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docling_pdf/
lib.rs

1//! PDF backend for docling.rs.
2//!
3//! A port of docling's standard PDF pipeline: pdfium extracts the text layer
4//! (cells with bounding boxes) and renders page images; a discriminative ONNX
5//! stack (layout detection, table structure, OCR) classifies regions; the cells
6//! are assembled in reading order into a [`DoclingDocument`].
7//!
8//! Current stages: pdfium text-cell extraction + page rendering ([`pdfium_backend`])
9//! and the deterministic text/reading-order assembly ([`assemble`]). The layout,
10//! table-structure and OCR ONNX stages land behind [`Pipeline`] next.
11
12mod assemble;
13mod dp_lines;
14pub mod enrich;
15pub mod layout;
16mod mets;
17mod ocr;
18pub mod pdfium_backend;
19mod reading_order;
20pub mod resample;
21pub mod tableformer;
22pub mod textparse;
23mod tf_match;
24pub mod timing;
25
26use std::collections::BTreeMap;
27use std::fmt;
28use std::sync::mpsc::{sync_channel, Receiver};
29use std::sync::{Arc, Mutex};
30
31use docling_core::{DoclingDocument, Node};
32
33pub use mets::{convert_mets_gbs, convert_mets_gbs_with_options};
34pub use pdfium_backend::{PdfDocument, PdfPage, TextCell};
35
36/// Errors from the PDF backend. Detailed and surfaced (never silently skipped).
37#[derive(Debug)]
38pub enum PdfError {
39    /// pdfium failed to bind, open, or read the document.
40    Pdfium(String),
41    /// The layout ONNX model failed to load or run.
42    Layout(String),
43    /// The OCR ONNX model failed to load or run.
44    Ocr(String),
45}
46
47impl fmt::Display for PdfError {
48    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
49        match self {
50            PdfError::Pdfium(m) => write!(f, "pdf: pdfium error: {m}"),
51            PdfError::Layout(m) => write!(f, "pdf: {m}"),
52            PdfError::Ocr(m) => write!(f, "pdf: {m}"),
53        }
54    }
55}
56
57impl std::error::Error for PdfError {}
58
59impl From<pdfium_render::prelude::PdfiumError> for PdfError {
60    fn from(e: pdfium_render::prelude::PdfiumError) -> Self {
61        PdfError::Pdfium(e.to_string())
62    }
63}
64
65/// Threads ONNX inference may use, capped by `DOCLING_RS_PDF_THREADS` if set.
66/// Defaults to the available parallelism (ort otherwise picks a low number).
67pub(crate) fn intra_threads() -> usize {
68    if let Some(n) = std::env::var("DOCLING_RS_PDF_THREADS")
69        .ok()
70        .and_then(|v| v.parse::<usize>().ok())
71        .filter(|&n| n > 0)
72    {
73        return n;
74    }
75    std::thread::available_parallelism()
76        .map(|n| n.get())
77        .unwrap_or(1)
78}
79
80/// True when `DOCLING_RS_FP32` (any value but `0`) forces the full-precision
81/// models even where an INT8 variant sits next to the fp32 default.
82pub(crate) fn fp32_forced() -> bool {
83    std::env::var("DOCLING_RS_FP32")
84        .map(|v| v != "0")
85        .unwrap_or(false)
86}
87
88/// Resolve a default (CWD-relative) asset path. If it doesn't exist relative
89/// to the current directory, try next to the executable and one level above
90/// it (following symlinks — the layout `scripts/install/install.sh` produces:
91/// `/usr/local/bin/docling-rs` → `/usr/local/docling.rs/bin/docling-rs`
92/// with `models/` and `.pdfium/` in `/usr/local/docling.rs`). Lets an
93/// installed binary run from any working directory with no env vars; explicit
94/// env overrides never reach this. Returns `rel` unchanged when nothing
95/// exists anywhere, so callers' error messages keep the familiar path.
96pub(crate) fn resolve_asset(rel: &str) -> String {
97    if std::path::Path::new(rel).exists() {
98        return rel.to_string();
99    }
100    if let Some(dir) = std::env::current_exe()
101        .ok()
102        .and_then(|p| p.canonicalize().ok())
103        .and_then(|p| p.parent().map(std::path::Path::to_path_buf))
104    {
105        for base in [Some(dir.as_path()), dir.parent()].into_iter().flatten() {
106            let p = base.join(rel);
107            if p.exists() {
108                return p.to_string_lossy().into_owned();
109            }
110        }
111    }
112    rel.to_string()
113}
114
115/// Resolve a model path: an explicit env override always wins; otherwise the
116/// INT8 variant of the default path when it exists on disk (the quantized
117/// models are conformance-validated — see PDF_CONFORMANCE.md — and load/run
118/// markedly faster on CPU), unless `DOCLING_RS_FP32` opts back into full
119/// precision; else the fp32 default.
120pub(crate) fn model_path(env: &str, fp32_default: &str, int8_default: &str) -> String {
121    if let Ok(p) = std::env::var(env) {
122        return p;
123    }
124    if !fp32_forced() {
125        let p = resolve_asset(int8_default);
126        if std::path::Path::new(&p).exists() {
127            return p;
128        }
129    }
130    resolve_asset(fp32_default)
131}
132
133/// One page's assembled output: typed nodes plus the page's hyperlinks, kept
134/// separate so pages processed out of order can be stitched back in page order.
135type PageOut = (Vec<Node>, Vec<(String, String)>);
136
137/// The pool-wide TableFormer slot: one instance shared by every worker, loaded
138/// lazily on the first table region any worker sees. Tables appear on a
139/// minority of pages, so per-worker copies mostly multiplied ~0.4 GB of
140/// weights+arenas by the pool size for nothing; a single shared instance keeps
141/// the peak flat regardless of pool width, and a table's structure prediction
142/// is independent of which worker runs it, so output is byte-identical. The
143/// mutex serialises concurrent tables — the shared instance is loaded with the
144/// full intra-op thread budget to compensate (one wide TableFormer instead of
145/// several narrow ones).
146enum TfSlot {
147    /// Not attempted yet (no table seen so far).
