docling_core/document.rs
1//! The unified document representation.
2
3use crate::markdown::{to_markdown, to_markdown_images};
4use crate::ImageMode;
5
6/// The unified, format-agnostic document produced by every backend.
7///
8/// This is the heart of docling: backends parse their source format into a
9/// `DoclingDocument`, and serializers turn it back into Markdown, HTML, JSON,
10/// etc. Phase 0 uses a flat sequence of [`Node`]s; the production schema will
11/// match docling-core's body-tree-with-references layout.
12#[derive(Debug, Clone, PartialEq)]
13pub struct DoclingDocument {
14 /// Logical document name (usually the input file stem).
15 pub name: String,
16 /// Top-level content, in reading order.
17 pub nodes: Vec<Node>,
18 /// Default Markdown export mode for [`Self::export_to_markdown`]. `false`
19 /// (the default) reproduces docling's legacy output byte-for-byte; `true`
20 /// emits cleaner, more conformant Markdown. Set by `DocumentConverter`.
21 pub strict_markdown: bool,
22 /// Emit tables in the compact `| a | b |` / `| - | - |` form rather than
23 /// docling-core's width-padded GitHub serializer. The PDF backend sets this
24 /// (its committed groundtruth corpus predates the padded serializer); DOCX/HTML
25 /// leave it `false` to match current published docling.
26 pub compact_tables: bool,
27 /// Hyperlinks recovered from the source, as `(anchor_text, href)` pairs in
28 /// document order. docling's standard pipeline drops PDF link annotations, so
29 /// these are rendered as Markdown `[anchor](href)` **only in strict mode**
30 /// (legacy/docling output is left byte-for-byte unchanged). The PDF backend
31 /// populates this from pdfium link annotations; other backends leave it empty.
32 pub links: Vec<(String, String)>,
33 /// Conversion-confidence report (#183), populated by the PDF/image ML
34 /// pipeline; `None` for declarative conversions. Deliberately **not**
35 /// part of any document export (docling keeps it on the conversion
36 /// result, outside the document schema) — docling-serve surfaces it in
37 /// the HTTP response instead.
38 pub confidence: Option<crate::confidence::ConfidenceReport>,
39}
40
41/// A single piece of document content.
42#[derive(Debug, Clone, PartialEq)]
43pub enum Node {
44 /// A heading. `level` is 1-6.
45 Heading { level: u8, text: String },
46 /// A run of body text.
47 Paragraph { text: String },
48 /// A form checkbox (docling's `checkbox_selected`/`checkbox_unselected`): its
49 /// clean label `text` with the checked state. DocLang emits a `<checkbox>`
50 /// element head; Markdown/JSON render the task-list form (`- [x] `/`- [ ] `).
51 CheckboxItem { checked: bool, text: String },
52 /// A single list item at the given nesting `level` (0 = top). For ordered
53 /// items, `number` is the display number (honoring the list's `start`); it
54 /// is unused for unordered items. `first_in_list` marks the first item of a
55 /// list so the serializer can blank-line-separate adjacent sibling lists.
56 ///
57 /// `marker` is the DocLang enumeration marker (`"1."`, `"1.1."`, …) when the
58 /// backend provides one — HTML and DOCX set it for enumerated items, so
59 /// DocLang emits `<ldiv><marker>…</marker></ldiv>`; Markdown and the other
60 /// declarative backends leave it `None`, giving a bare `<ldiv/>` (matching
61 /// docling, whose Markdown backend passes no marker).
62 ListItem {
63 ordered: bool,
64 number: u64,
65 first_in_list: bool,
66 text: String,
67 level: u8,
68 marker: Option<String>,
69 /// Optional layout provenance (`x0,y0,x1,y1`, normalized to 0–511): the
70 /// four DocLang `<location>` values emitted inside the `<list>` right
71 /// after the item's `<ldiv>`. Set only by backends with real geometry
72 /// (e.g. PPTX shapes); `None` for the declarative backends. Kept on the
73 /// item itself (rather than a [`Node::Located`] wrapper) so consecutive
74 /// items still group into one `<list>`.
75 location: Option<[u16; 4]>,
76 /// DocLang-only override for items whose DocLang form diverges from their
77 /// flat Markdown `text`. Markdown/JSON always render the fields above; the
78 /// DocLang serializer, when this is `Some`, takes the list kind, marker,
79 /// and content from here instead. Used for docx multilevel numbering
80 /// (Markdown shows `- 1.1. x`, DocLang an ordered `<marker>1.1.</marker>`
81 /// with clean text) and inline equations/formatting in list items.
82 dclx: Option<ListItemDclx>,
83 /// The item's hyperlink target, when its content is a link — docling's
84 /// HTML backend emits it as an `<href uri=…/>` in the item head, and the
85 /// anchor's Markdown link markup is stripped from the rendered content.
86 /// `None` for a plain item; ignored by Markdown/JSON.
87 href: Option<String>,
88 /// Non-body content layer (docling's HTML site chrome before the first
89 /// heading → `furniture`). DocLang emits a `<layer value=…/>` in the item
90 /// head; Markdown/JSON drop a non-body item entirely.
91 layer: Option<ContentLayer>,
92 },
93 /// A fenced code block.
94 Code {
95 language: Option<String>,
96 text: String,
97 /// The original (pre-enrichment) text when the CodeFormula model
98 /// rewrote `text`: docling keeps the raw extraction in the JSON `orig`
99 /// field while `text` carries the model output. `None` → `orig == text`.
100 orig: Option<String>,
101 /// A line-preserving rendering, when the backend can reconstruct one
102 /// but docling's own output for the format cannot. The PDF pipeline
103 /// sets it (docling-parse joins code lines with single spaces, so
104 /// `text` carries that flat docling-parity form): **strict** Markdown
105 /// prefers `pretty`, every byte-conformance surface (legacy Markdown,
106 /// JSON, DocLang, chunks) serializes `text`.
107 pretty: Option<String>,
108 },
109 /// A table. The first row is treated as the header.
110 Table(Table),
111 /// A picture/figure, with an optional caption and (when a backend extracts
112 /// it) the embedded image itself.
113 Picture {
114 caption: Option<String>,
115 /// Hyperlink annotation on the caption (docling's caption text item
116 /// `hyperlink`): the HTML backend sets it when an `<a href>` wraps the
117 /// image whose `alt` became the caption. DocLang emits the block-form
118 /// `<caption>` with an `<href uri=…/>` head; JSON puts `hyperlink` on
119 /// the caption item; Markdown and LaTeX print the plain caption text,
120 /// as docling does.
