Files
go-mxl-player/internal/playback/sync_worker_test.go
T
2026-09-01 18:03:18 +03:00

285 lines
8.7 KiB
Go

package playback
import (
"context"
"errors"
"testing"
"time"
)
type syncOpenResult struct {
reader SyncReader
err error
}
type scriptedSyncFactory struct {
results []syncOpenResult
calls int
}
func (f *scriptedSyncFactory) OpenSync(
context.Context,
FeedConfig,
FeedConfig,
) (SyncReader, error) {
if f.calls >= len(f.results) {
return nil, errors.New("unexpected sync open attempt")
}
result := f.results[f.calls]
f.calls++
return result.reader, result.err
}
func activeSyncConfigs() (FeedConfig, FeedConfig) {
return FeedConfig{Domain: "/mxl", UUID: "video", Active: true},
FeedConfig{Domain: "/mxl", UUID: "audio", Active: true}
}
func newTestSyncWorker(
t *testing.T,
factory SyncReaderFactory,
videoSink VideoSink,
audioSink AudioSink,
maxAttempts int,
observer StatusObserver,
) *SyncWorker {
t.Helper()
worker, err := NewSyncWorker(
factory,
videoSink,
audioSink,
testRetryPolicy(maxAttempts),
func(error) bool { return true },
observer,
)
if err != nil {
t.Fatalf("NewSyncWorker() error = %v", err)
}
worker.wait = func(context.Context, time.Duration) error { return nil }
return worker
}
func TestNewSyncWorkerValidatesDependencies(t *testing.T) {
factory := &scriptedSyncFactory{}
videoSink := &fakeVideoSink{}
audioSink := &fakeAudioSink{}
retry := testRetryPolicy(3)
decide := func(error) bool { return true }
tests := []struct {
name string
factory SyncReaderFactory
videoSink VideoSink
audioSink AudioSink
retry RetryPolicy
shouldRetry func(error) bool
wantErr error
}{
{"missing factory", nil, videoSink, audioSink, retry, decide, ErrSyncFactoryRequired},
{"missing video sink", factory, nil, audioSink, retry, decide, ErrSyncVideoSinkRequired},
{"missing audio sink", factory, videoSink, nil, retry, decide, ErrSyncAudioSinkRequired},
{"invalid retry", factory, videoSink, audioSink, RetryPolicy{}, decide, ErrInvalidRetryDelay},
{"missing decider", factory, videoSink, audioSink, retry, nil, ErrSyncRetryDeciderRequired},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
worker, err := NewSyncWorker(
tt.factory, tt.videoSink, tt.audioSink, tt.retry, tt.shouldRetry, nil,
)
if worker != nil {
t.Fatal("NewSyncWorker() worker is not nil")
}
if !errors.Is(err, tt.wantErr) {
t.Fatalf("NewSyncWorker() error = %v, want %v", err, tt.wantErr)
}
})
}
}
func TestSyncWorkerRejectsInvalidOrInactiveFeeds(t *testing.T) {
video, audio := activeSyncConfigs()
tests := []struct {
name string
video FeedConfig
audio FeedConfig
want error
}{
{"invalid video", FeedConfig{Active: true}, audio, ErrActiveFeedNotConfigured},
{"invalid audio", video, FeedConfig{Active: true}, ErrActiveFeedNotConfigured},
{"inactive video", FeedConfig{Domain: video.Domain, UUID: video.UUID}, audio, ErrSyncFeedsInactive},
{"inactive audio", video, FeedConfig{Domain: audio.Domain, UUID: audio.UUID}, ErrSyncFeedsInactive},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
factory := &scriptedSyncFactory{}
worker := newTestSyncWorker(t, factory, &fakeVideoSink{}, &fakeAudioSink{}, 3, nil)
err := worker.Run(context.Background(), tt.video, tt.audio)
if !errors.Is(err, tt.want) {
t.Fatalf("Run() error = %v, want %v", err, tt.want)
}
if factory.calls != 0 {
t.Fatalf("factory calls = %d, want 0", factory.calls)
}
})
}
}
func TestSyncWorkerStatusesInheritGeneration(t *testing.T) {
openErr := errors.New("unavailable")
var statuses []Status
worker := newTestSyncWorker(
t,
&scriptedSyncFactory{results: []syncOpenResult{{err: openErr}}},
&fakeVideoSink{},
&fakeAudioSink{},
1,
func(status Status) { statuses = append(statuses, status) },
)
video, audio := activeSyncConfigs()
_ = worker.Run(withGeneration(context.Background(), 9), video, audio)
if len(statuses) == 0 {
t.Fatal("no statuses emitted")
}
for _, status := range statuses {
if status.Generation != 9 {
t.Fatalf("status generation = %d, want 9: %+v", status.Generation, status)
}
}
}
func TestSyncWorkerExhaustsOpenRetries(t *testing.T) {
openErr := errors.New("sync producer unavailable")
factory := &scriptedSyncFactory{results: []syncOpenResult{{err: openErr}, {err: openErr}}}
var statuses []Status
worker := newTestSyncWorker(t, factory, &fakeVideoSink{}, &fakeAudioSink{}, 2,
