ifc_model/model.rs
1//! The entity graph — storage, lookup, and nothing else.
2//!
3//! # What this type deliberately does NOT do
4//!
5//! `Model` has no idea what a cost item, a task, a wall, or a material is. It
6//! stores entities and answers structural questions about them. Every domain
7//! meaning lives in a separate crate that borrows a `&Model` and interprets it.
8//!
9//! That is not a stylistic preference, it is what makes two things possible:
10//!
11//! 1. **Thin builds.** An app that only reads geometry compiles no cost,
12//! schedule, or structural code, because those crates are optional features
13//! rather than parts of the model.
14//! 2. **Lossless round-trips of data we do not understand.** Since the model
15//! stores entities structurally, a cost entity survives parse and re-export
16//! byte-for-byte in content even when `ifc-cost` is not compiled in. If the
17//! model instead held a `CostItem` struct, dropping the feature would drop
18//! the data.
19//!
20//! The rule to preserve: **no `if type_name == "IFCWALL"` in this crate.**
21
22use std::ops::Range;
23use std::sync::Arc;
24
25use crate::diagnostic::Diagnostic;
26use crate::entity::Entity;
27use crate::header::Header;
28use crate::lazy::{EntitySource, Slot};
29use crate::value::EntityId;
30use ahash::AHashMap;
31
32/// A parsed IFC file: header, entities, and indices over them.
33#[derive(Debug, Clone, Default)]
34pub struct Model {
35 header: Header,
36 /// Entities keyed by their in-file id, so `#42` survives a round-trip.
37 /// A slot holds its entity decoded, or the span `source` decodes it from
38 /// on first access (see [`EntitySource`]).
39 entities: AHashMap<EntityId, Slot>,
40 /// Insertion order, so a re-export preserves the original file order
41 /// instead of hash order. Diffing two exports is otherwise unreadable.
42 order: Vec<EntityId>,
43 /// Type name to entity ids. Built during insertion because "every
44 /// IfcWall" is the most common query in any consumer.
45 by_type: AHashMap<String, Vec<EntityId>>,
46 max_id: u64,
47 /// Bumped by every structural change. A transaction opened against one
48 /// revision refuses to commit against another, so an editor working from
49 /// a stale view is told rather than silently overwriting.
50 ///
51 /// Not a content hash: two different edit sequences can reach the same
52 /// bytes and still get different revisions. It answers "did anything
53 /// change", which is the question optimistic concurrency asks.
54 revision: u64,
55 /// Non-fatal findings from the read that produced this model. Empty
56 /// unless a codec recovered from damaged input.
57 diagnostics: Vec<Diagnostic>,
58 /// Decodes lazily registered entities; `None` for a model built only
59 /// from decoded entities. Shared by clones.
60 source: Option<Arc<dyn EntitySource>>,
61}
62
63impl Model {
64 /// An empty model.
65 pub fn new() -> Self {
66 Self::default()
67 }
68
69 /// An empty model whose entities a codec registers with
70 /// [`Model::insert_lazy`] and `source` decodes on first access.
71 pub fn with_source(source: Arc<dyn EntitySource>) -> Self {
72 Self {
73 source: Some(source),
74 ..Self::default()
75 }
76 }
77
78 /// The file header (schema declaration, description, author).
79 pub fn header(&self) -> &Header {
80 &self.header
81 }
82
83 /// Mutable access to the header, for writers and editors.
84 pub fn header_mut(&mut self) -> &mut Header {
85 &mut self.header
86 }
87
88 /// Non-fatal problems reported by the codec that read this model.
89 ///
90 /// Empty for a clean file. A non-empty slice means the model is
91 /// incomplete relative to its source: the codec recovered from damage and
92 /// each entry says exactly what was dropped, so a consumer can surface
93 /// "loaded, 1 record skipped" instead of pretending the read was lossless.
94 pub fn diagnostics(&self) -> &[Diagnostic] {
95 &self.diagnostics
96 }
97
98 /// Whether the read that produced this model dropped anything.
99 pub fn is_complete(&self) -> bool {
100 self.diagnostics.is_empty()
101 }
102
103 /// Attaches a codec diagnostic. Called by codecs during a recovered read.
104 pub fn push_diagnostic(&mut self, diagnostic: Diagnostic) {
105 self.diagnostics.push(diagnostic);
106 }
107
108 /// Insert an entity under a specific id, replacing any previous occupant.
109 ///
110 /// Codecs use this to preserve file ids exactly.
111 pub fn insert(&mut self, id: EntityId, entity: Entity) {
112 #[cfg(feature = "authored-dump")]
113 crate::authored_dump::record(&entity.type_name, "insert");
114 let type_name = std::sync::Arc::clone(&entity.type_name);
115 self.place(id, &type_name, Slot::decoded(entity));
116 }
117
118 /// Register the entity stored at `span` of this model's source under
119 /// `id`, without decoding it; it is decoded on first access. Replaces
120 /// any previous occupant exactly as [`Model::insert`] does.
