worktree.rs

   1use crate::{copy_recursive, ProjectEntryId, RemoveOptions};
   2
   3use super::{
   4    fs::{self, Fs},
   5    ignore::IgnoreStack,
   6    DiagnosticSummary,
   7};
   8use ::ignore::gitignore::{Gitignore, GitignoreBuilder};
   9use anyhow::{anyhow, Context, Result};
  10use client::{proto, Client};
  11use clock::ReplicaId;
  12use collections::{HashMap, VecDeque};
  13use futures::{
  14    channel::{
  15        mpsc::{self, UnboundedSender},
  16        oneshot,
  17    },
  18    Stream, StreamExt,
  19};
  20use fuzzy::CharBag;
  21use gpui::{
  22    executor, AppContext, AsyncAppContext, Entity, ModelContext, ModelHandle, MutableAppContext,
  23    Task,
  24};
  25use language::{
  26    proto::{deserialize_version, serialize_line_ending, serialize_version},
  27    Buffer, DiagnosticEntry, LineEnding, PointUtf16, Rope,
  28};
  29use lazy_static::lazy_static;
  30use parking_lot::Mutex;
  31use postage::{
  32    prelude::{Sink as _, Stream as _},
  33    watch,
  34};
  35use smol::channel::{self, Sender};
  36use std::{
  37    any::Any,
  38    cmp::{self, Ordering},
  39    convert::TryFrom,
  40    ffi::{OsStr, OsString},
  41    fmt,
  42    future::Future,
  43    ops::{Deref, DerefMut},
  44    os::unix::prelude::{OsStrExt, OsStringExt},
  45    path::{Path, PathBuf},
  46    sync::{atomic::AtomicUsize, Arc},
  47    task::Poll,
  48    time::{Duration, SystemTime},
  49};
  50use sum_tree::{Bias, Edit, SeekTarget, SumTree, TreeMap, TreeSet};
  51use util::{ResultExt, TryFutureExt};
  52
  53lazy_static! {
  54    static ref GITIGNORE: &'static OsStr = OsStr::new(".gitignore");
  55}
  56
  57#[derive(Copy, Clone, PartialEq, Eq, Debug, Hash, PartialOrd, Ord)]
  58pub struct WorktreeId(usize);
  59
  60pub enum Worktree {
  61    Local(LocalWorktree),
  62    Remote(RemoteWorktree),
  63}
  64
  65pub struct LocalWorktree {
  66    snapshot: LocalSnapshot,
  67    background_snapshot: Arc<Mutex<LocalSnapshot>>,
  68    last_scan_state_rx: watch::Receiver<ScanState>,
  69    _background_scanner_task: Option<Task<()>>,
  70    poll_task: Option<Task<()>>,
  71    share: Option<ShareState>,
  72    diagnostics: HashMap<Arc<Path>, Vec<DiagnosticEntry<PointUtf16>>>,
  73    diagnostic_summaries: TreeMap<PathKey, DiagnosticSummary>,
  74    client: Arc<Client>,
  75    fs: Arc<dyn Fs>,
  76    visible: bool,
  77}
  78
  79pub struct RemoteWorktree {
  80    pub snapshot: Snapshot,
  81    pub(crate) background_snapshot: Arc<Mutex<Snapshot>>,
  82    project_id: u64,
  83    client: Arc<Client>,
  84    updates_tx: Option<UnboundedSender<proto::UpdateWorktree>>,
  85    snapshot_subscriptions: VecDeque<(usize, oneshot::Sender<()>)>,
  86    replica_id: ReplicaId,
  87    diagnostic_summaries: TreeMap<PathKey, DiagnosticSummary>,
  88    visible: bool,
  89}
  90
  91#[derive(Clone)]
  92pub struct Snapshot {
  93    id: WorktreeId,
  94    root_name: String,
  95    root_char_bag: CharBag,
  96    entries_by_path: SumTree<Entry>,
  97    entries_by_id: SumTree<PathEntry>,
  98    scan_id: usize,
  99    is_complete: bool,
 100}
 101
 102#[derive(Clone)]
 103pub struct LocalSnapshot {
 104    abs_path: Arc<Path>,
 105    ignores_by_parent_abs_path: HashMap<Arc<Path>, (Arc<Gitignore>, usize)>,
 106    removed_entry_ids: HashMap<u64, ProjectEntryId>,
 107    next_entry_id: Arc<AtomicUsize>,
 108    snapshot: Snapshot,
 109    extension_counts: HashMap<OsString, usize>,
 110}
 111
 112impl Deref for LocalSnapshot {
 113    type Target = Snapshot;
 114
 115    fn deref(&self) -> &Self::Target {
 116        &self.snapshot
 117    }
 118}
 119
 120impl DerefMut for LocalSnapshot {
 121    fn deref_mut(&mut self) -> &mut Self::Target {
 122        &mut self.snapshot
 123    }
 124}
 125
 126#[derive(Clone, Debug)]
 127enum ScanState {
 128    Idle,
 129    /// The worktree is performing its initial scan of the filesystem.
 130    Initializing,
 131    /// The worktree is updating in response to filesystem events.
 132    Updating,
 133    Err(Arc<anyhow::Error>),
 134}
 135
 136struct ShareState {
 137    project_id: u64,
 138    snapshots_tx: watch::Sender<LocalSnapshot>,
 139    _maintain_remote_snapshot: Option<Task<Option<()>>>,
 140}
 141
 142pub enum Event {
 143    UpdatedEntries,
 144}
 145
 146impl Entity for Worktree {
 147    type Event = Event;
 148}
 149
 150impl Worktree {
 151    pub async fn local(
 152        client: Arc<Client>,
 153        path: impl Into<Arc<Path>>,
 154        visible: bool,
 155        fs: Arc<dyn Fs>,
 156        next_entry_id: Arc<AtomicUsize>,
 157        cx: &mut AsyncAppContext,
 158    ) -> Result<ModelHandle<Self>> {
 159        let (tree, scan_states_tx) =
 160            LocalWorktree::new(client, path, visible, fs.clone(), next_entry_id, cx).await?;
 161        tree.update(cx, |tree, cx| {
 162            let tree = tree.as_local_mut().unwrap();
 163            let abs_path = tree.abs_path().clone();
 164            let background_snapshot = tree.background_snapshot.clone();
 165            let background = cx.background().clone();
 166            tree._background_scanner_task = Some(cx.background().spawn(async move {
 167                let events = fs.watch(&abs_path, Duration::from_millis(100)).await;
 168                let scanner =
 169                    BackgroundScanner::new(background_snapshot, scan_states_tx, fs, background);
 170                scanner.run(events).await;
 171            }));
 172        });
 173        Ok(tree)
 174    }
 175
 176    pub fn remote(
 177        project_remote_id: u64,
 178        replica_id: ReplicaId,
 179        worktree: proto::WorktreeMetadata,
 180        client: Arc<Client>,
 181        cx: &mut MutableAppContext,
 182    ) -> ModelHandle<Self> {
 183        let remote_id = worktree.id;
 184        let root_char_bag: CharBag = worktree
 185            .root_name
 186            .chars()
 187            .map(|c| c.to_ascii_lowercase())
 188            .collect();
 189        let root_name = worktree.root_name.clone();
 190        let visible = worktree.visible;
 191        let snapshot = Snapshot {
 192            id: WorktreeId(remote_id as usize),
 193            root_name,
 194            root_char_bag,
 195            entries_by_path: Default::default(),
 196            entries_by_id: Default::default(),
 197            scan_id: 0,
 198            is_complete: false,
 199        };
 200
 201        let (updates_tx, mut updates_rx) = mpsc::unbounded();
 202        let background_snapshot = Arc::new(Mutex::new(snapshot.clone()));
 203        let (mut snapshot_updated_tx, mut snapshot_updated_rx) = watch::channel();
 204        let worktree_handle = cx.add_model(|_: &mut ModelContext<Worktree>| {
 205            Worktree::Remote(RemoteWorktree {
 206                project_id: project_remote_id,
 207                replica_id,
 208                snapshot: snapshot.clone(),
 209                background_snapshot: background_snapshot.clone(),
 210                updates_tx: Some(updates_tx),
 211                snapshot_subscriptions: Default::default(),
 212                client: client.clone(),
 213                diagnostic_summaries: Default::default(),
 214                visible,
 215            })
 216        });
 217
 218        cx.background()
 219            .spawn(async move {
 220                while let Some(update) = updates_rx.next().await {
 221                    if let Err(error) = background_snapshot.lock().apply_remote_update(update) {
 222                        log::error!("error applying worktree update: {}", error);
 223                    }
 224                    snapshot_updated_tx.send(()).await.ok();
 225                }
 226            })
 227            .detach();
 228
 229        cx.spawn(|mut cx| {
 230            let this = worktree_handle.downgrade();
 231            async move {
 232                while let Some(_) = snapshot_updated_rx.recv().await {
 233                    if let Some(this) = this.upgrade(&cx) {
 234                        this.update(&mut cx, |this, cx| {
 235                            this.poll_snapshot(cx);
 236                            let this = this.as_remote_mut().unwrap();
 237                            while let Some((scan_id, _)) = this.snapshot_subscriptions.front() {
 238                                if this.observed_snapshot(*scan_id) {
 239                                    let (_, tx) = this.snapshot_subscriptions.pop_front().unwrap();
 240                                    let _ = tx.send(());
 241                                } else {
 242                                    break;
 243                                }
 244                            }
 245                        });
 246                    } else {
 247                        break;
 248                    }
 249                }
 250            }
 251        })
 252        .detach();
 253
 254        worktree_handle
 255    }
 256
 257    pub fn as_local(&self) -> Option<&LocalWorktree> {
 258        if let Worktree::Local(worktree) = self {
 259            Some(worktree)
 260        } else {
 261            None
 262        }
 263    }
 264
 265    pub fn as_remote(&self) -> Option<&RemoteWorktree> {
 266        if let Worktree::Remote(worktree) = self {
 267            Some(worktree)
 268        } else {
 269            None
 270        }
 271    }
 272
 273    pub fn as_local_mut(&mut self) -> Option<&mut LocalWorktree> {
 274        if let Worktree::Local(worktree) = self {
 275            Some(worktree)
 276        } else {
 277            None
 278        }
 279    }
 280
 281    pub fn as_remote_mut(&mut self) -> Option<&mut RemoteWorktree> {
 282        if let Worktree::Remote(worktree) = self {
 283            Some(worktree)
 284        } else {
 285            None
 286        }
 287    }
 288
 289    pub fn is_local(&self) -> bool {
 290        matches!(self, Worktree::Local(_))
 291    }
 292
 293    pub fn is_remote(&self) -> bool {
 294        !self.is_local()
 295    }
 296
 297    pub fn snapshot(&self) -> Snapshot {
 298        match self {
 299            Worktree::Local(worktree) => worktree.snapshot().snapshot,
 300            Worktree::Remote(worktree) => worktree.snapshot(),
 301        }
 302    }
 303
 304    pub fn scan_id(&self) -> usize {
 305        match self {
 306            Worktree::Local(worktree) => worktree.snapshot.scan_id,
 307            Worktree::Remote(worktree) => worktree.snapshot.scan_id,
 308        }
 309    }
 310
 311    pub fn is_visible(&self) -> bool {
 312        match self {
 313            Worktree::Local(worktree) => worktree.visible,
 314            Worktree::Remote(worktree) => worktree.visible,
 315        }
 316    }
 317
 318    pub fn replica_id(&self) -> ReplicaId {
 319        match self {
 320            Worktree::Local(_) => 0,
 321            Worktree::Remote(worktree) => worktree.replica_id,
 322        }
 323    }
 324
 325    pub fn diagnostic_summaries<'a>(
 326        &'a self,
 327    ) -> impl Iterator<Item = (Arc<Path>, DiagnosticSummary)> + 'a {
 328        match self {
 329            Worktree::Local(worktree) => &worktree.diagnostic_summaries,
 330            Worktree::Remote(worktree) => &worktree.diagnostic_summaries,
 331        }
 332        .iter()
 333        .map(|(path, summary)| (path.0.clone(), summary.clone()))
 334    }
 335
 336    fn poll_snapshot(&mut self, cx: &mut ModelContext<Self>) {
 337        match self {
 338            Self::Local(worktree) => worktree.poll_snapshot(false, cx),
 339            Self::Remote(worktree) => worktree.poll_snapshot(cx),
 340        };
 341    }
 342}
 343
 344impl LocalWorktree {
 345    async fn new(
 346        client: Arc<Client>,
 347        path: impl Into<Arc<Path>>,
 348        visible: bool,
 349        fs: Arc<dyn Fs>,
 350        next_entry_id: Arc<AtomicUsize>,
 351        cx: &mut AsyncAppContext,
 352    ) -> Result<(ModelHandle<Worktree>, UnboundedSender<ScanState>)> {
 353        let abs_path = path.into();
 354        let path: Arc<Path> = Arc::from(Path::new(""));
 355
 356        // After determining whether the root entry is a file or a directory, populate the
 357        // snapshot's "root name", which will be used for the purpose of fuzzy matching.