121 caption_href: Option<String>,
122 image: Option<PictureImage>,
123 /// DocumentPictureClassifier predictions (all classes, descending
124 /// confidence), when the picture-classification enrichment ran.
125 /// Serialized as docling's `classification` annotation + `meta` field
126 /// on the JSON picture item; Markdown/DocLang output is unaffected.
127 classification: Option<Vec<PictureClass>>,
128 /// Where the caption item hangs in the JSON tree (#390); see
129 /// [`CaptionParent`]. Markdown, DocLang and LaTeX ignore it.
130 caption_parent: CaptionParent,
131 },
132 /// A display-math formula item decoded by the CodeFormula enrichment:
133 /// `latex` is the model's LaTeX (no `$$` wrapping), `orig` the raw glyph
134 /// text extracted from the PDF. Markdown renders `$$latex$$`; JSON emits a
135 /// `formula` text item (docling's un-enriched pipeline instead emits a
136 /// placeholder paragraph — see the PDF assembler).
137 Formula {
138 latex: String,
139 orig: String,
140 location: Option<[u16; 4]>,
141 },
142 /// A standalone caption item (docling's `DocItemLabel.CAPTION` text that
143 /// no picture or table claims): the HTML backend emits a `<figure>`'s
144 /// `<figcaption>` this way when the figure produced no picture and its
145 /// first item is not a table (docling#4050). `href` is the caption's
146 /// hyperlink annotation (the first link inside the figcaption); Markdown
147 /// renders it as `[text](href)`, JSON puts `hyperlink` on the caption
148 /// item, DocLang emits the block-form `<caption>` with an `<href>` head.
149 Caption { text: String, href: Option<String> },
150 /// A chart (docling's `PictureItem` classified as a chart, carrying a
151 /// `PictureTabularChartData` annotation). Markdown and JSON render it exactly
152 /// like a [`Node::Picture`] placeholder (an `<!-- image -->` / `picture`
153 /// item); the DocLang serializer emits `<picture class="chart">` with a
154 /// `<label value="{kind}"/>` and the data `table` as a `<tabular>`.
155 Chart {
156 /// docling's classification label, e.g. `bar_chart`, `line_chart`.
157 kind: String,
158 /// The chart's data grid (row 0 is the header band).
159 table: Table,
160 /// The chart title (docling's caption item on the picture).
161 caption: Option<String>,
162 /// DocLang `<location>` provenance for the picture element.
163 location: Option<[u16; 4]>,
164 },
165 /// A logical grouping of child nodes (e.g. a list, a section, a spreadsheet
166 /// sheet). `name` is docling's group name when it differs from the label —
167 /// an xlsx sheet group is `label: "sheet"`, `name: Some("Sheet1")`. `layer`
168 /// puts the group *and* everything it contains on a non-body content layer
169 /// (a hidden sheet is `invisible`), which is how the serializers that only
170 /// render body content know to skip it; DocLang stamps each child with the
171 /// layer token, exactly as a [`Node::Furniture`] wrapper on each would.
172 /// DocLang has no group element, so a group is transparent there.
173 Group {
174 label: String,
175 name: Option<String>,
176 layer: Option<ContentLayer>,
177 children: Vec<Node>,
178 },
179 /// A form key-value region (docling's `field_region`): a set of form fields,
180 /// each pairing an optional marker, key, and value. Backends detect these
181 /// from form structure (e.g. HTML's `keyN` / `keyN_valueM` / `keyN_marker`
182 /// `id`-convention); the serializers render each item's parts as separate
183 /// labelled texts (`marker` / `field_key` / `field_value`).
184 FieldRegion { items: Vec<FieldItem> },
185 /// Rich inline content — docling's `InlineGroup`: a run of styled text
186 /// segments that a backend captured with formatting (`<bold>`, `<italic>`,
187 /// `<underline>`, `<strikethrough>`, sub/superscript, inline `<code>`) the
188 /// flat Markdown text cannot represent. Markdown/JSON render this exactly
189 /// like `Paragraph { text: md_text }` (so their output is unchanged); the
190 /// DocLang serializer uses the structured `runs`. `unwrapped` is set when the
191 /// group's docling parent is a heading/text (no enclosing `<text>` wrapper).
192 InlineGroup {
193 unwrapped: bool,
194 runs: Vec<InlineRun>,
195 md_text: String,
196 },
197 /// A node in a non-body content layer — `furniture` (page headers/footers,
198 /// the HTML `<title>`, site navigation/chrome) or `notes` (docx comments).
199 /// Markdown and JSON omit these layers by default; DocLang renders the wrapped
200 /// node with a `<layer value="{layer}"/>` head.
201 Furniture {
202 layer: ContentLayer,
203 inner: Box<Node>,
204 },
205 /// One reviewer comment: docling's notes-layer `comment_section` group
206 /// holding a single text item. `name` is docling's own — `comment-{id}` for
207 /// a docx `w:comment`, `comment-{sheet}-{cell}` for a spreadsheet cell note.
208 /// JSON emits the group plus its notes-layer text; DocLang emits the flat
209 /// `<text><layer value="notes"/>…</text>` upstream writes (its DocLang
210 /// carries no group for comments); Markdown and LaTeX omit the notes layer.
211 ///
212 /// `refs_note_text` picks what a [`Node::Commented`] annotation points at,
213 /// mirroring an upstream asymmetry: docling-core's `add_comment` appends the
214 /// **note text**'s ref to each target (which is what the xlsx backend gets),
215 /// while the docx backend overwrites that with the **group**'s ref so a
216 /// comment's replies group together.
217 ///
218 /// `grouped` is whether docling wraps the note in a `comment_section`
219 /// group at all: the docx and spreadsheet backends do, while backends that
220 /// call docling-core's `add_comment` directly (Pages, #383) get a bare
221 /// notes-layer text item under the body — JSON then emits no group and
222 /// `name` is unused.
223 CommentSection {
224 name: String,
225 text: String,
226 refs_note_text: bool,
227 grouped: bool,
228 },
229 /// A body item annotated by reviewer comments: `comments` are indices into
230 /// the document's [`Node::CommentSection`] nodes, in document order. JSON
231 /// emits docling's `comments: [{"$ref": …}]` on the item, each ref pointing
232 /// where the section says (see [`Node::CommentSection::refs_note_text`]);
233 /// every other serializer renders `inner` unchanged.
