navidrome/scanner/watcher_test.go
Deluan Quintão 7fa13761d7
fix(scanner): resolve file symlinks with the production local storage FS (#5755)
* fix(scanner): resolve file symlinks with the production local storage FS

The symlink classification added for GHSA-r5qr-m328-qcf4 relied on
fs.ReadLink, but the local storage FS wraps os.DirFS behind the fs.FS
interface, hiding its ReadLinkFS implementation. Every resolution failed
at the first hop, so the scanner silently skipped ALL file symlinks,
regardless of target or the FollowSymlinks setting. Libraries made of
symlinks (e.g. shared-pool setups) lost all their tracks after
upgrading to 0.63.

The local storage now exposes full OS-level resolution (EvalSymlinks)
through a new optional storage.SymlinkResolverFS interface, which the
scanner prefers over the fs.ReadLink hop loop. This also classifies a
chain by its FINAL target even when it passes through an audio-named
intermediate outside the library, closing a bypass the hop loop had.

Regular (non-symlink) entries keep the same early-return path, so scan
performance is unaffected for normal libraries.

Fixes #5752

* fix(test): keep watcher specs off the real local storage

The watcher specs spawn watchLibrary goroutines that are not joined on
spec teardown. Now that the scanner test binary registers the file://
storage, those leaked goroutines reached newLocalStorage, which reads
conf.Server on construction, racing with the configtest cleanup that
restores the config snapshot (caught by CI's race detector). Point the
mock libraries at a fake storage scheme, which never touches the config
and does not support watching, so the goroutine exits immediately.

* fix(storage): reject invalid fs paths in ResolveSymlink

Defense-in-depth for the SymlinkResolverFS contract: names must be valid
fs.FS paths. A lexical ".." in the name would otherwise escape the
library root via filepath.Join cleaning. No current caller can produce
such a name (they come from ReadDir walks), but the guard enforces the
documented contract at the boundary.
2026-07-10 10:52:05 -04:00