 358        let root_name = abs_path
 359            .file_name()
 360            .map_or(String::new(), |f| f.to_string_lossy().to_string());
 361        let root_char_bag = root_name.chars().map(|c| c.to_ascii_lowercase()).collect();
 362        let metadata = fs
 363            .metadata(&abs_path)
 364            .await
 365            .context("failed to stat worktree path")?;
 366
 367        let (scan_states_tx, mut scan_states_rx) = mpsc::unbounded();
 368        let (mut last_scan_state_tx, last_scan_state_rx) =
 369            watch::channel_with(ScanState::Initializing);
 370        let tree = cx.add_model(move |cx: &mut ModelContext<Worktree>| {
 371            let mut snapshot = LocalSnapshot {
 372                abs_path,
 373                ignores_by_parent_abs_path: Default::default(),
 374                removed_entry_ids: Default::default(),
 375                next_entry_id,
 376                snapshot: Snapshot {
 377                    id: WorktreeId::from_usize(cx.model_id()),
 378                    root_name: root_name.clone(),
 379                    root_char_bag,
 380                    entries_by_path: Default::default(),
 381                    entries_by_id: Default::default(),
 382                    scan_id: 0,
 383                    is_complete: true,
 384                },
 385                extension_counts: Default::default(),
 386            };
 387            if let Some(metadata) = metadata {
 388                let entry = Entry::new(
 389                    path.into(),
 390                    &metadata,
 391                    &snapshot.next_entry_id,
 392                    snapshot.root_char_bag,
 393                );
 394                snapshot.insert_entry(entry, fs.as_ref());
 395            }
 396
 397            let tree = Self {
 398                snapshot: snapshot.clone(),
 399                background_snapshot: Arc::new(Mutex::new(snapshot)),
 400                last_scan_state_rx,
 401                _background_scanner_task: None,
 402                share: None,
 403                poll_task: None,
 404                diagnostics: Default::default(),
 405                diagnostic_summaries: Default::default(),
 406                client,
 407                fs,
 408                visible,
 409            };
 410
 411            cx.spawn_weak(|this, mut cx| async move {
 412                while let Some(scan_state) = scan_states_rx.next().await {
 413                    if let Some(this) = this.upgrade(&cx) {
 414                        last_scan_state_tx.blocking_send(scan_state).ok();
 415                        this.update(&mut cx, |this, cx| this.poll_snapshot(cx));
 416                    } else {
 417                        break;
 418                    }
 419                }
 420            })
 421            .detach();
 422
 423            Worktree::Local(tree)
 424        });
 425
 426        Ok((tree, scan_states_tx))
 427    }
 428
 429    pub fn contains_abs_path(&self, path: &Path) -> bool {
 430        path.starts_with(&self.abs_path)
 431    }
 432
 433    fn absolutize(&self, path: &Path) -> PathBuf {
 434        if path.file_name().is_some() {
 435            self.abs_path.join(path)
 436        } else {
 437            self.abs_path.to_path_buf()
 438        }
 439    }
 440
 441    pub(crate) fn load_buffer(
 442        &mut self,
 443        path: &Path,
 444        cx: &mut ModelContext<Worktree>,
 445    ) -> Task<Result<ModelHandle<Buffer>>> {
 446        let path = Arc::from(path);
 447        cx.spawn(move |this, mut cx| async move {
 448            let (file, contents) = this
 449                .update(&mut cx, |t, cx| t.as_local().unwrap().load(&path, cx))
 450                .await?;
 451            Ok(cx.add_model(|cx| Buffer::from_file(0, contents, Arc::new(file), cx)))
 452        })
 453    }
 454
 455    pub fn diagnostics_for_path(&self, path: &Path) -> Option<Vec<DiagnosticEntry<PointUtf16>>> {
 456        self.diagnostics.get(path).cloned()
 457    }
 458
 459    pub fn update_diagnostics(
 460        &mut self,
 461        language_server_id: usize,
 462        worktree_path: Arc<Path>,
 463        diagnostics: Vec<DiagnosticEntry<PointUtf16>>,
 464        _: &mut ModelContext<Worktree>,
 465    ) -> Result<bool> {
 466        self.diagnostics.remove(&worktree_path);
 467        let old_summary = self
 468            .diagnostic_summaries
 469            .remove(&PathKey(worktree_path.clone()))
 470            .unwrap_or_default();
 471        let new_summary = DiagnosticSummary::new(language_server_id, &diagnostics);
 472        if !new_summary.is_empty() {
 473            self.diagnostic_summaries
 474                .insert(PathKey(worktree_path.clone()), new_summary);
 475            self.diagnostics.insert(worktree_path.clone(), diagnostics);
 476        }
 477
 478        let updated = !old_summary.is_empty() || !new_summary.is_empty();
 479        if updated {
 480            if let Some(share) = self.share.as_ref() {
 481                self.client
 482                    .send(proto::UpdateDiagnosticSummary {
 483                        project_id: share.project_id,
 484                        worktree_id: self.id().to_proto(),
 485                        summary: Some(proto::DiagnosticSummary {
 486                            path: worktree_path.to_string_lossy().to_string(),
 487                            language_server_id: language_server_id as u64,
 488                            error_count: new_summary.error_count as u32,
 489                            warning_count: new_summary.warning_count as u32,
 490                        }),
 491                    })
 492                    .log_err();
 493            }
 494        }
 495
 496        Ok(updated)
 497    }
 498
 499    fn poll_snapshot(&mut self, force: bool, cx: &mut ModelContext<Worktree>) {
 500        self.poll_task.take();
 501        match self.scan_state() {
 502            ScanState::Idle => {
 503                self.snapshot = self.background_snapshot.lock().clone();
 504                if let Some(share) = self.share.as_mut() {
 505                    *share.snapshots_tx.borrow_mut() = self.snapshot.clone();
 506                }
 507                cx.emit(Event::UpdatedEntries);
 508            }
 509            ScanState::Initializing => {
 510                let is_fake_fs = self.fs.is_fake();
 511                self.snapshot = self.background_snapshot.lock().clone();
 512                self.poll_task = Some(cx.spawn_weak(|this, mut cx| async move {
 513                    if is_fake_fs {
 514                        #[cfg(any(test, feature = "test-support"))]
 515                        cx.background().simulate_random_delay().await;
 516                    } else {
 517                        smol::Timer::after(Duration::from_millis(100)).await;
 518                    }
 519                    if let Some(this) = this.upgrade(&cx) {
 520                        this.update(&mut cx, |this, cx| this.poll_snapshot(cx));
 521                    }
 522                }));
 523                cx.emit(Event::UpdatedEntries);
 524            }
 525            _ => {
 526                if force {
 527                    self.snapshot = self.background_snapshot.lock().clone();
 528                }
 529            }
 530        }
 531        cx.notify();
 532    }
 533
 534    pub fn scan_complete(&self) -> impl Future<Output = ()> {
 535        let mut scan_state_rx = self.last_scan_state_rx.clone();
 536        async move {
 537            let mut scan_state = Some(scan_state_rx.borrow().clone());
 538            while let Some(ScanState::Initializing | ScanState::Updating) = scan_state {
 539                scan_state = scan_state_rx.recv().await;
 540            }
 541        }
 542    }
 543
 544    fn scan_state(&self) -> ScanState {
 545        self.last_scan_state_rx.borrow().clone()
 546    }
 547
 548    pub fn snapshot(&self) -> LocalSnapshot {
 549        self.snapshot.clone()
 550    }
 551
 552    pub fn metadata_proto(&self) -> proto::WorktreeMetadata {
 553        proto::WorktreeMetadata {
 554            id: self.id().to_proto(),
 555            root_name: self.root_name().to_string(),
 556            visible: self.visible,
 557        }
 558    }
 559
 560    fn load(&self, path: &Path, cx: &mut ModelContext<Worktree>) -> Task<Result<(File, String)>> {
 561        let handle = cx.handle();
 562        let path = Arc::from(path);
 563        let abs_path = self.absolutize(&path);
 564        let fs = self.fs.clone();
 565        cx.spawn(|this, mut cx| async move {
 566            let text = fs.load(&abs_path).await?;
 567            // Eagerly populate the snapshot with an updated entry for the loaded file
 568            let entry = this
 569                .update(&mut cx, |this, cx| {
 570                    this.as_local()
 571                        .unwrap()
 572                        .refresh_entry(path, abs_path, None, cx)
 573                })
 574                .await?;
 575            Ok((
 576                File {
 577                    entry_id: Some(entry.id),
 578                    worktree: handle,
 579                    path: entry.path,
 580                    mtime: entry.mtime,
 581                    is_local: true,
 582                },
 583                text,
 584            ))
 585        })
 586    }
 587
 588    pub fn save_buffer_as(
 589        &self,
 590        buffer_handle: ModelHandle<Buffer>,
 591        path: impl Into<Arc<Path>>,
 592        cx: &mut ModelContext<Worktree>,
 593    ) -> Task<Result<()>> {
 594        let buffer = buffer_handle.read(cx);
 595        let text = buffer.as_rope().clone();
 596        let fingerprint = text.fingerprint();
 597        let version = buffer.version();
 598        let save = self.write_file(path, text, buffer.line_ending(), cx);
 599        let handle = cx.handle();
 600        cx.as_mut().spawn(|mut cx| async move {
 601            let entry = save.await?;
 602            let file = File {
 603                entry_id: Some(entry.id),
 604                worktree: handle,
 605                path: entry.path,
 606                mtime: entry.mtime,
 607                is_local: true,
 608            };
 609
 610            buffer_handle.update(&mut cx, |buffer, cx| {
 611                buffer.did_save(version, fingerprint, file.mtime, Some(Arc::new(file)), cx);
 612            });
 613
 614            Ok(())
 615        })
 616    }
 617
 618    pub fn create_entry(
 619        &self,
 620        path: impl Into<Arc<Path>>,
 621        is_dir: bool,
 622        cx: &mut ModelContext<Worktree>,
 623    ) -> Task<Result<Entry>> {
 624        self.write_entry_internal(
 625            path,
 626            if is_dir {
 627                None
 628            } else {
 629                Some(Default::default())
 630            },
 631            cx,
 632        )
 633    }
 634
 635    pub fn write_file(
 636        &self,
 637        path: impl Into<Arc<Path>>,
 638        text: Rope,
 639        line_ending: LineEnding,
 640        cx: &mut ModelContext<Worktree>,
 641    ) -> Task<Result<Entry>> {
 642        self.write_entry_internal(path, Some((text, line_ending)), cx)
 643    }
 644
 645    pub fn delete_entry(
 646        &self,
 647        entry_id: ProjectEntryId,
 648        cx: &mut ModelContext<Worktree>,
 649    ) -> Option<Task<Result<()>>> {
 650        let entry = self.entry_for_id(entry_id)?.clone();
 651        let abs_path = self.absolutize(&entry.path);
 652        let delete = cx.background().spawn({
 653            let fs = self.fs.clone();
 654            let abs_path = abs_path.clone();
 655            async move {
 656                if entry.is_file() {
 657                    fs.remove_file(&abs_path, Default::default()).await
 658                } else {
 659                    fs.remove_dir(
 660                        &abs_path,
 661                        RemoveOptions {
 662                            recursive: true,
 663                            ignore_if_not_exists: false,
 664                        },
 665                    )
 666                    .await
 667                }
 668            }
 669        });
 670
 671        Some(cx.spawn(|this, mut cx| async move {
 672            delete.await?;
 673            this.update(&mut cx, |this, cx| {
 674                let this = this.as_local_mut().unwrap();
 675                {
 676                    let mut snapshot = this.background_snapshot.lock();
 677                    snapshot.delete_entry(entry_id);
 678                }
 679                this.poll_snapshot(true, cx);
 680            });
 681            Ok(())
 682        }))
 683    }
 684
 685    pub fn rename_entry(
 686        &self,
 687        entry_id: ProjectEntryId,
 688        new_path: impl Into<Arc<Path>>,
 689        cx: &mut ModelContext<Worktree>,
 690    ) -> Option<Task<Result<Entry>>> {
 691        let old_path = self.entry_for_id(entry_id)?.path.clone();
 692        let new_path = new_path.into();
 693        let abs_old_path = self.absolutize(&old_path);
 694        let abs_new_path = self.absolutize(&new_path);
 695        let rename = cx.background().spawn({
 696            let fs = self.fs.clone();
 697            let abs_new_path = abs_new_path.clone();
 698            async move {
 699                fs.rename(&abs_old_path, &abs_new_path, Default::default())
 700                    .await
 701            }
 702        });
 703
 704        Some(cx.spawn(|this, mut cx| async move {
 705            rename.await?;
 706            let entry = this
 707                .update(&mut cx, |this, cx| {
 708                    this.as_local_mut().unwrap().refresh_entry(
 709                        new_path.clone(),
 710                        abs_new_path,
 711                        Some(old_path),
 712                        cx,
 713                    )
 714                })
 715                .await?;
 716            Ok(entry)
 717        }))
 718    }
 719
 720    pub fn copy_entry(
 721        &self,
 722        entry_id: ProjectEntryId,
 723        new_path: impl Into<Arc<Path>>,
 724        cx: &mut ModelContext<Worktree>,
 725    ) -> Option<Task<Result<Entry>>> {
 726        let old_path = self.entry_for_id(entry_id)?.path.clone();
 727        let new_path = new_path.into();
 728        let abs_old_path = self.absolutize(&old_path);
 729        let abs_new_path = self.absolutize(&new_path);
 730        let copy = cx.background().spawn({
 731            let fs = self.fs.clone();
 732            let abs_new_path = abs_new_path.clone();
 733            async move {
 734                copy_recursive(
 735                    fs.as_ref(),
 736                    &abs_old_path,
 737                    &abs_new_path,
 738                    Default::default(),
 739                )
 740                .await
 741            }
 742        });
 743
 744        Some(cx.spawn(|this, mut cx| async move {
 745            copy.await?;
 746            let entry = this
 747                .update(&mut cx, |this, cx| {
 748                    this.as_local_mut().unwrap().refresh_entry(
 749                        new_path.clone(),
 750                        abs_new_path,
 751                        None,
 752                        cx,
 753                    )
 754                })
 755                .await?;
 756            Ok(entry)
 757        }))
 758    }
 759
 760    fn write_entry_internal(
 761        &self,
 762        path: impl Into<Arc<Path>>,
 763        text_if_file: Option<(Rope, LineEnding)>,
 764        cx: &mut ModelContext<Worktree>,
 765    ) -> Task<Result<Entry>> {
 766        let path = path.into();
 767        let abs_path = self.absolutize(&path);
 768        let write = cx.background().spawn({
 769            let fs = self.fs.clone();
 770            let abs_path = abs_path.clone();
 771            async move {
 772                if let Some((text, line_ending)) = text_if_file {
 773                    fs.save(&abs_path, &text, line_ending).await
 774                } else {
 775                    fs.create_dir(&abs_path).await
 776                }
 777            }
 778        });
 779
 780        cx.spawn(|this, mut cx| async move {
 781            write.await?;
 782            let entry = this
 783                .update(&mut cx, |this, cx| {
 784                    this.as_local_mut()
 785                        .unwrap()
 786                        .refresh_entry(path, abs_path, None, cx)
 787                })
 788                .await?;
 789            Ok(entry)
 790        })
 791    }
 792
 793    fn refresh_entry(
 794        &self,
 795        path: Arc<Path>,
 796        abs_path: PathBuf,
 797        old_path: Option<Arc<Path>>,
 798        cx: &mut ModelContext<Worktree>,
 799    ) -> Task<Result<Entry>> {
 800        let fs = self.fs.clone();
 801        let root_char_bag;
 802        let next_entry_id;
 803        {
 804            let snapshot = self.background_snapshot.lock();
 805            root_char_bag = snapshot.root_char_bag;
 806            next_entry_id = snapshot.next_entry_id.clone();
 807        }
 808        cx.spawn_weak(|this, mut cx| async move {
 809            let mut entry = Entry::new(
 810                path.clone(),
 811                &fs.metadata(&abs_path)
 812                    .await?
