(0, |child| leaf_count(child, fully_flatten, depth + 1)))
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.sum(),
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Graphic::Group(group) if (fully_flatten || depth == 0) && group_expands(group) => group_leaf_count(group, fully_flatten, depth),
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_ => 1,
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}
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}
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/// The `remaining`-th leaf of `graphic` in walk order, with the transforms
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/// along its path composed onto `transform`.
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pub(crate) fn locate<'e>(graphic: &Graphic<'e>, transform: DAffine2, fully_flatten: bool, depth: usize, remaining: &mut usize) -> Option<(Graphic<'e>, DAffine2)> {
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match graphic {
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Graphic::Graphic(children) if fully_flatten || depth == 0 => (0..children.len()).find_map(|index| {
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let child = children.element(index)?;
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let child_transform: DAffine2 = children.attribute_cloned_or_default(ATTR_TRANSFORM, index);
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locate(child, transform * child_transform, fully_flatten, depth + 1, remaining)
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}),
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Graphic::Group(group) if (fully_flatten || depth == 0) && group_expands(group) => group_locate(group, transform, fully_flatten, depth, remaining),
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_ if *remaining == 0 => Some((graphic.clone(), transform)),
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_ => {
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*remaining -= 1;
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None
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}
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}
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}
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/// Rank-model Flatten: one flat level holding the content's leaves, each with
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/// the transforms along its path composed; a group beyond the walk's depth
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/// rides as a leaf with its embedded transforms untouched.
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#[node_macro::node(category("Test"), extent(flatten_extent))]
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fn flatten(ctx: impl Ctx + ExtractIndex + InjectIndex + Copy, content: IList<Graphic<'static>>, fully_flatten: bool) -> Result<IList<(Graphic<'static>, Attr<Transform>)>, Interrupt> {
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let mut remaining = ctx.index() as usize;
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for row in 0..content.len() {
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let graphic = content.element_ref(row);
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let count = leaf_count(graphic, fully_flatten, 0);
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if remaining >= count {
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remaining -= count;
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continue;
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}
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let transform: DAffine2 = content.lane(row).attr::<Transform>();
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if let Some((leaf, composed)) = locate(graphic, transform, fully_flatten, 0, &mut remaining) {
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return Ok((leaf, Attr(composed)));
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}
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}
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Err(GraphError::new("flatten addressed past its leaf count").into())
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}
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/// The level holds one row per leaf of the walk.
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fn flatten_extent(content: ListIn<'_, Graphic>, fully_flatten: ValueIn<'_, bool>, level: LevelIn) -> GPoll<Extent> {
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match level.top() {
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true => fully_flatten
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.get()
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.zip(content.get())
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.map(|(fully_flatten, content)| Extent::Exactly((0..content.len()).map(|row| leaf_count(content.element_ref(row), fully_flatten, 0)).sum())),
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false => GPoll::Final(Extent::Exactly(1)),
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}
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}
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/// Rank-model Wrap: the content level as one group element on a one-lane
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/// level, the inverse of flatten's one-level descent.
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#[node_macro::node(category("Test"), extent(wrap_extent))]
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fn wrap<'e>(_: impl Ctx, content: IList<Graphic<'e>>) -> Result<IList<Graphic<'e>>, Interrupt> {
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let item = content.as_group_item();
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Ok(Graphic::Group(core_types::record::Group {
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row: None,
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content: item,
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}))
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}
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/// The collected group is the level's single lane.
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fn wrap_extent(_content: ListIn<'_, Graphic>, _level: LevelIn) -> GPoll<Extent> {
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GPoll::Final(Extent::Exactly(1))
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}
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/// Rank-model colors-to-gradient: the color level folds into one gradient
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/// with evenly spaced stops.
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#[node_macro::node(category("Test"))]
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fn to_gradient(_: impl Ctx, colors: IList<Color>) -> GradientStops {
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let stop = |position: f64, color: Color| GradientStop { position, midpoint: 0.5, color };
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match colors.len() {
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0 => GradientStops::new(vec![stop(0., Color::BLACK), stop(1., Color::BLACK)]),
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1 => GradientStops::new(vec![stop(0., colors.get(0)), stop(1., colors.get(0))]),
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total => GradientStops::new((0..total).map(|index| stop(index as f64 / (total - 1) as f64, colors.get(index)))),
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}
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}
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/// One content row as the production vararg shape: a single-item legacy list
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/// carrying the row's element only, so the list's dyn-hash is a complete
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/// cache key over the observables.
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pub(crate) fn vararg_row<Row: Clone + Send + Sync + 'static>(content: core_types::node::List<'_, Row>, row: usize) -> core_types::list::List<Row> {
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core_types::list::List::new_from_element(content.element_ref(row).clone())
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}
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/// Rank-model Map: one subgraph invocation per content row, the row riding as
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/// a vararg; the subgraph's own level nests under the content level. The
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/// levels report a lower bound; consumers drain to the past-end signal.
