Compare commits
| Author | SHA1 | Date | |
|---|---|---|---|
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bc25730fb0 | ||
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0c56791b0f | ||
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e8a7529e27 | ||
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5ade93440b | ||
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cbd45e96d9 |
+1
-1
@@ -1,6 +1,6 @@
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{
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"name": "@firecrawl/pdf-inspector",
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"version": "1.6.0",
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"version": "1.6.1",
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"description": "Fast PDF classification and text extraction. Detect text-based vs scanned PDFs, extract text by region with quality checks. Native Rust performance via napi-rs.",
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"main": "index.js",
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"types": "index.d.ts",
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+172
-20
@@ -839,7 +839,7 @@ pub fn extract_tables_with_structure_cells_mem(
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inputs: &[TsrTableInput],
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) -> Result<Vec<Vec<tables::StructuredCell>>, PdfError> {
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use tables::structured::{
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cell_px_to_page_pt, parse_structure, polygon_to_aabb, StructuredCell,
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cell_px_to_page_pt, normalize_cell_bands, parse_structure, polygon_to_aabb, StructuredCell,
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};
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validate_pdf_bytes(buffer)?;
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@@ -906,32 +906,15 @@ pub fn extract_tables_with_structure_cells_mem(
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let mut cells: Vec<StructuredCell> = Vec::with_capacity(slots.len());
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for slot in &slots {
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let cell_text;
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let page_pt_bbox;
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if let Some(coords_arr) = input.cell_bboxes.get(slot.bbox_idx) {
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if let Some(aabb_px) = polygon_to_aabb(coords_arr) {
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let aabb_pt = cell_px_to_page_pt(aabb_px, input.render_dpi, crop_origin);
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let raw = collect_text_in_region_with_options(
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items,
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aabb_pt[0],
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aabb_pt[1],
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aabb_pt[2],
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aabb_pt[3],
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page_h,
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coords,
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adaptive_threshold,
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);
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// Markdown cells must be one line — collapse line breaks
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// produced by the line-grouping pass.
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cell_text = raw.replace(['\n', '\r'], " ");
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page_pt_bbox = aabb_pt;
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page_pt_bbox = cell_px_to_page_pt(aabb_px, input.render_dpi, crop_origin);
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} else {
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cell_text = String::new();
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page_pt_bbox = [0.0, 0.0, 0.0, 0.0];
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}
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} else {
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cell_text = String::new();
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page_pt_bbox = [0.0, 0.0, 0.0, 0.0];
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}
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@@ -941,11 +924,21 @@ pub fn extract_tables_with_structure_cells_mem(
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rowspan: slot.rowspan,
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colspan: slot.colspan,
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is_header: slot.is_header,
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text: cell_text,
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text: String::new(),
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page_pt_bbox,
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});
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}
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normalize_cell_bands(&mut cells);
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for cell in &mut cells {
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let [x1, y1, x2, y2] = cell.page_pt_bbox;
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let raw =
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collect_text_in_tsr_cell(items, x1, y1, x2, y2, page_h, coords, adaptive_threshold);
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// Markdown cells must be one line — collapse line breaks produced
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// by the line-grouping pass.