543 lines
17 KiB
Go

package scanner
import (
"context"
"io/fs"
"path/filepath"
"testing/fstest"
"time"
"github.com/navidrome/navidrome/conf"
"github.com/navidrome/navidrome/conf/configtest"
"github.com/navidrome/navidrome/core/storage/storagetest"
"github.com/navidrome/navidrome/model"
"github.com/navidrome/navidrome/tests"
. "github.com/onsi/ginkgo/v2"
. "github.com/onsi/gomega"
)
var _ = Describe("Watcher", func() {
var ctx context.Context
var cancel context.CancelFunc
var mockScanner *tests.MockScanner
var mockDS *tests.MockDataStore
var w *watcher
var lib *model.Library
BeforeEach(func() {
DeferCleanup(configtest.SetupConfig())
conf.Server.Scanner.WatcherWait = 50 * time.Millisecond // Short wait for tests
ctx, cancel = context.WithCancel(GinkgoT().Context())
DeferCleanup(cancel)
// Use a fake storage scheme: watchLibrary goroutines spawned by Run/Watch are not
// joined on spec teardown, and the real file:// storage reads conf.Server on
// construction, racing with the configtest cleanup that restores the config.
storagetest.Register("fake-watcher", &storagetest.FakeFS{})
lib = &model.Library{
ID: 1,
Name: "Test Library",
Path: "fake-watcher:///test/library",
}
// Set up mocks
mockScanner = tests.NewMockScanner()
mockDS = &tests.MockDataStore{}
mockLibRepo := &tests.MockLibraryRepo{}
mockLibRepo.SetData(model.Libraries{*lib})
mockDS.MockedLibrary = mockLibRepo
// Create a new watcher instance (not singleton) for testing
w = &watcher{
ds: mockDS,
scanner: mockScanner,
triggerWait: conf.Server.Scanner.WatcherWait,
watcherNotify: make(chan scanNotification, 10),
libraryWatchers: make(map[int]*libraryWatcherInstance),
mainCtx: ctx,
}
})
Describe("Watch before Run", func() {
It("returns nil and does not panic when mainCtx is nil", func() {
w.mainCtx = nil
err := w.Watch(ctx, lib)
Expect(err).ToNot(HaveOccurred())
Expect(w.libraryWatchers).To(BeEmpty())
})
})
Describe("Target Collection and Deduplication", func() {
BeforeEach(func() {
// Start watcher in background
go func() {
_ = w.Run(ctx)
}()
// Give watcher time to initialize
time.Sleep(10 * time.Millisecond)
})
It("creates separate targets for different folders", FlakeAttempts(3), func() {
// Send notifications for different folders
w.watcherNotify <- scanNotification{Library: lib, FolderPath: "artist1"}
w.watcherNotify <- scanNotification{Library: lib, FolderPath: "artist2"}
// Wait for a scan that collected both targets
Eventually(func() []model.ScanTarget {
calls := mockScanner.GetScanFoldersCalls()
if len(calls) == 0 {
return nil
}
return calls[0].Targets
}, 500*time.Millisecond, 10*time.Millisecond).Should(HaveLen(2))
// Verify targets
calls := mockScanner.GetScanFoldersCalls()
folderPaths := make(map[string]bool)
for _, target := range calls[0].Targets {
Expect(target.LibraryID).To(Equal(1))
folderPaths[target.FolderPath] = true
}
Expect(folderPaths).To(HaveKey("artist1"))
Expect(folderPaths).To(HaveKey("artist2"))
})
It("handles different folder paths correctly", func() {
// Send notification for nested folder
w.watcherNotify <- scanNotification{Library: lib, FolderPath: "artist1/album1"}
// Wait for watcher to process and trigger scan
Eventually(func() int {
return mockScanner.GetScanFoldersCallCount()
}, 500*time.Millisecond, 10*time.Millisecond).Should(Equal(1))
// Verify the target
calls := mockScanner.GetScanFoldersCalls()
Expect(calls).To(HaveLen(1))
Expect(calls[0].Targets).To(HaveLen(1))
Expect(calls[0].Targets[0].FolderPath).To(Equal("artist1/album1"))
})
It("deduplicates folder and file within same folder", func() {
// Send multiple notifications for the same folder
w.watcherNotify <- scanNotification{Library: lib, FolderPath: "artist1/album1"}
w.watcherNotify <- scanNotification{Library: lib, FolderPath: "artist1/album1"}
w.watcherNotify <- scanNotification{Library: lib, FolderPath: "artist1/album1"}
// Wait for watcher to process and trigger scan
Eventually(func() int {
return mockScanner.GetScanFoldersCallCount()
}, 500*time.Millisecond, 10*time.Millisecond).Should(Equal(1))
