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greplm_core/
lib.rs

1//! greplm-core: an extreme-performance, trigram-based code indexer for LLM agents.
2//!
3//! The index lives in a `.greplm/` directory at the project root and consists of
4//! immutable, mmap-backed segments (trigram FST + roaring posting lists + doc and
5//! symbol tables). Search filters candidate documents by trigram intersection,
6//! then verifies matches with the real literal/regex matcher.
7
8mod error;
9
10pub mod cache;
11pub mod client;
12pub mod config;
13pub mod context;
14pub mod daemon;
15pub(crate) mod fsutil;
16pub mod git;
17pub mod indexer;
18pub mod io_backend;
19pub mod lang;
20pub mod meta;
21pub mod paths;
22pub mod proto;
23pub mod resolve;
24pub mod savings;
25pub mod search;
26pub mod segment;
27#[cfg(feature = "semantic")]
28pub mod semantic;
29pub mod structural;
30pub mod symbol;
31pub(crate) mod table;
32pub mod trigram;
33pub mod walk;
34pub mod watch;
35
36pub use error::{Error, Result};
37
38/// Test-only crash/fault-injection seam for the atomic-write path (see
39/// [`fsutil::faults`]). Hidden from public docs; used by greplm's own
40/// durability tests to simulate crashes mid-index/compaction.
41#[doc(hidden)]
42pub use fsutil::faults;
43
44use std::path::{Path, PathBuf};
45
46use config::Config;
47use indexer::{IndexStats, Indexer};
48use io_backend::IoBackend;
49use meta::Meta;
50use paths::Paths;
51use search::Searcher;
52
53/// Status snapshot for `greplm status`.
54#[derive(Debug, Clone, serde::Serialize, serde::Deserialize)]
55pub struct Status {
56    pub root: PathBuf,
57    pub indexed: bool,
58    pub segments: usize,
59    pub doc_count: u64,
60    pub symbol_count: u64,
61    pub last_indexed: u64,
62    pub backend: String,
63}
64
65/// A handle to a greplm project (a directory and its `.greplm` index).
66pub struct Greplm {
67    paths: Paths,
68    config: Config,
69    backend: Box<dyn IoBackend>,
70    /// Serializes index mutation within this process. The daemon can drive two
71    /// indexers at once — the background watcher and a `strict`-freshness query
72    /// that reindexes before answering — and two concurrent incremental passes
73    /// over the same `.greplm` would race on segment writes and the manifest.
74    /// Held for the duration of [`index`](Self::index).
75    index_lock: std::sync::Mutex<()>,
76}
77
78impl Greplm {
79    /// Open (and lazily initialize) the index for `root`.
80    pub fn open(root: impl AsRef<Path>) -> Result<Greplm> {
81        let paths = Paths::new(root);
82        let config = Config::load(&paths.config_file())?;
83        Ok(Greplm {
84            backend: io_backend::select(config.backend),
85            paths,
86            config,
87            index_lock: std::sync::Mutex::new(()),
88        })
89    }
90
91    /// Find the nearest ancestor of `start` containing a `.greplm` directory,
92    /// falling back to `start` itself if none is found.
93    pub fn discover(start: impl AsRef<Path>) -> Result<Greplm> {
94        let start = start.as_ref();
95        let mut cur = Some(start);
96        while let Some(dir) = cur {
97            if dir.join(paths::DIR_NAME).is_dir() {
98                return Greplm::open(dir);
99            }
100            cur = dir.parent();
101        }
102        Greplm::open(start)
103    }
104
105    pub fn root(&self) -> &Path {
106        &self.paths.root
107    }
108
109    pub fn config(&self) -> &Config {
110        &self.config
111    }
112
113    /// Ensure the `.greplm` directory exists with a default config and gitignore.
114    pub fn ensure_initialized(&self) -> Result<()> {
115        std::fs::create_dir_all(self.paths.segments_dir())
116            .map_err(|e| Error::io(self.paths.segments_dir(), e))?;
117        let cfg = self.paths.config_file();
118        if !cfg.exists() {
119            self.config.save(&cfg)?;
120        }
121        let gi = self.paths.gitignore_file();
122        if !gi.exists() {
123            std::fs::write(&gi, "*\n").map_err(|e| Error::io(&gi, e))?;
124        }
125        Ok(())
126    }
127
128    /// Acquire the index-mutation lock. Held by [`index`](Self::index) for the
129    /// duration of a build, and exposed so the daemon can serialize a searcher
130    /// hot-swap (manifest read + publish) against indexing *and against other
131    /// swaps*. Without that, two concurrent swaps (the watcher and a
132    /// `strict`-freshness query reacting to the same edit) can store
133    /// out of order, letting an older searcher clobber a newer one and leaving
134    /// the index stale until the next file event.
