91ed46b06b
R=sgjesse@google.com Review URL: https://codereview.chromium.org//292403002 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@36558 260f80e4-7a28-3924-810f-c04153c831b5
292 lines
8.1 KiB
Dart
292 lines
8.1 KiB
Dart
// Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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/**
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* Capture asynchronous results into synchronous values, and release them again.
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*
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* Capturing a result (either a returned value or a thrown error)
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* means converting it into a [Result] -
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* either a [ValueResult] or an [ErrorResult].
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*
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* This value can release itself by writing itself either to a
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* [EventSink] or a [Completer], or by becoming a [Future].
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*/
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library dart.pkg.async.results;
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import "dart:async";
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/**
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* The result of a computation.
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*/
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abstract class Result<T> {
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/**
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* Create a `Result` with the result of calling [computation].
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*
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* This generates either a [ValueResult] with the value returned by
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* calling `computation`, or an [ErrorResult] with an error thrown by
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* the call.
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*/
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factory Result(T computation()) {
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try {
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return new ValueResult(computation());
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} catch (e, s) {
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return new ErrorResult(e, s);
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}
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}
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/**
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* Create a `Result` holding a value.
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*
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* Alias for [ValueResult.ValueResult].
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*/
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factory Result.value(T value) = ValueResult<T>;
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/**
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* Create a `Result` holding an error.
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*
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* Alias for [ErrorResult.ErrorResult].
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*/
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factory Result.error(Object error, [StackTrace stackTrace]) =>
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new ErrorResult(error, stackTrace);
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// Helper functions.
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static _captureValue(value) => new ValueResult(value);
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static _captureError(error, stack) => new ErrorResult(error, stack);
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static _release(Result v) {
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if (v.isValue) return v.asValue.value; // Avoid wrapping in future.
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return v.asFuture;
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}
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/**
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* Capture the result of a future into a `Result` future.
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*
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* The resulting future will never have an error.
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* Errors have been converted to an [ErrorResult] value.
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*/
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static Future<Result> capture(Future future) {
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return future.then(_captureValue, onError: _captureError);
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}
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/**
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* Release the result of a captured future.
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*
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* Converts the [Result] value of the given [future] to a value or error
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* completion of the returned future.
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*
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* If [future] completes with an error, the returned future completes with
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* the same error.
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*/
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static Future release(Future<Result> future) {
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return future.then(_release);
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}
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/**
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* Capture the results of a stream into a stream of [Result] values.
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*
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* The returned stream will not have any error events.
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* Errors from the source stream have been converted to [ErrorResult]s.
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*
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* Shorthand for transforming the stream using [CaptureStreamTransformer].
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*/
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static Stream<Result> captureStream(Stream source) {
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return source.transform(const CaptureStreamTransformer());
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}
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/**
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* Release a stream of [result] values into a stream of the results.
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*
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* `Result` values of the source stream become value or error events in
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* the retuned stream as appropriate.
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* Errors from the source stream become errors in the returned stream.
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*
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* Shorthand for transforming the stream using [ReleaseStreamTransformer].
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*/
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static Stream releaseStream(Stream<Result> source) {
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return source.transform(const ReleaseStreamTransformer());
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}
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/**
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* Converts a result of a result to a single result.
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*
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* If the result is an error, or it is a `Result` value
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* which is then an error, then a result with that error is returned.
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* Otherwise both levels of results are value results, and a single
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* result with the value is returned.
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*/
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static Result flatten(Result<Result> result) {
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if (result.isError) return result;
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return result.asValue.value;
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}
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/**
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* Whether this result is a value result.
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*
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* Always the opposite of [isError].
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*/
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bool get isValue;
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/**
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* Whether this result is an error result.
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*
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* Always the opposite of [isValue].
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*/
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bool get isError;
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/**
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* If this is a value result, return itself.
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*
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* Otherwise return `null`.
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*/
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ValueResult<T> get asValue;
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/**
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* If this is an error result, return itself.
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*
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* Otherwise return `null`.
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*/
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ErrorResult get asError;
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/**
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* Complete a completer with this result.
