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ifc_lite_processing/symbolic/
mod.rs

1// This Source Code Form is subject to the terms of the Mozilla Public
2// License, v. 2.0. If a copy of the MPL was not distributed with this
3// file, You can obtain one at https://mozilla.org/MPL/2.0/.
4
5//! Canonical 2D symbol extraction shared between the HTTP server and the
6//! browser-side WASM bindings (issue #843 follow-up — full parity work).
7//!
8//! Walks an IFC once, extracts every symbolic primitive the renderer
9//! understands (polylines, circles, texts, fill areas, grid axes +
10//! bubbles), and returns pure-Rust serializable types. The browser path
11//! in `rust/wasm-bindings/src/api/symbolic.rs` wraps the result into its
12//! `wasm_bindgen` collection at the FFI boundary; the server path
13//! serializes the same data structures directly via serde.
14//!
15//! Primitive coverage matches the wasm pipeline that ships to production:
16//!
17//! - `IfcPolyline`, `IfcIndexedPolyCurve` → [`SymbolicPolyline`].
18//! - `IfcCircle` → [`SymbolicCircle`] (full circle).
19//! - `IfcEllipse` → [`SymbolicPolyline`] (64-segment tessellation).
20//! - `IfcTrimmedCurve` on `IfcCircle` → [`SymbolicPolyline`] (arc with
21//!   `PLANEANGLEUNIT` scaling, sense agreement, wrap-around). Near-
22//!   collinear arcs (large radius, small sagitta) collapse to a line.
23//! - `IfcCompositeCurve` → recurses into segments.
24//! - `IfcGeometricSet` / `IfcGeometricCurveSet` → recurses into elements.
25//! - `IfcMappedItem` → recurses into the mapped representation with
26//!   `MappingOrigin` + `MappingTarget` transform composition.
27//! - `IfcTextLiteral` / `IfcTextLiteralWithExtent` → [`SymbolicText`]
28//!   with placement composition, `BoxAlignment`, glyph cap height
29//!   derived from the extent box, colour via `IfcStyledItem` →
30//!   `IfcTextStyle`.
31//! - `IfcAnnotationFillArea` → [`SymbolicFillArea`] with outer ring,
32//!   optional hole rings, colour via `IfcStyledItem` → `IfcFillAreaStyle`.
33//! - `IfcGrid` → [`SymbolicPolyline`] (axis lines) + two [`SymbolicText`]
34//!   bubbles per axis end (outline glyph + tag text).
35//!
36//! Coordinate handling matches the wasm pipeline:
37//!
38//! - Per-product `ObjectPlacement` is resolved through the
39//!   `IfcLocalPlacement` chain; symbolic uses a 2D
40//!   translation-plus-rotation accumulation that intentionally diverges
41//!   from the 3D geometry router so floor-plan annotations aren't
42//!   distorted by parent rotations.
43//! - Per-representation `ContextOfItems.WorldCoordinateSystem` is
44//!   composed in when present (Plan reps occasionally use a different
45//!   WCS than Body).
46//! - RTC offset is auto-detected from the first geometry-bearing
47//!   element and subtracted alongside the mesh pipeline.
48//! - The whole RTC offset is subtracted — easting and northing into the
49//!   plan pair (whose Y axis is flipped to match the renderer's section-cut
50//!   handedness), elevation into `world_y`. `rebase::RenderFrameRebase` is
51//!   the single place that conversion happens.
52//!
53//! Style resolution:
54//!
55//! - A reverse index from styled-representation-item id to concrete
56//!   style refs is built up-front in O(n), unwrapping the deprecated
57//!   `IfcPresentationStyleAssignment` so downstream resolvers don't
58//!   need to know about it.
59//! - Text colour walks `IfcTextStyle.TextCharacterAppearance` →
60//!   `IfcTextStyleForDefinedFont.Colour` → `IfcColourRgb`.
61//! - Fill colour walks `IfcFillAreaStyle.FillStyles` → first
62//!   `IfcColourRgb`; hatching / tile fills are recognised but use a
63//!   default fill colour.