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#[node_macro::node(category("Test"))]
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fn map<Row: Clone + Send + Sync + core_types::CacheHash + 'static, T>(
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ctx: impl Ctx + DeriveCtx + ExtractIndex + InjectIndex + Copy,
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#[implementations(Graphic, Vector, Raster<CPU>, Color, GradientStops, String)] content: IList<Row>,
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mapped: impl Node<Context<'_>, Output = IList<T>>,
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) -> Result<IList<IList<T>>, Interrupt> {
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let mut remaining = ctx.index();
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for row in 0..content.len() {
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let item = vararg_row(content, row);
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let scoped = ctx.push_vararg(&item);
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let lanes = mapped.inner_extent_at(&scoped.ctx(), row as u64)?;
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if remaining >= lanes {
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remaining -= lanes;
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continue;
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}
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let mut frame = IndexLink { index: 0, outer: None };
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return mapped.eval(&scoped.ctx().push_level(&mut frame, row as u64, remaining));
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}
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Err(GraphError::past_end().into())
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}
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/// Rank-model flat-map (the production Map): map's walk with the subgraph's
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/// lanes concatenated into one flat level. The level reports a lower bound;
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/// consumers drain to the past-end signal.
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#[node_macro::node(category("Test"))]
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fn flat_map<Row: Clone + Send + Sync + core_types::CacheHash + 'static, T>(
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ctx: impl Ctx + DeriveCtx + ExtractIndex + InjectIndex + Copy,
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#[implementations(Graphic, Vector, Raster<CPU>, Color, GradientStops, String)] content: IList<Row>,
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mapped: impl Node<Context<'_>, Output = IList<T>>,
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) -> Result<IList<T>, Interrupt> {
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let mut remaining = ctx.index();
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for row in 0..content.len() {
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let item = vararg_row(content, row);
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let scoped = ctx.push_vararg(&item);
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let lanes = mapped.inner_extent_at(&scoped.ctx(), row as u64)?;
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if remaining >= lanes {
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remaining -= lanes;
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continue;
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}
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let mut frame = IndexLink { index: 0, outer: None };
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return mapped.eval(&scoped.ctx().push_level(&mut frame, row as u64, remaining));
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}
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Err(GraphError::past_end().into())
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}
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/// Rank-model level collapse: two nested levels become one flat level. The
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/// flat index already spans the edge's depth, so the eval forwards it.
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#[node_macro::node(category("Test"), extent(flatten_levels_extent))]
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fn flatten_levels<T>(ctx: impl Ctx + DeriveCtx + ExtractIndex, content: impl Node<Context<'_>, Output = IList<IList<T>>>) -> Result<IList<T>, Interrupt> {
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let head = ctx.index_head();
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content.eval(&ctx.promoted(&head, ctx.index()))
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}
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/// The collapsed level's extent is the sum of the inner extents across the
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/// outer copies; the product composite cannot express a ragged total. A
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/// lower-bound level keeps the sum a lower bound.
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fn flatten_levels_extent(content: ExtentIn<'_>, level: LevelIn) -> GPoll<Extent> {
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match level.top() {
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true => {
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let outer = match content.at_copy(0, LevelIn { level: 1, depth: 2 }) {
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GPoll::Final(Extent::Exactly(outer)) => outer,
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GPoll::Final(Extent::AtLeast(bound)) => return GPoll::Final(Extent::AtLeast(bound)),
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GPoll::Final(Extent::Free) => return GPoll::error("flatten over an unbounded outer level"),
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other => return other,
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};
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let mut total = 0;
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for copy in 0..outer {
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match content.at_copy(copy as u64, LevelIn { level: 0, depth: 2 }) {
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GPoll::Final(Extent::Exactly(count)) => total += count,
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GPoll::Final(Extent::AtLeast(count)) => return GPoll::Final(Extent::AtLeast(total + count)),
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GPoll::Final(Extent::Free) => return GPoll::error("flatten over an unbounded inner level"),
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other => return other,
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}
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}
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GPoll::Final(Extent::Exactly(total))
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}
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false => GPoll::Final(Extent::Exactly(1)),
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use core_types::SourceId;
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use core_types::arena::Arena;
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use core_types::attribute::Attribute as AttributeMarker;
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use core_types::context::{ContextImpl, EvalScope, ExtractArena, ExtractIndices};
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use core_types::list::{Item, List};
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use core_types::node::Node;
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use core_types::record::{self, Layout, RecordSource, RecordValue, stack};
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struct ValueNode<T>(T);
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impl<T: Clone, Input> Node<Input> for ValueNode<T> {
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type Output = T;
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fn eval(&self, _input: &Input) -> GPoll<T> {
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GPoll::Final(self.0.clone())
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}
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}
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struct GraphicSource {
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layout: Layout,
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rows: Vec<(Graphic<'static>, DAffine2)>,
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}
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impl<'e> Node<ContextImpl<'e>> for GraphicSource {
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type Output = RecordValue<'e>;
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fn eval(&self, input: &ContextImpl<'e>) -> GPoll<RecordValue<'e>> {
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let (graphic, transform) = &self.rows[input.innermost_index() as usize % self.rows.len()];
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let mut frame = record::FrameBuilder::new(&self.layout, input.arena());
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frame.element(graphic.clone());
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frame.attr::<Transform>(*transform);
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let Some(value) = frame.finish() else { return GPoll::arena_exhausted() };
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GPoll::Final(value)
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}
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fn extent_at(&self, _input: &ContextImpl<'e>, _level: u8) -> GPoll<Extent> {
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GPoll::Final(Extent::Exactly(self.rows.len()))
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}
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fn layout(&self) -> &Layout {
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&self.layout
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}
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}
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fn scope_fixture<'a>(generations: &'a [(SourceId, u64)], arena: &'a Arena) -> EvalScope<'a> {
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stack::reserve(1 << 16);
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EvalScope::new(Some(0.5), None, None, generations, arena)
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}
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fn install<N: Node<ContextImpl<'static>>>(mut node: N, meta: record::LayoutMeta, inputs: &[Option<&Layout>]) -> N {
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// The fixtures wire constants into every eager input, which the compiler
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// pass records as lane-invariant.
