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lfsx_server/storage/
mod.rs

1mod backend;
2mod codec;
3pub mod crypt;
4mod dedupe;
5mod rewrite;
6pub mod s3;
7mod staging;
8mod sweep;
9mod verify;
10mod walk;
11
12#[cfg(test)]
13mod tests;
14
15use std::collections::HashMap;
16use std::path::{Path, PathBuf};
17use std::sync::atomic::{AtomicU64, Ordering};
18use std::time::Instant;
19
20use tokio::sync::Mutex;
21
22use futures_util::{Stream, StreamExt};
23use sha2::{Digest, Sha256};
24use tokio::fs;
25use tokio::io::AsyncWriteExt;
26
27use crate::error::Error;
28use crate::namespace::Namespace;
29
30pub use backend::Store;
31pub use dedupe::DedupeReport;
32use dedupe::shares_bytes_with;
33pub use rewrite::CompressReport;
34pub use verify::VerifyReport;
35
36enum Sink {
37    Raw(fs::File),
38    Framed(Box<codec::Writer>),
39}
40
41impl Sink {
42    async fn write(&mut self, chunk: &[u8]) -> Result<(), Error> {
43        match self {
44            Self::Raw(file) => Ok(file.write_all(chunk).await?),
45            Self::Framed(writer) => writer.push(chunk).await,
46        }
47    }
48
49    async fn finish(self) -> Result<(), Error> {
50        match self {
51            Self::Raw(mut file) => {
52                file.flush().await?;
53                Ok(file.sync_all().await?)
54            }
55            Self::Framed(writer) => writer.finish().await,
56        }
57    }
58}
59
60// A transfer that has passed every check and is waiting to be put somewhere.
61pub struct Staged {
62    pub path: PathBuf,
63    destination: PathBuf,
64    pub written: u64,
65    fresh: bool,
66}
67
68// What a download reads from, whether or not the bytes on disk are the object.
69pub enum Object {
70    Raw {
71        file: fs::File,
72        size: u64,
73    },
74    Framed(codec::Framed),
75    Remote {
76        bucket: s3::S3Store,
77        oid: String,
78        size: u64,
79    },
80}
81
82impl Object {
83    pub fn size(&self) -> u64 {
84        match self {
85            Self::Raw { size, .. } => *size,
86            Self::Framed(framed) => framed.plaintext(),
87            Self::Remote { size, .. } => *size,
88        }
89    }
90
91    pub async fn stream(
92        self,
93        start: u64,
94        length: u64,
95    ) -> Result<futures_util::stream::BoxStream<'static, Result<axum::body::Bytes, Error>>, Error>
96    {
97        use futures_util::StreamExt;
98        use tokio::io::AsyncSeekExt;
99
100        match self {
101            Self::Raw { mut file, .. } => {
102                file.seek(std::io::SeekFrom::Start(start)).await?;
103                let reader =
104                    tokio_util::io::ReaderStream::new(tokio::io::AsyncReadExt::take(file, length));
105
106                Ok(reader.map(|chunk| chunk.map_err(Error::from)).boxed())
107            }
108            Self::Framed(framed) => Ok(framed.stream(start, length).boxed()),
109            Self::Remote { bucket, oid, .. } => {
110                let chunks = bucket.read(&oid, start, length).await?;
111
112                Ok(chunks
113                    .map(|chunk| {
114                        chunk.map_err(|error| Error::Storage(std::io::Error::other(error)))
115                    })
116                    .boxed())
117            }
118        }
119    }
120}
121pub use staging::{Reclaimed, reclaim};
122pub use sweep::SweepReport;
123
124// What is left of a repository's budget for one transfer. It travels with the
125// upload because a client that skips negotiation may also skip declaring a
126// size, and a budget checked once against a number the client chose is not a
127// budget.
128#[derive(Debug, Clone, Copy)]
129pub struct Budget {
130    pub used: u64,
131    pub limit: u64,
132}
133
134impl Budget {
135    pub fn exceeded_by(&self, arriving: u64) -> bool {
136        self.used + arriving > self.limit
137    }
138
139    pub fn refusal(&self) -> Error {
140        Error::OverQuota {
141            used: self.used,
142            limit: self.limit,
143        }
144    }
145}
146
147pub struct LocalStore {
148    root: PathBuf,
149    counter: AtomicU64,
150    usage: Mutex<Option<(Instant, u64, u64)>>,
151    per_namespace: Mutex<HashMap<String, (Instant, u64, u64)>>,
152    scans: AtomicU64,
153    max_object_size: Option<u64>,
154    compression: Option<i32>,
155    // Shared rather than cloned: the staging store and the store proper are two
156    // handles onto one deployment's keys.