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cell.text = raw.replace(['\n', '\r'], " ");
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}
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results.push(cells);
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}
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@@ -1062,6 +1055,30 @@ fn collect_text_in_region_with_options(
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.filter(|item| region_overlaps_item(item, bounds))
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.cloned()
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.collect();
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collect_text_from_matched_items(matched, adaptive_threshold)
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}
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#[allow(clippy::too_many_arguments)]
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fn collect_text_in_tsr_cell(
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items: &[TextItem],
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rx1: f32,
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ry1: f32,
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rx2: f32,
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ry2: f32,
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page_height: f32,
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coord_space: RegionCoordSpace,
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adaptive_threshold: f32,
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) -> String {
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let bounds = region_bounds(rx1, ry1, rx2, ry2, page_height, coord_space);
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let matched: Vec<TextItem> = items
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.iter()
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.filter(|item| tsr_region_contains_item(item, bounds))
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.cloned()
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.collect();
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collect_text_from_matched_items(matched, adaptive_threshold)
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}
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fn collect_text_from_matched_items(matched: Vec<TextItem>, adaptive_threshold: f32) -> String {
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if matched.is_empty() {
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return String::new();
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}
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@@ -1163,6 +1180,30 @@ fn region_overlaps_item(item: &TextItem, bounds: RegionBounds) -> bool {
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x_overlap > 0.0 && y_overlap > 0.0
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}
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fn tsr_region_contains_item(item: &TextItem, bounds: RegionBounds) -> bool {
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let item_x_min = item.x;
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let item_x_max = item.x + text_utils::effective_width(item);
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let item_y_min = item.y;
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let item_y_max = item.y + item.height;
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let center_x = (item_x_min + item_x_max) * 0.5;
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let center_y = (item_y_min + item_y_max) * 0.5;
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if center_x >= bounds.x_min
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&& center_x <= bounds.x_max
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&& center_y >= bounds.y_min
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&& center_y <= bounds.y_max
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{
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return true;
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}
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let x_overlap = (item_x_max.min(bounds.x_max) - item_x_min.max(bounds.x_min)).max(0.0);
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let y_overlap = (item_y_max.min(bounds.y_max) - item_y_min.max(bounds.y_min)).max(0.0);
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let item_width = (item_x_max - item_x_min).max(0.1);
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let item_height = (item_y_max - item_y_min).max(0.1);
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x_overlap / item_width >= 0.6 && y_overlap / item_height >= 0.6
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}
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// =========================================================================
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// Internal: single-load document pipeline
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// =========================================================================
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@@ -2217,6 +2258,24 @@ pub(crate) fn validate_pdf_file<P: AsRef<Path>>(path: P) -> Result<(), PdfError>
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#[cfg(test)]
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mod tests {
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use super::*;
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use crate::types::ItemType;
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fn test_item(text: &str, x: f32, y: f32, width: f32, height: f32) -> TextItem {
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TextItem {
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text: text.to_string(),
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x,
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y,
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width,
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height,
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font: "Helvetica".to_string(),
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font_size: height,
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page: 1,
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is_bold: false,
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is_italic: false,
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item_type: ItemType::Text,
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mcid: None,
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}
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}
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#[test]
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fn test_detect_encoding_issues_fffd() {
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@@ -2297,4 +2356,97 @@ mod tests {
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"Valid Japanese text should not be flagged as garbage"
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);
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}
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#[test]
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fn tsr_text_fill_does_not_pull_neighboring_overlapping_rows() {
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use crate::tables::structured::normalize_cell_bands;
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use crate::tables::StructuredCell;
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let items = vec![
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test_item("Branch Name", 12.0, 88.0, 55.0, 8.0),
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test_item("Deposits", 112.0, 88.0, 36.0, 8.0),
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test_item("Oak Street", 12.0, 72.0, 48.0, 8.0),
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test_item("100", 112.0, 72.0, 18.0, 8.0),
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test_item("Boardwalk", 12.0, 55.2, 46.0, 8.0),
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test_item("200", 112.0, 55.2, 18.0, 8.0),
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];
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let mut cells = vec![
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StructuredCell {
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row: 0,
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col: 0,
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rowspan: 1,
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colspan: 1,
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is_header: true,
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text: String::new(),
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page_pt_bbox: [10.0, 100.0, 100.0, 125.0],
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},
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StructuredCell {
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row: 0,
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col: 1,
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rowspan: 1,
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colspan: 1,
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is_header: true,
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text: String::new(),
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page_pt_bbox: [100.0, 100.0, 170.0, 125.0],
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},
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StructuredCell {
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row: 1,
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col: 0,
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rowspan: 1,
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colspan: 1,
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is_header: false,
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text: String::new(),
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page_pt_bbox: [10.0, 116.0, 100.0, 141.0],
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},
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StructuredCell {
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row: 1,
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col: 1,
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rowspan: 1,
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colspan: 1,
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is_header: false,
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text: String::new(),
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page_pt_bbox: [100.0, 116.0, 170.0, 141.0],
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},
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StructuredCell {
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row: 2,
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col: 0,
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rowspan: 1,
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colspan: 1,
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is_header: false,
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text: String::new(),
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page_pt_bbox: [10.0, 132.8, 100.0, 157.8],
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},
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StructuredCell {
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row: 2,
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col: 1,
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rowspan: 1,
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colspan: 1,
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is_header: false,
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text: String::new(),
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page_pt_bbox: [100.0, 132.8, 170.0, 157.8],
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},
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];
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normalize_cell_bands(&mut cells);
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for cell in &mut cells {
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let [x1, y1, x2, y2] = cell.page_pt_bbox;
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cell.text = collect_text_in_tsr_cell(
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&items,
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x1,
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y1,
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x2,
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y2,
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200.0,
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RegionCoordSpace::Standard,
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0.10,
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);
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}
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assert_eq!(cells[0].text, "Branch Name");
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assert_eq!(cells[2].text, "Oak Street");
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assert_eq!(cells[4].text, "Boardwalk");
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assert!(!cells[0].text.contains("Oak Street"));
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assert!(!cells[2].text.contains("Branch Name"));
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assert!(!cells[2].text.contains("Boardwalk"));
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}
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}
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+235
-1
@@ -12,7 +12,7 @@
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//! Cell text is supplied separately by the caller (typically by overlap-
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//! testing PDF text items against each cell's page-PDF-pt bbox).
