| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267 | // Licensed to the .NET Foundation under one or more agreements.// The .NET Foundation licenses this file to you under the MIT License.// See the LICENSE file in the project root for more information. using System.Collections.Generic;using System.Reactive.Concurrency;using System.Reactive.Disposables;using System.Threading.Tasks;namespace System.Reactive.Linq{    public partial class AsyncObservable    {        public static IAsyncObservable<TSource> TakeLast<TSource>(this IAsyncObservable<TSource> source, int count)        {            if (source == null)                throw new ArgumentNullException(nameof(source));            if (count < 0)                throw new ArgumentOutOfRangeException(nameof(count));            if (count == 0)            {                return Empty<TSource>();            }            return CreateAsyncObservable<TSource>.From(                source,                count,                static async (source, count, observer) =>                {                    var (sink, drain) = AsyncObserver.TakeLast(observer, count);                    var subscription = await source.SubscribeSafeAsync(sink).ConfigureAwait(false);                    return StableCompositeAsyncDisposable.Create(subscription, drain);                });        }        public static IAsyncObservable<TSource> TakeLast<TSource>(this IAsyncObservable<TSource> source, int count, IAsyncScheduler scheduler)        {            if (source == null)                throw new ArgumentNullException(nameof(source));            if (count < 0)                throw new ArgumentOutOfRangeException(nameof(count));            if (scheduler == null)                throw new ArgumentNullException(nameof(scheduler));            if (count == 0)            {                return Empty<TSource>();            }            return CreateAsyncObservable<TSource>.From(                source,                (count, scheduler),                static async (source, state, observer) =>                {                    var (sink, drain) = AsyncObserver.TakeLast(observer, state.count, state.scheduler);                    var subscription = await source.SubscribeSafeAsync(sink).ConfigureAwait(false);                    return StableCompositeAsyncDisposable.Create(subscription, drain);                });        }        public static IAsyncObservable<TSource> TakeLast<TSource>(this IAsyncObservable<TSource> source, TimeSpan duration)        {            if (source == null)                throw new ArgumentNullException(nameof(source));            if (duration < TimeSpan.Zero)                throw new ArgumentOutOfRangeException(nameof(duration));            if (duration == TimeSpan.Zero)            {                return Empty<TSource>();            }            return CreateAsyncObservable<TSource>.From(                source,                duration,                static async (source, duration, observer) =>                {                    var (sink, drain) = AsyncObserver.TakeLast(observer, duration);                    var subscription = await source.SubscribeSafeAsync(sink).ConfigureAwait(false);                    return StableCompositeAsyncDisposable.Create(subscription, drain);                });        }        public static IAsyncObservable<TSource> TakeLast<TSource>(this IAsyncObservable<TSource> source, TimeSpan duration, IClock clock)        {            if (source == null)                throw new ArgumentNullException(nameof(source));            if (duration < TimeSpan.Zero)                throw new ArgumentOutOfRangeException(nameof(duration));            if (clock == null)                throw new ArgumentNullException(nameof(clock));            if (duration == TimeSpan.Zero)            {                return Empty<TSource>();            }            return CreateAsyncObservable<TSource>.From(                source,                (duration, clock),                static async (source, state, observer) =>                {                    var (sink, drain) = AsyncObserver.TakeLast(observer, state.duration, state.clock);                    var subscription = await source.SubscribeSafeAsync(sink).ConfigureAwait(false);                    return StableCompositeAsyncDisposable.Create(subscription, drain);                });        }        public static IAsyncObservable<TSource> TakeLast<TSource>(this IAsyncObservable<TSource> source, TimeSpan duration, IClock clock, IAsyncScheduler scheduler)        {            if (source == null)                throw new ArgumentNullException(nameof(source));            if (duration < TimeSpan.Zero)                throw new ArgumentOutOfRangeException(nameof(duration));            if (clock == null)                throw new ArgumentNullException(nameof(clock));            if (scheduler == null)                throw new ArgumentNullException(nameof(scheduler));            if (duration == TimeSpan.Zero)            {                return Empty<TSource>();            }            return CreateAsyncObservable<TSource>.From(                source,                (duration, clock, scheduler),                static async (source, state, observer) =>                {                    var (sink, drain) = AsyncObserver.TakeLast(observer, state.duration, state.clock, state.scheduler);                    