234 Commented {
235 comments: Vec<usize>,
236 inner: Box<Node>,
237 },
238 /// A node carrying layout provenance — the four DocLang `<location>` values
239 /// (`x0,y0,x1,y1`, normalized to 0–511) docling attaches to elements from
240 /// backends with real geometry (e.g. the slide shapes in PPTX). Markdown and
241 /// JSON render the wrapped node unchanged; DocLang emits the `<location>`
242 /// tokens as the element's first children.
243 Located {
244 location: [u16; 4],
245 inner: Box<Node>,
246 },
247 /// Exact page provenance for a backend whose geometry already *is* the
248 /// page's coordinate system — an XLSX item's cell-index box on its sheet,
249 /// which docling writes verbatim (`bbox` in a top-left origin, the
250 /// `charspan` the backend chose) and sizes the page from. The 0–511 grid
251 /// of a [`Node::Located`] cannot round-trip such integers exactly, so the
252 /// JSON export reads this wrapper; every other serializer renders `inner`
253 /// unchanged (DocLang keeps taking its `<location>` tokens from the grid).
254 Prov {
255 page_no: usize,
256 /// `[l, t, r, b]`, page units, top-left origin.
257 bbox: [f32; 4],
258 /// docling's `charspan` for the item (`[0, 0]` for an XLSX table).
259 charspan: [usize; 2],
260 /// The item's creation rank among its siblings, when that differs
261 /// from the node order: docling numbers `#/tables/N` / `#/texts/N` /
262 /// `#/pictures/N` in the order it *creates* items (a sheet's tables,
263 /// then its images, then its charts) and only afterwards sorts the
264 /// container's children by position. The JSON export adds siblings in
265 /// this order and lays their refs out in node order; `None` when the
266 /// two orders coincide.
267 seq: Option<usize>,
268 inner: Box<Node>,
269 },
270 /// A PDF page header or footer (docling's `page_header`/`page_footer`
271 /// furniture): DocLang emits `<page_header>`/`<page_footer>` with a
272 /// `<layer value="furniture"/>` head, the four `<location>` tokens, then the
273 /// text. Markdown and JSON omit it like other furniture.
274 PageFurniture {
275 footer: bool,
276 location: [u16; 4],
277 text: String,
278 },
279 /// A page boundary — docling's implicit page break between pages. The PPTX
280 /// backend emits one between consecutive slides. DocLang renders it as
281 /// `<page_break/>`; Markdown and JSON omit it (matching docling's default
282 /// exports, which carry page breaks only in the document model).
283 PageBreak,
284 /// An invisible page marker — the first node of every page the PDF paths
285 /// assemble: the 1-based page number and the page size in PDF points. It
286 /// carries exactly what the JSON export needs to populate docling's
287 /// `pages` map and to denormalize the 0–511 `<location>` grid back into
288 /// BOTTOMLEFT point bboxes for per-item `prov` (#171). Every other
289 /// serializer skips it, so Markdown / DocLang / DocTags output is
290 /// byte-for-byte unchanged.
291 PageInfo {
292 /// 1-based page number (0 = "not yet numbered": the assembler emits
293 /// the marker, the document-level collector stamps the real number).
294 page_no: usize,
295 /// Page width in PDF points.
296 width: f32,
297 /// Page height in PDF points.
298 height: f32,
299 },
300 /// A node docling keeps in the document model (and DocLang) but leaves out
301 /// of the Markdown and JSON exports — e.g. an ODF *presentation*'s pictures
302 /// and charts, which appear in the `.dclx` body but not in its `.md`/`.json`.
303 /// DocLang renders the wrapped node in place; Markdown and JSON skip it.
304 DoclangOnly(Box<Node>),
305 /// A verbatim plain-text dump — docling's plain-text backend emits the whole
306 /// file as a single text item (used for legacy USPTO APS `.txt` grants, which
307 /// docling routes to plain text rather than its APS parser). The stored string
308 /// is the file body, one record per line. Markdown/JSON render it as one text
309 /// block; the DocLang serializer reproduces minidom's per-line layout, CDATA-
310 /// escaping only the lines that need it (see `emit_text_dump`).
311 TextDump(String),
312}
313
314/// Vertical text position of an [`InlineRun`] — docling's `Script`.
315#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
316pub enum Script {
317 #[default]
318 Baseline,
319 Sub,
320 Super,
321}
322
323/// One styled segment of a [`Node::InlineGroup`] — the docling.rs analogue of a
324/// `TextItem` inside an `InlineGroup`, carrying the ancestor formatting docling
325/// tracks. `text` is already whitespace-normalized/trimmed (one segment per
326/// source text node). A hyperlink is intentionally not stored: DocLang drops the
327/// target inside inline scope, keeping only the anchor text.
328#[derive(Debug, Clone, PartialEq, Eq, Default)]
329pub struct InlineRun {
330 pub text: String,
331 pub bold: bool,
332 pub italic: bool,
333 pub underline: bool,
334 pub strike: bool,
335 pub script: Script,
336 pub code: bool,
337 /// An inline equation (`text` holds LaTeX): DocLang renders `<formula>…`,
338 /// Markdown/JSON keep the `$…$` already baked into the group's `md_text`.
339 pub formula: bool,
340}
341
342/// A DocLang content layer other than the default `body` (see [`Node::Furniture`]).
343#[derive(Debug, Clone, Copy, PartialEq, Eq)]
344pub enum ContentLayer {
345 /// Page headers/footers, HTML `<title>`, site navigation/chrome.
346 Furniture,
347 /// Editorial notes (docx reviewer comments).
348 Notes,
349 /// Invisible content (hidden spreadsheet sheets).
350 Invisible,
351}
352
353impl ContentLayer {
354 /// The `<layer value="…"/>` token value.
355 pub fn value(self) -> &'static str {
356 match self {
357 ContentLayer::Furniture => "furniture",
358 ContentLayer::Notes => "notes",
359 ContentLayer::Invisible => "invisible",
360 }
361 }
362}
363
364/// DocLang-only content for a [`Node::ListItem`] whose DocLang form differs from
365/// its flat Markdown `text` (see [`Node::ListItem::dclx`]). `ordered` picks the
366/// enclosing `<list>` kind, `marker` the `<ldiv><marker>`; content is `runs`
367/// (structured equations/formatting) when non-empty, else `text` re-parsed for
368/// inline markers.
369#[derive(Debug, Clone, PartialEq, Eq, Default)]
370pub struct ListItemDclx {
371 pub ordered: bool,
372 pub marker: Option<String>,
373 pub text: String,
374 pub runs: Vec<InlineRun>,
375}
376
377impl InlineRun {
378 /// A run with no active formatting (renders as bare inline text).
