Unify layout of vec
and cases
with mat
(#5934)
@ -1,4 +1,4 @@
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use typst_library::diag::{bail, SourceResult};
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||||
use typst_library::diag::{bail, warning, SourceResult};
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use typst_library::foundations::{Content, Packed, Resolve, StyleChain};
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use typst_library::layout::{
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Abs, Axes, Em, FixedAlignment, Frame, FrameItem, Point, Ratio, Rel, Size,
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@ -9,7 +9,7 @@ use typst_library::visualize::{FillRule, FixedStroke, Geometry, LineCap, Shape};
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use typst_syntax::Span;
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use super::{
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alignments, delimiter_alignment, stack, style_for_denominator, AlignmentResult,
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alignments, delimiter_alignment, style_for_denominator, AlignmentResult,
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FrameFragment, GlyphFragment, LeftRightAlternator, MathContext, DELIM_SHORT_FALL,
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};
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@ -23,67 +23,23 @@ pub fn layout_vec(
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ctx: &mut MathContext,
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styles: StyleChain,
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) -> SourceResult<()> {
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let delim = elem.delim(styles);
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let frame = layout_vec_body(
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let span = elem.span();
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let column: Vec<&Content> = elem.children.iter().collect();
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let frame = layout_body(
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ctx,
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styles,
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&elem.children,
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&[column],
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elem.align(styles),
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elem.gap(styles),
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LeftRightAlternator::Right,
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None,
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Axes::with_y(elem.gap(styles)),
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span,
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"elements",
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)?;
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layout_delimiters(ctx, styles, frame, delim.open(), delim.close(), elem.span())
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}
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/// Lays out a [`MatElem`].
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#[typst_macros::time(name = "math.mat", span = elem.span())]
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pub fn layout_mat(
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elem: &Packed<MatElem>,
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ctx: &mut MathContext,
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styles: StyleChain,
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) -> SourceResult<()> {
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let augment = elem.augment(styles);
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let rows = &elem.rows;
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if let Some(aug) = &augment {
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for &offset in &aug.hline.0 {
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if offset == 0 || offset.unsigned_abs() >= rows.len() {
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bail!(
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elem.span(),
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"cannot draw a horizontal line after row {} of a matrix with {} rows",
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if offset < 0 { rows.len() as isize + offset } else { offset },
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rows.len()
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);
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}
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}
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let ncols = rows.first().map_or(0, |row| row.len());
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for &offset in &aug.vline.0 {
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if offset == 0 || offset.unsigned_abs() >= ncols {
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bail!(
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elem.span(),
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"cannot draw a vertical line after column {} of a matrix with {} columns",
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if offset < 0 { ncols as isize + offset } else { offset },
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ncols
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);
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}
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}
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}
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let delim = elem.delim(styles);
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let frame = layout_mat_body(
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ctx,
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styles,
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rows,
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elem.align(styles),
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augment,
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Axes::new(elem.column_gap(styles), elem.row_gap(styles)),
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elem.span(),
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)?;
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layout_delimiters(ctx, styles, frame, delim.open(), delim.close(), elem.span())
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layout_delimiters(ctx, styles, frame, delim.open(), delim.close(), span)
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}
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/// Lays out a [`CasesElem`].
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@ -93,60 +49,100 @@ pub fn layout_cases(
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ctx: &mut MathContext,
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styles: StyleChain,
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) -> SourceResult<()> {
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let delim = elem.delim(styles);
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let frame = layout_vec_body(
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let span = elem.span();
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let column: Vec<&Content> = elem.children.iter().collect();
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let frame = layout_body(
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ctx,
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styles,
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&elem.children,
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&[column],
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FixedAlignment::Start,
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elem.gap(styles),
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LeftRightAlternator::None,
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None,
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Axes::with_y(elem.gap(styles)),
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span,
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"branches",
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)?;
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let delim = elem.delim(styles);
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let (open, close) =
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if elem.reverse(styles) { (None, delim.close()) } else { (delim.open(), None) };
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layout_delimiters(ctx, styles, frame, open, close, elem.span())
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layout_delimiters(ctx, styles, frame, open, close, span)
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}
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/// Layout the inner contents of a vector.
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fn layout_vec_body(
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/// Lays out a [`MatElem`].
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#[typst_macros::time(name = "math.mat", span = elem.span())]
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pub fn layout_mat(
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elem: &Packed<MatElem>,
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ctx: &mut MathContext,
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styles: StyleChain,
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column: &[Content],
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align: FixedAlignment,
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row_gap: Rel<Abs>,
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alternator: LeftRightAlternator,
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) -> SourceResult<Frame> {
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let gap = row_gap.relative_to(ctx.region.size.y);
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) -> SourceResult<()> {
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let span = elem.span();
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let rows = &elem.rows;
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let ncols = rows.first().map_or(0, |row| row.len());
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let denom_style = style_for_denominator(styles);
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let mut flat = vec![];
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for child in column {
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// We allow linebreaks in cases and vectors, which are functionally
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// identical to commas.