135    ///
136    /// A poisoned lock just means a prior holder panicked — on-disk state is
137    /// still consistent (atomic writes), so recover the guard and proceed.
138    pub fn index_guard(&self) -> std::sync::MutexGuard<'_, ()> {
139        self.index_lock.lock().unwrap_or_else(|e| e.into_inner())
140    }
141
142    /// Build or refresh the index.
143    pub fn index(&self, force: bool) -> Result<IndexStats> {
144        self.ensure_initialized()?;
145        // Serialize concurrent in-process indexers (watcher vs. strict query).
146        let _guard = self.index_guard();
147        let indexer = Indexer::new(&self.paths, &self.config, self.backend.as_ref());
148        if force {
149            indexer.index_full()
150        } else {
151            indexer.index_incremental()
152        }
153    }
154
155    /// Ensure a usable, current-schema index exists, building it if absent,
156    /// empty, or left unreadable by an on-disk format change. Returns `true` if
157    /// a (re)build happened. This is the self-healing entry point for query
158    /// paths: a fresh checkout or a post-upgrade stale index transparently
159    /// builds instead of erroring with "run `greplm index` first".
160    ///
161    /// Cheap when a good index already exists (one manifest read). The actual
162    /// rebuild-on-corrupt logic lives in [`Indexer::index_incremental`], which
163    /// falls back to a full rebuild on an unreadable/outdated manifest.
164    pub fn ensure_indexed(&self) -> Result<bool> {
165        match self.status() {
166            // A populated, current-schema index — nothing to do.
167            Ok(s) if s.indexed => return Ok(false),
168            // Initialized but empty, or readable-but-empty manifest: build.
169            Ok(_) => {}
170            // Unreadable/outdated manifest (e.g. schema bump): index() rebuilds.
171            Err(_) => {}
172        }
173        self.index(false)?;
174        Ok(true)
175    }
176
177    /// Stat-only freshness probe: does any file on disk differ from what the
178    /// index recorded (new, modified by size/mtime, or deleted)? No content
179    /// hashing and no reads — just the same cheap pre-check the incremental
180    /// indexer uses. The daemon calls this to guarantee read-after-write
181    /// consistency: if dirty, it reindexes before answering.
182    pub fn is_dirty(&self) -> Result<bool> {
183        let cache = cache::Cache::open(&self.paths.cache_file())?;
184        let existing = match cache.load_all() {
185            Ok(existing) => existing,
186            // An undecodable cache is a lost optimization, not a probe failure:
187            // report dirty so the caller reindexes, which rebuilds the cache
188            // (see `Indexer::index_incremental`). Never surface a hard error here.
189            Err(Error::Postcard(_)) => return Ok(true),
190            Err(e) => return Err(e),
191        };
192        let walked = walk::walk(&self.paths, &self.config)?;
193
194        let mut seen = std::collections::HashSet::with_capacity(walked.entries.len());
195        for e in &walked.entries {
196            seen.insert(e.rel.clone());
197            let (_, mtime_ns, size) = cache::stat_key(&e.metadata);
198            match existing.get(&e.rel) {
199                // Already indexed; a changed stat key means it may have changed.
200                Some(rec) if rec.size == size && rec.mtime_ns == mtime_ns => {}
201                Some(_) => return Ok(true),
202                // Not in the index. It's only "dirty" if the indexer would
203                // actually index it — files it intentionally skips (binary) are
204                // never cached, so counting them would make any project with a
205                // binary file look perpetually stale.
206                None => {
207                    if self.would_index(&e.path) {
208                        return Ok(true);
209                    }
210                }
211            }
212        }
213        // A previously indexed file that disappeared (or became un-indexable,
214        // e.g. now too large/binary and dropped from the walk) is also dirty.
