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@@ -44,6 +44,16 @@ const MIN_TABULAR_RULE_ITEMS: usize = 3;
const MIN_TABULAR_RULE_GAPS: usize = 2;
const TABULAR_RULE_GAP_EM: f32 = 2.0;
/// Strikeout decorations are text-sized. Diagram connectors, signature
/// lines, and chart rules often cross glyphs too, but extend well beyond the
/// text they happen to intersect.
const STRIKE_OWNER_PAD_EM: f32 = 0.75;
const STRIKE_OWNER_MIN_PAD: f32 = 4.0;
const STRIKE_ROW_Y_TOLERANCE_EM: f32 = 0.15;
const STRIKE_ROW_Y_TOLERANCE_MIN: f32 = 5.0;
const GRAPHIC_CONNECTION_EPS: f32 = 2.0;
const GRAPHIC_CONNECTOR_MAX_THICKNESS: f32 = 4.0;
#[derive(Clone)]
pub(crate) struct UnderlineLine {
pub(crate) x1: f32,
@@ -387,6 +397,206 @@ fn rule_strikes_item(rule: &Rule, item: &TextItem) -> bool {
overlap >= min_overlap
}
fn is_bare_list_marker(text: &str) -> bool {
matches!(
text.trim(),
"" | "" | "" | "" | "" | "" | "" | "" | "" | "" | "-" | "*"
)
}
fn same_strike_row(left: &TextItem, right: &TextItem) -> bool {
let font_size = left.font_size.max(right.font_size);
let tolerance = (font_size * STRIKE_ROW_Y_TOLERANCE_EM).max(STRIKE_ROW_Y_TOLERANCE_MIN);
(left.y - right.y).abs() <= tolerance
}
fn is_inline_script(rule: &Rule, candidate: &TextItem, parent: &TextItem) -> bool {
if !is_underline_candidate(candidate)
|| is_bare_list_marker(&candidate.text)
|| candidate.font_size <= 0.0
|| candidate.font_size >= parent.font_size * 0.75
|| candidate.text.len() > 4
|| !candidate.text.chars().all(|c| c.is_ascii_digit())
|| (candidate.y - parent.y).abs() > 5.0
{
return false;
}
let parent_ends_with_letter = parent.text.chars().last().is_some_and(char::is_alphabetic);
if !parent_ends_with_letter {
return false;
}
let parent_right = parent.x + parent.width;
let gap = candidate.x - parent_right;
if gap >= parent.font_size * 0.2 || gap <= -parent.font_size * 0.3 {
return false;
}
let overlap = rule.x2.min(candidate.x + candidate.width) - rule.x1.max(candidate.x);
overlap >= candidate.width * MIN_X_OVERLAP
}
/// Return the items owned by a snug mid-glyph rule.
///
/// Real strikeout decorations track the width of the deleted text, including
/// runs split by font/style changes and adjacent numeric super/subscripts.
/// Non-text graphics can cross the same vertical window, but arrow shafts,
/// signature lines, fraction bars, and chart rules extend materially beyond
/// the intersected glyphs. Requiring the rule to stay within a small em-sized
/// pad of a contiguous matched row separates those cases without relying on
/// document-specific fonts or coordinates.
///
/// Ownership is computed once per rule. This keeps the strikeout pass at the
/// same rule-by-item scale as underline detection instead of rescanning the
/// whole page for every matching item.
fn snug_strike_owner_indices(rule: &Rule, items: &[TextItem]) -> Vec<usize> {
let mut struck_indices: Vec<usize> = items
.iter()
.enumerate()
.filter_map(|(index, candidate)| {
(is_underline_candidate(candidate)
&& !is_bare_list_marker(&candidate.text)
&& rule_strikes_item(rule, candidate))
.then_some(index)
})
.collect();
if struck_indices.is_empty() {
return Vec::new();
}
struck_indices.sort_by(|&left, &right| items[left].y.total_cmp(&items[right].y));
let mut rows: Vec<Vec<usize>> = Vec::new();
for index in struck_indices {
if let Some(row) = rows
.last_mut()
.filter(|row| same_strike_row(&items[row[0]], &items[index]))
{
row.push(index);
} else {
rows.push(vec![index]);
}
}
let mut owned_indices = Vec::new();
for mut row in rows {
row.sort_by(|&left, &right| items[left].x.total_cmp(&items[right].x));
// Underline detection runs before the extractor's script-merging
// pass. Include the same tightly adjacent numeric script shape here
// when the rule spans it, so the owner width and semantic mark both
// survive that later merge.