148    Unloaded,
149    /// Load attempted, graphs absent — geometric fallback (warned once).
150    Missing,
151    Ready(tableformer::TableFormer),
152}
153
154type SharedTables = Arc<Mutex<TfSlot>>;
155
156/// The same lazy shared-slot pattern for the (rarer still) enrichment models:
157/// one instance per pipeline, loaded on the first region that needs it.
158enum EnrichSlot<T> {
159    Unloaded,
160    /// Load attempted, model files absent — enrichment skipped (warned once).
161    Missing,
162    Ready(T),
163}
164
165type SharedClassifier = Arc<Mutex<EnrichSlot<enrich::PictureClassifier>>>;
166type SharedCodeFormula = Arc<Mutex<EnrichSlot<enrich::CodeFormula>>>;
167
168/// The opt-in enrichment passes, mirroring docling's `PdfPipelineOptions`
169/// flags (`do_picture_classification`, `do_code_enrichment`,
170/// `do_formula_enrichment`). All off by default.
171#[derive(Debug, Clone, Copy, Default, PartialEq, Eq)]
172pub struct EnrichmentOptions {
173    /// Classify each picture with DocumentFigureClassifier (26 classes).
174    pub picture_classification: bool,
175    /// Rewrite code blocks (and detect their language) with CodeFormulaV2.
176    pub code: bool,
177    /// Decode display formulas to LaTeX with CodeFormulaV2.
178    pub formula: bool,
179}
180
181impl EnrichmentOptions {
182    fn any(&self) -> bool {
183        self.picture_classification || self.code || self.formula
184    }
185}
186
187/// A self-contained set of the per-page models (layout, OCR). Each parallel
188/// page-worker owns its own `Worker` so inference runs concurrently without
189/// sharing an ONNX session (`ort`'s `Session::run` is `&mut self`); only the
190/// rarely-hit TableFormer is shared (see [`TfSlot`]).
191struct Worker {
192    /// `None` when `no_ocr` skips layout entirely — no model load, no inference.
193    layout: Option<layout::LayoutModel>,
194    ocr: Option<ocr::OcrModel>,
195    /// Shared TableFormer slot; `None` when `no_table_former`/`no_ocr` skip it.
196    tables: Option<SharedTables>,
197    /// Shared enrichment slots; `None` unless the corresponding flag is on.
198    classifier: Option<SharedClassifier>,
199    code_formula: Option<SharedCodeFormula>,
200    enrich: EnrichmentOptions,
201    /// Skip layout, OCR, and TableFormer; reconstruct text purely from the PDF's
202    /// embedded text layer. See [`Pipeline::no_ocr`].
203    no_ocr: bool,
204}
205
206impl Worker {
207    fn load(
208        intra: usize,
209        tables: Option<SharedTables>,
210        enrich_slots: (Option<SharedClassifier>, Option<SharedCodeFormula>),
211        enrich: EnrichmentOptions,
212        no_ocr: bool,
213    ) -> Result<Self, PdfError> {
214        Ok(Self {
215            layout: if no_ocr {
216                None
217            } else {
218                Some(layout::LayoutModel::load_with(intra).map_err(PdfError::Layout)?)
219            },
220            ocr: None,
221            tables,
222            classifier: enrich_slots.0,
223            code_formula: enrich_slots.1,
224            enrich,
225            no_ocr,
226        })
227    }
228
229    /// Run layout (+ OCR for cell-less pages) + TableFormer and assemble page `n`
230    /// into its nodes and links. Pure given the page (mutates only the worker's
231    /// lazily-loaded OCR model), so it is safe to run concurrently across pages.
232    fn process(&mut self, n: usize, page: &mut PdfPage) -> Result<PageOut, PdfError> {
233        if self.no_ocr {
234            // Fastest path: no layout/OCR/TableFormer inference at all. The PDF's
235            // embedded text cells (if any) become flat, line-grouped paragraphs in
236            // reading order via the same orphan-region machinery that normally
237            // rescues text the detector missed — here it rescues *all* of it.
238            // Pages with no embedded text layer (scanned/image-only) yield nothing;
239            // convert those without `no_ocr`.
240            let mut regions = Vec::new();
241            assemble::add_orphan_regions(&mut regions, &page.cells);
242            let table_rows = vec![None; regions.len()];
243            let enrich_out = vec![None; regions.len()];
244            return Ok(timing::timed("assemble_page", || {
245                assemble::assemble_page(page, regions, &table_rows, &enrich_out)
246            }));
247        }
248        let regions = timing::timed("layout.predict", || {
249            self.layout
250                .as_mut()
251                .expect("layout model loaded unless no_ocr")
252                .predict(&page.image, page.width, page.height)
253        })
254        .map_err(|e| PdfError::Layout(format!("page {}: {e}", n + 1)))?;
255        self.finish_page(n, page, regions)
256    }
257
258    /// Layout-detect a whole batch of pages with one inference call (issue #73),
259    /// then run each page's remaining stages (OCR / TableFormer / enrichment /
260    /// assembly) per page. Index-aligned with `items`; a layout failure fails
261    /// every page in the batch (they shared the one inference call).
262    fn process_batch(&mut self, items: &mut [(usize, PdfPage)]) -> Vec<Result<PageOut, PdfError>> {
263        if self.no_ocr {
264            // No layout model to batch — the text-layer-only path is per page.
265            return items
266                .iter_mut()
267                .map(|(n, page)| {
268                    let n = *n;
269                    self.process(n, page)
270                })
271                .collect();
272        }
273        let inputs: Vec<(&image::RgbImage, f32, f32)> = items
274            .iter()
275            .map(|(_, page)| (&page.image, page.width, page.height))
276            .collect();
277        let batched = timing::timed("layout.predict", || {
278            self.layout
279                .as_mut()
280                .expect("layout model loaded unless no_ocr")
281                .predict_batch(&inputs)
282        });
283        match batched {
284            Ok(all) => items
285                .iter_mut()
286                .zip(all)
287                .map(|((n, page), regions)| self.finish_page(*n, page, regions))
288                .collect(),
289            Err(e) => items
290                .iter()
291                .map(|(n, _)| Err(PdfError::Layout(format!("page {}: {e}", n + 1))))
292                .collect(),
293        }
294    }
295
296    /// Everything after layout detection: per-label confidence thresholds,
297    /// overlap resolution, orphan-text recovery, OCR for cell-less pages,
298    /// TableFormer, enrichment, and page assembly.
