mir_analyzer/session/incremental.rs
1use super::*;
2
3impl AnalysisSession {
4 /// Retrieve the source text the session has registered for `file`, if
5 /// any. Returns `None` when the file has never been ingested. Used by
6 /// the parallel re-analysis path to re-feed dependents to body analysis without
7 /// the caller having to track sources independently.
8 pub fn source_of(&self, file: &str) -> Option<Arc<str>> {
9 let db = self.snapshot_db();
10 let sf = db.lookup_source_file(file)?;
11 Some(sf.text(&db))
12 }
13
14 /// Re-analyze every transitive dependent of `file` in parallel.
15 ///
16 /// When the user saves a file that other files depend on (e.g. editing
17 /// a base class, an interface, or a trait), those dependents may have
18 /// new diagnostics. This method computes them in parallel using rayon
19 /// and returns the per-file analysis results so the LSP server can
20 /// publish updated diagnostics in one batch.
21 ///
22 /// Source text for dependents is retrieved from the session's salsa
23 /// inputs (set by previous `ingest_file` calls) — the caller doesn't
24 /// need to track or re-read files. Files for which the session has no
25 /// source are silently skipped (returns the analyzable subset).
26 ///
27 /// Cross-file inferred return types are resolved on demand via salsa.
28 pub fn reanalyze_dependents(&self, file: &str) -> Vec<(Arc<str>, crate::FileAnalysis)> {
29 self.reanalyze_dependents_cancellable(file, &crate::IndexCancel::new())
30 }
31
32 /// Cancellable variant of [`Self::reanalyze_dependents`].
33 ///
34 /// The consumer flips `cancel` (typically because a newer edit arrived) to
35 /// abandon the re-analysis; the flag is checked at each file boundary. Salsa
36 /// cannot unwind the plain-Rust body-analysis walk mid-flight, so a file
37 /// already in progress finishes, but no further files are started. Files
38 /// skipped due to cancellation are simply absent from the returned vec —
39 /// the consumer should drop a stale flag and start fresh work on each edit.
40 pub fn reanalyze_dependents_cancellable(
41 &self,
42 file: &str,
43 cancel: &crate::IndexCancel,
44 ) -> Vec<(Arc<str>, crate::FileAnalysis)> {
45 if cancel.is_cancelled() {
46 return Vec::new();
47 }
48
49 // Phase 1: compute dependents outside the analysis loop.
50 let dependents = self.dependency_graph().transitive_dependents(file);
51 if dependents.is_empty() {
52 return Vec::new();
53 }
54 let dependents: Vec<Arc<str>> = dependents
55 .into_iter()
56 .map(|path| Arc::from(path.as_str()))
57 .collect();
58 self.reanalyze_file_set(dependents, cancel)
59 }
60
61 /// Re-analyze an explicit file set — typically the editor's currently
62 /// open files — after an edit elsewhere in the workspace.
63 ///
64 /// This is the rust-analyzer diagnostics model: instead of computing the
65 /// edited file's transitive dependents (an O(all-ingested-files) graph
66 /// rebuild on every keystroke), the caller passes the handful of files it
67 /// actually publishes diagnostics for, and salsa memoization makes the
68 /// unaffected ones ~free — `analyze_file` re-validates each file's memo
69 /// against what actually changed and only re-executes bodies the edit
70 /// reaches. Per-edit cost is O(open files), independent of workspace size.
71 ///
72 /// Files the session has no source for are silently skipped. Cancellation
73 /// semantics match [`Self::reanalyze_dependents_cancellable`].
74 pub fn reanalyze_files_cancellable(
75 &self,
76 files: &[Arc<str>],
77 cancel: &crate::IndexCancel,
78 ) -> Vec<(Arc<str>, crate::FileAnalysis)> {
79 if cancel.is_cancelled() || files.is_empty() {
80 return Vec::new();
81 }
82 self.reanalyze_file_set(files.to_vec(), cancel)
83 }
84
85 /// Shared body of [`Self::reanalyze_dependents_cancellable`] and
86 /// [`Self::reanalyze_files_cancellable`]: warm up, analyze in parallel,
87 /// commit reference locations.
