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g1t/services/repos/src/lib.rs

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1//! The repos service: repository metadata, contents, forks, landing, and
2//! git over HTTPS.
3//!
4//! Other services reach it over `POST /rpc/<method>`; see
5//! `g1t_contracts::repos` for the methods and their arguments. Any other
6//! request is treated as git's smart HTTP protocol.
7
8mod about;
9mod backups;
10mod blame;
11mod catch_up;
12mod coalesce;
13mod commit_file;
14mod contributors;
15mod diff;
16mod fallback;
17mod forks;
18mod git_http;
19mod git_ops;
20mod import;
21mod land;
22mod languages;
23mod last_commits;
24mod license;
25mod lifecycle;
26mod listing;
27mod meters;
28mod mirror;
29mod moves;
30mod namespaces;
31mod pack_cache;
32mod pack_limits;
33mod refs;
34mod refs_cache;
35mod registry;
36mod resilience;
37mod rule_facts;
38mod rules;
39mod run_access;
40mod secret_scan;
41mod shards;
42mod shared;
43mod signatures;
44mod stats;
45mod store;
46mod transfer;
47
48use g1t_contracts::events::{
49 Event, GitPush, NewEvent, Publish, RepoCreated, RepoForked, RepoUpdated, WorkspaceDeleted,
50 WorkspaceDeleting, WorkspaceRenamed, WorkspaceRestored,
51};
52use g1t_contracts::access::{self, Capability};
53use g1t_contracts::repos::*;
54use g1t_contracts::time::rfc3339;
55use g1t_contracts::{FailureCode, Outcome, PrincipalKind, Role, User, Viewer, is_valid_repo_name, new_id};
56use g1t_kit::{args, now_ms, reply, rpc_method};
57use std::collections::{HashMap, HashSet, VecDeque};
58use std::rc::Rc;
59
60use serde::Serialize;
61use worker::{
62 Context, Env, Fetcher, MessageBatch, Method, Request, Response, Result, ScheduleContext, ScheduledEvent,
63 event,
64};
65
66use registry::{Registry, can_read, can_write, store_key};
67use store::{ArtifactsStore, GitRepo, GitStore, Scope};
68
69/// Namespace that holds every pull request's fork: `pulls/<pull id>`.
70pub(crate) const PULLS_NAMESPACE: &str = "pulls";
71const MAX_TEXT_BYTES: usize = 512 * 1024;
72/// How far back a pull request may have forked and still be landed.
73const MAX_ANCESTRY: u32 = 1000;
74/// The most tags a repository's Tags page reads and lists.
75const MAX_TAGS_READ: usize = 100;
76
77/// One path segment, percent-encoded for a cache key.
78fn urlencoding_segment(segment: &str) -> String {
79 segment
80 .bytes()
81 .map(|b| if b.is_ascii_alphanumeric() || b"-._~".contains(&b) { (b as char).to_string() } else { format!("%{b:02X}") })
82 .collect()
83}
84const MAX_DESCRIPTION_CHARS: usize = 200;
85pub(crate) const SOURCE: &str = "repos";
86pub(crate) const UNVERIFIED: &str = "Confirm your email address first. Check your inbox, or resend the link from the banner on g1t.sh.";
87
88pub(crate) fn not_found<T>() -> Outcome<T> {
89 Outcome::fail(FailureCode::NotFound, "Repository not found.")
90}
91
92/// Decoded text, or `None` when the file is too large or looks binary.
93/// Whether a ref is a full commit hash rather than a branch name.
94fn is_commit_hash(git_ref: &str) -> bool {
95 git_ref.len() == 40 && git_ref.bytes().all(|b| b.is_ascii_hexdigit())
96}
97
98fn text_of(bytes: Vec<u8>) -> Option<String> {
99 if bytes.len() > MAX_TEXT_BYTES || bytes.contains(&0) {
100 return None;
101 }
102 Some(String::from_utf8_lossy(&bytes).into_owned())
103}
104
105fn is_readme(name: &str) -> bool {
106 matches!(
107 name.to_lowercase().as_str(),
108 "readme" | "readme.md" | "readme.markdown" | "readme.txt"
109 )
110}
111
112/// Whether `ancestor` is reachable from the newest commit in `history`.
113///
114/// `history` is the first-parent chain, which is all the store lists; a fork
115/// that merged the target branch in has the target's head on a second
116/// parent, so the walk follows every parent.
117async fn descends_from<R: GitRepo>(repo: &R, history: &[Commit], ancestor: &str) -> Result<bool> {
118 let known: HashMap<&str, &[String]> = history
119 .iter()
120 .map(|commit| (commit.hash.as_str(), commit.parents.as_slice()))
121 .collect();
122 let mut seen = HashSet::new();
123 let mut queue: Vec<String> = history
124 .first()
125 .map(|c| c.hash.clone())
126 .into_iter()
127 .collect();
128 while let Some(hash) = queue.pop() {
129 if hash == ancestor {
130 return Ok(true);
131 }
132 if !seen.insert(hash.clone()) || seen.len() > MAX_ANCESTRY as usize {
133 continue;
134 }
135 match known.get(hash.as_str()) {
136 Some(parents) => queue.extend(parents.iter().cloned()),
137 None => queue.extend(repo.parents(&hash).await?.unwrap_or_default()),
138 }
139 }
140 Ok(false)
141}
142
143/// The commit closest to the newest in `history` that is also in `shared`:
144/// where a fork and the repository it came from last agreed.
145async fn nearest_ancestor_in<R: GitRepo>(
146 repo: &R,
147 history: &[Commit],
148 shared: &HashSet<String>,
149) -> Result<Option<String>> {
150 let known: HashMap<&str, &[String]> = history
151 .iter()
152 .map(|commit| (commit.hash.as_str(), commit.parents.as_slice()))
153 .collect();
154 let mut seen = HashSet::new();
155 let mut queue: VecDeque<String> = history
156 .first()
157 .map(|c| c.hash.clone())
158 .into_iter()
159 .collect();
160 while let Some(hash) = queue.pop_front() {
161 if shared.contains(&hash) {
162 return Ok(Some(hash));
163 }
164 if !seen.insert(hash.clone()) || seen.len() > MAX_ANCESTRY as usize {
165 continue;
166 }
167 match known.get(hash.as_str()) {
168 Some(parents) => queue.extend(parents.iter().cloned()),
169 None => queue.extend(repo.parents(&hash).await?.unwrap_or_default()),
170 }
171 }
172 Ok(None)
173}
174
175thread_local! {
176 /// Targets' sides of mergeability, by head (coalesce.rs).
177 static TARGETS: std::cell::RefCell<coalesce::Memo<coalesce::TargetKey, Rc<coalesce::TargetSide>>> =
178 std::cell::RefCell::new(coalesce::Memo::new(coalesce::TARGET_TTL_MS, 32));
179 /// What targets changed between two trees.
180 static THEIRS: std::cell::RefCell<coalesce::Memo<coalesce::TheirsKey, (Vec<String>, bool)>> =
181 std::cell::RefCell::new(coalesce::Memo::new(coalesce::THEIRS_TTL_MS, 256));
182 /// What repositories hold, as read for a push's first request, for the
183 /// same push's second: a push's POST does not wait on the database.
184 static HELD: std::cell::RefCell<coalesce::Memo<String, u64>> =
185 std::cell::RefCell::new(coalesce::Memo::new(60_000, 512));
186}
187
188pub(crate) struct Repos<S: GitStore> {
189 registry: Registry,
190 store: S,
191 events: Fetcher,
192 /// Asked during a push which secrets have been allowed.
193 security: Option<Fetcher>,
194 /// Asked whether a workspace is on a plan, for its private storage.
195 billing: Option<Fetcher>,
196 /// Says which rulesets hold for a change to a branch or tag, and keeps
197 /// how they judged it (rules.rs). `None` where it is not deployed: the
198 /// old protection flag then holds on push.
199 work: Option<Fetcher>,
200 /// Told when a repository moves, for the tokens of agents at work on it.
201 identity: Option<Fetcher>,
202 /// What a free workspace's private repositories may hold.
203 free_private_bytes: i64,
204 /// Days a pull request's working copy is kept after it settles (forks.rs).
205 pub(crate) fork_days: u64,
206 /// The most a repository may hold (pack_limits.rs), and what happens
207 /// to a push too large to scan.
208 repo_limit: u64,
209 large_pushes: git_http::LargePushes,
210 /// Which git store namespace new repositories go in (shards.rs), and
211 /// the most each should hold (`ARTIFACTS_NAMESPACE_LIMITS`).
212 placement: shards::Placement,
213 limits: HashMap<String, u64>,
214 /// What isolates share: answers that list refs (refs_cache.rs).
215 shared: Option<Rc<shared::Shared>>,
216 /// Packs for fresh clones (pack_cache.rs); `None` without the bucket.
217 packs: Option<Rc<pack_cache::Packs>>,
218}
219
220impl<S: GitStore> Repos<S> {
221 /// Records that the refs of the repository with this id changed, once
222 /// they have, so that the answers kept that list them go stale (see
223 /// refs_cache.rs). Everything that changes a repository's refs calls
224 /// this after it (`every_ref_writer_records_the_change` checks). A
225 /// failure is logged: the change itself happened, and what was kept
226 /// expires within `refs_cache::TTL_SECONDS` regardless.
227 pub(crate) async fn refs_moved(&self, repo_id: &str) {
228 if let Err(error) = self.registry.refs_moved(repo_id).await {
229 worker::console_error!("refs of {repo_id} changed but not recorded: {error}");
230 }
231 }
232
233 pub(crate) async fn publish<T: Serialize>(&self, event: NewEvent<T>) -> Result<()> {
234 g1t_kit::call(
235 &self.events,
236 "publish",
237 &Publish {
238 events: vec![event],
239 },
240 )
241 .await
242 }
243
244 /// Whether the viewer may read `repo`. A pull request's fork of a
245 /// private repository can be read by everyone who can read that
246 /// repository, so its members can review and check out the change, as
247 /// well as by whoever opened the pull request.
248 async fn may_read(&self, repo: &Repo, viewer: &Viewer) -> Result<bool> {
249 if can_read(repo, viewer) {
250 return Ok(true);
251 }
252 let Some(source_id) = &repo.fork_of else {
253 return Ok(false);
254 };
255 Ok(self
256 .registry
257 .by_id(source_id)
258 .await?
259 .is_some_and(|source| can_read(&source, viewer)))
260 }
261
262 /// `repo`, if there is one and the viewer may read it.
263 async fn visible(&self, repo: Option<Repo>, viewer: &Viewer) -> Result<Option<Repo>> {
264 Ok(match repo {
265 Some(repo) if self.may_read(&repo, viewer).await? => Some(repo),
266 _ => None,
267 })
268 }
269
270 /// Resolves a repo the viewer may read; private repos look missing.
271 pub(crate) async fn readable(&self, path: &RepoPath, viewer: &Viewer) -> Result<Option<Repo>> {
272 self.visible(self.registry.by_path(path).await?, viewer)
273 .await
274 }
275
276 async fn get(&self, a: GetArgs) -> Result<Outcome<Repo>> {
277 Ok(self
278 .readable(&a.path, &a.viewer)
279 .await?
280 .map_or_else(not_found, Outcome::Ok))
281 }
282
283 async fn get_by_id(&self, a: GetByIdArgs) -> Result<Outcome<Repo>> {
284 Ok(self
285 .visible(self.registry.by_id(&a.id).await?, &a.viewer)
286 .await?
287 .map_or_else(not_found, Outcome::Ok))
288 }
289
290 async fn update(&self, a: UpdateArgs) -> Result<Outcome<Repo>> {
291 let viewer = Some(a.actor.clone());
292 let Some(repo) = self.readable(&a.path, &viewer).await? else {
293 return Ok(not_found());
294 };
295 // Its details take Maintain; its protection, Admin; who can see it,
296 // Admin and the member privileges (below). See g1t_contracts::access.
297 let protection_changes = a.protected.is_some_and(|protected| protected != repo.protected);
298 let details_change = a.description.is_some() || a.website.is_some() || a.topics.is_some();
299 let mut needed = Vec::new();
300 if details_change || !protection_changes {
301 needed.push(Capability::ManageSettings);
302 }
303 if protection_changes {
304 needed.push(Capability::ManageProtection);
305 }
306 let full_name = format!("{}/{}", repo.namespace, repo.name);
307 if repo.fork_of.is_some() {
308 return Ok(Outcome::fail(FailureCode::Forbidden, access::needs(Capability::ManageSettings, &full_name)));
309 }
310 if let Some(missing) = needed.into_iter().find(|capability| !registry::can(&repo, &viewer, *capability)) {
311 return Ok(Outcome::fail(FailureCode::Forbidden, access::needs(missing, &full_name)));
312 }
313 if !a.actor.verified {
314 return Ok(Outcome::fail(FailureCode::Forbidden, UNVERIFIED));
315 }
316 if let Some((code, message)) = lifecycle::archived_refusal(&repo) {
317 return Ok(Outcome::fail(code, message));
318 }
319 let description = match a.description {
320 Some(text) => Some(
321 text.trim()
322 .chars()
323 .take(MAX_DESCRIPTION_CHARS)
324 .collect::<String>(),
325 )
326 .filter(|text| !text.is_empty()),
327 None => repo.description.clone(),
328 };
329 let website = match a.website.as_deref() {
330 Some(text) => match clean_website(text) {
331 Ok(website) => website,
332 Err(reason) => return Ok(Outcome::fail(FailureCode::Invalid, reason)),
333 },
334 None => repo.website.clone(),
335 };
336 // Who can see it is an owner's to change, and a free workspace's
337 // storage may not take it private: see lifecycle.rs.