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flat.extend(ctx.layout_into_run(child, styles.chain(&denom_style))?.rows());
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let augment = elem.augment(styles);
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if let Some(aug) = &augment {
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for &offset in &aug.hline.0 {
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if offset == 0 || offset.unsigned_abs() >= rows.len() {
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bail!(
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span,
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"cannot draw a horizontal line after row {} of a matrix with {} rows",
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if offset < 0 { rows.len() as isize + offset } else { offset },
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rows.len()
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);
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}
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}
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for &offset in &aug.vline.0 {
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if offset == 0 || offset.unsigned_abs() >= ncols {
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bail!(
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span,
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"cannot draw a vertical line after column {} of a matrix with {} columns",
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if offset < 0 { ncols as isize + offset } else { offset },
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ncols
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);
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}
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}
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}
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// We pad ascent and descent with the ascent and descent of the paren
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// to ensure that normal vectors are aligned with others unless they are
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// way too big.
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let paren =
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GlyphFragment::new(ctx, styles.chain(&denom_style), '(', Span::detached());
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Ok(stack(flat, align, gap, 0, alternator, Some((paren.ascent, paren.descent))))
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// Transpose rows of the matrix into columns.
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let mut row_iters: Vec<_> = rows.iter().map(|i| i.iter()).collect();
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let columns: Vec<Vec<_>> = (0..ncols)
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.map(|_| row_iters.iter_mut().map(|i| i.next().unwrap()).collect())
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.collect();
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let frame = layout_body(
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ctx,
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styles,
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&columns,
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elem.align(styles),
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LeftRightAlternator::Right,
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augment,
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Axes::new(elem.column_gap(styles), elem.row_gap(styles)),
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span,
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"cells",
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)?;
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let delim = elem.delim(styles);
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layout_delimiters(ctx, styles, frame, delim.open(), delim.close(), span)
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}
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/// Layout the inner contents of a matrix.
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fn layout_mat_body(
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/// Layout the inner contents of a matrix, vector, or cases.
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#[allow(clippy::too_many_arguments)]
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fn layout_body(
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ctx: &mut MathContext,
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styles: StyleChain,
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rows: &[Vec<Content>],
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columns: &[Vec<&Content>],
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align: FixedAlignment,
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alternator: LeftRightAlternator,
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augment: Option<Augment<Abs>>,
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gap: Axes<Rel<Abs>>,
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span: Span,
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children: &str,
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) -> SourceResult<Frame> {
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let ncols = rows.first().map_or(0, |row| row.len());
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let nrows = rows.len();
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let nrows = columns.first().map_or(0, |col| col.len());
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let ncols = columns.len();
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if ncols == 0 || nrows == 0 {
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return Ok(Frame::soft(Size::zero()));
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}
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@ -178,16 +174,11 @@ fn layout_mat_body(
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// Before the full matrix body can be laid out, the
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// individual cells must first be independently laid out
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// so we can ensure alignment across rows and columns.
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let mut cols = vec![vec![]; ncols];
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// This variable stores the maximum ascent and descent for each row.
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let mut heights = vec![(Abs::zero(), Abs::zero()); nrows];
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// We want to transpose our data layout to columns
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// before final layout. For efficiency, the columns
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// variable is set up here and newly generated
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// individual cells are then added to it.
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let mut cols = vec![vec![]; ncols];
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let denom_style = style_for_denominator(styles);
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// We pad ascent and descent with the ascent and descent of the paren
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// to ensure that normal matrices are aligned with others unless they are
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@ -195,10 +186,22 @@ fn layout_mat_body(
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let paren =
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GlyphFragment::new(ctx, styles.chain(&denom_style), '(', Span::detached());
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for (row, (ascent, descent)) in rows.iter().zip(&mut heights) {
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for (cell, col) in row.iter().zip(&mut cols) {
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for (column, col) in columns.iter().zip(&mut cols) {
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for (cell, (ascent, descent)) in column.iter().zip(&mut heights) {
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let cell_span = cell.span();
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let cell = ctx.layout_into_run(cell, styles.chain(&denom_style))?;
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// We ignore linebreaks in the cells as we can't differentiate
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// alignment points for the whole body from ones for a specific
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// cell, and multiline cells don't quite make sense at the moment.