var subscription = await source.SubscribeSafeAsync(sink).ConfigureAwait(false);                    return StableCompositeAsyncDisposable.Create(subscription, drain);                });        }        public static IAsyncObservable<TSource> TakeLast<TSource>(this IAsyncObservable<TSource> source, TimeSpan duration, IAsyncScheduler scheduler) => TakeLast(source, duration, scheduler, scheduler);    }    public partial class AsyncObserver    {        public static (IAsyncObserver<TSource>, IAsyncDisposable) TakeLast<TSource>(IAsyncObserver<TSource> observer, int count) => TakeLast(observer, count, TaskPoolAsyncScheduler.Default);        public static (IAsyncObserver<TSource>, IAsyncDisposable) TakeLast<TSource>(IAsyncObserver<TSource> observer, int count, IAsyncScheduler scheduler)        {            if (observer == null)                throw new ArgumentNullException(nameof(observer));            if (count <= 0)                throw new ArgumentOutOfRangeException(nameof(count));            if (scheduler == null)                throw new ArgumentNullException(nameof(scheduler));            var sad = new SingleAssignmentAsyncDisposable();            var queue = new Queue<TSource>();            return                (                    Create<TSource>(                        x =>                        {                            queue.Enqueue(x);                            if (queue.Count > count)                            {                                queue.Dequeue();                            }                            return default;                        },                        observer.OnErrorAsync,                        async () =>                        {                            var drain = await scheduler.ScheduleAsync(async ct =>                            {                                while (!ct.IsCancellationRequested && queue.Count > 0)                                {                                    await observer.OnNextAsync(queue.Dequeue()).RendezVous(scheduler, ct);                                }                                ct.ThrowIfCancellationRequested();                                await observer.OnCompletedAsync().RendezVous(scheduler, ct);                            }).ConfigureAwait(false);                            await sad.AssignAsync(drain).ConfigureAwait(false);                        }                    ),                    sad                );        }        public static (IAsyncObserver<TSource>, IAsyncDisposable) TakeLast<TSource>(IAsyncObserver<TSource> observer, TimeSpan duration) => TakeLast(observer, duration, Clock.Default, TaskPoolAsyncScheduler.Default);        public static (IAsyncObserver<TSource>, IAsyncDisposable) TakeLast<TSource>(IAsyncObserver<TSource> observer, TimeSpan duration, IAsyncScheduler scheduler) => TakeLast(observer, duration, scheduler, scheduler);        public static (IAsyncObserver<TSource>, IAsyncDisposable) TakeLast<TSource>(IAsyncObserver<TSource> observer, TimeSpan duration, IClock clock) => TakeLast(observer, duration, clock, TaskPoolAsyncScheduler.Default);        public static (IAsyncObserver<TSource>, IAsyncDisposable) TakeLast<TSource>(IAsyncObserver<TSource> observer, TimeSpan duration, IClock clock, IAsyncScheduler scheduler)        {            if (observer == null)                throw new ArgumentNullException(nameof(observer));            if (duration < TimeSpan.Zero)                throw new ArgumentOutOfRangeException(nameof(duration));            if (scheduler == null)                throw new ArgumentNullException(nameof(scheduler));            var sad = new SingleAssignmentAsyncDisposable();            var queue = new Queue<Timestamped<TSource>>();            void Trim(DateTimeOffset now)            {                while (queue.Count > 0 && now - queue.Peek().Timestamp >= duration)                {                    queue.Dequeue();                }            }            return                (                    Create<TSource>(                        x =>                        {                            var now = clock.Now;                            queue.Enqueue(new Timestamped<TSource>(x, now));                            Trim(now);                            return default;                        },                        observer.OnErrorAsync,                        async () =>                        {                            Trim(clock.Now);                            var drain = await scheduler.ScheduleAsync(async ct =>                            {                                while (!ct.IsCancellationRequested && queue.Count > 0)                                {                                    await observer.OnNextAsync(queue.Dequeue().Value).RendezVous(scheduler, ct);                                }                                ct.ThrowIfCancellationRequested();                                await observer.OnCompletedAsync().RendezVous(scheduler, ct);                            }).ConfigureAwait(false);                            await sad.AssignAsync(drain).ConfigureAwait(false);                        }                    ),                    sad                );        }    }}
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