mirror of
https://github.com/langgenius/dify-plugin-daemon.git
synced 2026-07-22 09:45:27 -04:00
888ad788bc
* refactor: introduce local plugin control panel and cleanup environment setup process * fix: args * refactor: new local runtime * temp: stash work for refactor on RemotePluginServer * refactor: unify local runtime lifetime and sperate init environment process * chore: add missing files * stash * refactor: local plugin lifetime control * refactor: complete installation process of control panel * refactor: adapt service layer to new controlpanel * refactor: pluginManager.Install * fix: add routine wrap to InstallServerless, avoid blocking main thread * feat: reinstall serverless runtime * chore: add comments to Reinstall and update confusing naming * refactor: unify install plugin service * refactor: add labels to debugging runtime * refactor: add getters to plugin manager * refactor: split install service to decode/install_task/install service * ??? * refactor: adapt controllers * refactor: session write * refactor: session runtime * Refine install task orchestration (#501) * refactor: installing task * refactor cluster management, decouple lifetime management and cluster * fix cli test command * fix: cleanup TODO comments and implement GracefulStop for instance * feat: add logger to control panel * fix: multiple nil references * refactor: better lifetime control * refactor: better cycle interval * fix(LocalPluginRuntime): prevent returning err when it's not error * fix: avoid adding empty PipExtraArgs * fix: missing errors in Environment init * fix: add truncateMessage to avoid db explosion * cleanup: better lifecycle management * fix: init status at the beginning of installation * optimize: GracefulStop for pluginInstance * refactor: tests * refactor: centralize routine labels (#504) * cleanup: RoutineKey * fix: init routine pool * fix: correctly handle cluster register error * fix: memory leak * fix: add \n to instance write * fix(installer.go): set success to true after succeed for defer func * refactor * fix: missing cwd in testutils * fix: scaleup default runtime nums to 1 when testing * fix: localruntime appconfig in testing module * Update internal/core/local_runtime/load_balancing.go Co-authored-by: gemini-code-assist[bot] <176961590+gemini-code-assist[bot]@users.noreply.github.com> * fix: more efficiency implement in installer_local.go * fix: returns after failing in onDebuggingRuntimeDisconnected * fix: returns after failing in onDebuggingRuntimeDisconnected * fix: splits tests * refactor: naming * refactor: manifest.VersionX * fix: adapt SetDefault to tests * fix: enforce use constants in DBType * fix: generate * fix: linter * cleanup tests * refactor: change package to * cleanup: useless codes * Update internal/cluster/plugin.go Co-authored-by: gemini-code-assist[bot] <176961590+gemini-code-assist[bot]@users.noreply.github.com> * cleanup * refactor: decouple connection_key management from debugging_time * refactor: confused naming * feat: recycle resources to adapt to https://github.com/langgenius/dify-plugin-daemon/pull/500 * refactor: confusing redirecting * fix: support get serverless runtime * fix: race condition in Launching * fix: avoid ManifestValidate in first step of debugging handshake * fix: adding ReleaseAllLocks to finalizers * wtf: what a beautiful code * refactor: rename Stream.Async to Stream.Process * fix: kill process if daed instance was detected * fix: correctly handle failures * fix: consistence of difference interfaces * fix: add stacktrace to panic * fix: only trigger once event * fix: ensure plugin runtime was shutdown * feat: cleanup install tasks * fix: add scale logs --------- Co-authored-by: gemini-code-assist[bot] <176961590+gemini-code-assist[bot]@users.noreply.github.com>
233 lines
4.2 KiB
Go
233 lines
4.2 KiB
Go
package stream
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import (
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"errors"
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"sync"
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"sync/atomic"
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"github.com/gammazero/deque"
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)
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var ErrEmpty = errors.New("no data available")
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type Stream[T any] struct {
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q deque.Deque[T]
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l *sync.Mutex
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sig chan bool
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closed int32
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max int
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listening bool
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onClose []func()
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beforeClose []func()
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filter []func(T) error
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err error
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// Condition variable for blocking writes when queue is full
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writeCond *sync.Cond
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}
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func NewStream[T any](max int) *Stream[T] {
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mutex := &sync.Mutex{}
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return &Stream[T]{
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l: mutex,
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sig: make(chan bool),
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max: max,
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writeCond: sync.NewCond(mutex),
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}
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}
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// Filter filters the stream with a function
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// if the function returns an error, the stream will be closed
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func (r *Stream[T]) Filter(f func(T) error) {
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r.filter = append(r.filter, f)
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}
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// OnClose adds a function to be called when the stream is closed
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func (r *Stream[T]) OnClose(f func()) {
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r.onClose = append(r.onClose, f)
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}
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// BeforeClose adds a function to be called before the stream is closed
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func (r *Stream[T]) BeforeClose(f func()) {
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r.beforeClose = append(r.beforeClose, f)
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}
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// Next returns true if there are more data to be read
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// and waits for the next data to be available
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// returns false if the stream is closed
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// NOTE: even if the stream is closed, it will return true if there is data available
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func (r *Stream[T]) Next() bool {
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r.l.Lock()
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if r.closed == 1 && r.q.Len() == 0 && r.err == nil {
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r.l.Unlock()
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return false
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}
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if r.q.Len() > 0 || r.err != nil {
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r.l.Unlock()
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return true
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}
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r.listening = true
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defer func() {
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r.listening = false
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}()
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r.l.Unlock()
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return <-r.sig
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}
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// Read reads buffered data from the stream and