let scripts: Vec<usize> = items
.iter()
.enumerate()
.filter_map(|(index, candidate)| {
let parent_pos =
row.partition_point(|&row_index| items[row_index].x <= candidate.x);
let parent_index = parent_pos.checked_sub(1).map(|pos| row[pos])?;
is_inline_script(rule, candidate, &items[parent_index]).then_some(index)
})
.collect();
row.extend(scripts);
row.sort_by(|&left, &right| items[left].x.total_cmp(&items[right].x));
row.dedup();
let x1 = row
.iter()
.map(|&index| items[index].x)
.fold(f32::INFINITY, f32::min);
let x2 = row
.iter()
.map(|&index| items[index].x + items[index].width)
.fold(f32::NEG_INFINITY, f32::max);
let max_font_size = row
.iter()
.map(|&index| items[index].font_size)
.fold(0.0, f32::max);
let pad = (max_font_size * STRIKE_OWNER_PAD_EM).max(STRIKE_OWNER_MIN_PAD);
if rule.x1 < x1 - pad || rule.x2 > x2 + pad {
continue;
}
let contiguous = row.windows(2).all(|pair| {
let gap = items[pair[1]].x - (items[pair[0]].x + items[pair[0]].width);
gap <= (max_font_size * 2.0).max(12.0)
});
if contiguous {
owned_indices.extend(row);
}
}
owned_indices.sort_unstable();
owned_indices.dedup();
owned_indices
}
/// Diagram and table rules participate in larger path geometry. A vertical
/// or diagonal segment meeting the candidate rule is strong evidence that
/// the horizontal segment is a connector, border, arrow, or symbol rather
/// than an isolated text decoration.
fn has_connected_nonhorizontal_segment(rule: &Rule, lines: &[UnderlineLine], page: u32) -> bool {
lines.iter().any(|line| {
if line.page != page {
return false;
}
let dx = line.x2 - line.x1;
let dy = line.y2 - line.y1;
if dy.abs() <= MAX_RULE_THICKNESS {
return false;
}
let y_min = line.y1.min(line.y2) - GRAPHIC_CONNECTION_EPS;
let y_max = line.y1.max(line.y2) + GRAPHIC_CONNECTION_EPS;
if rule.y < y_min || rule.y > y_max {
return false;
}
let t = (rule.y - line.y1) / dy;
if !(-0.05..=1.05).contains(&t) {
return false;
}
let intersection_x = line.x1 + t * dx;
intersection_x >= rule.x1 - GRAPHIC_CONNECTION_EPS
&& intersection_x <= rule.x2 + GRAPHIC_CONNECTION_EPS
})
}
/// Filled diagrams often build connectors from intersecting thin rectangles
/// instead of stroked path segments. Treat only narrow, vertically elongated
/// rectangles as connector geometry; broad fills can legitimately sit behind
/// struck text and must not veto its decoration.
fn has_connected_nonhorizontal_rect(rule: &Rule, rects: &[PdfRect], page: u32) -> bool {
rects.iter().any(|rect| {
if rect.page != page {
return false;
}
let (x1, x2) = if rect.width >= 0.0 {
(rect.x, rect.x + rect.width)
} else {
(rect.x + rect.width, rect.x)
};
let (y1, y2) = if rect.height >= 0.0 {
(rect.y, rect.y + rect.height)
} else {
(rect.y + rect.height, rect.y)
};
let width = x2 - x1;
let height = y2 - y1;
width > 0.0
&& width <= GRAPHIC_CONNECTOR_MAX_THICKNESS
&& height > width * 2.0
&& rule.y >= y1 - GRAPHIC_CONNECTION_EPS
&& rule.y <= y2 + GRAPHIC_CONNECTION_EPS
&& x2 >= rule.x1 - GRAPHIC_CONNECTION_EPS
&& x1 <= rule.x2 + GRAPHIC_CONNECTION_EPS
})
}
/// Mark `is_underline` on text items that have a horizontal rule just
/// below their baseline, and `is_strikeout` on items whose glyphs a rule
/// crosses at mid x-height. `items`, `rects`, and `lines` are a single
@@ -440,27 +650,43 @@ pub(crate) fn mark_underlined_items(
.map(|(i, _)| i)
.collect();
for item in items.iter_mut() {
let mut strikeout_items = vec![false; items.len()];
for (rule_idx, rule) in rules.iter().enumerate() {
if tabular_rules.contains(&rule_idx)
|| has_connected_nonhorizontal_segment(rule, lines, page)
|| has_connected_nonhorizontal_rect(rule, rects, page)
{
continue;
}
for item_idx in snug_strike_owner_indices(rule, items) {
strikeout_items[item_idx] = true;
}
}
let underlined_items: HashSet<usize> = items
.iter()
.enumerate()
.filter(|(_, item)| {
is_underline_candidate(item)
&& rules.iter().enumerate().any(|(rule_idx, rule)| {
!tabular_rules.contains(&rule_idx)
&& !fraction_rules.contains(&rule_idx)
&& rule_matches_item(rule, item)
})
})
.map(|(item_idx, _)| item_idx)
.collect();
for (item_idx, item) in items.iter_mut().enumerate() {
if !is_underline_candidate(item) {
continue;
}
for (rule_idx, rule) in rules.iter().enumerate() {
if tabular_rules.contains(&rule_idx) {
continue;
}
// The fraction guard only gates UNDERLINE marking — a rule that
// reads as a fraction bar from below can still legitimately
// strike through a line above it.