157    keys: Option<std::sync::Arc<crypt::Keyring>>,
158}
159
160impl LocalStore {
161    pub fn new(root: impl Into<PathBuf>) -> Self {
162        Self {
163            root: root.into(),
164            counter: AtomicU64::new(0),
165            usage: Mutex::new(None),
166            per_namespace: Mutex::new(HashMap::new()),
167            scans: AtomicU64::new(0),
168            max_object_size: None,
169            compression: None,
170            keys: None,
171        }
172    }
173
174    pub fn with_compression(mut self, level: Option<i32>) -> Self {
175        self.compression = level;
176        self
177    }
178
179    pub fn with_max_object_size(mut self, limit: Option<u64>) -> Self {
180        self.max_object_size = limit;
181        self
182    }
183
184    pub fn with_encryption(mut self, keys: Option<std::sync::Arc<crypt::Keyring>>) -> Self {
185        self.keys = keys;
186        self
187    }
188
189    pub fn encrypts(&self) -> bool {
190        self.keys.is_some()
191    }
192
193    pub fn validate_oid(oid: &str) -> Result<(), Error> {
194        let well_formed = oid.len() == 64
195            && oid
196                .bytes()
197                .all(|b| b.is_ascii_digit() || (b'a'..=b'f').contains(&b));
198
199        well_formed.then_some(()).ok_or(Error::MalformedOid)
200    }
201
202    fn object_path(&self, ns: &Namespace, oid: &str) -> PathBuf {
203        self.root
204            .join(ns.org())
205            .join(ns.repo())
206            .join(&oid[0..2])
207            .join(&oid[2..4])
208            .join(oid)
209    }
210
211    fn content_path(&self, oid: &str) -> PathBuf {
212        self.root
213            .join(".content")
214            .join(&oid[0..2])
215            .join(&oid[2..4])
216            .join(oid)
217    }
218
219    pub fn scans(&self) -> u64 {
220        self.scans.load(Ordering::Relaxed)
221    }
222
223    pub async fn writable(&self) -> Result<(), Error> {
224        fs::create_dir_all(&self.root).await?;
225
226        let ticket = self.counter.fetch_add(1, Ordering::Relaxed);
227        let probe = self.root.join(format!(".readiness.{ticket}"));
228
229        fs::write(&probe, b"").await?;
230        fs::remove_file(&probe).await?;
231
232        Ok(())
233    }
234
235    pub async fn exists(&self, ns: &Namespace, oid: &str) -> bool {
236        Self::validate_oid(oid).is_ok() && fs::metadata(self.object_path(ns, oid)).await.is_ok()
237    }
238
239    pub async fn open(&self, ns: &Namespace, oid: &str) -> Result<Object, Error> {
240        Self::validate_oid(oid)?;
241        let path = self.object_path(ns, oid);
242        let file = fs::File::open(&path).await.map_err(|_| Error::NotFound)?;
243        let on_disk = file.metadata().await?.len();
244
245        match codec::Framed::open(file, on_disk, self.keys.as_deref(), oid).await? {
246            Some(framed) => Ok(Object::Framed(framed)),
247            None => Ok(Object::Raw {
248                file: fs::File::open(&path).await.map_err(|_| Error::NotFound)?,
249                size: on_disk,
250            }),
251        }
252    }
253
254    // Everything a transfer has to survive before it counts as an object: the
255    // digest it claims, the size it declared, the ceiling on a single object and
256    // the repository's remaining budget. It ends on local disk whatever the
257    // backend is, because a bucket cannot be asked to hold bytes that might turn
258    // out to be the wrong ones.
259    pub async fn stage<S, E>(
260        &self,
261        ns: &Namespace,
262        oid: &str,
263        expected_size: Option<u64>,
264        budget: Option<Budget>,
265        mut chunks: S,
266    ) -> Result<Staged, Error>
267    where
268        S: Stream<Item = Result<axum::body::Bytes, E>> + Unpin,
269        E: std::error::Error + Send + Sync + 'static,
270    {
271        Self::validate_oid(oid)?;
272
273        if let Some(limit) = self.max_object_size
274            && expected_size.is_some_and(|declared| declared > limit)
275        {
276            return Err(Error::TooLarge { limit });
277        }
278
279        let path = self.object_path(ns, oid);
280        let parent = path.parent().expect("object paths always have a parent");
281        fs::create_dir_all(parent).await?;
282
283        // A retried transfer of an object this repository already holds costs it
284        // no room, so it must not count against the budget a second time.