88 fn reanalyze_file_set(
89 &self,
90 files: Vec<Arc<str>>,
91 cancel: &crate::IndexCancel,
92 ) -> Vec<(Arc<str>, crate::FileAnalysis)> {
93 use rayon::prelude::*;
94
95 let dependents = files;
96
97 // Phase 2a: fault in each dependent's direct class references if the
98 // background indexer hasn't reached them yet (mirrors the FileAnalyzer
99 // warm-up behavior, avoiding transient false `UndefinedClass` during
100 // index warm-up).
101 //
102 // This runs SERIALLY and *before* the parallel analyze loop below:
103 // `prepare_ast_for_analysis` resolves and loads classes, and loading
104 // mutates the shared session salsa storage (`load_class` →
105 // `ingest_file` sets salsa inputs). Salsa input mutation cancels and
106 // blocks until every other database handle is released, so it must run
107 // with NO live snapshot in scope:
108 //
109 // - in parallel (the v0.37.0 regression), sibling rayon workers held
110 // live snapshot clones mid-`analyze_file`, so the first warm-up
111 // write blocked on them forever — under high dependent fan-out this
112 // deadlocked the whole runtime; and
113 // - even serially, a snapshot held across the loop (e.g. one taken to
114 // parse the dependents) blocks the very first write.
115 //
116 // `prepare_file_for_analysis` takes a *scoped* snapshot to fetch the
117 // parsed AST, drops it (the `Arc<ParseResult>` is owned), and only
118 // then warms up. Files already prepared against their current text
119 // skip the parse + AST walk entirely — hosts on the
120 // `ingest_file_prepared` write path pre-pay this per edit, making the
121 // whole loop a map-lookup sweep.
122 for file in &dependents {
123 if cancel.is_cancelled() {
124 return Vec::new();
125 }
126 self.prepare_file_for_analysis(file);
127 }
128
129 // Phase 2b: drive each dependent through the `analyze_file` tracked
130 // query in parallel. Salsa's memo validation does the real work
131 // here: after a body-only edit, a dependent whose tracked inputs are
132 // structurally unchanged (`FileDefinitions` backdating) returns its
133 // cached output without re-running body analysis — re-analysis cost
134 // scales with what actually changed, not with dependent count.
135 //
136 // The snapshot is taken AFTER the warm-up above so each worker observes
137 // the freshly-loaded classes. This loop is read-only on salsa: no
138 // worker mutates inputs, so the snapshots never contend on a write.
139 //
140 // Dependents' `FileAnalysis::symbols` are empty on this path:
141 // per-expression symbols are intentionally not memoized (a typical
142 // file resolves thousands; caching them balloons memory), and
143 // diagnostics consumers don't read them. Hover / go-to-definition
144 // flows analyze the open file directly via [`crate::FileAnalyzer`].
145 //
146 // Each worker short-circuits when cancellation has been requested.
147 let db_main = self.snapshot_db();
148 type Analyzed = (
149 Arc<str>,
150 Arc<str>,
151 std::sync::Arc<crate::db::AnalyzeOutput>,
152 Vec<crate::db::SubtypeEntry>,
153 );
154 let results: Vec<Analyzed> = dependents
155 .into_par_iter()
156 .map_with(db_main, |db, file| {
157 if cancel.is_cancelled() {
158 return None;
159 }
160 let sf = db.lookup_source_file(file.as_ref())?;
161 // Capture the text the analysis ran against: the freshness
162 // marks below must record exactly this Arc, so a text write
163 // racing the sweep leaves the file dirty rather than
164 // wrongly marked fresh.