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*/
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void complete(Completer<T> completer);
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/**
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* Add this result to a [StreamSink].
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*/
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void addTo(EventSink<T> sink);
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/**
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* Creates a future completed with this result as a value or an error.
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*/
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Future<T> get asFuture;
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}
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/**
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* A result representing a returned value.
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*/
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class ValueResult<T> implements Result<T> {
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/** The returned value that this result represents. */
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final T value;
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/** Create a value result with the given [value]. */
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ValueResult(this.value);
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bool get isValue => true;
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bool get isError => false;
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ValueResult<T> get asValue => this;
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ErrorResult get asError => null;
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void complete(Completer<T> completer) {
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completer.complete(value);
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}
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void addTo(EventSink<T> sink) {
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sink.add(value);
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}
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Future<T> get asFuture => new Future.value(value);
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}
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/**
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* A result representing a thrown error.
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*/
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class ErrorResult implements Result {
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/** The thrown object that this result represents. */
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final error;
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/** The stack trace, if any, associated with the throw. */
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final StackTrace stackTrace;
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/** Create an error result with the given [error] and [stackTrace]. */
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ErrorResult(this.error, this.stackTrace);
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bool get isValue => false;
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bool get isError => true;
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ValueResult get asValue => null;
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ErrorResult get asError => this;
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void complete(Completer completer) {
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completer.completeError(error, stackTrace);
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}
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void addTo(EventSink sink) {
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sink.addError(error, stackTrace);
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}
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Future get asFuture => new Future.error(error, stackTrace);
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}
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/**
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* A stream transformer that captures a stream of events into [Result]s.
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*
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* The result of the transformation is a stream of [Result] values and
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* no error events.
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*/
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class CaptureStreamTransformer<T> implements StreamTransformer<T, Result<T>> {
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const CaptureStreamTransformer();
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Stream<Result<T>> bind(Stream<T> source) {
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return new Stream<Result<T>>.eventTransformed(source, _createSink);
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}
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static EventSink _createSink(EventSink<Result> sink) {
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return new CaptureSink(sink);
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}
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}
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/**
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* A stream transformer that releases a stream of result events.
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*
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* The result of the transformation is a stream of values and
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* error events.
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*/
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class ReleaseStreamTransformer<T> implements StreamTransformer<Result<T>, T> {
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const ReleaseStreamTransformer();
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Stream<T> bind(Stream<Result<T>> source) {
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return new Stream<T>.eventTransformed(source, _createSink);
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}
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static EventSink<Result> _createSink(EventSink sink) {
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return new ReleaseSink(sink);
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}
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}
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/**
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* An event sink wrapper that captures the incoming events.
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*
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* Wraps an [EventSink] that expects [Result] values.
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* Accepts any value and error result,
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* and passes them to the wrapped sink as [Result] values.
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*
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* The wrapped sink will never receive an error event.
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*/
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class CaptureSink<T> implements EventSink<T> {
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final EventSink _sink;
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CaptureSink(EventSink<Result<T>> sink) : _sink = sink;
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void add(T value) { _sink.add(new ValueResult(value)); }
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void addError(Object error, [StackTrace stackTrace]) {
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_sink.add(new ErrorResult(error, stackTrace));
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}
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void close() { _sink.close(); }
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}
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/**
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* An event sink wrapper that releases the incoming result events.
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*
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* Wraps an output [EventSink] that expects any result.
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* Accepts [Result] values, and puts the result value or error into the
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* corresponding output sink add method.
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*/
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class ReleaseSink<T> implements EventSink<Result<T>> {
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final EventSink _sink;
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ReleaseSink(EventSink<T> sink) : _sink = sink;
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void add(Result<T> result) {
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if (result.isValue) {
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_sink.add(result.asValue.value);
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} else {
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ErrorResult error = result.asError;
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_sink.addError(error.error, error.stackTrace);
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}
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}
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void addError(Object error, [StackTrace stackTrace]) {
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// Errors may be added by intermediate processing, even if it is never
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// added by CaptureSink.
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_sink.addError(error, stackTrace);
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}
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void close() { _sink.close(); }
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}
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