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use std::collections::HashSet;
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use std::collections::{HashMap, HashSet};
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/// A single resolved cell, with both structural metadata and its bbox in
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/// page PDF-points (top-left origin).
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@@ -219,6 +219,144 @@ pub(crate) fn cell_px_to_page_pt(
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]
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}
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/// Refine TSR cell bboxes into non-overlapping row/column bands.
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///
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/// SLANet-style bboxes are often plausible but too tall on dense borderless
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/// tables. Native PDF text assignment is more reliable when each parsed row
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/// owns the band between neighboring row centers instead of the full model box.
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pub(crate) fn normalize_cell_bands(cells: &mut [StructuredCell]) {
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if cells.len() < 2 {
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return;
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}
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let row_bands = derive_axis_bands(cells, Axis::Y);
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let col_bands = derive_axis_bands(cells, Axis::X);
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for cell in cells {
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let row_end = cell.row + cell.rowspan.max(1).saturating_sub(1);
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if let (Some(&(y1, _)), Some(&(_, y2))) =
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(row_bands.get(&cell.row), row_bands.get(&row_end))
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{
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let clamped_y1 = cell.page_pt_bbox[1].max(y1);
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let clamped_y2 = cell.page_pt_bbox[3].min(y2);
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if clamped_y1 < clamped_y2 {
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cell.page_pt_bbox[1] = clamped_y1;
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cell.page_pt_bbox[3] = clamped_y2;
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}
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}
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let col_end = cell.col + cell.colspan.max(1).saturating_sub(1);
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if let (Some(&(x1, _)), Some(&(_, x2))) =
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(col_bands.get(&cell.col), col_bands.get(&col_end))
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{
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let clamped_x1 = cell.page_pt_bbox[0].max(x1);
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let clamped_x2 = cell.page_pt_bbox[2].min(x2);
|
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if clamped_x1 < clamped_x2 {
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cell.page_pt_bbox[0] = clamped_x1;
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cell.page_pt_bbox[2] = clamped_x2;
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
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|
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#[derive(Clone, Copy)]
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enum Axis {
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X,
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Y,
|
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}
|
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|
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fn derive_axis_bands(cells: &[StructuredCell], axis: Axis) -> HashMap<usize, (f32, f32)> {
|
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let mut by_index: HashMap<usize, Vec<(f32, f32)>> = HashMap::new();
|
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|
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// Prefer non-spanning cells so colspan/rowspan boxes do not skew a single
|
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// column/row center. If an axis has no non-spanning examples for an index,
|
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// fall back to anchored cells below.