165 let text = sf.text(&*db as &dyn crate::db::MirDatabase);
166 let out = crate::db::analyze_file(&*db as &dyn crate::db::MirDatabase, sf);
167 let defs =
168 crate::db::collect_file_definitions(&*db as &dyn crate::db::MirDatabase, sf);
169 let entries = crate::db::subtype_index::entries_from_slice(&defs.slice);
170 Some((file, text, out, entries))
171 })
172 .flatten()
173 .collect();
174
175 // Serial commit: each dependent's output is its complete reference
176 // set, so replace rather than append. Both inverted indexes and their
177 // freshness marks update here — this is what keeps read queries
178 // lookup-shaped instead of re-validating every candidate memo.
179 // Unchanged files (same text, same memoized output) skip the rebuild
180 // entirely, so a no-op re-sweep is a pointer compare per file.
181 {
182 let guard = self.db.salsa.read();
183 for (file, text, out, entries) in &results {
184 if !self.ref_commit_is_current(file.as_ref(), text, out) {
185 guard.set_file_reference_locations(file.as_ref(), out.ref_locs.to_vec());
186 self.mark_ref_committed(file, text, Some(out));
187 }
188 if !self.is_defs_committed(file.as_ref(), text) {
189 guard.set_file_class_edges(file, entries.clone());
190 self.mark_defs_committed(file, text);
191 }
192 }
193 }
194
195 results
196 .into_iter()
197 .map(|(file, _, out, _)| {
198 (
199 file,
200 crate::FileAnalysis {
201 issues: out.issues.to_vec(),
202 symbols: Vec::new(),
203 },
204 )
205 })
206 .collect()
207 }
208
209 /// FQCNs that `file` imports via `use` statements but that aren't yet
210 /// loaded in the session.
211 ///
212 /// Designed as the input to background prefetching: after the LSP server
213 /// Return the `use`-import alias map for a file: a list of `(alias, fqcn)`
214 /// pairs where `alias` is the local name (e.g. `"Str"`) and `fqcn` is the
215 /// fully-qualified name (e.g. `"Illuminate\\Support\\Str"`).
216 ///
217 /// Completion handlers can use this to expand a short class name written
218 /// before `::` into its FQN before looking up static members, mirroring the
219 /// same alias expansion that go-to-definition already performs via
220 /// `symbol_at` + `definition_of`.
221 ///
222 /// Returns an empty Vec if the file has not been ingested or has no use
223 /// imports.
224 pub fn class_imports(&self, file: &str) -> Vec<(Arc<str>, Arc<str>)> {
225 let db = self.snapshot_db();
226 let imports = db.file_class_imports(file);
227 imports
228 .iter()
229 .map(|(alias, fqcn)| (Arc::from(alias.as_str()), Arc::from(fqcn.as_str())))
230 .collect()
231 }
232
233 /// ingests an open buffer, it can call this and lazy-load the returned
234 /// FQCNs on a worker thread so the user's first Cmd+Click into vendor
235 /// code doesn't pay the file-read+parse cost.
236 ///
237 /// Returns an empty Vec if the file hasn't been ingested or has no
238 /// unresolved imports.
239 pub fn pending_lazy_loads(&self, file: &str) -> Vec<Arc<str>> {
240 let db = self.snapshot_db();
241 let imports = db.file_imports(file);
242 if imports.is_empty() {
243 return Vec::new();
244 }
245 let mut out = Vec::new();
246 for fqcn in imports.values() {
247 let here = crate::db::Fqcn::new(&db, *fqcn);
248 if crate::db::find_class_like(&db, here).is_some() {
249 continue;
250 }
251 if let Some(resolver) = &self.resolver {
252 if resolver.resolve(fqcn.as_str()).is_some() {
253 out.push(Arc::from(fqcn.as_str()));
254 }
255 }
256 }
257 out
258 }
259
260 /// Convenience: synchronously lazy-load every import of `file` that
261 /// isn't already in the codebase. Returns the number successfully loaded.