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// it returns error only if the buffer is empty or an error is written to the stream
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func (r *Stream[T]) Read() (T, error) {
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r.l.Lock()
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defer r.l.Unlock()
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if r.q.Len() > 0 {
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data := r.q.PopFront()
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// Signal any waiting writers that there's now space in the queue
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r.writeCond.Signal()
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for _, f := range r.filter {
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err := f(data)
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if err != nil {
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// close the stream
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r.Close()
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return data, err
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}
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}
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return data, nil
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} else {
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var data T
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if r.err != nil {
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err := r.err
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r.err = nil
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return data, err
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}
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return data, ErrEmpty
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}
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}
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// Process wraps the stream with a new stream, and allows customized operations
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func (r *Stream[T]) Process(fn func(T)) error {
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for r.Next() {
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data, err := r.Read()
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if err != nil {
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return err
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}
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fn(data)
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}
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return nil
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}
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// Write writes data to the stream,
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// returns error if the buffer is full
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func (r *Stream[T]) Write(data T) error {
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if atomic.LoadInt32(&r.closed) == 1 {
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return nil
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}
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r.l.Lock()
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if r.q.Len() >= r.max {
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r.l.Unlock()
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return errors.New("queue is full")
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}
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r.q.PushBack(data)
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if r.q.Len() == 1 {
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if r.listening {
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r.sig <- true
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}
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}
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r.l.Unlock()
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return nil
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}
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// WriteBlocking writes data to the stream,
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// blocks if the buffer is full until space becomes available
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func (r *Stream[T]) WriteBlocking(data T) {
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if atomic.LoadInt32(&r.closed) == 1 {
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return
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}
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r.l.Lock()
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defer r.l.Unlock()
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// Wait until there's space in the queue or the stream is closed
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for r.q.Len() >= r.max && atomic.LoadInt32(&r.closed) == 0 {
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r.writeCond.Wait()
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}
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// Check if the stream was closed while waiting
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if atomic.LoadInt32(&r.closed) == 1 {
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return
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}
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r.q.PushBack(data)
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if r.q.Len() == 1 {
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if r.listening {
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r.sig <- true
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}
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}
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}
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// Close closes the stream
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func (r *Stream[T]) Close() {
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if !atomic.CompareAndSwapInt32(&r.closed, 0, 1) {
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return
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}
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for _, f := range r.beforeClose {
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f()
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}
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select {
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case r.sig <- false:
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default:
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}
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close(r.sig)
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// Wake up any waiting writers
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r.l.Lock()
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r.writeCond.Broadcast()
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r.l.Unlock()
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for _, f := range r.onClose {
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f()
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}
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}
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func (r *Stream[T]) IsClosed() bool {
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return atomic.LoadInt32(&r.closed) == 1
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}
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func (r *Stream[T]) Size() int {
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r.l.Lock()
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defer r.l.Unlock()
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return r.q.Len()
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}
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// WriteError writes an error to the stream
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func (r *Stream[T]) WriteError(err error) {
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if atomic.LoadInt32(&r.closed) == 1 {
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return
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}
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r.l.Lock()
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defer r.l.Unlock()
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r.err = err
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if r.q.Len() == 0 {
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if r.listening {
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r.sig <- true
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}
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}
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}
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