338 let wants_private = a.is_private.filter(|private| *private != repo.is_private);
339 if wants_private.is_some()
340 && let Err((code, message)) = lifecycle::admin_only(
341 lifecycle::Asker::on(&a.actor, &repo),
342 &repo.namespace,
343 "change the visibility of",
344 Capability::ChangeVisibility,
345 )
346 {
347 return Ok(Outcome::fail(code, message));
348 }
349 if let Some(private) = wants_private
350 && let Some(why) = lifecycle::visibility_refusal(&a.actor, &repo, private)
351 {
352 return Ok(Outcome::fail(FailureCode::Forbidden, why));
353 }
354 let is_private = repo.is_private;
355 let protected = a.protected.unwrap_or(repo.protected);
356 let topics = match &a.topics {
357 Some(topics) => match clean_topics(topics) {
358 Ok(topics) => topics,
359 Err(reason) => return Ok(Outcome::fail(FailureCode::Invalid, reason)),
360 },
361 None => repo.topics.clone(),
362 };
363 self.registry
364 .update(&repo.id, description.as_deref(), protected, &topics, website.as_deref())
365 .await?;
366 let updated = Repo {
367 description,
368 is_private,
369 protected,
370 topics,
371 website,
372 ..repo
373 };
374 // Whether the default branch takes only pull requests is now its
375 // branch protection ruleset's to say (work's rulesets.rs).
376 if let (Some(protected), Some(work)) = (a.protected, &self.work) {
377 #[derive(Serialize)]
378 struct RequirePullRequest<'a> {
379 repo: &'a Repo,
380 protected: bool,
381 actor: &'a User,
382 }
383 let set: Result<Outcome<bool>> =
384 g1t_kit::call(work, "set_requires_pull_request", &RequirePullRequest { repo: &updated, protected, actor: &a.actor }).await;
385 match set {
386 Ok(Outcome::Ok(_)) => {}
387 Ok(Outcome::Fail(failure)) => return Ok(Outcome::Fail(failure)),
388 Err(error) => return Err(error),
389 }
390 }
391 if let Some(private) = wants_private {
392 return self.change_visibility(updated, private, &a.actor, a.surface).await;
393 }
394 let visibility_changed = false;
395 // Search and anything else that shows the repository hears of it;
396 // a change of visibility is announced on its own as well, so that
397 // what was public stops being shown at once.
398 self.publish(NewEvent {
399 kind: "repo.updated",
400 source: SOURCE,
401 repo_id: Some(updated.id.clone()),
402 actor: Some(a.actor.id.clone()),
403 data: RepoUpdated {
404 repo_id: updated.id.clone(),
405 namespace: updated.namespace.clone(),
406 name: updated.name.clone(),
407 is_private,
408 visibility_changed,
409 },
410 })
411 .await?;
412 Ok(Outcome::Ok(updated))
413 }
414
415 /// The repository with this id, if it is not a fork, and its store.
416 async fn stored(&self, repo_id: &str) -> Result<Option<S::Repo>> {
417 match self.registry.by_id(repo_id).await? {
418 Some(repo) if repo.fork_of.is_none() => Ok(Some(self.store.open(&store_key(&repo)).await?)),
419 _ => Ok(None),
420 }
421 }
422
423 async fn list_files(&self, a: ListFilesArgs) -> Result<FileList> {
424 let Some(repo) = self.registry.by_id(&a.repo_id).await?.filter(|repo| repo.fork_of.is_none()) else {
425 return Ok(FileList::default());
426 };
427 let git = self.store.open(&store_key(&repo)).await?;
428 let head = a.git_ref.unwrap_or_else(|| repo.default_branch.clone());
429 listing::list(&git, None, &head, &a.skip_dirs, a.limit).await
430 }
431
432 async fn changed_files(&self, a: ChangedFilesArgs) -> Result<FileList> {
433 let Some(git) = self.stored(&a.repo_id).await? else {
434 return Ok(FileList::default());
435 };
436 listing::list(&git, a.base.as_deref(), &a.head, &a.skip_dirs, a.limit).await
437 }
438
439 /// Branches and tags with their commits, for g1t's own services.
440 async fn refs_of(&self, a: RefsArgs) -> Result<Option<RepoRefs>> {
441 let Some(repo) = self.registry.by_id(&a.repo_id).await?.filter(|repo| repo.fork_of.is_none()) else {
442 return Ok(None);
443 };
444 let git = self.store.open(&store_key(&repo)).await?;
445 let access = git.access(Scope::Read).await?;
446 let refs = refs::heads_and_tags(refs::all(&access).await?)
447 .into_iter()
448 .map(|(name, commit)| GitRefEntry { name, commit })
449 .collect();
450 Ok(Some(RepoRefs { repo, refs }))
451 }
452
453 async fn raw_file(&self, a: RawFileArgs) -> Result<Option<RawFile>> {
454 use base64::Engine;
455 let Some(git) = self.stored(&a.repo_id).await? else {
456 return Ok(None);
457 };
458 Ok(git
459 .read_file(&a.git_ref, &a.path)
460 .await?
461 .filter(|bytes| bytes.len() <= a.max_bytes as usize)
462 .map(|bytes| RawFile { size: bytes.len() as u64, data: base64::engine::general_purpose::STANDARD.encode(bytes) }))
463 }
464
465 async fn raw_blobs(&self, a: RawBlobsArgs) -> Result<Vec<RawBlob>> {
466 use base64::Engine;
467 let Some(git) = self.stored(&a.repo_id).await? else {
468 return Ok(Vec::new());
469 };
470 let hashes: Vec<&String> = a.hashes.iter().take(MAX_READ_BLOBS).collect();
471 let mut out = Vec::with_capacity(hashes.len());
472 // A few at a time, as listing::read does: each is a round trip.
473 for group in hashes.chunks(8) {
474 let read = futures_util::future::try_join_all(group.iter().map(|hash| git.read_blob(hash))).await?;
475 for (hash, bytes) in group.iter().zip(read) {
476 let size = bytes.as_ref().map_or(0, |bytes| bytes.len() as u64);
477 let data = bytes
478 .filter(|bytes| bytes.len() <= a.max_bytes as usize)
479 .map(|bytes| base64::engine::general_purpose::STANDARD.encode(bytes));
480 out.push(RawBlob { hash: (*hash).clone(), size, data });
481 }
482 }
483 Ok(out)
484 }
485
486 async fn read_blobs(&self, a: ReadBlobsArgs) -> Result<Vec<BlobText>> {
487 let Some(git) = self.stored(&a.repo_id).await? else {
488 return Ok(Vec::new());
489 };
490 listing::read(&git, &a.hashes, a.max_bytes.min(MAX_TEXT_BYTES as u32)).await
491 }
492
493 async fn create(&self, a: CreateArgs) -> Result<Outcome<Repo>> {
494 if !a.owner.verified {
495 return Ok(Outcome::fail(FailureCode::Forbidden, UNVERIFIED));
496 }
497 let name = a.name.trim().to_lowercase();
498 if !is_valid_repo_name(&name) {
499 return Ok(Outcome::fail(
500 FailureCode::Invalid,
501 "Use letters, digits, dots, hyphens and underscores only.",
502 ));
503 }
504 let namespace = a.namespace.trim().to_lowercase();
505 if namespace.is_empty() {
506 return Ok(Outcome::fail(
507 FailureCode::Invalid,
508 "Say which workspace to create the repository in.",
509 ));
510 }
511 let Some(role) = a.owner.role_in(&namespace) else {
512 return Ok(Outcome::fail(
513 FailureCode::Forbidden,
514 "You are not a member of that workspace.",
515 ));
516 };
517 // Who may create which: the workspace's member privileges. A
518 // workspace's own token acts as an owner would.
519 let role = if a.owner.kind == PrincipalKind::Workspace { Role::Owner } else { role };
520 if let Some(why) = a.owner.privileges_in(&namespace).creation_refusal(role, a.is_private, &namespace) {
521 return Ok(Outcome::fail(FailureCode::Forbidden, why));
522 }
523 let path = RepoPath { namespace, name };
524 match self.registry.by_path_any(&path).await? {
525 Some((_, None)) => {
526 return Ok(Outcome::fail(
527 FailureCode::Conflict,
528 "That workspace already has a repository with that name.",
529 ));
530 }
531 Some((_, Some(_))) => {
532 return Ok(Outcome::fail(
533 FailureCode::Conflict,
534 format!(
535 "{}/{} was deleted recently and can still be restored, so its name is taken. Restore it, or delete it permanently from the workspace's Recently deleted list.",
536 path.namespace, path.name
537 ),
538 ));
539 }
540 None => {}
541 }
542 // With a credential (a GitHub App installation's token), everything
543 // is copied: every branch and tag. See mirror.rs.
544 let mut credentialed = None;
545 if let (Some(url), Some(token)) = (a.import_url.as_deref(), a.import_token.as_deref()) {
546 let Some(url) = import::clean_url(url) else {
547 return Ok(Outcome::fail(FailureCode::Invalid, "That is not an https repository address."));
548 };
549 let source = mirror::Endpoint::github(&url, token);
550 match mirror::probe(&source).await? {
551 Ok(advertised) => credentialed = Some((source, advertised)),
552 Err(reason) => return Ok(Outcome::fail(FailureCode::Invalid, reason)),
553 }
554 }
555 // An import is fetched before anything is created, so that an
556 // address that does not work leaves nothing behind.
557 let mut imported = None;
558 if let Some(url) = a
559 .import_url
560 .as_deref()
561 .map(str::trim)
562 .filter(|url| !url.is_empty() && credentialed.is_none())
563 {
564 let Some(url) = import::clean_url(url) else {
565 return Ok(Outcome::fail(
566 FailureCode::Invalid,
567 "Give the https address of a public repository, such as https://github.com/owner/repo.",
568 ));
569 };
570 let remote = match import::discover(&url).await? {
571 Ok(remote) => remote,
572 Err(reason) => return Ok(Outcome::fail(FailureCode::Invalid, reason)),
573 };
574 imported = Some((remote, url));
575 }
576 let now = now_ms();
577 let repo = Repo {
578 id: new_id("rep", now),
579 namespace: path.namespace,
580 name: path.name,
581 description: a
582 .description
583 .map(|text| text.trim().to_owned())
584 .filter(|text| !text.is_empty()),
585 is_private: a.is_private,
586 owner_id: a.owner.id.clone(),
587 default_branch: imported
588 .as_ref()
589 .map(|(remote, _)| remote.branch.clone())
590 .or_else(|| credentialed.as_ref().and_then(|(_, advertised)| advertised.default_branch()))
591 .unwrap_or_else(|| "main".to_owned()),
592 fork_of: None,
593 protected: false,
594 created_at: rfc3339(now),
595 topics: Vec::new(),
596 website: None,
597 archived_at: None,
598 };
599 let namespace = match self.place(&repo).await? {
600 Ok(namespace) => namespace,
601 Err(unplaced) => return Ok(Outcome::fail(FailureCode::Conflict, unplaced.message())),
602 };
603 self.registry
604 .claim_store_key(&repo, namespace.as_deref(), &self.store.default_namespace())
605 .await?;
606 self.store
607 .create(
608 &store_key(&repo),
609 repo.description.as_deref(),
610 &repo.default_branch,
611 )
612 .await?;
613 self.registry.insert(&repo).await?;
614 // A repository that was transferred away from this path stops
615 // redirecting here.
616 self.registry
617 .drop_redirect(&RepoPath {
618 namespace: repo.namespace.clone(),
619 name: repo.name.clone(),
620 })
621 .await?;
622 // Every branch and tag the import made, announced as pushes.
623 let mut pushed: Vec<(String, String)> = Vec::new();
624 // A public repository, read with no credential: every branch and
625 // tag is copied too, the default branch the one its HEAD names.
626 if let Some((_, url)) = imported {
627 let access = self
628 .store
629 .open(&store_key(&repo))
630 .await?
631 .access(Scope::Write)
632 .await?;
633 let target = mirror::Endpoint::bearer(&access.remote, &access.token);
634 let copied = mirror::copy(&mirror::Endpoint::anonymous(&url), &target, mirror::Prune::Yes).await?;
635 self.refs_moved(&repo.id).await;
636 match copied {
637 Ok(copied) => pushed = mirror::import_pushes(&copied.updated, &repo.default_branch),
638 Err(reason) => {
639 self.registry.remove(&repo.id).await?;
640 return Ok(Outcome::fail(
641 FailureCode::Invalid,
642 format!("The repository could not be stored: {reason}"),
643 ));
644 }
645 }
646 }
647 if let Some((source, _)) = credentialed {
648 let access = self
649 .store
650 .open(&store_key(&repo))
651 .await?
652 .access(Scope::Write)
653 .await?;
654 let target = mirror::Endpoint::bearer(&access.remote, &access.token);
655 let copied = mirror::copy(&source, &target, mirror::Prune::Yes).await?;
656 self.refs_moved(&repo.id).await;
657 match copied {
658 Ok(copied) => pushed = mirror::import_pushes(&copied.updated, &repo.default_branch),
659 Err(reason) => {
660 self.registry.remove(&repo.id).await?;
661 return Ok(Outcome::fail(
662 FailureCode::Invalid,
663 format!("The repository could not be copied: {reason}"),
664 ));
665 }
666 }
667 }
668 // Whoever creates a repository is an Admin of it, as a role given
669 // to them on it, whatever the workspace's base permission.
670 if a.owner.kind == PrincipalKind::User
671 && let Some(identity) = &self.identity
672 {
673 let granted: Result<bool> = g1t_kit::call(
674 identity,
675 "grant_creator",
676 &g1t_contracts::members::GrantCreatorArgs {
677 repo_id: repo.id.clone(),
678 namespace: repo.namespace.clone(),
679 name: repo.name.clone(),
680 user_id: a.owner.id.clone(),
681 },
682 )
683 .await;
684 if let Err(error) = granted {
685 worker::console_error!("creator of {} not given Admin: {error}", repo.id);
686 }
687 }
688 self.publish(NewEvent {
689 kind: "repo.created",
690 source: SOURCE,
691 repo_id: Some(repo.id.clone()),
692 actor: Some(a.owner.id),
693 data: RepoCreated {
694 repo_id: repo.id.clone(),
695 namespace: repo.namespace.clone(),
696 name: repo.name.clone(),
697 is_private: repo.is_private,
698 },
699 })
700 .await?;
701 for (git_ref, head) in &pushed {
702 self.publish_push(&repo, git_ref, None, head, None).await?;
703 }
704 Ok(Outcome::Ok(repo))
705 }
706
707 /// Where a workspace keeps its data, asked of identity only when an EU
708 /// namespace is configured: without one, every workspace's
709 /// repositories go anywhere and identity is never asked.