262 ///
263 /// For non-blocking prefetch, call this from a worker thread:
264 ///
265 /// ```ignore
266 /// let s = session.clone(); // AnalysisSession is wrapped in Arc by callers
267 /// std::thread::spawn(move || {
268 /// s.prefetch_imports(&file_path);
269 /// });
270 /// ```
271 ///
272 /// Uses a single shared-visited two-tier BFS across all pending imports
273 /// (see [`Self::load_classes_transitive_bounded`]) with a shallow depth so
274 /// member access on imported types type-checks without pulling in the
275 /// entire vendor tree.
276 pub fn prefetch_imports(&self, file: &str) -> usize {
277 let pending = self.pending_lazy_loads(file);
278 if pending.is_empty() {
279 return 0;
280 }
281 // Fault in each imported FQCN directly (single-file load + tier-merge).
282 // Inheritance ancestors / signature types resolve through the eagerly
283 // built workspace symbol index — no transitive walk needed here.
284 let mut loaded = 0;
285 for fqcn in &pending {
286 if self.load_class(fqcn.as_ref()).is_loaded() {
287 loaded += 1;
288 }
289 }
290 loaded
291 }
292
293 /// All class / interface / trait / enum FQCNs currently known to the
294 /// session, each paired with the file that defines them when available.
295 ///
296 /// Use this to build workspace-wide views (outline, fuzzy search, etc.).
297 /// Consumers implement their own search/match logic on top — the analyzer
298 /// only exposes the iterator.
299 pub fn all_classes(&self) -> Vec<(Arc<str>, Option<mir_types::Location>)> {
300 let db = self.snapshot_db();
301 crate::db::workspace_classes(&db)
302 .iter()
303 .filter_map(|fqcn| {
304 let here = crate::db::Fqcn::from_str(&db, fqcn.as_ref());
305 crate::db::find_class_like(&db, here)
306 .map(|class| (fqcn.clone(), class.location().cloned()))
307 })
308 .collect()
309 }
310
311 /// All global function FQNs currently known to the session, each paired
312 /// with their declaration location when available.
313 pub fn all_functions(&self) -> Vec<(Arc<str>, Option<mir_types::Location>)> {
314 let db = self.snapshot_db();
315 crate::db::workspace_functions(&db)
316 .iter()
317 .filter_map(|fqn| {
318 let here = crate::db::Fqcn::from_str(&db, fqn.as_ref());
319 crate::db::find_function(&db, here).map(|f| (fqn.clone(), f.location.clone()))
320 })
321 .collect()
322 }
323
324 /// Compute `file`'s outgoing dependency edges and persist them to the
325 /// disk cache's reverse-dep graph (if configured). The in-memory graph
326 /// is no longer maintained imperatively: `dependency_graph()` derives
327 /// structural edges from the memoized [`crate::db::file_structural_deps`]
328 /// tracked query, so there is no second copy to drift out of sync.
329 pub(super) fn update_reverse_deps_for(&self, file: &str) {
330 if let Some(cache) = self.cache.as_deref() {
331 let db = self.snapshot_db();
332 let targets = file_outgoing_dependencies(&db, file, true);
333 cache.update_reverse_deps_for_file(file, &targets);
334 }
335 }
336
337 /// File dependency graph: which files depend on which other files.
338 /// Used for incremental invalidation in LSP servers and build systems.
339 ///
340 /// File dependency graph: which files depend on which other files.
341 /// Used for incremental invalidation in LSP servers and build systems.
342 ///
343 /// O(edges) — iterates the `file_references` forward index (file → symbol
344 /// keys it references) which is always current, then resolves each symbol
345 /// to its defining file via O(1) lookup. Total cost is O(E) where E is the
346 /// number of (file, symbol) reference edges, vs. the old O(F × S × R) scan.