121 ///
122 /// `type_name` must be the type the span decodes to, which lets
123 /// [`Model::ids_of_type`] answer without decoding. Only a codec that
124 /// validated the span may register it (see [`EntitySource`]).
125 ///
126 /// # Panics
127 ///
128 /// When the model has no source ([`Model::with_source`]).
129 pub fn insert_lazy(&mut self, id: EntityId, type_name: &str, span: Range<usize>) {
130 assert!(
131 self.source.is_some(),
132 "insert_lazy needs a model built with Model::with_source"
133 );
134 #[cfg(feature = "authored-dump")]
135 crate::authored_dump::record(type_name, "insert");
136 self.place(id, type_name, Slot::lazy(span));
137 }
138
139 /// Reserve room for `additional` more entities; a codec that knows the
140 /// record count up front avoids regrowing the storage while it loads.
141 pub fn reserve(&mut self, additional: usize) {
142 self.entities.reserve(additional);
143 self.order.reserve(additional);
144 }
145
146 /// The shared tail of [`Model::insert`] and [`Model::insert_lazy`].
147 fn place(&mut self, id: EntityId, type_name: &str, slot: Slot) {
148 // Type names are ASCII upper case in practice, so the key is
149 // usually `type_name` itself and nothing is allocated per entity.
150 let upper;
151 let key = if type_name.bytes().any(|byte| byte.is_ascii_lowercase()) {
152 upper = type_name.to_ascii_uppercase();
153 upper.as_str()
154 } else {
155 type_name
156 };
157 match self.entities.insert(id, slot) {
158 None => self.order.push(id),
159 // Replacing an occupant: drop its old type-index entry, otherwise
160 // `ids_of_type` reports the id twice for the same type, or keeps
161 // reporting it under a type the entity no longer has. Both make an
162 // edit layer silently wrong.
163 Some(previous) => {
164 let previous = previous.into_entity(self.source.as_deref());
165 let previous_key = previous.type_name.to_ascii_uppercase();
166 if previous_key != key {
167 if let Some(ids) = self.by_type.get_mut(&previous_key) {
168 ids.retain(|existing| *existing != id);
169 }
170 } else {
171 // Same type: the entry is still correct, so re-adding it
172 // below would duplicate it.
173 self.max_id = self.max_id.max(id.0);
174 self.revision += 1;
175 return;
176 }
177 }
178 }
179 match self.by_type.get_mut(key) {
180 Some(ids) => ids.push(id),
181 None => {
182 self.by_type.insert(key.to_owned(), vec![id]);
183 }
184 }
185 self.max_id = self.max_id.max(id.0);
186 self.revision += 1;
187 }
188
189 /// Append an entity, allocating the next free id.
190 pub fn push(&mut self, entity: Entity) -> EntityId {
191 let id = EntityId(self.max_id + 1);
192 self.insert(id, entity);
193 id
194 }
195
196 /// How many structural changes this model has seen.
197 ///
198 /// Starts at zero and increases; the absolute value carries no meaning
199 /// beyond comparison. See [`Transaction`](crate::Transaction).
200 pub fn revision(&self) -> u64 {
201 self.revision
202 }
203
204 /// Record a structural change made through a sibling mutation module.
205 pub(crate) fn bump_revision(&mut self) {
206 self.revision += 1;
207 }
208
209 /// The id [`Model::push`] would allocate next.
210 ///
211 /// A transaction reserves ids from here so several creates in one batch
212 /// cannot collide with each other or with existing entities.
213 pub fn next_id(&self) -> EntityId {
214 EntityId(self.max_id + 1)
215 }
216
217 /// Look up one entity, decoding it first if it was loaded lazily.
218 pub fn get(&self, id: EntityId) -> Option<&Entity> {
219 self.entities
220 .get(&id)
221 .map(|slot| slot.get(self.source.as_deref()))
222 }
223
224 /// Whether `id` names an entity, without decoding it.
225 pub fn contains(&self, id: EntityId) -> bool {
226 self.entities.contains_key(&id)
227 }
228
229 /// How many entities have been decoded. Equals [`Model::len`] for a
230 /// model built from decoded entities; for a lazily loaded one it counts
231 /// the entities accessed so far.
232 pub fn decoded_len(&self) -> usize {
233 self.entities
234 .values()
235 .filter(|slot| slot.is_decoded())
236 .count()
237 }
238
239 /// Decode every entity now, on up to `threads` threads.
240 ///
241 /// A lazily loaded model decodes on first access, one entity at a time.
242 /// A consumer about to touch most of the model -- a writer, a full
243 /// validation, a geometry pass -- can decode everything up front in
244 /// parallel instead. Idempotent, and a no-op on a decoded model.