299    fn finish_page(
300        &mut self,
301        n: usize,
302        page: &mut PdfPage,
303        regions: Vec<layout::Region>,
304    ) -> Result<PageOut, PdfError> {
305        // docling's LayoutPostprocessor drops each detection below its label's
306        // confidence threshold (stricter than the 0.3 base the predictor keeps),
307        // before any overlap resolution. This removes the low-confidence tables /
308        // pictures / list-items that otherwise double-emit or mis-classify.
309        let mut regions = regions;
310        regions.retain(|r| r.score >= layout::label_threshold(r.label));
311        // Resolve overlapping detections once, before OCR.
312        let mut regions = assemble::resolve(regions);
313        // Emit text the detector missed as orphan text regions (docling parity).
314        assemble::add_orphan_regions(&mut regions, &page.cells);
315        // Drop phantom empty low-confidence picture boxes (docling parity).
316        assemble::drop_false_pictures(&mut regions, &page.cells, page.width, page.height);
317        // A regular region fully inside a surviving table/index/picture is that
318        // special's child (a cell / in-figure label), not a separate block —
319        // remove it so it isn't emitted twice (docling parity).
320        assemble::drop_contained_regulars(&mut regions);
321        // No text layer → recognise text from the page image via OCR.
322        if page.cells.is_empty() {
323            if self.ocr.is_none() {
324                self.ocr = Some(ocr::OcrModel::load().map_err(PdfError::Ocr)?);
325            }
326            let cells = timing::timed("ocr.page", || {
327                self.ocr
328                    .as_mut()
329                    .unwrap()
330                    .ocr_page(&page.image, &regions, page.scale)
331            })
332            .map_err(|e| PdfError::Ocr(format!("page {}: {e}", n + 1)))?;
333            page.cells = cells;
334        }
335        // TableFormer structure per table region (else geometric fallback). The
336        // shared slot is only locked (and lazily loaded) when the page actually
337        // has a table, so table-free documents never pay for TableFormer at all.
338        let mut table_rows: Vec<Option<Vec<Vec<String>>>> = vec![None; regions.len()];
339        if let Some(slot) = self.tables.as_ref() {
340            if regions.iter().any(|r| assemble::is_table_like(r.label)) {
341                timing::timed("tableformer", || {
342                    let mut guard = slot.lock().unwrap();
343                    if matches!(*guard, TfSlot::Unloaded) {
344                        // Full intra-op width: tables serialise on this mutex, so
345                        // the one instance gets the whole thread budget.
346                        *guard = match tableformer::TableFormer::load_with(intra_threads()) {
347                            Some(tf) => TfSlot::Ready(tf),
348                            None => TfSlot::Missing,
349                        };
350                    }
351                    if let TfSlot::Ready(tf) = &mut *guard {
352                        for (i, r) in regions.iter().enumerate() {
353                            if assemble::is_table_like(r.label) {
354                                table_rows[i] = tf.predict_table_rows(
355                                    &page.image,
356                                    [r.l, r.t, r.r, r.b],
357                                    &page.word_cells,
358                                );
359                            }
360                        }
361                    }
362                });
363            }
364        }
365        // Enrichment passes (opt-in): DocumentPictureClassifier over picture
366        // regions, CodeFormulaV2 over code/formula regions. Same shared-slot
367        // shape as TableFormer — one lazily-loaded instance per pipeline, only
368        // ever locked when a page actually has a matching region.
369        let mut enrich_out: Vec<Option<assemble::Enrichment>> = vec![None; regions.len()];
370        if let Some(slot) = self.classifier.as_ref() {
371            if regions.iter().any(|r| r.label == "picture") {
372                timing::timed("picture_classifier", || {
373                    let mut guard = slot.lock().unwrap();
374                    if matches!(*guard, EnrichSlot::Unloaded) {
375                        *guard = match enrich::PictureClassifier::load_with(intra_threads()) {
376                            Some(m) => EnrichSlot::Ready(m),
377                            None => EnrichSlot::Missing,
378                        };
379                    }
380                    if let EnrichSlot::Ready(model) = &mut *guard {
381                        for (i, r) in regions.iter().enumerate() {
382                            if r.label != "picture" {
383                                continue;
384                            }
385                            let Some(crop) = assemble::crop_region_scaled(
386                                page,
387                                [r.l, r.t, r.r, r.b],
388                                enrich::CLASSIFIER_SCALE,
389                            ) else {
390                                continue;
391                            };
392                            match model.classify(&crop) {
393                                Ok(classes) => {
394                                    enrich_out[i] =
395                                        Some(assemble::Enrichment::PictureClasses(classes));
396                                }
397                                Err(e) => eprintln!("docling-pdf: page {}: {e}", n + 1),
398                            }
399                        }
400                    }
401                });
402            }
403        }
404        if let Some(slot) = self.code_formula.as_ref() {
405            let wants = |label: &str| {
406                (label == "code" && self.enrich.code) || (label == "formula" && self.enrich.formula)
407            };
408            if regions.iter().any(|r| wants(r.label)) {
409                timing::timed("code_formula", || {
410                    let mut guard = slot.lock().unwrap();
411                    if matches!(*guard, EnrichSlot::Unloaded) {
412                        *guard = match enrich::CodeFormula::load_with(intra_threads()) {
413                            Some(m) => EnrichSlot::Ready(m),
414                            None => EnrichSlot::Missing,
415                        };
416                    }
417                    if let EnrichSlot::Ready(model) = &mut *guard {
418                        for (i, r) in regions.iter().enumerate() {
419                            if !wants(r.label) {
420                                continue;
421                            }
422                            // docling crops the postprocessed cluster box — the
423                            // union of the region's text cells, not the raw
424                            // detector box — expanded by 18% per side, at
425                            // ~120 dpi.