710 async fn residency_of(&self, workspace: &str) -> Result<shards::Residency> {
711 if self.placement.eu.is_none() {
712 return Ok(shards::Residency::Anywhere);
713 }
714 let Some(identity) = &self.identity else {
715 return Ok(shards::Residency::Anywhere);
716 };
717 let residency: Option<g1t_contracts::identity::DataResidency> = g1t_kit::call(
718 identity,
719 "workspace_residency",
720 &g1t_contracts::identity::SlugArgs { slug: workspace.to_owned() },
721 )
722 .await?;
723 Ok(match residency {
724 Some(g1t_contracts::identity::DataResidency::Eu) => shards::Residency::Eu,
725 _ => shards::Residency::Anywhere,
726 })
727 }
728
729 /// How each bound namespace stands (namespaces.rs).
730 async fn standings(&self) -> Result<Vec<namespaces::Standing>> {
731 let bound = self.store.namespaces();
732 let default = self.store.default_namespace();
733 let now = now_ms();
734 let config = namespaces::Configured {
735 bound: &bound,
736 default: &default,
737 placement: &self.placement,
738 limits: &self.limits,
739 on_fallback: &|namespace| self.store.on_fallback(&shards::compose(Some(namespace), "x", &default)),
740 writable: &|namespace| self.store.writable(namespace),
741 breaker_open: &|namespace| resilience::open_now(namespace, now),
742 };
743 let (held, recent) = futures_util::future::join(namespaces::held(&self.registry.db), namespaces::recent(&self.registry.db, now)).await;
744 Ok(namespaces::standings(&config, &held?, &recent?))
745 }
746
747 /// The namespace a new repository goes in (shards.rs): its workspace's
748 /// residency, then how each namespace stands, read only when there is
749 /// a choice to make. `Ok(None)` for the default.
750 async fn place(&self, repo: &Repo) -> Result<std::result::Result<Option<String>, shards::Unplaced>> {
751 let residency = self.residency_of(&repo.namespace).await?;
752 let bound = self.store.namespaces();
753 let loads = if residency == shards::Residency::Anywhere && !self.placement.needs_loads(&bound) {
754 // One namespace to choose from at most: nothing to read.
755 bound
756 .iter()
757 .map(|namespace| shards::Load {
758 namespace: namespace.clone(),
759 bound: true,
760 writable: self.store.writable(namespace),
761 ..shards::Load::default()
762 })
763 .collect()
764 } else {
765 let default = self.store.default_namespace();
766 let now = now_ms();
767 let config = namespaces::Configured {
768 bound: &bound,
769 default: &default,
770 placement: &self.placement,
771 limits: &self.limits,
772 on_fallback: &|namespace| self.store.on_fallback(&shards::compose(Some(namespace), "x", &default)),
773 writable: &|namespace| self.store.writable(namespace),
774 breaker_open: &|namespace| resilience::open_now(namespace, now),
775 };
776 namespaces::loads(&self.registry.db, &config, now).await?
777 };
778 Ok(self.placement.choose(&repo.id, residency, &loads))
779 }
780
781 /// `storage_options`: what a workspace may choose about where its
782 /// repositories are kept.
783 fn storage_options(&self) -> StorageOptions {
784 let bound = self.store.namespaces();
785 StorageOptions { eu_available: self.placement.eu_available(&bound, |namespace| self.store.writable(namespace)) }
786 }
787
788 async fn tree(&self, a: TreeArgs) -> Result<Outcome<TreeView>> {
789 let Some(repo) = self.readable(&a.path, &a.viewer).await? else {
790 return Ok(not_found());
791 };
792 let git = self.read_git(&repo).await?;
793 let git_ref = a
794 .git_ref
795 .clone()
796 .unwrap_or_else(|| repo.default_branch.clone());
797
798 let Some(head) = git.log(&git_ref, 1).await?.into_iter().next() else {
799 // An unknown ref is an error; a repo with no commits is just empty.
800 if a.git_ref.is_some() {
801 return Ok(Outcome::fail(
802 FailureCode::NotFound,
803 "No such branch, tag or commit.",
804 ));
805 }
806 return Ok(Outcome::Ok(TreeView {
807 repo,
808 git_ref,
809 path: a.tree_path,
810 head: None,
811 entries: Vec::new(),
812 readme: None,
813 }));
814 };
815
816 let no_directory = || Outcome::fail(FailureCode::NotFound, "No such directory.");
817 let mut entries = git.read_tree(&head.tree_hash).await?;
818 for segment in a.tree_path.split('/').filter(|segment| !segment.is_empty()) {
819 let next = entries.as_ref().and_then(|entries| {
820 entries
821 .iter()
822 .find(|entry| entry.name == segment && entry.kind == EntryKind::Tree)
823 });
824 let Some(next) = next else {
825 return Ok(no_directory());
826 };
827 entries = git.read_tree(&next.hash).await?;
828 }
829 let Some(mut entries) = entries else {
830 return Ok(no_directory());
831 };
832 // Directories first, then by name.
833 entries.sort_by(|a, b| {
834 (b.kind == EntryKind::Tree)
835 .cmp(&(a.kind == EntryKind::Tree))
836 .then_with(|| a.name.cmp(&b.name))
837 });
838
839 let readme_entry = entries
840 .iter()
841 .find(|entry| entry.kind == EntryKind::Blob && is_readme(&entry.name));
842 let readme = match readme_entry {
843 Some(entry) => git.read_blob(&entry.hash).await?.map(|bytes| Readme {
844 name: entry.name.clone(),
845 text: text_of(bytes),
846 }),
847 None => None,
848 };
849 Ok(Outcome::Ok(TreeView {
850 repo,
851 git_ref,
852 path: a.tree_path,
853 head: Some(head),
854 entries,
855 readme,
856 }))
857 }
858
859 async fn blob(&self, a: BlobArgs) -> Result<Outcome<BlobView>> {
860 let Some(repo) = self.readable(&a.path, &a.viewer).await? else {
861 return Ok(not_found());
862 };
863 let bytes = if a.file_path.is_empty() {
864 None
865 } else {
866 let git = self.read_git(&repo).await?;
867 git.read_file(&a.git_ref, &a.file_path).await?
868 };
869 let Some(bytes) = bytes else {
870 return Ok(Outcome::fail(FailureCode::NotFound, "No such file."));
871 };
872 Ok(Outcome::Ok(BlobView {
873 repo,
874 git_ref: a.git_ref,
875 path: a.file_path,
876 size: bytes.len() as u64,
877 text: text_of(bytes),
878 }))
879 }
880
881 async fn blame(&self, a: BlameArgs) -> Result<Outcome<Blame>> {
882 let Some(repo) = self.readable(&a.path, &a.viewer).await? else {
883 return Ok(not_found());
884 };
885 let git = self.read_git(&repo).await?;
886 let git_ref = a.git_ref.unwrap_or_else(|| repo.default_branch.clone());
887 Ok(match blame::blame(&git, &git_ref, &a.file_path).await? {
888 Some(blame) => Outcome::Ok(blame),
889 None => not_found(),
890 })
891 }
892
893 async fn log(&self, a: LogArgs) -> Result<Outcome<Vec<Commit>>> {
894 let Some(repo) = self.readable(&a.path, &a.viewer).await? else {
895 return Ok(not_found());
896 };
897 let git = self.read_git(&repo).await?;
898 let git_ref = a.git_ref.unwrap_or_else(|| repo.default_branch.clone());
899 Ok(Outcome::Ok(git.log(&git_ref, a.limit).await?))
900 }
901
902 /// Which commit last changed each entry of a directory. Kept in this
903 /// colo's cache by repository, head commit and path: a commit's history
904 /// never changes, so an answer is good for as long as it is kept.
905 async fn last_commits(&self, a: g1t_contracts::repos::LastCommitsArgs) -> Result<Outcome<g1t_contracts::repos::LastCommits>> {
906 let Some(repo) = self.readable(&a.path, &a.viewer).await? else {
907 return Ok(not_found());
908 };
909 let git = self.read_git(&repo).await?;
910 let git_ref = a.git_ref.unwrap_or_else(|| repo.default_branch.clone());
911 let Some(head) = git.log(&git_ref, 1).await?.into_iter().next() else {
912 return Ok(Outcome::fail(FailureCode::NotFound, "No such branch, tag or commit."));
913 };
914 let key = format!(
915 "https://last-commits.g1t.internal/{}/{}/{}",
916 repo.id,
917 head.hash,
918 a.tree_path.split('/').map(urlencoding_segment).collect::<Vec<_>>().join("/")
919 );
920 let cache = worker::Cache::default();
921 if let Ok(Some(mut kept)) = cache.get(key.as_str(), false).await {
922 if let Ok(found) = kept.json::<g1t_contracts::repos::LastCommits>().await {
923 return Ok(Outcome::Ok(found));
924 }
925 }
926 // Asked with a budget: past it, what was found so far, not kept.
927 let started = worker::Date::now().as_millis();
928 let budget = a.budget_ms;
929 let out_of_time = move || budget.is_some_and(|budget| worker::Date::now().as_millis().saturating_sub(started) > budget);
930 let (entries, complete) = last_commits::last_commits(&git, &head.hash, &a.tree_path, &out_of_time).await?;
931 let stopped = out_of_time();
932 let found = g1t_contracts::repos::LastCommits { entries, complete };
933 if stopped && !found.complete {
934 return Ok(Outcome::Ok(found));
935 }
936 if let Ok(mut response) = worker::Response::from_json(&found) {
937 let _ = response.headers_mut().set("cache-control", "max-age=604800");
938 let _ = cache.put(key.as_str(), response).await;
939 }
940 Ok(Outcome::Ok(found))
941 }
942
943 /// The repository's tags, newest commit first, at most 100.
944 async fn tags(&self, a: g1t_contracts::repos::TagsArgs) -> Result<Outcome<Vec<g1t_contracts::repos::Tag>>> {
945 let Some(repo) = self.readable(&a.path, &a.viewer).await? else {
946 return Ok(not_found());
947 };
948 let git = self.store.open(&store_key(&repo)).await?;
949 let access = git.access(Scope::Read).await?;
950 let named: Vec<(String, String)> = refs::heads_and_tags(refs::all(&access).await?)
951 .into_iter()
952 .filter_map(|(name, hash)| name.strip_prefix("refs/tags/").map(|tag| (tag.to_owned(), hash)))
953 .collect();
954 let read = self.read_git(&repo).await?;
955 let commits = futures_util::future::join_all(named.iter().take(MAX_TAGS_READ).map(|(_, hash)| read.log(hash, 1))).await;
956 let mut tags: Vec<g1t_contracts::repos::Tag> = named
957 .into_iter()
958 .zip(commits.into_iter().map(|found| found.ok().and_then(|list| list.into_iter().next())).chain(std::iter::repeat(None)))
959 .map(|((name, _), commit)| g1t_contracts::repos::Tag { name, commit })
960 .collect();
961 tags.sort_by(|a, b| {
962 let at = |tag: &g1t_contracts::repos::Tag| tag.commit.as_ref().map(|c| c.authored_at.clone()).unwrap_or_default();
963 at(b).cmp(&at(a)).then_with(|| b.name.cmp(&a.name))
964 });
965 tags.truncate(MAX_TAGS_READ);
966 Ok(Outcome::Ok(tags))
967 }
968
969 /// The repository's branches, default branch first.
970 async fn branches(&self, a: BranchesArgs) -> Result<Outcome<Vec<Branch>>> {
971 let Some(repo) = self.readable(&a.path, &a.viewer).await? else {
972 return Ok(not_found());
973 };
974 let mut branches = self.read_git(&repo).await?.branches().await?;
975 branches.sort_by_key(|branch| branch.name != repo.default_branch);
976 Ok(Outcome::Ok(branches))
977 }
978
979 /// Whether a pull request's source lacks commits that the branch it
980 /// would merge into has.
981 async fn behind(&self, a: BehindArgs) -> Result<bool> {
982 let Some(source) = self.registry.by_id(&a.source_id).await? else {
983 return Ok(false);
984 };
985 let target = match &source.fork_of {
986 Some(id) => self.registry.by_id(id).await?,
987 None => Some(source.clone()),
988 };
989 let Some(target) = target else {
990 return Ok(false);
991 };
992 let branch = a.branch.unwrap_or_else(|| target.default_branch.clone());
993 let target_branch = a.target_branch.unwrap_or_else(|| target.default_branch.clone());
994 let target_head = self
995 .read_git(&target)
996 .await?
997 .log(&target_branch, 1)
998 .await?
999 .into_iter()
1000 .next()
1001 .map(|commit| commit.hash);
1002 let Some(target_head) = target_head else {
1003 return Ok(false);
1004 };
1005 let source_git = self.read_git(&source).await?;
1006 let history = source_git.log(&branch, MAX_ANCESTRY).await?;
1007 if history.is_empty() {
1008 return Ok(false);
1009 }
1010 Ok(!descends_from(&source_git, &history, &target_head).await?)
1011 }
1012
1013 /// The files a pull request's source and the default branch it would
1014 /// merge into each changed since they last agreed. Where the two lists
1015 /// share no file, the merge cannot conflict; where they do, it may.
1016 async fn divergence(&self, a: BehindArgs) -> Result<Option<Divergence>> {
1017 let Some(source) = self.registry.by_id(&a.source_id).await? else {
1018 return Ok(None);
1019 };
1020 let target = match &source.fork_of {
1021 Some(id) => self.registry.by_id(id).await?,
1022 None => Some(source.clone()),
1023 };
1024 let Some(target) = target else {
1025 return Ok(None);
1026 };
1027 let branch = a.branch.unwrap_or_else(|| target.default_branch.clone());
1028 let target_branch = a.target_branch.unwrap_or_else(|| target.default_branch.clone());
1029 let source_git = self.read_git(&source).await?;
1030 let target_git = self.read_git(&target).await?;
1031 // The target's side is the same for every pull request into it, and
1032 // worked out once per head (coalesce.rs).