379 pub fn is_plain(&self) -> bool {
380 !self.bold
381 && !self.italic
382 && !self.underline
383 && !self.strike
384 && !self.code
385 && !self.formula
386 && self.script == Script::Baseline
387 }
388}
389
390/// Build the [`Node`] for a paragraph of inline content from its structured
391/// `runs` and Markdown text, applying docling's `InlineGroup` boundary:
392///
393/// * a single plain run (or none) → a plain [`Node::Paragraph`] (which the
394/// serializers render as `<text>…</text>`, and a lone hyperlink via `<href>`);
395/// * a single uniformly-formatted run, or two or more runs → a
396/// [`Node::InlineGroup`]. `unwrapped` (the group's docling parent is a
397/// heading, so no enclosing `<text>`) only applies to multi-run groups.
398///
399/// Markdown/JSON render the group's `md_text`, so their output is identical to
400/// emitting a `Paragraph` — the structured runs are DocLang-only.
401pub fn inline_paragraph_node(md_text: String, runs: Vec<InlineRun>, unwrapped: bool) -> Node {
402 let single_plain = runs.len() <= 1 && runs.first().is_none_or(|r| r.is_plain());
403 if single_plain {
404 Node::Paragraph { text: md_text }
405 } else {
406 Node::InlineGroup {
407 unwrapped: unwrapped && runs.len() >= 2,
408 runs,
409 md_text,
410 }
411 }
412}
413
414/// One entry of a [`Node::FieldRegion`]: a marker/key/value triple, any of which
415/// may be absent. Mirrors docling's `field_item` with its `marker` / `field_key`
416/// / `field_value` child texts.
417#[derive(Debug, Clone, PartialEq, Default)]
418pub struct FieldItem {
419 pub marker: Option<String>,
420 pub key: Option<String>,
421 pub value: Option<String>,
422}
423
424/// One DocumentPictureClassifier prediction — docling-core's
425/// `PictureClassificationClass` (`class_name` + `confidence`).
426#[derive(Debug, Clone, PartialEq)]
427pub struct PictureClass {
428 /// e.g. `bar_chart`, `logo`, `signature` (the classifier's 26-label set).
429 pub class_name: String,
430 pub confidence: f32,
431}
432
433/// An extracted picture's raw encoded bytes plus its mimetype and pixel size —
434/// the docling.rs analogue of docling-core's `ImageRef`.
435#[derive(Debug, Clone, PartialEq)]
436pub struct PictureImage {
437 /// e.g. `image/png`, `image/jpeg`.
438 pub mimetype: String,
439 pub width: u32,
440 pub height: u32,
441 /// The image file bytes, exactly as embedded (PNG/JPEG/…).
442 pub data: Vec<u8>,
443}
444
445impl PictureImage {
446 /// A `data:` URI for the image (`data:<mimetype>;base64,<…>`).
447 pub fn data_uri(&self) -> String {
448 format!(
449 "data:{};base64,{}",
450 self.mimetype,
451 crate::base64::encode(&self.data)
452 )
453 }
454}
455
456/// One table cell as a first-class object (#240) — the Rust counterpart of
457/// docling's `TableCell`: its text, page geometry, grid rectangle and header
458/// roles. Produced by the PDF TableFormer paths from the predicted OTSL
459/// structure; `bbox` is `[l, t, r, b]` in page points with a top-left origin.
460#[derive(Debug, Clone, PartialEq)]
461pub struct TableCell {
462 pub text: String,
463 /// `[l, t, r, b]`, page points, top-left origin; `None` without geometry.
464 pub bbox: Option<[f32; 4]>,
465 /// Anchor grid position (0-based row/column offsets).
466 pub start_row: usize,
467 pub start_col: usize,
468 /// Span extents (≥ 1); the covered grid positions repeat the cell's text
469 /// in [`Table::rows`].
470 pub row_span: usize,
471 pub col_span: usize,
472 /// OTSL `ched` — a column-header cell.
473 pub column_header: bool,
474 /// OTSL `rhed` — a row-header cell.
475 pub row_header: bool,
476 /// OTSL `srow` — a section-row cell.
477 pub row_section: bool,
478}
479
480/// Where a picture's or table's caption text item hangs in the docling-JSON
481/// tree (#390). docling's backends do not agree, and the JSON structure is
482/// the only surface that shows it (Markdown, DocLang and LaTeX place a
483/// caption by its item, whatever its parent): the PDF pipeline parents a
484/// layout caption to the picture or table it belongs to, while every
485/// declarative backend creates the caption with `doc.add_text(label=CAPTION)`
486/// and no parent — the document body — even when the item itself sits in a
487/// group or under a section header (JATS, LaTeX, HTML, Markdown, EPUB,
488/// AsciiDoc all do). The office backends hang a chart's title caption off the
489/// chart's container (the sheet group, the slide, docx's current parent,
490/// docling#4190) — that is [`Node::Chart`]'s own path, not this choice. A
491/// backend that adds a new captioned item picks the variant matching
492/// upstream's `add_text` call for that format; the default is upstream's
493/// default.
494#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
495pub enum CaptionParent {
496 /// `#/body`, listed after the enclosing top-level item — docling's
497 /// `add_text` default, which every declarative backend leaves alone.
498 #[default]
499 Body,
500 /// The item's own container (its `parent`), listed ahead of the item:
501 /// the caption is created first, as docling's office backends do.
502 Container,
503 /// The item's own container, listed *after* the item: docling's HTML
504 /// backend adds a `<figure>`-wrapped table, then its `<figcaption>` under
505 /// `self.parents[self.level]` (docling#4050).
506 ContainerAfter,
507 /// The item itself — the caption is the picture's or table's first
508 /// child, as docling's PDF pipeline attaches a layout caption.
509 Item,
510}
511
512/// A simple row-major table. By default `rows[0]` is the header row; a
513/// [`TableStructure`] overlay overrides that and adds column spans.
514#[derive(Debug, Clone, PartialEq, Default)]
515pub struct Table {
516 pub rows: Vec<Vec<String>>,
517 /// Optional layout provenance: the four DocLang `<location>` values
518 /// (`x0,y0,x1,y1`, each already normalized to the 0–511 resolution) emitted
519 /// before the table's cells. Set only by backends with real geometry (e.g.
520 /// the spreadsheet backend, whose cell grid yields a bounding box); left
521 /// `None` by declarative backends, which have no coordinates.