426                            let [bl, bt, br, bb] = assemble::region_cell_bbox(r, &page.cells)
427                                .unwrap_or([r.l, r.t, r.r, r.b]);
428                            let (w, h) = (br - bl, bb - bt);
429                            let ex = enrich::CODE_FORMULA_EXPANSION;
430                            let bbox = [bl - w * ex, bt - h * ex, br + w * ex, bb + h * ex];
431                            let Some(crop) = assemble::crop_region_scaled(
432                                page,
433                                bbox,
434                                enrich::CODE_FORMULA_SCALE,
435                            ) else {
436                                continue;
437                            };
438                            let kind = if r.label == "code" {
439                                enrich::CodeFormulaKind::Code
440                            } else {
441                                enrich::CodeFormulaKind::Formula
442                            };
443                            match model.predict(&crop, kind) {
444                                Ok(text) => {
445                                    enrich_out[i] = Some(match kind {
446                                        enrich::CodeFormulaKind::Code => {
447                                            let (code, language) =
448                                                enrich::extract_code_language(&text);
449                                            assemble::Enrichment::Code {
450                                                language,
451                                                text: code,
452                                            }
453                                        }
454                                        enrich::CodeFormulaKind::Formula => {
455                                            assemble::Enrichment::Formula { latex: text }
456                                        }
457                                    });
458                                }
459                                Err(e) => eprintln!("docling-pdf: page {}: {e}", n + 1),
460                            }
461                        }
462                    }
463                });
464            }
465        }
466        Ok(timing::timed("assemble_page", || {
467            assemble::assemble_page(page, regions, &table_rows, &enrich_out)
468        }))
469    }
470}
471
472/// Per-worker ONNX intra-op threads. The layout model is memory-bandwidth bound,
473/// so on a typical machine two threads per worker (sharing one in-cache copy of
474/// the weights) extracts more throughput than one fat model or many single-thread
475/// workers. `DOCLING_RS_PDF_INTRA` overrides for per-machine tuning.
476fn pdf_intra() -> usize {
477    if let Some(n) = std::env::var("DOCLING_RS_PDF_INTRA")
478        .ok()
479        .and_then(|v| v.parse::<usize>().ok())
480        .filter(|&n| n > 0)
481    {
482        return n;
483    }
484    if intra_threads() >= 2 {
485        2
486    } else {
487        1
488    }
489}
490
491/// How many page-workers to spin up for a multi-page PDF. `DOCLING_RS_PDF_WORKERS`
492/// overrides; otherwise size the pool so `workers × intra ≈ cores`, capped at 4 so
493/// a worst-case pool holds a bounded amount of model memory (~0.4 GB per worker)
494/// and does not oversaturate the memory bus with model-weight traffic.
495fn pdf_worker_count() -> usize {
496    if let Some(n) = std::env::var("DOCLING_RS_PDF_WORKERS")
497        .ok()
498        .and_then(|v| v.parse::<usize>().ok())
499        .filter(|&n| n > 0)
500    {
501        return n;
502    }
503    (intra_threads() / pdf_intra()).clamp(1, 4)
504}
505
506/// Max pages a worker layout-detects with one batched inference call (issue
507/// #73). Workers drain the work channel opportunistically up to this size —
508/// whatever is already rendered gets batched, so batching never *waits* for
509/// pages and adds no latency when rendering is the bottleneck.
510///
511/// Default: 4 on 8+ cores, 1 (per-page) below. Measured on a 4-core box the
512/// batch only adds cache pressure and costs pipeline overlap (2 workers × 2
513/// threads: 8.1 s/conv at batch=1 vs 9.3 s at batch=4 on the 9-page
514/// 2206.01062 fixture); the single-session amortization it buys needs the
515/// wider thread budget of a many-core machine. Output is bit-identical at
516/// every batch size, so this is purely a throughput knob.
517/// `DOCLING_RS_PDF_LAYOUT_BATCH` overrides; `1` restores per-page inference.
518fn pdf_layout_batch() -> usize {
519    std::env::var("DOCLING_RS_PDF_LAYOUT_BATCH")
520        .ok()
521        .and_then(|v| v.parse::<usize>().ok())
522        .filter(|&n| n > 0)
523        .unwrap_or_else(|| if intra_threads() >= 8 { 4 } else { 1 })
524}
525
526/// Minimum page count before a PDF is worth the parallel worker pool. Below this,
527/// the serial primary (running its model on every core) is faster than fanning out
528/// — the helper pool's one-time model-load cost only pays off once enough pages
529/// share it. `DOCLING_RS_PDF_PARALLEL_MIN` overrides.
530fn pdf_parallel_min() -> usize {
531    std::env::var("DOCLING_RS_PDF_PARALLEL_MIN")
532        .ok()
533        .and_then(|v| v.parse::<usize>().ok())
534        .filter(|&n| n > 0)
535        .unwrap_or(6)
536}
537
538/// A reusable PDF pipeline. The **primary** worker runs its models on every core,
539/// so a single-page / small / image / METS input is converted at full intra-op
540/// speed with no pool to load. A document with enough pages instead fans out
541/// across a **pool** of narrower workers processed concurrently. Both load lazily
542/// and are cached for reuse, so a one-shot conversion only pays for what it uses.
543pub struct Pipeline {
544    /// Full-intra worker for the serial path; loaded on first serial use.
545    primary: Option<Worker>,
546    /// Narrower workers (≈cores/`target_workers` threads each) for the parallel
547    /// path; loaded on first multi-page use and cached.
548    pool: Vec<Worker>,
549    /// The single TableFormer instance every worker shares (see [`TfSlot`]).
550    tables: SharedTables,
551    /// The shared enrichment-model slots (same pattern as [`TfSlot`]).
552    classifier: SharedClassifier,
553    code_formula: SharedCodeFormula,
554    /// Desired pool size for multi-page documents.
555    target_workers: usize,
556    /// Page count at/above which the parallel pool is worth its load cost.
557    parallel_min: usize,
558    /// Skip loading/running TableFormer; table regions fall back to geometric
559    /// reconstruction. See [`Pipeline::no_table_former`].
560    no_table_former: bool,
561    /// Skip layout, OCR, and TableFormer entirely. See [`Pipeline::no_ocr`].