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let resolved = record::RecordLayout {
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lane_invariant: u32::MAX,
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..meta.resolve(inputs)
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};
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<N as Node<ContextImpl<'static>>>::set_layout(&mut node, resolved);
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node
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}
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fn install_flip<N: Node<ContextImpl<'static>>>(mut node: N, layout: &Layout) -> N {
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let bundle = record::RecordLayout {
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frame_bytes: layout.frame_bytes(),
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plan: Vec::new(),
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layout: layout.clone(),
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lane_invariant: u32::MAX,
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};
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<N as Node<ContextImpl<'static>>>::set_layout(&mut node, bundle);
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node
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}
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fn graphic_layout() -> Layout {
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Layout::default().with_writes(1, record::element_write_hashed::<Graphic>(), &[record::FieldWrite::of::<Transform>(0)])
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}
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fn text(label: &str) -> Graphic<'static> {
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Graphic::Text(label.to_string())
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}
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fn group(children: Vec<(Graphic<'static>, DAffine2)>) -> Graphic {
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let mut list = List::new();
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for (index, (child, transform)) in children.into_iter().enumerate() {
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list.push(Item::new_from_element(child));
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list.set_attribute(ATTR_TRANSFORM, index, transform);
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}
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Graphic::Graphic(list)
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}
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fn text_of<'a>(graphic: &'a Graphic<'_>) -> &'a str {
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let Graphic::Text(text) = graphic else {
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panic!("expected a text leaf, got {graphic:?}");
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};
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text
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}
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fn translation(x: f64) -> DAffine2 {
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DAffine2::from_translation(glam::DVec2::new(x, 0.))
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}
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/// [a, G[b, H[c]]] with translations picked so each composed path is a
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/// distinct sum.
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fn fixture_rows() -> Vec<(Graphic<'static>, DAffine2)> {
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vec![
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(text("a"), translation(1.)),
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(
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group(vec![(text("b"), translation(20.)), (group(vec![(text("c"), translation(300.))]), translation(4000.))]),
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translation(0.5),
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),
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]
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}
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macro_rules! build {
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($layout:ident, $rows:expr, $fully:expr) => {
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install(
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FlattenNode::new(
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RecordSource::new(
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GraphicSource {
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layout: $layout.clone(),
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rows: $rows,
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},
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&$layout,
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&$layout,
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),
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ValueNode($fully),
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),
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flatten_layout_meta(),
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&[Some(&$layout)],
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)
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};
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}
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/// A subgraph source deriving its rows from the vararg: a `Text` row of
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/// string `s` expands to `s.len()` lanes labeled `s{k}`, each translated
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/// by `k`. The vararg is attr-less, so the content rows' transforms must
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/// not reach these lanes.
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struct PerRowSource {
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layout: Layout,
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}
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fn vararg_text(input: &ContextImpl<'_>) -> Option<String> {
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let arg = core_types::ExtractVarArgs::vararg(input, 0).ok()?;
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let list = arg.downcast_ref::<core_types::list::List<Graphic>>()?;
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let Graphic::Text(text) = list.element(0)? else { return None };
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Some(text.clone())
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}
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impl<'e> Node<ContextImpl<'e>> for PerRowSource {
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type Output = RecordValue<'e>;
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fn eval(&self, input: &ContextImpl<'e>) -> GPoll<RecordValue<'e>> {
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let Some(label) = vararg_text(input) else {
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return GPoll::error("the subgraph fixture expects a text vararg");
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};
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let lane = input.innermost_index();
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let graphic = text(&format!("{label}{lane}"));
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let translated = DAffine2::from_translation(glam::DVec2::new(lane as f64, 0.));
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let mut frame = record::FrameBuilder::new(&self.layout, input.arena());
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frame.element(graphic);
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frame.attr::<Transform>(translated);
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let Some(value) = frame.finish() else { return GPoll::arena_exhausted() };
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GPoll::Final(value)
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}
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fn extent_at(&self, input: &ContextImpl<'e>, _level: u8) -> GPoll<Extent> {
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match vararg_text(input) {
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Some(label) => GPoll::Final(Extent::Exactly(label.len())),
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None => GPoll::error("the subgraph fixture expects a text vararg"),
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}
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}
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fn layout(&self) -> &Layout {
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&self.layout
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}
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}
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fn ragged_rows() -> Vec<(Graphic<'static>, DAffine2)> {
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vec![(text("ab"), translation(10.)), (text("xyz"), translation(20.))]