64
65
66use output_cap::SymbolicAccumulator;
67use rebase::RenderFrameRebase;
68use ifc_lite_core::{build_entity_index, EntityDecoder, EntityScanner, IfcType};
69
70mod color;
71mod fill;
72mod grid;
73mod item_walk;
74mod items;
75mod output_cap;
76#[cfg(test)]
77mod items_cycle_tests;
78#[cfg(test)]
79mod output_cap_tests;
80mod primitives;
81mod rebase;
82mod text;
83mod transform;
84mod trimmed_curve;
85
86pub use output_cap::{SymbolicTruncation, SymbolicTruncationReason};
87pub use primitives::{
88    SymbolicCircle, SymbolicData, SymbolicFillArea, SymbolicGridAxis, SymbolicPolyline, SymbolicText,
89};
90
91use color::build_styled_item_index;
92use grid::extract_grid;
93use item_walk::extract_symbolic_item;
94use transform::{compose_transforms, parse_axis2_placement_2d, resolve_object_placement, Transform2D};
95
96// ────────────────────────────────────────────────────────────────────────────
97// Top-level extraction. Mirror of the wasm `parse_symbolic_representations`
98// scanner loop. Both paths feed the same `extract_*` helpers below so the
99// server and browser produce bit-identical symbol streams.
100// ────────────────────────────────────────────────────────────────────────────
101
102/// Scan an IFC file for `IfcGrid` and any product carrying a Plan /
103/// Annotation / FootPrint / Axis representation, and return the full
104/// symbolic primitive collection. Pure-Rust (no `wasm_bindgen`), so it
105/// works inside the HTTP server.
106pub fn extract_symbolic_data<T>(content: &T) -> SymbolicData
107where
108    T: AsRef<[u8]> + ?Sized,
109{
110    let mut out = SymbolicAccumulator::new();
111    extract_symbolic_data_into(content, &mut out);
112    out.into_data()
113}
114
115/// The extraction itself, writing into a caller-supplied accumulator.
116///
117/// Split out so a test can supply an accumulator with a small injected cap
118/// and exercise the real path, instead of building a fixture that emits two
119/// million primitives to reach `MAX_SYMBOLIC_ELEMENTS`. Production has exactly
120/// one caller, above, which supplies the real cap via `Default`.
121fn extract_symbolic_data_into<T>(content: &T, out: &mut SymbolicAccumulator)
122where
123    T: AsRef<[u8]> + ?Sized,
124{
125    let content = content.as_ref();
126    let entity_index = build_entity_index(content);
127    let mut decoder = EntityDecoder::with_index(content, entity_index);
128
129    // Reuse the geometry router for both unit-scale and the RTC offset.
130    // Not drained: meshes nothing. Pinned by rust/geometry/tests/issue_3821_auxiliary_routers_mesh_nothing.rs.
131    let router = ifc_lite_geometry::GeometryRouter::with_units(content, &mut decoder);
132    let unit_scale = router.unit_scale() as f32;
133
134    // RTC offset detection matches the wasm path so the symbolic stream
135    // aligns with the mesh stream. The threshold (>10 km) is empirical —
136    // anything smaller is local-coord territory where RTC subtraction
137    // would shift things off-screen.
138    let rtc_offset = router.detect_rtc_offset_from_first_element(content, &mut decoder);
139    let rebase = RenderFrameRebase::from_rtc_offset(rtc_offset);
140
141    // Pre-pass: build a reverse index from "styled representation-item id"
142    // to "list of style refs". Walked once at parse start (O(n)) so per-
143    // item colour lookup is O(1) later. See `resolve_color_via_styles()`
144    // for the chain (deprecated IfcPresentationStyleAssignment unwrap +
145    // IfcFillAreaStyle → IfcColourRgb).
146    let styled_items = build_styled_item_index(content, &mut decoder);
147
148    let mut scanner = EntityScanner::new(content);
149
150    while let Some((id, type_name, start, end)) = scanner.next_entity() {
151        // Stop the SCAN, not just the innermost item loop. Breaking only the
152        // inner loop still decodes every remaining product, resolves its
153        // placements and composes its transforms, which is not the "stop" this
154        // bound claims. Bounded by file size rather than by the fan-out, so it
155        // was never the DoS lever -- but it is work with a known-useless
156        // result.
157        if out.is_exhausted() {
158            break;
159        }
160        let is_grid = type_name == "IFCGRID";
161        if !is_grid && !ifc_lite_core::has_geometry_by_name(type_name) {
162            // IfcGrid isn't in `has_geometry_by_name` (it's not a building
163            // element) but carries axis curves that we render as symbolic
164            // lines + bubbles + tags.
