bbf5b89473
The function _fatal is only used in dart:async. Change it from a public function of dart:_internal, which can be invoked via mirrors, into a private function of dart:async. R=rmacnak@google.com Review-Url: https://codereview.chromium.org/2684963004 .
207 lines
7.4 KiB
Dart
207 lines
7.4 KiB
Dart
// Copyright (c) 2015, 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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import "dart:_internal" hide Symbol;
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// Equivalent of calling FATAL from C++ code.
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_fatal(msg) native "DartAsync_fatal";
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// We need to pass the value as first argument and leave the second and third
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// arguments empty (used for error handling).
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// See vm/ast_transformer.cc for usage.
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Function _asyncThenWrapperHelper(continuation) {
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// Any function that is used as an asynchronous callback must be registered
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// in the current Zone. Normally, this is done by the future when a
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// callback is registered (for example with `.then` or `.catchError`). In our
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// case we want to reuse the same callback multiple times and therefore avoid
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// the multiple registrations. For our internal futures (`_Future`) we can
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// use the shortcut-version of `.then`, and skip the registration. However,
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// that means that the continuation must be registered by us.
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//
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// Furthermore, we know that the root-zone doesn't actually do anything and
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// we can therefore skip the registration call for it.
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//
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// Note, that the continuation accepts up to three arguments. If the current
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// zone is the root zone, we don't wrap the continuation, and a bad
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// `Future` implementation could potentially invoke the callback with the
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// wrong number of arguments.
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if (Zone.current == Zone.ROOT) return continuation;
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return Zone.current.registerUnaryCallback((x) => continuation(x, null, null));
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}
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// We need to pass the exception and stack trace objects as second and third
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// parameter to the continuation. See vm/ast_transformer.cc for usage.
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Function _asyncErrorWrapperHelper(continuation) {
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// See comments of `_asyncThenWrapperHelper`.
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var errorCallback = (e, s) => continuation(null, e, s);
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if (Zone.current == Zone.ROOT) return errorCallback;
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return Zone.current.registerBinaryCallback(errorCallback);
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}
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/// Registers the [thenCallback] and [errorCallback] on the given [object].
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///
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/// If [object] is not a future, then it is wrapped into one.
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///
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/// Returns the result of registering with `.then`.
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Future _awaitHelper(
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var object, Function thenCallback, Function errorCallback) {
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if (object is! Future) {
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object = new _Future().._setValue(object);
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} else if (object is! _Future) {
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return object.then(thenCallback, onError: errorCallback);
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}
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// `object` is a `_Future`.
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//
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// Since the callbacks have been registered in the current zone (see
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// [_asyncThenWrapperHelper] and [_asyncErrorWrapperHelper]), we can avoid
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// another registration and directly invoke the no-zone-registration `.then`.
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//
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// We can only do this for our internal futures (the default implementation of
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// all futures that are constructed by the `dart:async` library).
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return object._thenNoZoneRegistration(thenCallback, errorCallback);
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}
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// _AsyncStarStreamController is used by the compiler to implement
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// async* generator functions.
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class _AsyncStarStreamController {
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StreamController controller;
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Function asyncStarBody;
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bool isAdding = false;
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bool onListenReceived = false;
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bool isScheduled = false;
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bool isSuspendedAtYield = false;
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Completer cancellationCompleter = null;
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Stream get stream => controller.stream;
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void runBody() {
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isScheduled = false;
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isSuspendedAtYield = false;
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asyncStarBody();
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}
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void scheduleGenerator() {
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if (isScheduled || controller.isPaused || isAdding) {
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return;
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}
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isScheduled = true;
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scheduleMicrotask(runBody);
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}
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// Adds element to stream, returns true if the caller should terminate
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// execution of the generator.
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//
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// TODO(hausner): Per spec, the generator should be suspended before
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// exiting when the stream is closed. We could add a getter like this:
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// get isCancelled => controller.hasListener;
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// The generator would translate a 'yield e' statement to
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// controller.add(e);
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// suspend;
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// if (controller.isCancelled) return;
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bool add(event) {
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if (!onListenReceived) _fatal("yield before stream is listened to");
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if (isSuspendedAtYield) _fatal("unexpected yield");
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// If stream is cancelled, tell caller to exit the async generator.
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if (!controller.hasListener) {
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return true;
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}
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controller.add(event);
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scheduleGenerator();
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isSuspendedAtYield = true;
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return false;
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}
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// Adds the elements of stream into this controller's stream.
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// The generator will be scheduled again when all of the
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// elements of the added stream have been consumed.
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// Returns true if the caller should terminate
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// execution of the generator.
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bool addStream(Stream stream) {
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if (!onListenReceived) _fatal("yield before stream is listened to");
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// If stream is cancelled, tell caller to exit the async generator.
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if (!controller.hasListener) return true;
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isAdding = true;
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var whenDoneAdding =
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controller.addStream(stream as Stream, cancelOnError: false);
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whenDoneAdding.then((_) {
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isAdding = false;
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scheduleGenerator();
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if (!isScheduled) isSuspendedAtYield = true;
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});
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return false;
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}
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void addError(error, stackTrace) {
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if ((cancellationCompleter != null) && !cancellationCompleter.isCompleted) {
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// If the stream has been cancelled, complete the cancellation future
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// with the error.
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cancellationCompleter.completeError(error, stackTrace);
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return;
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}
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// If stream is cancelled, tell caller to exit the async generator.
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if (!controller.hasListener) return;
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controller.addError(error, stackTrace);
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// No need to schedule the generator body here. This code is only
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// called from the catch clause of the implicit try-catch-finally
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// around the generator body. That is, we are on the error path out
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// of the generator and do not need to run the generator again.
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}
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close() {
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if ((cancellationCompleter != null) && !cancellationCompleter.isCompleted) {
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// If the stream has been cancelled, complete the cancellation future
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// with the error.
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cancellationCompleter.complete();
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}
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controller.close();
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}
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_AsyncStarStreamController(this.asyncStarBody) {
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controller = new StreamController(onListen: this.onListen,
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onResume: this.onResume,
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onCancel: this.onCancel);
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}
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onListen() {
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assert(!onListenReceived);
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onListenReceived = true;
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scheduleGenerator();
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}
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onResume() {
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if (isSuspendedAtYield) {
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scheduleGenerator();
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}
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}
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onCancel() {
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if (controller.isClosed) {
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return null;
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}
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if (cancellationCompleter == null) {
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cancellationCompleter = new Completer();
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// Only resume the generator if it is suspended at a yield.
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// Cancellation does not affect an async generator that is
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// suspended at an await.
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if (isSuspendedAtYield) {
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scheduleGenerator();
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}
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}
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return cancellationCompleter.future;
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}
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}
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@patch void _rethrow(Object error, StackTrace stackTrace) native "Async_rethrow";
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/// Returns a [StackTrace] object containing the synchronous prefix for this
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/// asynchronous method.
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Object _asyncStackTraceHelper() native "StackTrace_asyncStackTraceHelper";
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void _clearAsyncThreadStackTrace()
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native "StackTrace_clearAsyncThreadStackTrace";
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void _setAsyncThreadStackTrace(StackTrace stackTrace) native
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"StackTrace_setAsyncThreadStackTrace";
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