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}
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fn routing_meta(source: u8, level_delta: i8) -> record::LayoutMeta {
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record::LayoutMeta {
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sources: vec![source],
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reads: vec![],
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element: record::ElementSpec::Carried,
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writes: vec![],
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removes: vec![],
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level_delta,
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folded: None,
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}
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}
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const RAGGED_FLAT: [(&str, f64); 5] = [("ab0", 0.), ("ab1", 1.), ("xyz0", 0.), ("xyz1", 1.), ("xyz2", 2.)];
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#[test]
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fn map_scans_ragged_rows() {
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let arena = Arena::new(1 << 16).unwrap();
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let generations = [];
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let scope = scope_fixture(&generations, &arena);
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let ctx = ContextImpl::root(&scope);
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|
|
|
let layout = graphic_layout();
|
|
let node = install(
|
|
MapNode::<_, _, Graphic>::new(
|
|
RecordSource::new(
|
|
GraphicSource {
|
|
layout: layout.clone(),
|
|
rows: ragged_rows(),
|
|
},
|
|
&layout,
|
|
&layout,
|
|
),
|
|
PerRowSource { layout: layout.clone() },
|
|
&layout,
|
|
),
|
|
routing_meta(1, 1),
|
|
&[Some(&layout), Some(&layout)],
|
|
);
|
|
let out = Node::<ContextImpl>::layout(&node).clone();
|
|
assert_eq!(out.depth, 2);
|
|
// The extent-fn-less levels report a lower bound; addressing below
|
|
// proves the lanes are all reachable regardless.
|
|
assert_eq!(node.extent_at(&ctx, 1), GPoll::Final(Extent::AtLeast(0)));
|
|
assert_eq!(node.extent_at(&ctx, 0), GPoll::Final(Extent::AtLeast(0)));
|
|
|
|
let head = ctx.index_head();
|
|
for (lane, &(label, x)) in RAGGED_FLAT.iter().enumerate() {
|
|
let GPoll::Final(record) = record::capture(&node, &ctx.promoted(&head, lane as u64)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
assert_eq!(text_of(&record.element::<Graphic>()), label, "lane {lane}");
|
|
let transform: DAffine2 = record.attr::<Transform>();
|
|
assert_eq!(transform.translation.x, x, "lane {lane}");
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
fn flat_map_matches_flatten_of_map() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let layout = graphic_layout();
|
|
let flat = install(
|
|
FlatMapNode::<_, _, Graphic>::new(
|
|
RecordSource::new(
|
|
GraphicSource {
|
|
layout: layout.clone(),
|
|
rows: ragged_rows(),
|
|
},
|
|
&layout,
|
|
&layout,
|
|
),
|
|
PerRowSource { layout: layout.clone() },
|
|
&layout,
|
|
),
|
|
routing_meta(1, 0),
|
|
&[Some(&layout), Some(&layout)],
|
|
);
|
|
let mapped = install(
|
|
MapNode::<_, _, Graphic>::new(
|
|
RecordSource::new(
|
|
GraphicSource {
|
|
layout: layout.clone(),
|
|
rows: ragged_rows(),
|
|
},
|
|
&layout,
|
|
&layout,
|
|
),
|
|
PerRowSource { layout: layout.clone() },
|
|
&layout,
|
|
),
|
|
routing_meta(1, 1),
|
|
&[Some(&layout), Some(&layout)],
|
|
);
|
|
let map_out = Node::<ContextImpl>::layout(&mapped).clone();
|
|
let composed = install(FlattenLevelsNode::new(mapped, &map_out), routing_meta(0, -1), &[Some(&map_out)]);
|
|
|
|
let flat_out = Node::<ContextImpl>::layout(&flat).clone();
|
|
let composed_out = Node::<ContextImpl>::layout(&composed).clone();
|
|
assert_eq!(flat_out.depth, 1);
|
|
assert_eq!(composed_out.depth, 1);
|
|
// Both spellings report the same lower bound; the lane loop below is
|
|
// the law.