 813                    .ok_or_else(|| anyhow!("could not read saved file metadata"))?,
 814                &next_entry_id,
 815                root_char_bag,
 816            );
 817
 818            let this = this
 819                .upgrade(&cx)
 820                .ok_or_else(|| anyhow!("worktree was dropped"))?;
 821            this.update(&mut cx, |this, cx| {
 822                let this = this.as_local_mut().unwrap();
 823                let inserted_entry;
 824                {
 825                    let mut snapshot = this.background_snapshot.lock();
 826                    entry.is_ignored = snapshot
 827                        .ignore_stack_for_abs_path(&abs_path, entry.is_dir())
 828                        .is_abs_path_ignored(&abs_path, entry.is_dir());
 829                    if let Some(old_path) = old_path {
 830                        snapshot.remove_path(&old_path);
 831                    }
 832                    inserted_entry = snapshot.insert_entry(entry, fs.as_ref());
 833                    snapshot.scan_id += 1;
 834                }
 835                this.poll_snapshot(true, cx);
 836                Ok(inserted_entry)
 837            })
 838        })
 839    }
 840
 841    pub fn share(&mut self, project_id: u64, cx: &mut ModelContext<Worktree>) -> Task<Result<()>> {
 842        let (share_tx, share_rx) = oneshot::channel();
 843
 844        if self.share.is_some() {
 845            let _ = share_tx.send(Ok(()));
 846        } else {
 847            let (snapshots_tx, mut snapshots_rx) = watch::channel_with(self.snapshot());
 848            let rpc = self.client.clone();
 849            let worktree_id = cx.model_id() as u64;
 850            let maintain_remote_snapshot = cx.background().spawn({
 851                let rpc = rpc.clone();
 852                let diagnostic_summaries = self.diagnostic_summaries.clone();
 853                async move {
 854                    let mut prev_snapshot = match snapshots_rx.recv().await {
 855                        Some(snapshot) => {
 856                            let update = proto::UpdateWorktree {
 857                                project_id,
 858                                worktree_id,
 859                                root_name: snapshot.root_name().to_string(),
 860                                updated_entries: snapshot
 861                                    .entries_by_path
 862                                    .iter()
 863                                    .map(Into::into)
 864                                    .collect(),
 865                                removed_entries: Default::default(),
 866                                scan_id: snapshot.scan_id as u64,
 867                                is_last_update: true,
 868                            };
 869                            if let Err(error) = send_worktree_update(&rpc, update).await {
 870                                let _ = share_tx.send(Err(error));
 871                                return Err(anyhow!("failed to send initial update worktree"));
 872                            } else {
 873                                let _ = share_tx.send(Ok(()));
 874                                snapshot
 875                            }
 876                        }
 877                        None => {
 878                            share_tx
 879                                .send(Err(anyhow!("worktree dropped before share completed")))
 880                                .ok();
 881                            return Err(anyhow!("failed to send initial update worktree"));
 882                        }
 883                    };
 884
 885                    for (path, summary) in diagnostic_summaries.iter() {
 886                        rpc.send(proto::UpdateDiagnosticSummary {
 887                            project_id,
 888                            worktree_id,
 889                            summary: Some(summary.to_proto(&path.0)),
 890                        })?;
 891                    }
 892
 893                    while let Some(snapshot) = snapshots_rx.recv().await {
 894                        send_worktree_update(
 895                            &rpc,
 896                            snapshot.build_update(&prev_snapshot, project_id, worktree_id, true),
 897                        )
 898                        .await?;
 899                        prev_snapshot = snapshot;
 900                    }
 901
 902                    Ok::<_, anyhow::Error>(())
 903                }
 904                .log_err()
 905            });
 906            self.share = Some(ShareState {
 907                project_id,
 908                snapshots_tx,
 909                _maintain_remote_snapshot: Some(maintain_remote_snapshot),
 910            });
 911        }
 912
 913        cx.foreground().spawn(async move {
 914            share_rx
 915                .await
 916                .unwrap_or_else(|_| Err(anyhow!("share ended")))
 917        })
 918    }
 919
 920    pub fn unshare(&mut self) {
 921        self.share.take();
 922    }
 923
 924    pub fn is_shared(&self) -> bool {
 925        self.share.is_some()
 926    }
 927
 928    pub fn send_extension_counts(&self, project_id: u64) {
 929        let mut extensions = Vec::new();
 930        let mut counts = Vec::new();
 931
 932        for (extension, count) in self.extension_counts() {
 933            extensions.push(extension.to_string_lossy().to_string());
 934            counts.push(*count as u32);
 935        }
 936
 937        self.client
 938            .send(proto::UpdateWorktreeExtensions {
 939                project_id,
 940                worktree_id: self.id().to_proto(),
 941                extensions,
 942                counts,
 943            })
 944            .log_err();
 945    }
 946}
 947
 948impl RemoteWorktree {
 949    fn snapshot(&self) -> Snapshot {
 950        self.snapshot.clone()
 951    }
 952
 953    fn poll_snapshot(&mut self, cx: &mut ModelContext<Worktree>) {
 954        self.snapshot = self.background_snapshot.lock().clone();
 955        cx.emit(Event::UpdatedEntries);
 956        cx.notify();
 957    }
 958
 959    pub fn disconnected_from_host(&mut self) {
 960        self.updates_tx.take();
 961        self.snapshot_subscriptions.clear();
 962    }
 963
 964    pub fn update_from_remote(&mut self, update: proto::UpdateWorktree) {
 965        if let Some(updates_tx) = &self.updates_tx {
 966            updates_tx
 967                .unbounded_send(update)
 968                .expect("consumer runs to completion");
 969        }
 970    }
 971
 972    fn observed_snapshot(&self, scan_id: usize) -> bool {
 973        self.scan_id > scan_id || (self.scan_id == scan_id && self.is_complete)
 974    }
 975
 976    fn wait_for_snapshot(&mut self, scan_id: usize) -> impl Future<Output = ()> {
 977        let (tx, rx) = oneshot::channel();
 978        if self.observed_snapshot(scan_id) {
 979            let _ = tx.send(());
 980        } else {
 981            match self
 982                .snapshot_subscriptions
 983                .binary_search_by_key(&scan_id, |probe| probe.0)
 984            {
 985                Ok(ix) | Err(ix) => self.snapshot_subscriptions.insert(ix, (scan_id, tx)),
 986            }
 987        }
 988
 989        async move {
 990            let _ = rx.await;
 991        }
 992    }
 993
 994    pub fn update_diagnostic_summary(
 995        &mut self,
 996        path: Arc<Path>,
 997        summary: &proto::DiagnosticSummary,
 998    ) {
 999        let summary = DiagnosticSummary {
1000            language_server_id: summary.language_server_id as usize,
1001            error_count: summary.error_count as usize,
1002            warning_count: summary.warning_count as usize,
1003        };
1004        if summary.is_empty() {
1005            self.diagnostic_summaries.remove(&PathKey(path.clone()));
1006        } else {
1007            self.diagnostic_summaries
1008                .insert(PathKey(path.clone()), summary);
1009        }
1010    }
1011
1012    pub fn insert_entry(
1013        &mut self,
1014        entry: proto::Entry,
1015        scan_id: usize,
1016        cx: &mut ModelContext<Worktree>,
1017    ) -> Task<Result<Entry>> {
1018        let wait_for_snapshot = self.wait_for_snapshot(scan_id);
1019        cx.spawn(|this, mut cx| async move {
1020            wait_for_snapshot.await;
1021            this.update(&mut cx, |worktree, _| {
1022                let worktree = worktree.as_remote_mut().unwrap();
1023                let mut snapshot = worktree.background_snapshot.lock();
1024                let entry = snapshot.insert_entry(entry);
1025                worktree.snapshot = snapshot.clone();
1026                entry
1027            })
1028        })
1029    }
1030
1031    pub(crate) fn delete_entry(
1032        &mut self,
1033        id: ProjectEntryId,
1034        scan_id: usize,
1035        cx: &mut ModelContext<Worktree>,
1036    ) -> Task<Result<()>> {
1037        let wait_for_snapshot = self.wait_for_snapshot(scan_id);
1038        cx.spawn(|this, mut cx| async move {
1039            wait_for_snapshot.await;
1040            this.update(&mut cx, |worktree, _| {
1041                let worktree = worktree.as_remote_mut().unwrap();
1042                let mut snapshot = worktree.background_snapshot.lock();
1043                snapshot.delete_entry(id);
1044                worktree.snapshot = snapshot.clone();
1045            });
1046            Ok(())
1047        })
1048    }
1049}
1050
1051impl Snapshot {
1052    pub fn id(&self) -> WorktreeId {
1053        self.id
1054    }
1055
1056    pub fn contains_entry(&self, entry_id: ProjectEntryId) -> bool {
1057        self.entries_by_id.get(&entry_id, &()).is_some()
1058    }
1059
1060    pub(crate) fn insert_entry(&mut self, entry: proto::Entry) -> Result<Entry> {
1061        let entry = Entry::try_from((&self.root_char_bag, entry))?;
1062        let old_entry = self.entries_by_id.insert_or_replace(
1063            PathEntry {
1064                id: entry.id,
1065                path: entry.path.clone(),
1066                is_ignored: entry.is_ignored,
1067                scan_id: 0,
1068            },
1069            &(),
1070        );
1071        if let Some(old_entry) = old_entry {
1072            self.entries_by_path.remove(&PathKey(old_entry.path), &());
1073        }
1074        self.entries_by_path.insert_or_replace(entry.clone(), &());
1075        Ok(entry)
1076    }
1077
1078    fn delete_entry(&mut self, entry_id: ProjectEntryId) -> bool {
1079        if let Some(removed_entry) = self.entries_by_id.remove(&entry_id, &()) {
1080            self.entries_by_path = {
1081                let mut cursor = self.entries_by_path.cursor();
1082                let mut new_entries_by_path =
1083                    cursor.slice(&TraversalTarget::Path(&removed_entry.path), Bias::Left, &());
1084                while let Some(entry) = cursor.item() {
1085                    if entry.path.starts_with(&removed_entry.path) {
1086                        self.entries_by_id.remove(&entry.id, &());
1087                        cursor.next(&());
1088                    } else {
1089                        break;
1090                    }
1091                }
1092                new_entries_by_path.push_tree(cursor.suffix(&()), &());
1093                new_entries_by_path
1094            };
1095
1096            true
1097        } else {
1098            false
1099        }
1100    }
1101
1102    pub(crate) fn apply_remote_update(&mut self, update: proto::UpdateWorktree) -> Result<()> {
1103        let mut entries_by_path_edits = Vec::new();
1104        let mut entries_by_id_edits = Vec::new();
1105        for entry_id in update.removed_entries {
1106            let entry = self
1107                .entry_for_id(ProjectEntryId::from_proto(entry_id))
1108                .ok_or_else(|| anyhow!("unknown entry {}", entry_id))?;
1109            entries_by_path_edits.push(Edit::Remove(PathKey(entry.path.clone())));
1110            entries_by_id_edits.push(Edit::Remove(entry.id));
1111        }
1112
1113        for entry in update.updated_entries {
1114            let entry = Entry::try_from((&self.root_char_bag, entry))?;
1115            if let Some(PathEntry { path, .. }) = self.entries_by_id.get(&entry.id, &()) {
1116                entries_by_path_edits.push(Edit::Remove(PathKey(path.clone())));
1117            }
1118            entries_by_id_edits.push(Edit::Insert(PathEntry {
1119                id: entry.id,
1120                path: entry.path.clone(),
1121                is_ignored: entry.is_ignored,
1122                scan_id: 0,
1123            }));
1124            entries_by_path_edits.push(Edit::Insert(entry));
1125        }
1126
1127        self.entries_by_path.edit(entries_by_path_edits, &());
1128        self.entries_by_id.edit(entries_by_id_edits, &());
1129        self.scan_id = update.scan_id as usize;
1130        self.is_complete = update.is_last_update;
1131
1132        Ok(())
1133    }
1134
1135    pub fn file_count(&self) -> usize {
1136        self.entries_by_path.summary().file_count
1137    }
1138
1139    pub fn visible_file_count(&self) -> usize {
1140        self.entries_by_path.summary().visible_file_count
1141    }
1142
1143    fn traverse_from_offset(
1144        &self,
1145        include_dirs: bool,
1146        include_ignored: bool,
1147        start_offset: usize,
1148    ) -> Traversal {
1149        let mut cursor = self.entries_by_path.cursor();
1150        cursor.seek(
1151            &TraversalTarget::Count {
1152                count: start_offset,
1153                include_dirs,
1154                include_ignored,
1155            },
1156            Bias::Right,
1157            &(),
1158        );
1159        Traversal {
1160            cursor,
1161            include_dirs,
1162            include_ignored,
1163        }
1164    }
1165
1166    fn traverse_from_path(
1167        &self,
1168        include_dirs: bool,
1169        include_ignored: bool,
1170        path: &Path,
1171    ) -> Traversal {
1172        let mut cursor = self.entries_by_path.cursor();
1173        cursor.seek(&TraversalTarget::Path(path), Bias::Left, &());
1174        Traversal {
1175            cursor,
1176            include_dirs,
1177            include_ignored,
1178        }
1179    }
1180
1181    pub fn files(&self, include_ignored: bool, start: usize) -> Traversal {
1182        self.traverse_from_offset(false, include_ignored, start)
1183    }
1184
1185    pub fn entries(&self, include_ignored: bool) -> Traversal {
1186        self.traverse_from_offset(true, include_ignored, 0)
1187    }
1188
1189    pub fn paths(&self) -> impl Iterator<Item = &Arc<Path>> {
1190        let empty_path = Path::new("");
1191        self.entries_by_path
1192            .cursor::<()>()
1193            .filter(move |entry| entry.path.as_ref() != empty_path)
1194            .map(|entry| &entry.path)
1195    }
1196
1197    fn child_entries<'a>(&'a self, parent_path: &'a Path) -> ChildEntriesIter<'a> {
1198        let mut cursor = self.entries_by_path.cursor();
1199        cursor.seek(&TraversalTarget::Path(parent_path), Bias::Right, &());
1200        let traversal = Traversal {
1201            cursor,
1202            include_dirs: true,
1203            include_ignored: true,
1204        };
1205        ChildEntriesIter {
1206            traversal,
1207            parent_path,
1208        }
1209    }
1210
1211    pub fn root_entry(&self) -> Option<&Entry> {
1212        self.entry_for_path("")
1213    }
1214
1215    pub fn root_name(&self) -> &str {
1216        &self.root_name
1217    }
1218
1219    pub fn scan_id(&self) -> usize {
1220        self.scan_id
1221    }
1222
1223    pub fn entry_for_path(&self, path: impl AsRef<Path>) -> Option<&Entry> {
1224        let path = path.as_ref();
1225        self.traverse_from_path(true, true, path)