1033 let (history, side) = futures_util::future::try_join(
1034 source_git.log(&branch, MAX_ANCESTRY),
1035 self.target_side(&target, &target_git, &target_branch),
1036 )
1037 .await?;
1038 let target_history = &side.history;
1039 let (Some(head), Some(base)) = (history.first(), target_history.first()) else {
1040 return Ok(None);
1041 };
1042 let behind = !descends_from(&source_git, &history, &base.hash).await?;
1043 let merge_base = nearest_ancestor_in(&source_git, &history, &side.shared).await?;
1044 let mut divergence = Divergence {
1045 head: head.hash.clone(),
1046 base: base.hash.clone(),
1047 merge_base: merge_base.clone(),
1048 behind,
1049 ..Divergence::default()
1050 };
1051 let merge_base_tree = match &merge_base {
1052 Some(hash) => target_history
1053 .iter()
1054 .find(|commit| commit.hash == *hash)
1055 .map(|commit| commit.tree_hash.clone()),
1056 None => None,
1057 };
1058 let Some(merge_base_tree) = merge_base_tree else {
1059 // No common history to compare from: say nothing is known.
1060 divergence.truncated = true;
1061 return Ok(Some(divergence));
1062 };
1063 let (ours, truncated_ours) =
1064 diff::changed_paths(&source_git, Some(&merge_base_tree), &head.tree_hash).await?;
1065 divergence.ours = ours;
1066 divergence.truncated = truncated_ours;
1067 if behind {
1068 let now = now_ms();
1069 let key = (target.id.clone(), merge_base_tree.clone(), base.tree_hash.clone());
1070 let (theirs, truncated_theirs) = match THEIRS.with(|memo| memo.borrow().get(&key, now)) {
1071 Some(kept) => kept,
1072 None => {
1073 let found = diff::changed_paths(&target_git, Some(&merge_base_tree), &base.tree_hash).await?;
1074 THEIRS.with(|memo| memo.borrow_mut().put(key, found.clone(), now));
1075 found
1076 }
1077 };
1078 divergence.theirs = theirs;
1079 divergence.truncated |= truncated_theirs;
1080 }
1081 Ok(Some(divergence))
1082 }
1083
1084 /// A target branch's history from its head, worked out once per head
1085 /// for every pull request asking about it (coalesce.rs). The head is
1086 /// read under the refs version; the history by its hash, which the
1087 /// object cache keeps for good.
1088 async fn target_side<R: GitRepo>(&self, target: &Repo, git: &R, branch: &str) -> Result<Rc<coalesce::TargetSide>> {
1089 let now = now_ms();
1090 let key = refs_cache::usable(registry::refs_state(&target.id), now)
1091 .map(|version| (target.id.clone(), branch.to_owned(), version));
1092 if let Some(key) = &key
1093 && let Some(side) = TARGETS.with(|memo| memo.borrow().get(key, now))
1094 {
1095 return Ok(side);
1096 }
1097 let history = match git.log(branch, 1).await?.first() {
1098 Some(head) => git.log(&head.hash, MAX_ANCESTRY).await?,
1099 None => Vec::new(),
1100 };
1101 let side = coalesce::TargetSide::new(history);
1102 if let Some(key) = key {
1103 TARGETS.with(|memo| memo.borrow_mut().put(key, side.clone(), now));
1104 }
1105 Ok(side)
1106 }
1107
1108 async fn head(&self, a: HeadArgs) -> Result<Option<String>> {
1109 let Some(repo) = self.registry.by_id(&a.repo_id).await? else {
1110 return Ok(None);
1111 };
1112 let branch = if a.branch.is_empty() { &repo.default_branch } else { &a.branch };
1113 let git = self.read_git(&repo).await?;
1114 Ok(git
1115 .log(branch, 1)
1116 .await?
1117 .into_iter()
1118 .next()
1119 .map(|commit| commit.hash))
1120 }
1121
1122 async fn delete_branch(&self, a: DeleteBranchArgs) -> Result<Outcome<bool>> {
1123 if !a.branch.starts_with(G1T_BRANCH_PREFIX) {
1124 return Ok(Outcome::fail(
1125 FailureCode::Forbidden,
1126 "Only branches g1t made for itself can be deleted this way.",
1127 ));
1128 }
1129 let Some(repo) = self.registry.by_id(&a.repo_id).await? else {
1130 return Ok(not_found());
1131 };
1132 let repo = match self.unpaused(repo).await? {
1133 Ok(repo) => repo,
1134 Err((code, message)) => return Ok(Outcome::fail(code, message)),
1135 };
1136 self.live(&repo).await?;
1137 let git = self.store.open(&store_key(&repo)).await?;
1138 let Some(old) = git
1139 .branches()
1140 .await?
1141 .into_iter()
1142 .find(|branch| branch.name == a.branch)
1143 .map(|branch| branch.hash)
1144 else {
1145 return Ok(Outcome::Ok(false));
1146 };
1147 let access = git.access(Scope::Write).await?;
1148 let deleted = land::delete_ref(&access, &a.branch, &old).await?;
1149 self.refs_moved(&repo.id).await;
1150 if let Err(reason) = deleted {
1151 return Ok(Outcome::fail(
1152 FailureCode::Conflict,
1153 format!("{} could not be deleted: {reason}", a.branch),
1154 ));
1155 }
1156 Ok(Outcome::Ok(true))
1157 }
1158
1159 async fn fork_for_pull(&self, a: ForkArgs) -> Result<Outcome<Repo>> {
1160 let viewer = Some(a.actor.clone());
1161 let Some(source) = self
1162 .registry
1163 .by_id(&a.source_id)
1164 .await?
1165 .filter(|repo| can_read(repo, &viewer))
1166 else {
1167 return Ok(not_found());
1168 };
1169 if let Some((code, message)) = lifecycle::archived_refusal(&source) {
1170 return Ok(Outcome::fail(code, message));
1171 }
1172 // Its working copy is made in its namespace: not while it moves.
1173 let source = match self.unpaused(source).await? {
1174 Ok(source) => source,
1175 Err((code, message)) => return Ok(Outcome::fail(code, message)),
1176 };
1177 let now = now_ms();
1178 let fork = Repo {
1179 id: new_id("rep", now),
1180 namespace: PULLS_NAMESPACE.to_owned(),
1181 name: a.pull_id.clone(),
1182 description: None,
1183 // A fork is exactly as visible as the repo it came from.
1184 is_private: source.is_private,
1185 owner_id: a.actor.id.clone(),
1186 default_branch: source.default_branch.clone(),
1187 fork_of: Some(source.id.clone()),
1188 protected: false,
1189 created_at: rfc3339(now),
1190 topics: Vec::new(),
1191 website: None,
1192 archived_at: None,
1193 };
1194 // Artifacts forks within a namespace: the copy goes where its
1195 // repository is.
1196 let (namespace, _) = store::locate(&store_key(&source));
1197 self.registry
1198 .claim_store_key(&fork, Some(&namespace), &self.store.default_namespace())
1199 .await?;
1200 self.store
1201 .open(&store_key(&source))
1202 .await?
1203 .fork(&store_key(&fork))
1204 .await?;
1205 self.registry.insert(&fork).await?;
1206 self.publish(NewEvent {
1207 kind: "repo.forked",
1208 source: SOURCE,
1209 repo_id: Some(source.id.clone()),
1210 actor: Some(a.actor.id),
1211 data: RepoForked {
1212 repo_id: fork.id.clone(),
1213 source_repo_id: source.id,
1214 pull_id: a.pull_id,
1215 },
1216 })
1217 .await?;
1218 Ok(Outcome::Ok(fork))
1219 }
1220
1221 async fn git_access(&self, a: GitAccessArgs) -> Result<Outcome<GitAccess>> {
1222 let found = self.registry.by_path(&a.path).await?;
1223 Ok(match self.authorize_git(&a.path, &a.viewer, a.service, found).await? {
1224 Outcome::Ok(repo) => {
1225 self.live(&repo).await?;
1226 let write = a.service == GitService::ReceivePack;
1227 if write {
1228 // A push with this credential would not pass through
1229 // here, so nothing that lists the refs is kept until it
1230 // has expired (see refs_cache.rs).
1231 let until = now_ms() + store::CREDENTIAL_LIFE_MS + 60_000;
1232 if let Err(error) = self.registry.refs_open(&repo.id, until).await {
1233 // Before the column exists nothing is kept anyway.
1234 if registry::refs_state(&repo.id).is_some() {
1235 return Err(error);
1236 }
1237 }
1238 }
1239 let scope = if write { Scope::Write } else { Scope::Read };
1240 Outcome::Ok(self.store.handout(&store_key(&repo), scope).await?)
1241 }
1242 Outcome::Fail(failure) => Outcome::Fail(failure),
1243 })
1244 }
1245
1246 /// The repository at `path` (`found`, as just read), if the viewer may
1247 /// use `service` on it: fetch from it, or push to it. A push to a path
1248 /// with nothing there makes the repository, in a workspace the pusher
1249 /// belongs to.
1250 async fn authorize_git(
1251 &self,
1252 path: &RepoPath,
1253 viewer: &Viewer,
1254 service: GitService,
1255 found: Option<Repo>,
1256 ) -> Result<Outcome<Repo>> {
1257 let mut a = GitAccessArgs {
1258 path: path.clone(),
1259 viewer: viewer.clone(),
1260 service,
1261 };
1262 let write = a.service == GitService::ReceivePack;
1263 // An access token: pushing needs code:write, reading a private
1264 // repository code:read. A public repository reads as it would for
1265 // anyone. Which repositories a token reaches is its owner's, checked
1266 // below as for anyone.
1267 if let Some(access) = a.viewer.as_ref().and_then(|user| user.token.as_deref()).cloned() {
1268 // A workflow job's token reaches its own repository only, and
1269 // the working copies of that repository's pull requests, where
1270 // their heads are.
1271 if let Some(refused) = g1t_contracts::scopes::decide_repo(&access, &format!("{}/{}", path.namespace, path.name)) {
1272 let source = match found.as_ref().and_then(|repo| repo.fork_of.as_deref()) {
1273 Some(source_id) => self.registry.by_id(source_id).await?,
1274 None => None,
1275 };
1276 if !source.is_some_and(|source| access.reaches(&format!("{}/{}", source.namespace, source.name))) {
1277 return Ok(Outcome::fail(
1278 FailureCode::Forbidden,
1279 format!("{}\n", refused.reason.unwrap_or_default()),
1280 ));
1281 }
1282 }
1283 let public = found.as_ref().is_some_and(|repo| !repo.is_private);
1284 let decision = g1t_contracts::scopes::decide_git(&access, write, public);
1285 if !decision.allowed {
1286 return Ok(Outcome::fail(
1287 FailureCode::Forbidden,
1288 format!("{}\n", decision.reason.unwrap_or_default()),
1289 ));
1290 }
1291 if !write && !access.allows(g1t_contracts::scopes::Scope::CodeRead) {
1292 a.viewer = None;
1293 }
1294 }
1295
1296 // Anonymous callers are asked to authenticate whether or not the repo
1297 // exists, so private repos cannot be told apart from missing ones.
1298 let denied = || match &a.viewer {
1299 Some(_) => not_found(),
1300 None => Outcome::fail(FailureCode::Unauthenticated, "Authentication required."),
1301 };
1302 // An agent's token works through the API only: its sandbox has its
1303 // own way to push, to its own pull request.
1304 if a.viewer.as_ref().is_some_and(|user| user.kind == PrincipalKind::Agent) {
1305 return Ok(Outcome::fail(
1306 FailureCode::Forbidden,
1307 "A g1t agent's token cannot be used with git.",
1308 ));
1309 }
1310 if let (true, Some(user)) = (write, &a.viewer)
1311 && !user.verified
1312 {
1313 return Ok(Outcome::fail(FailureCode::Forbidden, UNVERIFIED));
1314 }
1315 let repo = match found {
1316 Some(repo) => {
1317 let allowed = if write {
1318 can_write(&repo, &a.viewer)
1319 } else {
1320 self.may_read(&repo, &a.viewer).await?
1321 };
1322 if !allowed {
1323 return Ok(denied());
1324 }
1325 // An archived repository, or a pull request's copy of one,
1326 // is read-only.
1327 if write {
1328 let archived = match &repo.fork_of {
1329 Some(source) => self.registry.by_id(source).await?,
1330 None => Some(repo.clone()),
1331 };
1332 match archived {
1333 Some(source) => {
1334 if let Some((code, message)) = lifecycle::archived_refusal(&source) {
1335 return Ok(Outcome::fail(code, format!("{message}\n")));
1336 }
1337 }
1338 // The repository it was copied from is deleted.
1339 None => return Ok(denied()),
1340 }
1341 }
1342 repo
1343 }
1344 None => {
1345 // Push to create, in a workspace the pusher belongs to.
1346 let owner = a
1347 .viewer
1348 .as_ref()
1349 .filter(|user| write && user.is_member(&a.path.namespace.to_lowercase()));
1350 let Some(owner) = owner else {
1351 return Ok(denied());
1352 };
1353 let created = self.create(push_to_create(owner, &a.path)).await?;
1354 match created {
1355 Outcome::Ok(repo) => repo,
1356 Outcome::Fail(failure) => return Ok(Outcome::Fail(failure)),
1357 }
1358 }
1359 };
1360 // A push, or a credential to push with, waits while the repository
1361 // moves between namespaces (moves.rs), and goes to where it is now.
1362 if write {
1363 return Ok(match self.unpaused(repo).await? {
1364 Ok(repo) => Outcome::Ok(repo),
1365 Err((code, message)) => Outcome::fail(code, format!("{message}\n")),
1366 });
1367 }
1368 Ok(Outcome::Ok(repo))
1369 }
1370
1371 async fn land(&self, a: LandArgs) -> Result<Outcome<Landed>> {
1372 let actor: Viewer = Some(a.actor.clone());
1373 let Some(source) = self.registry.by_id(&a.source_id).await? else {
1374 return Ok(not_found());
1375 };
1376 // A fork lands on the repository it came from; a branch on its own.