|
|
assert_eq!(flat.extent_at(&ctx, 0), GPoll::Final(Extent::AtLeast(0)));
|
|
assert_eq!(composed.extent_at(&ctx, 0), GPoll::Final(Extent::AtLeast(0)));
|
|
|
|
let head = ctx.index_head();
|
|
for (lane, &(label, x)) in RAGGED_FLAT.iter().enumerate() {
|
|
let scoped = ctx.promoted(&head, lane as u64);
|
|
let GPoll::Final(direct) = record::capture(&flat, &scoped) else {
|
|
panic!("expected a final record from flat_map");
|
|
};
|
|
let direct_label = text_of(&direct.element::<Graphic>()).to_string();
|
|
let direct_x: DAffine2 = direct.attr::<Transform>();
|
|
let GPoll::Final(value) = record::capture(&composed, &scoped) else {
|
|
panic!("expected a final record from flatten(map)");
|
|
};
|
|
assert_eq!(text_of(&value.element::<Graphic>()), direct_label, "lane {lane}");
|
|
let composed_x: DAffine2 = value.attr::<Transform>();
|
|
assert_eq!(composed_x, direct_x, "lane {lane}");
|
|
assert_eq!((direct_label.as_str(), direct_x.translation.x), (label, x), "lane {lane}");
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
fn flat_map_registers_one_row_per_content_type() {
|
|
let entries = _flat_map_mod::flat_map_entries();
|
|
assert_eq!(entries.len(), 6, "one registry row per content implementation");
|
|
let content_types: Vec<core_types::Type> = entries.iter().map(|entry| entry.io.inputs[0].clone()).collect();
|
|
assert_eq!(content_types[0], core_types::registry::record_edge_type::<Graphic>());
|
|
assert_eq!(content_types[1], core_types::registry::record_edge_type::<Vector>());
|
|
assert_eq!(content_types[5], core_types::registry::record_edge_type::<String>());
|
|
// The subject and the output stay erased across rows.
|
|
assert_eq!(entries[0].io.inputs[1], entries[5].io.inputs[1]);
|
|
assert_eq!(entries[0].io.return_value, entries[5].io.return_value);
|
|
}
|
|
|
|
#[test]
|
|
fn flat_map_batch_matches_per_lane_eval() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let layout = graphic_layout();
|
|
let node = install(
|
|
FlatMapNode::<_, _, Graphic>::new(
|
|
RecordSource::new(
|
|
GraphicSource {
|
|
layout: layout.clone(),
|
|
rows: ragged_rows(),
|
|
},
|
|
&layout,
|
|
&layout,
|
|
),
|
|
PerRowSource { layout: layout.clone() },
|
|
&layout,
|
|
),
|
|
routing_meta(1, 0),
|
|
&[Some(&layout), Some(&layout)],
|
|
);
|
|
let out = Node::<ContextImpl>::layout(&node).clone();
|
|
let head = ctx.index_head();
|
|
let scoped = ctx.promoted(&head, 0);
|
|
|
|
let mut scratch = vec![std::mem::MaybeUninit::<u64>::uninit(); 5 * out.lane_stride() / 8];
|
|
let core_types::node::BatchStatus::Filled(batch, ..) = node.eval_batch(&scoped, 0..5, Some(&mut scratch)) else {
|
|
panic!("expected a filled batch");
|
|
};
|
|
let batch = batch.into_shared();
|
|
assert_eq!(batch.len(), 5);
|
|
let offset = out.offset_of(<Transform as AttributeMarker>::NAME, 0).unwrap();
|
|
for lane in 0..5 {
|
|
let GPoll::Final(record) = record::capture(&node, &ctx.promoted(&head, lane as u64)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
let single = text_of(&record.element::<Graphic>()).to_string();
|
|
assert_eq!(text_of(unsafe { record::borrow_element::<Graphic>(batch.get(lane).rec()) }), single, "lane {lane}");
|
|
let batched: DAffine2 = unsafe { batch.get(lane).rec().read(offset) };
|
|
let direct: DAffine2 = record.attr::<Transform>();
|
|
assert_eq!(batched, direct, "lane {lane}");
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
fn flatten_expands_one_level() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let layout = graphic_layout();
|
|
let node = build!(layout, fixture_rows(), false);
|
|
let out = Node::<ContextImpl>::layout(&node).clone();
|
|
assert_eq!(out.depth, 1);
|
|
assert_eq!(node.extent_at(&ctx, 0), GPoll::Final(Extent::Exactly(3)));
|
|
|
|
let head = ctx.index_head();
|
|
// Lane 2 is the unexpanded subgroup H, riding as a leaf at G's depth.