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if cell.is_multiline() {
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ctx.engine.sink.warn(warning!(
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cell_span,
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"linebreaks are ignored in {}", children;
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hint: "use commas instead to separate each line"
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));
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}
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ascent.set_max(cell.ascent().max(paren.ascent));
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descent.set_max(cell.descent().max(paren.descent));
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@ -222,7 +225,7 @@ fn layout_mat_body(
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let mut y = Abs::zero();
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for (cell, &(ascent, descent)) in col.into_iter().zip(&heights) {
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let cell = cell.into_line_frame(&points, LeftRightAlternator::Right);
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let cell = cell.into_line_frame(&points, alternator);
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let pos = Point::new(
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if points.is_empty() {
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x + align.position(rcol - cell.width())
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|
@ -117,7 +117,6 @@ pub fn stack(
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||||
gap: Abs,
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baseline: usize,
|
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alternator: LeftRightAlternator,
|
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minimum_ascent_descent: Option<(Abs, Abs)>,
|
||||
) -> Frame {
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||||
let AlignmentResult { points, width } = alignments(&rows);
|
||||
let rows: Vec<_> = rows
|
||||
@ -125,13 +124,9 @@ pub fn stack(
|
||||
.map(|row| row.into_line_frame(&points, alternator))
|
||||
.collect();
|
||||
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||||
let padded_height = |height: Abs| {
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||||
height.max(minimum_ascent_descent.map_or(Abs::zero(), |(a, d)| a + d))
|
||||
};
|
||||
|
||||
let mut frame = Frame::soft(Size::new(
|
||||
width,
|
||||
rows.iter().map(|row| padded_height(row.height())).sum::<Abs>()
|
||||
rows.iter().map(|row| row.height()).sum::<Abs>()
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+ rows.len().saturating_sub(1) as f64 * gap,
|
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));
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@ -142,14 +137,11 @@ pub fn stack(
|
||||
} else {
|
||||
Abs::zero()
|
||||
};
|
||||
let ascent_padded_part = minimum_ascent_descent
|
||||
.map_or(Abs::zero(), |(a, _)| (a - row.ascent()))
|
||||
.max(Abs::zero());
|
||||
let pos = Point::new(x, y + ascent_padded_part);
|
||||
let pos = Point::new(x, y);
|
||||
if i == baseline {
|
||||
frame.set_baseline(y + row.baseline() + ascent_padded_part);
|
||||
frame.set_baseline(y + row.baseline());
|
||||
}
|
||||
y += padded_height(row.height()) + gap;
|
||||
y += row.height() + gap;
|
||||
frame.push_frame(pos, row);
|
||||
}
|
||||
|
||||
|
@ -312,14 +312,8 @@ fn layout_underoverspreader(
|
||||
}
|
||||
};
|
||||
|
||||
let frame = stack(
|
||||
rows,
|
||||
FixedAlignment::Center,
|
||||
gap,
|
||||
baseline,
|
||||
LeftRightAlternator::Right,
|
||||
None,
|
||||
);
|
||||
let frame =
|
||||
stack(rows, FixedAlignment::Center, gap, baseline, LeftRightAlternator::Right);
|
||||
ctx.push(FrameFragment::new(styles, frame).with_class(body_class));
|
||||
|
||||
Ok(())
|
||||
|
Before Width: | Height: | Size: 570 B After Width: | Height: | Size: 506 B |
Before Width: | Height: | Size: 984 B After Width: | Height: | Size: 1.0 KiB |
BIN
tests/ref/math-mat-vec-cases-unity.png
Normal file
After Width: | Height: | Size: 1.2 KiB |
Before Width: | Height: | Size: 856 B After Width: | Height: | Size: 651 B |
@ -17,6 +17,6 @@ $ x = cases(1, 2) $
|
||||
$ cases(a, b, c) $
|
||||
|
||||
--- math-cases-linebreaks ---
|
||||
// Currently linebreaks are equivalent to commas, though this behaviour may
|
||||
// change in the future.
|
||||
// Warning: 40-49 linebreaks are ignored in branches
|
||||
// Hint: 40-49 use commas instead to separate each line
|
||||
$ cases(a, b, c) cases(reverse: #true, a \ b \ c) $
|
||||
|
@ -256,10 +256,17 @@ $ mat(delim: #(none, "["), 1, 2; 3, 4) $
|
||||
$ mat(delim: #(sym.angle.r, sym.bracket.double.r), 1, 2; 3, 4) $
|
||||
|
||||
--- math-mat-linebreaks ---
|
||||
// Unlike cases and vectors, linebreaks are discarded in matrices. This
|
||||
// behaviour may change in the future.
|
||||
// Warning: 20-29 linebreaks are ignored in cells
|
||||
// Hint: 20-29 use commas instead to separate each line
|
||||
$ mat(a; b; c) mat(a \ b \ c) $
|
||||
|
||||
--- math-mat-vec-cases-unity ---
|
||||
// Test that matrices, vectors, and cases are all laid out the same.
|
||||
$ mat(z_(n_p); a^2)
|
||||
vec(z_(n_p), a^2)
|
||||
cases(reverse: #true, delim: \(, z_(n_p), a^2)
|
||||
cases(delim: \(, z_(n_p), a^2) $
|
||||
|
||||
--- issue-1617-mat-align ---
|
||||
#set page(width: auto)
|
||||
$ mat(a, b; c, d) mat(x; y) $
|
||||
|
@ -51,6 +51,6 @@ $ vec(1, 2) $
|
||||
#set math.vec(delim: (none, "%"))
|
||||
|
||||
--- math-vec-linebreaks ---
|
||||
// Currently linebreaks are equivalent to commas, though this behaviour may
|
||||
// change in the future.
|
||||
// Warning: 20-29 linebreaks are ignored in elements
|
||||
// Hint: 20-29 use commas instead to separate each line
|
||||
$ vec(a, b, c) vec(a \ b \ c) $
|
||||
|