522 pub location: Option<[u16; 4]>,
523 /// Optional OTSL structure overlay for backends that parse real table
524 /// geometry (USPTO CALS): explicit header-row count and horizontal-span
525 /// continuations. `None` → the default (row 0 is the header, no spans).
526 /// `rows` still carries the full text grid (span text replicated) for
527 /// Markdown/JSON; DocLang uses this overlay to emit `<ched/>`/`<lcel/>`.
528 pub structure: Option<TableStructure>,
529 /// Optional per-cell block content, parallel to `rows`. A *rich* cell (an
530 /// ODF cell holding a list, several paragraphs, or a nested table) carries
531 /// its DocLang blocks here; the DocLang serializer emits them after the
532 /// cell token instead of the flat `rows` text. Markdown/JSON ignore this
533 /// and render `rows`, so their output is unchanged. `None` (or an empty
534 /// `Vec` for a given cell) → the flat text is used everywhere.
535 pub cell_blocks: Option<Vec<Vec<Vec<Node>>>>,
536 /// Optional caption (docling's `TableItem.captions`): the JATS
537 /// `<table-wrap>` label+caption, an HTML `<caption>`, etc. Markdown renders
538 /// it as a text line *before* the grid; JSON emits a caption text item the
539 /// table references; DocLang emits a `<caption>` as the table's first child.
540 /// `None` → the table has no caption.
541 pub caption: Option<String>,
542 /// Where the caption item hangs in the JSON tree (#390); see
543 /// [`CaptionParent`]. Only the JSON export reads it.
544 pub caption_parent: CaptionParent,
545 /// Optional per-cell bounding boxes, same shape as [`Self::rows`]: `[l, t,
546 /// r, b]` in page points with a **top-left** origin (the PDF pipeline's
547 /// native space). Set by the ML pipeline's TableFormer paths — a spanned
548 /// cell repeats its anchor's box across the covered grid positions — and
549 /// First-class cells (#240): the authoritative per-cell records —
550 /// text, page geometry, spans and header roles — when the backend
551 /// produces them (the PDF TableFormer paths do; declarative backends
552 /// leave `None`). [`Self::rows`] stays the dense text grid every
553 /// serializer renders (a spanning cell's text is replicated across its
554 /// covered positions there); JSON serializes these cells verbatim when
555 /// present, and the DocLang structure overlay is derived from them.
556 pub cells: Option<Vec<TableCell>>,
557}
558
559impl Table {
560 /// A cell's text at a grid position, `None` outside the grid.
561 pub fn cell_text(&self, row: usize, col: usize) -> Option<&str> {
562 self.rows.get(row)?.get(col).map(String::as_str)
563 }
564
565 /// Replace the text at a grid position; `false` (and no change) outside
566 /// the grid. When a first-class cell covers the position, the whole
567 /// cell is updated: its record text and every grid position its span
568 /// covers, so the repair shows once in Markdown, not once per covered
569 /// column.
570 pub fn set_cell_text(&mut self, row: usize, col: usize, text: impl Into<String>) -> bool {
571 if self.rows.get(row).and_then(|r| r.get(col)).is_none() {
572 return false;
573 }
574 let text = text.into();
575 let covering = self.cells.as_mut().and_then(|cells| {
576 cells.iter_mut().find(|c| {
577 (c.start_row..c.start_row + c.row_span).contains(&row)
578 && (c.start_col..c.start_col + c.col_span).contains(&col)
579 })
580 });
581 if let Some(cell) = covering {
582 cell.text = text.clone();
583 let (r0, r1) = (cell.start_row, cell.start_row + cell.row_span);
584 let (c0, c1) = (cell.start_col, cell.start_col + cell.col_span);
585 for r in self.rows.iter_mut().take(r1).skip(r0) {
586 for slot in r.iter_mut().take(c1).skip(c0) {
587 *slot = text.clone();
588 }
589 }
590 } else {
591 self.rows[row][col] = text;
592 }
593 true
594 }
595
596 /// Derive first-class cells (#240) from the dense grid plus the
597 /// [`TableStructure`] overlay — how declarative tables (DOCX/XLSX merged
598 /// regions, HTML `th`/spans, ODF covered cells, USPTO CALS) get real
599 /// `TableCell` records without page geometry. Anchors are the positions
600 /// not marked as span continuations; extents scan the continuation grids
601 /// right/down (matching the DocLang `lcel`/`ucel` reading). Header roles
602 /// come from the per-cell `col_header`/`row_header` grids when present,
603 /// else the `header_row` band, else docling's declarative default (row 0
604 /// is the header). Without any overlay every position is a 1×1 cell.
605 pub fn derive_cells(&self) -> Vec<TableCell> {
606 let s = self.structure.as_ref();
607 let flag = |grid: Option<&Vec<Vec<bool>>>, r: usize, c: usize| {
608 grid.and_then(|g| g.get(r))
609 .and_then(|row| row.get(c))
610 .copied()
611 .unwrap_or(false)
612 };
613 let col_cont = |r: usize, c: usize| flag(s.map(|s| &s.col_continuation), r, c);
614 let row_cont = |r: usize, c: usize| flag(s.map(|s| &s.row_continuation), r, c);
615 let is_col_header = |r: usize, c: usize| match s {
616 Some(st) if !st.col_header.is_empty() => flag(Some(&st.col_header), r, c),
617 Some(st) if !st.header_row.is_empty() => st.header_row.get(r).copied().unwrap_or(false),
618 _ => r == 0,
619 };
620 let mut cells = Vec::new();
621 for (r, row) in self.rows.iter().enumerate() {
622 for (c, text) in row.iter().enumerate() {
623 if col_cont(r, c) || row_cont(r, c) {
624 continue; // covered by a span anchor
625 }
626 let mut col_span = 1;
627 while c + col_span < row.len() && col_cont(r, c + col_span) {
628 col_span += 1;
629 }
630 let mut row_span = 1;
631 while r + row_span < self.rows.len() && row_cont(r + row_span, c) {
632 row_span += 1;
633 }
634 cells.push(TableCell {
635 text: text.clone(),
636 bbox: None,
637 start_row: r,
638 start_col: c,
639 row_span,
640 col_span,
641 column_header: is_col_header(r, c),
642 row_header: flag(s.map(|s| &s.row_header), r, c),
643 row_section: false,
644 });
645 }
646 }
647 cells
648 }
649
650 /// The number of leading grid rows that form the column header —
651 /// docling-core's `_count_header_rows` (docling-core#723, 2.96) shared by
652 /// the Markdown serializer and the chunker's dataframe view: a row counts
653 /// only when a `column_header` cell *starts* on it (a header spanning
654 /// several rows is replicated into each row it covers, and counting those
655 /// would pull the data rows beneath it into the header block). Two
656 /// special cases: `1` when no cell carries the flag at all, so tables from
657 /// backends that never set it keep row 0 as the header; `0` when flags
658 /// exist but none starts on row 0 — then nothing is promotable and every
659 /// row stays in the body. Uses the first-class [`Self::cells`] when
660 /// present (the PDF pipeline's TableFormer flags), else the cells derived
661 /// from the structure overlay.