1226            .entry()
1227            .and_then(|entry| {
1228                if entry.path.as_ref() == path {
1229                    Some(entry)
1230                } else {
1231                    None
1232                }
1233            })
1234    }
1235
1236    pub fn entry_for_id(&self, id: ProjectEntryId) -> Option<&Entry> {
1237        let entry = self.entries_by_id.get(&id, &())?;
1238        self.entry_for_path(&entry.path)
1239    }
1240
1241    pub fn inode_for_path(&self, path: impl AsRef<Path>) -> Option<u64> {
1242        self.entry_for_path(path.as_ref()).map(|e| e.inode)
1243    }
1244}
1245
1246impl LocalSnapshot {
1247    pub fn abs_path(&self) -> &Arc<Path> {
1248        &self.abs_path
1249    }
1250
1251    pub fn extension_counts(&self) -> &HashMap<OsString, usize> {
1252        &self.extension_counts
1253    }
1254
1255    #[cfg(test)]
1256    pub(crate) fn build_initial_update(&self, project_id: u64) -> proto::UpdateWorktree {
1257        let root_name = self.root_name.clone();
1258        proto::UpdateWorktree {
1259            project_id,
1260            worktree_id: self.id().to_proto(),
1261            root_name,
1262            updated_entries: self.entries_by_path.iter().map(Into::into).collect(),
1263            removed_entries: Default::default(),
1264            scan_id: self.scan_id as u64,
1265            is_last_update: true,
1266        }
1267    }
1268
1269    pub(crate) fn build_update(
1270        &self,
1271        other: &Self,
1272        project_id: u64,
1273        worktree_id: u64,
1274        include_ignored: bool,
1275    ) -> proto::UpdateWorktree {
1276        let mut updated_entries = Vec::new();
1277        let mut removed_entries = Vec::new();
1278        let mut self_entries = self
1279            .entries_by_id
1280            .cursor::<()>()
1281            .filter(|e| include_ignored || !e.is_ignored)
1282            .peekable();
1283        let mut other_entries = other
1284            .entries_by_id
1285            .cursor::<()>()
1286            .filter(|e| include_ignored || !e.is_ignored)
1287            .peekable();
1288        loop {
1289            match (self_entries.peek(), other_entries.peek()) {
1290                (Some(self_entry), Some(other_entry)) => {
1291                    match Ord::cmp(&self_entry.id, &other_entry.id) {
1292                        Ordering::Less => {
1293                            let entry = self.entry_for_id(self_entry.id).unwrap().into();
1294                            updated_entries.push(entry);
1295                            self_entries.next();
1296                        }
1297                        Ordering::Equal => {
1298                            if self_entry.scan_id != other_entry.scan_id {
1299                                let entry = self.entry_for_id(self_entry.id).unwrap().into();
1300                                updated_entries.push(entry);
1301                            }
1302
1303                            self_entries.next();
1304                            other_entries.next();
1305                        }
1306                        Ordering::Greater => {
1307                            removed_entries.push(other_entry.id.to_proto());
1308                            other_entries.next();
1309                        }
1310                    }
1311                }
1312                (Some(self_entry), None) => {
1313                    let entry = self.entry_for_id(self_entry.id).unwrap().into();
1314                    updated_entries.push(entry);
1315                    self_entries.next();
1316                }
1317                (None, Some(other_entry)) => {
1318                    removed_entries.push(other_entry.id.to_proto());
1319                    other_entries.next();
1320                }
1321                (None, None) => break,
1322            }
1323        }
1324
1325        proto::UpdateWorktree {
1326            project_id,
1327            worktree_id,
1328            root_name: self.root_name().to_string(),
1329            updated_entries,
1330            removed_entries,
1331            scan_id: self.scan_id as u64,
1332            is_last_update: true,
1333        }
1334    }
1335
1336    fn insert_entry(&mut self, mut entry: Entry, fs: &dyn Fs) -> Entry {
1337        if !entry.is_dir() && entry.path.file_name() == Some(&GITIGNORE) {
1338            let abs_path = self.abs_path.join(&entry.path);
1339            match smol::block_on(build_gitignore(&abs_path, fs)) {
1340                Ok(ignore) => {
1341                    self.ignores_by_parent_abs_path.insert(
1342                        abs_path.parent().unwrap().into(),
1343                        (Arc::new(ignore), self.scan_id),
1344                    );
1345                }
1346                Err(error) => {
1347                    log::error!(
1348                        "error loading .gitignore file {:?} - {:?}",
1349                        &entry.path,
1350                        error
1351                    );
1352                }
1353            }
1354        }
1355
1356        self.reuse_entry_id(&mut entry);
1357        self.entries_by_path.insert_or_replace(entry.clone(), &());
1358        let scan_id = self.scan_id;
1359        let removed_entry = self.entries_by_id.insert_or_replace(
1360            PathEntry {
1361                id: entry.id,
1362                path: entry.path.clone(),
1363                is_ignored: entry.is_ignored,
1364                scan_id,
1365            },
1366            &(),
1367        );
1368
1369        if let Some(removed_entry) = removed_entry {
1370            self.dec_extension_count(&removed_entry.path, removed_entry.is_ignored);
1371        }
1372        self.inc_extension_count(&entry.path, entry.is_ignored);
1373
1374        entry
1375    }
1376
1377    fn populate_dir(
1378        &mut self,
1379        parent_path: Arc<Path>,
1380        entries: impl IntoIterator<Item = Entry>,
1381        ignore: Option<Arc<Gitignore>>,
1382    ) {
1383        let mut parent_entry = if let Some(parent_entry) =
1384            self.entries_by_path.get(&PathKey(parent_path.clone()), &())
1385        {
1386            parent_entry.clone()
1387        } else {
1388            log::warn!(
1389                "populating a directory {:?} that has been removed",
1390                parent_path
1391            );
1392            return;
1393        };
1394
1395        if let Some(ignore) = ignore {
1396            self.ignores_by_parent_abs_path.insert(
1397                self.abs_path.join(&parent_path).into(),
1398                (ignore, self.scan_id),
1399            );
1400        }
1401        if matches!(parent_entry.kind, EntryKind::PendingDir) {
1402            parent_entry.kind = EntryKind::Dir;
1403        } else {
1404            unreachable!();
1405        }
1406
1407        let mut entries_by_path_edits = vec![Edit::Insert(parent_entry)];
1408        let mut entries_by_id_edits = Vec::new();
1409
1410        for mut entry in entries {
1411            self.reuse_entry_id(&mut entry);
1412            self.inc_extension_count(&entry.path, entry.is_ignored);
1413            entries_by_id_edits.push(Edit::Insert(PathEntry {
1414                id: entry.id,
1415                path: entry.path.clone(),
1416                is_ignored: entry.is_ignored,
1417                scan_id: self.scan_id,
1418            }));
1419            entries_by_path_edits.push(Edit::Insert(entry));
1420        }
1421
1422        self.entries_by_path.edit(entries_by_path_edits, &());
1423        let removed_entries = self.entries_by_id.edit(entries_by_id_edits, &());
1424
1425        for removed_entry in removed_entries {
1426            self.dec_extension_count(&removed_entry.path, removed_entry.is_ignored);
1427        }
1428    }
1429
1430    fn inc_extension_count(&mut self, path: &Path, ignored: bool) {
1431        if !ignored {
1432            if let Some(extension) = path.extension() {
1433                if let Some(count) = self.extension_counts.get_mut(extension) {
1434                    *count += 1;
1435                } else {
1436                    self.extension_counts.insert(extension.into(), 1);
1437                }
1438            }
1439        }
1440    }
1441
1442    fn dec_extension_count(&mut self, path: &Path, ignored: bool) {
1443        if !ignored {
1444            if let Some(extension) = path.extension() {
1445                if let Some(count) = self.extension_counts.get_mut(extension) {
1446                    *count -= 1;
1447                }
1448            }
1449        }
1450    }
1451
1452    fn reuse_entry_id(&mut self, entry: &mut Entry) {
1453        if let Some(removed_entry_id) = self.removed_entry_ids.remove(&entry.inode) {
1454            entry.id = removed_entry_id;
1455        } else if let Some(existing_entry) = self.entry_for_path(&entry.path) {
1456            entry.id = existing_entry.id;
1457        }
1458    }
1459
1460    fn remove_path(&mut self, path: &Path) {
1461        let mut new_entries;
1462        let removed_entries;
1463        {
1464            let mut cursor = self.entries_by_path.cursor::<TraversalProgress>();
1465            new_entries = cursor.slice(&TraversalTarget::Path(path), Bias::Left, &());
1466            removed_entries = cursor.slice(&TraversalTarget::PathSuccessor(path), Bias::Left, &());
1467            new_entries.push_tree(cursor.suffix(&()), &());
1468        }
1469        self.entries_by_path = new_entries;
1470
1471        let mut entries_by_id_edits = Vec::new();
1472        for entry in removed_entries.cursor::<()>() {
1473            let removed_entry_id = self
1474                .removed_entry_ids
1475                .entry(entry.inode)
1476                .or_insert(entry.id);
1477            *removed_entry_id = cmp::max(*removed_entry_id, entry.id);
1478            entries_by_id_edits.push(Edit::Remove(entry.id));
1479            self.dec_extension_count(&entry.path, entry.is_ignored);
1480        }
1481        self.entries_by_id.edit(entries_by_id_edits, &());
1482
1483        if path.file_name() == Some(&GITIGNORE) {
1484            let abs_parent_path = self.abs_path.join(path.parent().unwrap());
1485            if let Some((_, scan_id)) = self
1486                .ignores_by_parent_abs_path
1487                .get_mut(abs_parent_path.as_path())
1488            {
1489                *scan_id = self.snapshot.scan_id;
1490            }
1491        }
1492    }
1493
1494    fn ancestor_inodes_for_path(&self, path: &Path) -> TreeSet<u64> {
1495        let mut inodes = TreeSet::default();
1496        for ancestor in path.ancestors().skip(1) {
1497            if let Some(entry) = self.entry_for_path(ancestor) {
1498                inodes.insert(entry.inode);
1499            }
1500        }
1501        inodes
1502    }
1503
1504    fn ignore_stack_for_abs_path(&self, abs_path: &Path, is_dir: bool) -> Arc<IgnoreStack> {
1505        let mut new_ignores = Vec::new();
1506        for ancestor in abs_path.ancestors().skip(1) {
1507            if let Some((ignore, _)) = self.ignores_by_parent_abs_path.get(ancestor) {
1508                new_ignores.push((ancestor, Some(ignore.clone())));
1509            } else {
1510                new_ignores.push((ancestor, None));
1511            }
1512        }
1513
1514        let mut ignore_stack = IgnoreStack::none();
1515        for (parent_abs_path, ignore) in new_ignores.into_iter().rev() {
1516            if ignore_stack.is_abs_path_ignored(&parent_abs_path, true) {
1517                ignore_stack = IgnoreStack::all();
1518                break;
1519            } else if let Some(ignore) = ignore {
1520                ignore_stack = ignore_stack.append(parent_abs_path.into(), ignore);
1521            }
1522        }
1523
1524        if ignore_stack.is_abs_path_ignored(abs_path, is_dir) {
1525            ignore_stack = IgnoreStack::all();
1526        }
1527
1528        ignore_stack
1529    }
1530}
1531
1532async fn build_gitignore(abs_path: &Path, fs: &dyn Fs) -> Result<Gitignore> {
1533    let contents = fs.load(&abs_path).await?;
1534    let parent = abs_path.parent().unwrap_or(Path::new("/"));
1535    let mut builder = GitignoreBuilder::new(parent);
1536    for line in contents.lines() {
1537        builder.add_line(Some(abs_path.into()), line)?;
1538    }
1539    Ok(builder.build()?)
1540}
1541
1542impl WorktreeId {
1543    pub fn from_usize(handle_id: usize) -> Self {
1544        Self(handle_id)
1545    }
1546
1547    pub(crate) fn from_proto(id: u64) -> Self {
1548        Self(id as usize)
1549    }
1550
1551    pub fn to_proto(&self) -> u64 {
1552        self.0 as u64
1553    }
1554
1555    pub fn to_usize(&self) -> usize {
1556        self.0
1557    }
1558}
1559
1560impl fmt::Display for WorktreeId {
1561    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1562        self.0.fmt(f)
1563    }
1564}
1565
1566impl Deref for Worktree {
1567    type Target = Snapshot;
1568
1569    fn deref(&self) -> &Self::Target {
1570        match self {
1571            Worktree::Local(worktree) => &worktree.snapshot,
1572            Worktree::Remote(worktree) => &worktree.snapshot,
1573        }
1574    }
1575}
1576
1577impl Deref for LocalWorktree {
1578    type Target = LocalSnapshot;
1579
1580    fn deref(&self) -> &Self::Target {
1581        &self.snapshot
1582    }
1583}
1584
1585impl Deref for RemoteWorktree {
1586    type Target = Snapshot;
1587
1588    fn deref(&self) -> &Self::Target {
1589        &self.snapshot
1590    }
1591}
1592
1593impl fmt::Debug for LocalWorktree {
1594    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1595        self.snapshot.fmt(f)
1596    }
1597}
1598
1599impl fmt::Debug for Snapshot {
1600    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1601        struct EntriesById<'a>(&'a SumTree<PathEntry>);
1602        struct EntriesByPath<'a>(&'a SumTree<Entry>);
1603
1604        impl<'a> fmt::Debug for EntriesByPath<'a> {
1605            fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1606                f.debug_map()
1607                    .entries(self.0.iter().map(|entry| (&entry.path, entry.id)))
1608                    .finish()
1609            }
1610        }
1611
1612        impl<'a> fmt::Debug for EntriesById<'a> {
1613            fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1614                f.debug_list().entries(self.0.iter()).finish()
1615            }
1616        }
1617
1618        f.debug_struct("Snapshot")
1619            .field("id", &self.id)
1620            .field("root_name", &self.root_name)
1621            .field("entries_by_path", &EntriesByPath(&self.entries_by_path))
1622            .field("entries_by_id", &EntriesById(&self.entries_by_id))
1623            .finish()
1624    }
1625}
1626
1627#[derive(Clone, PartialEq)]
1628pub struct File {
1629    pub worktree: ModelHandle<Worktree>,
1630    pub path: Arc<Path>,
1631    pub mtime: SystemTime,
1632    pub(crate) entry_id: Option<ProjectEntryId>,
1633    pub(crate) is_local: bool,
1634}
1635
1636impl language::File for File {
1637    fn as_local(&self) -> Option<&dyn language::LocalFile> {
1638        if self.is_local {
1639            Some(self)
1640        } else {
1641            None
1642        }
1643    }
1644
1645    fn mtime(&self) -> SystemTime {
1646        self.mtime
1647    }
1648
1649    fn path(&self) -> &Arc<Path> {
1650        &self.path
1651    }
1652
1653    fn full_path(&self, cx: &AppContext) -> PathBuf {
1654        let mut full_path = PathBuf::new();
1655        full_path.push(self.worktree.read(cx).root_name());
1656        if self.path.components().next().is_some() {
1657            full_path.push(&self.path);
1658        }
1659        full_path
1660    }
1661
1662    /// Returns the last component of this handle's absolute path. If this handle refers to the root
1663    /// of its worktree, then this method will return the name of the worktree itself.