1377 let target = match &source.fork_of {
1378 Some(id) => self.registry.by_id(id).await?,
1379 None => Some(source.clone()),
1380 };
1381 let Some(target) = target.filter(|repo| can_read(repo, &actor)) else {
1382 return Ok(not_found());
1383 };
1384 if !registry::can(&target, &actor, Capability::Merge) {
1385 return Ok(Outcome::fail(
1386 FailureCode::Forbidden,
1387 access::needs(Capability::Merge, &format!("{}/{}", target.namespace, target.name)),
1388 ));
1389 }
1390 if !a.actor.verified {
1391 return Ok(Outcome::fail(FailureCode::Forbidden, UNVERIFIED));
1392 }
1393 if let Some((code, message)) = lifecycle::archived_refusal(&target) {
1394 return Ok(Outcome::fail(code, message));
1395 }
1396 // Moving between namespaces: wait for it (moves.rs). Both are read
1397 // again once it is done, for their new keys.
1398 let (source, target) = match (self.unpaused(source).await?, self.unpaused(target).await?) {
1399 (Ok(source), Ok(target)) => (source, target),
1400 (Err((code, message)), _) | (_, Err((code, message))) => return Ok(Outcome::fail(code, message)),
1401 };
1402
1403 let branch = &a.target_branch.clone().unwrap_or_else(|| target.default_branch.clone());
1404 let from_fork = source.id != target.id;
1405 let source_branch = match a.branch {
1406 Some(name) if !from_fork && name == *branch => {
1407 return Ok(Outcome::fail(
1408 FailureCode::Invalid,
1409 format!("{branch} cannot be merged into itself."),
1410 ));
1411 }
1412 Some(name) => name,
1413 None if from_fork => branch.clone(),
1414 None => {
1415 return Ok(Outcome::fail(
1416 FailureCode::Invalid,
1417 "Say which branch to merge.",
1418 ));
1419 }
1420 };
1421
1422 self.live(&source).await?;
1423 let source_git = self.store.open(&store_key(&source)).await?;
1424 let target_git = self.store.open(&store_key(&target)).await?;
1425 let history = source_git.log(&source_branch, MAX_ANCESTRY).await?;
1426 let Some(new) = history.first().map(|commit| commit.hash.clone()) else {
1427 return Ok(Outcome::fail(
1428 FailureCode::Conflict,
1429 "This pull request has no commits to merge.",
1430 ));
1431 };
1432 let old = target_git
1433 .log(branch, 1)
1434 .await?
1435 .into_iter()
1436 .next()
1437 .map(|commit| commit.hash);
1438
1439 if old.as_deref() == Some(new.as_str()) {
1440 return Ok(Outcome::Ok(Landed {
1441 commit: new,
1442 previous: None,
1443 }));
1444 }
1445 // Moving the branch to a commit that does not descend from its
1446 // current head would discard whatever landed in between.
1447 if let Some(old) = &old
1448 && !descends_from(&source_git, &history, old).await?
1449 {
1450 let remedy = if from_fork {
1451 format!("Pull {branch} into the pull request's fork, push, and merge again.")
1452 } else {
1453 format!("Merge {branch} into {source_branch}, push, and merge again.")
1454 };
1455 return Ok(Outcome::fail(
1456 FailureCode::Conflict,
1457 format!("{branch} has moved since this pull request was opened. {remedy}"),
1458 ));
1459 }
1460
1461 // For a branch the objects are already in the target; sending them
1462 // again is harmless and keeps one way of moving a ref.
1463 let source_access = source_git.access(Scope::Read).await?;
1464 let target_access = target_git.access(Scope::Write).await?;
1465 let pushed =
1466 land::fast_forward(&source_access, &target_access, branch, old.as_deref(), &new)
1467 .await?;
1468 self.refs_moved(&target.id).await;
1469 if let Err(reason) = pushed {
1470 // Most often another pull request landed between the check and the push.
1471 return Ok(Outcome::fail(
1472 FailureCode::Conflict,
1473 format!("{branch} could not be updated: {reason}"),
1474 ));
1475 }
1476 self.publish_push(
1477 &target,
1478 &format!("refs/heads/{branch}"),
1479 old.as_deref(),
1480 &new,
1481 Some(&a.actor),
1482 )
1483 .await?;
1484 Ok(Outcome::Ok(Landed {
1485 commit: new,
1486 previous: old,
1487 }))
1488 }
1489
1490 async fn compare(&self, a: CompareArgs) -> Result<Outcome<Comparison>> {
1491 let Some(repo) = self
1492 .visible(self.registry.by_id(&a.repo_id).await?, &a.viewer)
1493 .await?
1494 else {
1495 return Ok(not_found());
1496 };
1497 let git = self.read_git(&repo).await?;
1498 let head_ref = a.head.as_deref().unwrap_or(&repo.default_branch);
1499 // A pull request into another branch is compared from where it
1500 // left that branch.
1501 let base_branch = a.base_branch.clone();
1502 // The head's history is only searched when the base is worked out
1503 // from another branch.
1504 let depth = if a.base.is_some() || is_commit_hash(head_ref) { 1 } else { MAX_ANCESTRY };
1505 let history = git.log(head_ref, depth).await?;
1506 let Some(head) = history.first() else {
1507 return Ok(Outcome::fail(
1508 FailureCode::Conflict,
1509 "There are no commits to compare.",
1510 ));
1511 };
1512
1513 // Where the head's history meets the default branch of `against`,
1514 // or the branch asked for.
1515 let shared_with = async |against: &Repo| -> Result<Option<String>> {
1516 let against_git = self.read_git(against).await?;
1517 let branch = base_branch.as_deref().unwrap_or(&against.default_branch);
1518 let shared: HashSet<String> = against_git
1519 .log(branch, MAX_ANCESTRY)
1520 .await?
1521 .into_iter()
1522 .map(|commit| commit.hash)
1523 .collect();
1524 nearest_ancestor_in(&git, &history, &shared).await
1525 };
1526 let base = match (a.base, &repo.fork_of) {
1527 (Some(base), _) => Some(base),
1528 // A fork is compared with the last commit it shares with the
1529 // repository it came from.
1530 (None, Some(target_id)) => match self.registry.by_id(target_id).await? {
1531 Some(target) => shared_with(&target).await?,
1532 None => None,
1533 },
1534 // A branch, with the point where it left the default branch.
1535 // A single commit, with its first parent.
1536 (None, None) if is_commit_hash(head_ref) => head.parents.first().cloned(),
1537 (None, None) if head_ref != base_branch.as_deref().unwrap_or(&repo.default_branch) => {
1538 shared_with(&repo).await?
1539 }
1540 (None, None) => head.parents.first().cloned(),
1541 };
1542 let base_tree = match &base {
1543 Some(base) => git
1544 .log(base, 1)
1545 .await?
1546 .into_iter()
1547 .next()
1548 .map(|commit| commit.tree_hash),
1549 None => None,
1550 };
1551 let (files, truncated) =
1552 diff::compare_trees(&git, base_tree.as_deref(), &head.tree_hash).await?;
1553 Ok(Outcome::Ok(Comparison {
1554 base,
1555 head: head.hash.clone(),
1556 files,
1557 truncated,
1558 }))
1559 }
1560
1561 /// Reports that `git_ref` of `repo` (a full ref) now points to `after`,
1562 /// moved by `actor` (marked when that was a workflow job's token).
1563 async fn publish_push(
1564 &self,
1565 repo: &Repo,
1566 git_ref: &str,
1567 before: Option<&str>,
1568 after: &str,
1569 actor: Option<&User>,
1570 ) -> Result<()> {
1571 let caused_by_job = actor.and_then(g1t_contracts::events::job_run_of).map(str::to_owned);
1572 self.publish_git_push(repo, git_ref, before, after, actor.map(|user| user.id.clone()), false, caused_by_job).await
1573 }
1574
1575 /// `publish_push`, saying whether the push reached the store without
1576 /// being scanned for secrets first.
1577 #[allow(clippy::too_many_arguments)]
1578 async fn publish_git_push(
1579 &self,
1580 repo: &Repo,
1581 git_ref: &str,
1582 before: Option<&str>,
1583 after: &str,
1584 actor: Option<String>,
1585 unscanned: bool,
1586 caused_by_job: Option<String>,
1587 ) -> Result<()> {
1588 self.publish(NewEvent {
1589 kind: "git.push",
1590 source: SOURCE,
1591 repo_id: Some(repo.id.clone()),
1592 actor,
1593 data: GitPush {
1594 repo_id: repo.id.clone(),
1595 git_ref: git_ref.to_owned(),
1596 before: before.map(str::to_owned),
1597 after: after.to_owned(),
1598 default_branch: git_ref.strip_prefix("refs/heads/")
1599 == Some(repo.default_branch.as_str()),
1600 unscanned,
1601 caused_by_job,
1602 },
1603 })
1604 .await
1605 }
1606
1607 /// Git over HTTPS. Only what decides the answer happens before it:
1608 /// the repository, who is asking and whether they may, the free
1609 /// workspace limits, push protection, and the store's own answer. The
1610 /// audit entry and what a push changed are recorded once git has its
1611 /// answer. Each answer says how long its steps took (`Server-Timing`).
1612 async fn git_http(&self, request: Request, env: &Env, ctx: &Context) -> Result<Response> {
1613 let mut timing = git_http::Timing::start();
1614 let Some(git) = git_http::parse(&request.url()?) else {
1615 return Response::error("Not found", 404);
1616 };
1617 let response = match self.answer_git(request, &git, env, ctx, &mut timing).await {
1618 Ok(response) => response,
1619 // The git store is busy: git hears when to try again.
1620 Err(error) => match resilience::busy(&error.to_string()) {
1621 Some(busy) => git_http::busy_response(busy)?,
1622 None => return Err(error),
1623 },
1624 };
1625 timing.apply(response)
1626 }
1627
1628 async fn answer_git(
1629 &self,
1630 request: Request,
1631 git: &git_http::GitRequest,
1632 env: &Env,
1633 ctx: &Context,
1634 timing: &mut git_http::Timing,
1635 ) -> Result<Response> {
1636 let write = git.service == GitService::ReceivePack;
1637 let get = request.method() == Method::Get;
1638 let identity = env.service("IDENTITY")?;
1639 // The repository and the caller's credentials, at once. A fetch may
1640 // go by the row as read a moment ago, for the same clone's next
1641 // request; a push always reads it. Anonymous callers cost nothing.
1642 let lookup = async {
1643 if write {
1644 self.registry.by_path(&git.path).await
1645 } else {
1646 self.registry.by_path_recent(&git.path).await
1647 }
1648 };
1649 let (found, viewer) =
1650 futures_util::future::join(lookup, git_http::viewer(&request, &identity)).await;
1651 let mut found = found?;
1652 timing.mark("repo");
1653 // A workspace alias staff set (identity's aliases.rs: `g1t` for
1654 // `flagon-io`) is answered in place, as the repository under the
1655 // workspace's slug: pushes and some clients do not follow
1656 // redirects. Everything after this sees only the workspace's slug.
1657 let aliased = match found {
1658 Some(_) => None,
1659 None => git_http::aliased(git, &identity).await?,
1660 };
1661 if let Some(aliased) = &aliased {
1662 found = if write {
1663 self.registry.by_path(&aliased.path).await?
1664 } else {
1665 self.registry.by_path_recent(&aliased.path).await?
1666 };
1667 timing.mark("alias");
1668 }
1669 let git = aliased.as_ref().unwrap_or(git);
1670 if found.is_none() {
1671 // A workspace that was renamed: git follows a redirect when it
1672 // first asks for refs, and uses the new address from then on.
1673 // A repository transferred to another workspace: the same, to
1674 // its new path. Fetches and pushes both follow either.
1675 let url = request.url()?;
1676 let (renamed, moved) = futures_util::future::join(
1677 git_http::renamed(&url, &identity),
1678 self.registry.resolve_moved(&git.path),
1679 )
1680 .await;
1681 timing.mark("moved");
1682 if let Some(location) = renamed? {
1683 return git_http::moved(&location, get);
1684 }
1685 if let Some(now) = moved?
1686 && let Some(location) = git_http::transferred(&url, &now)
1687 {
1688 return git_http::moved(&location, get);
1689 }
1690 }
1691 let viewer = viewer?;
1692 // A run credential is checked against its grants, then acts as the
1693 // person it works for. See run_access.rs.
1694 let (request, viewer, audit) = match self.admit_git(request, git, viewer, found.as_ref()).await? {
1695 run_access::Admitted::Go { request, viewer, entry } => (request, viewer, entry),
1696 run_access::Admitted::Refused(response) => return Ok(response),
1697 };
1698 let mut after = AfterGit {
1699 audit,
1700 status: 0,
1701 message: None,
1702 push: None,
1703 };
1704 let repo = match self.authorize_git(&git.path, &viewer, git.service, found).await? {
1705 Outcome::Ok(repo) => repo,
1706 refused => {
1707 let response = git_http::refuse(refused)?;
1708 after.ended(response.status_code(), None);
1709 after.spawn(env, ctx);
1710 return Ok(response);
1711 }
1712 };
1713 // A pull request's working copy removed after it closed is made
1714 // again before git uses it (forks.rs).
1715 self.live(&repo).await?;
1716 timing.mark("access");
1717 // Clones check out the default branch g1t keeps, which can have
1718 // changed since the store made the repository.
1719 let default_branch = repo.fork_of.is_none().then(|| repo.default_branch.clone());
1720 let key = store_key(&repo);
1721 let scope = if write { Scope::Write } else { Scope::Read };
1722 let mut request = request;
1723 let protocol = refs_cache::protocol(request.headers().get("git-protocol")?.as_deref());
1724 // A fetch's POST is read here, to tell an `ls-refs` from a fetch of
1725 // objects; the store would have it read in full anyway.
1726 let body = if !write && !get { Some(request.bytes().await?) } else { None };
1727 // What it asks the store, for the meters (meters.rs).
1728 let call = git_ops::classify(git.service, git.endpoint, get, body.as_deref());
1729 // Answers kept from the usual store may name refs the fallback
1730 // store does not have (fallback.rs): none are used, or kept.
1731 let fallback = self.store.on_fallback(&key);
1732 // An answer that lists refs may have been kept: see refs_cache.rs.
1733 let kept_key = refs_cache::kind(git, get, protocol, body.as_deref())
1734 .filter(|_| !fallback)
1735 .zip(refs_cache::usable(registry::refs_state(&repo.id), now_ms()))
1736 .map(|(kind, version)| {
1737 refs_cache::Key::new(&repo.id, version, default_branch.as_deref(), protocol, &kind)
1738 });
1739 // A fresh clone's pack may have been kept too: see pack_cache.rs.