562    no_ocr: bool,
563    /// Opt-in enrichment passes. See [`Pipeline::enrichments`].
564    enrich: EnrichmentOptions,
565}
566
567impl Pipeline {
568    /// Construct the pipeline. Models load lazily on first use (full-intra primary
569    /// for serial inputs, the helper pool for multi-page PDFs), so nothing is
570    /// loaded that a given document doesn't need.
571    pub fn new() -> Result<Self, PdfError> {
572        Ok(Self {
573            primary: None,
574            pool: Vec::new(),
575            tables: Arc::new(Mutex::new(TfSlot::Unloaded)),
576            classifier: Arc::new(Mutex::new(EnrichSlot::Unloaded)),
577            code_formula: Arc::new(Mutex::new(EnrichSlot::Unloaded)),
578            target_workers: pdf_worker_count(),
579            parallel_min: pdf_parallel_min(),
580            no_table_former: false,
581            no_ocr: false,
582            enrich: EnrichmentOptions::default(),
583        })
584    }
585
586    /// Enable the opt-in enrichment passes (docling's
587    /// `do_picture_classification` / `do_code_enrichment` /
588    /// `do_formula_enrichment`). Each enabled pass lazily loads its model on
589    /// the first matching region; a missing model warns once and is skipped.
590    /// Set before the first conversion (no effect on already-loaded workers).
591    pub fn enrichments(mut self, opts: EnrichmentOptions) -> Self {
592        self.enrich = opts;
593        self
594    }
595
596    /// Skip loading and running the TableFormer table-structure model. Table
597    /// regions still get emitted, but reconstructed geometrically from cell
598    /// positions instead of via the ONNX model's predicted structure — faster
599    /// (no model load, no per-table inference) at the cost of table fidelity.
600    /// No effect if a worker is already loaded; set this before the first
601    /// conversion.
602    pub fn no_table_former(mut self, disable: bool) -> Self {
603        self.no_table_former = disable;
604        self
605    }
606
607    /// Skip layout detection, OCR, and TableFormer entirely — no model load, no
608    /// inference of any kind. The PDF's embedded text cells are grouped by line
609    /// and emitted as plain paragraphs in reading order: no headings, lists,
610    /// tables, code blocks, or pictures, since that structure comes from the
611    /// layout model. The fastest possible PDF path, but pages with no embedded
612    /// text layer (scanned/image-only PDFs) yield no text at all — convert those
613    /// without this flag. Implies `no_table_former`. No effect if a worker is
614    /// already loaded; set this before the first conversion.
615    pub fn no_ocr(mut self, disable: bool) -> Self {
616        self.no_ocr = disable;
617        self
618    }
619
620    /// The shared TableFormer slot handed to each worker, or `None` when the
621    /// pipeline options skip TableFormer entirely.
622    fn tables_slot(&self) -> Option<SharedTables> {
623        if self.no_table_former || self.no_ocr {
624            None
625        } else {
626            Some(Arc::clone(&self.tables))
627        }
628    }
629
630    /// The shared enrichment slots for a worker (`None` per model unless its
631    /// flag is on; `no_ocr` skips layout, so there are no regions to enrich).
632    fn enrich_slots(&self) -> (Option<SharedClassifier>, Option<SharedCodeFormula>) {
633        if self.no_ocr || !self.enrich.any() {
634            return (None, None);
635        }
636        (
637            self.enrich
638                .picture_classification
639                .then(|| Arc::clone(&self.classifier)),
640            (self.enrich.code || self.enrich.formula).then(|| Arc::clone(&self.code_formula)),
641        )
642    }
643
644    /// Eagerly load the models (the full-intra serial worker: layout + OCR, and
645    /// the shared TableFormer unless disabled) so the first conversion doesn't pay
646    /// the load cost. Idempotent; respects `no_ocr` / `no_table_former` (with
647    /// `no_ocr` there is nothing to load). The docling.rs analogue of docling's
648    /// `DocumentConverter.initialize_pipeline`.
649    pub fn warm_up(&mut self) -> Result<(), PdfError> {
650        self.primary()?;
651        Ok(())
652    }
653
654    /// The full-intra serial worker, loaded on first use.
655    fn primary(&mut self) -> Result<&mut Worker, PdfError> {
656        if self.primary.is_none() {
657            self.primary = Some(Worker::load(
658                intra_threads(),
659                self.tables_slot(),
660                self.enrich_slots(),
661                self.enrich,
662                self.no_ocr,
663            )?);
664        }
665        Ok(self.primary.as_mut().unwrap())
666    }
667
668    /// Convert a PDF (bytes) to a [`DoclingDocument`]. A document with fewer than
669    /// `parallel_min` pages (or a pool size of 1) streams through the full-intra
670    /// primary; a larger one renders on this thread (pdfium is not thread-safe) and
671    /// fans the pages out across the worker pool, reassembled in page order so the
672    /// output is byte-identical to the serial path.
673    pub fn convert(
674        &mut self,
675        bytes: &[u8],
676        password: Option<&str>,
677        name: &str,
678    ) -> Result<DoclingDocument, PdfError> {
679        let pages = pdfium_backend::page_count(bytes, password)?;
680        let doc = if self.target_workers >= 2 && pages >= self.parallel_min {
681            self.convert_parallel(bytes, password, name)?
682        } else {
683            self.convert_serial(bytes, password, name)?
684        };
685        timing::report();
686        Ok(doc)
687    }
688
689    /// Stream pages one at a time through the primary worker — render → process →
690    /// drop — so the document holds ~one page bitmap (~5 MB) at a time.
691    fn convert_serial(
692        &mut self,
693        bytes: &[u8],
694        password: Option<&str>,
695        name: &str,
696    ) -> Result<DoclingDocument, PdfError> {
697        let mut doc = DoclingDocument::new(name);
698        let render_image = !self.no_ocr;
699        let worker = self.primary()?;
700        pdfium_backend::for_each_page(bytes, password, render_image, |n, _total, mut page| {
701            let (nodes, links) = worker.process(n, &mut page)?;
702            doc.nodes.extend(nodes);
703            doc.links.extend(links);
704            Ok::<(), PdfError>(())
705        })?;
706        assemble::merge_continuations(&mut doc.nodes);
707        Ok(doc)
708    }
709
710    /// Render pages serially on this thread (pdfium) and process them in parallel
711    /// across the worker pool. A bounded channel applies backpressure so only a
712    /// handful of page bitmaps are resident at once; results carry their page
713    /// index and are reassembled in order, so the output is byte-identical to the
714    /// serial path.