|
|
let expected: [(&str, f64); 2] = [("a", 1.), ("b", 20.5)];
|
|
for (lane, &(label, x)) in expected.iter().enumerate() {
|
|
let GPoll::Final(record) = record::capture(&node, &ctx.promoted(&head, lane as u64)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
assert_eq!(text_of(&record.element::<Graphic>()), label, "lane {lane}");
|
|
let transform: DAffine2 = record.attr::<Transform>();
|
|
assert_eq!(transform.translation.x, x, "lane {lane}");
|
|
}
|
|
|
|
let GPoll::Final(record) = record::capture(&node, &ctx.promoted(&head, 2)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
let Graphic::Graphic(children) = record.element::<Graphic>() else {
|
|
panic!("lane 2 keeps the subgroup element");
|
|
};
|
|
assert_eq!(children.len(), 1);
|
|
assert_eq!(text_of(children.element(0).unwrap()), "c");
|
|
assert_eq!(
|
|
children.attribute_cloned_or_default::<DAffine2>(ATTR_TRANSFORM, 0).translation.x,
|
|
300.,
|
|
"embedded transforms ride untouched"
|
|
);
|
|
let transform: DAffine2 = record.attr::<Transform>();
|
|
assert_eq!(transform.translation.x, 4000.5);
|
|
}
|
|
|
|
#[test]
|
|
fn a_wire_materializes_into_a_group_for_the_renderer() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let source = core_types::value::LeveledValueSource::new(vec![text("a"), text("b")]);
|
|
match graphic_types::boundary::materialize_group(&source, &ctx, &arena) {
|
|
graphic_types::boundary::LevelGroup::Group(group, _) => {
|
|
let list = graphic_types::graphic::group_to_legacy_list(&group);
|
|
assert_eq!(list.len(), 2);
|
|
}
|
|
_ => panic!("expected a materialized group"),
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
fn a_level_batch_converts_to_its_legacy_list() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let source = core_types::value::LeveledValueSource::new(vec![1.5f64, 2.5]);
|
|
let layout = Node::<ContextImpl>::layout(&source).clone();
|
|
let record::LevelStatus::Batch(batch, _) = record::materialize_level(&source, &ctx, &arena) else {
|
|
panic!("expected a batch");
|
|
};
|
|
let legacy = graphic_types::boundary::batch_to_legacy(&layout, batch, &arena).expect("f64 is in the legacy vocabulary");
|
|
let list = legacy.downcast_ref::<List<f64>>().unwrap();
|
|
assert_eq!(list.len(), 2);
|
|
assert_eq!(list.element(0).copied(), Some(1.5));
|
|
assert_eq!(list.element(1).copied(), Some(2.5));
|
|
}
|
|
|
|
#[test]
|
|
fn wrap_collects_the_level_into_a_group() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let layout = graphic_layout();
|
|
let rows = vec![(text("a"), translation(1.)), (text("b"), translation(2.))];
|
|
let node = install(
|
|
WrapNode::new(RecordSource::new(GraphicSource { layout: layout.clone(), rows }, &layout, &layout), &layout),
|
|
wrap_layout_meta(),
|
|
&[Some(&layout)],
|
|
);
|
|
let out = Node::<ContextImpl>::layout(&node).clone();
|
|
assert_eq!(out.depth, 1);
|
|
assert_eq!(node.extent_at(&ctx, 0), GPoll::Final(Extent::Exactly(1)), "the group is the level's single lane");
|
|
|
|
let head = ctx.index_head();
|
|
let GPoll::Final(value) = node.eval(&ctx.promoted(&head, 0)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
let Graphic::Group(group) = (unsafe { record::borrow_element::<Graphic>(out.rec(&value)) }) else {
|
|
panic!("expected a group element");
|
|
};
|
|
assert!(group.row.is_none());
|
|
let item = &group.content;
|
|
assert_eq!(item.len(), 2);
|
|
let lanes = item.typed_lanes::<Graphic>().expect("the run holds the adopted graphic lanes");
|
|
let offset = item.layout().offset_of(ATTR_TRANSFORM, 0).unwrap();
|
|
for (lane, (label, x)) in [("a", 1.), ("b", 2.)].into_iter().enumerate() {
|
|
assert_eq!(text_of(lanes.element_ref(lane)), label, "lane {lane}");
|
|
let transform: DAffine2 = unsafe { item.lanes().get(lane).rec().read(offset) };
|
|
assert_eq!(transform.translation.x, x, "lane {lane}");
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
fn a_group_element_deep_copies_to_its_owned_form_and_replays() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let layout = graphic_layout();
|
|
let rows = vec![(text("a"), translation(1.)), (text("b"), translation(2.))];
|
|
let node = install(
|
|
WrapNode::new(RecordSource::new(GraphicSource { layout: layout.clone(), rows }, &layout, &layout), &layout),
|
|
wrap_layout_meta(),
|
|
&[Some(&layout)],
|
|
);
|
|
let out = Node::<ContextImpl>::layout(&node).clone();
|
|
|
|
let head = ctx.index_head();
|
|
let GPoll::Final(value) = node.eval(&ctx.promoted(&head, 0)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
let copy = unsafe { (out.element.clone_out)(out.rec(&value).ptr()) };
|
|
|
|
let replay_arena = Arena::new(1 << 16).unwrap();
|
|
let mut slot = [0u8; 8];
|
|
unsafe { (out.element.repark)(&*copy, slot.as_mut_ptr(), &replay_arena) }.expect("the arena holds the replay");
|
|
// SAFETY: the re-park wrote a parked `Graphic` element into `slot`.