1740 // Under the same refs version, so never across a change to them.
1741 let pack_key = self
1742 .packs
1743 .as_ref()
1744 .filter(|_| !fallback)
1745 .and_then(|_| {
1746 let encoding = request.headers().get("content-encoding").ok().flatten();
1747 pack_cache::cacheable(git, get, protocol, encoding.as_deref(), body.as_deref())
1748 })
1749 .zip(refs_cache::usable(registry::refs_state(&repo.id), now_ms()))
1750 .map(|(normalized, version)| pack_cache::Key::new(&repo.id, version, &normalized));
1751 // A kept answer and the free workspace limits, with a kept
1752 // credential looked up alongside. A kept answer goes back without
1753 // waiting for the credential, which it does not need.
1754 let ((answer, pack, limited), kept_access) = {
1755 let shared = self.shared.as_deref();
1756 let answer_and_limits = std::pin::pin!(futures_util::future::join3(
1757 async {
1758 match &kept_key {
1759 Some(kept_key) => refs_cache::get(shared, kept_key).await,
1760 None => None,
1761 }
1762 },
1763 async {
1764 match (&pack_key, self.packs.as_deref()) {
1765 (Some(pack_key), Some(packs)) => pack_cache::get(packs, pack_key).await,
1766 _ => None,
1767 }
1768 },
1769 self.git_limits(call, git, &repo, env),
1770 ));
1771 let kept_access = std::pin::pin!(self.store.kept_access(&key, scope));
1772 match futures_util::future::select(answer_and_limits, kept_access).await {
1773 futures_util::future::Either::Left((first, kept_access)) => {
1774 let answered = first.0.is_some() || first.1.is_some() || matches!(first.2, Ok(Some(_)) | Err(_));
1775 (first, if answered { None } else { kept_access.await })
1776 }
1777 futures_util::future::Either::Right((kept_access, first)) => (first.await, kept_access),
1778 }
1779 };
1780 timing.mark("kept");
1781 // A kept pack first: it never reaches the store, so it is never an
1782 // operation, and a free workspace past its operation cap still gets
1783 // it. (The other limits are a push's, and a pack is only a fetch.)
1784 if let Some(kept) = pack {
1785 timing.note("pack", "hit");
1786 let sent = body.as_ref().map_or(0, |body| body.len() as u64);
1787 meters::record(pack_cache::HIT, &key, sent, kept.size);
1788 after.ended(200, None);
1789 after.spawn(env, ctx);
1790 return kept.response();
1791 }
1792 if let Some((response, status, message)) = limited? {
1793 after.ended(status, Some(message.to_owned()));
1794 after.spawn(env, ctx);
1795 return Ok(response);
1796 }
1797 if pack_key.is_some() {
1798 timing.note("pack", "miss");
1799 }
1800 if let (Some((entry, found)), Some(kept_key)) = (answer, &kept_key) {
1801 timing.note("refs", found.as_str());
1802 if found == refs_cache::Found::Shared {
1803 let (kept_key, entry) = (kept_key.clone(), entry.clone());
1804 ctx.wait_until(async move { refs_cache::keep_in_colo(&kept_key, &entry).await });
1805 }
1806 // Never reached the store: never an operation.
1807 meters::record(call.cached_meter(), &key, 0, entry.body.len() as u64);
1808 after.ended(200, None);
1809 after.spawn(env, ctx);
1810 return entry.response();
1811 }
1812 if kept_key.is_some() {
1813 timing.note("refs", "miss");
1814 }
1815 // The store's credential: one made a moment ago, here or in another
1816 // isolate (see store.rs), or a new one.
1817 let access = match kept_access {
1818 Some((access, from)) => {
1819 timing.note("cred", from.as_str());
1820 access
1821 }
1822 None => {
1823 let access = self.store.mint_access(&key, scope).await?;
1824 timing.mark("mint");
1825 timing.note("cred", "mint");
1826 access
1827 }
1828 };
1829 // Should the store turn a kept credential down, a fetch's first
1830 // request is tried again with a new one; the requests after it then
1831 // have that one too.
1832 let again = if get { Some(request.clone()?) } else { None };
1833 // Push protection: a push that adds a secret is refused. See secret_scan.rs.
1834 let scan = async |body: &[u8]| self.protect(&repo, viewer.as_ref(), body).await;
1835 // Rulesets: what the rules of the branches and tags it changes
1836 // refuse is declined, saying which rule and why (rules.rs).
1837 let rules = async |head: &[u8], whole: bool| self.check_push(&repo, viewer.as_ref(), head, whole).await;
1838 // What a push may bring (pack_limits.rs): the repository's size is
1839 // its own and its pull requests' working copies'.
1840 let limits = if write && !get {
1841 git_http::PushLimits {
1842 held: self.held(&repo).await,
1843 repo_limit: self.repo_limit,
1844 large: self.large_pushes,
1845 ..git_http::PushLimits::default()
1846 }
1847 } else {
1848 git_http::PushLimits::default()
1849 };
1850 let mut outcome = git_http::forward(
1851 request,
1852 body,
1853 git,
1854 &access,
1855 rules,
1856 default_branch.as_deref(),
1857 limits,
1858 scan,
1859 )
1860 .await?;
1861 let turned_down = matches!(
1862 &outcome,
1863 git_http::Push::Forwarded(forwarded) if matches!(forwarded.response.status_code(), 401 | 403)
1864 );
1865 if turned_down {
1866 self.store.forget_access(&key).await;
1867 if let Some(again) = again {
1868 let access = self.store.mint_access(&key, scope).await?;
1869 let nothing = async |_: &[u8]| Ok(None);
1870 outcome = git_http::forward(
1871 again,
1872 None,
1873 git,
1874 &access,
1875 async |_: &[u8], _: bool| Ok(None),
1876 default_branch.as_deref(),
1877 git_http::PushLimits::default(),
1878 nothing,
1879 )
1880 .await?;
1881 }
1882 }
1883 let forwarded =
1884 match outcome {
1885 git_http::Push::Forwarded(forwarded) => forwarded,
1886 git_http::Push::Refused(response) => {
1887 after.ended(403, Some("The push was declined by rules.".to_owned()));
1888 after.spawn(env, ctx);
1889 return Ok(response);
1890 }
1891 git_http::Push::Blocked(response) => {
1892 after.ended(403, Some("The push adds a secret.".to_owned()));
1893 after.spawn(env, ctx);
1894 return Ok(response);
1895 }
1896 git_http::Push::Declined(response, reason) => {
1897 after.ended(403, Some(format!("The push was declined: {reason}.")));
1898 after.spawn(env, ctx);
1899 return Ok(response);
1900 }
1901 };
1902 if forwarded.from_store {
1903 let received = forwarded
1904 .response
1905 .headers()
1906 .get("content-length")?
1907 .and_then(|length| length.parse().ok())
1908 .unwrap_or(0);
1909 meters::record(call.meter(), &key, forwarded.sent, received);
1910 }
1911 timing.mark("store");
1912 let mut response = forwarded.response;
1913 let status = response.status_code();
1914 if write && !get {
1915 // A push: the store has moved its refs once it has answered in
1916 // full, so the answer is read before the change is recorded, and
1917 // only then goes back. Whoever fetches after it sees the push.
1918 let headers = response.headers().clone();
1919 headers.delete("content-length")?;
1920 let report = response.bytes().await?;
1921 self.refs_moved(&repo.id).await;
1922 timing.mark("refs");
1923 response = Response::from_bytes(report)?.with_headers(headers).with_status(status);
1924 } else if let (Some(kept_key), 200) = (&kept_key, status) {
1925 // A miss: this answer is kept for the next to ask.
1926 let headers = response.headers().clone();
1927 headers.delete("content-length")?;
1928 let body = response.bytes().await?;
1929 if let Some(content_type) = headers.get("content-type")? {
1930 let entry = refs_cache::Entry { content_type, body: body.clone() };
1931 if entry.keepable() {
1932 let shared = self.shared.clone();
1933 let kept_key = kept_key.clone();
1934 ctx.wait_until(async move { refs_cache::keep(shared.as_deref(), &kept_key, &entry).await });
1935 }
1936 }
1937 response = Response::from_bytes(body)?.with_headers(headers).with_status(status);
1938 } else if let (Some(pack_key), Some(packs), true) = (&pack_key, &self.packs, forwarded.from_store) {
1939 // A fresh clone the bucket did not have: counted, and its pack
1940 // kept as it streams to git, when it is a whole one.
1941 meters::record(pack_cache::MISS, &key, forwarded.sent, 0);
1942 if status == 200 {
1943 let store_key = key.clone();
1944 let measured = Box::new(move |bytes: u64| meters::record_bytes(pack_cache::MISS, &store_key, 0, bytes));
1945 let (teed, filling) = pack_cache::tee(response, packs.clone(), pack_key, measured)?;
1946 response = teed;
1947 if let Some(filling) = filling {
1948 let pack_key = pack_key.clone();
1949 ctx.wait_until(async move {
1950 let filled = filling.await;
1951 if !matches!(filled, pack_cache::Filled::Kept { .. } | pack_cache::Filled::Abandoned) {
1952 worker::console_warn!("pack {} not kept: {filled:?}", pack_key.as_str());
1953 }
1954 });
1955 }
1956 }
1957 }
1958 after.ended(status, None);
1959 if status == 200 && (forwarded.pack_bytes > 0 || !forwarded.pushed.is_empty()) {
1960 after.push = Some(PushDone {
1961 repo,
1962 pushed: forwarded.pushed,
1963 pack_bytes: forwarded.pack_bytes,
1964 caused_by_job: viewer.as_ref().and_then(g1t_contracts::events::job_run_of).map(str::to_owned),
1965 actor: viewer.map(|user: User| user.id),
1966 unscanned: forwarded.unscanned,
1967 });
1968 }
1969 after.spawn(env, ctx);
1970 Ok(response)
1971 }
1972
1973 /// The answer for a request a free workspace's limits stop, or a push
1974 /// to a full repository, with its status and reason for the audit log;
1975 /// `None` to go on.
1976 ///
1977 /// A clone, fetch or push is a git operation, which the git store
1978 /// charges g1t for: counted for billing once the answer has gone back
1979 /// (meters.rs), and a free workspace far past its share is slowed down
1980 /// rather than charged (see git_ops.rs). Whether it is past it is
1981 /// decided from counts this isolate already holds: the database is not
1982 /// asked on the way. A free workspace is never charged for private
1983 /// storage: once its private repositories hold the free amount, pushes
1984 /// to them stop, checked when a push begins so that git shows the
1985 /// reason. So do pushes to a repository at the store's size limit.
1986 async fn git_limits(
1987 &self,
1988 call: git_ops::GitCall,
1989 git: &git_http::GitRequest,
1990 repo: &Repo,
1991 env: &Env,
1992 ) -> Result<Option<(Response, u16, &'static str)>> {
1993 let namespace = git.path.namespace.to_lowercase();
1994 if meters::mapping_now().billable(call.meter()) > 0.0 {
1995 let now = now_ms();
1996 let hour = git_ops::hour_key(&rfc3339(now));
1997 let limits = git_ops::Limits::from_env(env);
1998 if let Some((month, hour_ops)) = git_ops::standing(&namespace, &hour, now)
1999 && git_ops::slow_down(month + 1, hour_ops + 1, limits.free_cap, limits.hourly)
2000 && git_ops::is_free_kept(env.service("BILLING").ok().as_ref(), &namespace).await
2001 {
2002 return Ok(Some((
2003 git_ops::too_many(&namespace, limits.free_cap, limits.hourly)?,
2004 429,
2005 "Too many git operations this hour.",
2006 )));
2007 }
2008 }
2009 if git.service == GitService::ReceivePack && git.endpoint == "info/refs" {
2010 let held = self.held(repo).await;
2011 if held >= self.repo_limit {
2012 let message = format!(
2013 "{}/{} holds about {}, the most a repository may hold on g1t, so it takes no more pushes. Delete what you no longer need, or split it: https://docs.g1t.sh/guides/git/#size-limits\n",
2014 repo.namespace,
2015 repo.name,
2016 pack_limits::megabytes(held)
2017 );
2018 return Ok(Some((Response::error(message, 403)?, 403, "The repository is full.")));
2019 }
2020 }
2021 if git.service == GitService::ReceivePack && git.endpoint == "info/refs" && repo.is_private {
2022 let free = git_ops::free_private_bytes(env);
2023 let held = self.registry.private_bytes(&namespace).await.unwrap_or(0);
2024 if git_ops::storage_full(held, free)
2025 && git_ops::is_free(env.service("BILLING").ok().as_ref(), &namespace).await
2026 {
2027 return Ok(Some((
2028 git_ops::storage_full_response(&namespace, held, free)?,
2029 403,
2030 "Free private storage is full.",
2031 )));
2032 }
2033 }
2034 Ok(None)
2035 }
2036
2037 /// What a repository and its pull requests' working copies hold, as
2038 /// g1t counts it: read for a push's first request, kept a minute for
2039 /// the rest of it.
2040 async fn held(&self, repo: &Repo) -> u64 {
2041 let root = repo.fork_of.clone().unwrap_or_else(|| repo.id.clone());
2042 let now = now_ms();
2043 if let Some(held) = HELD.with(|held| held.borrow().get(&root, now)) {
2044 return held;
2045 }
2046 let held = self.registry.stored_bytes(&root).await.unwrap_or(0).max(0) as u64;
2047 HELD.with(|kept| kept.borrow_mut().put(root, held, now));
2048 held
2049 }
2050
2051 /// What a push changed, recorded once git has its answer.
2052 async fn record_push(&self, push: PushDone) -> Result<()> {
2053 let PushDone {
2054 repo,
2055 pushed,
2056 pack_bytes,
2057 actor,
2058 unscanned,
2059 caused_by_job,
2060 } = push;
2061 // What the push stored, for billing's storage meter. A failure only
2062 // leaves the count short.