715    fn convert_parallel(
716        &mut self,
717        bytes: &[u8],
718        password: Option<&str>,
719        name: &str,
720    ) -> Result<DoclingDocument, PdfError> {
721        self.ensure_pool()?;
722        let n_workers = self.pool.len();
723        let render_image = !self.no_ocr;
724        let layout_batch = pdf_layout_batch();
725        // Bound sized so every worker can accumulate a full layout batch while
726        // rendering stays ahead (and never below the pre-#73 render-ahead of
727        // two pages per worker); still a hard cap on resident page bitmaps.
728        let (work_tx, work_rx) = sync_channel::<(usize, PdfPage)>(n_workers * layout_batch.max(2));
729        let work_rx: Arc<Mutex<Receiver<(usize, PdfPage)>>> = Arc::new(Mutex::new(work_rx));
730        let results: Arc<Mutex<Vec<(usize, PageOut)>>> = Arc::new(Mutex::new(Vec::new()));
731        let first_err: Arc<Mutex<Option<PdfError>>> = Arc::new(Mutex::new(None));
732
733        // Move the pool into the scope so each worker gets an exclusive `&mut`.
734        let mut workers = std::mem::take(&mut self.pool);
735        std::thread::scope(|s| {
736            for worker in workers.iter_mut() {
737                let work_rx = Arc::clone(&work_rx);
738                let results = Arc::clone(&results);
739                let first_err = Arc::clone(&first_err);
740                s.spawn(move || loop {
741                    // Hold the receiver lock only for the recv (plus a non-blocking
742                    // drain up to the layout batch size); release before the (long)
743                    // per-page work so other workers can pull concurrently.
744                    let mut batch = Vec::new();
745                    {
746                        let rx = work_rx.lock().unwrap();
747                        match rx.recv() {
748                            Ok(item) => {
749                                batch.push(item);
750                                while batch.len() < layout_batch {
751                                    match rx.try_recv() {
752                                        Ok(item) => batch.push(item),
753                                        Err(_) => break,
754                                    }
755                                }
756                            }
757                            Err(_) => break,
758                        }
759                    }
760                    let outs = worker.process_batch(&mut batch);
761                    for ((idx, _), out) in batch.iter().zip(outs) {
762                        match out {
763                            Ok(out) => results.lock().unwrap().push((*idx, out)),
764                            Err(e) => {
765                                let mut slot = first_err.lock().unwrap();
766                                if slot.is_none() {
767                                    *slot = Some(e);
768                                }
769                            }
770                        }
771                    }
772                });
773            }
774            // Render on this thread and feed the workers; backpressure blocks here
775            // when the channel is full. Dropping `work_tx` afterwards signals the
776            // workers (recv → Err) to finish.
777            let render =
778                pdfium_backend::for_each_page(bytes, password, render_image, |i, _total, page| {
779                    work_tx
780                        .send((i, page))
781                        .map_err(|_| PdfError::Pdfium("page-worker channel closed".into()))
782                });
783            drop(work_tx);
784            if let Err(e) = render {
785                let mut slot = first_err.lock().unwrap();
786                if slot.is_none() {
787                    *slot = Some(e);
788                }
789            }
790        });
791        // Threads have joined; restore the pool for the next conversion.
792        self.pool = workers;
793
794        if let Some(e) = first_err.lock().unwrap().take() {
795            return Err(e);
796        }
797        let mut results = Arc::try_unwrap(results)
798            .unwrap_or_else(|arc| Mutex::new(arc.lock().unwrap().clone()))
799            .into_inner()
800            .unwrap();
801        results.sort_by_key(|(idx, _)| *idx);
802        let mut doc = DoclingDocument::new(name);
803        for (_, (nodes, links)) in results {
804            doc.nodes.extend(nodes);
805            doc.links.extend(links);
806        }
807        assemble::merge_continuations(&mut doc.nodes);
808        Ok(doc)
809    }
810
811    /// Convert a PDF in **streaming** mode: `emit` is called with each finalized,
812    /// in-document-order batch of nodes (and that span's recovered links) as pages
813    /// complete, so a caller can serialize Markdown page by page instead of waiting
814    /// for the whole document. The batches are exactly the buffered [`convert`]'s
815    /// nodes, split at safe block boundaries by [`assemble::StreamAssembler`] — the
816    /// parallel path reorders pages back into document order before emitting, so
817    /// the output is identical regardless of worker scheduling.
818    ///
819    /// `emit` runs on the calling thread (never a worker), so it needn't be `Send`
820    /// and its backpressure throttles the whole pipeline. Returning `Err` from
821    /// `emit` aborts the conversion with that error.
822    pub fn convert_streaming<F>(
823        &mut self,
824        bytes: &[u8],
825        password: Option<&str>,
826        name: &str,
827        emit: F,
828    ) -> Result<(), PdfError>
829    where
830        F: FnMut(Vec<Node>, Vec<(String, String)>) -> Result<(), PdfError>,
831    {
832        let _ = name; // page nodes carry no name; the caller owns the document name.
833        let pages = pdfium_backend::page_count(bytes, password)?;
834        let r = if self.target_workers >= 2 && pages >= self.parallel_min {
835            self.convert_streaming_parallel(bytes, password, emit)
836        } else {
837            self.convert_streaming_serial(bytes, password, emit)
838        };
839        timing::report();
840        r
841    }
842
843    /// Serial streaming: render → process → emit, one page at a time, holding back
844    /// only the tail that might still merge into the next page.