|
|
let Graphic::Group(group) = (unsafe { record::borrow_element::<Graphic>(record::Rec::new(slot.as_ptr())) }) else {
|
|
panic!("the replay restores the group element");
|
|
};
|
|
let item = &group.content;
|
|
assert_eq!(item.len(), 2);
|
|
let lanes = item.typed_lanes::<Graphic>().expect("the run holds the adopted graphic lanes");
|
|
let offset = item.layout().offset_of(ATTR_TRANSFORM, 0).unwrap();
|
|
for (lane, (label, x)) in [("a", 1.), ("b", 2.)].into_iter().enumerate() {
|
|
assert_eq!(text_of(lanes.element_ref(lane)), label, "lane {lane}");
|
|
let transform: DAffine2 = unsafe { item.lanes().get(lane).rec().read(offset) };
|
|
assert_eq!(transform.translation.x, x, "lane {lane}");
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
fn colors_fold_into_evenly_spaced_stops() {
|
|
struct ColorSource {
|
|
layout: Layout,
|
|
colors: Vec<Color>,
|
|
}
|
|
|
|
impl<'e> Node<ContextImpl<'e>> for ColorSource {
|
|
type Output = RecordValue<'e>;
|
|
|
|
fn eval(&self, input: &ContextImpl<'e>) -> GPoll<RecordValue<'e>> {
|
|
let color = self.colors[input.innermost_index() as usize];
|
|
let mut frame = record::FrameBuilder::new(&self.layout, input.arena());
|
|
frame.element(color);
|
|
let Some(value) = frame.finish() else { return GPoll::arena_exhausted() };
|
|
GPoll::Final(value)
|
|
}
|
|
|
|
fn extent_at(&self, _input: &ContextImpl<'e>, _level: u8) -> GPoll<Extent> {
|
|
GPoll::Final(Extent::Exactly(self.colors.len()))
|
|
}
|
|
|
|
fn layout(&self) -> &Layout {
|
|
&self.layout
|
|
}
|
|
}
|
|
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let layout = Layout::default().with_writes(1, record::element_write_hashed::<Color>(), &[]);
|
|
let out = Layout::default().with_writes(0, record::element_write_hashed::<GradientStops>(), &[]);
|
|
let build = |colors: Vec<Color>| install_flip(ToGradientNode::new(RecordSource::new(ColorSource { layout: layout.clone(), colors }, &layout, &layout), &layout), &out);
|
|
let stops_of = |colors: Vec<Color>| {
|
|
let node = build(colors);
|
|
let GPoll::Final(record) = record::capture(&node, &ctx) else {
|
|
panic!("expected a final record");
|
|
};
|
|
record.element::<GradientStops>()
|
|
};
|
|
|
|
let three = stops_of(vec![Color::BLACK, Color::WHITE, Color::BLACK]);
|
|
assert_eq!(three.iter().map(|stop| stop.position).collect::<Vec<_>>(), vec![0., 0.5, 1.]);
|
|
assert_eq!(three.iter().map(|stop| stop.color).collect::<Vec<_>>(), vec![Color::BLACK, Color::WHITE, Color::BLACK]);
|
|
|
|
let single = stops_of(vec![Color::WHITE]);
|
|
assert_eq!(single.iter().map(|stop| (stop.position, stop.color)).collect::<Vec<_>>(), vec![(0., Color::WHITE), (1., Color::WHITE)]);
|
|
|
|
let empty = stops_of(Vec::new());
|
|
assert_eq!(empty.iter().map(|stop| (stop.position, stop.color)).collect::<Vec<_>>(), vec![(0., Color::BLACK), (1., Color::BLACK)]);
|
|
}
|
|
|
|
#[test]
|
|
fn a_group_converts_to_its_legacy_list() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let layout = graphic_layout();
|
|
let rows = vec![(text("a"), translation(1.)), (text("b"), translation(2.))];
|
|
let node = install(
|
|
WrapNode::new(RecordSource::new(GraphicSource { layout: layout.clone(), rows }, &layout, &layout), &layout),
|
|
wrap_layout_meta(),
|
|
&[Some(&layout)],
|
|
);
|
|
let out = Node::<ContextImpl>::layout(&node).clone();
|
|
let head = ctx.index_head();
|
|
let GPoll::Final(value) = node.eval(&ctx.promoted(&head, 0)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
let Graphic::Group(group) = (unsafe { record::borrow_element::<Graphic>(out.rec(&value)) }) else {
|
|
panic!("expected a group element");
|
|
};
|
|
|
|
let legacy = graphic_types::graphic::group_to_legacy_list(group);
|
|
assert_eq!(legacy.len(), 2);
|
|
for (index, (label, x)) in [("a", 1.), ("b", 2.)].into_iter().enumerate() {
|
|
assert_eq!(text_of(legacy.element(index).unwrap()), label, "item {index}");
|
|
assert_eq!(legacy.attribute_cloned_or_default::<DAffine2>(ATTR_TRANSFORM, index).translation.x, x, "item {index}");
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
fn flatten_reverses_wrap() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let layout = graphic_layout();
|
|
let rows = vec![(text("a"), translation(1.)), (text("b"), translation(2.))];
|
|
let wrapped = install(
|
|
WrapNode::new(RecordSource::new(GraphicSource { layout: layout.clone(), rows }, &layout, &layout), &layout),
|
|
wrap_layout_meta(),
|
|
&[Some(&layout)],
|
|
);
|
|
let wrap_out = Node::<ContextImpl>::layout(&wrapped).clone();
|
|
let head = ctx.index_head();
|
|
let group = {
|
|
let mark = stack::sp();
|
|
let GPoll::Final(value) = wrapped.eval(&ctx.promoted(&head, 0)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
let group = unsafe { record::borrow_element::<Graphic>(wrap_out.rec(&value)) }.clone();
|
|
// SAFETY: the element was cloned out above, so no borrow into the frame remains.
