| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341 | // Licensed to the .NET Foundation under one or more agreements.// The .NET Foundation licenses this file to you under the Apache 2.0 License.// See the LICENSE file in the project root for more information. using System.Collections;using System.Collections.Generic;using System.Diagnostics;using System.Threading;using System.Threading.Tasks;namespace System.Linq{    public static partial class AsyncEnumerable    {        public static IAsyncEnumerable<TSource> ToAsyncEnumerable<TSource>(this IEnumerable<TSource> source)        {            if (source == null)                throw new ArgumentNullException(nameof(source));            // optimize these adapters for lists and collections            if (source is IList<TSource> list)                return new AsyncIListEnumerableAdapter<TSource>(list);            if (source is ICollection<TSource> collection)                return new AsyncICollectionEnumerableAdapter<TSource>(collection);            return new AsyncEnumerableAdapter<TSource>(source);        }        public static IAsyncEnumerable<TSource> ToAsyncEnumerable<TSource>(this Task<TSource> task)        {            if (task == null)                throw new ArgumentNullException(nameof(task));            return CreateEnumerable(                () =>                {                    var called = 0;                    var value = default(TSource);                    return CreateEnumerator(                        async ct =>                        {                            if (Interlocked.CompareExchange(ref called, 1, 0) == 0)                            {                                value = await task.ConfigureAwait(false);                                return true;                            }                            return false;                        },                        () => value,                        () => TaskExt.True);                });        }        public static IEnumerable<TSource> ToEnumerable<TSource>(this IAsyncEnumerable<TSource> source)        {            if (source == null)                throw new ArgumentNullException(nameof(source));            return ToEnumerable_(source);        }        private static IEnumerable<TSource> ToEnumerable_<TSource>(IAsyncEnumerable<TSource> source)        {            var e = source.GetAsyncEnumerator();            try            {                while (true)                {                    if (!e.MoveNextAsync()                          .Result)                        break;                    var c = e.Current;                    yield return c;                }            }            finally            {                e.DisposeAsync().Wait();            }        }        internal sealed class AsyncEnumerableAdapter<T> : AsyncIterator<T>, IIListProvider<T>        {            private readonly IEnumerable<T> source;            private IEnumerator<T> enumerator;             public AsyncEnumerableAdapter(IEnumerable<T> source)            {                Debug.Assert(source != null);                this.source = source;            }            public override AsyncIterator<T> Clone()            {                return new AsyncEnumerableAdapter<T>(source);            }            public override async Task DisposeAsync()            {                if (enumerator != null)                {                    enumerator.Dispose();                    enumerator = null;                }                await base.DisposeAsync().ConfigureAwait(false);            }            protected override async Task<bool> MoveNextCore()            {                switch (state)                {                    case AsyncIteratorState.Allocated:                        enumerator = source.GetEnumerator();                        state = AsyncIteratorState.Iterating;                        goto case AsyncIteratorState.Iterating;                    case AsyncIteratorState.Iterating:                        if (enumerator.MoveNext())                        {                            current = enumerator.Current;                            return true;                        }                        await DisposeAsync().ConfigureAwait(false);                        break;                }                return false;            }            // These optimizations rely on the Sys.Linq impls from IEnumerable to optimize            // and short circuit as appropriate            public Task<T[]> ToArrayAsync(CancellationToken cancellationToken)            {                return Task.FromResult(source.ToArray());            }            public Task<List<T>> ToListAsync(CancellationToken cancellationToken)            {                return Task.FromResult(source.ToList());            }            public Task<int> GetCountAsync(bool onlyIfCheap, CancellationToken cancellationToken)            {                return Task.FromResult(source.Count());            }        }        internal sealed class AsyncIListEnumerableAdapter<T> : AsyncIterator<T>, IIListProvider<T>, IList<T>        {            private readonly IList<T> source;            private IEnumerator<T> enumerator;            public AsyncIListEnumerableAdapter(IList<T> source)            {                Debug.Assert(source != null);                this.source = source;            }            public override AsyncIterator<T> Clone()            {                return new AsyncIListEnumerableAdapter<T>(source);            }            public override async Task DisposeAsync()            {                if (enumerator != null)                {                    enumerator.Dispose();                    enumerator = null;                }                await base.DisposeAsync().ConfigureAwait(false);            }            protected override async Task<bool> MoveNextCore()            {                switch (state)                {                    case AsyncIteratorState.Allocated:                        enumerator = source.GetEnumerator();                        state = AsyncIteratorState.Iterating;                        goto case AsyncIteratorState.Iterating;                    case AsyncIteratorState.Iterating:                        if (enumerator.MoveNext())                        {                            current = enumerator.Current;                            return true;                        }                        await DisposeAsync().ConfigureAwait(false);                        break;                }                return false;            }            public override IAsyncEnumerable<TResult> Select<TResult>(Func<T, TResult> selector)            {                return new SelectIListIterator<T, TResult>(source, selector);            }            // These optimizations rely on the Sys.Linq impls from IEnumerable to optimize            // and short circuit as appropriate            public Task<T[]> ToArrayAsync(CancellationToken cancellationToken)            {                return Task.FromResult(source.ToArray());            }            public Task<List<T>> ToListAsync(CancellationToken cancellationToken)            {                return Task.FromResult(source.ToList());            }            public Task<int> GetCountAsync(bool onlyIfCheap, CancellationToken cancellationToken)            {                return Task.FromResult(source.Count);            }            IEnumerator<T> IEnumerable<T>.GetEnumerator() => source.GetEnumerator();            IEnumerator IEnumerable.GetEnumerator() => source.GetEnumerator();            void ICollection<T>.Add(T item) => source.Add(item);            void ICollection<T>.Clear() => source.Clear();            bool ICollection<T>.Contains(T item) => source.Contains(item);            void ICollection<T>.CopyTo(T[] array, int arrayIndex) => source.CopyTo(array, arrayIndex);            bool ICollection<T>.Remove(T item) => source.Remove(item);            int ICollection<T>.Count => source.Count;            bool ICollection<T>.IsReadOnly => source.IsReadOnly;            int IList<T>.IndexOf(T item) => source.IndexOf(item);            void IList<T>.Insert(int index, T item) => source.Insert(index, item);            void IList<T>.RemoveAt(int index) => source.RemoveAt(index);            T IList<T>.this[int index]            {                get { return source[index]; }                set { source[index] = value; }            }        }        internal sealed class AsyncICollectionEnumerableAdapter<T> : AsyncIterator<T>, IIListProvider<T>, ICollection<T>        {            private readonly ICollection<T> source;            private IEnumerator<T> enumerator;            public AsyncICollectionEnumerableAdapter(ICollection<T> source)            {                Debug.Assert(source != null);                this.source = source;            }            public override AsyncIterator<T> Clone()            {                return new AsyncICollectionEnumerableAdapter<T>(source);            }            public override async Task DisposeAsync()            {                if (enumerator != null)                {                    enumerator.Dispose();                    enumerator = null;                }                await base.DisposeAsync().ConfigureAwait(false);            }            protected override async Task<bool> MoveNextCore()            {                switch (state)                {                    case AsyncIteratorState.Allocated:                        enumerator = source.GetEnumerator();                        state = AsyncIteratorState.Iterating;                        goto case AsyncIteratorState.Iterating;                    case AsyncIteratorState.Iterating:                        if (enumerator.MoveNext())                        {                            current = enumerator.Current;                            return true;                        }                        await DisposeAsync().ConfigureAwait(false);                        break;                }                return false;            }            // These optimizations rely on the Sys.Linq impls from IEnumerable to optimize            // and short circuit as appropriate            public Task<T[]> ToArrayAsync(CancellationToken cancellationToken)            {                return Task.FromResult(source.ToArray());            }            public Task<List<T>> ToListAsync(CancellationToken cancellationToken)            {                return Task.FromResult(source.ToList());            }            public Task<int> GetCountAsync(bool onlyIfCheap, CancellationToken cancellationToken)            {                return Task.FromResult(source.Count);            }            IEnumerator<T> IEnumerable<T>.GetEnumerator() => source.GetEnumerator();            IEnumerator IEnumerable.GetEnumerator() => source.GetEnumerator();            void ICollection<T>.Add(T item) => source.Add(item);            void ICollection<T>.Clear() => source.Clear();            bool ICollection<T>.Contains(T item) => source.Contains(item);            void ICollection<T>.CopyTo(T[] array, int arrayIndex) => source.CopyTo(array, arrayIndex);            bool ICollection<T>.Remove(T item) => source.Remove(item);            int ICollection<T>.Count => source.Count;            bool ICollection<T>.IsReadOnly => source.IsReadOnly;        }    }}
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