1664    fn file_name<'a>(&'a self, cx: &'a AppContext) -> &'a OsStr {
1665        self.path
1666            .file_name()
1667            .unwrap_or_else(|| OsStr::new(&self.worktree.read(cx).root_name))
1668    }
1669
1670    fn is_deleted(&self) -> bool {
1671        self.entry_id.is_none()
1672    }
1673
1674    fn save(
1675        &self,
1676        buffer_id: u64,
1677        text: Rope,
1678        version: clock::Global,
1679        line_ending: LineEnding,
1680        cx: &mut MutableAppContext,
1681    ) -> Task<Result<(clock::Global, String, SystemTime)>> {
1682        self.worktree.update(cx, |worktree, cx| match worktree {
1683            Worktree::Local(worktree) => {
1684                let rpc = worktree.client.clone();
1685                let project_id = worktree.share.as_ref().map(|share| share.project_id);
1686                let fingerprint = text.fingerprint();
1687                let save = worktree.write_file(self.path.clone(), text, line_ending, cx);
1688                cx.background().spawn(async move {
1689                    let entry = save.await?;
1690                    if let Some(project_id) = project_id {
1691                        rpc.send(proto::BufferSaved {
1692                            project_id,
1693                            buffer_id,
1694                            version: serialize_version(&version),
1695                            mtime: Some(entry.mtime.into()),
1696                            fingerprint: fingerprint.clone(),
1697                        })?;
1698                    }
1699                    Ok((version, fingerprint, entry.mtime))
1700                })
1701            }
1702            Worktree::Remote(worktree) => {
1703                let rpc = worktree.client.clone();
1704                let project_id = worktree.project_id;
1705                cx.foreground().spawn(async move {
1706                    let response = rpc
1707                        .request(proto::SaveBuffer {
1708                            project_id,
1709                            buffer_id,
1710                            version: serialize_version(&version),
1711                        })
1712                        .await?;
1713                    let version = deserialize_version(response.version);
1714                    let mtime = response
1715                        .mtime
1716                        .ok_or_else(|| anyhow!("missing mtime"))?
1717                        .into();
1718                    Ok((version, response.fingerprint, mtime))
1719                })
1720            }
1721        })
1722    }
1723
1724    fn as_any(&self) -> &dyn Any {
1725        self
1726    }
1727
1728    fn to_proto(&self) -> rpc::proto::File {
1729        rpc::proto::File {
1730            worktree_id: self.worktree.id() as u64,
1731            entry_id: self.entry_id.map(|entry_id| entry_id.to_proto()),
1732            path: self.path.to_string_lossy().into(),
1733            mtime: Some(self.mtime.into()),
1734        }
1735    }
1736}
1737
1738impl language::LocalFile for File {
1739    fn abs_path(&self, cx: &AppContext) -> PathBuf {
1740        self.worktree
1741            .read(cx)
1742            .as_local()
1743            .unwrap()
1744            .abs_path
1745            .join(&self.path)
1746    }
1747
1748    fn load(&self, cx: &AppContext) -> Task<Result<String>> {
1749        let worktree = self.worktree.read(cx).as_local().unwrap();
1750        let abs_path = worktree.absolutize(&self.path);
1751        let fs = worktree.fs.clone();
1752        cx.background()
1753            .spawn(async move { fs.load(&abs_path).await })
1754    }
1755
1756    fn buffer_reloaded(
1757        &self,
1758        buffer_id: u64,
1759        version: &clock::Global,
1760        fingerprint: String,
1761        line_ending: LineEnding,
1762        mtime: SystemTime,
1763        cx: &mut MutableAppContext,
1764    ) {
1765        let worktree = self.worktree.read(cx).as_local().unwrap();
1766        if let Some(project_id) = worktree.share.as_ref().map(|share| share.project_id) {
1767            worktree
1768                .client
1769                .send(proto::BufferReloaded {
1770                    project_id,
1771                    buffer_id,
1772                    version: serialize_version(&version),
1773                    mtime: Some(mtime.into()),
1774                    fingerprint,
1775                    line_ending: serialize_line_ending(line_ending) as i32,
1776                })
1777                .log_err();
1778        }
1779    }
1780}
1781
1782impl File {
1783    pub fn from_proto(
1784        proto: rpc::proto::File,
1785        worktree: ModelHandle<Worktree>,
1786        cx: &AppContext,
1787    ) -> Result<Self> {
1788        let worktree_id = worktree
1789            .read(cx)
1790            .as_remote()
1791            .ok_or_else(|| anyhow!("not remote"))?
1792            .id();
1793
1794        if worktree_id.to_proto() != proto.worktree_id {
1795            return Err(anyhow!("worktree id does not match file"));
1796        }
1797
1798        Ok(Self {
1799            worktree,
1800            path: Path::new(&proto.path).into(),
1801            mtime: proto.mtime.ok_or_else(|| anyhow!("no timestamp"))?.into(),
1802            entry_id: proto.entry_id.map(ProjectEntryId::from_proto),
1803            is_local: false,
1804        })
1805    }
1806
1807    pub fn from_dyn(file: Option<&dyn language::File>) -> Option<&Self> {
1808        file.and_then(|f| f.as_any().downcast_ref())
1809    }
1810
1811    pub fn worktree_id(&self, cx: &AppContext) -> WorktreeId {
1812        self.worktree.read(cx).id()
1813    }
1814
1815    pub fn project_entry_id(&self, _: &AppContext) -> Option<ProjectEntryId> {
1816        self.entry_id
1817    }
1818}
1819
1820#[derive(Clone, Debug, PartialEq, Eq)]
1821pub struct Entry {
1822    pub id: ProjectEntryId,
1823    pub kind: EntryKind,
1824    pub path: Arc<Path>,
1825    pub inode: u64,
1826    pub mtime: SystemTime,
1827    pub is_symlink: bool,
1828    pub is_ignored: bool,
1829}
1830
1831#[derive(Clone, Copy, Debug, PartialEq, Eq)]
1832pub enum EntryKind {
1833    PendingDir,
1834    Dir,
1835    File(CharBag),
1836}
1837
1838impl Entry {
1839    fn new(
1840        path: Arc<Path>,
1841        metadata: &fs::Metadata,
1842        next_entry_id: &AtomicUsize,
1843        root_char_bag: CharBag,
1844    ) -> Self {
1845        Self {
1846            id: ProjectEntryId::new(next_entry_id),
1847            kind: if metadata.is_dir {
1848                EntryKind::PendingDir
1849            } else {
1850                EntryKind::File(char_bag_for_path(root_char_bag, &path))
1851            },
1852            path,
1853            inode: metadata.inode,
1854            mtime: metadata.mtime,
1855            is_symlink: metadata.is_symlink,
1856            is_ignored: false,
1857        }
1858    }
1859
1860    pub fn is_dir(&self) -> bool {
1861        matches!(self.kind, EntryKind::Dir | EntryKind::PendingDir)
1862    }
1863
1864    pub fn is_file(&self) -> bool {
1865        matches!(self.kind, EntryKind::File(_))
1866    }
1867}
1868
1869impl sum_tree::Item for Entry {
1870    type Summary = EntrySummary;
1871
1872    fn summary(&self) -> Self::Summary {
1873        let visible_count = if self.is_ignored { 0 } else { 1 };
1874        let file_count;
1875        let visible_file_count;
1876        if self.is_file() {
1877            file_count = 1;
1878            visible_file_count = visible_count;
1879        } else {
1880            file_count = 0;
1881            visible_file_count = 0;
1882        }
1883
1884        EntrySummary {
1885            max_path: self.path.clone(),
1886            count: 1,
1887            visible_count,
1888            file_count,
1889            visible_file_count,
1890        }
1891    }
1892}
1893
1894impl sum_tree::KeyedItem for Entry {
1895    type Key = PathKey;
1896
1897    fn key(&self) -> Self::Key {
1898        PathKey(self.path.clone())
1899    }
1900}
1901
1902#[derive(Clone, Debug)]
1903pub struct EntrySummary {
1904    max_path: Arc<Path>,
1905    count: usize,
1906    visible_count: usize,
1907    file_count: usize,
1908    visible_file_count: usize,
1909}
1910
1911impl Default for EntrySummary {
1912    fn default() -> Self {
1913        Self {
1914            max_path: Arc::from(Path::new("")),
1915            count: 0,
1916            visible_count: 0,
1917            file_count: 0,
1918            visible_file_count: 0,
1919        }
1920    }
1921}
1922
1923impl sum_tree::Summary for EntrySummary {
1924    type Context = ();
1925
1926    fn add_summary(&mut self, rhs: &Self, _: &()) {
1927        self.max_path = rhs.max_path.clone();
1928        self.count += rhs.count;
1929        self.visible_count += rhs.visible_count;
1930        self.file_count += rhs.file_count;
1931        self.visible_file_count += rhs.visible_file_count;
1932    }
1933}
1934
1935#[derive(Clone, Debug)]
1936struct PathEntry {
1937    id: ProjectEntryId,
1938    path: Arc<Path>,
1939    is_ignored: bool,
1940    scan_id: usize,
1941}
1942
1943impl sum_tree::Item for PathEntry {
1944    type Summary = PathEntrySummary;
1945
1946    fn summary(&self) -> Self::Summary {
1947        PathEntrySummary { max_id: self.id }
1948    }
1949}
1950
1951impl sum_tree::KeyedItem for PathEntry {
1952    type Key = ProjectEntryId;
1953
1954    fn key(&self) -> Self::Key {
1955        self.id
1956    }
1957}
1958
1959#[derive(Clone, Debug, Default)]
1960struct PathEntrySummary {
1961    max_id: ProjectEntryId,
1962}
1963
1964impl sum_tree::Summary for PathEntrySummary {
1965    type Context = ();
1966
1967    fn add_summary(&mut self, summary: &Self, _: &Self::Context) {
1968        self.max_id = summary.max_id;
1969    }
1970}
1971
1972impl<'a> sum_tree::Dimension<'a, PathEntrySummary> for ProjectEntryId {
1973    fn add_summary(&mut self, summary: &'a PathEntrySummary, _: &()) {
1974        *self = summary.max_id;
1975    }
1976}
1977
1978#[derive(Clone, Debug, Eq, PartialEq, Ord, PartialOrd)]
1979pub struct PathKey(Arc<Path>);
1980
1981impl Default for PathKey {
1982    fn default() -> Self {
1983        Self(Path::new("").into())
1984    }
1985}
1986
1987impl<'a> sum_tree::Dimension<'a, EntrySummary> for PathKey {
1988    fn add_summary(&mut self, summary: &'a EntrySummary, _: &()) {
1989        self.0 = summary.max_path.clone();
1990    }
1991}
1992
1993struct BackgroundScanner {
1994    fs: Arc<dyn Fs>,
1995    snapshot: Arc<Mutex<LocalSnapshot>>,
1996    notify: UnboundedSender<ScanState>,
1997    executor: Arc<executor::Background>,
1998}
1999
2000impl BackgroundScanner {
2001    fn new(
2002        snapshot: Arc<Mutex<LocalSnapshot>>,
2003        notify: UnboundedSender<ScanState>,
2004        fs: Arc<dyn Fs>,
2005        executor: Arc<executor::Background>,
2006    ) -> Self {
2007        Self {
2008            fs,
2009            snapshot,
2010            notify,
2011            executor,
2012        }
2013    }
2014
2015    fn abs_path(&self) -> Arc<Path> {
2016        self.snapshot.lock().abs_path.clone()
2017    }
2018
2019    fn snapshot(&self) -> LocalSnapshot {
2020        self.snapshot.lock().clone()
2021    }
2022
2023    async fn run(mut self, events_rx: impl Stream<Item = Vec<fsevent::Event>>) {
2024        if self.notify.unbounded_send(ScanState::Initializing).is_err() {
2025            return;
2026        }
2027
2028        if let Err(err) = self.scan_dirs().await {
2029            if self
2030                .notify
2031                .unbounded_send(ScanState::Err(Arc::new(err)))
2032                .is_err()
2033            {
2034                return;
2035            }
2036        }
2037
2038        if self.notify.unbounded_send(ScanState::Idle).is_err() {
2039            return;
2040        }
2041
2042        futures::pin_mut!(events_rx);
2043
2044        while let Some(mut events) = events_rx.next().await {
2045            while let Poll::Ready(Some(additional_events)) = futures::poll!(events_rx.next()) {
2046                events.extend(additional_events);
2047            }
2048
2049            if self.notify.unbounded_send(ScanState::Updating).is_err() {
2050                break;
2051            }
2052
2053            if !self.process_events(events).await {
2054                break;
2055            }
2056
2057            if self.notify.unbounded_send(ScanState::Idle).is_err() {
2058                break;
2059            }
2060        }
2061    }
2062
2063    async fn scan_dirs(&mut self) -> Result<()> {
2064        let root_char_bag;
2065        let root_abs_path;
2066        let root_inode;
2067        let is_dir;
2068        let next_entry_id;
2069        {
2070            let snapshot = self.snapshot.lock();
2071            root_char_bag = snapshot.root_char_bag;
2072            root_abs_path = snapshot.abs_path.clone();
2073            root_inode = snapshot.root_entry().map(|e| e.inode);
2074            is_dir = snapshot.root_entry().map_or(false, |e| e.is_dir());
2075            next_entry_id = snapshot.next_entry_id.clone();
2076        };
2077
2078        // Populate ignores above the root.
2079        for ancestor in root_abs_path.ancestors().skip(1) {
2080            if let Ok(ignore) = build_gitignore(&ancestor.join(&*GITIGNORE), self.fs.as_ref()).await
2081            {
2082                self.snapshot
2083                    .lock()
2084                    .ignores_by_parent_abs_path
2085                    .insert(ancestor.into(), (ignore.into(), 0));
2086            }
2087        }
2088
2089        let ignore_stack = {
2090            let mut snapshot = self.snapshot.lock();
2091            let ignore_stack = snapshot.ignore_stack_for_abs_path(&root_abs_path, true);
2092            if ignore_stack.is_all() {
2093                if let Some(mut root_entry) = snapshot.root_entry().cloned() {
2094                    root_entry.is_ignored = true;
2095                    snapshot.insert_entry(root_entry, self.fs.as_ref());
2096                }
2097            }
2098            ignore_stack
2099        };
2100
2101        if is_dir {
2102            let path: Arc<Path> = Arc::from(Path::new(""));
2103            let mut ancestor_inodes = TreeSet::default();
2104            if let Some(root_inode) = root_inode {
2105                ancestor_inodes.insert(root_inode);
2106            }
2107
2108            let (tx, rx) = channel::unbounded();
2109            self.executor
2110                .block(tx.send(ScanJob {
2111                    abs_path: root_abs_path.to_path_buf(),
2112                    path,
2113                    ignore_stack,
2114                    ancestor_inodes,
2115                    scan_queue: tx.clone(),
2116                }))
2117                .unwrap();
2118            drop(tx);
2119
2120            self.executor
2121                .scoped(|scope| {
2122                    for _ in 0..self.executor.num_cpus() {
2123                        scope.spawn(async {
2124                            while let Ok(job) = rx.recv().await {
2125                                if let Err(err) = self
2126                                    .scan_dir(root_char_bag, next_entry_id.clone(), &job)
2127                                    .await
2128                                {
2129                                    log::error!("error scanning {:?}: {}", job.abs_path, err);
2130                                }
2131                            }
2132                        });
2133                    }
2134                })
2135                .await;
2136        }
2137
2138        Ok(())
2139    }
2140
2141    async fn scan_dir(
2142        &self,
2143        root_char_bag: CharBag,
2144        next_entry_id: Arc<AtomicUsize>,
2145        job: &ScanJob,
2146    ) -> Result<()> {
2147        let mut new_entries: Vec<Entry> = Vec::new();
2148        let mut new_jobs: Vec<ScanJob> = Vec::new();
2149        let mut ignore_stack = job.ignore_stack.clone();
2150        let mut new_ignore = None;
2151
2152        let mut child_paths = self.fs.read_dir(&job.abs_path).await?;
2153        while let Some(child_abs_path) = child_paths.next().await {
2154            let child_abs_path = match child_abs_path {
2155                Ok(child_abs_path) => child_abs_path,
2156                Err(error) => {
2157                    log::error!("error processing entry {:?}", error);
2158                    continue;
2159                }
2160            };
2161            let child_name = child_abs_path.file_name().unwrap();
2162            let child_path: Arc<Path> = job.path.join(child_name).into();
2163            let child_metadata = match self.fs.metadata(&child_abs_path).await {
2164                Ok(Some(metadata)) => metadata,
2165                Ok(None) => continue,
2166                Err(err) => {
2167                    log::error!("error processing {:?}: {:?}", child_abs_path, err);
2168                    continue;
2169                }
2170            };
2171
2172            // If we find a .gitignore, add it to the stack of ignores used to determine which paths are ignored
2173            if child_name == *GITIGNORE {
2174                match build_gitignore(&child_abs_path, self.fs.as_ref()).await {
2175                    Ok(ignore) => {
2176                        let ignore = Arc::new(ignore);
2177                        ignore_stack =
2178                            ignore_stack.append(job.abs_path.as_path().into(), ignore.clone());
2179                        new_ignore = Some(ignore);
2180                    }
2181                    Err(error) => {
2182                        log::error!(
2183                            "error loading .gitignore file {:?} - {:?}",
2184                            child_name,
2185                            error
2186                        );
2187                    }
2188                }
2189
2190                // Update ignore status of any child entries we've already processed to reflect the
2191                // ignore file in the current directory. Because `.gitignore` starts with a `.`,
2192                // there should rarely be too numerous. Update the ignore stack associated with any
2193                // new jobs as well.