245 pub fn decode_all(&self, threads: usize) {
246 let pending: Vec<&Slot> = self
247 .entities
248 .values()
249 .filter(|slot| !slot.is_decoded())
250 .collect();
251 if pending.is_empty() {
252 return;
253 }
254 let source = self.source.as_deref();
255 let threads = threads.clamp(1, pending.len());
256 if threads == 1 {
257 for slot in pending {
258 slot.get(source);
259 }
260 return;
261 }
262 let chunk = pending.len().div_ceil(threads);
263 std::thread::scope(|scope| {
264 for part in pending.chunks(chunk) {
265 scope.spawn(move || {
266 for slot in part {
267 slot.get(source);
268 }
269 });
270 }
271 });
272 }
273
274 /// Number of entities.
275 pub fn len(&self) -> usize {
276 self.entities.len()
277 }
278
279 /// Whether the model holds no entities.
280 pub fn is_empty(&self) -> bool {
281 self.entities.is_empty()
282 }
283
284 /// Entity ids in original file order.
285 pub fn ids(&self) -> impl Iterator<Item = EntityId> + '_ {
286 self.order.iter().copied()
287 }
288
289 /// Entities in original file order.
290 pub fn iter(&self) -> impl Iterator<Item = (EntityId, &Entity)> + '_ {
291 self.order
292 .iter()
293 .filter_map(move |id| self.get(*id).map(|e| (*id, e)))
294 }
295
296 /// Ids of every entity with this exact type name, case-insensitive.
297 ///
298 /// This is an exact-type query and does **not** include subtypes: asking
299 /// for `IfcElement` will not return walls. Subtype queries need the schema,
300 /// which this crate does not depend on. The facade's
301 /// `ifc::ids_of_type_including_subtypes` (feature `schema`) joins the two.
302 pub fn ids_of_type(&self, type_name: &str) -> &[EntityId] {
303 self.by_type
304 .get(&type_name.to_ascii_uppercase())
305 .map(|v| v.as_slice())
306 .unwrap_or(&[])
307 }
308
309 /// Entities with this exact type name.
310 pub fn of_type<'a>(&'a self, type_name: &str) -> impl Iterator<Item = (EntityId, &'a Entity)> {
311 self.ids_of_type(type_name)
312 .iter()
313 .filter_map(move |id| self.get(*id).map(|e| (*id, e)))
314 .collect::<Vec<_>>()
315 .into_iter()
316 }
317
318 /// Every distinct type name present, with its instance count.
319 ///
320 /// Useful as a cheap file summary and as the basis for a coverage report
321 /// of what a given build can and cannot interpret.
322 pub fn type_histogram(&self) -> Vec<(&str, usize)> {
323 let mut v: Vec<_> = self
324 .by_type
325 .iter()
326 .map(|(k, ids)| (k.as_str(), ids.len()))
327 .collect();
328 v.sort_unstable_by(|a, b| b.1.cmp(&a.1).then(a.0.cmp(b.0)));
329 v
330 }
331
332 /// Ids that are referenced by some entity but do not exist.
333 ///
334 /// A dangling reference is the most common corruption in real files, and
335 /// it is a structural question, so it belongs here rather than in a
336 /// validation crate.
337 pub fn dangling_references(&self) -> Vec<(EntityId, EntityId)> {
338 let mut out = Vec::new();
339 for (id, entity) in self.iter() {
340 for target in entity.references() {
341 if !self.entities.contains_key(&target) {
342 out.push((id, target));
343 }
344 }
345 }
346 out
347 }
348
349 // --- crate-internal seams for `mutation::edit` -----------------------
350 //
351 // Kept private-to-crate rather than `pub`: an edit that changes
352 // `type_name` must also fix up `by_type`, or `ids_of_type` silently goes
353 // stale. `mutation::edit` is the only module trusted to touch these
354 // fields directly, and it exists precisely to keep that invariant in one
355 // place instead of copied into every editor.
356
357 /// The entity under `id` for editing, decoded first when needed.
358 pub(crate) fn entity_mut(&mut self, id: EntityId) -> Option<&mut Entity> {
359 let source = self.source.clone();
360 Some(self.entities.get_mut(&id)?.get_mut(source.as_deref()))
361 }
362
363 /// Takes the entity under `id` out of storage, decoded; the caller
364 /// fixes up `by_type` and `order`.
365 pub(crate) fn take_entity(&mut self, id: EntityId) -> Option<Entity> {
366 let slot = self.entities.remove(&id)?;
367 Some(slot.into_entity(self.source.as_deref()))
368 }
369
370 pub(crate) fn by_type_mut(&mut self) -> &mut AHashMap<String, Vec<EntityId>> {
371 &mut self.by_type
372 }
373
374 pub(crate) fn order_mut(&mut self) -> &mut Vec<EntityId> {
375 &mut self.order
376 }
377}