215        for path in existing.keys() {
216            if !seen.contains(path) {
217                return Ok(true);
218            }
219        }
220        Ok(false)
221    }
222
223    /// Would the indexer index this not-yet-cached file, or skip it the way its
224    /// read stage does (binary content, unreadable)? Mirrors `indexer::process`
225    /// so [`is_dirty`](Self::is_dirty) doesn't flag intentionally-skipped files.
226    fn would_index(&self, path: &Path) -> bool {
227        match std::fs::read(path) {
228            Ok(data) => self.config.index_binary || memchr::memchr(0, &data).is_none(),
229            Err(_) => false,
230        }
231    }
232
233    /// Merge all segments into a single compact segment, dropping tombstoned
234    /// documents. Falls back to a full rebuild if the merge cannot proceed.
235    pub fn compact(&self) -> Result<IndexStats> {
236        self.ensure_initialized()?;
237        Indexer::new(&self.paths, &self.config, self.backend.as_ref()).compact()
238    }
239
240    /// Open a searcher over the current index.
241    pub fn searcher(&self) -> Result<Searcher> {
242        Searcher::open(&self.paths)
243    }
244
245    /// Open a searcher over the current index, sharing unchanged segments and
246    /// the warm content cache with `prev` (see [`Searcher::open_reusing`]).
247    /// The daemon uses this so a hot-swap after an incremental index re-reads
248    /// only what actually changed instead of re-parsing every segment.
249    pub fn searcher_reusing(&self, prev: &Searcher) -> Result<Searcher> {
250        Searcher::open_reusing(&self.paths, prev)
251    }
252
253    /// Content search that always returns results: it queries the index, and if
254    /// the index is missing or errors, transparently falls back to an
255    /// index-free walk+scan (grep parity). The fallback is logged at WARN.
256    pub fn search_or_grep(&self, query: &search::SearchQuery) -> Result<Vec<search::SearchHit>> {
257        match self.searcher().and_then(|s| s.search(query)) {
258            Ok(hits) => Ok(hits),
259            Err(e) => {
260                tracing::warn!("index unavailable ({e}); falling back to grep walk");
261                search::grep_walk(&self.paths, &self.config, query)
262            }
263        }
264    }
265
266    /// Report index status.
267    pub fn status(&self) -> Result<Status> {
268        let meta = if self.paths.meta_file().exists() {
269            Meta::load(&self.paths.meta_file())?
270        } else {
271            Meta::default()
272        };
273        Ok(Status {
274            root: self.paths.root.clone(),
275            indexed: !meta.segments.is_empty(),
276            segments: meta.segments.len(),
277            doc_count: meta.doc_count,
278            symbol_count: meta.symbol_count,
279            last_indexed: meta.last_indexed,
280            backend: self.backend.name().to_string(),
281        })
282    }
283
284    /// Remove the entire `.greplm` directory.
285    pub fn clean(&self) -> Result<()> {
286        if self.paths.base.is_dir() {
287            std::fs::remove_dir_all(&self.paths.base)
288                .map_err(|e| Error::io(&self.paths.base, e))?;
289        }
290        Ok(())
291    }
292
293    /// Watch the project tree and re-index incrementally on changes.
294    ///
295    /// `on_change` is called after each successful incremental update. This call
296    /// blocks until an error occurs or the watcher is dropped.
297    pub fn watch<F: FnMut(&IndexStats)>(
298        &self,
299        debounce: std::time::Duration,
300        on_change: F,
301    ) -> Result<()> {
302        watch::run(self, debounce, on_change)
303    }
304
305    /// Path to the daemon's Unix socket for this project.
306    pub fn socket_path(&self) -> PathBuf {
307        self.paths.base.join(proto::SOCKET_NAME)
308    }
309
310    /// Record a query's token savings (grep+read baseline vs. returned payload).
311    /// Best-effort; never fails a query.
312    pub fn record_savings(
313        &self,
314        kind: &str,
315        files: &std::collections::BTreeSet<String>,
316        returned_chars: u64,
317        results: u64,
318    ) {
319        savings::record(&self.paths, kind, files, returned_chars, results);
320    }
321
322    /// Aggregate the recorded token-savings log.
323    pub fn savings_report(&self) -> savings::SavingsReport {
324        savings::report(&self.paths)
325    }
326
327    pub(crate) fn paths(&self) -> &Paths {
328        &self.paths
329    }
330}