2194                let mut new_jobs = new_jobs.iter_mut();
2195                for entry in &mut new_entries {
2196                    let entry_abs_path = self.abs_path().join(&entry.path);
2197                    entry.is_ignored =
2198                        ignore_stack.is_abs_path_ignored(&entry_abs_path, entry.is_dir());
2199                    if entry.is_dir() {
2200                        new_jobs.next().unwrap().ignore_stack = if entry.is_ignored {
2201                            IgnoreStack::all()
2202                        } else {
2203                            ignore_stack.clone()
2204                        };
2205                    }
2206                }
2207            }
2208
2209            let mut child_entry = Entry::new(
2210                child_path.clone(),
2211                &child_metadata,
2212                &next_entry_id,
2213                root_char_bag,
2214            );
2215
2216            if child_entry.is_dir() {
2217                let is_ignored = ignore_stack.is_abs_path_ignored(&child_abs_path, true);
2218                child_entry.is_ignored = is_ignored;
2219
2220                if !job.ancestor_inodes.contains(&child_entry.inode) {
2221                    let mut ancestor_inodes = job.ancestor_inodes.clone();
2222                    ancestor_inodes.insert(child_entry.inode);
2223                    new_jobs.push(ScanJob {
2224                        abs_path: child_abs_path,
2225                        path: child_path,
2226                        ignore_stack: if is_ignored {
2227                            IgnoreStack::all()
2228                        } else {
2229                            ignore_stack.clone()
2230                        },
2231                        ancestor_inodes,
2232                        scan_queue: job.scan_queue.clone(),
2233                    });
2234                }
2235            } else {
2236                child_entry.is_ignored = ignore_stack.is_abs_path_ignored(&child_abs_path, false);
2237            }
2238
2239            new_entries.push(child_entry);
2240        }
2241
2242        self.snapshot
2243            .lock()
2244            .populate_dir(job.path.clone(), new_entries, new_ignore);
2245        for new_job in new_jobs {
2246            job.scan_queue.send(new_job).await.unwrap();
2247        }
2248
2249        Ok(())
2250    }
2251
2252    async fn process_events(&mut self, mut events: Vec<fsevent::Event>) -> bool {
2253        events.sort_unstable_by(|a, b| a.path.cmp(&b.path));
2254        events.dedup_by(|a, b| a.path.starts_with(&b.path));
2255
2256        let root_char_bag;
2257        let root_abs_path;
2258        let next_entry_id;
2259        {
2260            let snapshot = self.snapshot.lock();
2261            root_char_bag = snapshot.root_char_bag;
2262            root_abs_path = snapshot.abs_path.clone();
2263            next_entry_id = snapshot.next_entry_id.clone();
2264        }
2265
2266        let root_canonical_path = if let Ok(path) = self.fs.canonicalize(&root_abs_path).await {
2267            path
2268        } else {
2269            return false;
2270        };
2271        let metadata = futures::future::join_all(
2272            events
2273                .iter()
2274                .map(|event| self.fs.metadata(&event.path))
2275                .collect::<Vec<_>>(),
2276        )
2277        .await;
2278
2279        // Hold the snapshot lock while clearing and re-inserting the root entries
2280        // for each event. This way, the snapshot is not observable to the foreground
2281        // thread while this operation is in-progress.
2282        let (scan_queue_tx, scan_queue_rx) = channel::unbounded();
2283        {
2284            let mut snapshot = self.snapshot.lock();
2285            snapshot.scan_id += 1;
2286            for event in &events {
2287                if let Ok(path) = event.path.strip_prefix(&root_canonical_path) {
2288                    snapshot.remove_path(&path);
2289                }
2290            }
2291
2292            for (event, metadata) in events.into_iter().zip(metadata.into_iter()) {
2293                let path: Arc<Path> = match event.path.strip_prefix(&root_canonical_path) {
2294                    Ok(path) => Arc::from(path.to_path_buf()),
2295                    Err(_) => {
2296                        log::error!(
2297                            "unexpected event {:?} for root path {:?}",
2298                            event.path,
2299                            root_canonical_path
2300                        );
2301                        continue;
2302                    }
2303                };
2304                let abs_path = root_abs_path.join(&path);
2305
2306                match metadata {
2307                    Ok(Some(metadata)) => {
2308                        let ignore_stack =
2309                            snapshot.ignore_stack_for_abs_path(&abs_path, metadata.is_dir);
2310                        let mut fs_entry = Entry::new(
2311                            path.clone(),
2312                            &metadata,
2313                            snapshot.next_entry_id.as_ref(),
2314                            snapshot.root_char_bag,
2315                        );
2316                        fs_entry.is_ignored = ignore_stack.is_all();
2317                        snapshot.insert_entry(fs_entry, self.fs.as_ref());
2318
2319                        let mut ancestor_inodes = snapshot.ancestor_inodes_for_path(&path);
2320                        if metadata.is_dir && !ancestor_inodes.contains(&metadata.inode) {
2321                            ancestor_inodes.insert(metadata.inode);
2322                            self.executor
2323                                .block(scan_queue_tx.send(ScanJob {
2324                                    abs_path,
2325                                    path,
2326                                    ignore_stack,
2327                                    ancestor_inodes,
2328                                    scan_queue: scan_queue_tx.clone(),
2329                                }))
2330                                .unwrap();
2331                        }
2332                    }
2333                    Ok(None) => {}
2334                    Err(err) => {
2335                        // TODO - create a special 'error' entry in the entries tree to mark this
2336                        log::error!("error reading file on event {:?}", err);
2337                    }
2338                }
2339            }
2340            drop(scan_queue_tx);
2341        }
2342
2343        // Scan any directories that were created as part of this event batch.
2344        self.executor
2345            .scoped(|scope| {
2346                for _ in 0..self.executor.num_cpus() {
2347                    scope.spawn(async {
2348                        while let Ok(job) = scan_queue_rx.recv().await {
2349                            if let Err(err) = self
2350                                .scan_dir(root_char_bag, next_entry_id.clone(), &job)
2351                                .await
2352                            {
2353                                log::error!("error scanning {:?}: {}", job.abs_path, err);
2354                            }
2355                        }
2356                    });
2357                }
2358            })
2359            .await;
2360
2361        // Attempt to detect renames only over a single batch of file-system events.
2362        self.snapshot.lock().removed_entry_ids.clear();
2363
2364        self.update_ignore_statuses().await;
2365        true
2366    }
2367
2368    async fn update_ignore_statuses(&self) {
2369        let mut snapshot = self.snapshot();
2370
2371        let mut ignores_to_update = Vec::new();
2372        let mut ignores_to_delete = Vec::new();
2373        for (parent_abs_path, (_, scan_id)) in &snapshot.ignores_by_parent_abs_path {
2374            if let Ok(parent_path) = parent_abs_path.strip_prefix(&snapshot.abs_path) {
2375                if *scan_id == snapshot.scan_id && snapshot.entry_for_path(parent_path).is_some() {
2376                    ignores_to_update.push(parent_abs_path.clone());
2377                }
2378
2379                let ignore_path = parent_path.join(&*GITIGNORE);
2380                if snapshot.entry_for_path(ignore_path).is_none() {
2381                    ignores_to_delete.push(parent_abs_path.clone());
2382                }
2383            }
2384        }
2385
2386        for parent_abs_path in ignores_to_delete {
2387            snapshot.ignores_by_parent_abs_path.remove(&parent_abs_path);
2388            self.snapshot
2389                .lock()
2390                .ignores_by_parent_abs_path
2391                .remove(&parent_abs_path);
2392        }
2393
2394        let (ignore_queue_tx, ignore_queue_rx) = channel::unbounded();
2395        ignores_to_update.sort_unstable();
2396        let mut ignores_to_update = ignores_to_update.into_iter().peekable();
2397        while let Some(parent_abs_path) = ignores_to_update.next() {
2398            while ignores_to_update
2399                .peek()
2400                .map_or(false, |p| p.starts_with(&parent_abs_path))
2401            {
2402                ignores_to_update.next().unwrap();
2403            }
2404
2405            let ignore_stack = snapshot.ignore_stack_for_abs_path(&parent_abs_path, true);
2406            ignore_queue_tx
2407                .send(UpdateIgnoreStatusJob {
2408                    abs_path: parent_abs_path,
2409                    ignore_stack,
2410                    ignore_queue: ignore_queue_tx.clone(),
2411                })
2412                .await
2413                .unwrap();
2414        }
2415        drop(ignore_queue_tx);
2416
2417        self.executor
2418            .scoped(|scope| {
2419                for _ in 0..self.executor.num_cpus() {
2420                    scope.spawn(async {
2421                        while let Ok(job) = ignore_queue_rx.recv().await {
2422                            self.update_ignore_status(job, &snapshot).await;
2423                        }
2424                    });
2425                }
2426            })
2427            .await;
2428    }
2429
2430    async fn update_ignore_status(&self, job: UpdateIgnoreStatusJob, snapshot: &LocalSnapshot) {
2431        let mut ignore_stack = job.ignore_stack;
2432        if let Some((ignore, _)) = snapshot.ignores_by_parent_abs_path.get(&job.abs_path) {
2433            ignore_stack = ignore_stack.append(job.abs_path.clone(), ignore.clone());
2434        }
2435
2436        let mut entries_by_id_edits = Vec::new();
2437        let mut entries_by_path_edits = Vec::new();
2438        let path = job.abs_path.strip_prefix(&snapshot.abs_path).unwrap();
2439        for mut entry in snapshot.child_entries(path).cloned() {
2440            let was_ignored = entry.is_ignored;
2441            let abs_path = self.abs_path().join(&entry.path);
2442            entry.is_ignored = ignore_stack.is_abs_path_ignored(&abs_path, entry.is_dir());
2443            if entry.is_dir() {
2444                let child_ignore_stack = if entry.is_ignored {
2445                    IgnoreStack::all()
2446                } else {
2447                    ignore_stack.clone()
2448                };
2449                job.ignore_queue
2450                    .send(UpdateIgnoreStatusJob {
2451                        abs_path: abs_path.into(),
2452                        ignore_stack: child_ignore_stack,
2453                        ignore_queue: job.ignore_queue.clone(),
2454                    })
2455                    .await
2456                    .unwrap();
2457            }
2458
2459            if entry.is_ignored != was_ignored {
2460                let mut path_entry = snapshot.entries_by_id.get(&entry.id, &()).unwrap().clone();
2461                path_entry.scan_id = snapshot.scan_id;
2462                path_entry.is_ignored = entry.is_ignored;
2463                entries_by_id_edits.push(Edit::Insert(path_entry));
2464                entries_by_path_edits.push(Edit::Insert(entry));
2465            }
2466        }
2467
2468        let mut snapshot = self.snapshot.lock();
2469        snapshot.entries_by_path.edit(entries_by_path_edits, &());
2470        snapshot.entries_by_id.edit(entries_by_id_edits, &());
2471    }
2472}
2473
2474fn char_bag_for_path(root_char_bag: CharBag, path: &Path) -> CharBag {
2475    let mut result = root_char_bag;
2476    result.extend(
2477        path.to_string_lossy()
2478            .chars()
2479            .map(|c| c.to_ascii_lowercase()),
2480    );
2481    result
2482}
2483
2484struct ScanJob {
2485    abs_path: PathBuf,
2486    path: Arc<Path>,
2487    ignore_stack: Arc<IgnoreStack>,
2488    scan_queue: Sender<ScanJob>,
2489    ancestor_inodes: TreeSet<u64>,
2490}
2491
2492struct UpdateIgnoreStatusJob {
2493    abs_path: Arc<Path>,
2494    ignore_stack: Arc<IgnoreStack>,
2495    ignore_queue: Sender<UpdateIgnoreStatusJob>,
2496}
2497
2498pub trait WorktreeHandle {
2499    #[cfg(any(test, feature = "test-support"))]
2500    fn flush_fs_events<'a>(
2501        &self,
2502        cx: &'a gpui::TestAppContext,
2503    ) -> futures::future::LocalBoxFuture<'a, ()>;
2504}
2505
2506impl WorktreeHandle for ModelHandle<Worktree> {
2507    // When the worktree's FS event stream sometimes delivers "redundant" events for FS changes that
2508    // occurred before the worktree was constructed. These events can cause the worktree to perfrom
2509    // extra directory scans, and emit extra scan-state notifications.
2510    //
2511    // This function mutates the worktree's directory and waits for those mutations to be picked up,
2512    // to ensure that all redundant FS events have already been processed.