662 ///
663 /// A pivot table's row headers no longer disturb this: docling#4216 flags
664 /// a spanning `<th>` row as `row_header`, not `column_header`, so the
665 /// first data row is no longer folded into the header block and the
666 /// deviation this port carried for docling-core#765 is gone.
667 pub fn header_row_count(&self) -> usize {
668 if self.rows.is_empty() {
669 return 0;
670 }
671 let derived;
672 let cells: &[TableCell] = match &self.cells {
673 Some(c) if !c.is_empty() => c,
674 _ => {
675 derived = self.derive_cells();
676 &derived
677 }
678 };
679 if !cells.iter().any(|c| c.column_header) {
680 return 1;
681 }
682 (0..self.rows.len())
683 .take_while(|&r| cells.iter().any(|c| c.column_header && c.start_row == r))
684 .count()
685 }
686
687 /// The first-class cell covering a grid position, if any.
688 pub fn cell_at(&self, row: usize, col: usize) -> Option<&TableCell> {
689 self.cells.as_ref()?.iter().find(|c| {
690 (c.start_row..c.start_row + c.row_span).contains(&row)
691 && (c.start_col..c.start_col + c.col_span).contains(&col)
692 })
693 }
694
695 /// A cell's bounding box (`[l, t, r, b]`, page points, top-left origin);
696 /// `None` when no cell with geometry covers the position.
697 pub fn cell_bbox(&self, row: usize, col: usize) -> Option<[f32; 4]> {
698 self.cell_at(row, col)?.bbox
699 }
700
701 /// Set (or replace) the bounding box of the cell covering a grid
702 /// position; `false` outside the text grid. A table without first-class
703 /// cells materializes them first (one 1×1 cell per grid position, texts
704 /// from the grid), so declarative tables can be annotated too.
705 pub fn set_cell_bbox(&mut self, row: usize, col: usize, bbox: [f32; 4]) -> bool {
706 if self.rows.get(row).and_then(|r| r.get(col)).is_none() {
707 return false;
708 }
709 let rows = &self.rows;
710 let cells = self.cells.get_or_insert_with(|| {
711 rows.iter()
712 .enumerate()
713 .flat_map(|(r, cols)| {
714 cols.iter().enumerate().map(move |(c, text)| TableCell {
715 text: text.clone(),
716 bbox: None,
717 start_row: r,
718 start_col: c,
719 row_span: 1,
720 col_span: 1,
721 column_header: false,
722 row_header: false,
723 row_section: false,
724 })
725 })
726 .collect()
727 });
728 match cells.iter_mut().find(|c| {
729 (c.start_row..c.start_row + c.row_span).contains(&row)
730 && (c.start_col..c.start_col + c.col_span).contains(&col)
731 }) {
732 Some(cell) => {
733 cell.bbox = Some(bbox);
734 true
735 }
736 None => {
737 cells.push(TableCell {
738 text: self.rows[row][col].clone(),
739 bbox: Some(bbox),
740 start_row: row,
741 start_col: col,
742 row_span: 1,
743 col_span: 1,
744 column_header: false,
745 row_header: false,
746 row_section: false,
747 });
748 true
749 }
750 }
751 }
752
753 /// The anchor position of the cell whose box overlaps `bbox` best
754 /// (largest intersection-over-union), ties resolved in cell order.
755 /// `None` when nothing overlaps or the table carries no geometry. This
756 /// is the lookup half of the repair workflow: find the cell an external
757 /// OCR box refers to, then [`Self::set_cell_text`] it.
758 pub fn find_cell_by_bbox(&self, bbox: [f32; 4]) -> Option<(usize, usize)> {
759 let area = |b: &[f32; 4]| ((b[2] - b[0]) * (b[3] - b[1])).max(0.0);
760 let mut best: Option<(f32, (usize, usize))> = None;
761 for cell in self.cells.as_deref()?.iter() {
762 let Some(cb) = cell.bbox else { continue };
763 let iw = (bbox[2].min(cb[2]) - bbox[0].max(cb[0])).max(0.0);
764 let ih = (bbox[3].min(cb[3]) - bbox[1].max(cb[1])).max(0.0);
765 let inter = iw * ih;
766 if inter <= 0.0 {
767 continue;
768 }
769 let iou = inter / (area(&bbox) + area(&cb) - inter).max(f32::EPSILON);
770 if best.is_none_or(|(b, _)| iou > b) {
771 best = Some((iou, (cell.start_row, cell.start_col)));
772 }
773 }
774 best.map(|(_, pos)| pos)
775 }
776
777 /// Locate the cell overlapping `bbox` best and replace its text — the
778 /// one-call form of the OCR-repair loop. Returns the updated anchor.
779 pub fn update_cell_by_bbox(
780 &mut self,
781 bbox: [f32; 4],
782 text: impl Into<String>,
783 ) -> Option<(usize, usize)> {
784 let (row, col) = self.find_cell_by_bbox(bbox)?;
785 self.set_cell_text(row, col, text);
786 Some((row, col))
787 }
788}
789
790/// OTSL structure overlay for a [`Table`], parallel to [`Table::rows`].
791#[derive(Debug, Clone, PartialEq, Default)]
792pub struct TableStructure {
793 /// Per-row: `true` if the row's non-empty cells are column headers
794 /// (emitted as `<ched/>` rather than `<fcel/>`).
795 pub header_row: Vec<bool>,
796 /// Same shape as [`Table::rows`]; `true` where a cell continues a
797 /// horizontal span from its left neighbour (emitted as `<lcel/>`).
798 pub col_continuation: Vec<Vec<bool>>,
799 /// Same shape as [`Table::rows`]; `true` where a cell continues a
800 /// vertical span from the cell above (emitted as `<ucel/>`). Empty or all
801 /// `false` when the backend has no vertical spans (e.g. USPTO CALS).
802 pub row_continuation: Vec<Vec<bool>>,
803 /// Same shape as [`Table::rows`]; `true` where a non-empty cell is a row
804 /// header (emitted as `<rhed/>`) — a chart's category column. Empty when
805 /// the table has no row headers.