845    fn convert_streaming_serial<F>(
846        &mut self,
847        bytes: &[u8],
848        password: Option<&str>,
849        mut emit: F,
850    ) -> Result<(), PdfError>
851    where
852        F: FnMut(Vec<Node>, Vec<(String, String)>) -> Result<(), PdfError>,
853    {
854        let mut asm = assemble::StreamAssembler::new();
855        let render_image = !self.no_ocr;
856        let worker = self.primary()?;
857        pdfium_backend::for_each_page(bytes, password, render_image, |n, _total, mut page| {
858            let (nodes, links) = worker.process(n, &mut page)?;
859            emit(asm.push(nodes), links)
860        })?;
861        emit(asm.finish(), Vec::new())
862    }
863
864    /// Parallel streaming: pages render serially on a dedicated thread (pdfium is
865    /// not thread-safe) and process across the worker pool; results carry their
866    /// page index and are reordered on the calling thread into a
867    /// [`assemble::StreamAssembler`], which emits each page in document order as
868    /// soon as its predecessors have arrived. Bounded channels keep only a handful
869    /// of pages resident and let `emit`'s backpressure reach the renderer.
870    fn convert_streaming_parallel<F>(
871        &mut self,
872        bytes: &[u8],
873        password: Option<&str>,
874        mut emit: F,
875    ) -> Result<(), PdfError>
876    where
877        F: FnMut(Vec<Node>, Vec<(String, String)>) -> Result<(), PdfError>,
878    {
879        self.ensure_pool()?;
880        let n_workers = self.pool.len();
881        let render_image = !self.no_ocr;
882        let layout_batch = pdf_layout_batch();
883        // Bound sized so every worker can accumulate a full layout batch while
884        // rendering stays ahead (and never below the pre-#73 render-ahead of
885        // two pages per worker); still a hard cap on resident page bitmaps.
886        let (work_tx, work_rx) = sync_channel::<(usize, PdfPage)>(n_workers * layout_batch.max(2));
887        let work_rx: Arc<Mutex<Receiver<(usize, PdfPage)>>> = Arc::new(Mutex::new(work_rx));
888        // Workers and the renderer report here; the calling thread drains it in
889        // page order. Bounded so workers block (bounding resident bitmaps) when the
890        // consumer falls behind.
891        let (res_tx, res_rx) = sync_channel::<Result<(usize, PageOut), PdfError>>(n_workers * 2);
892
893        let mut workers = std::mem::take(&mut self.pool);
894        let mut asm = assemble::StreamAssembler::new();
895        let mut first_err: Option<PdfError> = None;
896
897        std::thread::scope(|s| {
898            // Workers: pull a batch of pages (whatever is already rendered, up
899            // to the layout batch size), process it, report (index-tagged)
900            // results.
901            for worker in workers.iter_mut() {
902                let work_rx = Arc::clone(&work_rx);
903                let res_tx = res_tx.clone();
904                s.spawn(move || 'outer: loop {
905                    let mut batch = Vec::new();
906                    {
907                        let rx = work_rx.lock().unwrap();
908                        match rx.recv() {
909                            Ok(item) => {
910                                batch.push(item);
911                                while batch.len() < layout_batch {
912                                    match rx.try_recv() {
913                                        Ok(item) => batch.push(item),
914                                        Err(_) => break,
915                                    }
916                                }
917                            }
918                            Err(_) => break,
919                        }
920                    }
921                    let outs = worker.process_batch(&mut batch);
922                    for ((idx, _), out) in batch.iter().zip(outs) {
923                        if res_tx.send(out.map(|o| (*idx, o))).is_err() {
924                            break 'outer; // consumer gone
925                        }
926                    }
927                });
928            }
929            // Renderer: feed pages to the pool on its own thread (pdfium stays on a
930            // single thread); report a render error through the same channel.
931            {
932                let res_tx = res_tx.clone();
933                s.spawn(move || {
934                    let render = pdfium_backend::for_each_page(
935                        bytes,
936                        password,
937                        render_image,
938                        |i, _total, page| {
939                            work_tx
940                                .send((i, page))
941                                .map_err(|_| PdfError::Pdfium("page-worker channel closed".into()))
942                        },
943                    );
944                    drop(work_tx); // signal workers to finish
945                    if let Err(e) = render {
946                        let _ = res_tx.send(Err(e));
947                    }
948                });
949            }
950            // Drop our own sender so the channel closes once the threads finish.
951            drop(res_tx);
952
953            // Collector (this thread): reorder into document order and emit.
954            let mut buffer: BTreeMap<usize, PageOut> = BTreeMap::new();
955            let mut next = 0usize;
956            for msg in res_rx.iter() {
957                match msg {
958                    Err(e) => {
959                        if first_err.is_none() {
960                            first_err = Some(e);
961                        }
962                    }
963                    Ok((idx, out)) => {
964                        buffer.insert(idx, out);
965                        if first_err.is_some() {
966                            continue; // keep draining so the threads can exit
967                        }
968                        while let Some((nodes, links)) = buffer.remove(&next) {
969                            if let Err(e) = emit(asm.push(nodes), links) {
970                                first_err = Some(e);
971                                break;
972                            }
973                            next += 1;
974                        }
975                    }
976                }
977            }
978        });
979        // Threads have joined; restore the pool for the next conversion.
980        self.pool = workers;
981
982        if let Some(e) = first_err {
983            return Err(e);
984        }
985        emit(asm.finish(), Vec::new())
986    }
987
988    /// Lazily grow the pool to `target_workers`, loading the new workers
989    /// concurrently (model load is mostly I/O + mmap, so N loads overlap to roughly
990    /// one load's wall-time). Cached for reuse across documents.
991    fn ensure_pool(&mut self) -> Result<(), PdfError> {
992        let need = self.target_workers.saturating_sub(self.pool.len());
993        if need == 0 {
994            return Ok(());
995        }
996        let intra = pdf_intra();
997        let no_ocr = self.no_ocr;
998        let enrich = self.enrich;
999        let tables = self.tables_slot();
1000        let enrich_slots = self.enrich_slots();
1001        let loaded: Vec<Result<Worker, PdfError>> = std::thread::scope(|s| {
1002            let handles: Vec<_> = (0..need)
1003                .map(|_| {
1004                    let tables = tables.clone();
1005                    let enrich_slots = enrich_slots.clone();
1006                    s.spawn(move || Worker::load(intra, tables, enrich_slots, enrich, no_ocr))
1007                })
1008                .collect();
1009            handles.into_iter().map(|h| h.join().unwrap()).collect()
1010        });
1011        for w in loaded {
1012            self.pool.push(w?);
1013        }
1014        Ok(())
1015    }
1016
1017    /// Convert a standalone image (PNG/JPEG/TIFF/WebP/…) as a single page —
1018    /// docling routes images through the same layout+OCR pipeline as a PDF page.