2513    #[cfg(any(test, feature = "test-support"))]
2514    fn flush_fs_events<'a>(
2515        &self,
2516        cx: &'a gpui::TestAppContext,
2517    ) -> futures::future::LocalBoxFuture<'a, ()> {
2518        use smol::future::FutureExt;
2519
2520        let filename = "fs-event-sentinel";
2521        let tree = self.clone();
2522        let (fs, root_path) = self.read_with(cx, |tree, _| {
2523            let tree = tree.as_local().unwrap();
2524            (tree.fs.clone(), tree.abs_path().clone())
2525        });
2526
2527        async move {
2528            fs.create_file(&root_path.join(filename), Default::default())
2529                .await
2530                .unwrap();
2531            tree.condition(&cx, |tree, _| tree.entry_for_path(filename).is_some())
2532                .await;
2533
2534            fs.remove_file(&root_path.join(filename), Default::default())
2535                .await
2536                .unwrap();
2537            tree.condition(&cx, |tree, _| tree.entry_for_path(filename).is_none())
2538                .await;
2539
2540            cx.read(|cx| tree.read(cx).as_local().unwrap().scan_complete())
2541                .await;
2542        }
2543        .boxed_local()
2544    }
2545}
2546
2547#[derive(Clone, Debug)]
2548struct TraversalProgress<'a> {
2549    max_path: &'a Path,
2550    count: usize,
2551    visible_count: usize,
2552    file_count: usize,
2553    visible_file_count: usize,
2554}
2555
2556impl<'a> TraversalProgress<'a> {
2557    fn count(&self, include_dirs: bool, include_ignored: bool) -> usize {
2558        match (include_ignored, include_dirs) {
2559            (true, true) => self.count,
2560            (true, false) => self.file_count,
2561            (false, true) => self.visible_count,
2562            (false, false) => self.visible_file_count,
2563        }
2564    }
2565}
2566
2567impl<'a> sum_tree::Dimension<'a, EntrySummary> for TraversalProgress<'a> {
2568    fn add_summary(&mut self, summary: &'a EntrySummary, _: &()) {
2569        self.max_path = summary.max_path.as_ref();
2570        self.count += summary.count;
2571        self.visible_count += summary.visible_count;
2572        self.file_count += summary.file_count;
2573        self.visible_file_count += summary.visible_file_count;
2574    }
2575}
2576
2577impl<'a> Default for TraversalProgress<'a> {
2578    fn default() -> Self {
2579        Self {
2580            max_path: Path::new(""),
2581            count: 0,
2582            visible_count: 0,
2583            file_count: 0,
2584            visible_file_count: 0,
2585        }
2586    }
2587}
2588
2589pub struct Traversal<'a> {
2590    cursor: sum_tree::Cursor<'a, Entry, TraversalProgress<'a>>,
2591    include_ignored: bool,
2592    include_dirs: bool,
2593}
2594
2595impl<'a> Traversal<'a> {
2596    pub fn advance(&mut self) -> bool {
2597        self.advance_to_offset(self.offset() + 1)
2598    }
2599
2600    pub fn advance_to_offset(&mut self, offset: usize) -> bool {
2601        self.cursor.seek_forward(
2602            &TraversalTarget::Count {
2603                count: offset,
2604                include_dirs: self.include_dirs,
2605                include_ignored: self.include_ignored,
2606            },
2607            Bias::Right,
2608            &(),
2609        )
2610    }
2611
2612    pub fn advance_to_sibling(&mut self) -> bool {
2613        while let Some(entry) = self.cursor.item() {
2614            self.cursor.seek_forward(
2615                &TraversalTarget::PathSuccessor(&entry.path),
2616                Bias::Left,
2617                &(),
2618            );
2619            if let Some(entry) = self.cursor.item() {
2620                if (self.include_dirs || !entry.is_dir())
2621                    && (self.include_ignored || !entry.is_ignored)
2622                {
2623                    return true;
2624                }
2625            }
2626        }
2627        false
2628    }
2629
2630    pub fn entry(&self) -> Option<&'a Entry> {
2631        self.cursor.item()
2632    }
2633
2634    pub fn offset(&self) -> usize {
2635        self.cursor
2636            .start()
2637            .count(self.include_dirs, self.include_ignored)
2638    }
2639}
2640
2641impl<'a> Iterator for Traversal<'a> {
2642    type Item = &'a Entry;
2643
2644    fn next(&mut self) -> Option<Self::Item> {
2645        if let Some(item) = self.entry() {
2646            self.advance();
2647            Some(item)
2648        } else {
2649            None
2650        }
2651    }
2652}
2653
2654#[derive(Debug)]
2655enum TraversalTarget<'a> {
2656    Path(&'a Path),
2657    PathSuccessor(&'a Path),
2658    Count {
2659        count: usize,
2660        include_ignored: bool,
2661        include_dirs: bool,
2662    },
2663}
2664
2665impl<'a, 'b> SeekTarget<'a, EntrySummary, TraversalProgress<'a>> for TraversalTarget<'b> {
2666    fn cmp(&self, cursor_location: &TraversalProgress<'a>, _: &()) -> Ordering {
2667        match self {
2668            TraversalTarget::Path(path) => path.cmp(&cursor_location.max_path),
2669            TraversalTarget::PathSuccessor(path) => {
2670                if !cursor_location.max_path.starts_with(path) {
2671                    Ordering::Equal
2672                } else {
2673                    Ordering::Greater
2674                }
2675            }
2676            TraversalTarget::Count {
2677                count,
2678                include_dirs,
2679                include_ignored,
2680            } => Ord::cmp(
2681                count,
2682                &cursor_location.count(*include_dirs, *include_ignored),
2683            ),
2684        }
2685    }
2686}
2687
2688struct ChildEntriesIter<'a> {
2689    parent_path: &'a Path,
2690    traversal: Traversal<'a>,
2691}
2692
2693impl<'a> Iterator for ChildEntriesIter<'a> {
2694    type Item = &'a Entry;
2695
2696    fn next(&mut self) -> Option<Self::Item> {
2697        if let Some(item) = self.traversal.entry() {
2698            if item.path.starts_with(&self.parent_path) {
2699                self.traversal.advance_to_sibling();
2700                return Some(item);
2701            }
2702        }
2703        None
2704    }
2705}
2706
2707impl<'a> From<&'a Entry> for proto::Entry {
2708    fn from(entry: &'a Entry) -> Self {
2709        Self {
2710            id: entry.id.to_proto(),
2711            is_dir: entry.is_dir(),
2712            path: entry.path.as_os_str().as_bytes().to_vec(),
2713            inode: entry.inode,
2714            mtime: Some(entry.mtime.into()),
2715            is_symlink: entry.is_symlink,
2716            is_ignored: entry.is_ignored,
2717        }
2718    }
2719}
2720
2721impl<'a> TryFrom<(&'a CharBag, proto::Entry)> for Entry {
2722    type Error = anyhow::Error;
2723
2724    fn try_from((root_char_bag, entry): (&'a CharBag, proto::Entry)) -> Result<Self> {
2725        if let Some(mtime) = entry.mtime {
2726            let kind = if entry.is_dir {
2727                EntryKind::Dir
2728            } else {
2729                let mut char_bag = root_char_bag.clone();
2730                char_bag.extend(
2731                    String::from_utf8_lossy(&entry.path)
2732                        .chars()
2733                        .map(|c| c.to_ascii_lowercase()),
2734                );
2735                EntryKind::File(char_bag)
2736            };
2737            let path: Arc<Path> = PathBuf::from(OsString::from_vec(entry.path)).into();
2738            Ok(Entry {
2739                id: ProjectEntryId::from_proto(entry.id),
2740                kind,
2741                path: path.clone(),
2742                inode: entry.inode,
2743                mtime: mtime.into(),
2744                is_symlink: entry.is_symlink,
2745                is_ignored: entry.is_ignored,
2746            })
2747        } else {
2748            Err(anyhow!(
2749                "missing mtime in remote worktree entry {:?}",
2750                entry.path
2751            ))
2752        }
2753    }
2754}
2755
2756async fn send_worktree_update(client: &Arc<Client>, update: proto::UpdateWorktree) -> Result<()> {
2757    #[cfg(any(test, feature = "test-support"))]
2758    const MAX_CHUNK_SIZE: usize = 2;
2759    #[cfg(not(any(test, feature = "test-support")))]
2760    const MAX_CHUNK_SIZE: usize = 256;
2761
2762    for update in proto::split_worktree_update(update, MAX_CHUNK_SIZE) {
2763        client.request(update).await?;
2764    }
2765
2766    Ok(())
2767}
2768
2769#[cfg(test)]
2770mod tests {
2771    use super::*;
2772    use crate::fs::FakeFs;
2773    use anyhow::Result;
2774    use client::test::FakeHttpClient;
2775    use fs::RealFs;
2776    use gpui::{executor::Deterministic, TestAppContext};
2777    use rand::prelude::*;
2778    use serde_json::json;
2779    use std::{
2780        env,
2781        fmt::Write,
2782        time::{SystemTime, UNIX_EPOCH},
2783    };
2784    use util::test::temp_tree;
2785
2786    #[gpui::test]
2787    async fn test_traversal(cx: &mut TestAppContext) {
2788        let fs = FakeFs::new(cx.background());
2789        fs.insert_tree(
2790            "/root",
2791            json!({
2792               ".gitignore": "a/b\n",
2793               "a": {
2794                   "b": "",
2795                   "c": "",
2796               }
2797            }),
2798        )
2799        .await;
2800
2801        let http_client = FakeHttpClient::with_404_response();
2802        let client = Client::new(http_client);
2803
2804        let tree = Worktree::local(
2805            client,
2806            Arc::from(Path::new("/root")),
2807            true,
2808            fs,
2809            Default::default(),
2810            &mut cx.to_async(),
2811        )
2812        .await
2813        .unwrap();
2814        cx.read(|cx| tree.read(cx).as_local().unwrap().scan_complete())
2815            .await;
2816
2817        tree.read_with(cx, |tree, _| {
2818            assert_eq!(
2819                tree.entries(false)
2820                    .map(|entry| entry.path.as_ref())
2821                    .collect::<Vec<_>>(),
2822                vec![
2823                    Path::new(""),
2824                    Path::new(".gitignore"),
2825                    Path::new("a"),
2826                    Path::new("a/c"),
2827                ]
2828            );
2829            assert_eq!(
2830                tree.entries(true)
2831                    .map(|entry| entry.path.as_ref())
2832                    .collect::<Vec<_>>(),
2833                vec![
2834                    Path::new(""),
2835                    Path::new(".gitignore"),
2836                    Path::new("a"),
2837                    Path::new("a/b"),
2838                    Path::new("a/c"),
2839                ]
2840            );
2841        })
2842    }
2843
2844    #[gpui::test(iterations = 10)]
2845    async fn test_circular_symlinks(executor: Arc<Deterministic>, cx: &mut TestAppContext) {
2846        let fs = FakeFs::new(cx.background());
2847        fs.insert_tree(
2848            "/root",
2849            json!({
2850                "lib": {
2851                    "a": {
2852                        "a.txt": ""
2853                    },
2854                    "b": {
2855                        "b.txt": ""
2856                    }
2857                }
2858            }),
2859        )
2860        .await;
2861        fs.insert_symlink("/root/lib/a/lib", "..".into()).await;
2862        fs.insert_symlink("/root/lib/b/lib", "..".into()).await;
2863
2864        let http_client = FakeHttpClient::with_404_response();
2865        let client = Client::new(http_client);
2866        let tree = Worktree::local(
2867            client,
2868            Arc::from(Path::new("/root")),
2869            true,
2870            fs.clone(),
2871            Default::default(),
2872            &mut cx.to_async(),
2873        )
2874        .await
2875        .unwrap();
2876
2877        cx.read(|cx| tree.read(cx).as_local().unwrap().scan_complete())
2878            .await;
2879
2880        tree.read_with(cx, |tree, _| {
2881            assert_eq!(
2882                tree.entries(false)
2883                    .map(|entry| entry.path.as_ref())
2884                    .collect::<Vec<_>>(),
2885                vec![
2886                    Path::new(""),
2887                    Path::new("lib"),
2888                    Path::new("lib/a"),
2889                    Path::new("lib/a/a.txt"),
2890                    Path::new("lib/a/lib"),
2891                    Path::new("lib/b"),
2892                    Path::new("lib/b/b.txt"),
2893                    Path::new("lib/b/lib"),
2894                ]
2895            );
2896        });
2897
2898        fs.rename(
2899            Path::new("/root/lib/a/lib"),
2900            Path::new("/root/lib/a/lib-2"),
2901            Default::default(),
2902        )
2903        .await
2904        .unwrap();
2905        executor.run_until_parked();
2906        tree.read_with(cx, |tree, _| {
2907            assert_eq!(
2908                tree.entries(false)
2909                    .map(|entry| entry.path.as_ref())
2910                    .collect::<Vec<_>>(),
2911                vec![
2912                    Path::new(""),
2913                    Path::new("lib"),
2914                    Path::new("lib/a"),
2915                    Path::new("lib/a/a.txt"),
2916                    Path::new("lib/a/lib-2"),
2917                    Path::new("lib/b"),
2918                    Path::new("lib/b/b.txt"),
2919                    Path::new("lib/b/lib"),
2920                ]
2921            );
2922        });
2923    }
2924
2925    #[gpui::test]
2926    async fn test_rescan_with_gitignore(cx: &mut TestAppContext) {
2927        let parent_dir = temp_tree(json!({
2928            ".gitignore": "ancestor-ignored-file1\nancestor-ignored-file2\n",
2929            "tree": {
2930                ".git": {},
2931                ".gitignore": "ignored-dir\n",
2932                "tracked-dir": {
2933                    "tracked-file1": "",
2934                    "ancestor-ignored-file1": "",
2935                },
2936                "ignored-dir": {
2937                    "ignored-file1": ""
2938                }
2939            }
2940        }));
2941        let dir = parent_dir.path().join("tree");
2942
2943        let http_client = FakeHttpClient::with_404_response();
2944        let client = Client::new(http_client.clone());
2945
2946        let tree = Worktree::local(
2947            client,
2948            dir.as_path(),
2949            true,
2950            Arc::new(RealFs),
2951            Default::default(),
2952            &mut cx.to_async(),
2953        )
2954        .await
2955        .unwrap();
2956        cx.read(|cx| tree.read(cx).as_local().unwrap().scan_complete())
2957            .await;
2958        tree.flush_fs_events(&cx).await;
2959        cx.read(|cx| {
2960            let tree = tree.read(cx);
2961            assert!(
2962                !tree
2963                    .entry_for_path("tracked-dir/tracked-file1")
2964                    .unwrap()
2965                    .is_ignored
2966            );
2967            assert!(
2968                tree.entry_for_path("tracked-dir/ancestor-ignored-file1")
2969                    .unwrap()
2970                    .is_ignored
2971            );
2972            assert!(
2973                tree.entry_for_path("ignored-dir/ignored-file1")
2974                    .unwrap()
2975                    .is_ignored
2976            );
2977        });
2978
2979        std::fs::write(dir.join("tracked-dir/tracked-file2"), "").unwrap();
2980        std::fs::write(dir.join("tracked-dir/ancestor-ignored-file2"), "").unwrap();
2981        std::fs::write(dir.join("ignored-dir/ignored-file2"), "").unwrap();
2982        tree.flush_fs_events(&cx).await;
2983        cx.read(|cx| {
2984            let tree = tree.read(cx);
2985            assert!(
2986                !tree
2987                    .entry_for_path("tracked-dir/tracked-file2")
2988                    .unwrap()
2989                    .is_ignored
2990            );
2991            assert!(
2992                tree.entry_for_path("tracked-dir/ancestor-ignored-file2")
2993                    .unwrap()
2994                    .is_ignored
2995            );
2996            assert!(