2063 if pack_bytes > 0
2064 && let Err(error) = self.registry.add_stored_bytes(&repo, pack_bytes).await
2065 {
2066 worker::console_error!("stored bytes for {} not counted: {error}", repo.name);
2067 }
2068 if pushed.is_empty() {
2069 return Ok(());
2070 }
2071 // Artifacts' own push notifications are per repository, which does
2072 // not fit a repo per pull request, so the front end reports pushes
2073 // itself: one event for each branch that moved.
2074 let stored = self.store.open(&store_key(&repo)).await?;
2075 for pushed in &pushed {
2076 // The store can refuse one ref and accept another, so each
2077 // branch is checked against where it actually is. A tag the
2078 // store cannot read back is taken as pushed.
2079 let moved = match pushed.branch() {
2080 Some(branch) => stored
2081 .log(branch, 1)
2082 .await?
2083 .first()
2084 .is_some_and(|commit| commit.hash == pushed.after),
2085 None => stored.log(&pushed.git_ref, 1).await.map_or(true, |head| {
2086 head.first().is_none_or(|commit| commit.hash == pushed.after)
2087 }),
2088 };
2089 if moved {
2090 self.publish_git_push(
2091 &repo,
2092 &pushed.git_ref,
2093 pushed.before.as_deref(),
2094 &pushed.after,
2095 actor.clone(),
2096 unscanned,
2097 caused_by_job.clone(),
2098 )
2099 .await?;
2100 }
2101 }
2102 Ok(())
2103 }
2104}
2105
2106/// A push the store accepted, to be recorded once git has its answer.
2107struct PushDone {
2108 repo: Repo,
2109 pushed: Vec<git_http::Pushed>,
2110 pack_bytes: u64,
2111 actor: Option<String>,
2112 /// Too large to scan for secrets before it was stored.
2113 unscanned: bool,
2114 /// The run whose job's token pushed, if one did: its push starts no
2115 /// workflows.
2116 caused_by_job: Option<String>,
2117}
2118
2119/// What a git request leaves for after its answer: its audit entry, with
2120/// how the request ended, and what a push changed.
2121struct AfterGit {
2122 audit: Option<Box<g1t_contracts::audit::NewAuditEntry>>,
2123 status: u16,
2124 message: Option<String>,
2125 push: Option<PushDone>,
2126}
2127
2128impl AfterGit {
2129 fn ended(&mut self, status: u16, message: Option<String>) {
2130 self.status = status;
2131 self.message = message;
2132 }
2133
2134 /// Does the work once the response is on its way. A failure is logged:
2135 /// git has already been told how its request went.
2136 fn spawn(self, env: &Env, ctx: &Context) {
2137 if self.audit.is_none() && self.push.is_none() {
2138 return;
2139 }
2140 let env = env.clone();
2141 ctx.wait_until(async move {
2142 let repos = match service(&env) {
2143 Ok(repos) => repos,
2144 Err(error) => {
2145 worker::console_error!("git request not recorded: {error}");
2146 return;
2147 }
2148 };
2149 repos.finish_git(self.audit, self.status, self.message).await;
2150 if let Some(push) = self.push
2151 && let Err(error) = repos.record_push(push).await
2152 {
2153 worker::console_error!("push not recorded: {error}");
2154 }
2155 });
2156 }
2157}
2158
2159fn service(env: &Env) -> Result<Repos<ArtifactsStore>> {
2160 let shared = shared::Shared::from_env(env).map(Rc::new);
2161 Ok(Repos {
2162 registry: Registry { db: env.d1("DB")? },
2163 store: ArtifactsStore::new(env, shared.clone())?,
2164 shared,
2165 packs: pack_cache::Packs::from_env(env).map(Rc::new),
2166 events: env.service("EVENTS")?,
2167 security: env.service("SECURITY").ok(),
2168 billing: env.service("BILLING").ok(),
2169 identity: env.service("IDENTITY").ok(),
2170 work: env.service("WORK").ok(),
2171 free_private_bytes: git_ops::free_private_bytes(env),
2172 fork_days: forks::retention_days(env),
2173 repo_limit: env
2174 .var("REPO_STORAGE_LIMIT_BYTES")
2175 .ok()
2176 .and_then(|value| value.to_string().parse().ok())
2177 .unwrap_or(pack_limits::DEFAULT_REPO_LIMIT_BYTES),
2178 large_pushes: git_http::LargePushes::from_var(env.var("LARGE_PUSHES").ok().map(|value| value.to_string()).as_deref()),
2179 placement: shards::Placement::from_vars(
2180 env.var("ARTIFACTS_NEW_REPOS").ok().map(|value| value.to_string()).as_deref(),
2181 env.var("ARTIFACTS_EU_NAMESPACE").ok().map(|value| value.to_string()).as_deref(),
2182 ),
2183 limits: shards::limits(env.var("ARTIFACTS_NAMESPACE_LIMITS").ok().map(|value| value.to_string()).as_deref()),
2184 })
2185}
2186
2187/// Writes what this isolate metered once the answer has gone back, every
2188/// few seconds at most: now, or once it is due, waiting in this request's
2189/// `wait_until` so nothing counted is left for a request that may never
2190/// come (meters.rs).
2191fn flush_later(env: &Env, ctx: &Context) {
2192 let Some(wait) = meters::plan_flush() else {
2193 return;
2194 };
2195 if let Ok(db) = env.d1("DB") {
2196 ctx.wait_until(async move { meters::flush_after(&db, wait).await });
2197 }
2198}
2199
2200/// `/backups/<job id>/parts/<number>`: the job and the part's number.
2201fn backup_part_path(path: &str) -> Option<(String, u16)> {
2202 let rest = path.strip_prefix("/backups/")?;
2203 let (job, number) = rest.split_once("/parts/")?;
2204 let number = number.parse::<u16>().ok()?;
2205 (!job.is_empty() && !job.contains('/')).then(|| (job.to_owned(), number))
2206}
2207
2208fn backups_off<T>() -> Outcome<T> {
2209 Outcome::fail(FailureCode::Conflict, "Backups are off on this installation: it has no storage for them.")
2210}
2211
2212/// One part of a backup's bundle, with the job's token in its header.
2213async fn backup_part(request: &mut Request, env: &Env, repos: &Repos<ArtifactsStore>, job_id: String, number: u16) -> Result<Response> {
2214 let Some(blobs) = backups::storage(env) else {
2215 return reply(&backups_off::<()>());
2216 };
2217 let token = request.headers().get(g1t_contracts::backups::TOKEN_HEADER)?.unwrap_or_default();
2218 let bytes = request.bytes().await?;
2219 let job = g1t_contracts::backups::BackupJobArgs { job_id, token };
2220 reply(&backups::part(&repos.registry.db, &blobs, &job, number, bytes).await?)
2221}
2222
2223#[cfg(test)]
2224mod backup_path_tests {
2225 use super::backup_part_path;
2226
2227 #[test]
2228 fn a_part_is_named_by_its_job_and_number() {
2229 assert_eq!(backup_part_path("/backups/bkp_1/parts/3"), Some(("bkp_1".to_owned(), 3)));
2230 assert_eq!(backup_part_path("/backups/bkp_1/parts/x"), None);
2231 assert_eq!(backup_part_path("/backups//parts/1"), None);
2232 assert_eq!(backup_part_path("/acme/rocket.git/info/refs"), None);
2233 }
2234}
2235
2236/// Read methods whose answer is an `Outcome`: when the git store is busy,
2237/// the site is told so in words instead of failing the page.
2238const OUTCOME_READS: [&str; 6] = ["tree", "blob", "log", "branches", "blame", "compare"];
2239
2240#[event(fetch)]
2241async fn fetch(mut request: Request, env: Env, ctx: Context) -> Result<Response> {
2242 let mut repos = service(&env)?;
2243 // A part of a backup's bundle, as the API passes it on from the
2244 // sandbox: bytes, not JSON (backups.rs).
2245 if request.method() == Method::Put
2246 && let Some((job_id, number)) = backup_part_path(&request.path())
2247 {
2248 let answered = backup_part(&mut request, &env, &repos, job_id, number).await;
2249 flush_later(&env, &ctx);
2250 return answered;
2251 }
2252 let Some(method) = rpc_method(&request) else {
2253 let answered = repos.git_http(request, &env, &ctx).await;
2254 flush_later(&env, &ctx);
2255 return answered;
2256 };
2257 // A replica near the caller when it asks for one (crates/kit/src/d1.rs).
2258 // Git over HTTPS above always reads the primary.
2259 let (db, served) = g1t_kit::d1::open(&env, "DB", &request)?;
2260 repos.registry.db = db;
2261 let body: serde_json::Value = request.json().await?;
2262
2263 let answered = async { match method.as_str() {
2264 "get" => reply(&repos.get(args(body)?).await?),
2265 "get_by_id" => reply(&repos.get_by_id(args(body)?).await?),
2266 "readable" => {
2267 let a: ReadableArgs = args(body)?;
2268 reply(&repos.registry.readable(&a.ids, &a.viewer).await?)
2269 }
2270 "public_namespaces" => {
2271 let a: PublicNamespacesArgs = args(body)?;
2272 reply(&repos.registry.public_namespaces(&a.owner_id).await?)
2273 }
2274 "path_by_id" => {
2275 let a: PathByIdArgs = args(body)?;
2276 reply(
2277 &repos
2278 .registry
2279 .by_id(&a.id)
2280 .await?
2281 .filter(|repo| repo.fork_of.is_none())
2282 .map(|repo| RepoPath {
2283 namespace: repo.namespace,
2284 name: repo.name,
2285 }),
2286 )
2287 }
2288 "list" => {
2289 let a: ListArgs = args(body)?;
2290 reply(
2291 &repos
2292 .registry
2293 .list(
2294 &a.viewer,
2295 a.query.as_deref(),
2296 a.namespace.as_deref(),
2297 a.member_only,
2298 )
2299 .await?,
2300 )
2301 }
2302 "create" => reply(&repos.create(args(body)?).await?),
2303 // Services only: a GitHub mirror catching up, or pushing out.
2304 "mirror" => reply(&repos.mirror(args(body)?).await?),
2305 "transfer" => reply(&repos.transfer(args(body)?).await?),
2306 // A repository's lifecycle: see lifecycle.rs.
2307 "delete" => reply(&repos.delete(args(body)?).await?),
2308 "deleted" => reply(&repos.deleted(args(body)?).await?),
2309 "restore" => reply(&repos.restore(args(body)?).await?),
2310 "purge" => reply(&repos.purge(args(body)?).await?),
2311 "purge_due" => reply(&repos.purge_due(args(body)?).await?),
2312 "rename" => reply(&repos.rename(args(body)?).await?),
2313 "archive" => reply(&repos.archive(args(body)?).await?),
2314 "set_visibility" => reply(&repos.set_visibility(args(body)?).await?),
2315 "set_default_branch" => reply(&repos.set_default_branch(args(body)?).await?),
2316 "rename_branch" => reply(&repos.rename_branch(args(body)?).await?),
2317 "resolve_branch" => reply(&repos.resolve_branch(args(body)?).await?),
2318 "status_by_id" => reply(&repos.status_by_id(args(body)?).await?),
2319 "resolve_path" => {
2320 let a: ResolvePathArgs = args(body)?;
2321 reply(&repos.registry.resolve_moved(&a.path).await?)
2322 }
2323 "namespace_count" => {
2324 let a: NamespaceCountArgs = args(body)?;
2325 reply(&repos.registry.count_in(&a.namespace).await?)
2326 }
2327 "update" => reply(&repos.update(args(body)?).await?),
2328 "tree" => reply(&repos.tree(args(body)?).await?),
2329 "blob" => reply(&repos.blob(args(body)?).await?),
2330 "log" => reply(&repos.log(args(body)?).await?),
2331 "blame" => reply(&repos.blame(args(body)?).await?),
2332 "fork_for_pull" => reply(&repos.fork_for_pull(args(body)?).await?),
2333 "git_access" => reply(&repos.git_access(args(body)?).await?),
2334 "branches" => reply(&repos.branches(args(body)?).await?),
2335 "last_commits" => reply(&repos.last_commits(args(body)?).await?),
2336 "tags" => reply(&repos.tags(args(body)?).await?),
2337 // The About: what the Files page shows beside the files (about.rs).
2338 // What is kept behind the head is worked out again after the answer.
2339 "about" => {
2340 let (answer, refresh) = repos.about(args(body)?).await?;
2341 about::refresh_later(&env, &ctx, refresh);
2342 reply(&answer)
2343 }
2344 "languages" => {
2345 let (answer, refresh) = repos.languages(args(body)?).await?;
2346 about::refresh_later(&env, &ctx, refresh);
2347 reply(&answer)
2348 }
2349 "contributors" => {
2350 let (answer, refresh) = repos.contributors(args(body)?).await?;
2351 about::refresh_later(&env, &ctx, refresh);
2352 reply(&answer)
2353 }
2354 "license" => {
2355 let (answer, refresh) = repos.license(args(body)?).await?;
2356 about::refresh_later(&env, &ctx, refresh);
2357 reply(&answer)
2358 }
2359 "stars" => reply(&repos.stars(args(body)?).await?),
2360 "star" => reply(&repos.star(args(body)?).await?),
2361 "stargazers" => reply(&repos.stargazers(args(body)?).await?),
2362 "starred" => reply(&repos.starred(args(body)?).await?),
2363 "releases" => reply(&repos.releases(args(body)?).await?),
2364 "release" => reply(&repos.release(args(body)?).await?),
2365 "create_release" => reply(&repos.create_release(args(body)?).await?),
2366 "update_release" => reply(&repos.update_release(args(body)?).await?),
2367 "delete_release" => reply(&repos.delete_release(args(body)?).await?),
2368 "head" => reply(&repos.head(args(body)?).await?),
2369 "behind" => reply(&repos.behind(args(body)?).await?),
2370 "divergence" => reply(&repos.divergence(args(body)?).await?),
2371 "land" => reply(&repos.land(args(body)?).await?),
2372 "update_pull_branch" => reply(&repos.update_pull_branch(args(body)?).await?),
2373 "delete_branch" => reply(&repos.delete_branch(args(body)?).await?),
2374 "commit_file" => reply(&repos.commit_file(args(body)?).await?),
2375 "compare" => reply(&repos.compare(args(body)?).await?),
2376 // Services only: a pull request's commits, as rules look at them (rules.rs).