165            continue;
166        }
167        let Ok(entity) = decoder.decode_at_with_id(id, start, end) else {
168            continue;
169        };
170
171        if is_grid {
172            let grid_transform = resolve_object_placement(&entity, &mut decoder, unit_scale);
173            extract_grid(
174                &entity,
175                id,
176                &mut decoder,
177                unit_scale,
178                &grid_transform,
179                rebase,
180                out,
181            );
182            continue;
183        }
184
185        // Standard representation walk: IfcProductDefinitionShape → Plan /
186        // Annotation / FootPrint / Axis IfcShapeRepresentation → items.
187        let Some(representation_attr) = entity.get(6) else {
188            continue;
189        };
190        if representation_attr.is_null() {
191            continue;
192        }
193        let Ok(Some(representation)) = decoder.resolve_ref(representation_attr) else {
194            continue;
195        };
196        let Some(reps_attr) = representation.get(2) else {
197            continue;
198        };
199        let Ok(representations) = decoder.resolve_ref_list(reps_attr) else {
200            continue;
201        };
202
203        let ifc_type_name = entity.ifc_type.name().to_string();
204
205        for shape_rep in representations {
206            if shape_rep.ifc_type != IfcType::IfcShapeRepresentation {
207                continue;
208            }
209            let rep_identifier = shape_rep
210                .get(1)
211                .and_then(|a| a.as_string())
212                .unwrap_or("")
213                .to_string();
214            if !matches!(
215                rep_identifier.as_str(),
216                "Plan" | "Annotation" | "FootPrint" | "Axis"
217            ) {
218                continue;
219            }
220
221            // ObjectPlacement transform for this entity (translations
222            // accumulated directly, rotations accumulated to orient symbols).
223            let placement_transform = resolve_object_placement(&entity, &mut decoder, unit_scale);
224
225            // ContextOfItems WCS: some Plan reps use a different coord
226            // system than Body. Compose it in when present and non-trivial.
227            // `ContextOfItems` (IfcRepresentation attr 0) and
228            // `WorldCoordinateSystem` (IfcGeometricRepresentationContext
229            // attr 4) are both MANDATORY, so a dangling ref or absent
230            // attribute is malformed data, not a legitimate default —
231            // `unresolved()` per #2352's convention. A resolved
232            // `IfcGeometricRepresentationSubContext`, in contrast, derives
233            // its WCS from `ParentContext` and legitimately does not store
234            // one inline, so it alone stays `identity()`.
235            let context_transform = match shape_rep.get_ref(0) {
236                Some(context_ref) => match decoder.decode_by_id(context_ref) {
237                    Ok(context) if context.ifc_type == IfcType::IfcGeometricRepresentationContext => {
238                        match context.get_ref(4) {
239                            Some(wcs_ref) => match decoder.decode_by_id(wcs_ref) {
240                                Ok(wcs) => parse_axis2_placement_2d(&wcs, &mut decoder, unit_scale),
241                                Err(_) => Transform2D::unresolved(),
242                            },
243                            None => Transform2D::unresolved(),
244                        }
245                    }
246                    // SubContext inherits WCS from ParentContext — legitimately
247                    // has none inline (the wasm pipeline does the same).
248                    Ok(context) if context.ifc_type == IfcType::IfcGeometricRepresentationSubContext => {
249                        Transform2D::identity()
250                    }
251                    // Dangling context_ref, or a ref resolving to neither
252                    // Context nor SubContext: malformed data.
253                    _ => Transform2D::unresolved(),
254                },
255                None => Transform2D::unresolved(),
256            };
257            let combined_transform = if context_transform.tx.abs() > 0.001
258                || context_transform.ty.abs() > 0.001
259                || context_transform.tz.abs() > 0.001
260                || (context_transform.m00 - 1.0).abs() > 0.0001
261                || context_transform.m01.abs() > 0.0001
262                || context_transform.m10.abs() > 0.0001
263                || (context_transform.m11 - 1.0).abs() > 0.0001
264                || context_transform.tz.is_nan()
265            {
266                compose_transforms(&context_transform, &placement_transform)
267            } else {
268                placement_transform
269            };
270
271            let Some(items_attr) = shape_rep.get(3) else {
272                continue;
273            };
274            let Ok(items) = decoder.resolve_ref_list(items_attr) else {
275                continue;
276            };
277            for item in items {
278                if out.is_exhausted() {
279                    break;
280                }
281                extract_symbolic_item(
282                    &item,
283                    &mut decoder,
284                    id,
285                    &ifc_type_name,
286                    &rep_identifier,
287                    unit_scale,
288                    &combined_transform,
289                    rebase,
290                    &styled_items,
291                    out,
292                );
293            }
294        }
295    }
296
297}