2997                tree.entry_for_path("ignored-dir/ignored-file2")
2998                    .unwrap()
2999                    .is_ignored
3000            );
3001            assert!(tree.entry_for_path(".git").unwrap().is_ignored);
3002        });
3003    }
3004
3005    #[gpui::test]
3006    async fn test_write_file(cx: &mut TestAppContext) {
3007        let dir = temp_tree(json!({
3008            ".git": {},
3009            ".gitignore": "ignored-dir\n",
3010            "tracked-dir": {},
3011            "ignored-dir": {}
3012        }));
3013
3014        let http_client = FakeHttpClient::with_404_response();
3015        let client = Client::new(http_client.clone());
3016
3017        let tree = Worktree::local(
3018            client,
3019            dir.path(),
3020            true,
3021            Arc::new(RealFs),
3022            Default::default(),
3023            &mut cx.to_async(),
3024        )
3025        .await
3026        .unwrap();
3027        cx.read(|cx| tree.read(cx).as_local().unwrap().scan_complete())
3028            .await;
3029        tree.flush_fs_events(&cx).await;
3030
3031        tree.update(cx, |tree, cx| {
3032            tree.as_local().unwrap().write_file(
3033                Path::new("tracked-dir/file.txt"),
3034                "hello".into(),
3035                Default::default(),
3036                cx,
3037            )
3038        })
3039        .await
3040        .unwrap();
3041        tree.update(cx, |tree, cx| {
3042            tree.as_local().unwrap().write_file(
3043                Path::new("ignored-dir/file.txt"),
3044                "world".into(),
3045                Default::default(),
3046                cx,
3047            )
3048        })
3049        .await
3050        .unwrap();
3051
3052        tree.read_with(cx, |tree, _| {
3053            let tracked = tree.entry_for_path("tracked-dir/file.txt").unwrap();
3054            let ignored = tree.entry_for_path("ignored-dir/file.txt").unwrap();
3055            assert_eq!(tracked.is_ignored, false);
3056            assert_eq!(ignored.is_ignored, true);
3057        });
3058    }
3059
3060    #[gpui::test(iterations = 100)]
3061    fn test_random(mut rng: StdRng) {
3062        let operations = env::var("OPERATIONS")
3063            .map(|o| o.parse().unwrap())
3064            .unwrap_or(40);
3065        let initial_entries = env::var("INITIAL_ENTRIES")
3066            .map(|o| o.parse().unwrap())
3067            .unwrap_or(20);
3068
3069        let root_dir = tempdir::TempDir::new("worktree-test").unwrap();
3070        for _ in 0..initial_entries {
3071            randomly_mutate_tree(root_dir.path(), 1.0, &mut rng).unwrap();
3072        }
3073        log::info!("Generated initial tree");
3074
3075        let (notify_tx, _notify_rx) = mpsc::unbounded();
3076        let fs = Arc::new(RealFs);
3077        let next_entry_id = Arc::new(AtomicUsize::new(0));
3078        let mut initial_snapshot = LocalSnapshot {
3079            abs_path: root_dir.path().into(),
3080            removed_entry_ids: Default::default(),
3081            ignores_by_parent_abs_path: Default::default(),
3082            next_entry_id: next_entry_id.clone(),
3083            snapshot: Snapshot {
3084                id: WorktreeId::from_usize(0),
3085                entries_by_path: Default::default(),
3086                entries_by_id: Default::default(),
3087                root_name: Default::default(),
3088                root_char_bag: Default::default(),
3089                scan_id: 0,
3090                is_complete: true,
3091            },
3092            extension_counts: Default::default(),
3093        };
3094        initial_snapshot.insert_entry(
3095            Entry::new(
3096                Path::new("").into(),
3097                &smol::block_on(fs.metadata(root_dir.path()))
3098                    .unwrap()
3099                    .unwrap(),
3100                &next_entry_id,
3101                Default::default(),
3102            ),
3103            fs.as_ref(),
3104        );
3105        let mut scanner = BackgroundScanner::new(
3106            Arc::new(Mutex::new(initial_snapshot.clone())),
3107            notify_tx,
3108            fs.clone(),
3109            Arc::new(gpui::executor::Background::new()),
3110        );
3111        smol::block_on(scanner.scan_dirs()).unwrap();
3112        scanner.snapshot().check_invariants();
3113
3114        let mut events = Vec::new();
3115        let mut snapshots = Vec::new();
3116        let mut mutations_len = operations;
3117        while mutations_len > 1 {
3118            if !events.is_empty() && rng.gen_bool(0.4) {
3119                let len = rng.gen_range(0..=events.len());
3120                let to_deliver = events.drain(0..len).collect::<Vec<_>>();
3121                log::info!("Delivering events: {:#?}", to_deliver);
3122                smol::block_on(scanner.process_events(to_deliver));
3123                scanner.snapshot().check_invariants();
3124            } else {
3125                events.extend(randomly_mutate_tree(root_dir.path(), 0.6, &mut rng).unwrap());
3126                mutations_len -= 1;
3127            }
3128
3129            if rng.gen_bool(0.2) {
3130                snapshots.push(scanner.snapshot());
3131            }
3132        }
3133        log::info!("Quiescing: {:#?}", events);
3134        smol::block_on(scanner.process_events(events));
3135        scanner.snapshot().check_invariants();
3136
3137        let (notify_tx, _notify_rx) = mpsc::unbounded();
3138        let mut new_scanner = BackgroundScanner::new(
3139            Arc::new(Mutex::new(initial_snapshot)),
3140            notify_tx,
3141            scanner.fs.clone(),
3142            scanner.executor.clone(),
3143        );
3144        smol::block_on(new_scanner.scan_dirs()).unwrap();
3145        assert_eq!(
3146            scanner.snapshot().to_vec(true),
3147            new_scanner.snapshot().to_vec(true)
3148        );
3149
3150        for mut prev_snapshot in snapshots {
3151            let include_ignored = rng.gen::<bool>();
3152            if !include_ignored {
3153                let mut entries_by_path_edits = Vec::new();
3154                let mut entries_by_id_edits = Vec::new();
3155                for entry in prev_snapshot
3156                    .entries_by_id
3157                    .cursor::<()>()
3158                    .filter(|e| e.is_ignored)
3159                {
3160                    entries_by_path_edits.push(Edit::Remove(PathKey(entry.path.clone())));
3161                    entries_by_id_edits.push(Edit::Remove(entry.id));
3162                }
3163
3164                prev_snapshot
3165                    .entries_by_path
3166                    .edit(entries_by_path_edits, &());
3167                prev_snapshot.entries_by_id.edit(entries_by_id_edits, &());
3168            }
3169
3170            let update = scanner
3171                .snapshot()
3172                .build_update(&prev_snapshot, 0, 0, include_ignored);
3173            prev_snapshot.apply_remote_update(update).unwrap();
3174            assert_eq!(
3175                prev_snapshot.to_vec(true),
3176                scanner.snapshot().to_vec(include_ignored)
3177            );
3178        }
3179    }
3180
3181    fn randomly_mutate_tree(
3182        root_path: &Path,
3183        insertion_probability: f64,
3184        rng: &mut impl Rng,
3185    ) -> Result<Vec<fsevent::Event>> {
3186        let root_path = root_path.canonicalize().unwrap();
3187        let (dirs, files) = read_dir_recursive(root_path.clone());
3188
3189        let mut events = Vec::new();
3190        let mut record_event = |path: PathBuf| {
3191            events.push(fsevent::Event {
3192                event_id: SystemTime::now()
3193                    .duration_since(UNIX_EPOCH)
3194                    .unwrap()
3195                    .as_secs(),
3196                flags: fsevent::StreamFlags::empty(),
3197                path,
3198            });
3199        };
3200
3201        if (files.is_empty() && dirs.len() == 1) || rng.gen_bool(insertion_probability) {
3202            let path = dirs.choose(rng).unwrap();
3203            let new_path = path.join(gen_name(rng));
3204
3205            if rng.gen() {
3206                log::info!("Creating dir {:?}", new_path.strip_prefix(root_path)?);
3207                std::fs::create_dir(&new_path)?;
3208            } else {
3209                log::info!("Creating file {:?}", new_path.strip_prefix(root_path)?);
3210                std::fs::write(&new_path, "")?;
3211            }
3212            record_event(new_path);
3213        } else if rng.gen_bool(0.05) {
3214            let ignore_dir_path = dirs.choose(rng).unwrap();
3215            let ignore_path = ignore_dir_path.join(&*GITIGNORE);
3216
3217            let (subdirs, subfiles) = read_dir_recursive(ignore_dir_path.clone());
3218            let files_to_ignore = {
3219                let len = rng.gen_range(0..=subfiles.len());
3220                subfiles.choose_multiple(rng, len)
3221            };
3222            let dirs_to_ignore = {
3223                let len = rng.gen_range(0..subdirs.len());
3224                subdirs.choose_multiple(rng, len)
3225            };
3226
3227            let mut ignore_contents = String::new();
3228            for path_to_ignore in files_to_ignore.chain(dirs_to_ignore) {
3229                write!(
3230                    ignore_contents,
3231                    "{}\n",
3232                    path_to_ignore
3233                        .strip_prefix(&ignore_dir_path)?
3234                        .to_str()
3235                        .unwrap()
3236                )
3237                .unwrap();
3238            }
3239            log::info!(
3240                "Creating {:?} with contents:\n{}",
3241                ignore_path.strip_prefix(&root_path)?,
3242                ignore_contents
3243            );
3244            std::fs::write(&ignore_path, ignore_contents).unwrap();
3245            record_event(ignore_path);
3246        } else {
3247            let old_path = {
3248                let file_path = files.choose(rng);
3249                let dir_path = dirs[1..].choose(rng);
3250                file_path.into_iter().chain(dir_path).choose(rng).unwrap()
3251            };
3252
3253            let is_rename = rng.gen();
3254            if is_rename {
3255                let new_path_parent = dirs
3256                    .iter()
3257                    .filter(|d| !d.starts_with(old_path))
3258                    .choose(rng)
3259                    .unwrap();
3260
3261                let overwrite_existing_dir =
3262                    !old_path.starts_with(&new_path_parent) && rng.gen_bool(0.3);
3263                let new_path = if overwrite_existing_dir {
3264                    std::fs::remove_dir_all(&new_path_parent).ok();
3265                    new_path_parent.to_path_buf()
3266                } else {
3267                    new_path_parent.join(gen_name(rng))
3268                };
3269
3270                log::info!(
3271                    "Renaming {:?} to {}{:?}",
3272                    old_path.strip_prefix(&root_path)?,
3273                    if overwrite_existing_dir {
3274                        "overwrite "
3275                    } else {
3276                        ""
3277                    },
3278                    new_path.strip_prefix(&root_path)?
3279                );
3280                std::fs::rename(&old_path, &new_path)?;
3281                record_event(old_path.clone());
3282                record_event(new_path);
3283            } else if old_path.is_dir() {
3284                let (dirs, files) = read_dir_recursive(old_path.clone());
3285
3286                log::info!("Deleting dir {:?}", old_path.strip_prefix(&root_path)?);
3287                std::fs::remove_dir_all(&old_path).unwrap();
3288                for file in files {
3289                    record_event(file);
3290                }
3291                for dir in dirs {
3292                    record_event(dir);
3293                }
3294            } else {
3295                log::info!("Deleting file {:?}", old_path.strip_prefix(&root_path)?);
3296                std::fs::remove_file(old_path).unwrap();
3297                record_event(old_path.clone());
3298            }
3299        }
3300
3301        Ok(events)
3302    }
3303
3304    fn read_dir_recursive(path: PathBuf) -> (Vec<PathBuf>, Vec<PathBuf>) {
3305        let child_entries = std::fs::read_dir(&path).unwrap();
3306        let mut dirs = vec![path];
3307        let mut files = Vec::new();
3308        for child_entry in child_entries {
3309            let child_path = child_entry.unwrap().path();
3310            if child_path.is_dir() {
3311                let (child_dirs, child_files) = read_dir_recursive(child_path);
3312                dirs.extend(child_dirs);
3313                files.extend(child_files);
3314            } else {
3315                files.push(child_path);
3316            }
3317        }
3318        (dirs, files)
3319    }
3320
3321    fn gen_name(rng: &mut impl Rng) -> String {
3322        (0..6)
3323            .map(|_| rng.sample(rand::distributions::Alphanumeric))
3324            .map(char::from)
3325            .collect()
3326    }
3327
3328    impl LocalSnapshot {
3329        fn check_invariants(&self) {
3330            let mut files = self.files(true, 0);
3331            let mut visible_files = self.files(false, 0);
3332            for entry in self.entries_by_path.cursor::<()>() {
3333                if entry.is_file() {
3334                    assert_eq!(files.next().unwrap().inode, entry.inode);
3335                    if !entry.is_ignored {
3336                        assert_eq!(visible_files.next().unwrap().inode, entry.inode);
3337                    }
3338                }
3339            }
3340            assert!(files.next().is_none());
3341            assert!(visible_files.next().is_none());
3342
3343            let mut bfs_paths = Vec::new();
3344            let mut stack = vec![Path::new("")];
3345            while let Some(path) = stack.pop() {
3346                bfs_paths.push(path);
3347                let ix = stack.len();
3348                for child_entry in self.child_entries(path) {
3349                    stack.insert(ix, &child_entry.path);
3350                }
3351            }
3352
3353            let dfs_paths_via_iter = self
3354                .entries_by_path
3355                .cursor::<()>()
3356                .map(|e| e.path.as_ref())
3357                .collect::<Vec<_>>();
3358            assert_eq!(bfs_paths, dfs_paths_via_iter);
3359
3360            let dfs_paths_via_traversal = self
3361                .entries(true)
3362                .map(|e| e.path.as_ref())
3363                .collect::<Vec<_>>();
3364            assert_eq!(dfs_paths_via_traversal, dfs_paths_via_iter);
3365
3366            for (ignore_parent_abs_path, _) in &self.ignores_by_parent_abs_path {
3367                let ignore_parent_path =
3368                    ignore_parent_abs_path.strip_prefix(&self.abs_path).unwrap();
3369                assert!(self.entry_for_path(&ignore_parent_path).is_some());
3370                assert!(self
3371                    .entry_for_path(ignore_parent_path.join(&*GITIGNORE))
3372                    .is_some());
3373            }
3374
3375            // Ensure extension counts are correct.
3376            let mut expected_extension_counts = HashMap::default();
3377            for extension in self.entries(false).filter_map(|e| e.path.extension()) {
3378                *expected_extension_counts
3379                    .entry(extension.into())
3380                    .or_insert(0) += 1;
3381            }
3382            assert_eq!(self.extension_counts, expected_extension_counts);
3383        }
3384
3385        fn to_vec(&self, include_ignored: bool) -> Vec<(&Path, u64, bool)> {
3386            let mut paths = Vec::new();
3387            for entry in self.entries_by_path.cursor::<()>() {
3388                if include_ignored || !entry.is_ignored {
3389                    paths.push((entry.path.as_ref(), entry.inode, entry.is_ignored));
3390                }
3391            }
3392            paths.sort_by(|a, b| a.0.cmp(&b.0));
3393            paths
3394        }
3395    }
3396}