|
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for cell in cells {
|
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let span = match axis {
|
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Axis::X => cell.colspan.max(1),
|
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Axis::Y => cell.rowspan.max(1),
|
||||
};
|
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if span == 1 {
|
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let idx = match axis {
|
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Axis::X => cell.col,
|
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Axis::Y => cell.row,
|
||||
};
|
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by_index
|
||||
.entry(idx)
|
||||
.or_default()
|
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.push(axis_bounds(cell.page_pt_bbox, axis));
|
||||
}
|
||||
}
|
||||
|
||||
for cell in cells {
|
||||
let idx = match axis {
|
||||
Axis::X => cell.col,
|
||||
Axis::Y => cell.row,
|
||||
};
|
||||
if !by_index.contains_key(&idx) {
|
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by_index
|
||||
.entry(idx)
|
||||
.or_default()
|
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.push(axis_bounds(cell.page_pt_bbox, axis));
|
||||
}
|
||||
}
|
||||
|
||||
let mut rows: Vec<(usize, f32, f32, f32)> = by_index
|
||||
.into_iter()
|
||||
.filter_map(|(idx, bounds)| {
|
||||
let mut min_edge = f32::INFINITY;
|
||||
let mut max_edge = f32::NEG_INFINITY;
|
||||
let mut center_sum = 0.0;
|
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let mut count = 0usize;
|
||||
for (lo, hi) in bounds {
|
||||
if lo.is_finite() && hi.is_finite() && lo < hi {
|
||||
min_edge = min_edge.min(lo);
|
||||
max_edge = max_edge.max(hi);
|
||||
center_sum += (lo + hi) * 0.5;
|
||||
count += 1;
|
||||
}
|
||||
}
|
||||
(count > 0).then_some((idx, center_sum / count as f32, min_edge, max_edge))
|
||||
})
|
||||
.collect();
|
||||
|
||||
if rows.len() < 2 {
|
||||
return rows
|
||||
.into_iter()
|
||||
.map(|(idx, _center, lo, hi)| (idx, (lo, hi)))
|
||||
.collect();
|
||||
}
|
||||
|
||||
rows.sort_by_key(|(idx, _, _, _)| *idx);
|
||||
|
||||
let mut bands = HashMap::new();
|
||||
for i in 0..rows.len() {
|
||||
let (idx, _center, min_edge, max_edge) = rows[i];
|
||||
let lo = if i == 0 {
|
||||
min_edge
|
||||
} else {
|
||||
(rows[i - 1].1 + rows[i].1) * 0.5
|
||||
};
|
||||
let hi = if i + 1 == rows.len() {
|
||||
max_edge
|
||||
} else {
|
||||
(rows[i].1 + rows[i + 1].1) * 0.5
|
||||
};
|
||||
if lo.is_finite() && hi.is_finite() && lo < hi {
|
||||
bands.insert(idx, (lo, hi));
|
||||
}
|
||||
}
|
||||
|
||||
bands
|
||||
}
|
||||
|
||||
fn axis_bounds(bbox: [f32; 4], axis: Axis) -> (f32, f32) {
|
||||
match axis {
|
||||
Axis::X => (bbox[0].min(bbox[2]), bbox[0].max(bbox[2])),
|
||||
Axis::Y => (bbox[1].min(bbox[3]), bbox[1].max(bbox[3])),
|
||||
}
|
||||
}
|
||||
|
||||
/// Sanitize cell text for inclusion in a markdown pipe-table cell:
|
||||
/// collapse whitespace runs, drop newlines/tabs (cells must be one line),
|
||||
/// and escape pipes that would otherwise break the table.
|
||||
@@ -448,6 +586,102 @@ mod tests {
|
||||
}
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn normalize_cell_bands_splits_overlapping_slanet_rows() {
|
||||
let mut cells = vec![
|
||||
StructuredCell {
|
||||
row: 0,
|
||||
col: 0,
|
||||
rowspan: 1,
|
||||
colspan: 1,
|
||||
is_header: true,
|
||||
text: String::new(),
|
||||
page_pt_bbox: [10.0, 100.0, 90.0, 120.0],
|
||||
},
|
||||
StructuredCell {
|
||||