347 pub fn dependency_graph(&self) -> crate::DependencyGraph {
348 let db = self.snapshot_db();
349
350 let all_files: Vec<String> = db
351 .source_file_paths()
352 .iter()
353 .map(|f| f.as_ref().to_string())
354 .collect();
355
356 let mut dependencies: HashMap<String, Vec<String>> = HashMap::default();
357 let mut dependents: HashMap<String, Vec<String>> = HashMap::default();
358
359 for file in &all_files {
360 // O(degree(file)) — forward index lookup, no full-table scan.
361 let symbol_keys = db.file_referenced_symbols(file);
362 let mut file_deps: HashSet<String> = HashSet::default();
363 for symbol_key in &symbol_keys {
364 let lookup = crate::defining_file_lookup_key(symbol_key);
365 if let Some(def_file) = db.symbol_defining_file(lookup) {
366 let def = def_file.as_ref().to_string();
367 if &def != file {
368 file_deps.insert(def);
369 }
370 }
371 }
372 for dep in &file_deps {
373 dependents
374 .entry(dep.clone())
375 .or_default()
376 .push(file.clone());
377 dependencies
378 .entry(file.clone())
379 .or_default()
380 .push(dep.clone());
381 }
382 }
383
384 // Merge structural deps derived from definition collection. The
385 // forward pass above only captures bare-FQN references recorded
386 // during body analysis; `file_structural_deps` covers imports, class
387 // hierarchy (extends/implements/use), and type-hint-only references
388 // that never appear in file_referenced_symbols. The query is salsa-
389 // memoized, so the warm rebuild costs one map lookup per file rather
390 // than a definition walk — and there is no imperatively-maintained
391 // reverse map to drift out of sync with the definitions.
392 for file in &all_files {
393 let Some(sf) = db.lookup_source_file(file) else {
394 continue;
395 };
396 for target in crate::db::file_structural_deps(&db, sf).iter() {
397 let target = target.as_ref().to_string();
398 if &target != file {
399 dependents
400 .entry(target.clone())
401 .or_default()
402 .push(file.clone());
403 dependencies.entry(file.clone()).or_default().push(target);
404 }
405 }
406 }
407
408 for deps in dependents.values_mut() {
409 deps.sort();
410 deps.dedup();
411 }
412 for deps in dependencies.values_mut() {
413 deps.sort();
414 deps.dedup();
415 }
416
417 // Augment with stale dependents: files referencing symbols that were
418 // deleted from their defining file. These edges disappear from the
419 // symbol_defining_file lookup but the referencing file still needs
420 // re-analysis to surface the now-broken reference.
421 {
422 let stale = self.stale_defined_symbols.read();
423 if !stale.is_empty() {
424 for (file, deleted_syms) in stale.iter() {
425 for sym in deleted_syms {
426 let lookup = crate::defining_file_lookup_key(sym);
427 // `defined_symbols()` only yields top-level FQ names
428 // (classes/interfaces/traits/enums, functions, global
429 // constants) — never knows here which kind `sym` was,
430 // so probe every prefix the reference index actually
431 // uses (see `Name::codebase_key`) rather than guessing
432 // one and silently missing referencers of the others.
433 for prefix in ["cls:", "fn:", "gcnst:"] {
434 for referencing_file in
435 db.symbol_referencers_of(&format!("{prefix}{lookup}"))
436 {
437 let ref_file = referencing_file.as_ref().to_string();
438 if &ref_file != file {
439 dependents
440 .entry(file.clone())
441 .or_default()
442 .push(ref_file.clone());
443 dependencies.entry(ref_file).or_default().push(file.clone());
444 }
445 }
446 }
447 }
448 }
449 // Re-sort and dedup since we may have added entries.
450 for deps in dependents.values_mut() {
451 deps.sort();
452 deps.dedup();
453 }
454 for deps in dependencies.values_mut() {
455 deps.sort();
456 deps.dedup();
457 }
458 }
459 }
460
461 crate::DependencyGraph {
462 dependencies,
463 dependents,
464 }
465 }
466}