// Verify only one target despite multiple file/folder changes
calls := mockScanner.GetScanFoldersCalls()
Expect(calls).To(HaveLen(1))
Expect(calls[0].Targets).To(HaveLen(1))
Expect(calls[0].Targets[0].FolderPath).To(Equal("artist1/album1"))
})
})
Describe("Timer Behavior", func() {
BeforeEach(func() {
// Start watcher in background
go func() {
_ = w.Run(ctx)
}()
// Give watcher time to initialize
time.Sleep(10 * time.Millisecond)
})
It("resets timer on each change (debouncing)", FlakeAttempts(3), func() {
// Send first notification
w.watcherNotify <- scanNotification{Library: lib, FolderPath: "artist1"}
// Verify no scan fires during a window shorter than the debounce wait
Consistently(func() int {
return mockScanner.GetScanFoldersCallCount()
}, 20*time.Millisecond, 5*time.Millisecond).Should(Equal(0))
// Send another notification (resets timer)
w.watcherNotify <- scanNotification{Library: lib, FolderPath: "artist1"}
// Again, no scan should fire within a short window
Consistently(func() int {
return mockScanner.GetScanFoldersCallCount()
}, 20*time.Millisecond, 5*time.Millisecond).Should(Equal(0))
// Now wait for the debounce timer to expire and trigger scan
Eventually(func() int {
return mockScanner.GetScanFoldersCallCount()
}, 500*time.Millisecond, 10*time.Millisecond).Should(Equal(1))
})
It("triggers scan after quiet period", func() {
// Send notification
w.watcherNotify <- scanNotification{Library: lib, FolderPath: "artist1"}
// No scan immediately
Expect(mockScanner.GetScanFoldersCallCount()).To(Equal(0))
// Wait for quiet period
Eventually(func() int {
return mockScanner.GetScanFoldersCallCount()
}, 500*time.Millisecond, 10*time.Millisecond).Should(Equal(1))
})
})
Describe("Empty and Root Paths", func() {
BeforeEach(func() {
// Start watcher in background
go func() {
_ = w.Run(ctx)
}()
// Give watcher time to initialize
time.Sleep(10 * time.Millisecond)
})
It("handles empty folder path (library root)", func() {
// Send notification with empty folder path
w.watcherNotify <- scanNotification{Library: lib, FolderPath: ""}
// Wait for scan
Eventually(func() int {
return mockScanner.GetScanFoldersCallCount()
}, 500*time.Millisecond, 10*time.Millisecond).Should(Equal(1))
// Should scan the library root
calls := mockScanner.GetScanFoldersCalls()
Expect(calls).To(HaveLen(1))
Expect(calls[0].Targets).To(HaveLen(1))
Expect(calls[0].Targets[0].FolderPath).To(Equal(""))
})
It("deduplicates empty and dot paths", func() {
// Send notifications with empty and dot paths
w.watcherNotify <- scanNotification{Library: lib, FolderPath: ""}
w.watcherNotify <- scanNotification{Library: lib, FolderPath: ""}
// Wait for scan
Eventually(func() int {
return mockScanner.GetScanFoldersCallCount()
}, 500*time.Millisecond, 10*time.Millisecond).Should(Equal(1))
// Should have only one target
calls := mockScanner.GetScanFoldersCalls()
Expect(calls).To(HaveLen(1))
Expect(calls[0].Targets).To(HaveLen(1))
})
})
Describe("Multiple Libraries", func() {
var lib2 *model.Library
BeforeEach(func() {
// Create second library
lib2 = &model.Library{
ID: 2,
Name: "Test Library 2",
Path: "fake-watcher:///test/library2",
}
mockLibRepo := mockDS.MockedLibrary.(*tests.MockLibraryRepo)
mockLibRepo.SetData(model.Libraries{*lib, *lib2})
// Start watcher in background
go func() {
_ = w.Run(ctx)
}()
// Give watcher time to initialize
time.Sleep(10 * time.Millisecond)
})
It("creates separate targets for different libraries", func() {
// Send notifications for both libraries
w.watcherNotify <- scanNotification{Library: lib, FolderPath: "artist1"}
w.watcherNotify <- scanNotification{Library: lib2, FolderPath: "artist2"}
// Wait for a scan that collected both targets
Eventually(func() []model.ScanTarget {
calls := mockScanner.GetScanFoldersCalls()
if len(calls) == 0 {
return nil
}
return calls[0].Targets
}, 500*time.Millisecond, 10*time.Millisecond).Should(HaveLen(2))
// Verify library IDs are different
calls := mockScanner.GetScanFoldersCalls()
libraryIDs := make(map[int]bool)
for _, target := range calls[0].Targets {