2377 "inspect_commits" => reply(&repos.inspect_commits(args(body)?).await?),
2378 "scan_history" => reply(&repos.scan_history(args(body)?).await?),
2379 "find_lockfiles" => reply(&repos.find_lockfiles(args(body)?).await?),
2380 "match_pattern" => reply(&repos.match_pattern(args(body)?).await?),
2381 "check_secret" => reply(&repos.check_secret(args(body)?).await?),
2382 "list_files" => reply(&repos.list_files(args(body)?).await?),
2383 "changed_files" => reply(&repos.changed_files(args(body)?).await?),
2384 "read_blobs" => reply(&repos.read_blobs(args(body)?).await?),
2385 // Services only: what the Composer registry builds packages from.
2386 "refs" => reply(&repos.refs_of(args(body)?).await?),
2387 "raw_file" => reply(&repos.raw_file(args(body)?).await?),
2388 "raw_blobs" => reply(&repos.raw_blobs(args(body)?).await?),
2389 "visibility" => {
2390 let a: g1t_contracts::repos::VisibilityArgs = args(body)?;
2391 reply(&repos.registry.visibility(&a.paths).await?)
2392 }
2393 "storage" => reply(&repos.registry.storage().await?),
2394 "git_operations" => {
2395 let a: GitOperationsArgs = args(body)?;
2396 reply(&git_ops::totals(&repos.registry.db, &a.month, a.since.as_deref(), a.namespace.as_deref().map(str::to_lowercase).as_deref()).await?)
2397 }
2398 // Identity, once: who created each repository (members.rs there).
2399 "repo_creators" => {
2400 let a: AllIdsArgs = args(body)?;
2401 let limit = a.limit.clamp(1, 500);
2402 let repos = repos.registry.creators_after(a.after.as_deref(), limit).await?;
2403 let next = (repos.len() == limit as usize).then(|| repos.last().map(|repo| repo.id.clone())).flatten();
2404 reply(&CreatorPage { repos, next })
2405 }
2406 "all_ids" => {
2407 let a: AllIdsArgs = args(body)?;
2408 let limit = a.limit.clamp(1, 500);
2409 let ids = repos.registry.ids_after(a.after.as_deref(), limit).await?;
2410 let next = (ids.len() == limit as usize).then(|| ids.last().cloned()).flatten();
2411 reply(&IdPage { ids, next })
2412 }
2413 // The raw meters of the git store, for reconciling with Cloudflare
2414 // (meters.rs, scripts/ops/artifacts-usage.mjs).
2415 "artifacts_usage" => {
2416 let a: meters::UsageArgs = args(body)?;
2417 reply(&meters::usage(&repos.registry.db, &a).await?)
2418 }
2419 "operation_mapping" => reply(&meters::read_mapping(&repos.registry.db).await?),
2420 // Billing: the workspace each pull request's working copy is counted
2421 // for, so Cloudflare's own count of `pulls--<id>` shares out too.
2422 "pull_owners" => {
2423 #[derive(serde::Deserialize)]
2424 struct PullOwnersArgs {
2425 pulls: Vec<String>,
2426 }
2427 let a: PullOwnersArgs = args(body)?;
2428 let pulls: Vec<String> = a.pulls.into_iter().take(500).collect();
2429 reply(&serde_json::json!({ "owners": meters::pull_owners(&repos.registry.db, &pulls).await? }))
2430 }
2431 // Services only: which meters are operations, changed without a deploy.
2432 "set_operation_mapping" => {
2433 let row: meters::MappingRow = args(body)?;
2434 meters::set_mapping(&repos.registry.db, &row, &rfc3339(now_ms())).await?;
2435 reply(&meters::read_mapping(&repos.registry.db).await?)
2436 }
2437 // Backups (backups.rs): the runner's sweep claims queued ones, and
2438 // each sandbox, through the API, asks for its job and says how it went.
2439 "claim_backups" => {
2440 let a: g1t_contracts::backups::ClaimBackupsArgs = args(body)?;
2441 let blobs = backups::storage(&env);
2442 reply(&backups::claim(&repos.registry.db, blobs.as_ref(), &a, now_ms()).await?)
2443 }
2444 "backup_spec" => match backups::storage(&env) {
2445 Some(blobs) => {
2446 let a: g1t_contracts::backups::BackupJobArgs = args(body)?;
2447 let every = backups::Settings::from_env(&env).full_every;
2448 reply(&backups::spec(&repos.registry, &blobs, &repos.store, &a, every, now_ms()).await?)
2449 }
2450 None => reply(&backups_off::<bool>()),
2451 },
2452 "backup_complete" => match backups::storage(&env) {
2453 Some(blobs) => reply(&backups::complete(&repos.registry, &blobs, &args(body)?, now_ms()).await?),
2454 None => reply(&backups_off::<bool>()),
2455 },
2456 "backup_fail" => match backups::storage(&env) {
2457 Some(blobs) => reply(&backups::fail(&repos.registry.db, &blobs, &args(body)?).await?),
2458 None => reply(&backups_off::<bool>()),
2459 },
2460 // How the git store has been answering, for the status page.
2461 "store_health" => {
2462 let a: meters::HealthArgs = args(body)?;
2463 reply(&meters::health(&repos.registry.db, &a).await?)
2464 }
2465 // Where repositories may be kept, for a workspace's settings.
2466 "storage_options" => reply(&repos.storage_options()),
2467 // Services and operators only: how each namespace stands, and
2468 // moving a repository between them (namespaces.rs, moves.rs).
2469 "namespaces" => reply(&repos.standings().await?),
2470 "move_repository" => reply(&repos.move_repository(args(body)?).await?),
2471 "repository_moves" => {
2472 let a: moves::ListMovesArgs = args(body)?;
2473 reply(&repos.registry.moves(a.limit.unwrap_or(50)).await?)
2474 }
2475 _ => Response::error("Unknown method", 404),
2476 } }
2477 .await;
2478 // The git store is busy: said in words, with when to try again.
2479 let answered = match answered {
2480 Err(error) => match resilience::busy(&error.to_string()) {
2481 Some(busy) if OUTCOME_READS.contains(&method.as_str()) => {
2482 reply(&Outcome::<()>::fail(FailureCode::Conflict, busy.message().trim()))
2483 }
2484 Some(busy) => {
2485 let response = Response::error(busy.message(), 503)?;
2486 response.headers().set("retry-after", &busy.retry_after.to_string())?;
2487 Ok(response)
2488 }
2489 None => Err(error),
2490 },
2491 answered => answered,
2492 };
2493 flush_later(&env, &ctx);
2494 served.finish(answered)
2495}
2496
2497/// The nightly cron in wrangler.jsonc: tonight's backups are queued.
2498const BACKUP_CRON: &str = "53 2 * * *";
2499
2500/// The hourly sweep: deleted repositories whose time to be restored has
2501/// passed are purged. See lifecycle.rs. And, at [`BACKUP_CRON`], the
2502/// repositories whose refs moved are queued for a backup (backups.rs).
2503#[event(scheduled)]
2504async fn scheduled(event: ScheduledEvent, env: Env, _ctx: ScheduleContext) {
2505 let repos = match service(&env) {
2506 Ok(repos) => repos,
2507 Err(error) => {
2508 worker::console_error!("repos: the sweep could not start: {error}");
2509 return;
2510 }
2511 };
2512 if event.cron() == BACKUP_CRON {
2513 let Some(blobs) = backups::storage(&env) else { return };
2514 match backups::nightly(&repos.registry.db, &blobs, backups::Settings::from_env(&env), now_ms()).await {
2515 Ok(night) => worker::console_log!("repos: queued {} backups, removed {} of purged repositories", night.queued, night.pruned),
2516 Err(error) => worker::console_error!("repos: backups could not be queued: {error}"),
2517 }
2518 return;
2519 }
2520 match repos.purge_due(PurgeDueArgs::default()).await {
2521 Ok(0) => {}
2522 Ok(count) => worker::console_log!("repos: purged {count} deleted repositories"),
2523 Err(error) => worker::console_error!("repos: the purge sweep failed: {error}"),
2524 }
2525 // Pull requests' working copies whose time has come (forks.rs).
2526 match repos.retire_due().await {
2527 Ok(0) => {}
2528 Ok(count) => worker::console_log!("repos: removed {count} pull request working copies"),
2529 Err(error) => worker::console_error!("repos: the working copy sweep failed: {error}"),
2530 }
2531 // Repositories moving between namespaces, and old copies (moves.rs).
2532 match repos.run_moves().await {
2533 Ok(0) => {}
2534 Ok(count) => worker::console_log!("repos: moved {count} repositories between namespaces"),
2535 Err(error) => worker::console_error!("repos: the move sweep failed: {error}"),
2536 }
2537 meters::flush(&repos.registry.db).await;
2538}
2539
2540/// Events from the bus. A workspace's rename: its repositories move to the
2541/// workspace's current slug, asked of identity by id, so a repeated or late
2542/// delivery lands in the same place; their git store keys stay as they
2543/// were. A workspace's deletion: its repositories are deleted with it,
2544/// restored with it, or purged with it.
2545#[event(queue)]
2546async fn queue(batch: MessageBatch<Event>, env: Env, ctx: Context) -> Result<()> {
2547 let registry = Registry { db: env.d1("DB")? };
2548 let identity = env.service("IDENTITY")?;
2549 let handled = handle_events(&batch, &env, &registry, &identity).await;
2550 flush_later(&env, &ctx);
2551 handled
2552}
2553
2554async fn handle_events(batch: &MessageBatch<Event>, env: &Env, registry: &Registry, identity: &Fetcher) -> Result<()> {
2555 for message in batch.messages()? {
2556 let event = message.body();
2557 // A pull request merged, closed or reopened: its working copy is
2558 // kept or let go (forks.rs).
2559 if let Some(change) = forks::pull_change(&event.kind) {
2560 let Some(pull_id) = forks::pull_id_of(&event.data) else {
2561 worker::console_error!("{} {} names no pull request", event.kind, event.id);
2562 continue;
2563 };
2564 let repos = service(env)?;
2565 match change {
2566 forks::PullChange::Settled => repos.pull_settled(&pull_id).await?,
2567 forks::PullChange::Reopened => repos.pull_reopened(&pull_id).await?,
2568 }
2569 continue;
2570 }
2571 // A workspace deleted, restored or purged: its repositories go with
2572 // it, come back with it, or are purged with it (lifecycle.rs).
2573 if event.kind == "workspace.deleting" {
2574 match serde_json::from_value::<WorkspaceDeleting>(event.data.clone()) {
2575 Ok(deleting) => service(env)?.delete_with_workspace(&deleting, &protected_workspaces(env)).await?,
2576 Err(_) => worker::console_error!("workspace.deleting {} could not be read", event.id),
2577 }
2578 continue;
2579 }
2580 if event.kind == "workspace.restored" {
2581 match serde_json::from_value::<WorkspaceRestored>(event.data.clone()) {
2582 Ok(restored) => service(env)?.restore_with_workspace(&restored).await?,
2583 Err(_) => worker::console_error!("workspace.restored {} could not be read", event.id),
2584 }
2585 continue;
2586 }
2587 if event.kind == "workspace.deleted" {
2588 match serde_json::from_value::<WorkspaceDeleted>(event.data.clone()) {
2589 Ok(deleted) => service(env)?.purge_workspace(&deleted, &protected_workspaces(env)).await?,
2590 Err(_) => worker::console_error!("workspace.deleted {} could not be read", event.id),
2591 }
2592 continue;
2593 }
2594 if event.kind != "workspace.renamed" {
2595 continue;
2596 }
2597 let Ok(renamed) = serde_json::from_value::<WorkspaceRenamed>(event.data.clone()) else {
2598 worker::console_error!("workspace.renamed {} could not be read", event.id);
2599 continue;
2600 };
2601 let names: HashMap<String, String> = g1t_kit::call(
2602 identity,
2603 "usernames",
2604 &g1t_contracts::identity::UsernamesArgs {
2605 ids: vec![renamed.workspace_id.clone()],
2606 },
2607 )
2608 .await?;
2609 let current = names
2610 .get(&renamed.workspace_id)
2611 .cloned()
2612 .unwrap_or_else(|| renamed.to.clone());
2613 let left = registry
2614 .rename_namespace(&renamed.stale_slugs(&current), &current)
2615 .await?;
2616 if left > 0 {
2617 worker::console_error!(
2618 "{left} repositories stayed under {} or {}: {current} already has repositories of the same names",
2619 renamed.from,
2620 renamed.to
2621 );
2622 }
2623 }
2624 Ok(())
2625}
2626
2627/// The workspaces whose repositories never go with a deletion, whatever is
2628/// published: `PROTECTED_WORKSPACES` if set here, and Flagon's always.
2629fn protected_workspaces(env: &Env) -> Vec<String> {
2630 let configured = env.var("PROTECTED_WORKSPACES").ok().map(|v| v.to_string());
2631 g1t_contracts::identity::protected_names(configured.as_deref())
2632}
2633
2634/// The repository a push to a path that does not exist yet creates: private,
2635/// so nothing pushed by mistake is published. An owner makes it public on
2636/// purpose (`POST /repos/{owner}/{repo}/visibility`).
2637fn push_to_create(owner: &User, path: &RepoPath) -> CreateArgs {
2638 CreateArgs {
2639 owner: owner.clone(),
2640 namespace: path.namespace.clone(),
2641 name: path.name.clone(),
2642 description: None,
2643 is_private: true,
2644 import_url: None,
2645 import_token: None,
2646 }
2647}
2648
2649#[cfg(test)]
2650mod push_to_create_tests {
2651 use super::*;
2652
2653 #[test]
2654 fn a_pushed_repository_starts_private() {
2655 let owner: User = serde_json::from_value(serde_json::json!({ "id": "usr_1", "username": "ada" })).unwrap();
2656 let args = push_to_create(&owner, &RepoPath { namespace: "acme".into(), name: "site".into() });
2657 assert!(args.is_private);
2658 assert_eq!((args.namespace.as_str(), args.name.as_str()), ("acme", "site"));
2659 }
2660}