806 pub row_header: Vec<Vec<bool>>,
807 /// Same shape as [`Table::rows`]; `true` where a cell is a *column header*
808 /// cell (an HTML `<th>`). When non-empty this per-cell grid supersedes the
809 /// per-row [`Self::header_row`] for `<ched/>` emission, matching docling's
810 /// cell-level `column_header` flag; the chunker derives its header-row
811 /// count from it.
812 pub col_header: Vec<Vec<bool>>,
813}
814
815impl DoclingDocument {
816 /// Create an empty document with the given name.
817 pub fn new(name: impl Into<String>) -> Self {
818 Self {
819 name: name.into(),
820 nodes: Vec::new(),
821 strict_markdown: false,
822 compact_tables: false,
823 links: Vec::new(),
824 confidence: None,
825 }
826 }
827
828 /// Append a node.
829 /// The document's top-level tables in reading order — the read half of
830 /// the post-extraction table API (#238). [`Node::Located`] wrappers (the
831 /// PDF pipeline attaches layout provenance that way) are looked through;
832 /// tables nested inside rich table cells (`Table::cell_blocks`) are not
833 /// traversed.
834 pub fn tables(&self) -> impl Iterator<Item = &Table> {
835 fn unwrap_table(n: &Node) -> Option<&Table> {
836 match n {
837 Node::Table(t) => Some(t),
838 Node::Located { inner, .. } | Node::Prov { inner, .. } => unwrap_table(inner),
839 _ => None,
840 }
841 }
842 self.nodes.iter().filter_map(unwrap_table)
843 }
844
845 /// Mutable access to the document's top-level tables, for repair
846 /// workflows (#238): locate a cell via [`Table::find_cell_by_bbox`], fix
847 /// its text with [`Table::set_cell_text`], then re-export — every
848 /// serializer reads the same grid.
849 pub fn tables_mut(&mut self) -> impl Iterator<Item = &mut Table> {
850 fn unwrap_table(n: &mut Node) -> Option<&mut Table> {
851 match n {
852 Node::Table(t) => Some(t),
853 Node::Located { inner, .. } | Node::Prov { inner, .. } => unwrap_table(inner),
854 _ => None,
855 }
856 }
857 self.nodes.iter_mut().filter_map(unwrap_table)
858 }
859
860 pub fn push(&mut self, node: Node) {
861 self.nodes.push(node);
862 }
863
864 /// Convenience: append a heading.
865 pub fn add_heading(&mut self, level: u8, text: impl Into<String>) {
866 self.push(Node::Heading {
867 level,
868 text: text.into(),
869 });
870 }
871
872 /// Convenience: append a paragraph.
873 pub fn add_paragraph(&mut self, text: impl Into<String>) {
874 self.push(Node::Paragraph { text: text.into() });
875 }
876
877 /// Serialize the document to Markdown.
878 ///
879 /// The Rust equivalent of docling-core's
880 /// `DoclingDocument.export_to_markdown()`. Uses [`Self::strict_markdown`] to
881 /// pick between docling-legacy output (default) and the cleaner, more
882 /// conformant variant.
883 pub fn export_to_markdown(&self) -> String {
884 to_markdown(self, self.strict_markdown)
885 }
886
887 /// Serialize to Markdown, explicitly choosing the mode regardless of
888 /// [`Self::strict_markdown`]. `strict = true` produces cleaner, more
889 /// conformant Markdown (code-fence languages preserved, no inline-run
890 /// spacing artifacts); `strict = false` reproduces docling's legacy output.
891 pub fn export_to_markdown_with(&self, strict: bool) -> String {
892 to_markdown(self, strict)
893 }
894
895 /// Markdown for this document as the *content of a rich table cell*
896 /// (docling-core's `in_table_cell` serialization, docling-core#540):
897 /// headings render as plain text since Markdown tables can't hold them.
898 /// Backends build a sub-document per rich cell and flatten this into the
899 /// cell text; no trailing newline.
900 pub fn export_to_table_cell_markdown(&self) -> String {
901 crate::markdown::to_markdown_table_cell(self, self.strict_markdown)
902 }
903
904 /// Serialize to docling-core's native JSON wire format (`DoclingDocument`
905 /// schema), pretty-printed — the Rust equivalent of
906 /// `DoclingDocument.export_to_dict()` / `save_as_json()`. The output loads
907 /// back into Python docling-core and round-trips to the same Markdown.
908 pub fn export_to_json(&self) -> String {
909 serde_json::to_string_pretty(&self.export_to_json_value())
910 .expect("DoclingDocument JSON is always serializable")
911 }
912
913 /// The same JSON wire format as [`Self::export_to_json`], as a
914 /// `serde_json::Value` — for callers that append response-level extras
915 /// (docling-serve adds the confidence report, #183) before serializing.
916 pub fn export_to_json_value(&self) -> serde_json::Value {
917 crate::json::to_json(self)
918 }
919
920 /// Serialize to a complete LaTeX document — the Rust counterpart of
921 /// docling-core's `LaTeXDocSerializer` with default parameters (docling
922 /// 2.124's `--to latex`, #317). No trailing newline, like the upstream
923 /// CLI's `<stem>.tex`.
924 pub fn export_to_latex(&self) -> String {
925 crate::latex::to_latex(self)
926 }
927
928 /// Serialize to DocLang XML (`<doclang version="0.7">…`), the markup that
929 /// lives inside a `.dclx` archive — the Rust counterpart of docling-core's
930 /// `export_to_doclang()` with default parameters. No trailing newline; the
931 /// archive writer appends exactly one.
932 pub fn export_to_doclang(&self) -> String {
933 crate::doclang::export_to_doclang(&self.nodes)
934 }
935
936 /// Serialize to Markdown with an explicit picture [`ImageMode`] (mirrors
937 /// docling's `image_mode`). Returns the Markdown and, for
938 /// [`ImageMode::Referenced`], the `(relative-path, bytes)` of each image the
939 /// caller should write next to the Markdown file. `artifacts_dir` is the
940 /// directory name used in referenced links.