if !fraction_rules.contains(&rule_idx) && rule_matches_item(rule, item) {
item.is_underline = true;
}
if rule_strikes_item(rule, item) {
item.is_strikeout = true;
}
if item.is_underline && item.is_strikeout {
break;
}
if strikeout_items[item_idx] {
item.is_strikeout = true;
}
if underlined_items.contains(&item_idx) {
item.is_underline = true;
}
}
}
@@ -580,6 +806,148 @@ mod tests {
assert!(!items[0].is_underline);
}
#[test]
fn long_connector_crossing_text_is_not_a_strikeout() {
let mut items = vec![item("diagram label", 160.0, 500.0, 60.0, 10.0)];
let lines = vec![hline(100.0, 280.0, 503.0)];
mark_underlined_items(&mut items, &[], &lines, 1);
assert!(!items[0].is_strikeout);
}
#[test]
fn chart_rule_ending_inside_short_label_is_not_a_strikeout() {
let mut items = vec![item("T 18", 300.0, 500.0, 20.0, 10.0)];
let lines = vec![hline(100.0, 315.0, 503.0)];
mark_underlined_items(&mut items, &[], &lines, 1);
assert!(!items[0].is_strikeout);
}
#[test]
fn connected_diagram_segment_is_not_a_strikeout() {
let mut items = vec![item("V8", 100.0, 500.0, 12.0, 10.0)];
let lines = vec![
hline(99.0, 113.0, 503.0),
UnderlineLine {
x1: 106.0,
y1: 496.0,
x2: 109.0,
y2: 510.0,
stroke_width: 1.0,
page: 1,
},
];
mark_underlined_items(&mut items, &[], &lines, 1);
assert!(!items[0].is_strikeout);
}
#[test]
fn connected_filled_rect_is_not_a_strikeout() {
let mut items = vec![item("V8", 100.0, 500.0, 12.0, 10.0)];
let rects = vec![
thin_rect(99.0, 502.6, 14.0),
PdfRect {
x: 106.0,
y: 496.0,
width: 2.0,
height: 14.0,
page: 1,
},
];
mark_underlined_items(&mut items, &rects, &[], 1);
assert!(!items[0].is_strikeout);
}
#[test]
fn broad_fill_behind_text_does_not_block_strikeout() {
let mut items = vec![item("deleted", 100.0, 500.0, 40.0, 10.0)];
let rects = vec![
thin_rect(99.0, 502.6, 42.0),
PdfRect {
x: 90.0,
y: 490.0,
width: 100.0,
height: 20.0,
page: 1,
},
];
mark_underlined_items(&mut items, &rects, &[], 1);
assert!(items[0].is_strikeout);
}
#[test]
fn list_bullet_is_not_a_strikeout() {
for marker in ["", "-", "*"] {
let mut items = vec![item(marker, 100.0, 500.0, 6.0, 10.0)];
let lines = vec![hline(99.0, 107.0, 503.0)];
mark_underlined_items(&mut items, &[], &lines, 1);
assert!(!items[0].is_strikeout, "marker {marker:?}");
}
}
#[test]
fn snug_rule_marks_adjacent_split_runs_as_strikeout() {
let mut items = vec![
item("deleted", 100.0, 500.0, 40.0, 10.0),
item("text", 142.0, 500.0, 25.0, 10.0),
];
let lines = vec![hline(99.0, 168.0, 503.0)];
mark_underlined_items(&mut items, &[], &lines, 1);
assert!(items.iter().all(|item| item.is_strikeout));
}
#[test]
fn snug_rule_groups_split_runs_with_baseline_drift() {
let mut items = vec![
item("deleted", 100.0, 500.0, 40.0, 10.0),
item("text", 142.0, 498.0, 25.0, 10.0),
];
let lines = vec![hline(99.0, 168.0, 503.0)];
mark_underlined_items(&mut items, &[], &lines, 1);
assert!(items.iter().all(|item| item.is_strikeout));
}
#[test]
fn snug_rule_keeps_inline_superscript_in_strike_owner() {
let mut items = vec![
item("deleted", 100.0, 500.0, 40.0, 10.0),
item("2", 140.5, 503.0, 4.0, 6.0),
];
let lines = vec![hline(99.0, 145.0, 503.0)];
mark_underlined_items(&mut items, &[], &lines, 1);
assert!(items.iter().all(|item| item.is_strikeout));
}
#[test]
fn snug_rule_keeps_inline_subscript_in_strike_owner() {
let mut items = vec![
item("deleted", 100.0, 500.0, 40.0, 10.0),
item("2", 140.5, 497.0, 4.0, 6.0),
];
let lines = vec![hline(99.0, 145.0, 503.0)];
mark_underlined_items(&mut items, &[], &lines, 1);
assert!(items.iter().all(|item| item.is_strikeout));
}
#[test]
fn baseline_rule_marks_underline_not_strikeout() {
let mut items = vec![item("underlined", 100.0, 500.0, 60.0, 10.0)];