libraryIDs[target.LibraryID] = true
}
Expect(libraryIDs).To(HaveKey(1))
Expect(libraryIDs).To(HaveKey(2))
})
})
Describe(".ndignore handling", func() {
var ctx context.Context
var cancel context.CancelFunc
var w *watcher
var mockFS *mockMusicFS
var lib *model.Library
var eventChan chan string
var absLibPath string
BeforeEach(func() {
ctx, cancel = context.WithCancel(GinkgoT().Context())
DeferCleanup(cancel)
// Set up library
var err error
absLibPath, err = filepath.Abs(".")
Expect(err).NotTo(HaveOccurred())
lib = &model.Library{
ID: 1,
Name: "Test Library",
Path: absLibPath,
}
// Create watcher with notification channel
w = &watcher{
watcherNotify: make(chan scanNotification, 10),
}
eventChan = make(chan string, 10)
})
// Helper to send an event - converts relative path to absolute
sendEvent := func(relativePath string) {
path := filepath.Join(absLibPath, relativePath)
eventChan <- path
}
// Helper to start the real event processing loop
startEventProcessing := func() {
go func() {
defer GinkgoRecover()
// Call the actual processLibraryEvents method - testing the real implementation!
_ = w.processLibraryEvents(ctx, lib, mockFS, eventChan, absLibPath)
}()
}
Context("when a folder matching .ndignore is deleted", func() {
BeforeEach(func() {
// Create filesystem with .ndignore containing _TEMP pattern
// The deleted folder (_TEMP) will NOT exist in the filesystem
mockFS = &mockMusicFS{
FS: fstest.MapFS{
"rock": &fstest.MapFile{Mode: fs.ModeDir},
"rock/.ndignore": &fstest.MapFile{Data: []byte("_TEMP\n")},
"rock/valid_album": &fstest.MapFile{Mode: fs.ModeDir},
"rock/valid_album/track.mp3": &fstest.MapFile{Data: []byte("audio")},
},
}
})
It("should NOT send scan notification when deleted folder matches .ndignore", func() {
startEventProcessing()
// Simulate deletion event for rock/_TEMP
sendEvent("rock/_TEMP")
// Wait a bit to ensure event is processed
time.Sleep(50 * time.Millisecond)
// No notification should have been sent
Consistently(eventChan, 100*time.Millisecond).Should(BeEmpty())
})
It("should send scan notification for valid folder deletion", func() {
startEventProcessing()
// Simulate deletion event for rock/other_folder (not in .ndignore and doesn't exist)
// Since it doesn't exist in mockFS, resolveFolderPath will walk up to "rock"
sendEvent("rock/other_folder")
// Should receive notification for parent folder
Eventually(w.watcherNotify, 200*time.Millisecond).Should(Receive(Equal(scanNotification{
Library: lib,
FolderPath: "rock",
})))
})
})
Context("with nested folder patterns", func() {
BeforeEach(func() {
mockFS = &mockMusicFS{
FS: fstest.MapFS{
"music": &fstest.MapFile{Mode: fs.ModeDir},
"music/.ndignore": &fstest.MapFile{Data: []byte("**/temp\n**/cache\n")},
"music/rock": &fstest.MapFile{Mode: fs.ModeDir},
"music/rock/artist": &fstest.MapFile{Mode: fs.ModeDir},
},
}
})
It("should NOT send notification when nested ignored folder is deleted", func() {
tests.SkipOnWindows("path separator bug (#TBD-path-sep-scanner)")
startEventProcessing()
// Simulate deletion of music/rock/artist/temp (matches **/temp)
sendEvent("music/rock/artist/temp")
// Wait to ensure event is processed
time.Sleep(50 * time.Millisecond)
// No notification should be sent
Expect(w.watcherNotify).To(BeEmpty(), "Expected no scan notification for nested ignored folder")
})
It("should send notification for non-ignored nested folder", func() {
tests.SkipOnWindows("path separator bug (#TBD-path-sep-scanner)")
startEventProcessing()
// Simulate change in music/rock/artist (doesn't match any pattern)
sendEvent("music/rock/artist")
// Should receive notification
Eventually(w.watcherNotify, 200*time.Millisecond).Should(Receive(Equal(scanNotification{
Library: lib,
FolderPath: "music/rock/artist",
})))
})
})
Context("with file events in ignored folders", func() {
BeforeEach(func() {
mockFS = &mockMusicFS{
FS: fstest.MapFS{
"rock": &fstest.MapFile{Mode: fs.ModeDir},
"rock/.ndignore": &fstest.MapFile{Data: []byte("_TEMP\n")},
},
}
})
It("should NOT send notification for file changes in ignored folders", func() {