285        let fresh = fs::metadata(&path).await.is_err();
286        let staged = self.staging_path(parent, oid);
287
288        match self.stream_to(&staged, oid, budget, &mut chunks).await {
289            Ok((digest, written)) => {
290                if let Err(error) = Self::agrees(oid, expected_size, &digest, written) {
291                    let _ = fs::remove_file(&staged).await;
292                    return Err(error);
293                }
294
295                Ok(Staged {
296                    path: staged,
297                    destination: path,
298                    written,
299                    fresh,
300                })
301            }
302            Err(error) => {
303                let _ = fs::remove_file(&staged).await;
304                Err(error)
305            }
306        }
307    }
308
309    fn agrees(
310        oid: &str,
311        expected_size: Option<u64>,
312        digest: &str,
313        written: u64,
314    ) -> Result<(), Error> {
315        if let Some(declared) = expected_size.filter(|declared| *declared != written) {
316            return Err(Error::SizeMismatch {
317                declared,
318                actual: written,
319            });
320        }
321
322        if digest != oid {
323            return Err(Error::OidMismatch {
324                declared: oid.to_owned(),
325                actual: digest.to_owned(),
326            });
327        }
328
329        Ok(())
330    }
331
332    pub async fn write<S, E>(
333        &self,
334        ns: &Namespace,
335        oid: &str,
336        expected_size: Option<u64>,
337        budget: Option<Budget>,
338        chunks: S,
339    ) -> Result<u64, Error>
340    where
341        S: Stream<Item = Result<axum::body::Bytes, E>> + Unpin,
342        E: std::error::Error + Send + Sync + 'static,
343    {
344        let staged = self.stage(ns, oid, expected_size, budget, chunks).await?;
345
346        self.link_or_move(&staged.path, &staged.destination, oid)
347            .await?;
348
349        if staged.fresh {
350            self.stored(ns, staged.written).await;
351        }
352
353        Ok(staged.written)
354    }
355
356    fn staging_path(&self, parent: &Path, oid: &str) -> PathBuf {
357        let ticket = self.counter.fetch_add(1, Ordering::Relaxed);
358        parent.join(format!("{oid}.{ticket}.part"))
359    }
360
361    async fn stream_to<S, E>(
362        &self,
363        staged: &Path,
364        oid: &str,
365        budget: Option<Budget>,
366        chunks: &mut S,
367    ) -> Result<(String, u64), Error>
368    where
369        S: Stream<Item = Result<axum::body::Bytes, E>> + Unpin,
370        E: std::error::Error + Send + Sync + 'static,
371    {
372        let file = fs::File::create(staged).await?;
373        // The digest, the declared size and the budget are all counted on the
374        // plaintext going past, whatever the bytes look like once they land —
375        // so compression is a different sink, not a different path.
376        let mut sink = match (self.compression, self.keys.as_deref()) {
377            (None, None) => Sink::Raw(file),
378            (level, keys) => Sink::Framed(Box::new(
379                codec::Writer::open(file, level, keys.map(crypt::Keyring::writing), oid).await?,
380            )),
381        };
382        let mut hasher = Sha256::new();
383        let mut written = 0u64;
384
385        while let Some(chunk) = chunks.next().await {
386            let chunk = chunk.map_err(std::io::Error::other)?;
387            hasher.update(&chunk);
388            written += chunk.len() as u64;
389
390            // The declared size is a claim by the client, so the ceiling has to
391            // hold against a body that ignores it. Stopping at the chunk that
392            // crosses the line is the point: reading to the end to find out how
393            // big it was would be the outage this limit exists to prevent.
394            if let Some(limit) = self.max_object_size.filter(|limit| written > *limit) {
395                return Err(Error::TooLarge { limit });
396            }
397
398            if let Some(budget) = budget.filter(|budget| budget.exceeded_by(written)) {
399                return Err(budget.refusal());
400            }
401
402            sink.write(&chunk).await?;
403        }
404
405        sink.finish().await?;
406
407        Ok((hex::encode(hasher.finalize()), written))
408    }
409
410    // One copy of the bytes under .content, and a hard link per repository that
411    // holds them. Two projects sharing an asset pack cost the disk once, and the
412    // link count is the reference count — the filesystem does the bookkeeping, so
413    // nothing can leak a repository's contents to another and nothing needs a
414    // migration: objects already sitting at their repository path keep working as
415    // ordinary files with one link.
416    async fn link_or_move(&self, staged: &Path, final_path: &Path, oid: &str) -> Result<(), Error> {
417        let content = self.content_path(oid);
418        let parent = content.parent().expect("content paths have a parent");
419        fs::create_dir_all(parent).await?;
420
421        if fs::metadata(&content).await.is_err() {
422            fs::rename(staged, &content).await?;
423        }
424
425        match self.link(&content, final_path).await {
426            // The content was collected between finding it and linking to it:
427            // a concurrent retain on another repository dropped its last other
428            // reference. The staged copy is still here precisely for this, so
429            // put it back and link again rather than failing a push that did
430            // nothing wrong.
431            Err(error) if error.kind() == std::io::ErrorKind::NotFound => {
432                fs::rename(staged, &content).await?;
433                self.link(&content, final_path).await?;
434            }
435            outcome => outcome?,
436        }
437
438        let _ = fs::remove_file(staged).await;
439        Ok(())
440    }
441
442    async fn link(&self, content: &Path, final_path: &Path) -> Result<(), std::io::Error> {
443        let from = content.to_path_buf();
444        let to = final_path.to_path_buf();
445        let linked = tokio::task::spawn_blocking(move || std::fs::hard_link(&from, &to))
446            .await
447            .map_err(std::io::Error::other)?;
448
449        match linked {
450            Ok(()) => Ok(()),
451            Err(error) if error.kind() == std::io::ErrorKind::AlreadyExists => Ok(()),
452            Err(error) if error.kind() == std::io::ErrorKind::NotFound => Err(error),
453            // A filesystem without hard links, or one crossing a device
454            // boundary: fall back to a full copy so the transfer still
455            // succeeds. The disk pays for it, the client never notices.
456            Err(_) => fs::copy(content, final_path).await.map(|_| ()),
457        }
458    }
459}