func(status Status) { statuses = append(statuses, status) })
video, audio := activeSyncConfigs()
err := worker.Run(context.Background(), video, audio)
if !errors.Is(err, openErr) {
t.Fatalf("Run() error = %v, want %v", err, openErr)
}
if factory.calls != 2 {
t.Fatalf("factory calls = %d, want 2", factory.calls)
}
want := []State{StateConnecting, StateReconnecting, StateReconnecting, StateFailed}
if len(statuses) != len(want) {
t.Fatalf("statuses = %+v, want %d entries", statuses, len(want))
}
for i, state := range want {
if statuses[i].Unit != UnitSync || statuses[i].State != state {
t.Errorf("status %d = %+v, want unit=%v state=%v", i, statuses[i], UnitSync, state)
}
}
}
func TestSyncWorkerStablePairResetsRetryCounter(t *testing.T) {
readErr := errors.New("sync disconnected")
ctx, cancel := context.WithCancel(context.Background())
lastReader := &fakeSyncReader{read: func(ctx context.Context) (SyncFrame, error) {
cancel()
return SyncFrame{}, ctx.Err()
}}
factory := &scriptedSyncFactory{results: []syncOpenResult{
{reader: &fakeSyncReader{frames: []SyncFrame{{}}, readErr: readErr}},
{reader: &fakeSyncReader{frames: []SyncFrame{{}}, readErr: readErr}},
{reader: lastReader},
}}
var statuses []Status
worker := newTestSyncWorker(t, factory, &fakeVideoSink{}, &fakeAudioSink{}, 2,
func(status Status) { statuses = append(statuses, status) })
video, audio := activeSyncConfigs()
err := worker.Run(ctx, video, audio)
if !errors.Is(err, context.Canceled) {
t.Fatalf("Run() error = %v, want context.Canceled", err)
}
if factory.calls != 3 {
t.Fatalf("factory calls = %d, want 3", factory.calls)
}
var retryFailures []int
for _, status := range statuses {
if status.State == StateReconnecting && status.RetryIn > 0 {
retryFailures = append(retryFailures, status.FailedAttempts)
}
}
if len(retryFailures) != 2 || retryFailures[0] != 1 || retryFailures[1] != 1 {
t.Fatalf("retry failure counts = %v, want [1 1]", retryFailures)
}
}
func TestSyncWorkerDoesNotRetrySinkFailures(t *testing.T) {
sinkErr := errors.New("output failed")
tests := []struct {
name string
videoSink VideoSink
audioSink AudioSink
}{
{"video", &fakeVideoSink{err: sinkErr}, &fakeAudioSink{}},
{"audio", &fakeVideoSink{}, &fakeAudioSink{err: sinkErr}},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
reader := &fakeSyncReader{frames: []SyncFrame{{}}}
factory := &scriptedSyncFactory{results: []syncOpenResult{{reader: reader}}}
deciderCalls := 0
worker, err := NewSyncWorker(factory, tt.videoSink, tt.audioSink, testRetryPolicy(0),
func(error) bool { deciderCalls++; return true }, nil)
if err != nil {
t.Fatal(err)
}
worker.wait = func(context.Context, time.Duration) error { return nil }
video, audio := activeSyncConfigs()
err = worker.Run(context.Background(), video, audio)
if !errors.Is(err, sinkErr) {
t.Fatalf("Run() error = %v, want %v", err, sinkErr)
}
if factory.calls != 1 || deciderCalls != 0 || !reader.closed {
t.Fatalf("calls=%d deciderCalls=%d closed=%t", factory.calls, deciderCalls, reader.closed)
}
})
}
}
func TestSyncWorkerEmitsPlayingThenStopsOnCancellation(t *testing.T) {
ctx, cancel := context.WithCancel(context.Background())
reader := &fakeSyncReader{
frames: []SyncFrame{{}},
read: func(ctx context.Context) (SyncFrame, error) {
cancel()
return SyncFrame{}, ctx.Err()
},
}
// Preserve the first frame before switching to the cancellation callback.
readCalls := 0
reader.read = func(ctx context.Context) (SyncFrame, error) {
readCalls++
if readCalls == 1 {
return SyncFrame{}, nil
}
cancel()
return SyncFrame{}, ctx.Err()
}
factory := &scriptedSyncFactory{results: []syncOpenResult{{reader: reader}}}
var statuses []Status
worker := newTestSyncWorker(t, factory, &fakeVideoSink{}, &fakeAudioSink{}, 3,
func(status Status) { statuses = append(statuses, status) })
video, audio := activeSyncConfigs()
err := worker.Run(ctx, video, audio)
if !errors.Is(err, context.Canceled) {
t.Fatalf("Run() error = %v, want context.Canceled", err)
}
want := []State{StateConnecting, StatePlaying, StateStopping, StateIdle}
if len(statuses) != len(want) {
t.Fatalf("statuses = %+v, want %v", statuses, want)
}
for i, state := range want {
if statuses[i].Unit != UnitSync || statuses[i].State != state {
t.Errorf("status %d = %+v, want unit=%v state=%v", i, statuses[i], UnitSync, state)
}
}
}