1019    pub fn convert_image(&mut self, bytes: &[u8], name: &str) -> Result<DoclingDocument, PdfError> {
1020        let image = image::load_from_memory(bytes)
1021            .map_err(|e| PdfError::Pdfium(format!("image: {e}")))?
1022            .into_rgb8();
1023        let (w, h) = image.dimensions();
1024        // The image is its own page rendered at 1 px per "point" (scale 1.0); a
1025        // standalone image has no text layer, so OCR supplies the cells.
1026        let page = PdfPage {
1027            width: w as f32,
1028            height: h as f32,
1029            scale: 1.0,
1030            cells: Vec::new(),
1031            code_cells: Vec::new(),
1032            word_cells: Vec::new(),
1033            image,
1034            links: Vec::new(),
1035        };
1036        self.process_pages(vec![page], name)
1037    }
1038
1039    /// Run layout (+ OCR for cell-less pages) and assemble each already-rendered
1040    /// page (image / METS inputs, which are small and already materialised).
1041    fn process_pages(
1042        &mut self,
1043        mut pages: Vec<PdfPage>,
1044        name: &str,
1045    ) -> Result<DoclingDocument, PdfError> {
1046        let mut doc = DoclingDocument::new(name);
1047        let worker = self.primary()?;
1048        for (n, page) in pages.iter_mut().enumerate() {
1049            let (nodes, links) = worker.process(n, page)?;
1050            doc.nodes.extend(nodes);
1051            doc.links.extend(links);
1052        }
1053        assemble::merge_continuations(&mut doc.nodes);
1054        Ok(doc)
1055    }
1056}
1057
1058/// Convenience one-shot conversion (loads the pipeline per call). Errors are
1059/// detailed and surfaced (never silently skipped).
1060pub fn convert(
1061    bytes: &[u8],
1062    password: Option<&str>,
1063    name: &str,
1064) -> Result<DoclingDocument, PdfError> {
1065    convert_with_options(
1066        bytes,
1067        password,
1068        name,
1069        false,
1070        false,
1071        EnrichmentOptions::default(),
1072    )
1073}
1074
1075/// Like [`convert`], but optionally skips loading/running TableFormer (see
1076/// [`Pipeline::no_table_former`]) and/or layout+OCR+TableFormer entirely (see
1077/// [`Pipeline::no_ocr`]), and/or enables the enrichment passes (see
1078/// [`Pipeline::enrichments`]).
1079pub fn convert_with_options(
1080    bytes: &[u8],
1081    password: Option<&str>,
1082    name: &str,
1083    no_table_former: bool,
1084    no_ocr: bool,
1085    enrich: EnrichmentOptions,
1086) -> Result<DoclingDocument, PdfError> {
1087    Pipeline::new()?
1088        .no_table_former(no_table_former)
1089        .no_ocr(no_ocr)
1090        .enrichments(enrich)
1091        .convert(bytes, password, name)
1092}
1093
1094/// Convenience one-shot image conversion (loads the pipeline per call).
1095pub fn convert_image(bytes: &[u8], name: &str) -> Result<DoclingDocument, PdfError> {
1096    convert_image_with_options(bytes, name, false, false, EnrichmentOptions::default())
1097}
1098
1099/// Like [`convert_image`], but optionally skips loading/running TableFormer (see
1100/// [`Pipeline::no_table_former`]) and/or layout+OCR+TableFormer entirely (see
1101/// [`Pipeline::no_ocr`]), and/or enables the enrichment passes.
1102pub fn convert_image_with_options(
1103    bytes: &[u8],
1104    name: &str,
1105    no_table_former: bool,
1106    no_ocr: bool,
1107    enrich: EnrichmentOptions,
1108) -> Result<DoclingDocument, PdfError> {
1109    Pipeline::new()?
1110        .no_table_former(no_table_former)
1111        .no_ocr(no_ocr)
1112        .enrichments(enrich)
1113        .convert_image(bytes, name)
1114}
1115
1116/// Convert pre-segmented pages (image + already-known text cells, e.g. METS/hOCR
1117/// scans) through the shared layout + assembly pipeline.
1118pub fn convert_pages(pages: Vec<PdfPage>, name: &str) -> Result<DoclingDocument, PdfError> {
1119    convert_pages_with_options(pages, name, false, false, EnrichmentOptions::default())
1120}
1121
1122/// Like [`convert_pages`], but optionally skips loading/running TableFormer (see
1123/// [`Pipeline::no_table_former`]) and/or layout+OCR+TableFormer entirely (see
1124/// [`Pipeline::no_ocr`]), and/or enables the enrichment passes.
1125pub fn convert_pages_with_options(
1126    pages: Vec<PdfPage>,
1127    name: &str,
1128    no_table_former: bool,
1129    no_ocr: bool,
1130    enrich: EnrichmentOptions,
1131) -> Result<DoclingDocument, PdfError> {
1132    Pipeline::new()?
1133        .no_table_former(no_table_former)
1134        .no_ocr(no_ocr)
1135        .enrichments(enrich)
1136        .process_pages(pages, name)
1137}
1138
1139#[cfg(test)]
1140mod send_check {
1141    /// The Node bindings (`docling-node`) run a shared [`super::Pipeline`] on
1142    /// libuv worker threads (`Arc<Mutex<Pipeline>>`), which is only sound while
1143    /// `Pipeline: Send` holds — this fails to compile if a non-`Send` field
1144    /// (e.g. an `Rc` or a raw pdfium handle) ever lands in the pipeline.
1145    fn assert_send<T: Send>() {}
1146
1147    #[test]
1148    fn pipeline_is_send() {
1149        assert_send::<super::Pipeline>();
1150    }
1151}