|
|
unsafe { stack::rewind(mark) };
|
|
group
|
|
};
|
|
|
|
// One row holding the wrapped group flattens back to the lanes, the
|
|
// group's identity transform composed onto each child's.
|
|
let node = build!(layout, vec![(group, DAffine2::IDENTITY)], false);
|
|
assert_eq!(node.extent_at(&ctx, 0), GPoll::Final(Extent::Exactly(2)));
|
|
|
|
let head = ctx.index_head();
|
|
for (lane, &(label, x)) in [("a", 1.), ("b", 2.)].iter().enumerate() {
|
|
let GPoll::Final(record) = record::capture(&node, &ctx.promoted(&head, lane as u64)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
assert_eq!(text_of(&record.element::<Graphic>()), label, "lane {lane}");
|
|
let transform: DAffine2 = record.attr::<Transform>();
|
|
assert_eq!(transform.translation.x, x, "lane {lane}");
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
fn flatten_fully_composes_the_path() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let mut rows = fixture_rows();
|
|
rows.push((group(vec![]), translation(9.)));
|
|
let layout = graphic_layout();
|
|
let node = build!(layout, rows, true);
|
|
assert_eq!(node.extent_at(&ctx, 0), GPoll::Final(Extent::Exactly(3)), "the empty group contributes no leaves");
|
|
|
|
let head = ctx.index_head();
|
|
let expected: [(&str, f64); 3] = [("a", 1.), ("b", 20.5), ("c", 4300.5)];
|
|
for (lane, &(label, x)) in expected.iter().enumerate() {
|
|
let GPoll::Final(record) = record::capture(&node, &ctx.promoted(&head, lane as u64)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
assert_eq!(text_of(&record.element::<Graphic>()), label, "lane {lane}");
|
|
let transform: DAffine2 = record.attr::<Transform>();
|
|
assert_eq!(transform.translation.x, x, "lane {lane}");
|
|
}
|
|
}
|
|
|
|
#[test]
|
|
fn flatten_batch_matches_per_lane_eval() {
|
|
let arena = Arena::new(1 << 16).unwrap();
|
|
let generations = [];
|
|
let scope = scope_fixture(&generations, &arena);
|
|
let ctx = ContextImpl::root(&scope);
|
|
|
|
let layout = graphic_layout();
|
|
let node = build!(layout, fixture_rows(), true);
|
|
let out = Node::<ContextImpl>::layout(&node).clone();
|
|
let head = ctx.index_head();
|
|
let scoped = ctx.promoted(&head, 0);
|
|
|
|
let mut scratch = vec![std::mem::MaybeUninit::<u64>::uninit(); 3 * out.lane_stride() / 8];
|
|
let core_types::node::BatchStatus::Filled(batch, ..) = node.eval_batch(&scoped, 0..3, Some(&mut scratch)) else {
|
|
panic!("expected a filled batch");
|
|
};
|
|
let batch = batch.into_shared();
|
|
assert_eq!(batch.len(), 3);
|
|
let offset = out.offset_of(<Transform as AttributeMarker>::NAME, 0).unwrap();
|
|
for lane in 0..3 {
|
|
let GPoll::Final(record) = record::capture(&node, &ctx.promoted(&head, lane as u64)) else {
|
|
panic!("expected a final record");
|
|
};
|
|
let single = text_of(&record.element::<Graphic>()).to_string();
|
|
assert_eq!(text_of(unsafe { record::borrow_element::<Graphic>(batch.get(lane).rec()) }), single, "lane {lane}");
|
|
let batched: DAffine2 = unsafe { batch.get(lane).rec().read(offset) };
|
|
let direct: DAffine2 = record.attr::<Transform>();
|
|
assert_eq!(batched, direct, "lane {lane}");
|
|
}
|
|
}
|
|
}
|