row: 0,
|
||||
col: 1,
|
||||
rowspan: 1,
|
||||
colspan: 1,
|
||||
is_header: true,
|
||||
text: String::new(),
|
||||
page_pt_bbox: [90.0, 100.0, 170.0, 120.0],
|
||||
},
|
||||
StructuredCell {
|
||||
row: 1,
|
||||
col: 0,
|
||||
rowspan: 1,
|
||||
colspan: 1,
|
||||
is_header: false,
|
||||
text: String::new(),
|
||||
page_pt_bbox: [10.0, 116.0, 90.0, 136.0],
|
||||
},
|
||||
StructuredCell {
|
||||
row: 1,
|
||||
col: 1,
|
||||
rowspan: 1,
|
||||
colspan: 1,
|
||||
is_header: false,
|
||||
text: String::new(),
|
||||
page_pt_bbox: [90.0, 116.0, 170.0, 136.0],
|
||||
},
|
||||
];
|
||||
|
||||
normalize_cell_bands(&mut cells);
|
||||
|
||||
assert_eq!(cells[0].page_pt_bbox[3], cells[2].page_pt_bbox[1]);
|
||||
assert_eq!(cells[1].page_pt_bbox[3], cells[3].page_pt_bbox[1]);
|
||||
assert!(
|
||||
(cells[0].page_pt_bbox[3] - 118.0).abs() < 0.01,
|
||||
"row separator should be midpoint between row centers: {:?}",
|
||||
cells
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn normalize_cell_bands_preserves_colspan_extent() {
|
||||
let mut cells = vec![
|
||||
StructuredCell {
|
||||
row: 0,
|
||||
col: 0,
|
||||
rowspan: 1,
|
||||
colspan: 2,
|
||||
is_header: true,
|
||||
text: String::new(),
|
||||
page_pt_bbox: [8.0, 80.0, 172.0, 98.0],
|
||||
},
|
||||
StructuredCell {
|
||||
row: 1,
|
||||
col: 0,
|
||||
rowspan: 1,
|
||||
colspan: 1,
|
||||
is_header: false,
|
||||
text: String::new(),
|
||||
page_pt_bbox: [10.0, 96.0, 90.0, 114.0],
|
||||
},
|
||||
StructuredCell {
|
||||
row: 1,
|
||||
col: 1,
|
||||
rowspan: 1,
|
||||
colspan: 1,
|
||||
is_header: false,
|
||||
text: String::new(),
|
||||
page_pt_bbox: [88.0, 96.0, 170.0, 114.0],
|
||||
},
|
||||
];
|
||||
|
||||
normalize_cell_bands(&mut cells);
|
||||
|
||||
assert!(
|
||||
cells[0].page_pt_bbox[0] <= cells[1].page_pt_bbox[0],
|
||||
"spanning cell should retain the first column's left edge"
|
||||
);
|
||||
assert!(
|
||||
cells[0].page_pt_bbox[2] >= cells[2].page_pt_bbox[2],
|
||||
"spanning cell should retain the last column's right edge"
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn parse_int_attr_basic() {
|
||||
assert_eq!(parse_int_attr(" colspan=\"4\"", "colspan"), Some(4));
|
||||
|
||||
@@ -1484,6 +1484,82 @@ fn poly(x1: f32, y1: f32, x2: f32, y2: f32) -> Vec<f32> {
|
||||
vec![x1, y1, x2, y1, x2, y2, x1, y2]
|
||||
}
|
||||
|
||||
fn synthetic_dense_table_pdf() -> Vec<u8> {
|
||||
use lopdf::content::{Content, Operation};
|
||||
use lopdf::{dictionary, Document, Object, Stream};
|
||||
|
||||
let mut doc = Document::with_version("1.5");
|
||||
let pages_id = doc.new_object_id();
|
||||
let page_id = doc.new_object_id();
|
||||
let font_id = doc.new_object_id();
|
||||
let content_id = doc.new_object_id();
|
||||
|
||||
doc.objects.insert(
|
||||
font_id,
|
||||
dictionary! {
|
||||
"Type" => "Font",
|
||||
"Subtype" => "Type1",
|
||||
"BaseFont" => "Helvetica",
|
||||
}
|
||||
.into(),
|
||||
);
|
||||
|
||||
let operations = vec![
|
||||
Operation::new("BT", vec![]),
|
||||
Operation::new("Tf", vec!["F1".into(), 10.into()]),
|
||||
Operation::new("Td", vec![20.into(), 700.into()]),
|
||||
Operation::new("Tj", vec![Object::string_literal("Branch Name")]),
|
||||
Operation::new("Td", vec![100.into(), 0.into()]),
|
||||
Operation::new("Tj", vec![Object::string_literal("Deposits")]),
|
||||
Operation::new("Td", vec![Object::Integer(-100), Object::Real(-16.8)]),
|
||||
Operation::new("Tj", vec![Object::string_literal("Oak Street")]),
|
||||
Operation::new("Td", vec![100.into(), 0.into()]),
|
||||