941 pub fn export_to_markdown_with_images(
942 &self,
943 image_mode: ImageMode,
944 artifacts_dir: &str,
945 ) -> (String, Vec<(String, Vec<u8>)>) {
946 to_markdown_images(self, self.strict_markdown, image_mode, artifacts_dir)
947 }
948}
949
950#[cfg(test)]
951mod table_api_tests {
952 use super::*;
953
954 fn cell(
955 text: &str,
956 bbox: [f32; 4],
957 (start_row, start_col): (usize, usize),
958 (row_span, col_span): (usize, usize),
959 ) -> TableCell {
960 TableCell {
961 text: text.into(),
962 bbox: Some(bbox),
963 start_row,
964 start_col,
965 row_span,
966 col_span,
967 column_header: false,
968 row_header: false,
969 row_section: false,
970 }
971 }
972
973 fn table() -> Table {
974 Table {
975 rows: vec![
976 vec!["Year".into(), "Ducks".into()],
977 vec!["2019".into(), "120".into()],
978 ],
979 cells: Some(vec![
980 cell("Year", [0.0, 0.0, 50.0, 10.0], (0, 0), (1, 1)),
981 cell("Ducks", [50.0, 0.0, 100.0, 10.0], (0, 1), (1, 1)),
982 cell("2019", [0.0, 10.0, 50.0, 20.0], (1, 0), (1, 1)),
983 cell("120", [50.0, 10.0, 100.0, 20.0], (1, 1), (1, 1)),
984 ]),
985 ..Default::default()
986 }
987 }
988
989 /// Declarative tables derive first-class cells from the structure
990 /// overlay: continuation grids become span extents, `col_header` (or the
991 /// row-0 fallback) becomes the header role — the XLSX/DOCX/HTML merge
992 /// path into real `TableCell`s (#240).
993 #[test]
994 fn derive_cells_reads_spans_and_headers_from_structure() {
995 let t = Table {
996 rows: vec![
997 vec!["Wide".into(), "Wide".into(), "C".into()],
998 vec!["a".into(), "b".into(), "c".into()],
999 ],
1000 structure: Some(TableStructure {
1001 header_row: vec![true, false],
1002 col_continuation: vec![vec![false, true, false], vec![false; 3]],
1003 row_continuation: vec![vec![false; 3], vec![false; 3]],
1004 row_header: Vec::new(),
1005 col_header: Vec::new(),
1006 }),
1007 ..Default::default()
1008 };
1009 let cells = t.derive_cells();
1010 assert_eq!(cells.len(), 5, "two anchors in row 0, three in row 1");
1011 let wide = &cells[0];
1012 assert_eq!((wide.col_span, wide.row_span), (2, 1));
1013 assert!(wide.column_header, "header_row band");
1014 assert!(cells.iter().skip(2).all(|c| !c.column_header));
1015
1016 // Without any overlay: every position 1x1, row 0 the header
1017 // (docling's declarative default — the old JSON synthesis).
1018 let plain = Table {
1019 rows: vec![vec!["h".into()], vec!["x".into()]],
1020 ..Default::default()
1021 };
1022 let cells = plain.derive_cells();
1023 assert_eq!(cells.len(), 2);
1024 assert!(cells[0].column_header && !cells[1].column_header);
1025 }
1026
1027 /// A spanning cell updates once: the record text and every covered grid
1028 /// position — a repair shows once in Markdown, not once per column.
1029 #[test]
1030 fn span_repair_updates_the_whole_cell() {
1031 let mut t = Table {
1032 rows: vec![
1033 vec!["Wide".into(), "Wide".into(), "C".into()],
1034 vec!["a".into(), "b".into(), "c".into()],
1035 ],
1036 cells: Some(vec![
1037 cell("Wide", [0.0, 0.0, 100.0, 10.0], (0, 0), (1, 2)),
1038 cell("C", [100.0, 0.0, 150.0, 10.0], (0, 2), (1, 1)),
1039 ]),
1040 ..Default::default()
1041 };
1042 // Update through the covered (non-anchor) position.
1043 assert!(t.set_cell_text(0, 1, "Fixed"));
1044 assert_eq!(
1045 t.rows[0],
1046 vec!["Fixed".to_string(), "Fixed".into(), "C".into()]
1047 );
1048 assert_eq!(t.cell_at(0, 1).unwrap().text, "Fixed");
1049 assert_eq!(t.cell_at(0, 1).unwrap().col_span, 2);
1050 }
1051
1052 /// The OCR-repair loop (#238): locate a cell by an external box (best
1053 /// IoU), replace its text, and see the fix in the export — the grid is
1054 /// the single source of truth for every serializer.
1055 #[test]
1056 fn bbox_lookup_and_repair_flow_into_exports() {
1057 let mut doc = DoclingDocument::new("t");
1058 doc.push(Node::Table(table()));
1059 assert_eq!(doc.tables().count(), 1);
1060
1061 let t = doc.tables_mut().next().unwrap();
1062 // A slightly-off OCR box still lands on the (1,1) cell.
1063 assert_eq!(t.find_cell_by_bbox([52.0, 11.0, 98.0, 19.0]), Some((1, 1)));
1064 assert_eq!(
1065 t.update_cell_by_bbox([52.0, 11.0, 98.0, 19.0], "125"),
1066 Some((1, 1))
1067 );
1068 assert_eq!(t.cell_text(1, 1), Some("125"));
1069 assert!(doc.export_to_markdown().contains("125"));
1070
1071 // No overlap → no match, nothing changed.
1072 let t = doc.tables_mut().next().unwrap();
1073 assert_eq!(t.find_cell_by_bbox([500.0, 500.0, 600.0, 600.0]), None);
1074 }
1075
1076 #[test]
1077 fn cell_accessors_bound_check_and_geometry_materializes() {
1078 let mut t = table();
1079 assert_eq!(t.cell_text(0, 0), Some("Year"));
1080 assert_eq!(t.cell_text(5, 0), None);
1081 assert!(!t.set_cell_text(0, 9, "x"), "outside the grid");
1082 assert_eq!(t.cell_bbox(1, 0), Some([0.0, 10.0, 50.0, 20.0]));
1083
1084 // A geometry-less table materializes its box grid on first set.
1085 let mut plain = Table {
1086 rows: vec![vec!["a".into(), "b".into()]],
1087 ..Default::default()
1088 };
1089 assert_eq!(plain.cell_bbox(0, 1), None);
1090 assert!(!plain.set_cell_bbox(0, 5, [0.0; 4]), "outside the grid");
1091 assert!(plain.set_cell_bbox(0, 1, [1.0, 2.0, 3.0, 4.0]));
1092 assert_eq!(plain.cell_bbox(0, 1), Some([1.0, 2.0, 3.0, 4.0]));
1093 assert_eq!(plain.find_cell_by_bbox([1.5, 2.5, 2.5, 3.5]), Some((0, 1)));
1094 }
1095}