tests.SkipOnWindows("path separator bug (#TBD-path-sep-scanner)")
startEventProcessing()
// Simulate file change in rock/_TEMP/file.mp3
sendEvent("rock/_TEMP/file.mp3")
// Wait to ensure event is processed
time.Sleep(50 * time.Millisecond)
// No notification should be sent
Expect(w.watcherNotify).To(BeEmpty(), "Expected no scan notification for file in ignored folder")
})
})
})
})
var _ = Describe("isIgnoredPath", func() {
BeforeEach(func() {
DeferCleanup(configtest.SetupConfig())
})
Context("with IgnoreDotFolders enabled (default)", func() {
BeforeEach(func() {
conf.Server.Scanner.IgnoreDotFolders = true
})
DescribeTable("returns expected result",
func(p string, expected bool) {
Expect(isIgnoredPath(context.Background(), nil, filepath.FromSlash(p))).To(Equal(expected))
},
Entry("media file in normal folder", "rock/Album/track.mp3", false),
Entry("dot-prefixed media file", "rock/Album/.hidden.mp3", true),
Entry("media file inside a dot-folder", "rock/.Hidden Album/track.mp3", true),
Entry("media file inside a blocklisted folder", "rock/.streams/stream.mp3", true),
Entry("media file inside .git", "rock/.git/track.mp3", true),
Entry("dot-folder itself", "rock/.Hidden Album", true),
Entry("normal folder itself", "rock/Album", false),
Entry(".DS_Store file", "rock/Album/.DS_Store", true),
)
})
Context("with IgnoreDotFolders disabled", func() {
BeforeEach(func() {
conf.Server.Scanner.IgnoreDotFolders = false
})
DescribeTable("returns expected result",
func(p string, expected bool) {
Expect(isIgnoredPath(context.Background(), nil, filepath.FromSlash(p))).To(Equal(expected))
},
Entry("media file inside a dot-folder is allowed", "rock/.Hidden Album/track.mp3", false),
Entry("dot-prefixed media file is still ignored", "rock/Album/.hidden.mp3", true),
Entry("dot-folder itself is allowed", "rock/.Hidden Album", false),
Entry("blocklisted folder still ignored", "rock/.streams/stream.mp3", true),
Entry(".git still ignored", "rock/.git/config", true),
)
})
})
var _ = Describe("resolveFolderPath", func() {
var mockFS fs.FS
BeforeEach(func() {
// Create a mock filesystem with some directories and files
mockFS = fstest.MapFS{
"artist1": &fstest.MapFile{Mode: fs.ModeDir},
"artist1/album1": &fstest.MapFile{Mode: fs.ModeDir},
"artist1/album1/track1.mp3": &fstest.MapFile{Data: []byte("audio")},
"artist1/album1/track2.mp3": &fstest.MapFile{Data: []byte("audio")},
"artist1/album2": &fstest.MapFile{Mode: fs.ModeDir},
"artist1/album2/song.flac": &fstest.MapFile{Data: []byte("audio")},
"artist2": &fstest.MapFile{Mode: fs.ModeDir},
"artist2/cover.jpg": &fstest.MapFile{Data: []byte("image")},
}
})
It("returns directory path when given a directory", func() {
result := resolveFolderPath(mockFS, "artist1/album1")
Expect(result).To(Equal("artist1/album1"))
})
It("walks up to parent directory when given a file path", func() {
tests.SkipOnWindows("path separator bug (#TBD-path-sep-scanner)")
result := resolveFolderPath(mockFS, "artist1/album1/track1.mp3")
Expect(result).To(Equal("artist1/album1"))
})
It("walks up multiple levels if needed", func() {
tests.SkipOnWindows("path separator bug (#TBD-path-sep-scanner)")
result := resolveFolderPath(mockFS, "artist1/album1/nonexistent/file.mp3")
Expect(result).To(Equal("artist1/album1"))
})
It("returns empty string for non-existent paths at root", func() {
result := resolveFolderPath(mockFS, "nonexistent/path/file.mp3")
Expect(result).To(Equal(""))
})
It("returns empty string for dot path", func() {
result := resolveFolderPath(mockFS, ".")
Expect(result).To(Equal(""))
})
It("returns empty string for empty path", func() {
result := resolveFolderPath(mockFS, "")
Expect(result).To(Equal(""))
})
It("handles nested file paths correctly", func() {
tests.SkipOnWindows("path separator bug (#TBD-path-sep-scanner)")
result := resolveFolderPath(mockFS, "artist1/album2/song.flac")
Expect(result).To(Equal("artist1/album2"))
})
It("resolves to top-level directory", func() {
result := resolveFolderPath(mockFS, "artist2/cover.jpg")
Expect(result).To(Equal("artist2"))
})
})