Operation::new("Tj", vec![Object::string_literal("100")]),
|
||||
Operation::new("Td", vec![Object::Integer(-100), Object::Real(-16.8)]),
|
||||
Operation::new("Tj", vec![Object::string_literal("Boardwalk")]),
|
||||
Operation::new("Td", vec![100.into(), 0.into()]),
|
||||
Operation::new("Tj", vec![Object::string_literal("200")]),
|
||||
Operation::new("ET", vec![]),
|
||||
];
|
||||
let content = Content { operations }.encode().unwrap();
|
||||
doc.objects
|
||||
.insert(content_id, Stream::new(dictionary! {}, content).into());
|
||||
|
||||
doc.objects.insert(
|
||||
page_id,
|
||||
dictionary! {
|
||||
"Type" => "Page",
|
||||
"Parent" => pages_id,
|
||||
"MediaBox" => vec![0.into(), 0.into(), 200.into(), 800.into()],
|
||||
"Resources" => dictionary! {
|
||||
"Font" => dictionary! {
|
||||
"F1" => font_id,
|
||||
},
|
||||
},
|
||||
"Contents" => content_id,
|
||||
}
|
||||
.into(),
|
||||
);
|
||||
doc.objects.insert(
|
||||
pages_id,
|
||||
dictionary! {
|
||||
"Type" => "Pages",
|
||||
"Kids" => vec![page_id.into()],
|
||||
"Count" => 1,
|
||||
}
|
||||
.into(),
|
||||
);
|
||||
let catalog_id = doc.add_object(dictionary! {
|
||||
"Type" => "Catalog",
|
||||
"Pages" => pages_id,
|
||||
});
|
||||
doc.trailer.set("Root", catalog_id);
|
||||
|
||||
let mut bytes = Vec::new();
|
||||
doc.save_to(&mut bytes).unwrap();
|
||||
bytes
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn test_extract_tables_with_structure_real_pdf_bits_pilani() {
|
||||
use pdf_inspector::{extract_tables_with_structure_mem, TsrTableInput};
|
||||
@@ -1564,6 +1640,64 @@ fn test_extract_tables_with_structure_real_pdf_bits_pilani() {
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn test_extract_tables_with_structure_dense_overlapping_slanet_boxes() {
|
||||
use pdf_inspector::{extract_tables_with_structure_mem, TsrTableInput};
|
||||
|
||||
let buf = synthetic_dense_table_pdf();
|
||||
let tokens: Vec<String> = [
|
||||
"<table>",
|
||||
"<thead>",
|
||||
"<tr>",
|
||||
"<th></th>",
|
||||
"<th></th>",
|
||||
"</tr>",
|
||||
"</thead>",
|
||||
"<tbody>",
|
||||
"<tr>",
|
||||
"<td></td>",
|
||||
"<td></td>",
|
||||
"</tr>",
|
||||
"<tr>",
|
||||
"<td></td>",
|
||||
"<td></td>",
|
||||
"</tr>",
|
||||
"</tbody>",
|
||||
"</table>",
|
||||
]
|
||||
.into_iter()
|
||||
.map(String::from)
|
||||
.collect();
|
||||
|
||||
// Rows are spaced 16.8pt apart, while the SLANet-style boxes are 40pt
|
||||
// tall and overlap adjacent rows. Text must still land in only one row.
|
||||
let cell_bboxes = vec![
|
||||
poly(10.0, 72.0, 100.0, 112.0),
|
||||
poly(90.0, 72.0, 180.0, 112.0),
|
||||
poly(10.0, 88.8, 100.0, 128.8),
|
||||
poly(90.0, 88.8, 180.0, 128.8),
|
||||
poly(10.0, 105.6, 100.0, 145.6),
|
||||
poly(90.0, 105.6, 180.0, 145.6),
|
||||
];
|
||||
|
||||
let mds = extract_tables_with_structure_mem(
|
||||
&buf,
|
||||
&[TsrTableInput {
|
||||
page: 0,
|
||||
crop_pdf_pt_bbox: [0.0, 0.0, 200.0, 800.0],
|
||||
render_dpi: 72.0,
|
||||
structure_tokens: tokens,
|
||||
cell_bboxes,
|
||||
}],
|
||||
)
|
||||
.unwrap();
|
||||
|
||||
let expected = "|Branch Name|Deposits|\n|---|---|\n|Oak Street|100|\n|Boardwalk|200|\n";
|
||||
assert_eq!(mds[0], expected);
|
||||
assert!(!mds[0].contains("Branch Name Oak Street"));
|
||||
assert!(!mds[0].contains("Oak Street Boardwalk"));
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn test_extract_tables_with_structure_input_order_preserved() {
|
||||
use pdf_inspector::{extract_tables_with_structure_mem, TsrTableInput};
|
||||
|
||||
Reference in New Issue
Block a user