| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403 | // Copyright (c) Microsoft Open Technologies, Inc. All rights reserved. See License.txt in the project root for license information.#if !NO_PERFusing System;using System.Collections.Generic;using System.Reactive.Disposables;#if !NO_TPLusing System.Threading;using System.Threading.Tasks;#endifnamespace System.Reactive.Linq.ObservableImpl{    class Merge<TSource> : Producer<TSource>    {        private readonly IObservable<IObservable<TSource>> _sources;        private readonly int _maxConcurrent;        public Merge(IObservable<IObservable<TSource>> sources)        {            _sources = sources;        }        public Merge(IObservable<IObservable<TSource>> sources, int maxConcurrent)        {            _sources = sources;            _maxConcurrent = maxConcurrent;        }#if !NO_TPL        private readonly IObservable<Task<TSource>> _sourcesT;        public Merge(IObservable<Task<TSource>> sources)        {            _sourcesT = sources;        }#endif        protected override IDisposable Run(IObserver<TSource> observer, IDisposable cancel, Action<IDisposable> setSink)        {            if (_maxConcurrent > 0)            {                var sink = new MergeConcurrent(this, observer, cancel);                setSink(sink);                return sink.Run();            }#if !NO_TPL            else if (_sourcesT != null)            {                var sink = new MergeImpl(this, observer, cancel);                setSink(sink);                return sink.Run();            }#endif            else            {                var sink = new _(this, observer, cancel);                setSink(sink);                return sink.Run();            }        }        class _ : Sink<TSource>, IObserver<IObservable<TSource>>        {            private readonly Merge<TSource> _parent;            public _(Merge<TSource> parent, IObserver<TSource> observer, IDisposable cancel)                : base(observer, cancel)            {                _parent = parent;            }            private object _gate;            private bool _isStopped;            private CompositeDisposable _group;            private SingleAssignmentDisposable _sourceSubscription;            public IDisposable Run()            {                _gate = new object();                _isStopped = false;                _group = new CompositeDisposable();                _sourceSubscription = new SingleAssignmentDisposable();                _group.Add(_sourceSubscription);                _sourceSubscription.Disposable = _parent._sources.SubscribeSafe(this);                return _group;            }            public void OnNext(IObservable<TSource> value)            {                var innerSubscription = new SingleAssignmentDisposable();                _group.Add(innerSubscription);                innerSubscription.Disposable = value.SubscribeSafe(new Iter(this, innerSubscription));            }            public void OnError(Exception error)            {                lock (_gate)                {                    base._observer.OnError(error);                    base.Dispose();                }            }            public void OnCompleted()            {                _isStopped = true;                if (_group.Count == 1)                {                    //                    // Notice there can be a race between OnCompleted of the source and any                    // of the inner sequences, where both see _group.Count == 1, and one is                    // waiting for the lock. There won't be a double OnCompleted observation                    // though, because the call to Dispose silences the observer by swapping                    // in a NopObserver<T>.                    //                    lock (_gate)                    {                        base._observer.OnCompleted();                        base.Dispose();                    }                }                else                {                    _sourceSubscription.Dispose();                }            }            class Iter : IObserver<TSource>            {                private readonly _ _parent;                private readonly IDisposable _self;                public Iter(_ parent, IDisposable self)                {                    _parent = parent;                    _self = self;                }                public void OnNext(TSource value)                {                    lock (_parent._gate)                        _parent._observer.OnNext(value);                }                public void OnError(Exception error)                {                    lock (_parent._gate)                    {                        _parent._observer.OnError(error);                        _parent.Dispose();                    }                }                public void OnCompleted()                {                    _parent._group.Remove(_self);                    if (_parent._isStopped && _parent._group.Count == 1)                    {                        //                        // Notice there can be a race between OnCompleted of the source and any                        // of the inner sequences, where both see _group.Count == 1, and one is                        // waiting for the lock. There won't be a double OnCompleted observation                        // though, because the call to Dispose silences the observer by swapping                        // in a NopObserver<T>.                        //                        lock (_parent._gate)                        {                            _parent._observer.OnCompleted();                            _parent.Dispose();                        }                    }                }            }        }        class MergeConcurrent : Sink<TSource>, IObserver<IObservable<TSource>>        {            private readonly Merge<TSource> _parent;            public MergeConcurrent(Merge<TSource> parent, IObserver<TSource> observer, IDisposable cancel)                : base(observer, cancel)            {                _parent = parent;            }            private object _gate;            private Queue<IObservable<TSource>> _q;            private bool _isStopped;            private SingleAssignmentDisposable _sourceSubscription;            private CompositeDisposable _group;            private int _activeCount = 0;            public IDisposable Run()            {                _gate = new object();                _q = new Queue<IObservable<TSource>>();                _isStopped = false;                _activeCount = 0;                _group = new CompositeDisposable();                _sourceSubscription = new SingleAssignmentDisposable();                _sourceSubscription.Disposable = _parent._sources.SubscribeSafe(this);                _group.Add(_sourceSubscription);                return _group;            }            public void OnNext(IObservable<TSource> value)            {                lock (_gate)                {                    if (_activeCount < _parent._maxConcurrent)                    {                        _activeCount++;                        Subscribe(value);                    }                    else                        _q.Enqueue(value);                }            }            public void OnError(Exception error)            {                lock (_gate)                {                    base._observer.OnError(error);                    base.Dispose();                }            }            public void OnCompleted()            {                lock (_gate)                {                    _isStopped = true;                    if (_activeCount == 0)                    {                        base._observer.OnCompleted();                        base.Dispose();                    }                    else                    {                        _sourceSubscription.Dispose();                    }                }            }            private void Subscribe(IObservable<TSource> innerSource)            {                var subscription = new SingleAssignmentDisposable();                _group.Add(subscription);                subscription.Disposable = innerSource.SubscribeSafe(new Iter(this, subscription));            }            class Iter : IObserver<TSource>            {                private readonly MergeConcurrent _parent;                private readonly IDisposable _self;                public Iter(MergeConcurrent parent, IDisposable self)                {                    _parent = parent;                    _self = self;                }                public void OnNext(TSource value)                {                    lock (_parent._gate)                        _parent._observer.OnNext(value);                }                public void OnError(Exception error)                {                    lock (_parent._gate)                    {                        _parent._observer.OnError(error);                        _parent.Dispose();                    }                }                public void OnCompleted()                {                    _parent._group.Remove(_self);                    lock (_parent._gate)                    {                        if (_parent._q.Count > 0)                        {                            var s = _parent._q.Dequeue();                            _parent.Subscribe(s);                        }                        else                        {                            _parent._activeCount--;                            if (_parent._isStopped && _parent._activeCount == 0)                            {                                _parent._observer.OnCompleted();                                _parent.Dispose();                            }                        }                    }                }            }        }#if !NO_TPL#pragma warning disable 0420        class MergeImpl : Sink<TSource>, IObserver<Task<TSource>>        {            private readonly Merge<TSource> _parent;            public MergeImpl(Merge<TSource> parent, IObserver<TSource> observer, IDisposable cancel)                : base(observer, cancel)            {                _parent = parent;            }            private object _gate;            private volatile int _count;            public IDisposable Run()            {                _gate = new object();                _count = 1;                return _parent._sourcesT.SubscribeSafe(this);            }            public void OnNext(Task<TSource> value)            {                Interlocked.Increment(ref _count);                if (value.IsCompleted)                {                    OnCompletedTask(value);                }                else                {                    value.ContinueWith(OnCompletedTask);                }            }            private void OnCompletedTask(Task<TSource> task)            {                switch (task.Status)                {                    case TaskStatus.RanToCompletion:                        {                            lock (_gate)                                base._observer.OnNext(task.Result);                            OnCompleted();                        }                        break;                    case TaskStatus.Faulted:                        {                            lock (_gate)                            {                                base._observer.OnError(task.Exception.InnerException);                                base.Dispose();                            }                        }                        break;                    case TaskStatus.Canceled:                        {                            lock (_gate)                            {                                base._observer.OnError(new TaskCanceledException(task));                                base.Dispose();                            }                        }                        break;                }            }            public void OnError(Exception error)            {                lock (_gate)                {                    base._observer.OnError(error);                    base.Dispose();                }            }            public void OnCompleted()            {                if (Interlocked.Decrement(ref _count) == 0)                {                    lock (_gate)                    {                        base._observer.OnCompleted();                        base.Dispose();                    }                }            }        }#pragma warning restore 0420#endif    }}#endif
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